Processing method, communication device, and computer readable storage medium
By optimizing the bit arrangement and sequence cyclic shift of UCI information during PUCCH transmission, the problems of increased beam information reporting delay and uplink signaling overhead in existing technologies are solved, and an efficient uplink transmission technology mechanism is realized.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2026-04-02
AI Technical Summary
The existing protocol scheme has an imperfect uplink transmission technology mechanism, which leads to increased beam information reporting delay and/or increased uplink signaling overhead.
By transmitting UCI information via PUCCH, optimizing the bit arrangement and sequence cyclic shift of UCI information, and combining this with the selection of PUCCH resources, efficient transmission of UCI information can be achieved.
It effectively avoids the increase in beam information reporting delay and uplink signaling overhead, and optimizes the uplink transmission technology mechanism.
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Figure CN2024122434_02042026_PF_FP_ABST
Abstract
Description
Processing method, communication device and computer readable storage medium TECHNICAL FIELD
[0001] The present application relates to the technical field of communication, in particular to a processing method, a communication device and a computer readable storage medium. BACKGROUND
[0002] UCI (Uplink Control Information) is key control information sent by a terminal device to a network device, and contains necessary information required by the network device to manage and / or schedule the terminal device.
[0003] In the process of conceiving and implementing the present application, the inventors have found that at least the following problems exist: the uplink transmission technology mechanism in the existing protocol scheme is imperfect, which can cause an increase in beam information reporting delay and / or an increase in uplink signaling overhead, and therefore it is necessary to improve the uplink transmission technology mechanism.
[0004] The foregoing description is intended to provide general background information and does not necessarily constitute prior art. TECHNICAL SOLUTION
[0005] The main purpose of the present application is to provide a processing method, a communication device and a computer readable storage medium, aiming to improve the uplink transmission technology mechanism, thereby avoiding an increase in beam information reporting delay and / or an increase in uplink signaling overhead.
[0006] To achieve the above-mentioned purpose, the processing method provided by the present application can be applied to a terminal device (such as a mobile phone), and includes the following steps:
[0007] S1: transmitting UCI information on a PUCCH.
[0008] Optionally, the UCI information includes at least one of a first SR, a second SR, a first UCI, a HARQ-ACK and a CSI report.
[0009] Optionally, the UCI information includes at least one group of UCI bits.
[0010] Optionally, the at least one group of UCI bits includes at least one of the following:
[0011] At least one of the first SR, the first UCI and the second SR constitutes a first number of bits;
[0012] The first UCI constitutes a second number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0013] The first UCI constitutes a fourth number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0014] The first SR constitutes a fifth number of bits, and / or the second SR constitutes a sixth number of bits.
[0015] The first SR and the first UCI constitute a seventh number of bits, and / or the second SR constitutes a sixth number of bits.
[0016] The first SR and the first UCI constitute an eighth number of bits, and / or the second SR constitutes a sixth number of bits.
[0017] Optionally, the method further comprises at least one of the following:
[0018] The first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive reporting request, a positive notification reporting request;
[0019] The second number of bits indicates a negative notification reporting request and / or a positive notification reporting request;
[0020] The third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, a positive reporting request;
[0021] The fourth number of bits indicates whether the first UCI notifies or indicates the network device of the measurement information meeting the first condition for reporting;
[0022] The fifth number of bits indicates whether the first SR requests resources for reporting the measurement information meeting the first condition;
[0023] The seventh number of bits indicates at least one of a negative reporting request, a negative notification reporting request, a positive reporting request, a positive notification reporting request;
[0024] The eighth number of bits indicates whether the first SR requests resources for reporting the measurement information meeting the first condition, and / or indicates whether the first UCI notifies or indicates the network device of the measurement information meeting the first condition for reporting.
[0025] Optionally, the method further comprises at least one of the following:
[0026] If the at least one SR is a positive reporting request, the value of at least one of the first number of bits, the third number of bits, and the seventh number of bits indicates the positive reporting request;
[0027] If the first UCI is a positive notification reporting request, the value of the first number of bits, the second number of bits, and the seventh number of bits indicates the positive notification reporting request;
[0028] The positive reporting request corresponds to the first SR;
[0029] The positive reporting request is used for requesting the resource to report the measurement information satisfying the first condition.
[0030] The positive notification reporting request corresponds to the first UCI.
[0031] The positive notification reporting request is used for notifying or instructing the network device to report the measurement information satisfying the first condition.
[0032] The first quantity of bits correspond to the fourth quantity of first UCIs, and the remaining values of the first quantity of bits correspond to the first SR and / or the second SR.
[0033] The fourth quantity of bits one-to-one correspond to the fourth quantity of first UCIs.
[0034] The fifth quantity of bits one-to-one correspond to the fifth quantity of first SRs.
[0035] The first quantity of bits correspond to the fourth quantity of first UCIs, and the remaining values of the first quantity of bits correspond to the first SR.
[0036] The first quantity of bits correspond to the fourth quantity of first UCIs, and the remaining values of the first quantity of bits correspond to the first SR.
[0037] The first quantity of bits correspond to the fourth quantity of first UCIs, and the remaining values of the first quantity of bits correspond to the first SR.
[0038] Optionally, the method further comprises the steps of:
[0039] S0: selecting or determining a bit arrangement method of UCI information.
[0040] Optionally, the step S0 is before the step S1.
[0041] Optionally, the step S0 comprises at least one of the following:
[0042] adding the first quantity of bits after the bits of HARQ-ACK;
[0043] adding the first quantity of bits before the bits of CSI report;
[0044] adding the second quantity of bits and / or the fourth quantity of bits after the bits of HARQ-ACK;
[0045] adding at least one of the second quantity of bits, the third quantity of bits and the fourth quantity of bits after the bits of HARQ-ACK based on the first arrangement order;
[0046] adding at least one of the second quantity of bits, the third quantity of bits and the fourth quantity of bits after the bits of HARQ-ACK based on the second arrangement order;
[0047] adding the second number of bits or the fourth number of bits before bits of the CSI report;
[0048] adding at least one of the second number of bits, the third number of bits, and the fourth number of bits before bits of the CSI report based on the third arrangement order;
[0049] adding at least one of the second number of bits, the third number of bits, and the fourth number of bits before bits of the CSI report based on the fourth arrangement order;
[0050] adding the fifth number of bits and / or the sixth number of bits after bits of the HARQ-ACK based on a fifth arrangement order;
[0051] adding the fifth number of bits and / or the sixth number of bits before bits of the CSI report based on a sixth arrangement order;
[0052] adding at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits after bits of the HARQ-ACK based on a seventh arrangement order;
[0053] adding at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits before bits of the CSI report based on an eighth arrangement order.
[0054] Optionally, the method further comprises at least one of:
[0055] the first arrangement order is: bits of the HARQ-ACK, bits of the first UCI, bits of the first SR and / or the second SR;
[0056] the second arrangement order is: bits of the HARQ-ACK, bits of the first SR and / or the second SR, bits of the first UCI;
[0057] the third arrangement order is: bits of the first UCI, bits of the first SR and / or the second SR, bits of the CSI report;
[0058] the fourth arrangement order is: bits of the first SR and / or the second SR, bits of the first UCI, bits of the CSI report;
[0059] the fifth arrangement order is: bits of the HARQ-ACK, bits of the first SR, bits of the second SR;
[0060] the sixth arrangement order is: bits of the first SR, bits of the second SR, bits of the CSI report;
[0061] The seventh arrangement order is: bits of HARQ-ACK, bits of first SR and first UCI, bits of second SR;
[0062] The eighth arrangement order is: bits of first SR and first UCI, bits of second SR, bits of CSI report.
[0063] Optionally, the step S1 comprises at least one of the following steps:
[0064] S11: cancel the PUCCH transmission of first UCI in the PUCCH transmission of HARQ-ACK;
[0065] S12: cancel the PUCCH transmission of HARQ-ACK in the PUCCH transmission of first UCI;
[0066] S13: transmit first UCI and / or HARQ-ACK in the PUCCH.
[0067] Optionally, the step S13 comprises:
[0068] selecting or determining a sequence cyclic shift of first UCI and HARQ-ACK;
[0069] determining a cyclic shift according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift and the first formula;
[0070] determining a sequence according to the cyclic shift;
[0071] selecting or determining a PUCCH resource;
[0072] mapping the sequence to the PUCCH resource.
[0073] Optionally, the selecting or determining a sequence cyclic shift of first UCI and HARQ-ACK comprises at least one of the following:
[0074] determining a sequence cyclic shift of HARQ-ACK and first UCI based on at least one of a value of HARQ-ACK and first UCI, a first reference sequence cyclic shift and a first cyclic shift interval;
[0075] determining a sequence cyclic shift of HARQ-ACK and first UCI based on at least one of a value of HARQ-ACK and first UCI, a sequence cyclic shift of HARQ-ACK, a sequence cyclic shift of HARQ-ACK and SR.
[0076] Optionally, the method further comprises at least one of the following:
[0077] the PUCCH resource comprises resource elements of the PUCCH transmission;
[0078] If the HARQ-ACK includes one bit, the sequence cyclic shift includes the first value and / or the second value;
[0079] If the HARQ-ACK includes two bits, the sequence cyclic shift includes at least one of the first value, the second value, the third value, and the fourth value;
[0080] The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK;
[0081] The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR;
[0082] The PUCCH is transmitted in a resource for the HARQ-ACK;
[0083] The PUCCH is transmitted in a resource for the first UCI.
[0084] Optionally, the method further includes at least one of:
[0085] The first value is a first reference sequence cyclic shift;
[0086] The second value is a sum of the first value and a first cyclic shift interval;
[0087] The third value is a sum of the second value and the first cyclic shift interval;
[0088] The fourth value is a sum of the third value and the first cyclic shift interval.
[0089] The present application also provides a processing method, which can be applied to a network device (such as a base station) and includes the following steps:
[0090] S2: receiving UCI information, which is transmitted by a terminal device on a PUCCH.
[0091] Optionally, the method further includes at least one of:
[0092] The UCI information includes at least one of a first SR, a second SR, a first UCI, a HARQ-ACK, and a CSI report;
[0093] The UCI information includes at least one group of UCI bits;
[0094] The terminal device selects or determines a bit arrangement method of the UCI information.
[0095] Optionally, the at least one group of UCI bits includes at least one of:
[0096] At least one of the first SR, the first UCI, and the second SR constitutes a first number of bits;
[0097] The first UCI constitutes a second number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0098] The first UCI constitutes a fourth number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0099] The first SR constitutes a fifth number of bits, and / or the second SR constitutes a sixth number of bits;
[0100] The first SR and the first UCI constitute a seventh number of bits, and / or the second SR constitutes a sixth number of bits;
[0101] The first SR and the first UCI constitute an eighth number of bits, and / or the second SR constitutes a sixth number of bits.
[0102] Optionally, the method further comprises at least one of:
[0103] The first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive reporting request, a positive reporting request indication;
[0104] The second number of bits indicates a negative reporting request indication and / or a positive reporting request indication;
[0105] The third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, a positive reporting request;
[0106] The fourth number of bits indicates whether the first UCI indicates or notifies the network device of the reporting of the measurement information satisfying the first condition;
[0107] The fifth number of bits indicates whether the first SR requests resources for reporting the measurement information satisfying the first condition;
[0108] The seventh number of bits indicates at least one of a negative reporting request, a negative reporting request indication, a positive reporting request, a positive reporting request indication;
[0109] The eighth number of bits indicates whether the first SR requests resources for reporting the measurement information satisfying the first condition, and / or indicates whether the first UCI indicates or notifies the network device of the reporting of the measurement information satisfying the first condition.
[0110] Optionally, the method further comprises at least one of:
[0111] If the at least one SR is a positive reporting request, at least one of the first number of bits, the third number of bits, and the seventh number of bits indicates the positive reporting request;
[0112] If the first UCI is a positive notification reporting request, the values of the first number of bits, the second number of bits, and the seventh number of bits indicate the positive notification reporting request;
[0113] The positive reporting request corresponds to the first SR;
[0114] The positive reporting request is used to request a resource to report measurement information satisfying the first condition;
[0115] The positive notification reporting request corresponds to the first UCI;
[0116] The positive notification reporting request is used to notify or indicate the network device to report measurement information satisfying the first condition;
[0117] The first fourth values of the first number of bits correspond to the fourth number of first UCIs, and the remaining values of the first number of bits correspond to the first SR and / or the second SR;
[0118] The fourth number of bits one-to-one corresponds to the fourth number of first UCIs;
[0119] The fifth number of bits one-to-one corresponds to the fifth number of first SRs;
[0120] The first fourth values of the seventh number of bits correspond to the fourth number of first UCIs, and the remaining values of the seventh number of bits correspond to the first SR;
[0121] The first fourth bits of the eighth number of bits one-to-one correspond to the fourth number of first UCIs;
[0122] The remaining fifth number of bits of the eighth number of bits one-to-one corresponds to the fifth number of first SRs.
[0123] Optionally, the terminal device selects or determines a bit arrangement method of UCI information, including at least one of the following:
[0124] The terminal device adds the first number of bits after the bits of the HARQ-ACK;
[0125] The terminal device adds the first number of bits before the bits of the CSI report;
[0126] The terminal device adds the second number of bits and / or the fourth number of bits after the bits of the HARQ-ACK;
[0127] The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits after the bits of the HARQ-ACK based on the first arrangement order;
[0128] The terminal device adds at least one of the second number of bits, the third number of bits and the fourth number of bits to the bits of the HARQ-ACK after the bits of the HARQ-ACK based on the second arrangement order;
[0129] The terminal device adds the second number of bits or the fourth number of bits to the bits of the CSI report before the bits of the CSI report;
[0130] The terminal device adds at least one of the second number of bits, the third number of bits and the fourth number of bits to the bits of the CSI report before the bits of the CSI report based on the third arrangement order;
[0131] The terminal device adds at least one of the second number of bits, the third number of bits and the fourth number of bits to the bits of the CSI report before the bits of the CSI report based on the fourth arrangement order;
[0132] The terminal device adds the fifth number of bits and / or the sixth number of bits to the bits of the HARQ-ACK after the bits of the HARQ-ACK based on the fifth arrangement order;
[0133] The terminal device adds the fifth number of bits and / or the sixth number of bits to the bits of the CSI report before the bits of the CSI report based on the sixth arrangement order;
[0134] The terminal device adds at least one of the sixth number of bits, the seventh number of bits and the eighth number of bits to the bits of the HARQ-ACK after the bits of the HARQ-ACK based on the seventh arrangement order;
[0135] The terminal device adds at least one of the sixth number of bits, the seventh number of bits and the eighth number of bits to the bits of the CSI report before the bits of the CSI report based on the eighth arrangement order.
[0136] Optionally, the method further comprises at least one of:
[0137] The first arrangement order is: the bits of the HARQ-ACK, the bits of the first UCI, the bits of the first SR and / or the second SR;
[0138] The second arrangement order is: the bits of the HARQ-ACK, the bits of the first SR and / or the second SR, the bits of the first UCI;
[0139] The third arrangement order is: the bits of the first UCI, the bits of the first SR and / or the second SR, the bits of the CSI report;
[0140] The fourth arrangement order is: the bits of the first SR and / or the second SR, the bits of the first UCI, the bits of the CSI report;
[0141] The fifth arrangement order is: the bits of the HARQ-ACK, the bits of the first SR, the bits of the second SR;
[0142] The sixth arrangement order is: bits of the first SR, bits of the second SR, bits of the CSI report;
[0143] The seventh arrangement order is: bits of the HARQ-ACK, bits of the first SR and the first UCI, bits of the second SR;
[0144] The eighth arrangement order is: bits of the first SR and the first UCI, bits of the second SR, bits of the CSI report.
[0145] Optionally, the terminal device transmits the UCI information on the PUCCH, including at least one of:
[0146] The terminal device transmits the HARQ-ACK on the PUCCH, and cancels the PUCCH transmission of the first UCI;
[0147] The terminal device transmits the first UCI on the PUCCH, and cancels the PUCCH transmission of the HARQ-ACK;
[0148] The terminal device transmits the first UCI and / or the HARQ-ACK on the PUCCH.
[0149] Optionally, the terminal device transmits the first UCI and / or the HARQ-ACK on the PUCCH, including:
[0150] The terminal device selects or determines the sequence cyclic shift of the first UCI and the HARQ-ACK;
[0151] The terminal device determines the cyclic shift according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift, and the first formula;
[0152] The terminal device determines the sequence according to the cyclic shift;
[0153] The terminal device selects or determines the PUCCH resource;
[0154] The terminal device maps the sequence to the PUCCH resource.
[0155] Optionally, the terminal device selects or determines the sequence cyclic shift of the first UCI and the HARQ-ACK, including at least one of:
[0156] The terminal device determines the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the values of the HARQ-ACK and the first UCI, the first reference sequence cyclic shift, and the first cyclic shift interval;
[0157] The terminal device determines the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the sequence cyclic shift of the HARQ-ACK, and the sequence cyclic shift of the HARQ-ACK and the SR.
[0158] Optionally, the method further comprises at least one of:
[0159] The PUCCH resource comprises resource elements of the PUCCH transmission;
[0160] If the HARQ-ACK comprises one bit, the sequence cyclic shift comprises the first value and / or the second value;
[0161] If the HARQ-ACK comprises two bits, the sequence cyclic shift comprises at least one of the first value, the second value, the third value, and the fourth value;
[0162] The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK;
[0163] The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR;
[0164] The PUCCH is transmitted in the resource for the HARQ-ACK;
[0165] The PUCCH is transmitted in the resource for the first UCI.
[0166] Optionally, the method further comprises at least one of:
[0167] The first value is a first reference sequence cyclic shift;
[0168] The second value is a sum of the first value and a first cyclic shift interval;
[0169] The third value is a sum of the second value and the first cyclic shift interval;
[0170] The fourth value is a sum of the third value and the first cyclic shift interval.
[0171] The application also provides a communication device comprising a memory, a processor, and a processing program stored in the memory and executable on the processor, the processing program, when executed by the processor, implements the steps of the processing method according to any one of the above.
[0172] The communication device in the application can be a terminal device (such as a mobile phone) or a network device (such as a base station), and the specific meaning needs to be clarified according to the context.
[0173] The application further provides a computer readable storage medium, wherein a processing program is stored on the computer readable storage medium, and the processing program is executed by a processor to implement the steps of the processing method according to any one of the preceding embodiments.
[0174] The technical scheme of the application transmits UCI information through PUCCH, improves the uplink transmission technology mechanism, and further avoids increasing the reporting delay of beam information and / or avoids increasing the uplink signaling overhead. BRIEF DESCRIPTION OF DRAWINGS
[0175] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the application and serve to explain the principles of the application. In order to more clearly illustrate the technical scheme of the embodiments of the application, the drawings needed to be used in the embodiment description will be briefly introduced as follows. Obviously, for those of ordinary skill in the art, other drawings can also be obtained based on these drawings without any creative work.
