Multiple access transmission method, equipment and device

Through the multiple access transmission method based on indication information, the signal packet and resource allocation of A-IoT devices are optimized, the collision and interference problems between devices are solved, and network capacity and transmission efficiency are improved.

CN120456049APending Publication Date: 2025-08-08DATANG MOBILE COMM EQUIP CO LTD
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Patent Information

Application Number
CN202410177904.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-02-08
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

When a large number of environmental Internet of Things (A-IoT) devices are connected at the same time, there are problems of collision and signal interference, which affects the efficiency of multiple access transmission.

Method used

By determining multiple access reception of the first signal sent by the second device and/or sending multiple access transmission of the second signal to the third device based on the first indication information, the packet and transmission process of the signal are optimized using the association relationship between the packet information and the resource information.

Benefits of technology

It reduces signal interference between A-IoT devices and improves network capacity and transmission efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided are a multiple access transmission method, device and apparatus, the method being applied to a first device, comprising: determining multiple access reception of a first signal sent by a second device and / or multiple access transmission of a second signal sent to a third device based on first indication information. According to the scheme of the invention, the multi-access transmission of the signal of the first device is realized based on the first indication information, and the interference caused by collision due to simultaneous access of multiple devices is reduced, so that the capacity of the network to the devices is improved.
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Description

Technical Field

[0001] The present application relates to the field of communication technology, and in particular to a multiple access transmission method, device and apparatus. Background Art

[0002] The 3rd Generation Partnership Project (3GPP) has defined a new type of Internet of Things (IoT) device - Ambient IoT (A-IoT) device.

[0003] A-IoT devices feature low power consumption, low complexity, and require or have limited power. Their transmission methods differ significantly from current New Radio (NR) systems. When a large number of A-IoT devices are connected simultaneously, collisions and signal interference between A-IoT devices can occur. Developing multi-access transmission for multiple A-IoT devices is a pressing technical challenge. Summary of the Invention

[0004] The present application provides a multi-access transmission method, device and apparatus to implement multi-access transmission of A-IoT devices.

[0005] In a first aspect, the present application provides a multiple access transmission method, applied to a first device, the method comprising:

[0006] Based on the first indication information, determine multiple access reception of the first signal sent by the second device and / or multiple access transmission of the second signal sent to the third device.

[0007] In one possible implementation, the first signal includes at least one of the following:

[0008] Downlink indication signal, a signal used to carry downlink control information;

[0009] Excitation signal, used to trigger or carry uplink signals;

[0010] Carrier signal, used to carry uplink signals.

[0011] In one possible implementation, the second signal includes at least one of the following:

[0012] Uplink reflected signal;

[0013] Send uplink signal.

[0014] In a possible implementation manner, the first indication information includes at least one of the following:

[0015] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0016] Group resource information is used to indicate group information of resources for receiving the first signal and / or sending the second signal, and / or an association relationship between resources for receiving the first signal and resources for sending the second signal.

[0017] The association relationship between the group information and the group resource information.

[0018] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0019] Protocol pre-configuration information;

[0020] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0021] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0022] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0023] Device pre-stored information.

[0024] In a possible implementation, the grouping information includes at least one of the following:

[0025] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0026] Device grouping information, used to indicate the device grouping of the first device;

[0027] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0028] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0029] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0030] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0031] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0032] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0033] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0034] an association relationship between the signal grouping and the resource grouping of the first signal;

[0035] an association relationship between the signal grouping and the resource grouping of the second signal;

[0036] The association relationship between the device group and the resource group of the first device.

[0037] In a possible implementation manner, the association relationship between the resource for receiving the first signal and the resource for sending the second signal includes at least one of the following:

[0038] an association relationship between a group resource location of a device group of the first device for sending the second signal and time domain information of the first signal;

[0039] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0040] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0041] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0042] In a possible implementation manner, the second device is any one of a network device, a relay device, and a terminal device;

[0043] and / or,

[0044] The third device is any one of a network device, a relay device, and a terminal device.

[0045] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0046] Number of signal groups;

[0047] Identification of the signal group;

[0048] The index of the signal group;

[0049] Signal type indication information;

[0050] Second correspondence information between signal groups of different signals in the at least one signal.

[0051] In one possible implementation, the device grouping information includes at least one of the following:

[0052] Device group identification;

[0053] Device group index;

[0054] The relationship between devices and device groups;

[0055] Equipment grouping criteria;

[0056] The first parameter is used to determine the device grouping;

[0057] The second parameter is used to identify the cell or group sequence;

[0058] Information about the sequence of receiving and / or sending device groups;

[0059] Beam grouping information, used to indicate beam-related device grouping information;

[0060] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0061] In a possible implementation manner, the group resource information includes at least one of the following:

[0062] Time domain resource grouping information;

[0063] Frequency domain resource grouping information;

[0064] Code domain resource grouping information;

[0065] Airspace resource grouping information.

[0066] In one possible implementation,

[0067] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0068] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0069] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0070] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0071] In a second aspect, the present application provides a multiple access transmission method, applied to a second device, the method comprising:

[0072] Sending a first signal to the first device based on the first indication information;

[0073] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[0074] In one possible implementation, the first signal includes at least one of the following:

[0075] Downlink indication signal, a signal used to carry downlink control information;

[0076] Excitation signal, used to trigger or carry uplink signals;

[0077] Carrier signal, used to carry uplink signals.

[0078] In one possible implementation, the second signal includes at least one of the following:

[0079] Uplink reflected signal;

[0080] Send uplink signal.

[0081] In a possible implementation manner, the first indication information includes at least one of the following:

[0082] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0083] Group resource information is used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between resources for sending the first signal and resources for receiving the second signal.

[0084] The association relationship between the group information and the group resource information.

[0085] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0086] Protocol pre-configuration information;

[0087] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0088] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0089] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0090] Device pre-stored information.

[0091] In a possible implementation, the grouping information includes at least one of the following:

[0092] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0093] Device grouping information, used to indicate the device grouping of the first device;

[0094] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0095] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0096] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0097] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0098] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0099] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0100] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0101] an association relationship between the signal grouping and the resource grouping of the first signal;

[0102] an association relationship between the signal grouping and the resource grouping of the second signal;

[0103] The association relationship between the device group and the resource group of the first device.

[0104] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[0105] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0106] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0107] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0108] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0109] In a possible implementation, the second device is any one of a network device, a relay device, and a terminal device.

[0110] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0111] Number of signal groups;

[0112] Identification of the signal group;

[0113] The index of the signal group;

[0114] Signal type indication information;

[0115] Second correspondence information between signal groups of different signals in the at least one signal.

[0116] In one possible implementation, the device grouping information includes at least one of the following:

[0117] Device group identification;

[0118] Device group index;

[0119] The relationship between devices and device groups;

[0120] Equipment grouping criteria;

[0121] The first parameter is used to determine the device grouping;

[0122] The second parameter is used to identify the cell or group sequence;

[0123] Information about the sequence of receiving and / or sending device groups;

[0124] Beam grouping information, used to indicate beam-related device grouping information;

[0125] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0126] In a possible implementation manner, the group resource information includes at least one of the following:

[0127] Time domain resource grouping information;

[0128] Frequency domain resource grouping information;

[0129] Code domain resource grouping information;

[0130] Airspace resource grouping information.

[0131] In one possible implementation,

[0132] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0133] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0134] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0135] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0136] In a third aspect, the present application provides a multiple access transmission method, applied to a third device, the method comprising:

[0137] receiving, based on the first indication information, a second signal sent by the first device;

[0138] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[0139] In one possible implementation, the first signal includes at least one of the following:

[0140] Downlink indication signal, a signal used to carry downlink control information;

[0141] Excitation signal, used to trigger or carry uplink signals;

[0142] Carrier signal, used to carry uplink signals.

[0143] In one possible implementation, the second signal includes at least one of the following:

[0144] Uplink reflected signal;

[0145] Send uplink signal.

[0146] In a possible implementation manner, the first indication information includes at least one of the following:

[0147] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0148] Group resource information is used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between resources for sending the first signal and resources for receiving the second signal.

[0149] The association relationship between the group information and the group resource information.

[0150] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0151] Protocol pre-configuration information;

[0152] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0153] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0154] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0155] Device pre-stored information.

[0156] In a possible implementation, the grouping information includes at least one of the following:

[0157] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0158] Device grouping information, used to indicate the device grouping of the first device;

[0159] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0160] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0161] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0162] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0163] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0164] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0165] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0166] an association relationship between the signal grouping and the resource grouping of the first signal;

[0167] an association relationship between the signal grouping and the resource grouping of the second signal;

[0168] The association relationship between the device group and the resource group of the first device.

[0169] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[0170] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0171] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0172] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0173] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0174] In a possible implementation, the third device is any one of a network device, a relay device, and a terminal device.

[0175] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0176] Number of signal groups;

[0177] Identification of the signal group;

[0178] The index of the signal group;

[0179] Signal type indication information;

[0180] Second correspondence information between signal groups of different signals in the at least one signal.

[0181] In one possible implementation, the device grouping information includes at least one of the following:

[0182] Device group identification;

[0183] Device group index;

[0184] The relationship between devices and device groups;

[0185] Equipment grouping criteria;

[0186] The first parameter is used to determine the device grouping;

[0187] The second parameter is used to identify the cell or group sequence;

[0188] Information about the sequence of receiving and / or sending device groups;

[0189] Beam grouping information, used to indicate beam-related device grouping information;

[0190] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0191] In a possible implementation manner, the group resource information includes at least one of the following:

[0192] Time domain resource grouping information;

[0193] Frequency domain resource grouping information;

[0194] Code domain resource grouping information;

[0195] Airspace resource grouping information.

[0196] In one possible implementation,

[0197] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0198] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0199] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0200] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0201] In a fourth aspect, the present application provides a first device, including a memory, a transceiver, and a processor;

[0202] A memory for storing a computer program; a transceiver for transmitting and receiving data under the control of the processor; and a processor for reading the computer program in the memory and performing the following operations:

[0203] Based on the first indication information, determine multiple access reception of the first signal sent by the second device and / or multiple access transmission of the second signal sent to the third device.

[0204] In one possible implementation, the first signal includes at least one of the following:

[0205] Downlink indication signal, a signal used to carry downlink control information;

[0206] Excitation signal, used to trigger or carry uplink signals;

[0207] Carrier signal, used to carry uplink signals.

[0208] In one possible implementation, the second signal includes at least one of the following:

[0209] Uplink reflected signal;

[0210] Send uplink signal.

[0211] In a possible implementation manner, the first indication information includes at least one of the following:

[0212] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0213] Group resource information, used to indicate group information of resources for receiving the first signal and / or sending the second signal, and / or an association relationship between resources for receiving the first signal and resources for sending the second signal;

[0214] The association relationship between the group information and the group resource information.

[0215] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0216] Protocol pre-configuration information;

[0217] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0218] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0219] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0220] Device pre-stored information.

[0221] In a possible implementation, the grouping information includes at least one of the following:

[0222] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0223] Device grouping information, used to indicate the device grouping of the first device;

[0224] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0225] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0226] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0227] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0228] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0229] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0230] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0231] an association relationship between the signal grouping and the resource grouping of the first signal;

[0232] an association relationship between the signal grouping and the resource grouping of the second signal;

[0233] The association relationship between the device group and the resource group of the first device.

[0234] In a possible implementation manner, the association relationship between the resource for receiving the first signal and the resource for sending the second signal includes at least one of the following:

[0235] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0236] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0237] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0238] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0239] In a possible implementation manner, the second device is any one of a network device, a relay device, and a terminal device;

[0240] and / or,

[0241] The third device is any one of a network device, a relay device, and a terminal device.

[0242] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0243] Number of signal groups;

[0244] Identification of the signal group;

[0245] The index of the signal group;

[0246] Signal type indication information;

[0247] Second correspondence information between signal groups of different signals in the at least one signal.

[0248] In one possible implementation, the device grouping information includes at least one of the following:

[0249] Device group identification;

[0250] Device group index;

[0251] The relationship between devices and device groups;

[0252] Equipment grouping criteria;

[0253] The first parameter is used to determine the device grouping;

[0254] The second parameter is used to identify the cell or group sequence;

[0255] Information about the sequence of receiving and / or sending device groups;

[0256] Beam grouping information, used to indicate beam-related device grouping information;

[0257] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0258] In a possible implementation manner, the group resource information includes at least one of the following:

[0259] Time domain resource grouping information;

[0260] Frequency domain resource grouping information;

[0261] Code domain resource grouping information;

[0262] Airspace resource grouping information.

[0263] In one possible implementation,

[0264] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0265] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0266] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0267] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0268] In a fifth aspect, the present application provides a second device, including a memory, a transceiver, and a processor;

[0269] A memory for storing a computer program; a transceiver for transmitting and receiving data under the control of the processor; and a processor for reading the computer program in the memory and performing the following operations:

[0270] Sending a first signal to the first device based on the first indication information;

[0271] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[0272] In one possible implementation, the first signal includes at least one of the following:

[0273] Downlink indication signal, a signal used to carry downlink control information;

[0274] Excitation signal, used to trigger or carry uplink signals;

[0275] Carrier signal, used to carry uplink signals.

[0276] In one possible implementation, the second signal includes at least one of the following:

[0277] Uplink reflected signal;

[0278] Send uplink signal.

[0279] In a possible implementation manner, the first indication information includes at least one of the following:

[0280] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0281] Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal;

[0282] The association relationship between the group information and the group resource information.

[0283] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0284] Protocol pre-configuration information;

[0285] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0286] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0287] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0288] Device pre-stored information.

[0289] In a possible implementation, the grouping information includes at least one of the following:

[0290] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0291] Device grouping information, used to indicate the device grouping of the first device;

[0292] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0293] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0294] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0295] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0296] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0297] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0298] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0299] an association relationship between the signal grouping and the resource grouping of the first signal;

[0300] an association relationship between the signal grouping and the resource grouping of the second signal;

[0301] The association relationship between the device group and the resource group of the first device.

[0302] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[0303] an association relationship between a group resource location of a device group of the first device for sending the second signal and time domain information of the first signal;

[0304] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0305] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0306] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0307] In a possible implementation, the second device is any one of a network device, a relay device, and a terminal device.

[0308] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0309] Number of signal groups;

[0310] Identification of the signal group;

[0311] The index of the signal group;

[0312] Signal type indication information;

[0313] Second correspondence information between signal groups of different signals in the at least one signal.

[0314] In one possible implementation, the device grouping information includes at least one of the following:

[0315] Device group identification;

[0316] Device group index;

[0317] The relationship between devices and device groups;

[0318] Equipment grouping criteria;

[0319] The first parameter is used to determine the device grouping;

[0320] The second parameter is used to identify the cell or group sequence;

[0321] Information about the sequence of receiving and / or sending device groups;

[0322] Beam grouping information, used to indicate beam-related device grouping information;

[0323] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0324] In a possible implementation manner, the group resource information includes at least one of the following:

[0325] Time domain resource grouping information;

[0326] Frequency domain resource grouping information;

[0327] Code domain resource grouping information;

[0328] Airspace resource grouping information.

[0329] In one possible implementation,

[0330] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0331] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0332] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0333] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0334] In a sixth aspect, the present application provides a third device, including a memory, a transceiver, and a processor;

[0335] A memory for storing a computer program; a transceiver for transmitting and receiving data under the control of the processor; and a processor for reading the computer program in the memory and performing the following operations:

[0336] receiving, based on the first indication information, a second signal sent by the first device;

[0337] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[0338] In one possible implementation, the first signal includes at least one of the following:

[0339] Downlink indication signal, a signal used to carry downlink control information;

[0340] Excitation signal, used to trigger or carry uplink signals;

[0341] Carrier signal, used to carry uplink signals.

