Information processing method and apparatus, and readable storage medium

By deciding whether to send uplink transmission based on the first information in the SBFD system, the problem of how the terminal reduces interference to the SSB measurement is solved, and more efficient signal processing and measurement accuracy are achieved.

WO2025108366A1PCT designated stage expired Publication Date: 2025-05-30DATANG MOBILE COMM EQUIP CO LTD
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Patent Information

Application Number
PCT/CN2024/133481
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-24
Filing Date
2024-11-21
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

In non-overlapping subband full duplex (SBFD) systems, how the terminal sends a first uplink transmission on the uplink subband to reduce interference to the synchronization signal/physical broadcast channel signal block (SSB) measurement is a technical problem that needs to be solved.

Method used

By determining the first information, including the transmission type and resource information, the terminal decides to send the first uplink transmission or not to send on the SBFD symbol configured to the symbol where the SSB is located. This information can be obtained by protocol provisions or indications of network devices, with the aim of controlling the offset between the uplink transmission frequency domain resources and the frequency domain resources of the SSB to reduce interference.

Benefits of technology

Through this method, the interference of uplink transmission on SSB measurement can be effectively reduced, the conflict between uplink transmission and SSB measurement can be avoided, and the signal quality and measurement accuracy of the system can be improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure relates to the technical field of communications. Disclosed are an information processing method and apparatus, and a readable storage medium. The method comprises: on the basis of first information, determining to send a first uplink transmission or not to send a first uplink transmission on a first symbol, wherein the first symbol is an SBFD symbol configured on a symbol where an SSB is located.
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Description

Information processing method, device and readable storage medium

[0001] This disclosure claims priority to the Chinese patent application filed with the China Patent Office on November 24, 2023, with application number 202311579880.8 and application name “A method, device and readable storage medium for information processing”, the entire contents of which are incorporated by reference into this disclosure. Technical Field

[0002] The present disclosure relates to the field of communication technologies, and in particular to an information processing method, device, and readable storage medium. Background Art

[0003] Related technologies have proposed a research direction of non-overlapping sub-band full duplex (SBFD), which divides frequency domain resources into multiple non-overlapping sub-bands, with uplink and downlink frequency domain resources located in different sub-bands.

[0004] Symbols containing uplink / downlink subbands are referred to as SBFD symbols. For synchronization signal / Physical Broadcast Channel (PBCH) block (SSB) symbols configured as SBFD symbols, how a terminal sends its first uplink transmission on the uplink subband to reduce interference with SSB measurements is a technical issue that needs to be addressed. Summary of the Invention

[0005] The embodiments of the present disclosure provide an information processing method, apparatus, and readable storage medium to reduce interference of uplink transmission on SSB measurement.

[0006] In a first aspect, an embodiment of the present disclosure provides an information processing method, applied to a terminal, comprising:

[0007] determining first information;

[0008] Determining, based on the first information, whether to send a first uplink transmission on a first symbol or not;

[0009] The first symbol is an SBFD symbol configured at the symbol where the SSB is located;

[0010] The first information includes one or more of the following:

[0011] First transmission type;

[0012] First resource information.

[0013] In a second aspect, an embodiment of the present disclosure provides an information processing method, applied to a network device, comprising:

[0014] Sending first information to the terminal, used to determine whether to send a first uplink transmission on a first symbol or not;

[0015] The first symbol is an SBFD symbol configured at the symbol where the SSB is located;

[0016] The first information includes first resource information.

[0017] In a third aspect, an embodiment of the present disclosure provides an information processing device, applied to a terminal, comprising: a memory, a transceiver, and a processor:

[0018] 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:

[0019] determining first information;

[0020] Determining, based on the first information, whether to send a first uplink transmission on a first symbol or not;

[0021] The first symbol is an SBFD symbol configured at the symbol where the SSB is located; and the first information includes one or more of the following:

[0022] First transmission type;

[0023] First resource information.

[0024] In a fourth aspect, an embodiment of the present disclosure provides an information processing device, applied to a network device, comprising: a memory, a transceiver, and a processor:

[0025] 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:

[0026] Sending first information to the terminal, used to determine whether to send a first uplink transmission on a first symbol or not;

[0027] Among them, the first symbol is an SBFD symbol configured at the symbol where the SSB is located; the first information includes first resource information.

[0028] In a fifth aspect, an embodiment of the present disclosure provides an information processing device, applied to a terminal, comprising:

[0029] a first determining unit, configured to determine first information;

[0030] a second determining unit, configured to determine, based on the first information, whether to send a first uplink transmission on a first symbol or not;

[0031] The first symbol is an SBFD symbol configured at the symbol where the SSB is located;

[0032] The first information includes one or more of the following:

[0033] First transmission type;

[0034] First resource information.

[0035] In a sixth aspect, an embodiment of the present disclosure provides an information processing apparatus, applied to a network device, comprising:

[0036] A first sending unit, configured to send first information to a terminal, used to determine whether to send a first uplink transmission on a first symbol or not;

[0037] Among them, the first symbol is an SBFD symbol configured at the symbol where the SSB is located; the first information includes first resource information.

[0038] In a seventh aspect, an embodiment of the present disclosure further provides a processor-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, the steps in the information processing method described above are implemented.

[0039] In an embodiment of the present disclosure, whether to send the first uplink transmission in the SBFD symbol configured in the symbol where the SSB is located can be determined based on the first information, thereby reducing interference with the SSB measurement. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] FIG1 is a flowchart of an information processing method according to an embodiment of the present disclosure;

[0041] FIG2 is a second flowchart of the information processing method provided by an embodiment of the present disclosure;

[0042] FIG3 is a schematic diagram of a process according to an embodiment of the present disclosure;

[0043] FIG4 is a schematic diagram of a process according to an embodiment of the present disclosure;

[0044] FIG5 is a structural diagram of an information processing device according to an embodiment of the present disclosure;

[0045] FIG6 is a second structural diagram of the information processing device provided by an embodiment of the present disclosure;

[0046] FIG7 is a third structural diagram of the information processing device provided by an embodiment of the present disclosure;

[0047] FIG8 is a fourth structural diagram of the information processing device provided by an embodiment of the present disclosure. DETAILED DESCRIPTION

[0048] In the embodiments of the present disclosure, 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.

[0049] In the embodiments of the present disclosure, the term "plurality" refers to two or more than two, and other quantifiers are similar thereto.

[0050] The following will be combined with the accompanying drawings in the embodiments of the present disclosure to clearly and completely describe the technical solutions in the embodiments of the present disclosure. Obviously, the embodiments described are only part of the embodiments of the present disclosure and not all of the embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present disclosure.

[0051] The embodiments of the present disclosure provide an information processing method and apparatus for reducing interference to SSB measurement.

[0052] Among them, the method and the device are based on the same application concept. Since the principles of solving problems by the method and the device are similar, the implementation of the device and the method can refer to each other, and the repeated parts will not be repeated.

[0053] Referring to FIG1 , FIG1 is a flowchart of an information processing method provided by an embodiment of the present disclosure, which is applied to a terminal and includes the following steps:

[0054] Step 101: Determine first information.

[0055] The first information includes one or more of the following:

[0056] The first transmission type refers to the transmission type of the first uplink transmission sent on the first symbol;

[0057] The first resource information refers to resource information related to the first uplink transmission sent on the first symbol.

[0058] The first symbol is an SBFD symbol configured at the symbol where the SSB is located.

[0059] In the embodiments of the present disclosure, there are multiple ways to determine the first information:

[0060] Method 1: The terminal determines the first information according to the protocol provisions.

[0061] In some embodiments, the first information includes a first transmission type, wherein the first transmission type includes one or more of the following:

[0062] One or more of DCI-scheduled single-slot PUSCH, multiple-slot PUSCH, multiple-PUSCH transmission, the first PUSCH of multiple-PUSCH, repetition PUSCH, the first transmission of repetition PUSCH, or PUCCH;

[0063] Aperiodic CSI Reporting activated or triggered by DCI and / or Semi-Persistent CSI Reporting transmitted on PUSCH;

[0064] CG Type-2 PUSCH and / or the first transmission opportunity of CG Type-2 PUSCH.