[0176] Fig. 1 is a schematic diagram of the hardware structure of a mobile terminal for implementing various embodiments of the application;
[0177] Fig. 2 is a schematic diagram of a communication network system architecture provided by the embodiments of the application;
[0178] Fig. 3 is a schematic diagram of the hardware structure of a controller 140 provided by the application;
[0179] Fig. 4 is a schematic diagram of the hardware structure of a network node 150 provided by the application;
[0180] Fig. 5 is a schematic diagram of the flow of a processing method according to a first embodiment;
[0181] Fig. 6 is a schematic diagram of the flow of a processing method according to a fourth embodiment;
[0182] Fig. 7 is a schematic diagram of the flow of a processing method according to a sixth embodiment;
[0183] Fig. 8 is a schematic diagram of the flow of a processing method according to an eighth embodiment;
[0184] Fig. 9 is a schematic diagram of the structure of a processing device provided by the embodiments of the application;
[0185] Fig. 10 is a schematic diagram of the structure of a processing device provided by the embodiments of the application;
[0186] Fig. 11 is a schematic diagram of the structure of a communication device provided by the embodiments of the application.
[0187] The objectives, features and advantages of the present application will be further illustrated by the following embodiments in conjunction with the accompanying drawings. The above-mentioned drawings have shown the specific embodiments of the present application, which will be described in more detail in the following. These drawings and the written description are not intended to restrict the scope of the present application in any way, but to illustrate the concept of the present application for those skilled in the art by referring to the specific embodiments.
[0188] Embodiments of the present application
[0189] The exemplary embodiments will be described in detail herein with reference to the attached drawings. In the following description, unless otherwise indicated, like numbers in the attached drawings refer to the same or similar elements. The embodiments described in the following exemplary embodiments are not meant to represent all embodiments consistent with the present application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of the present application as detailed in the appended claims.
[0190] It should be noted that, in this document, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element preceded by "comprises... a" does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the recited element and / or a component with the same name in different embodiments of the application can or can not have the same reference numerals, but can have the same meaning while in other embodiments the same reference numerals can have different meanings.
[0191] It should be understood that, although terms, first, second, third, etc. can be used herein to describe various information, these terms are not intended to denote a particular order or hierarchy among the information. These terms are used only to distinguish one category of information from another. For example, a first information can be termed a second information, and similarly, a second information can be termed a first information, without departing from the scope hereof. The word "if' as used herein, depending on the context in which it is used, can be interpreted to mean "when" or "upon" or "in response to the determining" or "in response to the detecting." Also, the term "comprises" or "comprising" as used herein, is to be construed as meaning "comprises at least the recited features, steps, operations, elements, components, items, kinds, and / or groups thereof, but not excluding the presence or addition of one or more other features, steps, operations, elements, components, items, kinds, and / or groups thereof. The term "or," "and / or," "including at least one of," and the like as used herein, can be construed in the manner set out in the above paragraph. For example, "including at least one of A, B, and C" means "at least one of A and / or B and / or C," and "A, B, or C" or "A, B, and / or C" means "at least one of A and / or B and / or C." An exception to this definition will occur if a combination of elements, functions, steps, or acts of in some way involves a conjunction of an exclusion of a combination of features.
[0192] It should be understood that, although various steps in the flowcharts of the embodiments herein are shown in a sequential order, these steps can not necessarily be performed in the order shown. Unless explicitly stated, the execution of these steps can not be strictly sequential, and they can be performed in other orders. Also, at least some of the steps shown in the flowcharts can include multiple sub-steps or multiple stages, which can not necessarily be performed at the same time, and can be performed at different times, and can not necessarily be performed in a sequential order, but can be performed in an interleaved or alternating manner with at least some of the other steps or sub-steps or stages of other steps.
[0193] The word "if' as used herein, depending on the context in which it is used, can be interpreted to mean "when" or "upon" or "in response to the determining" or "in response to the detecting." Similarly, the phrase "if determined" or "if detected (a stated condition or event)" can be interpreted to mean "when determined" or "in response to the determining" or "when detected (a stated condition or event)" or "in response to the detecting (a stated condition or event)," depending on the context in which it is used.
[0194] It should be noted that, in the present document, step codes such as S1, S2, etc. are adopted for the purpose of more clearly and concisely expressing the corresponding content, and do not constitute substantial restrictions on the order, and those skilled in the art can perform S2 before S1, etc. in specific implementation, but these should be within the protection scope of the present application.
[0195] It should be understood that the specific embodiments described herein are merely to explain the present application and not to limit the present application.
[0196] In the following description, the suffixes such as "module", "part", or "unit" used for an element are merely intended for facilitating explanation of the present application, and have no specific meaning by itself. Thus, "module", "part", or "unit" can be mixedly used.
[0197] The communication device in the present application can be a terminal device (such as a mobile phone) or a network device (such as a base station), and the specific meaning needs to be clarified according to the context.
[0198] The terminal device can be implemented in various forms. For example, the terminal device described in the present application can include a smart terminal device such as a mobile phone, a tablet computer, a notebook computer, a palm computer, a Personal Digital Assistant (PDA), a Portable Media Player (PMP), a navigation device, a wearable device, a smart bracelet, a pedometer, and the like, and a fixed terminal device such as a digital TV, a desktop computer, and the like.
[0199] In the following description, a mobile terminal will be taken as an example for illustration, and those skilled in the art will understand that the configuration according to the embodiments of the present application can also be applied to a terminal device of a fixed type, except for elements specifically used for mobile purposes.
[0200] Referring to FIG. 1, it is a schematic diagram of a hardware structure of a mobile terminal implementing various embodiments of the present application. The mobile terminal 100 can include an RF (Radio Frequency) unit 101, a WiFi module 102, an audio output unit 103, an A / V (Audio / Video) input unit 104, a sensor 105, a display unit 106, a user input unit 107, an interface unit 108, a storage 109, a processor 110, and a power supply 111, etc. Those skilled in the art can understand that the mobile terminal structure shown in FIG. 1 does not constitute a limitation on the mobile terminal, and the mobile terminal can include more or less components than those shown in the diagram, or combine certain components, or different component arrangements.
[0201] The various components of the mobile terminal will be specifically introduced below in combination with FIG. 1:
[0202] The radio frequency unit 101 can be used for receiving and transmitting signals in information or communication processes. Specifically, the radio frequency unit 101 receives downlink information from a base station and provides the received information to the processor 110 for processing. In addition, the radio frequency unit 101 transmits uplink data to the base station. Generally, the radio frequency unit 101 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, etc. The radio frequency unit 101 can also communicate with a network and other devices through wireless communication. The wireless communication can use any communication standard or protocol, including but not limited to GSM (Global System for Mobile communication), GPRS (General Packet Radio Service), CDMA2000 (Code Division Multiple Access 2000), WCDMA (Wideband Code Division Multiple Access), TD-SCDMA (Time Division-Synchronous Code Division Multiple Access), FDD-LTE (Frequency Division Duplexing-Long Term Evolution), TDD-LTE (Time Division Duplexing-Long Term Evolution), 5G, 6G, etc.
[0203] WiFi is a short-range wireless transmission technology. The WiFi module 102 can help users send and receive e-mails, browse web pages, and access streaming media, etc. It provides users with wireless broadband Internet access. Although the WiFi module 102 is shown in FIG. 1, it is understood that it is not a necessary component of the mobile terminal, and can be omitted without changing the essence of the application.
[0204] The audio output unit 103 can convert audio data, which is received by the radio frequency unit 101 or the WiFi module 102 or stored in the memory 109, into an audio signal and output the audio signal as sound when the mobile terminal 100 is in a call signal reception mode, a call mode, a recording mode, a voice recognition mode, a broadcast reception mode, etc. In addition, the audio output unit 103 can provide audio output related to a particular function performed by the mobile terminal 100 (e.g., a call signal reception sound, a message reception sound, etc.). The audio output unit 103 can include a speaker, a buzzer, etc.
[0205] The A / V input unit 104 is configured to receive audio or video signals. The A / V input unit 104 can include a graphics processor (GPU) 1041 and a microphone 1042. The graphics processor 1041 processes image data of a still picture or a video obtained by an image capture device (e.g., a camera) in a video capture mode or an image capture mode. Processed image frames can be displayed on the display unit 106. Processed image frames can be stored in the memory 109 (or other storage medium) or transmitted via the radio frequency unit 101 or the WiFi module 102. The microphone 1042 can receive sound (audio data) via the microphone 1042 in a telephone call mode, a recording mode, a voice recognition mode, or the like, and can process such sound into audio data. Processed audio (voice) data can be converted into a format that can be transmitted to a mobile communication base station via the radio frequency unit 101 in the case of the telephone call mode. The microphone 1042 can implement various types of noise cancellation (or suppression) algorithms to cancel (or suppress) noise or interference generated in the process of receiving and transmitting audio signals.
[0206] The mobile terminal 100 also includes at least one sensor 105, such as a light sensor, a motion sensor, and other sensors. The light sensor includes an ambient light sensor and a proximity sensor, which can optionally adjust the brightness of the display panel 1061 according to the brightness of ambient light, and turn off the display panel 1061 and / or the backlight when the mobile terminal 100 is moved to the ear. As one of the motion sensors, the accelerometer sensor can detect the magnitude of acceleration in each direction (generally, three axes), and detect the magnitude and direction of gravity when at rest, which can be used for applications that recognize the posture of the mobile terminal (such as switching between landscape and portrait screens, related games, magnetometer posture calibration), vibration recognition related functions (such as a pedometer, a knock), and the like. The mobile terminal can also be configured with a fingerprint sensor, a pressure sensor, an iris sensor, a molecular sensor, a gyroscope, a barometer, a hygrometer, a thermometer, an infrared sensor, and other sensors, which will not be described here.
[0207] The display unit 106 is configured to display information input by a user or information provided to the user. The display unit 106 can include a display panel 1061, which can be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), or the like.
[0208] The user input unit 107 can be used to receive input numerals or character information, and to generate key signal inputs related to user settings of the mobile terminal and control of functions. Optionally, the user input unit 107 can include a touch panel 1071 and other input devices 1072. The touch panel 1071, also called a touch screen, can collect touch operations of a user on or proximity thereto (e.g., operations by the user using a finger, a touch pen, or any suitable object or accessory on or in proximity to the touch panel 1071) and drive corresponding connection devices according to a pre-set program. The touch panel 1071 can include two parts, a touch detecting device and a touch controller. The touch detecting device detects a user's touch position and detects a signal resulting from a touch operation, and transmits the signal to the touch controller; the touch controller receives touch information from the touch detecting device and converts it into touch coordinates, which are then transmitted to the processor 110, and can receive commands from the processor 110 and execute them. The touch panel 1071 can be implemented in various types such as a resistive type, a capacitive type, an infrared type, and a surface acoustic wave type. In addition to the touch panel 1071, the user input unit 107 can include other input devices 1072. The other input devices 1072 can include, for example, one or more of a physical keyboard, function keys (e.g., a volume control button, a switch button, etc.), a trackball, a mouse, a joystick, etc., without limitation.
[0209] Optionally, the touch panel 1071 can cover the display panel 1061, and when the touch panel 1071 detects a touch operation on or in proximity thereto, it transmits the information to the processor 110 to determine the type of touch event, and then the processor 110 provides a corresponding visual output on the display panel 1061 according to the type of touch event. Although in FIG. 1 the touch panel 1071 and the display panel 1061 are implemented as two separate components to achieve the input and output functions of the mobile terminal, in some embodiments the touch panel 1071 and the display panel 1061 can be integrated to achieve the input and output functions of the mobile terminal, without limitation.
[0210] The interface unit 108 serves as an interface through which at least one external device can be connected with the mobile terminal 100. For example, the external device can include a wired or wireless headset port, an external power supply (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device having an identification module, an audio input / output (I / O) port, a video I / O port, an earphone port, etc. The interface unit 108 can be used to receive input (e.g., data information, power, etc.) from an external device and to transmit the received input to one or more elements within the mobile terminal 100, or can be used to transmit data between the mobile terminal 100 and the external device.
[0211] The memory 109 can be used to store software programs and various data. The memory 109 can mainly include a program storage area and a data storage area, and the program storage area can store an operating system, application programs required by at least one function (such as a sound playing function, an image playing function, etc.), and the like; and the data storage area can store data created according to the use of the mobile phone (such as audio data, a phone book, etc.), and the like. In addition, the memory 109 can include a high-speed random access memory, and can also include a nonvolatile memory such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state memory device.
[0212] The processor 110 is the control center of the mobile terminal, connects all parts of the mobile terminal through various interfaces and lines, executes various functions of the mobile terminal and processes data by running or executing software programs and / or modules stored in the memory 109 and calling data stored in the memory 109, and thus monitors the mobile terminal as a whole. The processor 110 can include one or more processing units; preferably, the processor 110 can integrate an application processor and a modem processor, and the application processor can mainly process an operating system, a user interface, and application programs, and the like, and the modem processor can mainly process wireless communication. It can be understood that the above-mentioned modem processor can also not be integrated into the processor 110.
[0213] The mobile terminal 100 can also include a power supply 111 (such as a battery) for supplying power to various components; preferably, the power supply 111 can be logically connected to the processor 110 through a power management system, so as to realize functions such as management of charging, discharging, and power consumption management through the power management system.
[0214] Although not shown in FIG. 1, the mobile terminal 100 can also include a Bluetooth module and the like, which will not be described here.
[0215] In order to facilitate understanding of the embodiments of the present application, the communication network system based on the mobile terminal of the present application is described below.
[0216] Referring to FIG. 2, FIG. 2 is a communication network system architecture diagram provided by an embodiment of the present application, and the communication network system is a NR (New Radio) system of a general mobile communication technology, the NR system includes a UE (User Equipment) 201, an E-UTRAN (Evolved UMTS Terrestrial Radio Access Network) 202, an EPC (Evolved Packet Core) 203, and an operator's IP service 204 which are sequentially connected in communication.
[0217] Optionally, UE201 can be the aforementioned terminal device 100, which will not be described in detail here.
[0218] E-UTRAN202 includes eNodeB2021 and other eNodeB2022, etc. Optionally, eNodeB2021 can connect to other eNodeB2022 via backhaul (e.g., X2 interface), and eNodeB2021 connects to EPC203, providing access from UE201 to EPC203.
[0219] EPC203 may include an MME (Mobility Management Entity) 2031, an HSS (Home Subscriber Server) 2032, other MMEs 2033, an SGW (Serving Gateway) 2034, a PGW (Packet Data Network Gateway) 2035, and a PCRF (Policy and Charging Rules Function) 2036, etc. Optionally, MME2031 is the control node that handles signaling between UE201 and EPC203, providing bearer and connection management. HSS2032 is used to provide registers to manage functions such as the Home Location Register (not shown in the figure) and stores user-specific information such as service characteristics and data rates. All user data can be sent through SGW2034. PGW2035 can provide UE 201 IP address allocation and other functions. PCRF2036 is the policy and charging control decision point for service data flow and IP bearer resources. It selects and provides available policy and charging control decisions for the policy and charging enforcement function unit (not shown in the figure).
[0220] IP services 204 may include the Internet, intranet, IMS (IP Multimedia Subsystem), or other IP services.
[0221] Although the above description uses the LTE system as an example, those skilled in the art should know that this application is not only applicable to the LTE system, but also to other wireless communication systems, such as GSM, CDMA2000, WCDMA, TD-SCDMA, 5G and future new network systems (such as 6G), etc., without limitation.
[0222] Figure 3 is a schematic diagram of a hardware structure of a controller 140 according to an embodiment of the present application. The controller 140 comprises a memory 1401 and a processor 1402. The memory 1401 is configured to store program instructions. The processor 1402 is configured to invoke the program instructions stored in the memory 1401 to perform the steps executed by the controller in the method embodiment one. The implementation principle and the beneficial effects are similar, and thus are not described here in detail.
[0223] Optionally, the controller further comprises a communication interface 1403. The communication interface 1403 can be connected with the processor 1402 through the bus 1404. The processor 1402 can control the communication interface 1403 to realize the receiving and sending functions of the controller 140.
[0224] Figure 4 is a schematic diagram of a hardware structure of a network node 150 according to an embodiment of the present application. The network node 150 comprises a memory 1501 and a processor 1502. The memory 1501 is configured to store program instructions. The processor 1502 is configured to invoke the program instructions stored in the memory 1501 to perform the steps executed by the first node in the method embodiment one. The implementation principle and the beneficial effects are similar, and thus are not described here in detail.
[0225] Optionally, the controller further comprises a communication interface 1503. The communication interface 1503 can be connected with the processor 1502 through the bus 1504. The processor 1502 can control the communication interface 1503 to realize the receiving and sending functions of the network node 150.
[0226] The integrated modules implemented in the form of software function modules can be stored in a computer readable storage medium. The software function modules are stored in a storage medium, and include a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor (English: processor) to execute part of the steps of the method embodiments of the present application.
[0227] In the above embodiments, all or part of the embodiments can be implemented by software, hardware, firmware or any combination thereof. When implemented by software, all or part of the embodiments can be implemented in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, all or part of the processes or functions according to the embodiments of the present application are generated. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. The computer instructions can be stored in a storage medium or transferred from one storage medium to another storage medium, for example, the computer instructions can be transferred from one website site, computer, server or data center to another website site, computer, server or data center through wired (such as coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (such as infrared, wireless, microwave, etc.) mode. The storage medium can be any available medium that can be accessed by a computer or a data storage device such as a server, data center, etc. containing one or more available media sets. The available medium can be a magnetic medium (for example, floppy disk, hard disk, magnetic tape), optical medium (for example, DVD), or semiconductor medium (for example, solid state disk (SSD)) and the like.
[0228] Based on the above mobile terminal hardware structure and communication network system, various embodiments of the present application are proposed.
[0229] Technical terms involved in the embodiments of the present application:
[0230] BFR: Beam Failure Recovery, beam failure recovery;
[0231] CG PUSCH: Configured Grant Physical Uplink Shared CHannel, configured grant physical uplink shared channel;
[0232] CSI: Channel State Information, channel state information;
[0233] CSI-RS: Channel State Information Reference Signal, channel state information reference signal;
[0234] DCI: Downlink Control Information, downlink control information;
[0235] HARQ-ACK: Hybrid Automatic Repeat reQuest-ACKnowledgement, hybrid automatic repeat request acknowledgement;
[0236] L1-RSRP: Layer-1 Reference Signal Receiving Power
[0237] L1-SINR: Layer-1 Signal to Interference plus Noise Ratio
[0238] LBT: Listen Before Talk
[0239] MAC: Medium Access Control
[0240] MAC CE: MAC Control Element
[0241] OFDM: Orthogonal Frequency Division Multiplexing
[0242] PUCCH: Physical Uplink Control CHannel
[0243] PUSCH: Physical Uplink Shared CHannel
[0244] RB: Resource Block
[0245] RRC: Radio Resource Control
[0246] SCell: Secondary Cell
[0247] SR: Scheduling Request
[0248] SS / PBCH Block: Synchronization Signal / Physical Broadcast CHannel Block
[0249] TCI: Transmission Configuration Indicator
[0250] UCI: Uplink Control Information, Uplink Control Information
[0251] First embodiment
[0252] Referring to FIG. 5, FIG. 5 is a flowchart of a processing method according to the first embodiment, the processing method of the embodiments of the present application can be applied to a terminal device (such as a mobile phone), including the steps of:
[0253] S1: transmitting UCI information on a PUCCH.
[0254] Optionally, the UCI information includes at least one of a first SR, a second SR, a first UCI, a HARQ-ACK, and a CSI report.