[0342] In one possible implementation, the second signal includes at least one of the following:

[0343] Uplink reflected signal;

[0344] Send uplink signal.

[0345] In a possible implementation manner, the first indication information includes at least one of the following:

[0346] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0347] Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal;

[0348] The association relationship between the group information and the group resource information.

[0349] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0350] Protocol pre-configuration information;

[0351] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0352] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0353] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0354] Device pre-stored information.

[0355] In a possible implementation, the grouping information includes at least one of the following:

[0356] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0357] Device grouping information, used to indicate the device grouping of the first device;

[0358] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0359] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0360] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0361] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0362] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0363] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0364] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0365] an association relationship between the signal grouping and the resource grouping of the first signal;

[0366] an association relationship between the signal grouping and the resource grouping of the second signal;

[0367] The association relationship between the device group and the resource group of the first device.

[0368] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[0369] an association relationship between a group resource location of a device group of the first device for sending the second signal and time domain information of the first signal;

[0370] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0371] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0372] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0373] In a possible implementation, the third device is any one of a network device, a relay device, and a terminal device.

[0374] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0375] Number of signal groups;

[0376] Identification of the signal group;

[0377] The index of the signal group;

[0378] Signal type indication information;

[0379] Second correspondence information between signal groups of different signals in the at least one signal.

[0380] In one possible implementation, the device grouping information includes at least one of the following:

[0381] Device group identification;

[0382] Device group index;

[0383] The relationship between devices and device groups;

[0384] Equipment grouping criteria;

[0385] The first parameter is used to determine the device grouping;

[0386] The second parameter is used to identify the cell or group sequence;

[0387] Information about the sequence of receiving and / or sending device groups;

[0388] Beam grouping information, used to indicate beam-related device grouping information;

[0389] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0390] In a possible implementation manner, the group resource information includes at least one of the following:

[0391] Time domain resource grouping information;

[0392] Frequency domain resource grouping information;

[0393] Code domain resource grouping information;

[0394] Airspace resource grouping information.

[0395] In one possible implementation,

[0396] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0397] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0398] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0399] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0400] In a seventh aspect, the present application provides a multi-access transmission apparatus, applied to a first device, the apparatus comprising:

[0401] The processing module is configured to determine, based on the first indication information, multiple access reception of a first signal sent by the second device and / or multiple access transmission of a second signal sent to a third device.

[0402] In one possible implementation, the first signal includes at least one of the following:

[0403] Downlink indication signal, a signal used to carry downlink control information;

[0404] Excitation signal, used to trigger or carry uplink signals;

[0405] Carrier signal, used to carry uplink signals.

[0406] In one possible implementation, the second signal includes at least one of the following:

[0407] Uplink reflected signal;

[0408] Send uplink signal.

[0409] In a possible implementation manner, the first indication information includes at least one of the following:

[0410] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0411] Group resource information, used to indicate group information of resources for receiving the first signal and / or sending the second signal, and / or an association relationship between resources for receiving the first signal and resources for sending the second signal;

[0412] The association relationship between the group information and the group resource information.

[0413] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0414] Protocol pre-configuration information;

[0415] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0416] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0417] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0418] Device pre-stored information.

[0419] In a possible implementation, the grouping information includes at least one of the following:

[0420] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0421] Device grouping information, used to indicate the device grouping of the first device;

[0422] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0423] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0424] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0425] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0426] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0427] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0428] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0429] an association relationship between the signal grouping and the resource grouping of the first signal;

[0430] an association relationship between the signal grouping and the resource grouping of the second signal;

[0431] The association relationship between the device group and the resource group of the first device.

[0432] In a possible implementation manner, the association relationship between the resource for receiving the first signal and the resource for sending the second signal includes at least one of the following:

[0433] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0434] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0435] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0436] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0437] In a possible implementation manner, the second device is any one of a network device, a relay device, and a terminal device;

[0438] and / or,

[0439] The third device is any one of a network device, a relay device, and a terminal device.

[0440] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0441] Number of signal groups;

[0442] Identification of the signal group;

[0443] The index of the signal group;

[0444] Signal type indication information;

[0445] Second correspondence information between signal groups of different signals in the at least one signal.

[0446] In one possible implementation, the device grouping information includes at least one of the following:

[0447] Device group identification;

[0448] Device group index;

[0449] The relationship between devices and device groups;

[0450] Equipment grouping criteria;

[0451] The first parameter is used to determine the device grouping;

[0452] The second parameter is used to identify the cell or group sequence;

[0453] Information about the sequence of receiving and / or sending device groups;

[0454] Beam grouping information, used to indicate beam-related device grouping information;

[0455] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0456] In a possible implementation manner, the group resource information includes at least one of the following:

[0457] Time domain resource grouping information;

[0458] Frequency domain resource grouping information;

[0459] Code domain resource grouping information;

[0460] Airspace resource grouping information.

[0461] In one possible implementation,

[0462] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0463] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0464] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0465] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0466] In an eighth aspect, the present application provides a multi-access transmission apparatus, applied to a second device, the apparatus comprising:

[0467] A sending module, configured to send a first signal to a first device based on the first indication information;

[0468] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[0469] In one possible implementation, the first signal includes at least one of the following:

[0470] Downlink indication signal, a signal used to carry downlink control information;

[0471] Excitation signal, used to trigger or carry uplink signals;

[0472] Carrier signal, used to carry uplink signals.

[0473] In one possible implementation, the second signal includes at least one of the following:

[0474] Uplink reflected signal;

[0475] Send uplink signal.

[0476] In a possible implementation manner, the first indication information includes at least one of the following:

[0477] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0478] Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal;

[0479] The association relationship between the group information and the group resource information.

[0480] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0481] Protocol pre-configuration information;

[0482] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0483] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0484] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0485] Device pre-stored information.

[0486] In a possible implementation, the grouping information includes at least one of the following:

[0487] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0488] Device grouping information, used to indicate the device grouping of the first device;

[0489] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0490] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0491] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0492] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0493] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0494] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0495] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0496] an association relationship between the signal grouping and the resource grouping of the first signal;

[0497] an association relationship between the signal grouping and the resource grouping of the second signal;

[0498] The association relationship between the device group and the resource group of the first device.

[0499] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[0500] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0501] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0502] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0503] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0504] In a possible implementation, the second device is any one of a network device, a relay device, and a terminal device.

[0505] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0506] Number of signal groups;

[0507] Identification of the signal group;

[0508] The index of the signal group;

[0509] Signal type indication information;

[0510] Second correspondence information between signal groups of different signals in the at least one signal.

[0511] In one possible implementation, the device grouping information includes at least one of the following:

[0512] Device group identification;

[0513] Device group index;

[0514] The relationship between devices and device groups;

[0515] Equipment grouping criteria;

[0516] The first parameter is used to determine the device grouping;

[0517] The second parameter is used to identify the cell or group sequence;

[0518] Information about the sequence of receiving and / or sending device groups;

[0519] Beam grouping information, used to indicate beam-related device grouping information;

[0520] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0521] In a possible implementation manner, the group resource information includes at least one of the following:

[0522] Time domain resource grouping information;

[0523] Frequency domain resource grouping information;

[0524] Code domain resource grouping information;

[0525] Airspace resource grouping information.

[0526] In one possible implementation,

[0527] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0528] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0529] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0530] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0531] In a ninth aspect, the present application provides a multi-access transmission apparatus, applied to a third device, the apparatus comprising:

[0532] A receiving module, configured to receive a second signal sent by the first device based on the first indication information;

[0533] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[0534] In one possible implementation, the first signal includes at least one of the following:

[0535] Downlink indication signal, a signal used to carry downlink control information;

[0536] Excitation signal, used to trigger or carry uplink signals;

[0537] Carrier signal, used to carry uplink signals.

[0538] In one possible implementation, the second signal includes at least one of the following:

[0539] Uplink reflected signal;

[0540] Send uplink signal.

[0541] In a possible implementation manner, the first indication information includes at least one of the following:

[0542] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0543] Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal;

[0544] The association relationship between the group information and the group resource information.

[0545] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0546] Protocol pre-configuration information;

[0547] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0548] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0549] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0550] Device pre-stored information.

[0551] In a possible implementation, the grouping information includes at least one of the following:

[0552] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0553] Device grouping information, used to indicate the device grouping of the first device;

[0554] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0555] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0556] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0557] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0558] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0559] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0560] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0561] an association relationship between the signal grouping and the resource grouping of the first signal;

[0562] an association relationship between the signal grouping and the resource grouping of the second signal;

[0563] The association relationship between the device group and the resource group of the first device.

[0564] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[0565] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0566] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0567] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0568] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0569] In a possible implementation, the third device is any one of a network device, a relay device, and a terminal device.

[0570] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0571] Number of signal groups;

[0572] Identification of the signal group;

[0573] The index of the signal group;

[0574] Signal type indication information;

[0575] Second correspondence information between signal groups of different signals in the at least one signal.

[0576] In one possible implementation, the device grouping information includes at least one of the following:

[0577] Device group identification;

[0578] Device group index;

[0579] The relationship between devices and device groups;

[0580] Equipment grouping criteria;

[0581] The first parameter is used to determine the device grouping;

[0582] The second parameter is used to identify the cell or group sequence;

[0583] Information about the sequence of receiving and / or sending device groups;

[0584] Beam grouping information, used to indicate beam-related device grouping information;

[0585] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0586] In a possible implementation manner, the group resource information includes at least one of the following:

[0587] Time domain resource grouping information;

[0588] Frequency domain resource grouping information;

[0589] Code domain resource grouping information;

[0590] Airspace resource grouping information.

[0591] In one possible implementation,

[0592] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0593] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0594] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0595] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0596] In a tenth aspect, the present application provides a processor-readable storage medium, wherein the processor-readable storage medium stores a computer program, and the computer program is used to enable a computer to execute the multiple access transmission method described in any one of the first to third aspects.

[0597] The multi-access transmission method, device, and apparatus provided herein involve a first device determining, based on first indication information, the multi-access reception of a first signal sent by a second device and / or the multi-access transmission of a second signal to a third device. The solution of this application implements multi-access transmission of the first device's signal based on the first indication information, reducing interference caused by simultaneous access collisions between multiple devices, thereby increasing the network's capacity for devices. BRIEF DESCRIPTION OF THE DRAWINGS

[0598] In order to more clearly illustrate the technical solutions in the present application or the prior art, a brief introduction will be given below to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0599] Figure 1 It is a schematic diagram of the structure of an OOK-based radio frequency receiver;

[0600] Figure 2 A schematic diagram of the structure of a zero-IF receiver based on OOK;

[0601] Figure 3 A schematic diagram of the structure of an intermediate frequency receiver based on OOK;

[0602] Figure 4 A schematic diagram of an applicable application scenario provided in an embodiment of the present application;

[0603] Figure 5 A flowchart of a multiple access transmission method provided in an embodiment of the present application;

[0604] Figure 6 The multi-access transmission example provided in this application Figure 1 ;

[0605] Figure 7 The multi-access transmission example provided in this application Figure 2 ;

[0606] Figure 8 The multi-access transmission example provided in this application Figure 3 ;

[0607] Figure 9 The multi-access transmission example provided in this application Figure 4 ;

[0608] Figure 10 The multi-access transmission example provided in this application Figure 5 ;

[0609] Figure 11 The multi-access transmission example provided in this application Figure 6 ;

[0610] Figure 12 The multi-access transmission example provided in this application Figure 7 ;

[0611] Figure 13 The multi-access transmission example provided in this application Figure 8 ;

[0612] Figure 14 The multi-access transmission example provided in this application Figure 9 ;

[0613] Figure 15 The multi-access transmission example provided in this application Figure 10 ;

[0614] Figure 16 A schematic structural diagram of a first device provided in an embodiment of the present application;

[0615] Figure 17 A schematic structural diagram of a second device provided in an embodiment of the present application;

[0616] Figure 18 A schematic structural diagram of a third device provided in an embodiment of the present application;

[0617] Figure 19 Schematic diagram of the structure of the multi-address transmission device provided in the embodiment of the present application Figure 1 ;

[0618] Figure 20 Schematic diagram of the structure of the multi-address transmission device provided in the embodiment of the present application Figure 2 ;

[0619] Figure 21 Schematic diagram of the structure of the multi-address transmission device provided in the embodiment of the present application Figure 3 . DETAILED DESCRIPTION

[0620] To make the objectives, technical solutions, and advantages of this application more clear, the technical solutions in this application will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0621] First, the basic concepts involved in the embodiments of the present application are introduced.

[0622] A-IoT device types: 3GPP divides A-IoT devices into three categories based on whether they have energy storage capabilities and independent signal generation capabilities: device A, device B, and device C.

[0623] Device A: No energy storage capability, no independent signal generation capability, and transmits signals via backscatter.

[0624] Device B: It has energy storage capability but no independent signal generation capability. It transmits signals via backscattering, and the stored energy can be used to amplify the power of the backscattered signal.

[0625] Device C: has energy storage capabilities, the ability to independently generate signals, and uses radio frequency devices for signal transmission.

[0626] Backscatter communication: A backscatter communication system consists of an excitation signal source and a signal reflection device. The excitation signal source may include, for example, a reader, and the signal reflection device may include, for example, a reflective tag. The reader is used to generate the RF excitation signal, and the reflective tag is composed of a device that can reflect the RF signal. The reader sends an RF signal to the reflective tag, which receives the signal sent by the excitation signal source and reflects the RF signal through the reflective tag. By changing the load impedance of the reflective tag antenna, information is modulated into the backscatter signal. When the reflection coefficient is configured to the first reflection coefficient, the energy of the excitation signal is completely absorbed by the tag antenna; when the reflection coefficient is configured to the second reflection coefficient, the excitation signal is completely reflected; when the reflection coefficient is configured to the third reflection coefficient, the excitation signal is partially absorbed and partially reflected.

[0627] The above embodiments describe the types of A-IoT devices. The following describes possible receiver architectures for A-IoT devices, along with the accompanying figures. For A-IoT devices, the receiver structure is extremely simple and can include, for example, an RF receiver based on on-off keying (OOK), an OOK-based zero-IF receiver, an OOK-based IF receiver, and so on.

[0628] Figure 1 A schematic diagram of the structure of an OOK-based radio frequency receiver is shown in FIG. Figure 1 As shown, the OOK-based RF receiver includes a matching network (Matching network), a radio frequency band-pass filter (Radio Frequency Band-Pass Filter, RF BPF), a radio frequency low noise amplifier (Radio Frequency Low Noise Amplifier, RF LNA), a radio frequency envelope detector (Radio Frequency envelope detector), a baseband amplifier (baseband Amplifier, BB AMP), a baseband low-pass filter (Baseband Low-Pass Filter, BB LPF), an analog-to-digital converter (Analog-to-Digital Converter, ADC), and a digital baseband processor (digital baseband processing).

[0629] Figure 2 A schematic diagram of the structure of a zero intermediate frequency receiver based on OOK is shown in FIG. Figure 2 As shown in the figure, an OOK-based zero-IF receiver includes a matching network, an RF BPF, an RF LNA, a mixer, a BB AMP, a BB LPF or BPF, an ADC, and a digital baseband processor. The received signal is processed by these components in sequence, with the mixer input also including a local oscillator (LO) signal.