[0065] The first transmission opportunity of the CG Type-2 PUSCH includes one or more of the following:

[0066] The first transmission slot in the CG period determined by the activation DCI;

[0067] The first transmission of the first TB within the CG period determined by the activation DCI, for example, the first transmission slot to the Nth consecutive transmission slot;

[0068] All repeated transmissions of the first TB within the CG period determined by the activated DCI, for example, the first transmission slot to the consecutive N*Kth transmission slots or valid transmission slots.

[0069] Wherein, N is the number of slots used to map a TB, and K is the number of repetitions of a TB.

[0070] In some embodiments, the first information includes first resource information, the first resource information includes a first frequency domain offset threshold, and the first frequency domain offset threshold is the minimum frequency domain offset between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB.

[0071] In a second approach, the first information includes first resource information. The terminal obtains first indication information sent by a network device (such as a base station), and determines the first information according to the first indication information.

[0072] The first resource information includes one or more of the following:

[0073] Time domain resource information, used to indicate a first symbol used for sending an uplink transmission;

[0074] Frequency domain resource information, used to indicate the frequency domain resource for sending the uplink transmission on the first symbol, or used to indicate a second frequency domain offset threshold, where the second frequency domain offset threshold is the minimum value of the frequency domain offset between the frequency domain resource for sending the first uplink transmission and the frequency domain resource of the SSB;

[0075] The spatial resource information is used to indicate the spatial resources used for sending uplink transmission on the first symbol.

[0076] Among them, time domain resource information can be indicated by SSB index (SSB index), slot index (slot index), symbol index (symbol index), etc., frequency domain resource information can be indicated by resource block (Resource Block, RB), resource block group (Resource block group, RBG), etc., and spatial domain resource information can be indicated by reference signal index, etc.

[0077] In a third embodiment, the first information includes a first transmission type and first resource information. The terminal determines the first transmission type according to a protocol specification. The terminal obtains first indication information sent by a network device and determines the first resource information based on the first indication information, wherein the first indication information is used to indicate the first resource information.

[0078] The explanation of the first transmission type may refer to the description of the aforementioned method one, and the first resource information may refer to the description of the aforementioned method two.

[0079] Step 102: Determine whether to send a first uplink transmission or not to send the first uplink transmission on a first symbol based on the first information.

[0080] In the embodiment of the present disclosure, the first uplink transmission includes one or more of the following: PUSCH, PUCCH, PRACH, and an uplink reference signal.

[0081] For the aforementioned different ways of determining the first information, the terminal also has different ways of determining whether to send the first uplink transmission on the first symbol in this step.

[0082] Corresponding to the aforementioned method 1, if the first information includes the first transmission type, the terminal may determine whether to send the first uplink transmission on the first symbol in the following manner:

[0083] Obtaining second indication information sent by a network device, wherein the second indication information is used to instruct the terminal to send a first uplink transmission; if the transmission type of the first uplink transmission is one of the first transmission types, determining to send the first uplink transmission on the first symbol;

[0084] or,

[0085] Obtain second indication information sent by the network device, wherein the second indication information is used to instruct the terminal to send a first uplink transmission; if the transmission type of the first uplink transmission is not one of the first transmission types, determine not to send the first uplink transmission on the first symbol.

[0086] That is, in this manner, when the network device instructs the terminal to send a first uplink transmission of one of the first transmission types, the terminal determines to send the first uplink transmission on the first symbol, otherwise determines not to send the first uplink transmission. Alternatively, the terminal does not want the network device to instruct the terminal to send other transmission types other than those included in the first transmission type on the first symbol, that is, it does not support the network device configuring other transmission types other than those included in the first transmission type on the first symbol.

[0087] Sending the first uplink transmission on the first symbol refers to sending the first uplink transmission on the uplink subband of the first symbol.

[0088] Corresponding to the aforementioned method 1, if the first information includes the first resource information, the terminal may determine whether to send the first uplink transmission on the first symbol in the following manner:

[0089] Obtain third indication information sent by a network device, wherein the third indication information is used to instruct the terminal to send a first uplink transmission; if a frequency domain offset value between a frequency domain resource of the first uplink transmission and a frequency domain resource of an SSB is greater than or equal to the first frequency domain offset threshold, determine to send the first uplink transmission on the first symbol;

[0090] or,

[0091] Obtain third indication information sent by a network device, wherein the third indication information is used to instruct the terminal to send a first uplink transmission; if the frequency domain offset value between the frequency domain resource of the first uplink transmission and the frequency domain resource of the SSB is less than or equal to the first frequency domain offset threshold, determine not to send the first uplink transmission on the first symbol. Corresponding to the aforementioned method 1, if the first information includes the first resource information, the terminal may also combine the SSB measurement configuration information and determine whether to send the first uplink transmission on the first symbol in the following manner:

[0092] Obtain fourth indication information sent by a network device, wherein the fourth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the frequency domain offset value between the frequency domain resource of the first uplink transmission and the frequency domain resource of the SSB is greater than or equal to the first frequency domain offset threshold, and it is determined not to perform SSB measurement according to the SSB measurement configuration information, determine to send the first uplink transmission on the first symbol;

[0093] or,

[0094] Obtain fourth indication information sent by the network device, wherein the fourth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is less than or equal to the first frequency domain offset threshold, and / or, determine to perform SSB measurement according to the SSB measurement configuration information, and determine not to send the first uplink transmission on the first symbol.

[0095] It should be noted that in the embodiment of the present disclosure, when "the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is equal to the first frequency domain offset threshold", the specific implementation method is to determine whether to send the first uplink transmission or not to send the first uplink transmission, that is, there will be no determination of sending the first uplink transmission and determination of not sending the first uplink transmission.

[0096] Corresponding to the aforementioned second approach, the terminal may determine whether to send the first uplink transmission on the first symbol in the following manner:

[0097] Acquire fifth indication information sent by a network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; if a resource corresponding to the first uplink transmission is within a range indicated by the first resource information, determine to send the first uplink transmission on the first symbol;

[0098] or,

[0099] Obtain fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; if the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, determine not to send the first uplink transmission on the first symbol.

[0100] Corresponding to the aforementioned second approach, if the first resource information includes the frequency domain resource information and / or the spatial domain resource information, the terminal may further determine whether to send the first uplink transmission on the first symbol in combination with the SSB measurement configuration information in the following manner:

[0101] Obtain fifth indication information sent by a network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if resources corresponding to the first uplink transmission are within a range indicated by the first resource information and it is determined not to perform SSB measurement according to the SSB measurement configuration information, determine to send the first uplink transmission on the first symbol;

[0102] or,

[0103] Obtain fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, and / or, determine to perform SSB measurement according to the SSB measurement configuration information, and determine not to send the first uplink transmission on the first symbol.

[0104] In the implementation process corresponding to the second manner, if the first resource information includes frequency domain resource information, the resources corresponding to the first uplink transmission are within the range indicated by the first resource information, including one or more of the following:

[0105] The frequency domain resources corresponding to the first uplink transmission are within the frequency domain resource set indicated by the first resource information and used to send the first uplink transmission;

[0106] The frequency domain offset between the frequency domain resources corresponding to the first uplink transmission and the frequency domain resources of the SSB is greater than or equal to the second frequency domain offset threshold.

[0107] The frequency domain resources corresponding to the first uplink transmission may include all or part of the frequency domain resources corresponding to the first uplink transmission.

[0108] Corresponding to the aforementioned method 3, the terminal may determine whether to send the first uplink transmission on the first symbol in the following manner:

[0109] Obtaining sixth indication information sent by a network device, wherein the sixth indication information is used to instruct the terminal to send a first uplink transmission; if a transmission type of the first uplink transmission is one of the first transmission types and a resource corresponding to the first uplink transmission is within a range indicated by the first resource information, determining to send the first uplink transmission on the first symbol;

[0110] or,

[0111] Obtain sixth indication information sent by a network device, wherein the sixth indication information is used to instruct the terminal to send a first uplink transmission; if the transmission type of the first uplink transmission is not one of the first transmission types, and / or the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, determine not to send the first uplink transmission on the first symbol.