[0255] Optionally, the terminal device transmits the first SR and / or the first UCI, and requests resources for reporting measurement information in time, and / or informs the network device that the terminal device needs to report measurement information.
[0256] Optionally, the UCI information includes at least one group of UCI bits.
[0257] Optionally, the at least one group of UCI bits includes at least one of:
[0258] At least one of the first SR, the first UCI, and the second SR constitutes a first number of bits;
[0259] The first UCI constitutes a second number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0260] The first UCI constitutes a fourth number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0261] The first SR constitutes a fifth number of bits, and / or the second SR constitutes a sixth number of bits;
[0262] The first SR and the first UCI constitute a seventh number of bits, and / or the second SR constitutes a sixth number of bits;
[0263] The first SR and the first UCI constitute an eighth number of bits, and / or the second SR constitutes a sixth number of bits.
[0264] Optionally, the first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive reporting request, and a positive notification reporting request.
[0265] Optionally, the second number of bits indicates a negative notification reporting request and / or a positive notification reporting request.
[0266] Optionally, the third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, a positive reporting request.
[0267] Optionally, the fourth number of bits indicates whether the first UCI informs or indicates that the network device has the measurement information satisfying the first condition for reporting.
[0268] Optionally, the fifth number of bits indicates whether the first SR requests resources for reporting the measurement information satisfying the first condition.
[0269] Optionally, the seventh number of bits indicates at least one of a negative reporting request, a negative informing reporting request, a positive reporting request, a positive informing reporting request.
[0270] Optionally, the eighth number of bits indicates whether the first SR requests resources for reporting the measurement information satisfying the first condition, and / or indicates whether the first UCI informs or indicates that the network device has the measurement information satisfying the first condition for reporting.
[0271] Optionally, if the at least one SR is a positive reporting request, at least one of the first number of bits, the third number of bits, and the seventh number of bits indicates the positive reporting request.
[0272] Optionally, if the first UCI is a positive informing reporting request, values of the first number of bits, the second number of bits, and the seventh number of bits indicate the positive informing reporting request.
[0273] Optionally, the positive reporting request corresponds to the first SR.
[0274] Optionally, the positive reporting request is used for requesting resources for reporting the measurement information satisfying the first condition.
[0275] Optionally, the positive informing reporting request corresponds to the first UCI.
[0276] Optionally, the positive informing reporting request is used for informing or indicating that the network device has the measurement information satisfying the first condition for reporting.
[0277] Optionally, the first number of bits has a first fourth number of values corresponding to the fourth number of first UCIs, and has remaining values corresponding to the first SR and / or the second SR.
[0278] Optionally, the fourth number of bits one-to-one corresponds to the fourth number of first UCIs.
[0279] Optionally, the fifth number of bits one-to-one corresponds to the fifth number of first SRs.
[0280] Optionally, the first fourth number of values of the seventh number of bits correspond to the fourth number of first UCI, and the remaining values of the seventh number of bits correspond to the first SR.
[0281] Optionally, the first fourth number of bits of the eighth number of bits correspond one-to-one to the fourth number of first UCI.
[0282] Optionally, the remaining fifth number of bits of the eighth number of bits correspond one-to-one to the fifth number of first SR.
[0283] Optionally, the terminal device determines a UCI bit generation method and / or a UCI bit arrangement method.
[0284] By the technical solutions of the embodiment, the uplink transmission technology mechanism is perfected by transmitting UCI information on a PUCCH, thereby avoiding increasing the reporting delay of beam information and / or avoiding increasing the uplink signaling overhead.
[0285] Second Embodiment
[0286] On the basis of the first embodiment of the present application, the embodiment further discloses a bit generation method of SR and / or first UCI.
[0287] Optionally, the terminal device transmits the SR and / or the first UCI to timely request a resource to report measurement information and / or to inform a network device that the terminal device needs to report measurement information, and therefore, a bit generation method of the first SR and / or the first UCI needs to be determined.
[0288] Optionally, at least one of the first SR, the second SR, and the first UCI is transmitted on a PUCCH.
[0289] Optionally, the first SR includes at least one bit.
[0290] Optionally, the first SR includes one bit of information, for example:
[0291] The first SR is positive or the value of the first SR is 1, indicating a positive reporting request, or indicating that the measurement information meets a first condition and needs to report the measurement information.
[0292] And / or, the first SR is negative or the value of the first SR is 0, indicating a negative reporting request, or indicating that the measurement information does not meet the first condition.
[0293] Optionally, the first SR is used to request a resource to report measurement information that meets a first condition.
[0294] Optionally, the first condition is met, including at least one of the following:
[0295] the signal quality of the new beam and / or reference signal is greater than a sum of the signal quality of the current beam and / or reference signal and a first threshold;
[0296] the sum of the signal quality of the new beam and / or reference signal and a first threshold is greater than the signal quality of the current beam and / or reference signal;
[0297] the signal quality of the new beam and / or reference signal is greater than a sum of the signal quality of the reference signal determined by the activated TCI state and having the Kth best signal quality and a second threshold;
[0298] the sum of the signal quality of the new beam and / or reference signal and a second threshold is greater than the signal quality of the reference signal determined by the activated TCI state and having the Kth best signal quality;
[0299] the signal quality of the current beam and / or reference signal is less than a third threshold.
[0300] Optionally, at least one of the first threshold, the second threshold and the third threshold is a preset threshold, configured based on RRC / MAC CE / DCI or a preset value.
[0301] Optionally, the reference signal is a CSI-RS or a synchronization signal / physical broadcast channel block (SS / PBCH Block).
[0302] Optionally, the signal quality is L1-RSRP or L1-SINR.
[0303] Optionally, K is an integer, configured based on RRC / MAC CE / DCI or a preset value.
[0304] Optionally, the first SR is associated with a scheduling request index value (SchedulingRequestld).
[0305] Optionally, an event-driven scheduling request index value parameter (schedulingRequestlD-ED) is added in the radio resource control, the event-driven scheduling request index value parameter being associated with the scheduling request index value (SchedulingRequestld), and the first SR being determined based on the scheduling request index value.
[0306] Optionally, an event-driven scheduling request index value parameter (schedulingRequestlD-ED) is added in the MAC cell group configuration information element (MAC-CellGroupConfig), the event-driven scheduling request index value parameter being associated with the scheduling request index value, and the first SR being determined based on the scheduling request index value.
[0307] Optionally, the first UCI includes at least one bit.
[0308] Optionally, the first UCI includes one bit information, for example;
[0309] The first UCI is positive or the value of the first UCI is 1, indicating a positive notification reporting request, and / or, indicating that the network device has measurement information satisfying the first condition to report;
[0310] And / or, the first UCI is negative or the value of the first UCI is 0, indicating a negative notification reporting request, or indicating that the measurement information does not satisfy the first condition.
[0311] Optionally, the first UCI is used to notify or indicate the network device that the terminal device reports the measurement information satisfying the first condition.
[0312] Optionally, the first UCI is associated with a PUCCH resource index value (PUCCH-Resourceld).
[0313] Optionally, an event-driven PUCCH resource index value parameter (pucch-Resourceld-ED) is added in the radio resource control, the event-driven PUCCH resource index value parameter is associated with the PUCCH resource index value (PUCCH-Resourceld), the PUCCH is determined based on the PUCCH resource index value, and the first UCI is optionally transmitted based on the PUCCH.
[0314] Optionally, an event-driven PUCCH resource index value parameter (pucch-Resourceld-ED) is added in the CSI report configuration (CSI-ReportConfig), the event-driven PUCCH resource index value parameter is associated with the PUCCH resource index value, the PUCCH is determined based on the PUCCH resource index value, and the first UCI is optionally transmitted based on the PUCCH.
[0315] Optionally, after the PUCCH transmits at least one of the first SR, the second SR, and the first UCI, the measurement information satisfying the first condition is reported on the PUSCH.
[0316] Optionally, after the PUCCH transmits the first SR and / or the first UCI, the measurement information satisfying the first condition is reported on the PUSCH based on an uplink grant indication.
[0317] Optionally, the uplink grant is determined based on a DCI format 0_1 / 0_2.
[0318] Optionally, the PUSCH resource is determined based on a DCI format 0_1 / 0_2.
[0319] Optionally, the measurement information satisfying the first condition is reported based on a CSI request field in the DCI.
[0320] Optionally, after the PUCCH transmits the first SR and / or the first UCI, the measurement information satisfying the first condition is reported on the CG PUSCH.
[0321] Optionally, after the last symbol of the PUCCH transmitting the first SR and / or the first UCI, the measurement information satisfying the first condition is reported on the first available transmission occasion of the CG PUSCH after a first preset time.
[0322] Optionally, at least one of the transmission occasion of the first SR, the PUCCH transmitting the first UCI, and the transmission occasion of the second SR overlaps in time domain with the PUCCH transmitting the HARQ-ACK or the PUCCH transmitting the CSI report.
[0323] Optionally, the resource for transmitting the HARQ-ACK or the CSI report uses at least one of PUCCH format 2, PUCCH format 3, and PUCCH format 4.
[0324] Optionally, at least one of the transmission occasion of the first SR, the PUCCH transmitting the first UCI, and the transmission occasion of the second SR overlaps in time domain.
[0325] Optionally, the second SR is associated with a scheduling request index value, and the scheduling request index value is determined by at least one of a scheduling request index value parameter (schedulingRequestlD), a scheduling request index value parameter (schedulingRequestlD-BFR-SCell) of a BFR of an SCell, a scheduling request index value parameter (schedulingRequestlD-BFR) of a BFR, a second scheduling request index value parameter (schedulingRequestlD-BFR2) of a BFR, and a scheduling request index value parameter (schedulingRequestlD-LBT-SCell) of an LBT of an SCell.
[0326] Through the technical solutions of the embodiment, the UCI information is transmitted on the PUCCH, and / or the bit generation method of the SR and / or the first UCI is specified, the uplink transmission technology mechanism is improved, and the increase of the beam information reporting delay and / or the uplink signaling overhead is avoided.
[0327] Third embodiment
[0328] On the basis of any one of the preceding embodiments of the present application, the embodiment further discloses a bit generation scheme of the first SR and / or the first UCI.
[0329] Optionally, at least one of the transmission occasion of the first SR, the PUCCH for transmitting the first UCI, the transmission occasion of the second SR overlaps in time domain, and a bit generation scheme of at least one of the first SR, the second SR and the first UCI needs to be selected or determined, and / or at least one of the first SR, the second SR and the first UCI is multiplexed on the PUCCH.
[0330] Option 1: At least one of the first SR, the first UCI and the second SR consists of a first number of bits.
[0331] Optionally, the first number is
[0332] Optionally, N is the number of the first SR, the first UCI and the second SR.
[0333] Optionally, the first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive reporting request, a positive notification reporting request.
[0334] Optionally, the positive reporting request corresponds to the first SR, indicating that the first SR is positive or the value of the first SR is 1, and / or is used to request the resource to report the measurement information satisfying the first condition.
[0335] Optionally, the value of the first SR being 1 indicates the positive reporting request.
[0336] Optionally, the positive notification reporting request corresponds to the first UCI, indicating that the first UCI is positive or the value of the first UCI is 1, and / or is used to notify or instruct the network device that the terminal device reports the measurement information satisfying the first condition.
[0337] Optionally, the value of the first UCI being 1 indicates the positive notification reporting request.
[0338] Optionally, the number of the first UCI is a fourth number (N1).
[0339] Optionally, the first number of bits has a first fourth number of values corresponding to the fourth number of first UCIs, and the remaining values of the first number of bits correspond to the first SR and / or the second SR.
[0340] Optionally, the first fourth number of values correspond to the fourth number of first UCIs in ascending order of the PUCCH resource index value (PUCCH-Resourceid).
[0341] Optionally, the first fourth number of values indicates or represents a negative notification reporting request or a positive notification reporting request in ascending order of the PUCCH resource index value.
[0342] Optionally, the remaining values of the first quantity of bits correspond to the first SR and / or the second SR according to ascending order of the scheduling request resource index value (schedulingRequestResourceId).
[0343] Optionally, the first quantity of bits corresponds to at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, and a positive reporting request according to ascending order of the scheduling request resource index value.
[0344] Optionally, the number of the first SR and / or the second SR is a ninth quantity (N2).
[0345] Optionally, the first quantity of bits corresponds to the first SR and / or the second SR according to ascending order of the scheduling request resource index value.
[0346] Optionally, the first quantity of bits corresponds to at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, and a positive reporting request according to ascending order of the scheduling request resource index value.
[0347] Optionally, the first quantity of bits corresponds to at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, and a positive reporting request according to ascending order of the scheduling request resource index value.
[0348] Optionally, the remaining values of the first quantity of bits correspond to the first UCI according to ascending order of the PUCCH resource index value.
[0349] Optionally, the remaining values of the first quantity of bits indicate or represent the first UCI according to ascending order of the PUCCH resource index value.
[0350] Optionally, the remaining values of the first quantity of bits indicate or represent a negative or a positive reporting request according to ascending order of the PUCCH resource index value.
[0351] Optionally, the remaining fourth quantity (N1) of values of the first quantity of bits correspond to the first UCI according to ascending order of the PUCCH resource index value.
[0352] Optionally, the remaining fourth quantity (N1) of values of the first quantity of bits indicate or represent a negative or a positive reporting request according to ascending order of the PUCCH resource index value.
[0353] Optionally, if the at least one SR is a positive reporting request, the value of the first quantity of bits indicates the positive reporting request.
[0354] Optionally, if the first UCI is a positive reporting request, the value of the first quantity of bits indicates the positive reporting request.
[0355] Option 2: the first UCI constitutes a second number of bits, and / or, the first SR and / or the second SR constitutes a third number of bits.
[0356] Optionally, the second number is
[0357] Optionally, N1 is the number of the first UCI.
[0358] Optionally, the third number is
[0359] Optionally, N2 is the number of the first SR and / or the second SR.
[0360] Optionally, the second number of bits indicates a negative notification reporting request and / or a positive notification reporting request.
[0361] Optionally, the negative notification reporting request corresponds to the first UCI, indicates that the first UCI is negative or the value of the first UCI is 0, and / or is used to notify or instruct the network device that the terminal device does not report the measurement information satisfying the first condition.
[0362] Optionally, the positive notification reporting request corresponds to the first UCI, indicates that the first UCI is positive or the value of the first UCI is 1, and / or is used to notify or instruct the network device that the terminal device reports the measurement information satisfying the first condition.
[0363] Optionally, the value of the first UCI being 1 indicates the positive notification reporting request.
[0364] Optionally, the values of the second number of bits correspond to the first UCI according to ascending order of the PUCCH resource index value.
[0365] Optionally, the second number of bits indicates or represents the first UCI according to ascending order of the PUCCH resource index value.
[0366] Optionally, the second number of bits indicates or represents the negative notification reporting request or the positive notification reporting request according to ascending order of the PUCCH resource index value.
[0367] Optionally, if the first UCI is the positive notification reporting request, the values of the second number of bits indicate the positive notification reporting request.
[0368] Optionally, the third number of bits indicates at least one of the negative SR, the positive SR, the positive LRR, the negative reporting request, and the positive reporting request.
[0369] Optionally, the negative reporting request corresponds to the first SR, indicates that the first SR is negative or the value of the first SR is 0, and / or indicates that the resource is not requested to report the measurement information satisfying the first condition.
[0370] Optionally, the value of the first SR being 0 indicates the negative reporting request.
[0371] Optionally, the positive reporting request corresponds to the first SR, indicates that the first SR is positive or the value of the first SR is 1, and / or is used to request the network device to report the measurement information satisfying the first condition.
[0372] Optionally, the value of the first SR being 1 indicates the positive reporting request.
[0373] Optionally, the values of the third number of bits correspond to the first SR and / or the second SR according to ascending order of the scheduling request resource index values.
[0374] Optionally, the third number of bits indicates or represents the first SR and / or the second SR according to ascending order of the scheduling request resource index values.
[0375] Optionally, the third number of bits indicates or represents at least one of the negative SR, the positive SR, the positive LRR, the negative reporting request, and the positive reporting request according to ascending order of the scheduling request resource index values.
[0376] Optionally, if the at least one SR is the positive reporting request, the value of the third number of bits indicates the positive reporting request.
[0377] Optionally, the first UCI consists of a fourth number of bits, and / or the first SR and / or the second SR consists of a third number of bits.
[0378] Optionally, the fourth number is N1.
[0379] Optionally, N1 is the number of the first UCI.
[0380] Optionally, the third number is
[0381] Optionally, N2 is the number of the first SR and / or the first SR.
[0382] Optionally, the fourth number of bits indicates whether the corresponding first UCI notifies or indicates the network device to report the measurement information satisfying the first condition.
[0383] Optionally, the fourth number (N1) of bits one-to-one corresponds to the fourth number of first UCIs.
[0384] Optionally, the value of one bit indicates whether the corresponding first UCI notifies or indicates the network device to report the measurement information satisfying the first condition.
[0385] Optionally, the value of one bit is 1, indicating that the corresponding first UCI is used to notify or indicate that the network device has measurement information meeting the first condition for reporting, and optionally, at least one of an event, a CSI report, a carrier, and a cell associated with the corresponding first UCI meets the first condition.
[0386] Optionally, the value of one bit is 1, indicating that the corresponding first UCI is a positive or positive notification reporting request.
[0387] Optionally, the value of one bit is 0, indicating that the corresponding first UCI is not used to notify or indicate that the network device has measurement information meeting the first condition for reporting, and optionally, at least one of an event, a CSI report, a carrier, and a cell associated with the corresponding first UCI does not meet the first condition.
[0388] Optionally, the value of one bit is 0, indicating that the corresponding first UCI is a negative or negative notification reporting request.
[0389] Optionally, the fourth number of bits corresponds to the fourth number of first UCIs in ascending order of PUCCH resource index values.
[0390] Optionally, the fourth number of bits corresponds to the fourth number of first UCIs in ascending order of PUCCH resource index values.
[0391] Optionally, the third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, and a positive reporting request.
[0392] Optionally, the negative reporting request corresponds to the first SR, indicating that the first SR is negative or the value of the first SR is 0, and / or indicating that no resource is requested to report measurement information meeting the first condition.
[0393] Optionally, the value of the first SR is 0, indicating a negative reporting request.
[0394] Optionally, the positive reporting request corresponds to the first SR, indicating that the first SR is positive or the value of the first SR is 1, and / or being used to request a resource to report measurement information meeting the first condition.
[0395] Optionally, the value of the first SR is 1, indicating a positive reporting request.
[0396] Optionally, the values of the third number of bits correspond to the first SR and / or the second SR in ascending order of scheduling request resource index values.
[0397] Optionally, the third number of bits indicates or represents the first SR and / or the second SR in ascending order of scheduling request resource index values.
[0398] Optionally, the third number of bits indicates or represents at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, and a positive reporting request according to ascending order of the scheduling request resource index values.
[0399] Optionally, if the at least one SR is a positive reporting request, the third number of bits indicates the positive reporting request.
[0400] Optionally, the first SR constitutes a fifth number of bits, and / or the second SR constitutes a sixth number of bits.
[0401] Optionally, the fifth number is N3.
[0402] Optionally, N3 is the number of the first SRs.