[0630] Figure 3 A schematic diagram of the structure of an intermediate frequency receiver based on OOK is shown in FIG. Figure 3 As shown in the figure, the OOK-based IF receiver includes a matching network, an RF BPF, an RF LNA, a mixer, an IF amplifier (IF AMP), an IF band-pass filter (IFBPF), an IF envelope detector (IF envelope detector), a BB AMP, a BB LPF, an ADC, and a digital baseband processor. The received signal is processed by these components in sequence, with the mixer input also including the LO signal.

[0631] like Figures 1 to 3As shown, for A-IoT devices, due to their extremely simple receiver structure, A-IoT devices are unable to complete the reception and processing of the terminal's configuration parameters for random access and paging in the New Radio (NR) system. Specifically, A-IoT devices have the characteristics of low power consumption, low complexity, no power supply or limited power supply. The A-IoT device transmission signal cannot adopt the time-frequency offset synchronization method of the NR system, that is, by estimating the time-frequency offset of reference signals such as the synchronization signal block (SSB) and the time-frequency tracking reference signal (TRS). The transmission method of A-IoT devices is very different from that of NR devices. For example, A-IoT devices communicate and transmit through backscattered signals. A-IoT devices cannot actively transmit in the NR system, especially devices of device A and device B. A-IoT devices cannot perform inverse fast Fourier transform (IFFT) operations and do not support orthogonal frequency division multiple access (OFDMA) transmission, especially devices of device A and device B.

[0632] Due to the aforementioned characteristics of A-IoT devices, their transmission methods differ significantly from those of current NR systems. When a large number of A-IoT devices are connected simultaneously, collisions and signal interference between A-IoT devices can occur. Implementing multi-access transmission for A-IoT devices is a pressing technical challenge.

[0633] Based on this, the embodiment of the present application provides a multi-access transmission method to achieve parallel transmission of multiple A-IoT devices, thereby improving resource utilization. The solution of the embodiment of the present application will be described below with reference to the accompanying drawings.

[0634] Figure 4 A schematic diagram of an applicable application scenario provided in the embodiment of the present application is as follows: Figure 4 As shown, it includes device 41, device 42, device 43 and device 40, wherein device 41, device 42, device 43 are all A-IoT devices, and device 40 can be any one of a network device, a terminal device, and a relay device. Figure 4 In the example, the device 40 is taken as a network device.

[0635] Device 40 can interact with devices 41, 42, and 43. In the embodiment of the present application, device 40 can send a downlink indication signal to each of devices 41, 42, and 43. The downlink indication signal can be, for example, a query signal for indicating relevant information of multiple access transmission.

[0636] Device 40 can send an excitation signal to each of device 41, device 42, and device 43. After receiving the excitation signal, the A-IoT device can reflect the signal and send an uplink reflection signal to device 40, for A-IoT devices that do not have the ability to generate signals independently. Taking device 41 and device 42 as an example, if they are devices of type A and device B respectively, then devices 41 and 42 do not have the ability to generate signals independently. Devices 41 and 42 reflect the excitation signal and send their respective uplink reflection signals to device 40. For A-IoT devices that have the ability to generate signals independently, they can generate an uplink transmission signal based on the excitation signal, thereby sending an uplink transmission signal to the network device. Taking device 43 as an example, if it is a device of type C, then device 43 has the ability to generate signals independently. Device 43 generates an uplink transmission signal based on the excitation signal and sends an uplink transmission signal to device 40.

[0637] exist Figure 4 Based on the example, the following Figure 5 The solution of the embodiment of this application is introduced.

[0638] Figure 5 Flowchart of the multi-access transmission method provided in the embodiment of the present application, which is applied to the first device, such as Figure 5 As shown, the method includes:

[0639] S51: Determine, based on first indication information, multiple access reception of a first signal sent by a second device and / or multiple access transmission of a second signal sent to a third device.

[0640] The first device may be, for example, an A-IoT device, the second device may be, for example, any one of a network device, a relay device, and a terminal device, the third device may be, for example, any one of a network device, a relay device, and a terminal device, and the second device and the third device may be the same device or different devices.

[0641] The first device receives a first signal sent by the second device. Optionally, the first signal includes at least one of a downlink indication signal, an excitation signal, and a carrier signal. The downlink indication signal is a signal used to carry downlink control information, the excitation signal is a signal used to trigger or carry an uplink signal, and the carrier signal is a carrier signal used to carry an uplink signal. Optionally, the excitation signal is a carrier signal.

[0642] Optionally, the downlink indication signal includes a first downlink indication signal and / or a second downlink indication signal. The first downlink indication signal and the second downlink indication signal may independently carry the first indication information, or may respectively carry different information in the first indication information.

[0643] The first device transmits a second signal to the third device. Optionally, the second signal includes at least one of an uplink reflected signal and an uplink transmitted signal. Optionally, if the first device does not have the capability to independently generate a signal, the first device reflects the corresponding signal by backscattering, which is the uplink reflected signal. Optionally, if the first device has the capability to independently generate a signal, the first device generates the uplink transmitted signal based on the excitation signal.

[0644] The first device obtains first indication information, where the first indication information is used to indicate relevant information for the first device to perform multiple access transmission.

[0645] In a possible implementation, the first indication information may include at least one of the following:

[0646] 1. Group information, used to indicate the relevant groups in the multi-address sending process or the multi-address receiving process.

[0647] The relevant groups in the multiple-address transmission process or the multiple-address reception process may include signal groups, device groups, and the corresponding relationships between the groups.

[0648] Specifically, the grouping information may include at least one of the following 1.1 to 1.3:

[0649] 1.1. Signal grouping information, used to indicate the signal grouping of at least one signal and / or the correspondence between signal groups of different signals in at least one signal, the signal grouping of at least one signal including at least one of the following: the signal grouping of the first signal and / or the signal grouping of the second signal.

[0650] At least one signal may include a first signal. Accordingly, a signal group of the at least one signal may include a signal group of the first signal. The first signal includes at least one of a downlink indication signal, an excitation signal, and a carrier signal. Therefore, the signal group of the at least one signal may include at least one of a downlink indication signal group, an excitation signal group, and a carrier signal group. The downlink indication signal may include at least one of a first downlink indication signal, a second downlink indication signal, and a third downlink indication signal. Therefore, the downlink indication signal group includes a first downlink indication signal group, a second downlink indication signal group, and a third downlink indication signal group.

[0651] The at least one signal may include the second signal. Accordingly, the signal grouping of the at least one signal may include the signal grouping of the second signal. The second signal includes at least one of an uplink reflected signal and an uplink transmitted signal. Therefore, the signal grouping of the at least one signal may include the uplink reflected signal grouping and / or the uplink transmitted signal grouping. The first device may determine the signal grouping of the first signal and / or the signal grouping of the second signal based on the signal grouping information.

[0652] The correspondence between signal groups of different signals in at least one signal represents the correspondence between signal groups of different signals, such as the correspondence between a downlink indication signal group and an excitation signal group, the correspondence between a downlink indication signal group and an uplink reflection signal group, the correspondence between a first downlink indication signal group and a second downlink indication signal group, and so on.

[0653] Optionally, the signal grouping information includes at least one of the number of signal groups, the identifier of the signal group, the index of the signal group, the signal type indication information, and the second correspondence information. The number of signal groups is used to indicate how many groups the signal is divided into. The identifier of the signal group or the index of the signal group is used to uniquely identify the corresponding signal group. The signal type indication information is used to indicate the type of signal, and the type of signal may include, for example, an A-IoT device-specific signal, an A-IoT device group-specific signal, a cell-specific signal, a query signal group-specific signal, and the like. The type of signal may also include, for example: which signal among the first signal and / or the second signal, such as: a first downlink indication signal, a second downlink indication signal, an excitation signal, an uplink reflected signal, an uplink transmission signal, and the like. The type of signal may also include, for example: which type of signal the signal belongs to, such as: a downlink signal or an uplink signal. The second correspondence information is used to indicate the correspondence between signal groups of different signals in at least one signal.

[0654] 1.2. Device grouping information, used to indicate the device grouping of the first device.

[0655] Based on the device grouping information, the first device may determine the device group of the first device. The device grouping information includes at least one of the following 1.21 to 1.29:

[0656] 1.21. Equipment group identification.

[0657] The device group identifier is used to uniquely identify a corresponding device group. The first device can determine the group of the first device based on the device group identifier of the first device.

[0658] 1.22. Device group index.

[0659] The device group index is used to uniquely identify a corresponding device group. The first device can determine the group of the first device based on the device group index of the first device.

[0660] 1.23. The relationship between devices and device groups.

[0661] The association relationship between a device and a device group is used to indicate the group to which the device belongs. The first device determines the device group associated with the first device based on the association relationship between the device and the device group, which is the group of the first device.

[0662] 1.24. Equipment grouping criteria.

[0663] The device grouping criteria are used by the first device to determine the grouping of the first devices. The device grouping criteria may, for example, be grouping based on specific information, such as a device identifier, and performing a corresponding operation. The corresponding operation may include a modulo operation or other possible operation methods. For example, the first device may perform a modulo operation on the identifier of the first device based on the indication of the device grouping criteria, and determine the grouping of the first devices based on the calculation result.

[0664] 1.25. The first parameter is used to determine the device group.

[0665] The first parameter may include, for example, a parameter for generating signal grouping information. Device grouping may be determined based on the first parameter and device attribute parameters. The device attribute parameters may include, for example, a device index, a device identifier, and the like.

[0666] 1.26. The second parameter is used to identify a cell or a packet sequence.

[0667] A corresponding cell or group sequence may be determined based on the second parameter, and a signal grouping of the signal may be determined based on the corresponding cell or group sequence.

[0668] 1.27. Information related to the receiving and / or sending sequence of device groups.

[0669] The information related to the receiving and / or sending sequence of the device group is used to determine the receiving sequence and / or sending sequence of different device groups. The device group of the first device can be determined based on this information.

[0670] 1.28. Beam grouping information is used to indicate the device grouping information related to the beam.

[0671] For example, different device groups correspond to different beams, and airspace resources are divided by beams, and different device groups correspond to different airspace resources.

[0672] 1.29. Identification information, used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0673] The same excitation signal may transmit the same or different uplink reflected signals and / or uplink transmitted signals in different beams, which may be identified by identification information. The third device receives the uplink reflected signals and / or uplink transmitted signals sent by the first device in groups based on different beams.

[0674] 1.3. First correspondence information, used to indicate a correspondence between a signal group of at least one signal and a first device, or a correspondence between a signal group of at least one signal and a device group of the first device.

[0675] The first correspondence information includes at least one of the following items 1.31 to 1.34:

[0676] 1.31. A correspondence between a first device and a signal group of at least one signal in the first signal.

[0677] The correspondence between the first device and the signal group of at least one signal in the first signal may, for example, indicate at least one of the downlink indication signal group corresponding to the first device, the excitation signal group corresponding to the first device, and the carrier signal group corresponding to the first device.

[0678] 1.32. Correspondence between the first device and a signal group of at least one signal in the second signal.

[0679] The correspondence between the first device and the signal groups of at least one signal in the second signal may, for example, indicate at least one of an uplink reflected signal group corresponding to the first device and an uplink transmitted signal group corresponding to the first device.

[0680] 1.33. Correspondence between the device group of the first device and the signal group of at least one signal in the first signal.

[0681] The correspondence between the device group of the first device and the signal group of at least one signal in the first signal can, for example, indicate at least one of the downlink indication signal group corresponding to the device group of the first device-first device, the excitation signal group corresponding to the device group of the first device-first device, and the carrier signal group corresponding to the device group of the first device-first device.

[0682] 1.34. Correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0683] The correspondence between the device group of the first device and the signal group of at least one signal in the second signal may, for example, indicate at least one of an uplink reflected signal group corresponding to the device group of the first device and an uplink transmitted signal group corresponding to the device group of the first device.

[0684] In the above embodiments, grouping information has been introduced. This grouping information can be used to determine the signal grouping of at least one signal, the device grouping of a first device, the correspondence between signal groups of different signals, the correspondence between the signal grouping of at least one signal and the first device, the correspondence between the signal grouping of at least one signal and the device grouping of the first device, and so on. Grouping resource information will now be introduced.

[0685] 2. Group resource information.

[0686] For the first device, the grouped resource information is used to indicate grouping information of resources for receiving the first signal and / or sending the second signal, and / or the association relationship between the resources for receiving the first signal and the resources for sending the second signal. For the second device or the third device, the grouped resource information is used to indicate grouping information of resources for sending the first signal and / or receiving the second signal, and / or the association relationship between the resources for sending the first signal and the resources for receiving the second signal.

[0687] First, grouping information of resources for receiving the first signal and / or sending the second signal is introduced.

[0688] The grouped resource information is used to group resources, and the resources in the resource group are used to send the first signal and / or receive the second signal. In an embodiment of the present application, the resources may include at least one of time domain resources, frequency domain resources, code domain resources, and spatial domain resources. Accordingly, by grouping the time domain resources, a time domain resource group is obtained; by grouping the frequency domain resources, a frequency domain resource group is obtained; by grouping the code domain resources, a code domain resource group is obtained; and by grouping the spatial domain resources, a spatial domain resource group is obtained.

[0689] In one implementation, the grouping resource information may include time domain resource grouping information, where the time domain resource grouping information is used to group time domain resources.

[0690] Optionally, the time domain resource grouping information includes at least one of: a period of the time domain resource grouping, a number of times the time domain resource grouping is transmitted within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping. The time domain resource grouping may include a time domain resource grouping for receiving the first signal or a time domain resource grouping for transmitting the second signal. Time domain resources for multiple access transmission or multiple access reception may be determined based on the time domain resource grouping information.

[0691] By grouping time domain resources, different A-IoT devices can perform multiple-access transmission or multiple-access reception of the first signal and / or the second signal through a time division multiple access (TDMA) transmission mode.

[0692] In one implementation, the grouping resource information may include frequency domain resource grouping information, where the frequency domain resource grouping information is used to group frequency domain resources.

[0693] Optionally, the frequency domain resource grouping information includes at least one of the following: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between the center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported. The frequency domain resource grouping may include a frequency domain resource grouping for receiving a first signal, or may include a frequency domain resource grouping for sending a second signal. Frequency domain resources for multiple access reception or multiple access transmission may be determined based on the frequency domain resource grouping information.

[0694] By grouping frequency domain resources, different A-IoT devices can perform multiple access reception or multiple access transmission of the first signal and / or the second signal through a frequency division multiple access (FDMA) transmission mode.

[0695] In one implementation, the grouping resource information may include code domain resource grouping information, where the code domain resource grouping information is used to group code domain resources.

[0696] Optionally, the code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping. The code domain resources used for multiple access transmission can be determined based on the code domain resource grouping information.

[0697] By grouping code domain resources, different A-IoT devices can perform multiple-access reception or multiple-access transmission of the first signal and / or the second signal through a code division multiple access (CDMA) transmission mode.

[0698] In one implementation, the grouped resource information may include spatial resource grouping information, where the spatial resource grouping information is used to group spatial resources.

[0699] Optionally, the spatial resource grouping information includes: beams corresponding to the spatial resource grouping. Spatial resources used for multiple access transmission can be determined based on the spatial resource grouping information.

[0700] By grouping the spatial resources, different A-IoT devices can perform multiple-access reception or multiple-access transmission of the first signal and / or the second signal through a space division multiple access (SDMA) transmission mode.

[0701] The following describes an association relationship between a resource for receiving a first signal and a resource for sending a second signal. The association relationship includes at least one of the following:

[0702] 2.1. Association between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal.

[0703] The time domain information of the first signal is used to indicate the time domain position of receiving the first signal, for example, it may include the time domain starting position, time domain ending position, duration period, etc. of receiving the first signal.