[0112] In this manner, if the first resource information includes frequency domain resource information, the resources corresponding to the first uplink transmission are within the range indicated by the first resource information, including one or more of the following:

[0113] The frequency domain resources corresponding to the first uplink transmission are within the frequency domain resource set indicated by the first resource information and used to send the first uplink transmission;

[0114] The frequency domain offset between the frequency domain resources corresponding to the first uplink transmission and the frequency domain resources of the SSB is greater than or equal to the second frequency domain offset threshold.

[0115] The frequency domain resources corresponding to the first uplink transmission may include all or part of the frequency domain resources corresponding to the first uplink transmission.

[0116] In an embodiment of the present disclosure, whether to send the first uplink transmission in the SBFD symbol configured in the symbol where the SSB is located can be determined based on the first information, thereby reducing interference with the SSB measurement and avoiding conflict between the first uplink transmission and the SSB measurement.

[0117] 2 is a flowchart of an information processing method provided by an embodiment of the present disclosure, which is applied to a network device and includes the following steps:

[0118] Step 201: Send first information to a terminal, used to determine whether to send a first uplink transmission on a first symbol or not;

[0119] The first symbol is an SBFD symbol configured at the symbol where the SSB is located;

[0120] The first information includes first resource information.

[0121] In the embodiment of the present disclosure, the first uplink transmission includes one or more of the following: PUSCH, PUCCH, PRACH, and an uplink reference signal.

[0122] The first resource information includes one or more of the following:

[0123] Time domain resource information, used to indicate a first symbol used to send the uplink transmission;

[0124] Frequency domain resource information, used to indicate the frequency domain resource for sending the uplink transmission on the first symbol, or used to indicate a second frequency domain offset threshold, where the second frequency domain offset threshold is the minimum value of the frequency domain offset between the frequency domain resource for sending the first uplink transmission and the frequency domain resource of the SSB;

[0125] The spatial resource information is used to indicate the spatial resources used for sending uplink transmission on the first symbol.

[0126] Optionally, in an embodiment of the present disclosure, time domain resource information can be indicated by SSB index (SSB index), slot index (slot index), symbol index (symbol index), etc., frequency domain resource information can be indicated by resource block (Resource Block, RB), resource block group (Resource block group, RBG), etc., and spatial domain resource information can be indicated by reference signal index, etc.

[0127] In an embodiment of the present disclosure, whether to send the first uplink transmission in the SBFD symbol configured in the symbol where the SSB is located can be determined based on the first information, thereby reducing interference with the SSB measurement and avoiding conflict between the first uplink transmission and the SSB measurement.

[0128] Optionally, in an embodiment of the present disclosure, the network device may also send second indication information or third indication information or fourth indication information or fifth indication information or sixth indication information to the terminal, wherein the second indication information or the third indication information or the fourth indication information or the fifth indication information or the sixth indication information is used to instruct the terminal to send the first uplink transmission.

[0129] Optionally, in an embodiment of the present disclosure, the network device may further send SSB measurement configuration information to the terminal, so that the terminal can determine whether to send the first uplink transmission on the first symbol.

[0130] The implementation process of the embodiments of the present disclosure is described in detail below in combination with different embodiments, wherein a base station is used as an example of a network device for description.

[0131] In the embodiment of the present disclosure, for the solution of the first transmission type specified by the protocol in the aforementioned method 1, the specific implementation process is as follows:

[0132] The base station instructs the terminal to send a first uplink transmission on a first symbol. The terminal determines whether to send the first uplink transmission on the first symbol based on the first uplink transmission and a transmission type specified by a protocol. If the first uplink transmission instructed by the base station to be sent by the terminal belongs to the transmission type specified by the protocol, the terminal sends the first uplink transmission on the first symbol; otherwise, the terminal does not send the first uplink transmission on the first symbol. The transmission type specified by the protocol may refer to the description of the preceding embodiment.

[0133] For example, the base station instructs the terminal to send CG Type-1 PUSCH on the first symbol, and the transmission type specified in the protocol does not include CG Type-1 PUSCH, and the terminal determines not to send CG Type-1 PUSCH on the first symbol. For example, the base station instructs the terminal to send the first repetition transmission of repetition PUSCH on the first symbol, and the transmission type specified in the protocol includes the first repetition transmission of repetition PUSCH, and the terminal determines to send the first repetition transmission of repetition PUSCH on the first symbol.

[0134] In some embodiments, the protocol may further stipulate that the terminal does not want the base station to instruct the sending of other types other than the above-specified type on the first symbol.

[0135] Through the above method, the base station can avoid or reduce the interference of the terminal's uplink transmission on the SSB measurement of other terminals based on implementation or scheduling, and can also avoid the uplink transmission and SSB measurement conflict of one terminal based on implementation or scheduling. The above method can also cover the uplink transmission on the first symbol indicated by the base station, that is, the terminal no longer sends the first uplink transmission, thereby avoiding the impact of the first uplink transmission on the SSB measurement of itself / other terminals.

[0136] In the embodiment of the present disclosure, the specific implementation process of the protocol in the aforementioned method 1, which specifies the first frequency domain offset threshold, is as follows:

[0137] The protocol stipulates a first frequency domain offset threshold, for example, the first frequency domain offset threshold is K RBs, and the K value can define different values ​​according to different subcarrier spacings, where K is an integer.

[0138] The protocol stipulates that when the frequency domain offset between the uplink transmission indicated by the base station and the SSB is greater than or equal to the first frequency domain offset threshold, the terminal determines to send the first uplink transmission; otherwise, the terminal determines not to send the first uplink transmission.

[0139] For example, if there is one or more SSBs whose minimum RB index is greater than the maximum RB index corresponding to the uplink transmission, and the difference between the minimum value and the maximum value is greater than or equal to the first frequency domain offset threshold value, and if there is one or more SSBs whose maximum RB index is greater than the minimum RB index corresponding to the uplink transmission, and the difference between the maximum value and the minimum value is greater than or equal to the first frequency domain offset threshold value, the terminal determines to send the first uplink transmission; otherwise, the terminal determines not to send the first uplink transmission.

[0140] Specifically, for example, as shown in Figure 3, the figure contains two SSBs, namely an NCD-SSB (Non Cell Defining SSB) and an SSB, and there is an SSB only on one side of the uplink transmission. When the minimum value n of the RB index occupied by the two SSBs is greater than the maximum value m of the RB index corresponding to the uplink transmission, and the difference between n and m is greater than the first frequency domain offset threshold, the terminal determines to send uplink transmission; otherwise, the terminal determines not to send uplink transmission.

[0141] For example, as shown in Figure 4, the figure contains two SSBs, namely an NCD-SSB and an SSB. At this time, there are SSBs on both sides of the uplink transmission. At this time, the minimum value k in the RB index occupied by NCD-SSB is greater than the maximum value m of the RB index corresponding to the uplink transmission, and the difference between k and m is greater than the first frequency domain offset threshold value, and the maximum value n in the RB index occupied by NCD-SSB is less than the minimum value mK of the RB index corresponding to the uplink transmission, and the difference between mK and n is greater than the first frequency domain offset threshold. At this time, the terminal determines to send uplink transmission; otherwise, the terminal determines not to send uplink transmission.

[0142] In the embodiment of the present disclosure, for the base station indication solution of the aforementioned method 2, the specific implementation process is as follows:

[0143] The base station indicates first resource information to the terminal, and the base station instructs the terminal to send a first uplink transmission on a first symbol. The terminal determines a first resource according to the first resource information, and determines a resource corresponding to the first uplink transmission according to the base station instruction.

[0144] The terminal determines whether to send the first uplink transmission on the first symbol based on the resource information corresponding to the first resource and the first uplink transmission. The specific embodiments are as follows:

[0145] For example, the first resource information includes time domain, frequency domain, and / or spatial domain resources (beam direction), the time domain resources being a first symbol that can be used to send an uplink transmission, the frequency domain resources being a frequency domain resource on which an uplink transmission can be sent on the first symbol, and the spatial domain resources being a spatial domain resource (beam direction) on which an uplink transmission can be sent on the first symbol. When all resources corresponding to the first uplink transmission are within the first resource range, the terminal determines to send the first uplink transmission on the first symbol; otherwise, the terminal determines not to send the first uplink transmission.