[0403] Optionally, the sixth number is
[0404] Optionally, N4 is the number of the second SRs.
[0405] Optionally, the fifth number of bits indicates whether the first SR requests the resource to report the measurement information satisfying the first condition.
[0406] Optionally, the fifth number (N3) of bits one-to-one corresponds to the fifth number of first SRs.
[0407] Optionally, a value of one bit indicates whether the corresponding first SR requests the resource to report the measurement information satisfying the first condition.
[0408] Optionally, the value of one bit is 1, indicating that the corresponding first SR is used to request the resource to report the measurement information satisfying the first condition, and optionally, indicating that at least one of an event, a CSI report, a carrier, and a cell associated with the corresponding first SR satisfies the first condition.
[0409] Optionally, the value of one bit is 1, indicating that the corresponding first SR is positive or a positive reporting request.
[0410] Optionally, the value of one bit is 0, indicating that the corresponding first SR is not used to request the resource to report the measurement information satisfying the first condition, and optionally, indicating that at least one of an event, a CSI report, a carrier, and a cell associated with the corresponding first SR does not satisfy the first condition.
[0411] Optionally, the value of one bit is 0, indicating that the corresponding first SR is negative or a negative reporting request.
[0412] Optionally, the fifth number of first SRs corresponds to ascending order of the scheduling request resource index values.
[0413] Optionally, the fifth number of bits corresponds to a fifth number of first SRs according to ascending order of scheduling request resource index values.
[0414] Optionally, the sixth number of bits indicates at least one of a negative SR, a positive SR, a positive LRR.
[0415] Option 5: the first SR and the first UCI constitute a seventh number of bits, and / or the second SR constitutes a sixth number of bits.
[0416] Optionally, the seventh number is
[0417] Optionally, N1 is a number of the first UCI.
[0418] Optionally, N3 is a number of the first SR.
[0419] Optionally, the sixth number is
[0420] Optionally, the seventh number of bits indicates at least one of a negative reporting request, a negative notification reporting request, a positive reporting request, a positive notification reporting request.
[0421] Optionally, the positive reporting request corresponds to the first SR, indicating that the first SR is positive or the value of the first SR is 1, and / or is used to request the terminal device to report measurement information satisfying a first condition.
[0422] Optionally, the value of the first SR being 1 indicates the positive reporting request.
[0423] Optionally, the positive notification reporting request corresponds to the first UCI, indicating that the first UCI is positive or the value of the first UCI is 1, and is used to notify or instruct the network device that the terminal device reports measurement information satisfying a first condition.
[0424] Optionally, the value of the first UCI being 1 indicates the positive notification reporting request.
[0425] Optionally, the number of the first UCI is a fourth number (N1).
[0426] Optionally, the first fourth number of values of the seventh number of bits corresponds to the fourth number of first UCIs, and the remaining values of the seventh number of bits correspond to the first SR.
[0427] Optionally, the first fourth number of values corresponds to the fourth number of first UCIs according to ascending order of PUCCH resource index values.
[0428] Optionally, the first fourth number of values indicates or represents the first UCI according to ascending order of PUCCH resource index values.
[0429] Optionally, the first fourth number of values indicate or represent negative reporting requests or positive reporting requests according to ascending order of the PUCCH resource index values.
[0430] Optionally, the remaining values of the seventh number of bits correspond to the first SRs according to ascending order of the scheduling request resource index values.
[0431] Optionally, the remaining values of the seventh number of bits indicate or represent negative reporting requests or positive reporting requests according to ascending order of the scheduling request resource index values.
[0432] Optionally, the number of the first SRs is a fifth number (N3).
[0433] Optionally, the first fifth number of values of the seventh number of bits correspond to the fifth number of first SRs, and the remaining values of the seventh number of bits correspond to the first UCI.
[0434] Optionally, the first fifth number of values correspond to the fifth number of first SRs according to ascending order of the scheduling request resource index values.
[0435] Optionally, the first fifth number of values indicate or represent negative reporting requests or positive reporting requests according to ascending order of the scheduling request resource index values.
[0436] Optionally, the remaining values of the seventh number of bits correspond to the first UCI according to ascending order of the PUCCH resource index values.
[0437] Optionally, the remaining values of the seventh number of bits indicate or represent negative reporting requests or positive reporting requests according to ascending order of the PUCCH resource index values.
[0438] Optionally, if the at least one SR is a positive reporting request, the values of the seventh number of bits indicate the positive reporting request.
[0439] Optionally, if the first UCI is a positive reporting request, the values of the seventh number of bits indicate the positive reporting request.
[0440] Optionally, the sixth number of bits indicates at least one of a negative SR, a positive SR, and a positive LRR.
[0441] Optionally, the first SR and the first UCI constitute an eighth number of bits, and / or the second SR constitutes the sixth number of bits.
[0442] Optionally, the eighth number is N1+N3.
[0443] Optionally, N1 is the number of the first UCI.
[0444] Optionally, N3 is the number of the first SR.
[0445] Optionally, the sixth number is
[0446] Optionally, the eighth number of bits indicates whether the first SR requests resources to report measurement information satisfying the first condition, and / or whether the first UCI informs or indicates the network device to report measurement information satisfying the first condition.
[0447] Optionally, the first fourth number (N1) of bits in the eighth number of bits one-to-one corresponds to the fourth number of first UCI.
[0448] Optionally, the value of one bit indicates whether the corresponding first UCI informs or indicates the network device to report measurement information satisfying the first condition.
[0449] Optionally, the value of one bit is 1, indicating that the corresponding first UCI is used to inform or indicate the network device to report measurement information satisfying the first condition, and optionally, indicating that at least one of the event, the CSI report, the carrier, and the cell associated with the corresponding first UCI satisfies the first condition.
[0450] Optionally, the value of one bit is 1, indicating that the corresponding first UCI is a positive or positively informed reporting request.
[0451] Optionally, the value of one bit is 0, indicating that the corresponding first UCI is not used to inform or indicate the network device to report measurement information satisfying the first condition, and optionally, indicating that at least one of the event, the CSI report, the carrier, and the cell associated with the corresponding first UCI does not satisfy the first condition.
[0452] Optionally, the value of one bit is 0, indicating that the corresponding first UCI is a negative or negatively informed reporting request.
[0453] Optionally, the fourth number of bits corresponds to the fourth number of first UCI in ascending order of the PUCCH resource index value.
[0454] Optionally, the fourth number of bits corresponds to the fourth number of first UCI in ascending order of the PUCCH resource index value.
[0455] Optionally, the remaining fifth number (N3) of bits in the eighth number of bits one-to-one corresponds to the fifth number of first SR.
[0456] Optionally, the value of one bit indicates whether the corresponding first SR requests resources to report measurement information satisfying the first condition.
[0457] Optionally, the value of the one bit is 1, indicating that the corresponding first SR is used to request resource to report measurement information satisfying the first condition, and optionally, indicating that at least one of an event, a CSI report, a carrier and a cell associated with the corresponding first SR satisfies the first condition.
[0458] Optionally, the value of the one bit is 1, indicating that the corresponding first SR is a positive or positive reporting request.
[0459] Optionally, the value of the one bit is 0, indicating that the corresponding first SR is not used to request resource to report measurement information satisfying the first condition, and optionally, indicating that at least one of an event, a CSI report, a carrier and a cell associated with the corresponding first SR does not satisfy the first condition.
[0460] Optionally, the value of the one bit is 0, indicating that the corresponding first SR is a negative or negative reporting request.
[0461] Optionally, the fifth number of first SRs correspond to the scheduling request resource index values in ascending order.
[0462] Optionally, the fifth number of bits correspond to the fifth number of first SRs in ascending order of scheduling request resource index values.
[0463] Optionally, the first fifth number (N3) of bits in the eighth number of bits correspond one-to-one to the fifth number of first SRs.
[0464] Optionally, the fifth number of bits correspond to the fifth number of first SRs in ascending order of scheduling request resource index values.
[0465] Optionally, the remaining fourth number (N1) of bits in the eighth number of bits correspond one-to-one to the fourth number of first UCI.
[0466] Optionally, the fourth number of bits correspond to the fourth number of first UCI in ascending order of PUCCH resource index values.
[0467] The embodiment provides a bit generation method for the first SR and / or the first UCI, improves the uplink transmission technology mechanism, thereby avoiding increasing the beam information reporting delay and / or avoiding increasing the uplink signaling overhead.
[0468] Fourth embodiment
[0469] Referring to FIG. 6, FIG. 6 is a flowchart of a processing method according to the fourth embodiment, and the processing method further includes the following steps based on any of the preceding embodiments of the present application:
[0470] S0: Select or determine the bit arrangement method of the UCI information.
[0471] Optionally, step S0 is before step S1.
[0472] Optionally, at least one of the transmission occasion of the first SR, the PUCCH transmitting the first UCI, and the transmission occasion of the second SR overlaps in time domain with the PUCCH transmitting the HARQ-ACK or the PUCCH transmitting the CSI report, the bit arrangement method of the UCI information is selected or determined, and / or at least one of the first SR, the second SR, and the first UCI is multiplexed on the PUCCH with the HARQ-ACK or the CSI report.
[0473] Optionally, at least one of the transmission occasion of the first SR, the PUCCH transmitting the first UCI, and the transmission occasion of the second SR overlaps in time domain.
[0474] Optionally, the bit arrangement method of the UCI information is selected or determined, including at least one of:
[0475] adding the first number of bits after the bits of the HARQ-ACK;
[0476] adding the first number of bits before the bits of the CSI report;
[0477] adding the second number of bits and / or the fourth number of bits after the bits of the HARQ-ACK;
[0478] adding at least one of the second number of bits, the third number of bits, and the fourth number of bits after the bits of the HARQ-ACK based on the first arrangement order;
[0479] adding at least one of the second number of bits, the third number of bits, and the fourth number of bits after the bits of the HARQ-ACK based on the second arrangement order;
[0480] adding the second number of bits or the fourth number of bits before the bits of the CSI report;
[0481] adding at least one of the second number of bits, the third number of bits, and the fourth number of bits before the bits of the CSI report based on the third arrangement order;
[0482] adding at least one of the second number of bits, the third number of bits, and the fourth number of bits before the bits of the CSI report based on the fourth arrangement order;
[0483] adding the fifth number of bits and / or the sixth number of bits after the bits of the HARQ-ACK based on the fifth arrangement order;
[0484] Add the fifth and / or sixth number of bits before the bits in the CSI report based on the sixth permutation order;
[0485] Based on the seventh permutation order, at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits is added after the HARQ-ACK bits;
[0486] Based on the eighth permutation order, at least one of the sixth, seventh, and eighth number of bits is added before the bits in the CSI report.
[0487] Optionally, the first permutation order is: bits of HARQ-ACK, bits of the first UCI, bits of the first SR and / or the second SR.
[0488] Optionally, the second permutation order is: bits of HARQ-ACK, bits of the first SR and / or the second SR, and bits of the first UCI.
[0489] Optionally, the third permutation order is: bits of the first UCI, bits of the first SR and / or the second SR, and bits of the CSI report.
[0490] Optionally, the fourth permutation order is: bits of the first SR and / or the second SR, bits of the first UCI, and bits of the CSI report.
[0491] Optionally, the fifth permutation order is: HARQ-ACK bits, first SR bits, and second SR bits.
[0492] Optionally, the sixth permutation order is: bits of the first SR, bits of the second SR, and bits of the CSI report.
[0493] Optionally, the seventh permutation order is: HARQ-ACK bits, first SR and first UCI bits, and second SR bits.
[0494] Optionally, the eighth permutation order is: bits of the first SR and the first UCI, bits of the second SR, and bits of the CSI report.
[0495] The technical solution of this embodiment clarifies the bit arrangement method of UCI information transmitted in PUCCH by selecting or determining the bit arrangement method of UCI information, improves the uplink transmission technology mechanism, and thus avoids increasing the beam information reporting delay and / or avoiding increasing uplink signaling overhead.
[0496] Fifth Embodiment
[0497] Based on any of the foregoing embodiments of this application, this embodiment further discloses a method for arranging UCI bits.
[0498] Optionally, at least one of the transmission occasion of the first SR, the PUCCH for transmitting the first UCI, and the transmission occasion of the second SR overlaps in time domain with the PUCCH for transmitting the HARQ-ACK or the PUCCH for transmitting the CSI report, the bit arrangement method of the UCI information needs to be selected or determined, and / or at least one of the first SR, the second SR, and the first UCI is multiplexed on the PUCCH with the HARQ-ACK or the CSI report.
[0499] Optionally, at least one of the first SR, the second SR, the first UCI, the HARQ-ACK, and the CSI report is transmitted on the PUCCH.
[0500] Optionally, the first SR is used to request the terminal device to report the measurement information satisfying the first condition on the resource.
[0501] Optionally, the first UCI is used to inform or instruct the network device that the terminal device reports the measurement information satisfying the first condition.
[0502] Optionally, the second SR is associated with a scheduling request index value, and the scheduling request index value is determined by at least one of a scheduling request index value parameter, a scheduling request index value parameter of a BFR of the SCell, a scheduling request index value parameter of the BFR, a second scheduling request index value parameter of the BFR, and a scheduling request index value parameter of LBT of the SCell.
[0503] Optionally, after the PUCCH transmits the first SR and / or the first UCI, the measurement information satisfying the first condition is reported on the PUSCH.
[0504] Optionally, after the PUCCH transmits the first SR and / or the first UCI, the measurement information satisfying the first condition is reported on the PUSCH based on an uplink grant indication.
[0505] Optionally, after the PUCCH transmits the first SR and / or the first UCI, the measurement information satisfying the first condition is reported on the CG PUSCH.
[0506] Optionally, if at least one of the transmission occasion of the first SR, the PUCCH for transmitting the first UCI, and the transmission occasion of the second SR overlaps in time domain with the PUCCH for transmitting the HARQ-ACK, a first number of bits composed of at least one of the first SR, the first UCI, and the second SR is added to the bits of the HARQ-ACK, and optionally, the combined bits are transmitted on the PUCCH.
[0507] Optionally, if the transmission occasion of the first SR, the PUSCH transmitting the first UCI, at least one of the transmission occasion of the first SR, the PUSCH transmitting the first UCI overlaps in time domain with the PUCCH transmitting the CSI report, a first number of bits consisting of at least one of the first SR, the first UCI, and the second SR is added before the bits of the CSI report, optionally, the PUCCH transmits the merged bits.
[0508] Optionally, if the PUSCH transmitting the first UCI overlaps in time domain with the PUCCH transmitting the HARQ-ACK, a second number or a fourth number of bits consisting of the first UCI is added after the bits of the HARQ-ACK, optionally, the PUCCH transmits the merged or O UCI = O ACK +N1 bits.
[0509] Optionally, if the PUSCH transmitting the first UCI overlaps in time domain with the PUCCH transmitting the CSI report, a second number or a fourth number of bits consisting of the first UCI is added before the bits of the CSI report, optionally, the PUCCH transmits the merged or O UCI = O CSI +N1 bits.
[0510] Optionally, if the transmission occasion of the first SR and / or the transmission occasion of the second SR overlaps in time domain with the PUCCH transmitting the HARQ-ACK, a third number of bits consisting of the first SR and / or the second SR is added after the bits of the HARQ-ACK, optionally, the PUCCH transmits the merged bits.
[0511] Optionally, if at least one of the PUSCH transmitting the first UCI, the transmission occasion of the first SR, the transmission occasion of the second SR overlaps in time domain with the PUCCH transmitting the HARQ-ACK, at least one of a second number of bits consisting of the first UCI, a third number of bits consisting of the first SR and / or the second SR, and a fourth number of bits consisting of the first UCI is added after the bits of the HARQ-ACK, optionally, the PUCCH transmits the merged or bits, optionally, the first arrangement order is: the bits of the HARQ-ACK, the bits of the first UCI, the bits of the first SR and / or the second SR.
[0512] Optionally, if at least one of the PUCCH transmitting the first UCI, the transmission occasion of the first SR, the transmission occasion of the second SR, and the PUCCH transmitting the CSI report overlap in time domain, at least one of the second number of bits composed of the first UCI, the third number of bits composed of the first SR and / or the second SR, and the fourth number of bits composed of the first UCI is added to the bits of the CSI report before the PUCCH transmits the combined or bits, optionally, the third arrangement order is: the bits of the first UCI, the bits of the first SR and / or the second SR, the bits of the CSI report.
[0513] Optionally, if the PUCCH transmitting the first UCI overlaps in time domain with the PUCCH transmitting the CSI report, the second number or the fourth number of bits composed of the first UCI is added to the bits of the CSI report before the PUCCH transmits the combined or UCI = N1+O CSI bits;
[0514] If the transmission occasion of the first SR and / or the transmission occasion of the second SR overlaps in time domain with the PUCCH transmitting the CSI report, the third number of bits composed of the first SR and / or the second SR is added to the bits of the CSI report before the PUCCH transmits the combined bits.
[0515] Optionally, if at least one of the PUCCH transmitting the first UCI, the transmission occasion of the first SR, the transmission occasion of the second SR, and the PUCCH transmitting the CSI report overlap in time domain, at least one of the second number of bits composed of the first UCI, the third number of bits composed of the first SR and / or the second SR, and the fourth number of bits composed of the first UCI is added to the bits of the CSI report before the PUCCH transmits the combined or bits, optionally, the third arrangement order is: the bits of the first UCI, the bits of the first SR and / or the second SR, the bits of the CSI report.
[0516] Optionally, if at least one of the PUCCH transmitting the first UCI, the timing of the transmission of the first SR, and the timing of the transmission of the second SR overlaps in the time domain with the PUCCH transmitting the CSI report, and at least one of the second number of bits composed of the first UCI, the third number of bits composed of the first SR and / or the second SR, and the fourth number of bits composed of the first UCI are added to the bits of the CSI report based on the fourth permutation order, optionally, during the PUCCH transmission merging... or The fourth arrangement of bits is optionally: bits of the first SR and / or the second SR, bits of the first UCI, and bits of the CSI report.
[0517] Optionally, if the timing of the transmission of the first SR and / or the timing of the transmission of the second SR overlaps in the time domain with the PUCCH transmitting HARQ-ACK, the fifth number of bits composed of the first SR and / or the sixth number of bits composed of the second SR are added to the bits of the HARQ-ACK based on the fifth permutation order. Optionally, during the PUCCH transmission merging... The fifth sequence of bits can be: HARQ-ACK bits, first SR bits, and second SR bits.
[0518] Optionally, if the timing of the transmission of the first SR and / or the second SR overlaps in the time domain with the PUCCH transmitting the CSI report, the fifth number of bits composed of the first SR and / or the sixth number of bits composed of the second SR are added to the bits of the CSI report based on the sixth permutation order. Optionally, during the PUCCH transmission merging... The sixth arrangement of bits can be optionally: bits of the first SR, bits of the second SR, and bits of the CSI report.
[0519] Optionally, if at least one of the transmission timing of the first SR, the PUCCH transmitting the first UCI, and the transmission timing of the second SR overlaps in the time domain with the PUCCH transmitting the HARQ-ACK, at least one of the following is added after the bits of the HARQ-ACK: the sixth number of bits composed of the second SR, the seventh number of bits composed of the first SR and the first UCI, and the eighth number of bits composed of the first SR and the first UCI, based on the seventh permutation order. Optionally, during the PUCCH transmission merging... or The seventh arrangement of bits can optionally be: HARQ-ACK bits, first SR and first UCI bits, and second SR bits.