[0704] The group resource location of the device group of the first device sending the second signal may include, for example, the time window information of the device group of the first device sending the second signal. The time window information may include the time domain starting position, time domain ending position, duration period, etc. of the time window.

[0705] Correspondingly, the association relationship between the group resource position of the device group of the first device sending the second signal and the time domain information of the first signal is the association relationship between the time domain position of receiving the first signal and the time window information of the device group of the first device sending the second signal. For example, it may include the time interval between the time domain starting position of receiving the first signal and the time domain starting position of the time window, the time interval between the time domain starting position of receiving the first signal and the time domain ending position of the time window, and so on.

[0706] 2.2. Association between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal.

[0707] The frequency domain information of the first signal is used to indicate the frequency domain position of receiving the first signal, for example, it may include the frequency domain starting position, frequency domain ending position, center frequency point, etc. of transmitting the first signal.

[0708] The group resource location where the device group of the first device sends the second signal may, for example, include the frequency domain location where the device group of the first device sends the second signal. The frequency domain location may, for example, include the center frequency point of the frequency domain resource where the device group of the first device sends the second signal, etc.

[0709] Correspondingly, the association relationship between the group resource position of the device group of the first device for sending the second signal and the frequency domain information of the first signal may, for example, include the offset between the frequency domain starting position of transmitting the first signal and the frequency domain position of transmitting the first signal, the offset between the frequency domain center frequency point of transmitting the first signal and the center frequency point of the frequency domain position of transmitting the first signal, and so on.

[0710] 2.3. Association between a group resource location of the second signal sent by the device group of the first device and the code domain information of the first signal.

[0711] The code domain information of the first signal is used to indicate the code domain position of receiving the first signal, and may include, for example, a sequence code for transmitting the first signal.

[0712] The group resource location of the device group of the first device for sending the second signal may include, for example, a sequence code of the device group of the first device for sending the second signal.

[0713] Correspondingly, the association between the group resource position of the device group of the first device sending the second signal and the code domain information of the first signal is the association between the sequence code of transmitting the first signal and the sequence code of the device group of the first device sending the second signal.

[0714] 2.4. Association between a resource location of a group in which a device group of the first device sends the second signal and the spatial domain information of the first signal.

[0715] The spatial information of the first signal is used to indicate the spatial location where the first signal is received, and may include, for example, a beam that transmits the first signal.

[0716] The group resource location in which the device group of the first device sends the second signal may include, for example, a beam in which the device group of the first device sends the second signal.

[0717] Correspondingly, the association between the group resource location of the device group of the first device sending the second signal and the spatial domain information of the first signal is the association between the beam transmitting the first signal and the beam of the device group of the first device sending the second signal.

[0718] In the above embodiments, grouped resource information is introduced. Through this grouped resource information, corresponding resource groups and the association between resources for transmitting a first signal and resources for transmitting a second signal can be determined. The resource groups are used to transmit the first signal and / or the second signal. The association between grouped resource information and grouped resource information is described below.

[0719] 3. The relationship between group information and group resource information.

[0720] The association relationship between the group information and the group resource information includes at least one of the following 3.1 to 3.3:

[0721] 3.1. Association between signal groups and resource groups of the first signal.

[0722] The resource grouping may include at least one of a time domain resource grouping, a frequency domain resource grouping, a code domain resource grouping, and a spatial domain resource grouping, which respectively correspond to indicating corresponding time domain resources, frequency domain resources, code domain resources, and spatial domain resources. The association relationship between the signal grouping of the first signal and the resource grouping is used to indicate the resources used by the signal grouping of the first signal during signal transmission. In multiple access reception or multiple access transmission, the first device may perform multiple access reception of the first signal based on the resource grouping associated with the signal grouping of the first signal. The first signal is a signal sent by the second device, and the second device is any one of a network device, a relay device, and a terminal device.

[0723] 3.2. Association between the signal grouping and the resource grouping of the second signal.

[0724] The association between the signal grouping of the second signal and the resource grouping is used to indicate the resources used by the signal grouping of the second signal during signal transmission. During multiple access reception or multiple access transmission, the first device may perform multiple access transmission of the second signal based on the resource grouping associated with the signal grouping of the second signal. The second signal is a signal transmitted by a third device, which is any one of a network device, a relay device, and a terminal device.

[0725] 3.3. Association between the device group and the resource group of the first device.

[0726] The association between the device group of the first device and the resource group is used to indicate the resources used by the device group of the first device during signal transmission. During multiple access reception or multiple access transmission, the first device can perform multiple access reception of the first signal and / or multiple access transmission of the second signal based on the resource group associated with the device group of the first device.

[0727] In the above embodiment, the content included in the first indication information is introduced. Based on the first indication information, it can be determined whether the second device is receiving multiple addresses of the first signal and / or sending multiple addresses of the second signal to the third device. The first indication information is obtained based on at least one of the following methods 4.1 to 4.5:

[0728] 4.1. Protocol pre-configuration information

[0729] The first indication information may be protocol pre-configuration information. The first device may determine the multiple access reception of the first signal sent by the second device and / or the multiple access transmission of the second signal to the third device based on the protocol pre-configuration information.

[0730] 4.2. The first downlink indication signal indicates that the first downlink indication signal includes grouping information.

[0731] The first indication information may include group information. The group information is carried in the first downlink indication signal. The group information may be indicated by the first downlink indication signal.

[0732] 4.3. The second downlink indication signal indicates that the second downlink indication signal includes packet resource information.

[0733] The first indication information may include group resource information. The group resource information is carried in the second downlink indication signal. The group resource information may be indicated by the second downlink indication signal.

[0734] 4.4. The third downlink indication signal indicates that the third downlink indication signal includes an association relationship between the group information and the group resource information.

[0735] The first indication information may include an association relationship between the group information and the group resource information. The association relationship between the group information and the group resource information is carried in a third downlink indication signal. The third downlink indication signal may indicate the association relationship between the group information and the group resource information.

[0736] The first indication information may be obtained in a manner indicated by at least one downlink indication signal, where the at least one downlink indication signal includes at least one of a first downlink indication signal, a second downlink indication signal, and a third downlink indication signal.

[0737] Any two or three of the first downlink indication signal, the second downlink indication signal and the third downlink indication signal may be the same downlink indication signal or different downlink indication signals.

[0738] 4.5. Device pre-stored information

[0739] The first indication information may be device pre-stored information, which may be stored in the first device, the second device, and the third device. The first device may determine the multiple access reception of the first signal sent by the second device and / or the multiple access transmission of the second signal to the third device based on the device pre-stored information.

[0740] For any signal among the first signal and the second signal, the multiple access transmission mode of the signal may include at least one of TDMA, FDMA, SDMA, and CDMA.

[0741] Different types of signals can use the same multiple access transmission mode or different multiple access transmission modes. Specifically, at least one type of signal can use a multiple access transmission mode. The multiple access transmission mode of an uplink signal can be different from that of a downlink signal, such as the excitation signal and the uplink reflected signal, or the excitation signal and the uplink transmit signal. Different downlink signals can also use different multiple access transmission modes, such as the query signal carrying control information and the excitation signal.

[0742] The following describes specific implementations of different multiple access transmission modes with reference to the accompanying drawings.

[0743] The second device sends a first downlink indication signal (for example, a query signal) to the first device. The downlink indication signal carries downlink control information, that is, packet information.

[0744] First, the implementation process of the TDMA transmission method is introduced. In the following embodiment, the first device is an A-IoT device as an example.

[0745] Different signals of multiple devices (groups) can use the same multiple access transmission method or different multiple access transmission methods, wherein the signal includes a first signal and / or a second signal, the first signal includes at least one of a downlink indication signal, an excitation signal, and a carrier signal carrying downlink control information, and the second signal includes an uplink reflection signal and / or an uplink transmission signal.

[0746] The present application embodiment uses the TDMA transmission mode as an example to illustrate that different A-IoT devices (groups) transmit the first signal and / or the second signal at different time intervals. Specifically, the following implementation methods 1 to 3 may be included:

[0747] Implementation method 1: Different A-IoT devices (groups) receive downlink indication signals carrying downlink control information at different time periods.

[0748] Different A-IoT devices (groups) can determine the corresponding downlink indication signal receiving time point / receiving time period based on the first indication information, wherein the corresponding downlink indication signal receiving time point / receiving time period can be one or more of multiple sending locations within a specific time point or a specific time period.

[0749] Figure 6 The multi-access transmission example provided in this application Figure 1 ,like Figure 6 As shown in FIG, an example is that the query signal is transmitted through the TDMA transmission mode, wherein the horizontal axis represents time and the vertical axis represents frequency.

[0750] like Figure 6As shown, the downlink indication signal is sent periodically or multiple times within a specific time period. Different periods of the downlink indication signal correspond to different A-IoT devices (groups), or different downlink indication signals correspond to different A-IoT devices (groups). Different periods of the downlink indication signal are as follows: Figure 6 In the first and second cycle examples, different A-IoT devices (groups) are as follows Figure 6 Examples of device (group) 1 and device (group) 2 in .

[0751] exist Figure 6 In the example, the first downlink indication signal can be sent by broadcast or by multicast. The first downlink indication signal includes grouping information. Based on the grouping information, each A-IoT device (group) can determine the time domain position of receiving its own second downlink indication signal.

[0752] For example, the device grouping of each A-IoT device (group) can be determined through the device grouping information, and the time domain resources for each A-IoT device (group) to receive the second downlink indication signal can be determined by combining the association between the device grouping of each A-IoT device (group) and the time domain resource grouping.

[0753] Taking the device grouping information including the device grouping identifier and the device grouping criterion as an example, where the device grouping criterion is to take the modulus of the device grouping identifier, each A-IoT device (group) performs a modulus value calculation based on its device grouping identifier ID to determine the corresponding device group, and combines the association between the device grouping of each A-IoT device (group) and the time domain resource grouping to determine the time domain resources for each A-IoT device (group) to receive the second downlink indication signal.

[0754] Taking the first correspondence information including the correspondence between the first device and the signal group of at least one signal in the first signal, or the correspondence between the device group of the first device and the signal group of at least one signal in the first signal as an example, each A-IoT device (group) can determine the signal group of the second downlink indication signal based on the first correspondence information, obtain the index of the signal group of the second downlink indication signal, and determine the time domain resources for each A-IoT device (group) to receive the second downlink indication signal in combination with the association between the group information and the group resource information.

[0755] Downlink indication signals corresponding to different A-IoT devices (groups) (such as Figure 6The second downlink indication signal in the A-IoT device (group) carries the time-frequency resource information of at least one of the excitation signal and the uplink reflected signal / uplink transmitted signal of the A-IoT device (group), wherein the second downlink indication signal may also indicate the time-frequency resource information of at least one of the excitation signal and the uplink reflected signal / uplink transmitted signal of at least one A-IoT device in the A-IoT device (group). The time-frequency resource information of at least one of the excitation signal and the uplink reflected signal / uplink transmitted signal of at least one A-IoT device in the A-IoT device (group) may have the same time interval as the second downlink indication signal.

[0756] like Figure 6 As shown, through the indication of the first downlink indication signal, the A-IoT device of device (group) 1 receives the second downlink indication signal at a time domain position corresponding to the first period, and sends an uplink reflection signal or an uplink transmission signal within the first period; the A-IoT device of device (group) 2 receives the second downlink indication signal at a time domain position corresponding to the second period, and sends an uplink reflection signal or an uplink transmission signal within the second period.

[0757] Implementation method 2: Different A-IoT devices (groups) receive excitation signals at different time periods.

[0758] Different A-IoT devices (groups) obtain time domain position-related information of the excitation signal received by the A-IoT device (group) based on the first indication information, wherein the method for obtaining the first indication information may include at least one of protocol pre-configuration information, downlink indication signal indication, and device pre-stored information. The downlink indication signal indication method can be indicated by at least one of a first downlink indication signal carrying group information, a second downlink indication signal carrying group resource information, and a third downlink indication signal carrying an association relationship between group information and group resource information.

[0759] The first indication information is used to determine the time domain location-related information of the A-IoT device (group) receiving the excitation signal, and may include, for example, at least one of the following:

[0760] The time interval between the A-IoT device (group) receiving the excitation signal and the start position of the downlink indication signal. The time interval corresponding to different A-IoT devices (groups) can be the same or different;

[0761] The time interval between the A-IoT device (group) receiving the excitation signal and the termination position of the downlink indication signal. The time interval corresponding to different A-IoT devices (groups) can be the same or different;

[0762] At least one of the start time, duration, and end time of the A-IoT device (group) receiving the excitation signal, for example, indicating that the excitation signal starts to be received at time point i;

[0763] A-IoT device identification;

[0764] A-IoT device group identifier;

[0765] The identifier of the downlink indication signal group;

[0766] The identifier or index of the stimulus signal;

[0767] Signal type indication information.

[0768] For the case where the first indication information carried by the downlink indication signal is used to indicate the excitation signal of different A-IoT devices (groups), there are many different implementation methods. Figure 7 and Figure 8 Make an introduction.

[0769] Figure 7 The multi-access transmission example provided in this application Figure 2 ,like Figure 7 As shown in FIG, an example is that the excitation signal is sent through a TDMA transmission mode, wherein the horizontal axis represents time and the vertical axis represents frequency.

[0770] exist Figure 7 In the example, the resource location of the excitation signal of one or more A-IoT devices (groups) can be indicated by the information in the same downlink indication signal, that is, different A-IoT devices (groups) have independent information indication fields.

[0771] like Figure 7 As shown, the downlink indication signal indicates that the time interval between the time domain start position of the excitation signal received by device (group) 1 and the time domain end position of the downlink indication signal is Gap1. Based on Gap1 and the time domain end position of the downlink indication signal of device (group) 1, the time domain start position of the excitation signal received by device (group) 1 can be determined. The downlink indication signal indicates that the time interval between the time domain start position of the excitation signal received by device (group) 2 and the time domain end position of the downlink indication signal is Gap2. Based on Gap2 and the time domain end position of the downlink indication signal of device (group) 2, the time domain start position of the excitation signal received by device (group) 2 can be determined.

[0772] Figure 8 The multi-access transmission example provided in this application Figure 3 ,like Figure 8 As shown in FIG, an example is that the excitation signal is sent through a TDMA transmission mode, wherein the horizontal axis represents time and the vertical axis represents frequency.

[0773] exist Figure 8 In the example, the resource location information of the excitation signals for different A-IoT devices (groups) is independently indicated by the information in the downlink indication signal. That is, the downlink indication signal carries the identifier of the A-IoT device (group) and the resource location information of the corresponding excitation signal. Only when the A-IoT device (group) receives the excitation signal corresponding to the device (group) identifier can it receive the excitation signal at the resource location of the corresponding excitation signal.

[0774] like Figure 8 As shown, the downlink indication signal includes the identifier of device (group) 2 and the resource location information for device (group) 2 to receive the excitation signal, indicating that the time interval between the time domain start position of device (group) 2 receiving the excitation signal and the time domain end position of the downlink indication signal is Gap2. Based on the indication of the downlink indication signal, device (group) 2 receives the corresponding excitation signal at the corresponding time domain position.

[0775] Furthermore, after receiving the excitation signal, at least one A-IoT device (group) transmits an uplink reflected signal or an uplink transmitted signal at a specific time or a specific time interval. The specific time interval includes the time interval between the time domain start position / time domain end position of the corresponding downlink indication signal, or the time domain start position / time domain end position of the corresponding excitation signal, etc. The specific time intervals corresponding to different A-IoT devices (groups) can be equal or different values.