[0146] For example, the first resource includes time domain and / or frequency domain resources, the time domain resource is a first symbol that can be used to send uplink transmission, the frequency domain resource is a frequency domain resource on which uplink transmission can be sent on the first symbol, and part of the time domain and / or frequency domain resources corresponding to the first uplink transmission are within the first resource range, and the terminal determines not to send the first uplink transmission.

[0147] For example, the first resource includes time domain and / or frequency domain resources, the time domain resource is a first symbol that can be used to send an uplink transmission, the frequency domain resource is a frequency domain resource on which an uplink transmission can be sent on the first symbol, and the portion of time domain and / or frequency domain resources corresponding to the first uplink transmission is within the first resource range. In this case, the terminal determines to send the first uplink transmission on the first symbol; otherwise, the terminal determines not to send the first uplink transmission. The terminal performs rate matching on the second resource, wherein the second resource is the portion of the time domain and / or frequency domain resource corresponding to the first uplink transmission that overlaps with the first resource.

[0148] For example, the first resource includes spatial resources (beam direction), and the spatial resources (beam direction) corresponding to the first uplink transmission are within the first resource range. At this time, the terminal determines to send the first uplink transmission on the first symbol, otherwise, the terminal determines not to send the first uplink transmission.

[0149] In some embodiments, the terminal may further determine whether to send the first uplink transmission on the first symbol based on the first resource information, the SSB measurement configuration information, and the resources corresponding to the first uplink transmission. The first resource information includes frequency domain resource information and / or spatial domain resource information. When the frequency domain and / or spatial domain resources corresponding to the first uplink transmission are within the frequency domain range indicated by the first resource information, and the terminal determines not to perform SSB measurement on the time domain resources corresponding to the first uplink transmission based on the SSB measurement configuration information, the terminal determines to send the first uplink transmission on the first symbol; otherwise, the terminal determines not to send the first uplink transmission.

[0150] The frequency domain resources corresponding to the first uplink transmission are within the frequency domain range indicated by the first resource information, including: the first resource indication information indicates a set of frequency domain resources on which the first uplink transmission can be sent on the first symbol, and the frequency domain resources corresponding to the first uplink transmission are included in the set; or, the first resource indication information indicates a second frequency domain offset threshold, and the frequency domain offset between the frequency domain resources corresponding to the first uplink transmission and the SSB is greater than or equal to the second frequency domain offset threshold. The partial frequency domain resources corresponding to the first uplink transmission are within the first resource range, including: the first resource indication information indicates a set of frequency domain resources on which the first uplink transmission can be sent on the first symbol, and the partial frequency domain resources corresponding to the first uplink transmission are included in the set; or, the first resource indication information indicates a frequency domain offset threshold value, and the frequency domain offset between the partial frequency domain resources corresponding to the first uplink transmission and the SSB is greater than or equal to the second frequency domain offset threshold.

[0151] Through the solution of the embodiment of the present disclosure, interference with SSB measurement of other terminals can be avoided or reduced, and conflict between the terminal's uplink transmission and SSB measurement can be avoided.

[0152] The technical solution provided by the embodiment of the present disclosure can be applied to various systems, especially the fifth generation (5 th The present invention relates to a 5G network that is applicable to a mobile communication system. For example, the applicable system may be a global system of mobile communication (GSM) system, a code division multiple access (CDMA) system, a wideband code division multiple access (WCDMA) general packet radio service (GPRS) system, a long term evolution (LTE) system, a LTE frequency division duplex (FDD) system, a LTE time division duplex (TDD) system, an advanced long term evolution (LTE-A) system, a universal mobile telecommunication system (UMTS), a world-wide interoperability for microwave access (WiMAX) system, a 5G new air interface (NR) system, etc. These various systems include terminal equipment and network equipment. The system may also include a core network part, such as an evolved packet system (EPS), a 5G system (5GS), etc.

[0153] The terminal device involved in the embodiments of the present disclosure 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 radio access network (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 radio access network. For example, Personal Communication Service (PCS) phones, cordless phones, Session Initiated Protocol (SIP) phones, Wireless Local Loop (WLL) stations, Personal Digital Assistants (PDAs), 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 disclosure.

[0154] The network device involved in the embodiments of the present disclosure 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 an air interface, or may be called another name. The network device may be used to interchange received air frames with Internet Protocol (IP) packets, acting as a router between the wireless terminal device and the rest of the access network, wherein the rest of the access network may include an Internet Protocol (IP) communication network. The network device may also coordinate the attribute management of the air interface. For example, the network device involved in the embodiments of the present disclosure may be a base transceiver station (BTS) in the Global System for Mobile communications (GSM) or code division multiple access (CDMA), a network device (NodeB) in wide-band code division multiple access (WCDMA), an evolutionary Node B (eNB or e-NodeB) in the long term evolution (LTE) system, a 5G base station (gNB) in the 5G network architecture (next generation system), a home evolved Node B (HeNB), a relay node, a femto, a pico, etc., and is not limited in the embodiments of the present disclosure. In some network structures, the network device may include a centralized unit (CU) node and a distributed unit (DU) node, and the centralized unit and the distributed unit may also be geographically separated.

[0155] 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 two-dimensional MIMO (2D-MIMO), three-dimensional MIMO (3D-MIMO), full-dimensional MIMO (FD-MIMO), or massive MIMO. It can also use diversity transmission, precoding transmission, or beamforming transmission.

[0156] As shown in FIG5 , the information processing apparatus according to an embodiment of the present disclosure, applied to a network device, includes: a processor 500 configured to read a program in a memory 520 and execute the following process:

[0157] Sending first information to the terminal, used to determine whether to send a first uplink transmission on a first symbol or not;

[0158] Among them, the first symbol is an SBFD symbol configured at the symbol where the SSB is located; the first information includes first resource information.

[0159] The transceiver 510 is configured to receive and send data under the control of the processor 500 .

[0160] In FIG5 , 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 500 and memory represented by memory 520. The bus architecture may also link together various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are well known in the art and are therefore not further described herein. The bus interface provides an interface. The transceiver 510 may be a plurality of components, i.e., including a transmitter and a receiver, providing a unit for communicating with various other devices over a transmission medium. The processor 500 is responsible for managing the bus architecture and general processing, and the memory 520 may store data used by the processor 500 when performing operations.

[0161] The processor 500 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.

[0162] The processor 500 is responsible for managing the bus architecture and general processing, and the memory 520 can store data used by the processor 500 when performing operations.

[0163] In some embodiments, the first resource information includes one or more of the following:

[0164] Time domain resource information, used to indicate a first symbol used to send the uplink transmission;

[0165] Frequency domain resource information, used to indicate the frequency domain resource for sending the uplink transmission on the first symbol, or used to indicate a second frequency domain offset threshold, where the second frequency domain offset threshold is the minimum value of the frequency domain offset between the frequency domain resource for sending the first uplink transmission and the frequency domain resource of the SSB;

[0166] The spatial resource information is used to indicate the spatial resources used for sending uplink transmission on the first symbol.

[0167] In some embodiments, the processor 500 is further configured to read the program and execute the following steps:

[0168] Send second indication information or third indication information or fourth indication information or fifth indication information or sixth indication information to the terminal, wherein the second indication information or the third indication information or the fourth indication information or the fifth indication information or the sixth indication information is used to instruct the terminal to send the first uplink transmission.

[0169] In some embodiments, the processor 500 is further configured to read the program and execute the following steps:

[0170] Sending SSB measurement configuration information to the terminal.

[0171] In some embodiments, the first uplink transmission includes one or more of the following:

[0172] PUSCH, PUCCH, PRACH, uplink reference signal.

[0173] It should be noted here that the above-mentioned device provided in the embodiment of the present disclosure can implement all the method steps implemented in the above-mentioned method embodiment and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as those in the method embodiment will not be described in detail here.