[0520] Optionally, if at least one of the transmission occasion of the first SR, the PUCCH transmitting the first UCI, the transmission occasion of the second SR, and the PUCCH transmitting the CSI report overlap in the time domain, at least one of the sixth number of bits formed by the second SR, the seventh number of bits formed by the first SR and the first UCI, and the eighth number of bits formed by the first SR and the first UCI is added to the bits of the CSI report in advance based on an eighth arrangement order, and the PUCCH transmits the combined Or bits, and the eighth arrangement order is: the bits of the first SR and the first UCI, the bits of the second SR, and the bits of the CSI report.
[0521] Through the technical solutions of the embodiment, the bit arrangement method of the UCI information is explicitly selected or determined, the uplink transmission technical mechanism is improved, and then the reporting delay of the beam information is avoided from being increased, and / or the uplink signaling overhead is avoided from being increased.
[0522] Sixth Embodiment
[0523] Referring to FIG. 7, which is a flowchart of a processing method according to the sixth embodiment, on the basis of any of the preceding embodiments of the present application, the present embodiment further discloses step S1, which includes at least one of steps S11-S13:
[0524] S11: transmit HARQ-ACK on the PUCCH, cancel the PUCCH transmitting the first UCI, and optionally, do not report the first UCI;
[0525] S12: transmit the first UCI on the PUCCH, cancel the PUCCH transmitting the HARQ-ACK, and optionally, do not report the HARQ-ACK;
[0526] S13: transmit the first UCI and / or the HARQ-ACK on the PUCCH.
[0527] Optionally, the PUCCH transmitting the first UCI and the PUCCH transmitting the HARQ-ACK overlap in the time domain, and the transmission method of the first UCI and / or the HARQ-ACK needs to be determined.
[0528] Optionally, the transmission method of the first UCI and / or the HARQ-ACK includes at least one of steps S11-S13.
[0529] Optionally, step S13 of transmitting the first UCI and / or the HARQ-ACK on the PUCCH includes:
[0530] selecting or determining the sequence cyclic shift of the first UCI and the HARQ-ACK;
[0531] determining the cyclic shift according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift, and the first formula;
[0532] determining the sequence according to the cyclic shift;
[0533] selecting or determining the PUCCH resource;
[0534] mapping the sequence to the PUCCH resource.
[0535] Optionally, the PUCCH resource comprises resource elements of the PUCCH transmission.
[0536] Optionally, the selecting or determining the sequence cyclic shift of the first UCI and the HARQ-ACK comprises at least one of:
[0537] determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the first reference sequence cyclic shift, and the first cyclic shift interval;
[0538] determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the sequence cyclic shift of the HARQ-ACK, and the sequence cyclic shift of the HARQ-ACK and the SR.
[0539] Optionally, if the HARQ-ACK comprises one bit, the sequence cyclic shift comprises the first value and / or the second value.
[0540] Optionally, if the HARQ-ACK comprises two bits, the sequence cyclic shift comprises at least one of the first value, the second value, the third value, and the fourth value.
[0541] Optionally, the sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK.
[0542] Optionally, the sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR.
[0543] Optionally, the PUCCH is transmitted in the resource for the HARQ-ACK.
[0544] Optionally, the PUCCH is transmitted in the resource for the first UCI.
[0545] Optionally, the first value is the first reference sequence cyclic shift.
[0546] Optionally, the second value is a sum of the first value and the first cyclic shift interval.
[0547] Optionally, the third value is a sum of the second value and the first cyclic shift interval.
[0548] Optionally, the fourth value is a sum of the third value and the first cyclic shift interval.
[0549] By the technical solutions of the embodiment, the uplink transmission technology mechanism is perfected by transmitting the HARQ-ACK through the PUCCH, canceling the PUCCH transmission of the first UCI, and / or transmitting the first UCI through the PUCCH, canceling the PUCCH transmission of the HARQ-ACK, and / or transmitting the first UCI and / or the HARQ-ACK through the PUCCH, thereby avoiding increasing the beam information reporting delay and / or avoiding increasing the uplink signaling overhead.
[0550] Seventh embodiment
[0551] On the basis of any one of the preceding embodiments of the application, the embodiment further discloses a method of multiplexing the first UCI into the PUCCH transmission.
[0552] Optionally, the PUCCH for transmitting the first UCI and the PUCCH for transmitting the HARQ-ACK overlap in the time domain, and the transmission method of the first UCI and / or the HARQ-ACK needs to be determined to multiplex the first UCI and / or the HARQ-ACK on the PUCCH.
[0553] Optionally, the resource for transmitting the first UCI uses the PUCCH format 0.
[0554] Optionally, the resource for transmitting the HARQ-ACK uses the PUCCH format 0.
[0555] Optionally, the first UCI is used to inform or instruct the network device that the terminal device reports the measurement information satisfying the first condition.
[0556] Optionally, the PUCCH transmission of the first UCI and / or the HARQ-ACK includes:
[0557] Selecting or determining the sequence cyclic shift of the first UCI and the HARQ-ACK;
[0558] Determining the cyclic shift according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift, and the first formula;
[0559] Determining the sequence according to the cyclic shift;
[0560] Selecting or determining the PUCCH resource;
[0561] Mapping the sequence to the PUCCH resource.
[0562] Optionally, the PUCCH resource includes a resource element of the PUCCH transmission.
[0563] Optionally, the sequence cyclic shift of the first UCI and the HARQ-ACK is selected or determined including at least one of:
[0564] (1) determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the first reference sequence cyclic shift, and the first cyclic shift interval (i.e., m cs ).
[0565] Optionally, the first reference sequence cyclic shift is indicated by at least one of RRC, MAC CE, and DCI, or the first reference sequence cyclic shift is a preset value.
[0566] Optionally, if the HARQ-ACK information includes one bit, the first reference sequence cyclic shift is at least one of 1, 2, 4, and 5.
[0567] Optionally, if the HARQ-ACK information includes two bits, the first reference sequence cyclic shift is 2.
[0568] Optionally, the first reference sequence cyclic shift corresponds to the first value of the sequence cyclic shift.
[0569] Optionally, the first cyclic shift interval is indicated by at least one of RRC, MAC CE, and DCI, or the first cyclic shift interval is a preset value.
[0570] Optionally, if the HARQ-ACK information includes one bit, the first cyclic shift interval is 6.
[0571] Optionally, if the HARQ-ACK information includes two bits, the first cyclic shift interval is 3.
[0572] Optionally, if the HARQ-ACK information includes one bit, the sequence cyclic shift includes the first value and / or the second value.
[0573] Optionally, the value of the HARQ-ACK is 0 and the value of the first UCI is 1 or the first UCI is positive, the sequence cyclic shift is the first value, and optionally, the first value is the first reference sequence cyclic shift.
[0574] Optionally, the value of the HARQ-ACK is 1 and the value of the first UCI is 1 or the first UCI is positive, the sequence cyclic shift is the second value, and optionally, the second value is the sum of the first value and the first cyclic shift interval.
[0575] Optionally, when the first reference sequence cyclic shift is 1 and the first cyclic shift interval is 6, the first value and the second value of the sequence cyclic shift are as shown in Table 1.
[0576] Table 1, mapping between a value of one HARQ-ACK information bit and a state of the first UCI and a sequence
[0577] Optionally, the state of the first UCI comprises that the first UCI is positive and / or the value of the first UCI is 1.
[0578] Optionally, when the first reference sequence cyclic shift is 2 and the first cyclic shift interval is 6, the first value and the second value of the sequence cyclic shift are as shown in Table 2.
[0579] Table 2, mapping between a value of one HARQ-ACK information bit and a state of the first UCI and a sequence
[0580] Optionally, the state of the first UCI comprises that the first UCI is positive and / or the value of the first UCI is 1.
[0581] Optionally, when the first reference sequence cyclic shift is 4 and the first cyclic shift interval is 6, the first value and the second value of the sequence cyclic shift are as shown in Table 3.
[0582] Table 3, mapping between a value of one HARQ-ACK information bit and a state of the first UCI and a sequence
[0583] Optionally, the state of the first UCI comprises that the first UCI is positive and / or the value of the first UCI is 1.
[0584] Optionally, when the first reference sequence cyclic shift is 5 and the first cyclic shift interval is 6, the first value and the second value of the sequence cyclic shift are as shown in Table 4.
[0585] Table 4, mapping between a value of one HARQ-ACK information bit and a state of the first UCI and a sequence
[0586] Optionally, the state of the first UCI comprises that the first UCI is positive and / or the value of the first UCI is 1.
[0587] Optionally, if the HARQ-ACK information comprises two bits, the sequence cyclic shift comprises at least one of a first value, a second value, a third value and a fourth value.
[0588] Optionally, when the value of the HARQ-ACK is {0, 0} and the value of the first UCI is 1 or the first UCI is positive, the sequence cyclic shift is the first value, and optionally, the first value is the first reference sequence cyclic shift.
[0589] Optionally, the value of the HARQ-ACK is {0, 1} and the value of the first UCI is 1 or the first UCI is positive, the sequence cyclic shift is a second value, optionally, the second value is a sum of the first cyclic shift interval and the first value.
[0590] Optionally, the value of the HARQ-ACK is {1, 1} and the value of the first UCI is 1 or the first UCI is positive, the sequence cyclic shift is a third value, optionally, the third value is a sum of the second value and the first cyclic shift interval.
[0591] Optionally, the value of the HARQ-ACK is {1, 0} and the value of the first UCI is 1 or the first UCI is positive, the sequence cyclic shift is a fourth value, optionally, the fourth value is a sum of the third value and the first cyclic shift interval.
[0592] Optionally, when the first reference sequence cyclic shift is 2 and the first cyclic shift interval is 3, one optional scheme of the first value, the second value, the third value and the fourth value of the sequence cyclic shift is shown in Table 5.
[0593] Table 5, mapping of the value of two HARQ-ACK information bits and the state of the first UCI and the sequence
[0594] Optionally, the state of the first UCI includes that the first UCI is positive and / or the value of the first UCI is 1.
[0595] Optionally, the PUCCH is transmitted in a resource for the HARQ-ACK, optionally, the resource includes an RB, optionally, the HARQ-ACK and / or the first UCI are transmitted based on the PUCCH.
[0596] (2) determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the sequence cyclic shift of the HARQ-ACK, and the sequence cyclic shift of the HARQ-ACK and the SR.
[0597] Optionally, the sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK.
[0598] Optionally, the sequence cyclic shift of the HARQ-ACK corresponds to that the PUCCH only transmits the HARQ-ACK.
[0599] Optionally, for the HARQ-ACK information including one bit, when the value of the HARQ-ACK is 0 or 1, the sequence cyclic shift of the HARQ-ACK is 0 or 6, respectively.
[0600] Optionally, for the HARQ-ACK information including one bit, if the value of the HARQ-ACK is 0 and the value of the first UCI is 1 or the first UCI is positive, the first value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 0; if the value of the HARQ-ACK is 1 and the value of the first UCI is 1 or the first UCI is positive, the second value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 6.
[0601] Optionally, for the HARQ-ACK information including one bit, the first value and the second value of the sequence cyclic shift are shown in Table 6.
[0602] Table 6, the value of one HARQ-ACK information bit and the state of the first UCI and the mapping of the sequence
[0603] Optionally, the state of the first UCI includes that the first UCI is positive and / or the value of the first UCI is 1.
[0604] Optionally, for the HARQ-ACK information including two bits, when the value of the HARQ-ACK is {0, 0}, {0, 1}, {1, 1} and {1, 0}, the sequence cyclic shift of the HARQ-ACK is 0, 3, 6 and 9 respectively.
[0605] Optionally, for the HARQ-ACK information including two bits, if the value of the HARQ-ACK is {0, 0} and the value of the first UCI is 1 or the first UCI is positive, the first value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 0; if the value of the HARQ-ACK is {0, 1} and the value of the first UCI is 1 or the first UCI is positive, the second value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 3; if the value of the HARQ-ACK is {1, 1} and the value of the first UCI is 1 or the first UCI is positive, the third value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 6; if the value of the HARQ-ACK is {1, 0} and the value of the first UCI is 1 or the first UCI is positive, the fourth value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 9.
[0606] Optionally, for the HARQ-ACK information including two bits, at least one of the first value, the second value, the third value and the fourth value of the sequence cyclic shift is shown in Table 7.
[0607] Table 7, the value of two HARQ-ACK information bits and the state of the first UCI and the mapping of the sequence
[0608] Optionally, the status of the first UCI comprises that the first UCI is positive and / or the value of the first UCI is 1.
[0609] Optionally, the sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR.
[0610] Optionally, the sequence cyclic shift of the HARQ-ACK and the SR corresponds to the PUCCH transmitting the HARQ-ACK and / or the SR.
[0611] Optionally, the sequence cyclic shift of the HARQ-ACK and the SR corresponds to the HARQ-ACK and the SR multiplexed on the PUCCH.
[0612] Optionally, for the HARQ-ACK information comprising one bit, when the value of the HARQ-ACK is 0 or 1 and the SR is positive, the sequence cyclic shift of the HARQ-ACK is 3 or 9 respectively.
[0613] Optionally, for the HARQ-ACK information comprising one bit, if the value of the HARQ-ACK is 0 and the value of the first UCI is 1 or the first UCI is positive, the first value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 3; if the value of the HARQ-ACK is 1 and the value of the first UCI is 1 or the first UCI is positive, the second value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 9.
[0614] Optionally, for the HARQ-ACK information comprising one bit, the first value and the second value of the sequence cyclic shift are shown in Table 8.
[0615] Table 8, mapping of the value of one HARQ-ACK information bit and the status of the first UCI to the sequence
[0616] Optionally, the status of the first UCI comprises that the first UCI is positive and / or the value of the first UCI is 1.
[0617] Optionally, for the HARQ-ACK information comprising two bits, when the value of the HARQ-ACK is {0, 0}, {0, 1}, {1, 1} and {1, 0} and the SR is positive, the sequence cyclic shift of the HARQ-ACK is 1, 4, 7 and 10 respectively.
[0618] Optionally, for the HARQ-ACK information including two bits, if the value of the HARQ-ACK is {0, 0} and the value of the first UCI is 1 or the first UCI is positive, the first value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 1; if the value of the HARQ-ACK is {0, 1} and the value of the first UCI is 1 or the first UCI is positive, the second value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 4; if the value of the HARQ-ACK is {1, 1} and the value of the first UCI is 1 or the first UCI is positive, the third value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 7; if the value of the HARQ-ACK is {1, 0} and the value of the first UCI is 1 or the first UCI is positive, the fourth value of the sequence cyclic shift of the HARQ-ACK and the first UCI is 10.
[0619] Optionally, for the HARQ-ACK information including two bits, at least one of the first value, the second value, the third value and the fourth value of the sequence cyclic shift is shown in Table 9.
[0620] Table 9, the value of two HARQ-ACK information bits and the state of the first UCI and the mapping of the sequence
[0621] Optionally, the state of the first UCI includes that the first UCI is positive and / or the value of the first UCI is 1.
[0622] Optionally, the cyclic shift is determined according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift and the first formula, including at least one of the following:
[0623] (1) The cyclic shift is determined according to at least one of the sequence cyclic shift, the initial cyclic shift and the first formula.
[0624] Optionally, the first formula is:
[0625] Optionally, m0 is the initial cyclic shift, and optionally, for PUCCH format 0 and PUCCH format 1, m0 is provided by the initial cyclic shift parameter (initialCyclicShift).
[0626] Optionally, 1' is an index value of an OFDM symbol in a slot of the PUCCH transmission, and optionally, the slot includes the first symbol of the PUCCH transmission.
[0627] Optionally, if the PUCCH uses staggered mapping, then wherein, wherein m is the number of resource blocks within the interlace, and / or if the PUCCH does not use interlace mapping, m = 1. int = 0.
[0628] Optionally, n cs (n c is provided by a second formula, optionally, the second formula is:
[0629] Optionally, c(i) is a pseudo-random sequence, optionally, the pseudo-random sequence generator is based on c init = n ID is initialized, optionally, n ID is provided by a hopping index value parameter (hoppingld) or
[0630] (2) determining the cyclic shift according to at least one of the sequence cyclic shift, a second initial cyclic shift, and a first formula.
[0631] Optionally, the first formula is:
[0632] Optionally, m0 is a second initial cyclic shift, optionally, for PUCCH format 0 and PUCCH format 1, m0 is provided by a second initial cyclic shift parameter (initialCyclicShift2), optionally, the second initial cyclic shift parameter is configured in PUCCH format 0 (PUCCH-format0) and / or PUCCH format 1 (PUCCH-format1).
[0633] Optionally, m0 is a second initial cyclic shift, optionally, for PUCCH format 0 and PUCCH format 1, m0 is provided by an initial cyclic shift parameter (initialCyclicShift), optionally, the value of the second initial cyclic shift corresponding to the first UCI and / or HARQ-ACK is different from the value of the initial cyclic shift corresponding to the HARQ-ACK and SR, optionally, the value of the second initial cyclic shift corresponding to the first UCI and / or HARQ-ACK is different from the value of the initial cyclic shift corresponding to the HARQ-ACK.
[0634] Optionally, the second initial cyclic shift is selected or determined if the first UCI and / or HARQ-ACK are multiplexed on the PUCCH.
[0635] Optionally, the cyclic shift is determined according to at least one of the sequence cyclic shift, a second initial cyclic shift, and a first formula if the first UCI and / or HARQ-ACK are multiplexed on the PUCCH.
[0636] Optionally, n cs (n c , l) is provided by a second formula, optionally, the second formula is:
[0637] Optionally, c(i) is a pseudo-random sequence, optionally, the pseudo-random sequence generator is based on c init = n ID initialization, optionally, n ID is provided by a hopping index value parameter or
[0638] (3) determining a cyclic shift according to at least one of a sequence cyclic shift, an initial cyclic shift, an initial cyclic shift offset value, and a first formula.
[0639] Optionally, the first formula is:
[0640] Optionally, if the first UCI and / or HARQ-ACK is multiplexed on a PUCCH, m0 is a sum of an initial cyclic shift and an initial cyclic shift offset value, optionally, the initial cyclic shift is provided by an initial cyclic shift parameter.
[0641] Optionally, the initial cyclic shift offset value is indicated by at least one of an RRC, a MAC CE, and a DCI, or the initial cyclic shift offset value is a preset value.
[0642] Optionally, n cs (n c , l) is provided by a second formula, optionally, the second formula is:
[0643] Optionally, c(i) is a pseudo-random sequence, optionally, the pseudo-random sequence generator is based on c init = n ID initialization, optionally, n ID is provided by a hopping index value parameter or
[0644] Optionally, a PUCCH resource is selected or determined, including at least one of:
[0645] a resource for the first UCI is selected or determined, and / or, a PUCCH is transmitted in the resource for the first UCI, optionally, the resource includes an RB, optionally, the first UCI and / or HARQ-ACK is transmitted based on the PUCCH;
[0646] selecting or determining a resource for the HARQ-ACK, and / or transmitting the PUCCH in the resource for the HARQ-ACK, optionally, the resource comprises a RB, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH;
[0647] selecting or determining a first preset PUCCH resource, and / or transmitting the PUCCH in the first preset PUCCH resource, optionally, the resource comprises a RB, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH.