[0776] Implementation method three: Different A-IoT devices (groups) send uplink reflected signals and / or uplink transmitted signals at different time periods.

[0777] Different A-IoT devices (groups) obtain information related to the time domain position of the uplink reflection signal and / or uplink transmission signal sent by the A-IoT device (group) based on the first indication information, wherein the method for obtaining the first indication information may include at least one of the protocol pre-configuration information, the downlink indication signal indication, and the device pre-stored information. The downlink indication signal indication method can be indicated by at least one of the first downlink indication signal carrying grouping information, the second downlink indication signal carrying grouping resource information, and the third downlink indication signal carrying the association relationship between the grouping information and the grouping resource information.

[0778] The first indication information is used to determine the time domain location information of the uplink reflected signal and / or uplink transmitted signal sent by the A-IoT device (group). For the case where the first indication information carried by the downlink indication signal is used to indicate the uplink reflected signal and / or uplink transmitted signal of different A-IoT devices (groups), there are many different implementation methods. Figure 9 and Figure 10 Make an introduction.

[0779] Figure 9 The multi-access transmission example provided in this application Figure 4 ,like Figure 9 As shown, an example is that the uplink reflected signal / uplink transmitted signal is transmitted through the TDMA transmission mode, wherein the horizontal axis represents time and the vertical axis represents frequency.

[0780] exist Figure 9 In the example, the downlink indication signal and the excitation signal are common signals of the cell or A-IoT device (group), that is, signals sent in a broadcast or multicast manner. The first indication information carried by the downlink indication signal is used to indicate the time domain position of at least one A-IoT device (group) to send an uplink reflection signal or an uplink transmission signal. Figure 9 In the example, the time domain resource location of the uplink reflected signal / uplink transmitted signal of one or more A-IoT devices (groups) can be indicated by the information in the same downlink indication signal, that is, different A-IoT devices (groups) have independent information indication fields. Figure 9 As shown, the downlink indication signal indicates that the time interval between the time domain termination position of the uplink reflection signal / uplink transmission signal sent by device (group) 1 and the downlink indication signal is Gap1, and also indicates that the time interval between the time domain termination position of the uplink reflection signal / uplink transmission signal sent by device (group) 2 and the downlink indication signal is Gap2.

[0781] Figure 10 The multi-access transmission example provided in this application Figure 5 ,like Figure 10 As shown, an example is that the uplink reflected signal / uplink transmitted signal is transmitted through the TDMA transmission mode, wherein the horizontal axis represents time and the vertical axis represents frequency.

[0782] The downlink indication signal is a signal common to a cell or A-IoT device (group), meaning it is sent in a broadcast format. The excitation signal is a signal common to the A-IoT device group, meaning it is multicast, with different excitation signals corresponding to different A-IoT device groups. The first indication information carried by the downlink indication signal indicates the time domain location at which at least one A-IoT device should transmit an uplink reflected signal / uplink transmitted signal within the time window of the corresponding excitation signal.

[0783] exist Figure 10In the example, the time domain resource location of the uplink reflection signal / uplink transmission signal of different A-IoT devices (groups) is independently indicated by the information in the downlink indication signal, that is, the downlink indication signal carries the identifier of the A-IoT device (group) and the time domain resource location information of the corresponding uplink reflection signal / uplink transmission signal. Only when the A-IoT device (group) receives the corresponding device (group) identifier can it send the uplink reflection signal / uplink transmission signal at the time domain resource location of the corresponding uplink reflection signal / uplink transmission signal. Figure 10 As shown, the downlink indication signal includes the identifier of device (group) 2 and the time domain resource location information for transmitting the uplink reflected signal / uplink transmit signal by device (group) 2. This indicates that the time interval between the time domain start position of transmitting the uplink reflected signal / uplink transmit signal by device (group) 2 and the time domain end position of the downlink indication signal is Gap2. Based on the indication of the downlink indication signal, device (group) 2 transmits the corresponding uplink reflected signal / uplink transmit signal at the corresponding time domain resource location.

[0784] The following combination Figure 11 and Figure 12 Summarize and introduce the TDMA transmission method.

[0785] Figure 11 The multi-access transmission example provided in this application Figure 6 , Figure 12 The multi-access transmission example provided in this application Figure 7 ,like Figure 11 and Figure 12 As shown in FIG. 1 , an example is shown in which a signal is sent through a TDMA transmission mode, wherein the horizontal axis represents time and the vertical axis represents frequency.

[0786] exist Figure 11 In the example, the information carried in the first downlink indication signal indicates that device (group) 1 receives the excitation signal at the corresponding position in the time domain resource position within the first period, and sends an uplink reflection signal or an uplink transmission signal within the first period; device (group) 2 receives the excitation signal at the corresponding position in the time domain resource position within the second period, and sends an uplink reflection signal or an uplink transmission signal within the second period. The information carried in the second downlink indication signal further indicates the time domain resource position for sending the uplink reflection signal or the uplink transmission signal. Figure 11 As shown, for example, it may include the time interval between the uplink reflection signal / uplink transmission signal sent by device (group) 1 and the resource starting position of the second downlink indication signal, the time interval between the uplink reflection signal / uplink transmission signal sent by device (group) 1 and the resource ending position of the second downlink indication signal, and so on.

[0787] exist Figure 12In the example, the information carried in the first downlink indication signal indicates that device (group) 1 receives the excitation signal at the corresponding position in the time domain resource position within the first period, and sends an uplink reflection signal or an uplink transmission signal within the first period; device (group) 2 receives the excitation signal at the corresponding position in the time domain resource position within the second period, and sends an uplink reflection signal or an uplink transmission signal within the second period. The information carried in the second downlink indication signal further indicates the time domain resource position for sending the uplink reflection signal or the uplink transmission signal. Figure 12 As shown, the resource location information of the excitation signal, uplink reflected signal, and uplink transmission signal of different A-IoT devices (groups) is independently indicated by the information in the second downlink indication signal, that is, the second downlink indication signal carries the identifier of the A-IoT device (group) and the corresponding resource location information of the excitation signal, uplink reflected signal, and uplink transmission signal. Figure 12 As shown, two different second downlink indication signals are used to respectively indicate the resource location information of the excitation signal, uplink reflected signal, and uplink transmitted signal of each of device (group) 1 and device (group) 2. The resource location information may, for example, include the time interval between the device (group) sending the uplink reflected signal / uplink transmitted signal and the resource starting position of the second downlink indication signal, the time interval between the device (group) sending the uplink reflected signal / uplink transmitted signal and the resource ending position of the second downlink indication signal, and so on.

[0788] The implementation process of the FDMA transmission method is introduced below.

[0789] Different signals of multiple devices (groups) can use the same multiple access transmission method or different multiple access transmission methods, wherein the signal includes a first signal and / or a second signal, the first signal includes at least one of a downlink indication signal, an excitation signal, and a carrier signal carrying downlink control information, and the second signal includes an uplink reflection signal and / or an uplink transmission signal.

[0790] The present application embodiment uses the FDMA transmission mode as an example to illustrate that different A-IoT devices (groups) receive the first signal and / or send the second signal at different time intervals. Specifically, the following implementation methods 4 to 5 may be included.

[0791] Implementation method 4: Each A-IoT device (group) uses FDMA transmission to send uplink reflection signals / uplink transmission signals.

[0792] The downlink indication signal is sent at full bandwidth to indicate information related to the receiving resources of the excitation signal and / or information related to the sub-band where the A-IoT device (group) sends the uplink reflected signal / uplink transmitted signal.

[0793] The following combination Figure 13 The fourth implementation method is introduced. Figure 13 The multi-access transmission example provided in this application Figure 8 ,like Figure 13 As shown in FIG. 1 , an example is that a signal is sent through an FDMA transmission mode, wherein the horizontal axis represents time and the vertical axis represents frequency.

[0794] like Figure 13 As shown, the downlink indication signal indicates the offset between the frequency domain resource position of the excitation signal and the frequency domain resource position of the uplink reflection signal / uplink transmission signal sent by the A-IoT device (group). Based on the offset and the frequency domain resource position of the excitation signal, the frequency domain resource position of the uplink reflection signal / uplink transmission signal sent by the A-IoT device (group) can be obtained.

[0795] Implementation method five: The excitation signal is received using FDMA, and the downlink indication signal is sent at the full bandwidth. The second device can perform frequency division multiplexing (FDM) on at least one excitation signal through the downlink indication signal, that is, the excitation signals are sent separately on different sub-bandwidths, corresponding to different A-IoT devices (groups).

[0796] The following combination Figure 14 Implementation method five is introduced. Figure 14 The multi-access transmission example provided in this application Figure 9 ,like Figure 14 As shown in FIG, an example is given in which a signal is transmitted in an FDMA transmission manner, wherein the horizontal axis represents time and the vertical axis represents frequency.

[0797] like Figure 14 As shown, the downlink indication signal indicates the offset between the frequency domain resource position of the excitation signal and the frequency domain resource position of the uplink reflection signal / uplink transmission signal sent by the A-IoT device (group). Based on the offset and the frequency domain resource position of the excitation signal, the frequency domain resource position of the uplink reflection signal / uplink transmission signal sent by the A-IoT device (group) can be obtained.

[0798] When an A-IoT device can receive signals in a sub-bandwidth, it can perform filtering. The A-IoT device (or group) transmits an uplink reflected signal / uplink transmitted signal based on the grouping information of the downlink indication signal and information related to the excitation signal. The frequency domain resource location where the A-IoT device (or group) transmits the uplink reflected signal / uplink transmitted signal is offset from the frequency domain resource location of the corresponding excitation signal.

[0799] The following describes the implementation process of the CDMA transmission method. In the following embodiments, the first device is an A-IoT device as an example.

[0800] Different signals of multiple devices (groups) can use the same multiple access transmission method or different multiple access transmission methods, wherein the signal includes a first signal and / or a second signal, the first signal includes at least one of a downlink indication signal, an excitation signal, and a carrier signal carrying downlink control information, and the second signal includes an uplink reflection signal and / or an uplink transmission signal.

[0801] The embodiment of the present application uses CDMA transmission as an example to illustrate that different A-IoT devices (groups) transmit the first signal and / or the second signal at different time intervals. Specifically, the following implementation methods 6 to 7 may be included.

[0802] Implementation method six: The downlink indication signal uses CDMA to group A-IoT devices (groups).

[0803] For example, the first downlink indication signal sends a first parameter to the A-IoT device. The first parameter is a parameter used to generate grouping information and is used to determine device grouping. The first parameter can be used to determine at least one of the signal grouping of the second downlink indication signal, the signal grouping of the excitation signal, the signal grouping of the uplink reflected signal, and the signal grouping of the uplink transmitted signal.

[0804] After receiving the parameters for generating grouping information, the A-IoT device performs specific operations (such as modulus calculation) based on its own attribute parameters (such as device identification) to obtain the device grouping information of the A-IoT device. The relevant parameters or parameter sets for determining the grouping include at least the number of groups.

[0805] For example, the second downlink indication signals sent by different network devices or relay devices use a CDMA transmission method. The network device or relay device can send a second parameter to the A-IoT device via the first downlink indication signal. The second parameter is a relevant parameter used to identify the current cell or the corresponding packet sequence. When the A-IoT device receives multiple second downlink indication signals, the A-IoT device group determines the second downlink indication signal corresponding to the corresponding group based on the relevant parameter used to identify the current cell or the corresponding packet sequence.

[0806] Implementation method seven: The downlink indication signal uses CDMA to group A-IoT devices (groups).

[0807] The downlink indication signal sends information related to the reception and / or transmission sequence of the device group to the A-IoT device. For example, it may include information related to the codeword used to distinguish it from other devices. This information can be used by the A-IoT device to generate a sequence for identifying itself. This sequence can be mutually orthogonal to other devices that simultaneously transmit uplink reflected signals / uplink transmitted signals. For example, the sequence may include an M sequence, a Gold sequence, a ZC sequence, etc. The relevant information carried by the uplink reflected signal / uplink transmitted signal sent by the A-IoT device may include, for example, the initial value, cyclic shift, or root sequence of the corresponding sequence.

[0808] The following describes the implementation process of the SDMA transmission method. In the following embodiment, the first device is an A-IoT device as an example.

[0809] Different signals of multiple devices (groups) can use the same multiple access transmission method or different multiple access transmission methods, wherein the signal includes a first signal and / or a second signal, the first signal includes at least one of a downlink indication signal, an excitation signal, and a carrier signal carrying downlink control information, and the second signal includes an uplink reflection signal and / or an uplink transmission signal.

[0810] The embodiment of the present application uses the SDMA transmission mode for example to illustrate that different A-IoT devices (groups) receive the first signal and / or send the second signal at different time intervals.

[0811] Implementation method eight: The downlink indication signal is sent using different beams. The downlink indication signal carries beam grouping information, as well as the excitation signal and the resource location information of the uplink reflection signal / uplink transmission signal sent by the A-IoT device (group). The beam grouping information is used to indicate the device grouping information related to the beam. Different device groups use different beams for signal multiple access reception or multiple access transmission.

[0812] Implementation method nine: The downlink indication signal carries identification information for identifying the uplink reflected signal and / or uplink transmitted signal of the received excitation signal under different beams. The excitation signal received by the A-IoT device (group) is sent under different beams, and the uplink reflected signal / uplink transmitted signal is sent based on the excitation signal under the current beam. The third device groups and receives the uplink reflected signal / uplink transmitted signal sent by the A-IoT device (group) based on different beams.

[0813] Figure 15 The multi-access transmission example provided in this application Figure 10 ,like Figure 15 As shown in FIG, the example is that the signal is transmitted through the SDMA transmission mode. Figure 15In the example, there are three beams, namely beam 1, beam 2, and beam 3. Different beams represent different airspace resources. Figure 15 In the example, there are three different A-IoT devices (groups): device (group) 1, device (group) 2, and device (group) 3. Device (group) 1 and the third device perform multiple access transmission of signals via beam 1; device (group) 2 and the third device perform multiple access transmission of signals via beam 2; and device (group) 3 and the third device perform multiple access transmission of signals via beam 3.

[0814] In summary, the solution of the present application realizes multiple access transmission of the signal of the first device based on the first indication information, including different multiple access transmission modes such as TDMA, FDMA, CDMA, SDMA, etc., reducing the interference caused by simultaneous access collisions of multiple devices, thereby improving the network capacity for the device.

[0815] Figure 16 A schematic diagram of the structure of a first device provided in an embodiment of the present application is shown in FIG. Figure 16 As shown, the first device includes a memory 1620, a transceiver 1600, and a processor 1610, wherein:

[0816] The memory 1620 is used to store computer programs. The transceiver 1600 is used to send and receive data under the control of the processor 1610. The processor 1610 is used to read the computer program in the memory 1620 and perform the following operations:

[0817] Based on the first indication information, determine multiple access reception of the first signal sent by the second device and / or multiple access transmission of the second signal sent to the third device.

[0818] Specifically, the transceiver 1600 is configured to receive and send data under the control of the processor 1610 .

[0819] Among them, Figure 16 In the embodiment, the bus architecture may include any number of interconnected buses and bridges, specifically linking together various circuits of one or more processors represented by processor 1610 and memory represented by memory 1620. The bus architecture may also link together various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are all well known in the art and, therefore, will not be described further herein. The bus interface provides an interface. The transceiver 1600 may be a plurality of components, namely, a transmitter and a receiver, providing a unit for communicating with various other devices on a transmission medium, such as a wireless channel, a wired channel, an optical cable, and the like. The processor 1610 is responsible for managing the bus architecture and general processing, and the memory 1620 may store data used by the processor 1610 when performing operations.