[0174] As shown in FIG6 , the information processing device according to an embodiment of the present disclosure, applied to a terminal, includes: a processor 600 configured to read a program in a memory 620 and execute the following process:

[0175] determining first information;

[0176] Determining, based on the first information, whether to send a first uplink transmission on a first symbol or not;

[0177] The first symbol is an SBFD symbol configured at the symbol where the SSB is located; and the first information includes one or more of the following:

[0178] First transmission type;

[0179] First resource information.

[0180] The transceiver 610 is configured to receive and send data under the control of the processor 600 .

[0181] In FIG6 , the bus architecture may include any number of interconnected buses and bridges, specifically various circuits of one or more processors represented by processor 600 and memory represented by memory 620, linked together. The bus architecture may also link together various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are well known in the art and are therefore not further described herein. The bus interface provides an interface. The transceiver 610 may be a plurality of components, i.e., a transmitter and a receiver, providing a unit for communicating with various other devices on a transmission medium. For different user devices, the user interface 630 may also be an interface capable of connecting external or internal devices as required, and the connected devices include but are not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.

[0182] The processor 600 is responsible for managing the bus architecture and general processing, and the memory 620 can store data used by the processor 600 when performing operations.

[0183] The processor 600 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.

[0184] The processor calls the computer program stored in the memory to execute any of the methods provided by the embodiments of the present disclosure according to the obtained executable instructions. The processor and the memory can also be arranged physically separately.

[0185] In some embodiments, the processor 600 is further configured to read the program and execute the following steps:

[0186] The first information is determined according to the protocol.

[0187] In some embodiments, the first information includes the first resource information; the processor 600 is further configured to read the program and execute the following steps:

[0188] Acquire first indication information sent by a network device, wherein the first indication information is used to indicate the first resource information;

[0189] The first information is determined according to the first indication information.

[0190] In some embodiments, the first information includes the first transmission type and the first resource information; the processor 600 is further configured to read the program and execute the following steps:

[0191] determining the first transmission type according to protocol provisions;

[0192] Acquire first indication information sent by a network device, and determine the first resource information based on the first indication information, wherein the first indication information is used to indicate the first resource information.

[0193] In some embodiments, the first transmission type includes one or more of the following:

[0194] One or more of DCI-scheduled single-slot PUSCH, multiple-slot PUSCH, multiple-PUSCH transmission, the first PUSCH of multiple-PUSCH, repetition PUSCH, the first transmission of repetition PUSCH, or PUCCH;

[0195] Aperiodic CSI Reporting activated or triggered by DCI and / or Semi-Persistent CSI Reporting transmitted on PUSCH;

[0196] CG Type-2 PUSCH and / or the first transmission opportunity of CG Type-2 PUSCH.

[0197] In some embodiments, the first transmission opportunity of the CG Type-2 PUSCH includes one or more of the following:

[0198] The first transmission slot in the CG period determined by the activation DCI;

[0199] The first transmission of the first TB within the CG period determined by the activation DCI;

[0200] All repeated transmissions of the first TB within the CG period determined by the activation DCI.

[0201] In some embodiments, the first information includes the first transmission type; the processor 600 is further configured to read the program and execute the following steps:

[0202] obtaining second indication information sent by a network device, wherein the second indication information is used to instruct the terminal to send a first uplink transmission; if a transmission type of the first uplink transmission is one of the first transmission types, determining to send the first uplink transmission on the first symbol;

[0203] or,

[0204] Obtain second indication information sent by the network device, wherein the second indication information is used to instruct the terminal to send a first uplink transmission; if the transmission type of the first uplink transmission is not one of the first transmission types, determine not to send the first uplink transmission on the first symbol.

[0205] In some embodiments, the first information includes first resource information, the first resource information includes a first frequency domain offset threshold, and the first frequency domain offset threshold is a minimum frequency domain offset between a frequency domain resource of the first uplink transmission and a frequency domain resource of the SSB;

[0206] The processor 600 is further configured to read the program and execute the following steps:

[0207] Obtain third indication information sent by a network device, wherein the third indication information is used to instruct the terminal to send a first uplink transmission; if a frequency domain offset value between a frequency domain resource of the first uplink transmission and a frequency domain resource of an SSB is greater than or equal to the first frequency domain offset threshold, determine to send the first uplink transmission on the first symbol;

[0208] or,

[0209] Obtain third indication information sent by the network device, wherein the third indication information is used to instruct the terminal to send a first uplink transmission; if the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is less than or equal to the first frequency domain offset threshold, determine not to send the first uplink transmission on the first symbol.

[0210] In some embodiments, the first information includes first resource information, the first resource information includes a first frequency domain offset threshold, and the first frequency domain offset threshold is a minimum frequency domain offset between a frequency domain resource of the first uplink transmission and a frequency domain resource of the SSB;

[0211] The processor 600 is further configured to read the program and execute the following steps:

[0212] Obtain fourth indication information sent by a network device, wherein the fourth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the frequency domain offset value between the frequency domain resource of the first uplink transmission and the frequency domain resource of the SSB is greater than or equal to the first frequency domain offset threshold, and it is determined not to perform SSB measurement according to the SSB measurement configuration information, determine to send the first uplink transmission on the first symbol;

[0213] or,

[0214] Obtain fourth indication information sent by the network device, wherein the fourth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is less than or equal to the first frequency domain offset threshold, and / or, determine to perform SSB measurement according to the SSB measurement configuration information, and determine not to send the first uplink transmission on the first symbol.

[0215] In some embodiments, the first resource information includes one or more of the following:

[0216] Time domain resource information, used to indicate a first symbol used for sending an uplink transmission;

[0217] Frequency domain resource information, used to indicate the frequency domain resource for sending the uplink transmission on the first symbol, or used to indicate a second frequency domain offset threshold, where the second frequency domain offset threshold is the minimum value of the frequency domain offset between the frequency domain resource for sending the first uplink transmission and the frequency domain resource of the SSB;

[0218] The spatial resource information is used to indicate the spatial resources used for sending uplink transmission on the first symbol.

[0219] In some embodiments, the processor 600 is further configured to read the program and execute the following steps:

[0220] Acquire fifth indication information sent by a network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; if a resource corresponding to the first uplink transmission is within a range indicated by the first resource information, determine to send the first uplink transmission on the first symbol;

[0221] or,

[0222] Obtain fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; if the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, determine not to send the first uplink transmission on the first symbol.

[0223] In some embodiments, the first resource information includes the frequency domain resource information and / or the spatial domain resource information;

[0224] The processor 600 is further configured to read the computer program in the memory and perform the following operations:

[0225] Obtain fifth indication information sent by a network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if resources corresponding to the first uplink transmission are within a range indicated by the first resource information and it is determined not to perform SSB measurement according to the SSB measurement configuration information, determine to send the first uplink transmission on the first symbol;

[0226] or,

[0227] Obtain fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, and / or, determine to perform SSB measurement according to the SSB measurement configuration information, and determine not to send the first uplink transmission on the first symbol.

[0228] In some embodiments, the processor 600 is further configured to read the program and execute the following steps:

[0229] Obtaining sixth indication information sent by a network device, wherein the sixth indication information is used to instruct the terminal to send a first uplink transmission; if a transmission type of the first uplink transmission is one of the first transmission types and a resource corresponding to the first uplink transmission is within a range indicated by the first resource information, determining to send the first uplink transmission on the first symbol;

[0230] or,

[0231] Obtain sixth indication information sent by a network device, wherein the sixth indication information is used to instruct the terminal to send a first uplink transmission; if the transmission type of the first uplink transmission is not one of the first transmission types, and / or the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, determine not to send the first uplink transmission on the first symbol.

[0232] In some embodiments, if the first resource information includes frequency domain resource information, the resources corresponding to the first uplink transmission are within a range indicated by the first resource information, including one or more of the following:

[0233] The frequency domain resources corresponding to the first uplink transmission are within the frequency domain resource set indicated by the first resource information and used to send the first uplink transmission;

[0234] The frequency domain offset between the frequency domain resources corresponding to the first uplink transmission and the frequency domain resources of the SSB is greater than or equal to the second frequency domain offset threshold.