[0648] Optionally, when the PUCCH transmits the first UCI and / or the HARQ-ACK, any one of the following schemes for selecting or determining the sequence cyclic shift of the first UCI and the HARQ-ACK can be selected.
[0649] Optionally, when the PUCCH transmits the first UCI and / or the HARQ-ACK, any one of the following schemes for determining the cyclic shift can be selected.
[0650] Optionally, when the PUCCH transmits the first UCI and / or the HARQ-ACK, any one of the following schemes for selecting or determining the PUCCH resource can be selected.
[0651] Example one:
[0652] Optionally, when the PUCCH transmits the first UCI and / or the HARQ-ACK, the following are included:
[0653] determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the following: the value of the HARQ-ACK and the first UCI, the first reference sequence cyclic shift, and the first cyclic shift interval;
[0654] determining the cyclic shift according to at least one of the following: the sequence cyclic shift, the initial cyclic shift, and the first formula;
[0655] determining the sequence according to the cyclic shift;
[0656] selecting or determining a resource for the HARQ-ACK, and / or transmitting the PUCCH in the resource for the HARQ-ACK, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH;
[0657] mapping the sequence to the PUCCH resource.
[0658] Optionally, if the HARQ-ACK information includes one bit, the sequence cyclic shift is provided by at least one of the following: Table 1, Table 2, Table 3, and Table 4.
[0659] Optionally, if the HARQ-ACK information comprises one bit, the sequence cyclic shift is provided by Table 6 and / or Table 8.
[0660] Optionally, the cyclic shift is determined according to at least one of the sequence cyclic shift, the initial cyclic shift, and the first formula, optionally, the initial cyclic shift (m0) is provided by an initialCyclicShift parameter.
[0661] Optionally, the PUCCH is transmitted in the resource for the HARQ-ACK, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH, optionally, the first UCI and / or the HARQ-ACK is multiplexed on the PUCCH.
[0662] Optionally, the resource for the HARQ-ACK uses a PUCCH format 0.
[0663] Example two:
[0664] Optionally, the PUCCH transmits the first UCI and / or the HARQ-ACK comprises:
[0665] determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of a value of the HARQ-ACK and the first UCI, a sequence cyclic shift of the HARQ-ACK, and a sequence cyclic shift of the HARQ-ACK and the SR;
[0666] determining the cyclic shift according to at least one of the sequence cyclic shift, a second initial cyclic shift, and the first formula;
[0667] determining the sequence according to the cyclic shift;
[0668] selecting or determining the resource for the HARQ-ACK, and / or, transmitting the PUCCH in the resource for the HARQ-ACK, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH;
[0669] mapping the sequence to the PUCCH resource.
[0670] Optionally, if the HARQ-ACK information comprises one bit, the sequence cyclic shift is provided by Table 6 and / or Table 8.
[0671] Optionally, if the HARQ-ACK information comprises two bits, the sequence cyclic shift is provided by Table 7 and / or Table 9.
[0672] Optionally, the cyclic shift is determined according to at least one of the sequence cyclic shift, a second initial cyclic shift, and the first formula, the second initial cyclic shift is provided by a second initial cyclic shift parameter (initialCyclicShift2), the second initial cyclic shift is provided by an initial cyclic shift parameter (initialCyclicShift), and a value of the second initial cyclic shift is different from a value of an initial cyclic shift corresponding to the HARQ-ACK and the SR, the second initial cyclic shift is provided by an initial cyclic shift parameter (initialCyclicShift), and a value of the second initial cyclic shift is different from a value of an initial cyclic shift corresponding to the HARQ-ACK.
[0673] Optionally, the PUCCH is transmitted in a resource for the HARQ-ACK, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH, optionally, the first UCI and / or the HARQ-ACK is multiplexed on the PUCCH.
[0674] Optionally, the resource for the HARQ-ACK uses a PUCCH format 0.
[0675] Example Three:
[0676] Optionally, the PUCCH transmits the first UCI and / or the HARQ-ACK includes:
[0677] The sequence cyclic shift of the HARQ-ACK and the first UCI is determined based on at least one of a value of the HARQ-ACK and the first UCI, a sequence cyclic shift of the HARQ-ACK, and a sequence cyclic shift of the HARQ-ACK and the SR.
[0678] The cyclic shift is determined according to at least one of the sequence cyclic shift, an initial cyclic shift, an initial cyclic shift offset value, and the first formula.
[0679] The sequence is determined according to the cyclic shift.
[0680] The resource for the HARQ-ACK is selected or determined, and / or the PUCCH is transmitted in the resource for the HARQ-ACK, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH.
[0681] The sequence is mapped to the PUCCH resource.
[0682] Optionally, if the HARQ-ACK information includes one bit, the sequence cyclic shift is provided by Table 6 and / or Table 8.
[0683] Optionally, if the HARQ-ACK information includes two bits, the sequence cyclic shift is provided by Table 7 and / or Table 9.
[0684] Optionally, the cyclic shift is determined according to at least one of the sequence cyclic shift, the initial cyclic shift, the initial cyclic shift offset value, and the first formula, optionally, m0 is a sum of the initial cyclic shift and the initial cyclic shift offset value, optionally, the initial cyclic shift is provided by an initialCyclicShift parameter.
[0685] Optionally, the PUCCH is transmitted in a resource for the HARQ-ACK, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH, optionally, the first UCI and / or the HARQ-ACK is multiplexed on the PUCCH.
[0686] Optionally, the resource for the HARQ-ACK uses a PUCCH format 0.
[0687] Example Four:
[0688] Optionally, the PUCCH transmits the first UCI and / or the HARQ-ACK comprises:
[0689] The sequence cyclic shift of the HARQ-ACK and the first UCI is determined based on at least one of a value of the HARQ-ACK and the first UCI, a sequence cyclic shift of the HARQ-ACK, and a sequence cyclic shift of the HARQ-ACK and the SR;
[0690] The cyclic shift is determined according to at least one of the sequence cyclic shift, the initial cyclic shift, and the first formula;
[0691] The sequence is determined according to the cyclic shift;
[0692] The resource for the first UCI is selected or determined, and / or the PUCCH is transmitted in the resource for the first UCI, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH;
[0693] The sequence is mapped to the PUCCH resource.
[0694] Optionally, if the HARQ-ACK information comprises one bit, the sequence cyclic shift is provided by Table 6 and / or Table 8.
[0695] Optionally, if the HARQ-ACK information comprises two bits, the sequence cyclic shift is provided by Table 7 and / or Table 9.
[0696] Optionally, the cyclic shift is determined according to at least one of the sequence cyclic shift, the initial cyclic shift, and the first formula, optionally, the initial cyclic shift (m0) is provided by an initialCyclicShift parameter.
[0697] Optionally, the PUCCH is transmitted in the resource for the first UCI, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH, and / or the first UCI and / or the HARQ-ACK is multiplexed on the PUCCH.
[0698] Optionally, the resource for the first UCI uses PUCCH format 0.
[0699] Example Five:
[0700] Optionally, the PUCCH transmits the first UCI and / or the HARQ-ACK includes:
[0701] The sequence cyclic shift of the HARQ-ACK and the first UCI is determined based on at least one of the value of the HARQ-ACK and the first UCI, the sequence cyclic shift of the HARQ-ACK, and the sequence cyclic shift of the HARQ-ACK and the SR.
[0702] The cyclic shift is determined according to at least one of the sequence cyclic shift, the initial cyclic shift, and the first formula.
[0703] The sequence is determined according to the cyclic shift.
[0704] The first preset PUCCH resource is selected or determined, and / or the PUCCH is transmitted in the first preset PUCCH resource, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH.
[0705] The sequence is mapped to the PUCCH resource.
[0706] Optionally, if the HARQ-ACK information includes one bit, the sequence cyclic shift is provided by Table 6 and / or Table 8.
[0707] Optionally, if the HARQ-ACK information includes two bits, the sequence cyclic shift is provided by Table 7 and / or Table 9.
[0708] Optionally, the cyclic shift is determined according to at least one of the sequence cyclic shift, the initial cyclic shift, and the first formula, and optionally, the initial cyclic shift (m0) is provided by an initial cyclic shift parameter (initialCyclicShift).
[0709] Optionally, the PUCCH is transmitted in the first preset PUCCH resource, optionally, the first UCI and / or the HARQ-ACK is transmitted based on the PUCCH, and / or the first UCI and / or the HARQ-ACK is multiplexed on the PUCCH.
[0710] Optionally, the resource for the first UCI uses PUCCH format 0.
[0711] Optionally, for the transmission of the first UCI, a transmission method of the first UCI needs to be determined to transmit the first UCI on the PUCCH.
[0712] Optionally, the value of the first UCI is 1 or the first UCI is positive.
[0713] Optionally, the first UCI is used to inform or instruct the network device that the terminal device reports the measurement information satisfying the first condition.
[0714] Optionally, the resource for transmitting the first UCI uses the PUCCH format 0.
[0715] Optionally, the value of the sequence cyclic shift (i.e., m cs ) is 0.
[0716] Optionally, the initial cyclic shift (i.e., m0) is provided by an initial cyclic shift parameter (initialCyclicShift).
[0717] Through the technical solutions of the embodiment, by explicitly multiplexing the first UCI to the PUCCH transmission method, the uplink transmission technology mechanism is improved, thereby avoiding increasing the beam information reporting delay and / or avoiding increasing the uplink signaling overhead.
[0718] Eighth Embodiment
[0719] Referring to FIG. 8, FIG. 8 is a flowchart of a processing method according to the eighth embodiment, and the method of the embodiment can be applied to a network device (such as a base station), including the steps of:
[0720] S2: receiving UCI information, the UCI information being transmitted by a terminal device on a PUCCH.
[0721] Optionally, the UCI information includes at least one of a first SR, a second SR, a first UCI, a HARQ-ACK, and a CSI report.
[0722] Optionally, the UCI information includes at least one group of UCI bits.
[0723] Optionally, the terminal device selects or determines a bit arrangement method of the UCI information.
[0724] Optionally, the at least one group of UCI bits includes at least one of the following:
[0725] At least one of the first SR, the first UCI, and the second SR constitutes a first number of bits;
[0726] The first UCI constitutes a second number of bits, and / or the first SR and / or the second SR constitutes a third number of bits.
[0727] The first UCI constitutes a fourth number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0728] The first SR constitutes a fifth number of bits, and / or the second SR constitutes a sixth number of bits;
[0729] The first SR and the first UCI constitute a seventh number of bits, and / or the second SR constitutes a sixth number of bits;
[0730] The first SR and the first UCI constitute an eighth number of bits, and / or the second SR constitutes a sixth number of bits.
[0731] Optionally, the first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive reporting request, a positive reporting request indication.
[0732] Optionally, the second number of bits indicates a negative reporting request indication and / or a positive reporting request indication.
[0733] Optionally, the third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, a positive reporting request.
[0734] Optionally, the fourth number of bits indicates whether the first UCI indicates or notifies the network device of the measurement information satisfying the first condition for reporting.
[0735] Optionally, the fifth number of bits indicates whether the first SR requests resources for reporting the measurement information satisfying the first condition.
[0736] Optionally, the seventh number of bits indicates at least one of a negative reporting request, a negative reporting request indication, a positive reporting request, a positive reporting request indication.
[0737] Optionally, the eighth number of bits indicates whether the first SR requests resources for reporting the measurement information satisfying the first condition, and / or indicates whether the first UCI indicates or notifies the network device of the measurement information satisfying the first condition for reporting.
[0738] Optionally, if the at least one SR is a positive reporting request, a value of at least one of the first number of bits, the third number of bits, and the seventh number of bits indicates the positive reporting request.
[0739] Optionally, if the first UCI is a positive reporting request indication, values of the first number of bits, the second number of bits, and the seventh number of bits indicate the positive reporting request indication.
[0740] Optionally, the positive reporting request corresponds to the first SR.
[0741] Optionally, the positive reporting request is used for requesting the resource to report the measurement information satisfying the first condition.
[0742] Optionally, the positive reporting request corresponds to the first UCI.
[0743] Optionally, the positive reporting request is used for notifying or instructing the network device to report the measurement information satisfying the first condition.
[0744] Optionally, the first quantity of bits correspond to the fourth quantity of first UCIs, and the remaining values of the first quantity of bits correspond to the first SR and / or the second SR.
[0745] Optionally, the fourth quantity of bits one-to-one correspond to the fourth quantity of first UCIs.
[0746] Optionally, the fifth quantity of bits one-to-one correspond to the fifth quantity of first SRs.
[0747] Optionally, the first quantity of bits correspond to the fourth quantity of first UCIs, and the remaining values of the first quantity of bits correspond to the first SR.
[0748] Optionally, the first quantity of bits correspond to the fourth quantity of first UCIs, and the remaining values of the first quantity of bits correspond to the first SR.
[0749] Optionally, the first quantity of bits correspond to the fourth quantity of first UCIs, and the remaining values of the first quantity of bits correspond to the first SR.
[0750] Optionally, the terminal device selects or determines a bit arrangement method of the UCI information, including at least one of the following:
[0751] The terminal device adds the first quantity of bits after the bits of the HARQ-ACK;
[0752] The terminal device adds the first quantity of bits before the bits of the CSI report;
[0753] The terminal device adds the second quantity of bits and / or the fourth quantity of bits after the bits of the HARQ-ACK;
[0754] The terminal device adds at least one of the second quantity of bits, the third quantity of bits, and the fourth quantity of bits after the bits of the HARQ-ACK based on the first arrangement order;
[0755] The terminal device adds at least one of the second quantity of bits, the third quantity of bits, and the fourth quantity of bits after the bits of the HARQ-ACK based on the second arrangement order;
[0756] The terminal device adds the second quantity of bits or the fourth quantity of bits before the bits of the CSI report;
[0757] The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits before the bits of the CSI report based on a third arrangement order;
[0758] The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits before the bits of the CSI report based on a fourth arrangement order;
[0759] The terminal device adds the fifth number of bits and / or the sixth number of bits after the bits of the HARQ-ACK based on a fifth arrangement order;
[0760] The terminal device adds the fifth number of bits and / or the sixth number of bits before the bits of the CSI report based on a sixth arrangement order;
[0761] The terminal device adds at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits after the bits of the HARQ-ACK based on a seventh arrangement order;
[0762] The terminal device adds at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits before the bits of the CSI report based on an eighth arrangement order.
[0763] Optionally, the first arrangement order is: the bits of the HARQ-ACK, the bits of the first UCI, the bits of the first SR and / or the second SR.
[0764] Optionally, the second arrangement order is: the bits of the HARQ-ACK, the bits of the first SR and / or the second SR, the bits of the first UCI.
[0765] Optionally, the third arrangement order is: the bits of the first UCI, the bits of the first SR and / or the second SR, the bits of the CSI report.
[0766] Optionally, the fourth arrangement order is: the bits of the first SR and / or the second SR, the bits of the first UCI, the bits of the CSI report.
[0767] Optionally, the fifth arrangement order is: the bits of the HARQ-ACK, the bits of the first SR, the bits of the second SR.
[0768] Optionally, the sixth arrangement order is: the bits of the first SR, the bits of the second SR, the bits of the CSI report.
[0769] Optionally, the seventh arrangement order is: the bits of the HARQ-ACK, the bits of the first SR and the first UCI, the bits of the second SR.
[0770] Optionally, the eighth arrangement order is: bits of the first SR and the first UCI, bits of the second SR, bits of the CSI report.
[0771] Optionally, the terminal device transmits the UCI information on the PUCCH, including at least one of:
[0772] The terminal device transmits the HARQ-ACK on the PUCCH, canceling the PUCCH transmission of the first UCI;
[0773] The terminal device transmits the first UCI on the PUCCH, canceling the PUCCH transmission of the HARQ-ACK;
[0774] The terminal device transmits the first UCI and / or the HARQ-ACK on the PUCCH.
[0775] Optionally, the terminal device transmits the first UCI and / or the HARQ-ACK on the PUCCH, including:
[0776] The terminal device selects or determines the sequence cyclic shift of the first UCI and the HARQ-ACK;
[0777] The terminal device determines the cyclic shift according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift, and the first formula;
[0778] The terminal device determines the sequence according to the cyclic shift;
[0779] The terminal device selects or determines the PUCCH resource;
[0780] The terminal device maps the sequence to the PUCCH resource.
[0781] Optionally, the terminal device selects or determines the sequence cyclic shift of the first UCI and the HARQ-ACK, including at least one of:
[0782] The terminal device determines the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the first reference sequence cyclic shift, and the first cyclic shift interval;
[0783] The terminal device determines the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the sequence cyclic shift of the HARQ-ACK, and the sequence cyclic shift of the HARQ-ACK and the SR.
[0784] Optionally, the PUCCH resource includes a resource element of the PUCCH transmission.
[0785] Optionally, if the HARQ-ACK includes one bit, the sequence cyclic shift includes the first value and / or the second value.
[0786] Optionally, if the HARQ-ACK includes two bits, the sequence cyclic shift includes at least one of the first value, the second value, the third value, and the fourth value.
[0787] Optionally, the sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK.
[0788] Optionally, the sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR.
[0789] Optionally, the PUCCH is transmitted in a resource for the HARQ-ACK.
[0790] Optionally, the PUCCH is transmitted in a resource for the first UCI.
[0791] Optionally, the first value is a first reference sequence cyclic shift.
[0792] Optionally, the second value is a sum of the first value and a first cyclic shift interval.
[0793] Optionally, the third value is a sum of the second value and the first cyclic shift interval.
[0794] Optionally, the fourth value is a sum of the third value and the first cyclic shift interval.
[0795] By the technical solutions of the embodiment, the uplink transmission technology mechanism is improved by transmitting the UCI information on the PUCCH, thereby avoiding increasing the reporting delay of the beam information and / or avoiding increasing the uplink signaling overhead.
[0796] Ninth Embodiment
[0797] Referring to FIG. 9, FIG. 9 is a structural schematic diagram of a processing apparatus provided by an embodiment of the present application. The apparatus can be mounted on or is the terminal device in the method embodiments described above. The processing apparatus shown in FIG. 9 can be used to execute part or all of the functions in the method embodiments described in the above embodiments. As shown in FIG. 9, the processing apparatus 1100 includes:
[0798] The processing module 1101 is configured to transmit UCI information on the PUCCH.
[0799] Optionally, the UCI information includes at least one of a first SR, a second SR, a first UCI, a HARQ-ACK, and a CSI report.
[0800] Optionally, the UCI information comprises at least one group of UCI bits.
[0801] Optionally, the at least one group of UCI bits comprises at least one of:
[0802] At least one of the first SR, the first UCI, and the second SR comprises a first number of bits;
[0803] The first UCI comprises a second number of bits, and / or the first SR and / or the second SR comprises a third number of bits;
[0804] The first UCI comprises a fourth number of bits, and / or the first SR and / or the second SR comprises a third number of bits;
[0805] The first SR comprises a fifth number of bits, and / or the second SR comprises a sixth number of bits;
[0806] The first SR and the first UCI comprise a seventh number of bits, and / or the second SR comprises a sixth number of bits;
[0807] The first SR and the first UCI comprise an eighth number of bits, and / or the second SR comprises a sixth number of bits.