[0820] In some embodiments, the processor 1610 may be a central processing unit (CPU), an application specific integrated circuit (ASIC), a field programmable gate array (FPGA), or a complex programmable logic device (CPLD). The processor may also adopt a multi-core architecture.

[0821] The processor calls the computer program stored in the memory to execute any method provided in the embodiments of the present application according to the obtained executable instructions. The processor and the memory can also be arranged physically separately.

[0822] In one possible implementation, the first signal includes at least one of the following:

[0823] Downlink indication signal, a signal used to carry downlink control information;

[0824] Excitation signal, used to trigger or carry uplink signals;

[0825] Carrier signal, used to carry uplink signals.

[0826] In one possible implementation, the second signal includes at least one of the following:

[0827] Uplink reflected signal;

[0828] Send uplink signal.

[0829] In a possible implementation manner, the first indication information includes at least one of the following:

[0830] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0831] Group resource information, used to indicate group information of resources for receiving the first signal and / or sending the second signal, and / or an association relationship between resources for receiving the first signal and resources for sending the second signal;

[0832] The association relationship between the group information and the group resource information.

[0833] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0834] Protocol pre-configuration information;

[0835] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0836] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0837] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0838] Device pre-stored information.

[0839] In a possible implementation, the grouping information includes at least one of the following:

[0840] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0841] Device grouping information, used to indicate the device grouping of the first device;

[0842] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0843] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0844] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0845] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0846] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0847] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0848] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0849] an association relationship between the signal grouping and the resource grouping of the first signal;

[0850] an association relationship between the signal grouping and the resource grouping of the second signal;

[0851] The association relationship between the device group and the resource group of the first device.

[0852] In a possible implementation manner, the association relationship between the resource for receiving the first signal and the resource for sending the second signal includes at least one of the following:

[0853] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0854] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0855] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0856] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0857] In a possible implementation manner, the second device is any one of a network device, a relay device, and a terminal device;

[0858] and / or,

[0859] The third device is any one of a network device, a relay device, and a terminal device.

[0860] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0861] Number of signal groups;

[0862] Identification of the signal group;

[0863] The index of the signal group;

[0864] Signal type indication information;

[0865] Second correspondence information between signal groups of different signals in the at least one signal.

[0866] In one possible implementation, the device grouping information includes at least one of the following:

[0867] Device group identification;

[0868] Device group index;

[0869] The relationship between devices and device groups;

[0870] Equipment grouping criteria;

[0871] The first parameter is used to determine the device grouping;

[0872] The second parameter is used to identify the cell or group sequence;

[0873] Information about the sequence of receiving and / or sending device groups;

[0874] Beam grouping information, used to indicate beam-related device grouping information;

[0875] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0876] In a possible implementation manner, the group resource information includes at least one of the following:

[0877] Time domain resource grouping information;

[0878] Frequency domain resource grouping information;

[0879] Code domain resource grouping information;

[0880] Airspace resource grouping information.

[0881] In one possible implementation,

[0882] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0883] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0884] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0885] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0886] It should be noted here that the above-mentioned first device provided in the embodiment of the present application can implement all the method steps implemented by the method embodiment in which the execution subject is the first device, and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as those of the method embodiment will not be described in detail here.

[0887] Figure 17A schematic diagram of the structure of a second device provided in an embodiment of the present application is shown in FIG. Figure 17 As shown, the second device includes a memory 1720, a transceiver 1700, and a processor 1710, wherein:

[0888] The memory 1720 is used to store computer programs; the transceiver 1700 is used to send and receive data under the control of the processor 1710; the processor 1710 is used to read the computer program in the memory 1720 and perform the following operations:

[0889] Sending a first signal to the first device based on the first indication information;

[0890] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[0891] Specifically, the transceiver 1700 is configured to receive and send data under the control of the processor 1710 .

[0892] Among them, Figure 17 In the embodiment, the bus architecture may include any number of interconnected buses and bridges, specifically linking together various circuits of one or more processors represented by processor 1710 and memory represented by memory 1720. The bus architecture may also link together various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are all well known in the art and, therefore, will not be described further herein. The bus interface provides an interface. The transceiver 1700 may be a plurality of components, namely, a transmitter and a receiver, providing a unit for communicating with various other devices on a transmission medium, such as a wireless channel, a wired channel, an optical cable, and the like. The processor 1710 is responsible for managing the bus architecture and general processing, and the memory 1720 may store data used by the processor 1710 when performing operations.

[0893] Optionally, the processor 1710 may be a CPU, an ASIC, an FPGA, or a CPLD, and the processor may also adopt a multi-core architecture.

[0894] The processor calls the computer program stored in the memory to execute any method provided in the embodiments of the present application according to the obtained executable instructions. The processor and the memory can also be arranged physically separately.

[0895] In one possible implementation, the first signal includes at least one of the following:

[0896] Downlink indication signal, a signal used to carry downlink control information;

[0897] Excitation signal, used to trigger or carry uplink signals;

[0898] Carrier signal, used to carry uplink signals.

[0899] In one possible implementation, the second signal includes at least one of the following:

[0900] Uplink reflected signal;

[0901] Send uplink signal.

[0902] In a possible implementation manner, the first indication information includes at least one of the following:

[0903] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0904] Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal;

[0905] The association relationship between the group information and the group resource information.

[0906] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0907] Protocol pre-configuration information;

[0908] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0909] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0910] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0911] Device pre-stored information.

[0912] In a possible implementation, the grouping information includes at least one of the following:

[0913] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0914] Device grouping information, used to indicate the device grouping of the first device;

[0915] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0916] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0917] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0918] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0919] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0920] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0921] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0922] an association relationship between the signal grouping and the resource grouping of the first signal;

[0923] an association relationship between the signal grouping and the resource grouping of the second signal;

[0924] The association relationship between the device group and the resource group of the first device.

[0925] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[0926] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0927] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0928] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[0929] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[0930] In a possible implementation, the second device is any one of a network device, a relay device, and a terminal device.

[0931] In a possible implementation manner, the signal grouping information includes at least one of the following:

[0932] Number of signal groups;

[0933] Identification of the signal group;

[0934] The index of the signal group;

[0935] Signal type indication information;

[0936] Second correspondence information between signal groups of different signals in the at least one signal.

[0937] In one possible implementation, the device grouping information includes at least one of the following:

[0938] Device group identification;

[0939] Device group index;

[0940] The relationship between devices and device groups;

[0941] Equipment grouping criteria;

[0942] The first parameter is used to determine the device grouping;

[0943] The second parameter is used to identify the cell or group sequence;

[0944] Information about the sequence of receiving and / or sending device groups;

[0945] Beam grouping information, used to indicate beam-related device grouping information;

[0946] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[0947] In a possible implementation manner, the group resource information includes at least one of the following:

[0948] Time domain resource grouping information;

[0949] Frequency domain resource grouping information;

[0950] Code domain resource grouping information;

[0951] Airspace resource grouping information.

[0952] In one possible implementation,

[0953] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[0954] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[0955] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[0956] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[0957] It should be noted here that the above-mentioned second device provided in the embodiment of the present application can implement all the method steps implemented by the method embodiment in which the execution subject is the second device, and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as those of the method embodiment will not be described in detail here.

[0958] Figure 18 A schematic diagram of the structure of a third device provided in an embodiment of the present application is shown in FIG. Figure 18 As shown, the third device includes a memory 1820, a transceiver 1800, and a processor 1810, wherein:

[0959] The memory 1820 is used to store computer programs. The transceiver 1800 is used to send and receive data under the control of the processor 1810. The processor 1810 is used to read the computer program in the memory 1820 and perform the following operations:

[0960] receiving, based on the first indication information, a second signal sent by the first device;

[0961] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[0962] Specifically, the transceiver 1800 is configured to receive and send data under the control of the processor 1810 .

[0963] Among them, Figure 18In the embodiment, the bus architecture may include any number of interconnected buses and bridges, specifically linking together various circuits of one or more processors represented by processor 1810 and memory represented by memory 1820. The bus architecture may also link together various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are all well known in the art and, therefore, will not be described further herein. The bus interface provides an interface. The transceiver 1800 may be a plurality of components, namely, a transmitter and a receiver, providing a unit for communicating with various other devices on a transmission medium, such as a wireless channel, a wired channel, an optical cable, and the like. The processor 1810 is responsible for managing the bus architecture and general processing, and the memory 1820 may store data used by the processor 1810 when performing operations.

[0964] Optionally, the processor 1810 may be a CPU, an ASIC, an FPGA, or a CPLD, and the processor may also adopt a multi-core architecture.

[0965] The processor calls the computer program stored in the memory to execute any method provided in the embodiments of the present application according to the obtained executable instructions. The processor and the memory can also be arranged physically separately.

[0966] In one possible implementation, the first signal includes at least one of the following:

[0967] Downlink indication signal, a signal used to carry downlink control information;

[0968] Excitation signal, used to trigger or carry uplink signals;

[0969] Carrier signal, used to carry uplink signals.

[0970] In one possible implementation, the second signal includes at least one of the following:

[0971] Uplink reflected signal;

[0972] Send uplink signal.

[0973] In a possible implementation manner, the first indication information includes at least one of the following:

[0974] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[0975] Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal;

[0976] The association relationship between the group information and the group resource information.

[0977] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[0978] Protocol pre-configuration information;

[0979] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[0980] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[0981] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[0982] Device pre-stored information.

[0983] In a possible implementation, the grouping information includes at least one of the following:

[0984] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[0985] Device grouping information, used to indicate the device grouping of the first device;

[0986] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[0987] In a possible implementation manner, the first correspondence information includes at least one of the following:

[0988] a correspondence between the first device and a signal group of at least one signal in the first signals;

[0989] a correspondence between the first device and a signal group of at least one signal in the second signal;

[0990] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[0991] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[0992] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[0993] an association relationship between the signal grouping and the resource grouping of the first signal;

[0994] an association relationship between the signal grouping and the resource grouping of the second signal;

[0995] The association relationship between the device group and the resource group of the first device.

[0996] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[0997] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[0998] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[0999] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[1000] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[1001] In a possible implementation, the third device is any one of a network device, a relay device, and a terminal device.

[1002] In a possible implementation manner, the signal grouping information includes at least one of the following:

[1003] Number of signal groups;

[1004] Identification of the signal group;

[1005] The index of the signal group;

[1006] Signal type indication information;

[1007] Second correspondence information between signal groups of different signals in the at least one signal.

[1008] In one possible implementation, the device grouping information includes at least one of the following:

[1009] Device group identification;

[1010] Device group index;

[1011] The relationship between devices and device groups;

[1012] Equipment grouping criteria;

[1013] The first parameter is used to determine the device grouping;

[1014] The second parameter is used to identify the cell or group sequence;

[1015] Information about the sequence of receiving and / or sending device groups;

[1016] Beam grouping information, used to indicate beam-related device grouping information;

[1017] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[1018] In a possible implementation manner, the group resource information includes at least one of the following:

[1019] Time domain resource grouping information;

[1020] Frequency domain resource grouping information;

[1021] Code domain resource grouping information;

[1022] Airspace resource grouping information.

[1023] In one possible implementation,

[1024] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[1025] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[1026] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[1027] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[1028] It should be noted here that the above-mentioned third device provided in the embodiment of the present application can implement all the method steps implemented by the method embodiment in which the execution subject is the third device, and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as the method embodiment will not be described in detail here.

[1029] Figure 19 Schematic diagram of the structure of the multi-address transmission device provided in the embodiment of the present application Figure 1 ,like Figure 19 As shown, the device includes:

[1030] The processing module 191 is configured to determine, based on the first indication information, multiple access reception of a first signal sent by a second device and / or multiple access transmission of a second signal sent to a third device.

[1031] In one possible implementation, the first signal includes at least one of the following:

[1032] Downlink indication signal, a signal used to carry downlink control information;

[1033] Excitation signal, used to trigger or carry uplink signals;

[1034] Carrier signal, used to carry uplink signals.

[1035] In one possible implementation, the second signal includes at least one of the following:

[1036] Uplink reflected signal;

[1037] Send uplink signal.

[1038] In a possible implementation manner, the first indication information includes at least one of the following:

[1039] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[1040] Group resource information, used to indicate group information of resources for receiving the first signal and / or sending the second signal, and / or an association relationship between resources for receiving the first signal and resources for sending the second signal;

[1041] The association relationship between the group information and the group resource information.

[1042] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[1043] Protocol pre-configuration information;

[1044] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[1045] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[1046] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[1047] Device pre-stored information.

[1048] In a possible implementation, the grouping information includes at least one of the following:

[1049] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[1050] Device grouping information, used to indicate the device grouping of the first device;

[1051] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[1052] In a possible implementation manner, the first correspondence information includes at least one of the following:

[1053] a correspondence between the first device and a signal group of at least one signal in the first signals;

[1054] a correspondence between the first device and a signal group of at least one signal in the second signal;

[1055] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[1056] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[1057] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[1058] an association relationship between the signal grouping and the resource grouping of the first signal;

[1059] an association relationship between the signal grouping and the resource grouping of the second signal;

[1060] The association relationship between the device group and the resource group of the first device.

[1061] In a possible implementation manner, the association relationship between the resource for receiving the first signal and the resource for sending the second signal includes at least one of the following:

[1062] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[1063] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[1064] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[1065] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[1066] In a possible implementation manner, the second device is any one of a network device, a relay device, and a terminal device;

[1067] and / or,

[1068] The third device is any one of a network device, a relay device, and a terminal device.

[1069] In a possible implementation manner, the signal grouping information includes at least one of the following:

[1070] Number of signal groups;

[1071] Identification of the signal group;

[1072] The index of the signal group;

[1073] Signal type indication information;

[1074] Second correspondence information between signal groups of different signals in the at least one signal.

[1075] In one possible implementation, the device grouping information includes at least one of the following:

[1076] Device group identification;

[1077] Device group index;

[1078] The relationship between devices and device groups;

[1079] Equipment grouping criteria;

[1080] The first parameter is used to determine the device grouping;

[1081] The second parameter is used to identify the cell or group sequence;

[1082] Information about the sequence of receiving and / or sending device groups;

[1083] Beam grouping information, used to indicate beam-related device grouping information;

[1084] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[1085] In a possible implementation manner, the group resource information includes at least one of the following:

[1086] Time domain resource grouping information;

[1087] Frequency domain resource grouping information;

[1088] Code domain resource grouping information;

[1089] Airspace resource grouping information.

[1090] In one possible implementation,

[1091] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[1092] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[1093] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[1094] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[1095] Figure 20 Schematic diagram of the structure of the multi-address transmission device provided in the embodiment of the present application Figure 2 ,like Figure 20 As shown, the device includes:

[1096] The sending module 201 is configured to send a first signal to a first device based on the first indication information;

[1097] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[1098] In one possible implementation, the first signal includes at least one of the following:

[1099] Downlink indication signal, a signal used to carry downlink control information;

[1100] Excitation signal, used to trigger or carry uplink signals;

[1101] Carrier signal, used to carry uplink signals.

[1102] In one possible implementation, the second signal includes at least one of the following:

[1103] Uplink reflected signal;

[1104] Send uplink signal.

[1105] In a possible implementation manner, the first indication information includes at least one of the following:

[1106] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[1107] Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal;

[1108] The association relationship between the group information and the group resource information.

[1109] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[1110] Protocol pre-configuration information;

[1111] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[1112] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[1113] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[1114] Device pre-stored information.