[0235] In some embodiments, the first uplink transmission includes one or more of the following:

[0236] PUSCH, PUCCH, PRACH, uplink reference signal.

[0237] It should be noted here that the above-mentioned device provided in the embodiment of the present disclosure can implement all the method steps implemented in the above-mentioned method embodiment and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as those in the method embodiment will not be described in detail here.

[0238] As shown in FIG7 , the information processing device according to an embodiment of the present disclosure, applied to a terminal, includes:

[0239] A first determining unit 701 is configured to determine first information;

[0240] A second determining unit 702 is configured to determine, based on the first information, whether to send a first uplink transmission on a first symbol or not;

[0241] The first symbol is an SBFD symbol configured at the symbol where the SSB is located;

[0242] The first information includes one or more of the following:

[0243] First transmission type;

[0244] First resource information.

[0245] In some embodiments, the first determining unit is further configured to: determine the first information according to protocol provisions.

[0246] In some embodiments, the first information includes the first resource information; and the first determining unit is further configured to:

[0247] Acquire first indication information sent by a network device, wherein the first indication information is used to indicate the first resource information;

[0248] The first information is determined according to the first indication information.

[0249] In some embodiments, the first information includes the first transmission type and the first resource information; and the first determining unit is further configured to:

[0250] determining the first transmission type according to protocol provisions;

[0251] Acquire first indication information sent by a network device, and determine the first resource information based on the first indication information, wherein the first indication information is used to indicate the first resource information.

[0252] In some embodiments, the first transmission type includes one or more of the following:

[0253] One or more of DCI-scheduled single-slot PUSCH, multiple-slot PUSCH, multiple-PUSCH transmission, the first PUSCH of multiple-PUSCH, repetition PUSCH, the first transmission of repetition PUSCH, or PUCCH;

[0254] Aperiodic CSI Reporting activated or triggered by DCI and / or Semi-Persistent CSI Reporting transmitted on PUSCH;

[0255] CG Type-2 PUSCH and / or the first transmission opportunity of CG Type-2 PUSCH.

[0256] In some embodiments, the first transmission opportunity of the CG Type-2 PUSCH includes one or more of the following:

[0257] The first transmission slot in the CG period determined by the activation DCI;

[0258] The first transmission of the first TB within the CG period determined by the activation DCI;

[0259] All repeated transmissions of the first TB within the CG period determined by the activation DCI.

[0260] In some embodiments, the first information includes the first transmission type; and the second determining unit is further configured to:

[0261] obtaining second indication information sent by a network device, wherein the second indication information is used to instruct the terminal to send a first uplink transmission; if a transmission type of the first uplink transmission is one of the first transmission types, determining to send the first uplink transmission on the first symbol;

[0262] or,

[0263] Obtain second indication information sent by the network device, wherein the second indication information is used to instruct the terminal to send a first uplink transmission; if the transmission type of the first uplink transmission is not one of the first transmission types, determine not to send the first uplink transmission on the first symbol.

[0264] In some embodiments, the first information includes first resource information, the first resource information includes a first frequency domain offset threshold, and the first frequency domain offset threshold is a minimum frequency domain offset between a frequency domain resource of the first uplink transmission and a frequency domain resource of the SSB;

[0265] The second determining unit is further configured to:

[0266] Obtain third indication information sent by a network device, wherein the third indication information is used to instruct the terminal to send a first uplink transmission; if a frequency domain offset value between a frequency domain resource of the first uplink transmission and a frequency domain resource of an SSB is greater than or equal to the first frequency domain offset threshold, determine to send the first uplink transmission on the first symbol;

[0267] or,

[0268] Obtain third indication information sent by the network device, wherein the third indication information is used to instruct the terminal to send a first uplink transmission; if the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is less than or equal to the first frequency domain offset threshold, determine not to send the first uplink transmission on the first symbol.

[0269] In some embodiments, the first information includes first resource information, the first resource information includes a first frequency domain offset threshold, and the first frequency domain offset threshold is a minimum frequency domain offset between a frequency domain resource of the first uplink transmission and a frequency domain resource of the SSB;

[0270] The second determining unit is further configured to:

[0271] Obtain fourth indication information sent by a network device, wherein the fourth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the frequency domain offset value between the frequency domain resource of the first uplink transmission and the frequency domain resource of the SSB is greater than or equal to the first frequency domain offset threshold, and it is determined not to perform SSB measurement according to the SSB measurement configuration information, determine to send the first uplink transmission on the first symbol;

[0272] or,

[0273] Obtain fourth indication information sent by the network device, wherein the fourth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is less than or equal to the first frequency domain offset threshold, and / or, determine to perform SSB measurement according to the SSB measurement configuration information, and determine not to send the first uplink transmission on the first symbol.

[0274] In some embodiments, the first resource information includes one or more of the following:

[0275] Time domain resource information, used to indicate a first symbol used for sending an uplink transmission;

[0276] Frequency domain resource information, used to indicate the frequency domain resource for sending the uplink transmission on the first symbol, or used to indicate a second frequency domain offset threshold, where the second frequency domain offset threshold is the minimum value of the frequency domain offset between the frequency domain resource for sending the first uplink transmission and the frequency domain resource of the SSB;

[0277] The spatial resource information is used to indicate the spatial resources used for sending uplink transmission on the first symbol.

[0278] In some embodiments, the second determining unit is further configured to:

[0279] Acquire fifth indication information sent by a network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; if a resource corresponding to the first uplink transmission is within a range indicated by the first resource information, determine to send the first uplink transmission on the first symbol;

[0280] or,

[0281] Obtain fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; if the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, determine not to send the first uplink transmission on the first symbol.

[0282] In some embodiments, the first resource information includes the frequency domain resource information and / or the spatial domain resource information;

[0283] The second determining unit is further configured to:

[0284] Obtain fifth indication information sent by a network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if resources corresponding to the first uplink transmission are within a range indicated by the first resource information and it is determined not to perform SSB measurement according to the SSB measurement configuration information, determine to send the first uplink transmission on the first symbol;

[0285] or,

[0286] Obtain fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; obtain SSB measurement configuration information sent by the network device; if the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, and / or, determine to perform SSB measurement according to the SSB measurement configuration information, and determine not to send the first uplink transmission on the first symbol.

[0287] In some embodiments, the second determining unit is further configured to:

[0288] Obtaining sixth indication information sent by a network device, wherein the sixth indication information is used to instruct the terminal to send a first uplink transmission; if a transmission type of the first uplink transmission is one of the first transmission types and a resource corresponding to the first uplink transmission is within a range indicated by the first resource information, determining to send the first uplink transmission on the first symbol;

[0289] or,

[0290] Obtain sixth indication information sent by a network device, wherein the sixth indication information is used to instruct the terminal to send a first uplink transmission; if the transmission type of the first uplink transmission is not one of the first transmission types, and / or the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, determine not to send the first uplink transmission on the first symbol.

[0291] In some embodiments, if the first resource information includes frequency domain resource information, the resources corresponding to the first uplink transmission are within a range indicated by the first resource information, including one or more of the following:

[0292] The frequency domain resources corresponding to the first uplink transmission are within the frequency domain resource set indicated by the first resource information and used to send the first uplink transmission;

[0293] The frequency domain offset between the frequency domain resources corresponding to the first uplink transmission and the frequency domain resources of the SSB is greater than or equal to the second frequency domain offset threshold.

[0294] In some embodiments, the first uplink transmission includes one or more of the following:

[0295] PUSCH, PUCCH, PRACH, uplink reference signal.

[0296] It should be noted here that the above-mentioned device provided in the embodiment of the present disclosure can implement all the method steps implemented in the above-mentioned method embodiment and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as those in the method embodiment will not be described in detail here.

[0297] As shown in FIG8 , the information processing apparatus according to an embodiment of the present disclosure, applied to a network device, includes:

[0298] A first sending unit 801 is configured to send first information to a terminal, used to determine whether to send a first uplink transmission on a first symbol or not;

[0299] Among them, the first symbol is an SBFD symbol configured at the symbol where the SSB is located; the first information includes first resource information.