[0808] Optionally, the apparatus further comprises at least one of:
[0809] The first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive reporting request, a positive reporting request with notification;
[0810] The second number of bits indicates a negative reporting request with notification and / or a positive reporting request with notification;
[0811] The third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, a positive reporting request;
[0812] The fourth number of bits indicates whether the first UCI notifies or indicates the network device to report measurement information satisfying the first condition;
[0813] The fifth number of bits indicates whether the first SR requests resources to report measurement information satisfying the first condition;
[0814] The seventh number of bits indicates at least one of a negative reporting request, a negative reporting request with notification, a positive reporting request, a positive reporting request with notification;
[0815] The eighth number of bits indicates whether the first SR requests resources to report measurement information satisfying the first condition, and / or indicates whether the first UCI notifies or indicates the network device to report measurement information satisfying the first condition.
[0816] Optionally, the apparatus further comprises at least one of:
[0817] If the at least one SR is a positive reporting request, the value of at least one of the first number of bits, the third number of bits, and the seventh number of bits indicates the positive reporting request;
[0818] If the first UCI is a positive notification reporting request, the value of the first number of bits, the second number of bits, and the seventh number of bits indicates the positive notification reporting request;
[0819] The positive reporting request corresponds to the first SR;
[0820] The positive reporting request is used to request reporting of measurement information satisfying the first condition on resources;
[0821] The positive notification reporting request corresponds to the first UCI;
[0822] The positive notification reporting request is used to notify or indicate the network device to report measurement information satisfying the first condition;
[0823] The first number of bits has a first fourth number of values corresponding to a fourth number of first UCIs, and a remaining value corresponding to the first SR and / or the second SR;
[0824] The fourth number of bits one-to-one corresponds to the fourth number of first UCIs;
[0825] The fifth number of bits one-to-one corresponds to the fifth number of first SRs;
[0826] The seventh number of bits has a first fourth number of values corresponding to a fourth number of first UCIs, and a remaining value corresponding to the first SR;
[0827] The eighth number of bits has a first fourth number of values one-to-one corresponding to a fourth number of first UCIs;
[0828] The eighth number of bits has a remaining fifth number of values one-to-one corresponding to a fifth number of first SRs.
[0829] Optionally, the apparatus further comprises:
[0830] Selecting or determining a bit arrangement method of UCI information.
[0831] Optionally, the selecting or determining a bit arrangement method of UCI information comprises at least one of:
[0832] Adding the first number of bits after the bits of HARQ-ACK;
[0833] Adding the first number of bits before the bits of CSI report;
[0834] adding the second number of bits and / or the fourth number of bits after the bits of the HARQ-ACK;
[0835] adding at least one of the second number of bits, the third number of bits and the fourth number of bits after the bits of the HARQ-ACK based on the first arrangement order;
[0836] adding at least one of the second number of bits, the third number of bits and the fourth number of bits after the bits of the HARQ-ACK based on the second arrangement order;
[0837] adding the second number of bits or the fourth number of bits before the bits of the CSI report;
[0838] adding at least one of the second number of bits, the third number of bits and the fourth number of bits before the bits of the CSI report based on the third arrangement order;
[0839] adding at least one of the second number of bits, the third number of bits and the fourth number of bits before the bits of the CSI report based on the fourth arrangement order;
[0840] adding the fifth number of bits and / or the sixth number of bits after the bits of the HARQ-ACK based on a fifth arrangement order;
[0841] adding the fifth number of bits and / or the sixth number of bits before the bits of the CSI report based on a sixth arrangement order;
[0842] adding at least one of the sixth number of bits, the seventh number of bits and the eighth number of bits after the bits of the HARQ-ACK based on a seventh arrangement order;
[0843] adding at least one of the sixth number of bits, the seventh number of bits and the eighth number of bits before the bits of the CSI report based on an eighth arrangement order.
[0844] Optionally, the apparatus further comprises at least one of:
[0845] the first arrangement order is: the bits of the HARQ-ACK, the bits of the first UCI, the bits of the first SR and / or the second SR;
[0846] the second arrangement order is: the bits of the HARQ-ACK, the bits of the first SR and / or the second SR, the bits of the first UCI;
[0847] the third arrangement order is: the bits of the first UCI, the bits of the first SR and / or the second SR, the bits of the CSI report;
[0848] The fourth arrangement order is: bits of the first SR and / or the second SR, bits of the first UCI, bits of the CSI report;
[0849] The fifth arrangement order is: bits of the HARQ-ACK, bits of the first SR, bits of the second SR;
[0850] The sixth arrangement order is: bits of the first SR, bits of the second SR, bits of the CSI report;
[0851] The seventh arrangement order is: bits of the HARQ-ACK, bits of the first SR and the first UCI, bits of the second SR;
[0852] The eighth arrangement order is: bits of the first SR and the first UCI, bits of the second SR, bits of the CSI report.
[0853] Optionally, the PUCCH transmits the UCI information, including at least one of:
[0854] The PUCCH transmits the HARQ-ACK, and cancels the PUCCH transmission of the first UCI;
[0855] The PUCCH transmits the first UCI, and cancels the PUCCH transmission of the HARQ-ACK;
[0856] The PUCCH transmits the first UCI and / or the HARQ-ACK.
[0857] Optionally, the PUCCH transmits the first UCI and / or the HARQ-ACK, including:
[0858] Selecting or determining a sequence cyclic shift of the first UCI and the HARQ-ACK;
[0859] Determining the cyclic shift according to at least one of the sequence cyclic shift, an initial cyclic shift, a second initial cyclic shift, and a first formula;
[0860] Determining a sequence according to the cyclic shift;
[0861] Selecting or determining a PUCCH resource;
[0862] Mapping the sequence to the PUCCH resource.
[0863] Optionally, selecting or determining the sequence cyclic shift of the first UCI and the HARQ-ACK, including at least one of:
[0864] Determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of a value of the HARQ-ACK and the first UCI, a first reference sequence cyclic shift, and a first cyclic shift interval;
[0865] determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the values of the HARQ-ACK and the first UCI, the sequence cyclic shift of the HARQ-ACK, and the sequence cyclic shift of the HARQ-ACK and the SR.
[0866] Optionally, the apparatus further comprises at least one of:
[0867] The PUCCH resource comprises resource elements of the PUCCH transmission.
[0868] If the HARQ-ACK comprises one bit, the sequence cyclic shift comprises at least one of the first value and / or the second value.
[0869] If the HARQ-ACK comprises two bits, the sequence cyclic shift comprises at least one of the first value, the second value, the third value, and the fourth value.
[0870] The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK.
[0871] The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR.
[0872] The PUCCH is transmitted in the resource for the HARQ-ACK.
[0873] The PUCCH is transmitted in the resource for the first UCI.
[0874] Optionally, the apparatus further comprises at least one of:
[0875] The first value is a first reference sequence cyclic shift.
[0876] The second value is a sum of the first value and a first cyclic shift interval.
[0877] The third value is a sum of the second value and the first cyclic shift interval.
[0878] The fourth value is a sum of the third value and the first cyclic shift interval.
[0879] The processing apparatus provided by the embodiments of the present application has similar principles of implementation and beneficial effects to the technical solutions shown in the corresponding method embodiments described above, and will not be described here in detail.
[0880] Tenth embodiment
[0881] Referring to FIG. 10, FIG. 10 is a schematic structural diagram of a processing apparatus provided in an embodiment of the present application, which can be carried on a network device in the method embodiments described above. The processing apparatus shown in FIG. 10 can be used to perform part or all of the functions in the method embodiments described in the above embodiments. As shown in FIG. 10, the processing apparatus 1200 includes:
[0882] The receiving module 1201 is configured to receive UCI information, wherein the UCI information is transmitted by a terminal device on a PUCCH.
[0883] Optionally, the apparatus further includes at least one of the following:
[0884] The UCI information includes at least one of a first SR, a second SR, a first UCI, a HARQ-ACK, and a CSI report;
[0885] The UCI information includes at least one group of UCI bits;
[0886] The terminal device selects or determines a bit arrangement method of the UCI information.
[0887] Optionally, the at least one group of UCI bits includes at least one of the following:
[0888] At least one of the first SR, the first UCI, and the second SR constitutes a first number of bits;
[0889] The first UCI constitutes a second number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0890] The first UCI constitutes a fourth number of bits, and / or the first SR and / or the second SR constitutes a third number of bits;
[0891] The first SR constitutes a fifth number of bits, and / or the second SR constitutes a sixth number of bits;
[0892] The first SR and the first UCI constitute a seventh number of bits, and / or the second SR constitutes a sixth number of bits;
[0893] The first SR and the first UCI constitute an eighth number of bits, and / or the second SR constitutes a sixth number of bits.
[0894] Optionally, the apparatus further includes at least one of the following:
[0895] The first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive report request, and a positive notification report request;
[0896] The second number of bits indicates a negative notification report request and / or a positive notification report request;
[0897] The third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, a positive reporting request;
[0898] The fourth number of bits indicates whether the first UCI reports or indicates to the network device that there is measurement information satisfying the first condition;
[0899] The fifth number of bits indicates whether the first SR requests a resource to report measurement information satisfying the first condition;
[0900] The seventh number of bits indicates at least one of a negative reporting request, a negative reporting request notification, a positive reporting request, a positive reporting request notification;
[0901] The eighth number of bits indicates whether the first SR requests a resource to report measurement information satisfying the first condition, and / or indicates whether the first UCI reports or indicates to the network device that there is measurement information satisfying the first condition.
[0902] Optionally, the apparatus further comprises at least one of:
[0903] If the at least one SR is a positive reporting request, at least one of the first number of bits, the third number of bits, and the seventh number of bits indicates the positive reporting request;
[0904] If the first UCI is a positive reporting request notification, the first number of bits, the second number of bits, and the seventh number of bits indicate the positive reporting request notification;
[0905] The positive reporting request corresponds to the first SR;
[0906] The positive reporting request is used to request a resource to report measurement information satisfying the first condition;
[0907] The positive reporting request notification corresponds to the first UCI;
[0908] The positive reporting request notification is used to report or indicate to the network device that there is measurement information satisfying the first condition;
[0909] The first number of bits has a first fourth number of values corresponding to a fourth number of first UCIs, and a remaining value corresponding to the first SR and / or the second SR;
[0910] The fourth number of bits one-to-one corresponds to the fourth number of first UCIs;
[0911] The fifth number of bits one-to-one corresponds to the fifth number of first SRs;
[0912] The first fourth number of values of the seventh number of bits correspond to the fourth number of first UCIs, and the remaining values of the seventh number of bits correspond to the first SRs;
[0913] The first fourth number of bits of the eighth number of bits correspond one-to-one to the fourth number of first UCIs;
[0914] The remaining fifth number of bits of the eighth number of bits correspond one-to-one to the fifth number of first SRs.
[0915] Optionally, the terminal device selects or determines a bit arrangement method of UCI information, including at least one of the following:
[0916] The terminal device adds the first number of bits after the bits of the HARQ-ACK;
[0917] The terminal device adds the first number of bits before the bits of the CSI report;
[0918] The terminal device adds the second number of bits and / or the fourth number of bits after the bits of the HARQ-ACK;
[0919] The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits after the bits of the HARQ-ACK based on the first arrangement order;
[0920] The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits after the bits of the HARQ-ACK based on the second arrangement order;
[0921] The terminal device adds the second number of bits or the fourth number of bits before the bits of the CSI report;
[0922] The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits before the bits of the CSI report based on the third arrangement order;
[0923] The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits before the bits of the CSI report based on the fourth arrangement order;
[0924] The terminal device adds the fifth number of bits and / or the sixth number of bits after the bits of the HARQ-ACK based on the fifth arrangement order;
[0925] The terminal device adds the fifth number of bits and / or the sixth number of bits before the bits of the CSI report based on the sixth arrangement order;
[0926] The terminal device adds at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits to the bits of the HARQ-ACK based on a seventh arrangement order before the bits of the PUCCH;
[0927] The terminal device adds at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits to the bits of the CSI report based on an eighth arrangement order before the bits of the PUCCH.
[0928] Optionally, the apparatus further comprises at least one of:
[0929] The first arrangement order is: the bits of the HARQ-ACK, the bits of the first UCI, the bits of the first SR and / or the second SR;
[0930] The second arrangement order is: the bits of the HARQ-ACK, the bits of the first SR and / or the second SR, the bits of the first UCI;
[0931] The third arrangement order is: the bits of the first UCI, the bits of the first SR and / or the second SR, the bits of the CSI report;
[0932] The fourth arrangement order is: the bits of the first SR and / or the second SR, the bits of the first UCI, the bits of the CSI report;
[0933] The fifth arrangement order is: the bits of the HARQ-ACK, the bits of the first SR, the bits of the second SR;
[0934] The sixth arrangement order is: the bits of the first SR, the bits of the second SR, the bits of the CSI report;
[0935] The seventh arrangement order is: the bits of the HARQ-ACK, the bits of the first SR and the first UCI, the bits of the second SR;
[0936] The eighth arrangement order is: the bits of the first SR and the first UCI, the bits of the second SR, the bits of the CSI report.
[0937] Optionally, the terminal device transmits the UCI information on the PUCCH, comprising at least one of:
[0938] The terminal device transmits the HARQ-ACK on the PUCCH, cancels the PUCCH transmission of the first UCI;
[0939] The terminal device transmits the first UCI on the PUCCH, cancels the PUCCH transmission of the HARQ-ACK;
[0940] The terminal device transmits the first UCI and / or the HARQ-ACK on the PUCCH.
[0941] Optionally, the terminal device transmits the first UCI and / or the HARQ-ACK on the PUCCH, including:
[0942] The terminal device selects or determines the sequence cyclic shift of the first UCI and the HARQ-ACK;
[0943] The terminal device determines the cyclic shift according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift, and the first formula;
[0944] The terminal device determines the sequence according to the cyclic shift;
[0945] The terminal device selects or determines the PUCCH resource;
[0946] The terminal device maps the sequence to the PUCCH resource.
[0947] Optionally, the terminal device selects or determines the sequence cyclic shift of the first UCI and the HARQ-ACK, including at least one of:
[0948] The terminal device determines the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the first reference sequence cyclic shift, and the first cyclic shift interval;
[0949] The terminal device determines the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the sequence cyclic shift of the HARQ-ACK, and the sequence cyclic shift of the HARQ-ACK and the SR.
[0950] Optionally, the apparatus further includes at least one of:
[0951] The PUCCH resource includes resource elements for the PUCCH transmission;
[0952] If the HARQ-ACK includes one bit, the sequence cyclic shift includes the first value and / or the second value;
[0953] If the HARQ-ACK includes two bits, the sequence cyclic shift includes at least one of the first value, the second value, the third value, and the fourth value;
[0954] The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK;
[0955] The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR;
[0956] The PUCCH is transmitted in the resource for the HARQ-ACK;
[0957] The PUCCH transmits in the resource for the first UCI.
[0958] Optionally, the apparatus further comprises at least one of the following:
[0959] The first value is a cyclic shift of the first reference sequence;
[0960] The second value is a sum of the first value and the first cyclic shift interval;
[0961] The third value is a sum of the second value and the first cyclic shift interval;
[0962] The fourth value is a sum of the third value and the first cyclic shift interval.
[0963] The processing apparatus provided by the embodiments of the present application and the technical solutions shown in the corresponding method embodiments described above have similar implementation principles and beneficial effects, which will not be repeated here.
[0964] Referring to FIG. 11, FIG. 11 is a structural schematic diagram of a communication device provided by the embodiments of the present application. As shown in FIG. 11, the communication device 160 described in the embodiments of the present application can be the terminal device (or a component applicable to the terminal device) or the network device (or a component applicable to the network device) mentioned in the method embodiments. The communication device 160 can be used to implement the methods described in the method embodiments corresponding to the terminal device or the network device, and specific descriptions can be referred to the descriptions in the method embodiments.
[0965] The communication device 160 can include one or more processors 161, which can also be referred to as processing units, and can implement certain control or processing functions. The processor 161 can be a general-purpose processor or a special-purpose processor, etc. For example, it can be a baseband processor or a central processing unit. The baseband processor can be used to process communication protocols and communication data, and the central processing unit can be used to control the communication device, execute software programs, and process data of the software programs.
[0966] Optionally, the processor 161 can also store instructions 163 or data (such as intermediate data). Optionally, the instructions 163 can be run by the processor 161, so that the communication device 160 performs the methods described in the method embodiments corresponding to the terminal device or the network device.
[0967] Optionally, the communication device 160 can include a circuit, which can implement the functions of sending or receiving or communication in the method embodiments described above.
[0968] Optionally, the communication device 160 can include one or more memories 162, on which instructions 164 can be stored, which can be run on the processor 161, so that the communication device 160 performs the methods described in the above method embodiments.
[0969] Optionally, the memory 162 can also store data. The processor 161 and the memory 162 can be separately arranged or integrated together.
[0970] Optionally, the communication device 160 can further include a transceiver 165 and / or an antenna 166. The processor 161 can be referred to as a processing unit, which controls the communication device 160 (terminal device or core network device or radio access network device). The transceiver 165 can be referred to as a transceiving unit, a transceiver, a transceiving circuit, or a transceiver, etc., which is used to realize the transceiving function of the communication device 160.
[0971] Optionally, if the communication device 160 is used to realize the operation of the terminal device corresponding to each of the above embodiments, for example, the UCI information can be transmitted by the transceiver 165 and / or the processor 161 on the PUCCH.
[0972] Optionally, the specific implementation process of the processor 161 and the transceiver 165 can refer to the related description of each of the above embodiments, which will not be described here.
[0973] Optionally, if the communication device 160 is used to realize the operation of the network device corresponding to each of the above embodiments, for example: the UCI information can be received by the transceiver 165, the UCI information is transmitted by the terminal device on the PUCCH.
[0974] Optionally, the specific implementation process of the processor 161 and the transceiver 165 can refer to the related description of each of the above embodiments, which will not be described here.
[0975] The processor 161 and the transceiver 165 described in the present application can be implemented on an IC (Integrated Circuit), an analog integrated circuit, an RFIC (Radio Frequency Integrated Circuit), a mixed signal integrated circuit, an ASIC (Application Specific Integrated Circuit), a PCB (Printed Circuit Board), an electronic device, and the like. The processor 161 and the transceiver 165 can also be manufactured using various integrated circuit technology, such as CMOS (Complementary Metal Oxide Semiconductor), NMOS (N Metal-Oxide-Semiconductor), PMOS (Positive channel Metal Oxide Semiconductor), BJT (Bipolar Junction Transistor), BiCMOS (Bipolar CMOS), SiGe, GaAs, and the like. In the present application, a communication device can be a terminal device (e.g., a mobile phone) or a network device (e.g., a base station), and the specific device is determined according to the context. In addition, the terminal device can be implemented in various forms. For example, the terminal device described in the present application can include a mobile terminal such as a mobile phone, a tablet computer, a notebook computer, a palmtop computer, a PDA (Personal Digital Assistant), a PMP (Portable Media Player), a navigation device, a wearable device, a smart band, a pedometer, and the like, and a stationary terminal device such as a digital TV, a desktop computer, and the like.