[1115] In a possible implementation, the grouping information includes at least one of the following:

[1116] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[1117] Device grouping information, used to indicate the device grouping of the first device;

[1118] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[1119] In a possible implementation manner, the first correspondence information includes at least one of the following:

[1120] a correspondence between the first device and a signal group of at least one signal in the first signals;

[1121] a correspondence between the first device and a signal group of at least one signal in the second signal;

[1122] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[1123] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[1124] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[1125] an association relationship between the signal grouping and the resource grouping of the first signal;

[1126] an association relationship between the signal grouping and the resource grouping of the second signal;

[1127] The association relationship between the device group and the resource group of the first device.

[1128] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[1129] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[1130] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[1131] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[1132] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[1133] In a possible implementation, the second device is any one of a network device, a relay device, and a terminal device.

[1134] In a possible implementation manner, the signal grouping information includes at least one of the following:

[1135] Number of signal groups;

[1136] Identification of the signal group;

[1137] The index of the signal group;

[1138] Signal type indication information;

[1139] Second correspondence information between signal groups of different signals in the at least one signal.

[1140] In one possible implementation, the device grouping information includes at least one of the following:

[1141] Device group identification;

[1142] Device group index;

[1143] The relationship between devices and device groups;

[1144] Equipment grouping criteria;

[1145] The first parameter is used to determine the device grouping;

[1146] The second parameter is used to identify the cell or group sequence;

[1147] Information about the sequence of receiving and / or sending device groups;

[1148] Beam grouping information, used to indicate beam-related device grouping information;

[1149] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[1150] In a possible implementation manner, the group resource information includes at least one of the following:

[1151] Time domain resource grouping information;

[1152] Frequency domain resource grouping information;

[1153] Code domain resource grouping information;

[1154] Airspace resource grouping information.

[1155] In one possible implementation,

[1156] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[1157] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[1158] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[1159] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[1160] Figure 21 Schematic diagram of the structure of the multi-address transmission device provided in the embodiment of the present application Figure 3 ,like Figure 21 As shown, the device includes:

[1161] The receiving module 211 is configured to receive a second signal sent by the first device based on the first indication information;

[1162] The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

[1163] In one possible implementation, the first signal includes at least one of the following:

[1164] Downlink indication signal, a signal used to carry downlink control information;

[1165] Excitation signal, used to trigger or carry uplink signals;

[1166] Carrier signal, used to carry uplink signals.

[1167] In one possible implementation, the second signal includes at least one of the following:

[1168] Uplink reflected signal;

[1169] Send uplink signal.

[1170] In a possible implementation manner, the first indication information includes at least one of the following:

[1171] Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process;

[1172] Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal;

[1173] The association relationship between the group information and the group resource information.

[1174] In a possible implementation manner, the first indication information is obtained based on at least one of the following methods:

[1175] Protocol pre-configuration information;

[1176] An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information;

[1177] a second downlink indication signal indicating that the second downlink indication signal includes the group resource information;

[1178] a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information;

[1179] Device pre-stored information.

[1180] In a possible implementation, the grouping information includes at least one of the following:

[1181] Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal;

[1182] Device grouping information, used to indicate the device grouping of the first device;

[1183] The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

[1184] In a possible implementation manner, the first correspondence information includes at least one of the following:

[1185] a correspondence between the first device and a signal group of at least one signal in the first signals;

[1186] a correspondence between the first device and a signal group of at least one signal in the second signal;

[1187] a correspondence between a device group of the first device and a signal group of at least one signal in the first signal;

[1188] A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

[1189] In a possible implementation manner, the association relationship between the group information and the group resource information includes at least one of the following:

[1190] an association relationship between the signal grouping and the resource grouping of the first signal;

[1191] an association relationship between the signal grouping and the resource grouping of the second signal;

[1192] The association relationship between the device group and the resource group of the first device.

[1193] In a possible implementation manner, the association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following:

[1194] an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal;

[1195] an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal;

[1196] an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal;

[1197] The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

[1198] In a possible implementation, the third device is any one of a network device, a relay device, and a terminal device.

[1199] In a possible implementation manner, the signal grouping information includes at least one of the following:

[1200] Number of signal groups;

[1201] Identification of the signal group;

[1202] The index of the signal group;

[1203] Signal type indication information;

[1204] Second correspondence information between signal groups of different signals in the at least one signal.

[1205] In one possible implementation, the device grouping information includes at least one of the following:

[1206] Device group identification;

[1207] Device group index;

[1208] The relationship between devices and device groups;

[1209] Equipment grouping criteria;

[1210] The first parameter is used to determine the device grouping;

[1211] The second parameter is used to identify the cell or group sequence;

[1212] Information about the sequence of receiving and / or sending device groups;

[1213] Beam grouping information, used to indicate beam-related device grouping information;

[1214] The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

[1215] In a possible implementation manner, the group resource information includes at least one of the following:

[1216] Time domain resource grouping information;

[1217] Frequency domain resource grouping information;

[1218] Code domain resource grouping information;

[1219] Airspace resource grouping information.

[1220] In one possible implementation,

[1221] The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping;

[1222] The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported;

[1223] The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping;

[1224] The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

[1225] It should be noted that the division of units / modules in the above-mentioned embodiments of the present application is schematic and is only a logical functional division. In actual implementation, there may be other division methods. In addition, the functional units in the various embodiments of the present application may be integrated into a processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit. The above-mentioned integrated units may be implemented in the form of hardware or in the form of software functional units.

[1226] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a processor-readable storage medium. Based on this understanding, the technical solution of the present application is essentially or the part that contributes to the prior art or all or part of the technical solution can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for enabling a computer device (which can be a personal computer, server, or network device, etc.) or a processor to execute all or part of the steps of the various embodiments of the present application. The aforementioned storage medium includes: various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.

[1227] In some embodiments, a computer-readable storage medium is further provided. The computer-readable storage medium stores a computer program. The computer program is used to enable a computer to execute the multiple access transmission method provided by the above-mentioned method embodiments.

[1228] Specifically, the above-mentioned computer-readable storage medium provided in the embodiment of the present application can implement all the method steps implemented in the above-mentioned method embodiments, and can achieve the same technical effects. The parts and beneficial effects of this embodiment that are the same as the method embodiment will not be described in detail here.

[1229] It should be noted that computer-readable storage media can be any available media or data storage devices that can be accessed by the processor, including but not limited to magnetic storage (such as floppy disks, hard disks, magnetic tapes, magneto-optical disks (MO), etc.), optical storage (such as CDs, DVDs, BDs, HVDs, etc.), and semiconductor storage (such as ROMs, EPROMs, EEPROMs, non-volatile memories (NAND FLASH), solid-state drives (SSDs), etc.).

[1230] It should also be noted that the terms "first," "second," and the like in the embodiments of this application are used to distinguish similar objects, and are not used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of this application can be implemented in an order other than that illustrated or described herein. Furthermore, the objects distinguished by "first" and "second" are generally of the same type, and do not limit the number of objects. For example, the first object can be one or more.

[1231] In the embodiments of this application, the term "and / or" describes the association relationship between associated objects, indicating that three relationships can exist. For example, A and / or B can represent three situations: A exists alone, A and B exist simultaneously, and B exists alone. The character " / " generally indicates that the associated objects are in an "or" relationship.

[1232] In the embodiments of the present application, the term "plurality" refers to two or more than two, and other quantifiers are similar.

[1233] The technical solutions provided in the embodiments of the present application can be applicable to a variety of systems, especially 5G systems. For example, applicable systems may be global system of mobile communication (GSM) systems, code division multiple access (CDMA) systems, wideband code division multiple access (WCDMA) GPRS systems, LTE systems, LTE frequency division duplex (FDD) systems, LTE time division duplex (TDD) systems, advanced long term evolution (LTE-A) systems, universal mobile telecommunication systems (UMTS), worldwide interoperability for microwave access (WiMAX) systems, 5G NR systems, and the like. These various systems include terminal devices and network equipment. The system may also include a core network part, such as an evolved packet system (EPS), a 5G system (5GS), and the like.

[1234] The terminal device involved in the embodiments of the present application may be a device that provides voice and / or data connectivity to a user, a handheld device with wireless connection function, or other processing device connected to a wireless modem. In different systems, the name of the terminal device may also be different. For example, in a 5G system, the terminal device may be called User Equipment (UE). A wireless terminal device can communicate with one or more core networks (CN) via a RAN. The wireless terminal device may be a mobile terminal device, such as a mobile phone (or "cellular" phone) and a computer with a mobile terminal device. For example, it may be a portable, pocket-sized, handheld, computer-built-in or vehicle-mounted mobile device that exchanges voice and / or data with a wireless access network. For example, a Personal Communication Service (PCS) phone, a cordless phone, a Session Initiated Protocol (SIP) phone, a Wireless Local Loop (WLL) station, a Personal Digital Assistant (PDA), and other devices. The wireless terminal device may also be referred to as a system, a subscriber unit, a subscriber station, a mobile station, a mobile station, a remote station, an access point, a remote terminal device, an access terminal device, a user terminal device, a user agent, or a user device, but is not limited in the embodiments of the present application.

[1235] The network device involved in the embodiments of the present application may be a base station, which may include multiple cells providing services to terminals. Depending on the specific application scenario, the base station may also be called an access point, or may be a device in an access network that communicates with a wireless terminal device through one or more sectors on the air interface, or may be called another name. The network device may be used to interchange received air frames with IP packets, acting as a router between the wireless terminal device and the rest of the access network, where the rest of the access network may include an IP communication network. The network device may also coordinate attribute management of the air interface. For example, the network device involved in the embodiments of the present application may be a network device (Base Transceiver Station, BTS) in the Global System for Mobile communications (GSM) or Code Division Multiple Access (CDMA), or a network device (NodeB) in Wide-band Code Division Multiple Access (WCDMA), or an evolutionary network device (eNB or e-NodeB) in the LTE system, a 5G base station (gNB) in the 5G network architecture (next generation system), or a home evolved Node B (HeNB), a relay node, a femto, a pico, etc., which is not limited in the embodiments of the present application. In some network structures, the network devices may include CU nodes and DU nodes, and the centralized unit and the distributed unit may also be geographically separated.

[1236] Network devices and terminal devices can each use one or more antennas for Multiple Input Multiple Output (MIMO) transmission. MIMO transmission can be single-user MIMO (SU-MIMO) or multi-user MIMO (MU-MIMO). Depending on the form and number of antenna combinations, MIMO transmission can be 2D-MIMO, 3D-MIMO, FD-MIMO, or massive-MIMO. It can also use diversity transmission, precoding transmission, or beamforming transmission.

[1237] Those skilled in the art will appreciate that the embodiments of the present application can be provided as methods, systems, or computer program products. Therefore, the present application can adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment in combination with software and hardware. Moreover, the present application can adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage and optical storage, etc.) that contain computer-usable program code.

[1238] The present application is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer-executable instructions. These computer-executable instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the steps in the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[1239] These processor-executable instructions may also be stored in a processor-readable memory that can direct a computer or other programmable data processing device to operate in a specific manner, so that the instructions stored in the processor-readable memory produce an article of manufacture comprising an instruction device that implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[1240] These processor-executable instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are performed on the computer or other programmable device to produce a computer-implemented process, thereby providing instructions for executing on the computer or other programmable device to implement the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.

[1241] Obviously, those skilled in the art may make various changes and modifications to this application without departing from the spirit and scope of this application. Thus, if these modifications and variations of this application fall within the scope of the claims of this application and their equivalents, this application is intended to include these modifications and variations.

Claims

1. A multiple access transmission method, characterized in that: Applied to a first device, the method includes: Based on the first indication information, determine multiple access reception of the first signal sent by the second device and / or multiple access transmission of the second signal sent to the third device.

2. The method according to claim 1, characterized in that The first signal includes at least one of the following: Downlink indication signal, a signal used to carry downlink control information; Excitation signal, used to trigger or carry uplink signals; Carrier signal, used to carry uplink signals.

3. The method according to claim 1, characterized in that The second signal includes at least one of the following: Uplink reflected signal; Send uplink signal.

4. The method according to claim 1, wherein The first indication information includes at least one of the following: Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process; Group resource information, used to indicate group information of resources for receiving the first signal and / or sending the second signal, and / or an association relationship between resources for receiving the first signal and resources for sending the second signal; The association relationship between the group information and the group resource information.

5. The method according to claim 4, characterized in that The first indication information is obtained based on at least one of the following methods: Protocol pre-configuration information; An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information; a second downlink indication signal indicating that the second downlink indication signal includes the group resource information; a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information; Device pre-stored information.

6. The method according to claim 4 or 5, characterized in that The grouping information includes at least one of the following: Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal; Device grouping information, used to indicate the device grouping of the first device; The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

7. The method according to claim 6, characterized in that The first correspondence information includes at least one of the following: a correspondence between the first device and a signal group of at least one signal in the first signals; a correspondence between the first device and a signal group of at least one signal in the second signal; a correspondence between a device group of the first device and a signal group of at least one signal in the first signal; A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

8. The method according to claim 4 or 5, characterized in that The association relationship between the group information and the group resource information includes at least one of the following: an association relationship between the signal grouping and the resource grouping of the first signal; an association relationship between the signal grouping and the resource grouping of the second signal; The association relationship between the device group and the resource group of the first device.

9. The method according to claim 4 or 5, characterized in that The association relationship between the resource for receiving the first signal and the resource for sending the second signal includes at least one of the following: an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal; an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal; an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal; The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

10. The method according to any one of claims 1 to 5, characterized in that The second device is any one of a network device, a relay device, and a terminal device; and / or, The third device is any one of a network device, a relay device, and a terminal device.

11. The method according to claim 6, characterized in that The signal grouping information includes at least one of the following: Number of signal groups; Identification of the signal group; The index of the signal group; Signal type indication information; Second correspondence information between signal groups of different signals in the at least one signal.

12. The method according to claim 6, characterized in that The device grouping information includes at least one of the following: Device group identification; Device group index; The relationship between devices and device groups; Equipment grouping criteria; The first parameter is used to determine the device grouping; The second parameter is used to identify the cell or group sequence; Information about the sequence of receiving and / or sending device groups; Beam grouping information, used to indicate beam-related device grouping information; The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

13. The method according to claim 4 or 5, characterized in that The group resource information includes at least one of the following: Time domain resource grouping information; Frequency domain resource grouping information; Code domain resource grouping information; Airspace resource grouping information.

14. The method according to claim 13, wherein: The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping; The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported; The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping; The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

15. A multiple access transmission method, characterized in that: Applied to the second device, the method includes: Sending a first signal to the first device based on the first indication information; The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

16. The method according to claim 15, characterized in that The first signal includes at least one of the following: Downlink indication signal, a signal used to carry downlink control information; Excitation signal, used to trigger or carry uplink signals; Carrier signal, used to carry uplink signals.

17. The method according to claim 15, characterized in that The second signal includes at least one of the following: Uplink reflected signal; Send uplink signal.

18. The method according to claim 15, characterized in that The first indication information includes at least one of the following: Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process; Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal; The association relationship between the group information and the group resource information.

19. The method according to claim 18, characterized in that The first indication information is obtained based on at least one of the following methods: Protocol pre-configuration information; An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information; a second downlink indication signal indicating that the second downlink indication signal includes the group resource information; a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information; Device pre-stored information.

20. The method according to claim 18 or 19, characterized in that The grouping information includes at least one of the following: Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal; Device grouping information, used to indicate the device grouping of the first device; The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

21. The method according to claim 20, characterized in that The first correspondence information includes at least one of the following: a correspondence between the first device and a signal group of at least one signal in the first signals; a correspondence between the first device and a signal group of at least one signal in the second signal; a correspondence between a device group of the first device and a signal group of at least one signal in the first signal; A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

22. The method according to claim 18 or 19, characterized in that The association relationship between the group information and the group resource information includes at least one of the following: an association relationship between the signal grouping and the resource grouping of the first signal; an association relationship between the signal grouping and the resource grouping of the second signal; The association relationship between the device group and the resource group of the first device.