[0300] In some embodiments, the first resource information includes one or more of the following:

[0301] Time domain resource information, used to indicate a first symbol used to send the uplink transmission;

[0302] Frequency domain resource information, used to indicate the frequency domain resource for sending the uplink transmission on the first symbol, or used to indicate a second frequency domain offset threshold, where the second frequency domain offset threshold is the minimum value of the frequency domain offset between the frequency domain resource for sending the first uplink transmission and the frequency domain resource of the SSB;

[0303] The spatial resource information is used to indicate the spatial resources used for sending uplink transmission on the first symbol.

[0304] In some embodiments, the apparatus may further comprise:

[0305] The second sending unit is used to send second indication information or third indication information or fourth indication information or fifth indication information or sixth indication information to the terminal, wherein the second indication information or the third indication information or the fourth indication information or the fifth indication information or the sixth indication information is used to instruct the terminal to send the first uplink transmission.

[0306] In some embodiments, the apparatus may further comprise:

[0307] The third sending unit is used to send SSB measurement configuration information to the terminal.

[0308] In some embodiments, the first uplink transmission includes one or more of the following:

[0309] PUSCH, PUCCH, PRACH, uplink reference signal.

[0310] It should be noted here that the above-mentioned device provided in the embodiment of the present disclosure can implement all the method steps implemented in the above-mentioned method embodiment and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as those in the method embodiment will not be described in detail here.

[0311] It should be noted that the division of units in the embodiments of the present disclosure is schematic and is merely a logical functional division. In actual implementation, other division methods may be used. Furthermore, the functional units in the various embodiments of the present disclosure may be integrated into a single processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or software functional units.

[0312] 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 disclosure is essentially or the part that contributes to the relevant technology or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor to execute all or part of the steps of the method described in each embodiment of the present disclosure. 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.

[0313] An embodiment of the present disclosure further provides a communication device, comprising: a memory, a processor, and a program stored in the memory and executable on the processor, wherein the processor implements the steps of the above-described information processing method when executing the program.

[0314] The embodiments of the present disclosure also provide a processor-readable storage medium, on which a program is stored. When the program is executed by the processor, the various processes of the above-mentioned information processing method embodiment are implemented, and the same technical effects are achieved. To avoid repetition, it is not repeated here. The readable storage medium can be any available medium or data storage device that can be accessed by the processor, including but not limited to magnetic storage (such as floppy disk, hard disk, tape, magneto-optical disk (MO), etc.), optical storage (such as CD, DVD, BD, HVD, etc.), and semiconductor storage (such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state drive (SSD)), etc.

[0315] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or apparatus comprising the element.

[0316] Through the description of the above embodiments, those skilled in the art can clearly understand that the above embodiment methods can be implemented by means of software plus the necessary general hardware platform, and of course can also be implemented by hardware, but in many cases the former is a better embodiment. Based on this understanding, the technical solution of the present disclosure, or the part that contributes to the relevant technology, can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, disk, CD-ROM), and includes a number of instructions for enabling a terminal (which can be a mobile phone, computer, server, air conditioner, or network device, etc.) to execute the methods described in each embodiment of the present disclosure.

[0317] It should be noted that it should be understood that the division of the above modules is merely a division of logical functions. In actual implementation, they can be fully or partially integrated into one physical entity, or they can be physically separated. Moreover, these modules can all be implemented in the form of software called by a processing element; or they can all be implemented in the form of hardware; or some modules can be implemented in the form of software called by a processing element, and some modules can be implemented in the form of hardware. For example, the determination module can be a separately established processing element, or it can be integrated into a chip of the above-mentioned device. In addition, it can also be stored in the memory of the above-mentioned device in the form of program code, and called by a processing element of the above-mentioned device to perform the functions of the above-mentioned determination module. The implementation of other modules is similar. In addition, these modules can all or partly be integrated together, or they can be implemented independently. The processing element described here can be an integrated circuit with signal processing capabilities. In the implementation process, each step of the above method or each of the above modules can be completed by the hardware integrated logic circuit in the processor element or by instructions in the form of software.

[0318] For example, each module, unit, sub-unit or sub-module may be one or more integrated circuits configured to implement the above method, such as one or more application-specific integrated circuits (ASICs), one or more digital signal processors (DSPs), or one or more field programmable gate arrays (FPGAs). For another example, when a module is implemented by scheduling program code through a processing element, the processing element may be a general-purpose processor, such as a central processing unit (CPU) or other processor that can call program code. For another example, these modules may be integrated together and implemented in the form of a system-on-a-chip (SOC).

[0319] The terms "first," "second," and the like in the specification and claims of the present disclosure are used to distinguish similar objects and are not necessarily 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 the present disclosure described herein may be implemented in a sequence other than that illustrated or described herein. In addition, the terms "including" and "having," and any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or device that includes a series of steps or units need not be limited to those steps or units explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to these processes, methods, products, or devices. In addition, the use of "and / or" in the specification and claims to indicate at least one of the connected objects, for example, A and / or B and / or C, means that seven situations are included: A alone, B alone, C alone, both A and B present, both B and C present, both A and C present, and all A, B, and C present. Similarly, the use of "at least one of A and B" in the specification and claims should be understood to mean "A alone, B alone, or both A and B present."

[0320] The embodiments of the present disclosure are described above in conjunction with the accompanying drawings, but the present disclosure is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of the present disclosure, ordinary technicians in this field can also make many forms without departing from the scope of protection of the purpose of the present disclosure and the claims, all of which are protected by the present disclosure.

Claims

1. An information processing method, applied to a terminal, comprising: determining first information; Determine, according to the first information, whether to send a first uplink transmission on a first symbol or not; The first symbol is a sub-band full-duplex SBFD symbol configured at the symbol where the synchronization signal / physical broadcast channel signal block SSB is located; The first information includes one or more of the following: First transmission type; First resource information.

2. The method according to claim 1, wherein: The determining of the first information includes: The first information is determined according to protocol provisions.

3. The method according to claim 1, wherein: The first information includes the first resource information; The determining of the first information includes: Acquire first indication information sent by a network device, wherein the first indication information is used to indicate the first resource information; The first information is determined according to the first indication information.

4. The method according to claim 1, wherein: The first information includes the first transmission type and the first resource information; The determining of the first information includes: Determining the first transmission type according to protocol provisions; Acquire first indication information sent by a network device, and determine the first resource information according to the first indication information, wherein the first indication information is used to indicate the first resource information.

5. The method according to claim 2 or 4, wherein: The first transmission type includes one or more of the following: One or more of single-slot PUSCH, multiple-slot PUSCH, multiple-PUSCH transmission, first PUSCH of multiple-PUSCH, repetition PUSCH, first transmission of repetition PUSCH or physical uplink control channel PUCCH scheduled by downlink control information DCI; Aperiodic CSI Reporting activated or triggered by DCI and / or Semi-Persistent CSI Reporting transmitted on PUSCH; Configure the first transmission opportunity of the authorization type 2 physical uplink shared channel CG Type-2 PUSCH and / or CG Type-2 PUSCH.

6. The method according to claim 5, wherein: The first transmission opportunity of the CG Type-2 PUSCH includes one or more of the following: The first transmission slot in the CG period determined by the activation DCI; The first transmission of the first transport block TB within the CG period determined by the activation DCI; All repeated transmissions of the first TB within the CG period determined by the activating DCI.

7. The method according to claim 2, wherein: The first information includes the first transmission type; The step of determining, according to the first information, to send a first uplink transmission on a first symbol comprises: Acquire second indication information sent by the network device, wherein the second indication information is used to instruct the terminal to send a first uplink transmission; If the transmission type of the first uplink transmission is one of the first transmission types, determine to send the first uplink transmission on the first symbol; or, The determining, according to the first information, not to send the first uplink transmission on the first symbol includes: Acquire second indication information sent by the network device, wherein the second indication information is used to instruct the terminal to send a first uplink transmission; If the transmission type of the first uplink transmission is not one of the first transmission types, determine not to send the first uplink transmission on the first symbol.