[0976] Although the communication device is described as a terminal device or a network device in the above embodiment description, the scope of the communication device described in the present application is not limited to the terminal device or the network device, and the structure of the communication device can not be limited to FIG. 11. The communication device can be a standalone device or a part of a larger device.
[0977] The embodiments of the present application also provide a communication system including a terminal device according to any one of the above embodiments, and a network device according to any one of the above embodiments.
[0978] The embodiment of the present application further provides a communication device, comprising a memory and a processor, and the memory stores a processing program which is executed by the processor to realize the steps of the processing method in any of the above embodiments.
[0979] The communication device in the present application can be a terminal device (such as a mobile phone) or a network device (such as a base station), and the specific meaning needs to be clarified according to the context.
[0980] The embodiment of the present application further provides a computer readable storage medium, and the computer readable storage medium stores a processing program which is executed by a processor to realize the steps of the processing method in any of the above embodiments.
[0981] In the embodiments of the communication device and the computer readable storage medium provided by the embodiment of the present application, all the technical features of any of the above processing method embodiments can be included, and the description and explanation content is basically the same as that of the above method embodiments, which will not be repeated here.
[0982] The embodiment of the present application further provides a computer program product, and the computer program product comprises computer program code which, when running on a computer, causes the computer to execute the method in various possible embodiments. The embodiment of the present application further provides a chip, comprising a memory and a processor, the memory is used to store a computer program, and the processor is used to call and run the computer program from the memory, so that the device installed with the chip executes the method in various possible embodiments.
[0983] It can be understood that the above scenarios are only as examples and do not constitute a limitation on the application scenarios of the technical solutions provided by the embodiments of the present application. The technical solutions provided by the embodiments of the present application can also be applied to other scenarios. For example, those skilled in the art can know that, as the system architecture evolves and new business scenarios emerge, the technical solutions provided by the embodiments of the present application are also applicable to similar technical problems. The above embodiment numbers of the present application are only for description and do not represent the advantages and disadvantages of the embodiments. The steps in the method of the embodiments of the present application can be adjusted, combined and reduced in sequence according to actual needs. The units in the device of the embodiments of the present application can be combined, divided and reduced according to actual needs. In the present application, for the same or similar term concept, technical solution and / or application scenario description, generally only the first time is described in detail, and for the sake of brevity, the repeated description is generally not repeated, and for the understanding of the technical solutions of the present application, the same or similar term concept, technical solution and / or application scenario description which is not described in detail can be referred to the previous relevant description. In the present application, the description of each embodiment is different, and the part which is not described or recorded in a certain embodiment can be referred to the relevant description of other embodiments. The technical features of the technical solutions of the present application can be combined arbitrarily. In order to make the description simple, the combination of each technical feature in the above embodiments is not described, however, as long as the combination of these technical features does not exist contradictory, it should be considered as the range recorded in the present application.
[0984] Through the above description of the embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be realized by means of software and the necessary general hardware platform, and of course, they can also be realized by hardware, but in many cases, the former is a better embodiment. Based on such understanding, the technical solutions of the present application can be embodied in the form of a software product in essence or in the form of a part of the prior art that makes a contribution. The computer software product is stored in a storage medium (such as a ROM / RAM, a magnetic disk, or an optical disk) as described above, and includes a plurality of instructions for causing a terminal device (which can be a mobile phone, a computer, a server, a controlled terminal device, or a network device) to execute the method of each embodiment of the present application. In the above embodiments, the software, hardware, firmware, or any combination thereof can be used to realize the above-mentioned embodiment methods. When the software is used, the computer program product can be realized in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, the flow or function according to the embodiments of the present application is generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. The computer instructions can be stored in a storage medium or transferred from one storage medium to another storage medium, for example, the computer instructions can be transferred from one website, computer, server, or data center to another website, computer, server, or data center through a wired (such as a coaxial cable, an optical fiber, a digital subscriber line) or a wireless (such as infrared, wireless, microwave, etc.) manner. The storage medium can be any available medium that can be accessed by a computer or a data storage device such as a server, data center, etc. that includes one or more available media sets. The available medium can be a magnetic medium (such as a floppy disk, a storage disk, a magnetic tape), an optical medium (such as a DVD), or a semiconductor medium (such as a solid-state storage disk (SSD)), etc. The above is only the preferred embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent flow transformation using the content of the specification and drawings of the present application, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A processing method, wherein, The application is applied to a terminal device, comprising the steps of: S1: transmitting UCI information on a PUCCH.
2. The method of claim 1, wherein, Further comprising at least one of: The UCI information comprises at least one of a first SR, a second SR, a first UCI, a HARQ-ACK, and a CSI report; The UCI information comprises at least one group of UCI bits.
3. The method of claim 2, wherein, The at least one group of UCI bits comprises at least one of: At least one of the first SR, the first UCI, and the second SR constitutes a first number of bits; The first UCI constitutes a second number of bits, and / or the first SR and / or the second SR constitutes a third number of bits; The first UCI constitutes a fourth number of bits, and / or the first SR and / or the second SR constitutes a third number of bits; The first SR constitutes a fifth number of bits, and / or the second SR constitutes a sixth number of bits; The first SR and the first UCI constitute a seventh number of bits, and / or the second SR constitutes a sixth number of bits; The first SR and the first UCI constitute an eighth number of bits, and / or the second SR constitutes a sixth number of bits.
4. The method of claim 3, wherein, Further comprising at least one of: The first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive reporting request, a positive reporting request notification; The second number of bits indicates a negative reporting request notification and / or a positive reporting request notification; The third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, a positive reporting request; The fourth number of bits indicates whether the first UCI notifies or indicates the network device of reporting of measurement information satisfying a first condition; The fifth number of bits indicates whether the first SR requests resources for reporting measurement information satisfying the first condition; The seventh number of bits indicates at least one of a negative reporting request, a negative reporting request notification, a positive reporting request, a positive reporting request notification; The eighth number of bits indicates whether the first SR requests resources for reporting measurement information satisfying the first condition, and / or indicates whether the first UCI notifies or indicates the network device of reporting of measurement information satisfying the first condition.
5. The method of claim 4, wherein, Further comprising at least one of: If the at least one SR is a positive reporting request, the value of at least one of the first number of bits, the third number of bits, and the seventh number of bits indicates the positive reporting request; If the first UCI is a positive reporting request notification, the value of the first number of bits, the second number of bits, and the seventh number of bits indicates the positive reporting request notification; The positive reporting request corresponds to the first SR; The positive reporting request is used for requesting resources for reporting measurement information satisfying the first condition; The positive reporting request notification corresponds to the first UCI; The positive reporting request notification is used for notifying or indicating the network device of reporting of measurement information satisfying the first condition; The first number of bits corresponds to the fourth number of first UCIs, and the remaining values of the first number of bits correspond to the first SR and / or the second SR; The fourth number of bits one-to-one corresponds to the fourth number of first UCIs; The fifth number of bits one-to-one corresponds to the fifth number of first SRs; The first fourth number of values of the seventh number of bits correspond to the fourth number of first UCIs, and the remaining values of the seventh number of bits correspond to the first SRs; The first fourth number of bits of the eighth number of bits one-to-one correspond to the fourth number of first UCIs; The remaining fifth number of bits of the eighth number of bits one-to-one correspond to the fifth number of first SRs.
6. The method of claim 1, wherein, Further comprising the steps of: S0: selecting or determining a bit arrangement method of UCI information.
7. The method of claim 6, wherein, Step S0 comprises at least one of: adding the first number of bits after the bits of HARQ-ACK; adding the first number of bits before the bits of CSI report; adding the second number of bits and / or the fourth number of bits after the bits of HARQ-ACK; adding at least one of the second number of bits, the third number of bits and the fourth number of bits after the bits of HARQ-ACK based on the first arrangement order; adding at least one of the second number of bits, the third number of bits and the fourth number of bits after the bits of HARQ-ACK based on the second arrangement order; adding the second number of bits or the fourth number of bits before the bits of CSI report; adding at least one of the second number of bits, the third number of bits and the fourth number of bits before the bits of CSI report based on the third arrangement order; adding at least one of the second number of bits, the third number of bits and the fourth number of bits before the bits of CSI report based on the fourth arrangement order; adding the fifth number of bits and / or the sixth number of bits after the bits of HARQ-ACK based on the fifth arrangement order; adding the fifth number of bits and / or the sixth number of bits before the bits of CSI report based on the sixth arrangement order; adding at least one of the sixth number of bits, the seventh number of bits and the eighth number of bits after the bits of HARQ-ACK based on the seventh arrangement order; adding at least one of the sixth number of bits, the seventh number of bits and the eighth number of bits before the bits of CSI report based on the eighth arrangement order.
8. The method of claim 7, wherein, Further comprising at least one of: The first arrangement order is: the bits of HARQ-ACK, the bits of first UCI, the bits of first SR and / or second SR; The second arrangement order is: the bits of HARQ-ACK, the bits of first SR and / or second SR, the bits of first UCI; The third arrangement order is: the bits of first UCI, the bits of first SR and / or second SR, the bits of CSI report; The fourth arrangement order is: the bits of first SR and / or second SR, the bits of first UCI, the bits of CSI report; The fifth arrangement order is: the bits of HARQ-ACK, the bits of first SR, the bits of second SR; The sixth arrangement order is: the bits of first SR, the bits of second SR, the bits of CSI report; The seventh arrangement order is: the bits of HARQ-ACK, the bits of first SR and first UCI, the bits of second SR; The eighth arrangement order is: bits of the first SR and the first UCI, bits of the second SR, bits of the CSI report.
9. The method of claim 1, wherein, Step S1 comprises at least one of the following steps: S11: cancel the PUCCH transmission of the first UCI in the PUCCH transmission of the HARQ-ACK; S12: cancel the PUCCH transmission of the HARQ-ACK in the PUCCH transmission of the first UCI; S13: transmit the first UCI and / or the HARQ-ACK in the PUCCH.
10. The method of claim 9, wherein, Step S13 comprises: selecting or determining the sequence cyclic shift of the first UCI and the HARQ-ACK; determining the cyclic shift according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift and the first formula; determining the sequence according to the cyclic shift; selecting or determining the PUCCH resource; mapping the sequence to the PUCCH resource.
11. The method of claim 10, wherein, The selecting or determining the sequence cyclic shift of the first UCI and the HARQ-ACK comprises at least one of the following: determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the first reference sequence cyclic shift and the first cyclic shift interval; determining the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of the value of the HARQ-ACK and the first UCI, the sequence cyclic shift of the HARQ-ACK and the sequence cyclic shift of the HARQ-ACK and the SR.
12. The method of claim 11, wherein, Further comprising at least one of the following: the PUCCH resource comprises resource elements of the PUCCH transmission; if the HARQ-ACK comprises one bit, the sequence cyclic shift comprises the first value and / or the second value; if the HARQ-ACK comprises two bits, the sequence cyclic shift comprises at least one of the first value, the second value, the third value and the fourth value; the sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK; the sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR; the PUCCH is transmitted in the resource for the HARQ-ACK; the PUCCH is transmitted in the resource for the first UCI.
13. The method of claim 12, wherein, Further comprising at least one of the following: the first value is the first reference sequence cyclic shift; the second value is the sum of the first value and the first cyclic shift interval; the third value is the sum of the second value and the first cyclic shift interval; the fourth value is the sum of the third value and the first cyclic shift interval.
14. A processing method, wherein, Applied to a network device, comprising the step of: S2: receiving UCI information, the UCI information being transmitted by a terminal device in a PUCCH.
15. The method of claim 14, wherein, Further comprising at least one of the following: the UCI information comprises at least one of the first SR, the second SR, the first UCI, the HARQ-ACK and the CSI report; the UCI information comprises at least one group of UCI bits; the terminal device selects or determines the bit arrangement method of the UCI information.
16. The method of claim 15, wherein, The at least one group of UCI bits comprises at least one of the following: at least one of the first SR, the first UCI and the second SR constitutes a first number of bits; The first UCI constitutes a second number of bits, and / or the first SR and / or the second SR constitutes a third number of bits; The first UCI constitutes a fourth number of bits, and / or the first SR and / or the second SR constitutes a third number of bits; The first SR constitutes a fifth number of bits, and / or the second SR constitutes a sixth number of bits; The first SR and the first UCI constitute a seventh number of bits, and / or the second SR constitutes a sixth number of bits; The first SR and the first UCI constitute an eighth number of bits, and / or the second SR constitutes a sixth number of bits.
17. The method of claim 16, wherein, Further comprising at least one of the following: The first number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a positive reporting request, a positive notification reporting request; The second number of bits indicates a negative notification reporting request and / or a positive notification reporting request; The third number of bits indicates at least one of a negative SR, a positive SR, a positive LRR, a negative reporting request, a positive reporting request; The fourth number of bits indicates whether the first UCI notifies or indicates the network device to have the measurement information meeting the first condition for reporting; The fifth number of bits indicates whether the first SR requests resources to report the measurement information meeting the first condition; The seventh number of bits indicates at least one of a negative reporting request, a negative notification reporting request, a positive reporting request, a positive notification reporting request; The eighth number of bits indicates whether the first SR requests resources to report the measurement information meeting the first condition, and / or indicates whether the first UCI notifies or indicates the network device to have the measurement information meeting the first condition for reporting.
18. The method of claim 17, wherein, Further comprising at least one of the following: If the at least one SR is a positive reporting request, the value of at least one of the first number of bits, the third number of bits, and the seventh number of bits indicates the positive reporting request; If the first UCI is a positive notification reporting request, the value of the first number of bits, the second number of bits, and the seventh number of bits indicates the positive notification reporting request; The positive reporting request corresponds to the first SR; The positive reporting request is used to request resources to report the measurement information meeting the first condition; The positive notification reporting request corresponds to the first UCI; The positive notification reporting request is used to notify or indicate the network device to have the measurement information meeting the first condition for reporting; The first number of bits corresponds to the fourth number of first UCIs in the first four values, and the remaining values of the first number of bits correspond to the first SR and / or the second SR; The fourth number of bits one-to-one corresponds to the fourth number of first UCIs; The fifth number of bits one-to-one corresponds to the fifth number of first SRs; The seventh number of bits corresponds to the fourth number of first UCIs in the first four values, and the remaining values of the seventh number of bits correspond to the first SR; The eighth number of bits one-to-one corresponds to the fourth number of first UCIs; The remaining fifth number of bits in the eighth number one-to-one corresponds to the fifth number of first SRs.
19. The method of claim 15, wherein, The terminal device selects or determines the bit arrangement method of the UCI information, including at least one of the following: The terminal device adds the first number of bits to the bits of the HARQ-ACK; The terminal device adds the first number of bits before the bits of the CSI report; The terminal device adds the second number of bits and / or the fourth number of bits after the bits of the HARQ-ACK; The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits after the bits of the HARQ-ACK based on the first arrangement order; The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits after the bits of the HARQ-ACK based on the second arrangement order; The terminal device adds the second number of bits or the fourth number of bits before the bits of the CSI report; The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits before the bits of the CSI report based on the third arrangement order; The terminal device adds at least one of the second number of bits, the third number of bits, and the fourth number of bits before the bits of the CSI report based on the fourth arrangement order; The terminal device adds the fifth number of bits and / or the sixth number of bits after the bits of the HARQ-ACK based on the fifth arrangement order; The terminal device adds the fifth number of bits and / or the sixth number of bits before the bits of the CSI report based on the sixth arrangement order; The terminal device adds at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits after the bits of the HARQ-ACK based on the seventh arrangement order; The terminal device adds at least one of the sixth number of bits, the seventh number of bits, and the eighth number of bits before the bits of the CSI report based on the eighth arrangement order.
20. The method of claim 19, wherein, Further comprising at least one of: The first arrangement order is: the bits of the HARQ-ACK, the bits of the first UCI, the bits of the first SR and / or the second SR; The second arrangement order is: the bits of the HARQ-ACK, the bits of the first SR and / or the second SR, the bits of the first UCI; The third arrangement order is: the bits of the first UCI, the bits of the first SR and / or the second SR, the bits of the CSI report; The fourth arrangement order is: the bits of the first SR and / or the second SR, the bits of the first UCI, the bits of the CSI report; The fifth arrangement order is: the bits of the HARQ-ACK, the bits of the first SR, the bits of the second SR; The sixth arrangement order is: the bits of the first SR, the bits of the second SR, the bits of the CSI report; The seventh arrangement order is: the bits of the HARQ-ACK, the bits of the first SR and the first UCI, the bits of the second SR; The eighth arrangement order is: the bits of the first SR and the first UCI, the bits of the second SR, the bits of the CSI report.
21. The method of claim 14, wherein, The terminal device transmits UCI information on the PUCCH, comprising at least one of: The terminal device transmits HARQ-ACK on the PUCCH, cancels the PUCCH transmission of the first UCI; The terminal device transmits the first UCI on the PUCCH, cancels the PUCCH transmission of the HARQ-ACK; The terminal device transmits the first UCI and / or the HARQ-ACK on a PUCCH.
22. The method of claim 21, wherein, The terminal device transmits the first UCI and / or the HARQ-ACK on a PUCCH, comprising: The terminal device selects or determines a sequence cyclic shift of the first UCI and the HARQ-ACK; The terminal device determines the cyclic shift according to at least one of the sequence cyclic shift, the initial cyclic shift, the second initial cyclic shift and the first formula; The terminal device determines the sequence according to the cyclic shift; The terminal device selects or determines a PUCCH resource; The terminal device maps the sequence to the PUCCH resource.
23. The method of claim 22, wherein, The terminal device selects or determines a sequence cyclic shift of the first UCI and the HARQ-ACK, comprising at least one of: The terminal device determines the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of a value of the HARQ-ACK and the first UCI, a first reference sequence cyclic shift and a first cyclic shift interval; The terminal device determines the sequence cyclic shift of the HARQ-ACK and the first UCI based on at least one of a value of the HARQ-ACK and the first UCI, a sequence cyclic shift of the HARQ-ACK, a sequence cyclic shift of the HARQ-ACK and the SR.
24. The method of claim 23, wherein, Further comprising at least one of: The PUCCH resource comprises resource elements of the PUCCH transmission; If the HARQ-ACK comprises one bit, the sequence cyclic shift comprises a first value and / or a second value; If the HARQ-ACK comprises two bits, the sequence cyclic shift comprises at least one of a first value, a second value, a third value and a fourth value; The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK; The sequence cyclic shift of the HARQ-ACK and the first UCI is the same as the sequence cyclic shift of the HARQ-ACK and the SR; The PUCCH is transmitted in a resource for the HARQ-ACK; The PUCCH is transmitted in a resource for the first UCI.
25. The method of claim 24, wherein, Further comprising at least one of: The first value is a first reference sequence cyclic shift; The second value is a sum of the first value and the first cyclic shift interval; The third value is a sum of the second value and the first cyclic shift interval; The fourth value is a sum of the third value and the first cyclic shift interval.
26. A communication device, comprising: Comprising: A memory, a processor and a processing program stored in the memory and executable on the processor, the processing program being executed by the processor to implement the steps of the processing method of claim 1 or 14.
27. A computer readable storage medium, wherein, A computer program is stored on the computer readable storage medium, and the computer program is executed by the processor to implement the steps of the processing method of claim 1 or 14.
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