23. The method according to claim 18 or 19, characterized in that The association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following: an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal; an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal; an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal; The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

24. The method according to any one of claims 15 to 19, characterized in that: The second device is any one of a network device, a relay device, and a terminal device.

25. The method according to claim 20, wherein The signal grouping information includes at least one of the following: Number of signal groups; Identification of the signal group; The index of the signal group; Signal type indication information; Second correspondence information between signal groups of different signals in the at least one signal.

26. The method according to claim 20, wherein The device grouping information includes at least one of the following: Device group identification; Device group index; The relationship between devices and device groups; Equipment grouping criteria; The first parameter is used to determine the device grouping; The second parameter is used to identify the cell or group sequence; Information about the sequence of receiving and / or sending device groups; Beam grouping information, used to indicate beam-related device grouping information; The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

27. The method according to claim 18 or 19, characterized in that The group resource information includes at least one of the following: Time domain resource grouping information; Frequency domain resource grouping information; Code domain resource grouping information; Airspace resource grouping information.

28. The method according to claim 27, characterized in that The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping; The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported; The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping; The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

29. A multiple access transmission method, characterized in that: Applied to a third device, the method includes: receiving, based on the first indication information, a second signal sent by the first device; The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

30. The method according to claim 29, wherein The first signal includes at least one of the following: Downlink indication signal, a signal used to carry downlink control information; Excitation signal, used to trigger or carry uplink signals; Carrier signal, used to carry uplink signals.

31. The method according to claim 29, wherein The second signal includes at least one of the following: Uplink reflected signal; Send uplink signal.

32. The method according to claim 29, wherein The first indication information includes at least one of the following: Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process; Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal; The association relationship between the group information and the group resource information.

33. The method according to claim 32, characterized in that The first indication information is obtained based on at least one of the following methods: Protocol pre-configuration information; An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information; a second downlink indication signal indicating that the second downlink indication signal includes the group resource information; a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information; Device pre-stored information.

34. The method according to claim 32 or 33, characterized in that The grouping information includes at least one of the following: Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal; Device grouping information, used to indicate the device grouping of the first device; The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

35. The method according to claim 34, wherein The first correspondence information includes at least one of the following: a correspondence between the first device and a signal group of at least one signal in the first signals; a correspondence between the first device and a signal group of at least one signal in the second signal; a correspondence between a device group of the first device and a signal group of at least one signal in the first signal; A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

36. The method according to claim 32 or 33, characterized in that The association relationship between the group information and the group resource information includes at least one of the following: an association relationship between the signal grouping and the resource grouping of the first signal; an association relationship between the signal grouping and the resource grouping of the second signal; The association relationship between the device group and the resource group of the first device.

37. The method according to claim 32 or 33, characterized in that The association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following: an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal; an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal; an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal; The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

38. The method according to any one of claims 29 to 33, characterized in that The third device is any one of a network device, a relay device, and a terminal device.

39. The method according to claim 34, wherein The signal grouping information includes at least one of the following: Number of signal groups; Identification of the signal group; The index of the signal group; Signal type indication information; Second correspondence information between signal groups of different signals in the at least one signal.

40. The method according to claim 34, wherein The device grouping information includes at least one of the following: Device group identification; Device group index; The relationship between devices and device groups; Equipment grouping criteria; The first parameter is used to determine the device grouping; The second parameter is used to identify the cell or group sequence; Information about the sequence of receiving and / or sending device groups; Beam grouping information, used to indicate beam-related device grouping information; The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

41. The method according to claim 32 or 33, characterized in that The group resource information includes at least one of the following: Time domain resource grouping information; Frequency domain resource grouping information; Code domain resource grouping information; Airspace resource grouping information.

42. The method according to claim 41, wherein The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping; The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported; The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping; The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

43. A first device, characterized in that Including memory, transceiver, processor; A memory for storing a computer program; a transceiver for transmitting and receiving data under the control of the processor; and a processor for reading the computer program in the memory and performing the following operations: Based on the first indication information, determine multiple access reception of the first signal sent by the second device and / or multiple access transmission of the second signal sent to the third device.

44. The first device according to claim 43, characterized in that The first signal includes at least one of the following: Downlink indication signal, a signal used to carry downlink control information; Excitation signal, used to trigger or carry uplink signals; Carrier signal, used to carry uplink signals.

45. The first device according to claim 43, characterized in that The second signal includes at least one of the following: Uplink reflected signal; Send uplink signal.

46. The first device according to claim 43, characterized in that The first indication information includes at least one of the following: Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process; Group resource information, used to indicate group information of resources for receiving the first signal and / or sending the second signal, and / or an association relationship between resources for receiving the first signal and resources for sending the second signal; The association relationship between the group information and the group resource information.

47. The first device according to claim 46, characterized in that The first indication information is obtained based on at least one of the following methods: Protocol pre-configuration information; An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information; a second downlink indication signal indicating that the second downlink indication signal includes the group resource information; a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information; Device pre-stored information.

48. The first device according to claim 46 or 47, characterized in that The grouping information includes at least one of the following: Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal; Device grouping information, used to indicate the device grouping of the first device; The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

49. The first device according to claim 48, characterized in that The first correspondence information includes at least one of the following: a correspondence between the first device and a signal group of at least one signal in the first signals; a correspondence between the first device and a signal group of at least one signal in the second signal; a correspondence between a device group of the first device and a signal group of at least one signal in the first signal; A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

50. The first device according to claim 46 or 47, characterized in that The association relationship between the group information and the group resource information includes at least one of the following: an association relationship between the signal grouping and the resource grouping of the first signal; an association relationship between the signal grouping and the resource grouping of the second signal; The association relationship between the device group and the resource group of the first device.

51. The first device according to claim 46 or 47, characterized in that The association relationship between the resource for receiving the first signal and the resource for sending the second signal includes at least one of the following: an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal; an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal; an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal; The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

52. The first device according to any one of claims 43 to 47, characterized in that The second device is any one of a network device, a relay device, and a terminal device; and / or, The third device is any one of a network device, a relay device, and a terminal device.

53. The first device according to claim 48, characterized in that The signal grouping information includes at least one of the following: Number of signal groups; Identification of the signal group; The index of the signal group; Signal type indication information; Second correspondence information between signal groups of different signals in the at least one signal.

54. The first device according to claim 48, characterized in that The device grouping information includes at least one of the following: Device group identification; Device group index; The relationship between devices and device groups; Equipment grouping criteria; The first parameter is used to determine the device grouping; The second parameter is used to identify the cell or group sequence; Information about the sequence of receiving and / or sending device groups; Beam grouping information, used to indicate beam-related device grouping information; The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

55. The first device according to claim 46 or 47, characterized in that The group resource information includes at least one of the following: Time domain resource grouping information; Frequency domain resource grouping information; Code domain resource grouping information; Airspace resource grouping information.

56. The first device according to claim 55, characterized in that The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping; The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported; The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping; The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

57. A second device, characterized in that Including memory, transceiver, processor; Memory for storing computer programs; a transceiver, configured to transmit and receive data under the control of the processor; and a processor, configured to read the computer program in the memory and perform the following operations: Sending a first signal to the first device based on the first indication information; The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

58. The second device according to claim 57, characterized in that The first signal includes at least one of the following: Downlink indication signal, a signal used to carry downlink control information; Excitation signal, used to trigger or carry uplink signals; Carrier signal, used to carry uplink signals.

59. The second device according to claim 57, characterized in that The second signal includes at least one of the following: Uplink reflected signal; Send uplink signal.

60. The second device according to claim 57, characterized in that The first indication information includes at least one of the following: Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process; Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal; The association relationship between the group information and the group resource information.

61. The second device according to claim 60, characterized in that The first indication information is obtained based on at least one of the following methods: Protocol pre-configuration information; An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information; a second downlink indication signal indicating that the second downlink indication signal includes the group resource information; a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information; Device pre-stored information.

62. The second device according to claim 60 or 61, characterized in that The grouping information includes at least one of the following: Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal; Device grouping information, used to indicate the device grouping of the first device; The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

63. The second device according to claim 62, characterized in that The first correspondence information includes at least one of the following: a correspondence between the first device and a signal group of at least one signal in the first signals; a correspondence between the first device and a signal group of at least one signal in the second signal; a correspondence between a device group of the first device and a signal group of at least one signal in the first signal; A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

64. The second device according to claim 60 or 61, characterized in that The association relationship between the group information and the group resource information includes at least one of the following: an association relationship between the signal grouping and the resource grouping of the first signal; an association relationship between the signal grouping and the resource grouping of the second signal; The association relationship between the device group and the resource group of the first device.

65. The second device according to claim 60 or 61, characterized in that The association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following: an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal; an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal; an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal; The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

66. The second device according to any one of claims 57 to 61, characterized in that The second device is any one of a network device, a relay device, and a terminal device.

67. The second device according to claim 62, characterized in that The signal grouping information includes at least one of the following: Number of signal groups; Identification of the signal group; The index of the signal group; Signal type indication information; Second correspondence information between signal groups of different signals in the at least one signal.

68. The second device according to claim 62, characterized in that The device grouping information includes at least one of the following: Device group identification; Device group index; The relationship between devices and device groups; Equipment grouping criteria; The first parameter is used to determine the device grouping; The second parameter is used to identify the cell or group sequence; Information about the sequence of receiving and / or sending device groups; Beam grouping information, used to indicate beam-related device grouping information; The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

69. The second device according to claim 60 or 61, characterized in that The group resource information includes at least one of the following: Time domain resource grouping information; Frequency domain resource grouping information; Code domain resource grouping information; Airspace resource grouping information.

70. The second device according to claim 69, characterized in that The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping; The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported; The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping; The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

71. A third device, characterized in that Including memory, transceiver, processor; memory for storing computer programs; a transceiver, configured to transmit and receive data under the control of the processor; and a processor, configured to read the computer program in the memory and perform the following operations: receiving, based on the first indication information, a second signal sent by the first device; The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

72. The third device according to claim 71, characterized in that The first signal includes at least one of the following: Downlink indication signal, a signal used to carry downlink control information; Excitation signal, used to trigger or carry uplink signals; Carrier signal, used to carry uplink signals.

73. The third device according to claim 71, characterized in that The second signal includes at least one of the following: Uplink reflected signal; Send uplink signal.

74. The third device according to claim 71, characterized in that The first indication information includes at least one of the following: Grouping information, used to indicate relevant groups in a multiple-address transmission process or a multiple-address reception process; Group resource information, used to indicate group information of resources for sending the first signal and / or receiving the second signal, and / or an association relationship between the resources for sending the first signal and the resources for receiving the second signal; The association relationship between the group information and the group resource information.

75. The third device according to claim 74, characterized in that The first indication information is obtained based on at least one of the following methods: Protocol pre-configuration information; An indication by a first downlink indication signal, wherein the first downlink indication signal includes the grouping information; a second downlink indication signal indicating that the second downlink indication signal includes the group resource information; a third downlink indication signal indicating that the third downlink indication signal includes an association relationship between the group information and the group resource information; Device pre-stored information.

76. The third device according to claim 74 or 75, characterized in that The grouping information includes at least one of the following: Signal grouping information, used to indicate a signal grouping of at least one signal and / or a correspondence between signal groups of different signals in the at least one signal, the signal grouping of the at least one signal including at least one of the following: a signal grouping of the first signal and / or a signal grouping of the second signal; Device grouping information, used to indicate the device grouping of the first device; The first correspondence information is used to indicate the correspondence between the signal group of the at least one signal and the first device, or the correspondence between the signal group of the at least one signal and the device group of the first device.

77. The third device according to claim 76, characterized in that The first correspondence information includes at least one of the following: a correspondence between the first device and a signal group of at least one signal in the first signals; a correspondence between the first device and a signal group of at least one signal in the second signal; a correspondence between a device group of the first device and a signal group of at least one signal in the first signal; A correspondence between the device group of the first device and the signal group of at least one signal in the second signal.

78. The third device according to claim 74 or 75, characterized in that The association relationship between the group information and the group resource information includes at least one of the following: an association relationship between the signal grouping and the resource grouping of the first signal; an association relationship between the signal grouping and the resource grouping of the second signal; The association relationship between the device group and the resource group of the first device.

79. The third device according to claim 74 or 75, characterized in that The association relationship between the resource for sending the first signal and the resource for receiving the second signal includes at least one of the following: an association relationship between a resource location of a group in which a device group of the first device sends the second signal and time domain information of the first signal; an association relationship between a group resource location of a device group of the first device for sending the second signal and frequency domain information of the first signal; an association between a group resource location of a device group of the first device for sending the second signal and code domain information of the first signal; The association relationship between the group resource location of the device group of the first device for sending the second signal and the spatial domain information of the first signal.

80. The third device according to any one of claims 71 to 75, characterized in that The third device is any one of a network device, a relay device, and a terminal device.

81. The third device according to claim 76, characterized in that The signal grouping information includes at least one of the following: Number of signal groups; Identification of the signal group; The index of the signal group; Signal type indication information; Second correspondence information between signal groups of different signals in the at least one signal.

82. The third device according to claim 76, characterized in that The device grouping information includes at least one of the following: Device group identification; Device group index; The relationship between devices and device groups; Equipment grouping criteria; The first parameter is used to determine the device group The second parameter is used to identify the cell or group sequence; Information about the sequence of receiving and / or sending device groups; Beam grouping information, used to indicate beam-related device grouping information; The identification information is used to identify the uplink reflected signal and / or uplink transmitted signal of the received excitation signal in different beams.

83. The third device according to claim 74 or 75, characterized in that The group resource information includes at least one of the following: Time domain resource grouping information; Frequency domain resource grouping information; Code domain resource grouping information; Airspace resource grouping information.

84. The third device according to claim 83, characterized in that The time domain resource grouping information includes: at least one of a period of the time domain resource grouping, a number of times the time domain resource grouping is sent within a first time period, a duration of the time domain resource grouping, a time domain starting position of the time domain resource grouping, and a time domain ending position of the time domain resource grouping; The frequency domain resource grouping information includes at least one of: a center frequency of the frequency domain resource grouping, an association between the frequency domain resource grouping and the frequency domain resources, a frequency difference between center frequencies of different frequency domain resource groups, and frequency hopping indication information, where the frequency hopping indication information is used to indicate whether frequency hopping is supported; The code domain resource grouping information includes: a sequence code corresponding to the code domain resource grouping; The spatial resource grouping information includes: beams corresponding to the spatial resource grouping.

85. A multi-address transmission device, characterized in that: Applied to a first device, the apparatus includes: The processing module is configured to determine, based on the first indication information, multiple access reception of a first signal sent by the second device and / or multiple access transmission of a second signal sent to a third device.

86. A multi-address transmission device, characterized in that: Applied to the second device, the apparatus includes: A sending module, configured to send a first signal to a first device based on the first indication information; The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

87. A multi-address transmission device, characterized in that: Applied to a third device, the apparatus includes: A receiving module, configured to receive a second signal sent by the first device based on the first indication information; The first indication information is used to determine multiple access reception of the first signal and / or multiple access transmission of the second signal.

88. A processor-readable storage medium, characterized in that The processor-readable storage medium stores a computer program, and the computer program is configured to cause a computer to execute the multiple access transmission method according to any one of claims 1 to 42.