8. The method according to claim 2, wherein: The first information includes first resource information, the first resource information includes a first frequency domain offset threshold, and the first frequency domain offset threshold is a minimum frequency domain offset between a frequency domain resource of the first uplink transmission and a frequency domain resource of the SSB; The step of determining, according to the first information, to send a first uplink transmission on a first symbol comprises: Acquire third indication information sent by the network device, wherein the third indication information is used to instruct the terminal to send a first uplink transmission; If the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is greater than or equal to the first frequency domain offset threshold, determine to send the first uplink transmission on the first symbol; or, The determining, according to the first information, not to send the first uplink transmission on the first symbol includes: Acquire third indication information sent by the network device, wherein the third indication information is used to instruct the terminal to send a first uplink transmission; If the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is less than or equal to the first frequency domain offset threshold, it is determined that the first uplink transmission is not sent on the first symbol.

9. The method according to claim 2, wherein: The first information includes first resource information, the first resource information includes a first frequency domain offset threshold, and the first frequency domain offset threshold is a minimum frequency domain offset between a frequency domain resource of the first uplink transmission and a frequency domain resource of the SSB; The step of determining, according to the first information, to send a first uplink transmission on a first symbol comprises: Acquire fourth indication information sent by the network device, wherein the fourth indication information is used to instruct the terminal to send a first uplink transmission; Obtaining SSB measurement configuration information sent by the network device; If the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is greater than or equal to the first frequency domain offset threshold, and it is determined not to perform SSB measurement according to the SSB measurement configuration information, determining to send the first uplink transmission on the first symbol; or, The determining, according to the first information, not to send a first uplink transmission on a first symbol includes: Acquire fourth indication information sent by the network device, wherein the fourth indication information is used to instruct the terminal to send a first uplink transmission; Obtaining SSB measurement configuration information sent by the network device; If the frequency domain offset value between the frequency domain resources of the first uplink transmission and the frequency domain resources of the SSB is less than or equal to the first frequency domain offset threshold, and / or, it is determined to perform SSB measurement according to the SSB measurement configuration information, and it is determined not to send the first uplink transmission on the first symbol.

10. The method according to claim 3 or 4, wherein: The first resource information includes one or more of the following: Time domain resource information, used to indicate a first symbol used to send an uplink transmission; Frequency domain resource information, used to indicate the frequency domain resource used for sending uplink transmission on the first symbol, or used to indicate a second frequency domain offset threshold, where the second frequency domain offset threshold is the minimum value of the frequency domain offset between the frequency domain resource used for sending the first uplink transmission and the frequency domain resource of the SSB; The spatial resource information is used to indicate the spatial resources used for sending uplink transmission on the first symbol.

11. The method according to claim 10, wherein: The step of determining, according to the first information, to send a first uplink transmission on a first symbol comprises: Acquire fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; If the resource corresponding to the first uplink transmission is within the range indicated by the first resource information, determine to send the first uplink transmission on the first symbol; or, The determining, according to the first information, not to send a first uplink transmission on a first symbol includes: Acquire fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; If the resource corresponding to the first uplink transmission is not within the range indicated by the first resource information, it is determined not to send the first uplink transmission on the first symbol.

12. The method according to claim 10, wherein: The first resource information includes the frequency domain resource information and / or the spatial domain resource information; The step of determining, according to the first information, to send a first uplink transmission on a first symbol comprises: Acquire fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; Obtaining SSB measurement configuration information sent by the network device; If the resource corresponding to the first uplink transmission is within the range indicated by the first resource information and it is determined not to perform SSB measurement according to the SSB measurement configuration information, determining to send the first uplink transmission on the first symbol; or, The determining, according to the first information, not to send a first uplink transmission on a first symbol includes: Acquire fifth indication information sent by the network device, wherein the fifth indication information is used to instruct the terminal to send a first uplink transmission; Obtaining SSB measurement configuration information sent by the network device; If the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, and / or, it is determined to perform SSB measurement according to the SSB measurement configuration information, and it is determined not to send the first uplink transmission on the first symbol.

13. The method according to claim 10, wherein: The step of determining, according to the first information, to send a first uplink transmission on a first symbol comprises: Acquire sixth indication information sent by the network device, wherein the sixth indication information is used to instruct the terminal to send a first uplink transmission; If the transmission type of the first uplink transmission is one of the first transmission types and the resource corresponding to the first uplink transmission is within the range indicated by the first resource information, determine to send the first uplink transmission on the first symbol; or, The determining, according to the first information, not to send a first uplink transmission on a first symbol includes: Acquire sixth indication information sent by the network device, wherein the sixth indication information is used to instruct the terminal to send a first uplink transmission; If the transmission type of the first uplink transmission is not one of the first transmission types, and / or the resources corresponding to the first uplink transmission are not within the range indicated by the first resource information, it is determined not to send the first uplink transmission on the first symbol.

14. The method according to claim 11, 12 or 13, wherein: If the first resource information includes frequency domain resource information, the resource corresponding to the first uplink transmission is within the range indicated by the first resource information, including one or more of the following: The frequency domain resources corresponding to the first uplink transmission are located in the frequency domain resource set indicated by the first resource information and used to send the first uplink transmission; The frequency domain offset between the frequency domain resources corresponding to the first uplink transmission and the frequency domain resources of the SSB is greater than or equal to the second frequency domain offset threshold.

15. The method according to claim 1, wherein: The first uplink transmission includes one or more of the following: PUSCH, PUCCH, physical random access channel PRACH, uplink reference signal.

16. An information processing method, applied to a network device, comprising: Sending first information to a terminal, used to determine whether to send a first uplink transmission on a first symbol or not to send the first uplink transmission; The first symbol is a SBFD symbol configured at the symbol where the SSB is located; The first information includes first resource information.

17. The method according to claim 16, wherein: The first resource information includes one or more of the following: Time domain resource information, used to indicate a first symbol used to send the uplink transmission; Frequency domain resource information, used to indicate the frequency domain resource used for sending uplink transmission on the first symbol, or used to indicate a second frequency domain offset threshold, where the second frequency domain offset threshold is the minimum value of the frequency domain offset between the frequency domain resource used for sending the first uplink transmission and the frequency domain resource of the SSB; The spatial resource information is used to indicate the spatial resources used for sending uplink transmission on the first symbol.

18. The method according to claim 16, further comprising: Sending second indication information, third indication information, fourth indication information, fifth indication information, or sixth indication information to the terminal, wherein the second indication information, the third indication information, the fourth indication information, the fifth indication information, or the sixth indication information is used to instruct the terminal to send the first uplink transmission.

19. The method according to claim 16, further comprising: Sending SSB measurement configuration information to the terminal.

20. The method according to claim 16, wherein: The first uplink transmission includes one or more of the following: PUSCH, PUCCH, PRACH, uplink reference signal.

21. An information processing device, wherein: Applied to terminals, 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: determining first information; Determine, according to the first information, whether to send a first uplink transmission on a first symbol or not; The first symbol is an SBFD symbol configured at the symbol where the SSB is located; the first information includes one or more of the following: First transmission type; First resource information.

22. An information processing device, applied to a network device, comprising: Memory, transceiver, processor: Memory for storing computer programs; a transceiver, for transmitting and receiving data under the control of the processor; A processor is configured to read the computer program in the memory and perform the following operations: Sending first information to a terminal, used to determine whether to send a first uplink transmission on a first symbol or not to send the first uplink transmission; Among them, the first symbol is a SBFD symbol configured at the symbol where the SSB is located; the first information includes first resource information.

23. An information processing device, applied to a terminal, comprising: A first determining unit, configured to determine first information; A second determining unit, configured to determine, according to the first information, whether to send a first uplink transmission on a first symbol or not to send the first uplink transmission; The first symbol is a SBFD symbol configured at the symbol where the SSB is located; The first information includes one or more of the following: First transmission type; First resource information.

24. An information processing device, applied to a network device, comprising: A first sending unit, configured to send first information to a terminal, used to determine whether to send a first uplink transmission on a first symbol or not; Among them, the first symbol is a SBFD symbol configured at the symbol where the SSB is located; the first information includes first resource information.

25. A processor-readable storage medium storing a computer program, wherein the computer program is configured to cause the processor to execute the method according to any one of claims 1 to 20.

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