Sounding reference signal port mapping method, terminal and readable storage medium

By determining cyclic shifts and comb positions for SRS ports with configurations of size N=2, 4, 6, or 8, the method addresses the lack of support for 6 or 8 ports in the NR protocol, improving uplink transmission performance through enhanced orthogonality.

JP7778943B2Active Publication Date: 2025-12-02VIVO MOBILE COMM CO LTD
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Patent Information

Application Number
JP2024541080
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2022-01-07
Filing Date
2023-01-06
Publication Date
2025-12-02
Estimated Expiration
2043-01-06

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    Figure 0007778943000843
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Abstract

The present application discloses a port mapping method for a sounding reference signal and a terminal, which belong to the technical field of communications. In the port mapping method for a sounding reference signal in an embodiment of the present application, when the number of ports of a first sounding reference signal (SRS) is 6 or 8, the terminal determines a cyclic shift (CS) corresponding to each port of the first SRS and / or a comb position to which each port of the first SRS is mapped, and a size of a comb configuration of the first SRS is N, where N is 2, 4, 6, or 8.
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Description

[Technical Field]

[0001] The present application relates to the technical field of communications, and more particularly to a port mapping method for a sounding reference signal and a terminal. [Background technology]

[0002] In an NR system, a sounding reference signal (SRS) can be used for beam management, codebook-based transmission, non-codebook-based transmission, and antenna switching transmission. A terminal can acquire multiple SRS resource sets through higher layer signaling, and each SRS resource set configuration includes its usage, periodicity characteristics, etc.

[0003] In Release-15 / 16, SRS resources can occupy the last 6 symbols within a slot, and SRS can be transmitted occupying 1 / 2 / 4 symbols via higher layer signaling, and can be arranged to support comb-2 and comb-4 structures in the frequency domain. Release-17 has been enhanced based on Release-15 / 16, allowing the symbol start position of SRS resources within a slot to be located at any symbol within a slot. It also now supports comb-8 structures.

[0004] The conventional NR protocol only supports SRSs with 1, 2, and 4 ports. To further improve uplink transmission performance, it is necessary to introduce an SRS that supports a larger number of ports, for example, 6 or 8 SRS ports. Since different SRS ports must be as orthogonal as possible, the conventional SRS port mapping method cannot be fully applied to scenarios where the SRS port number is 6 or 8. Summary of the Invention [Problem to be solved by the invention]

[0005] The embodiments of the present application provide a port mapping method and terminal for sounding reference signals that can solve the port mapping problem of SRSs with 6 and 8 ports. [Means for solving the problem]

[0006] In the first aspect, When the number of ports of a first sounding reference signal (SRS) is 6 or 8, the terminal may determine a cyclic shift (CS) corresponding to each port of the first SRS and / or a comb position to which each port of the first SRS is mapped; The size of the comb configuration of the first SRS is N, and N is 2, 4, 6, or 8. The port mapping method for the sounding reference signal is provided.

[0007] In a second aspect, When the number of ports of a first sounding reference signal (SRS) is 6 or 8, the terminal is equipped with a first determination unit used to determine a cyclic shift (CS) corresponding to each port of the first SRS and / or a comb position to which each port of the first SRS is mapped; The size of the comb configuration of the first SRS is N, where N is 2, 4, 6 or 8. The port mapping device for the sounding reference signal is provided.

[0008] In a third aspect, there is provided a terminal comprising a processor and a memory for storing programs or commands executable by the processor, the programs or commands being executed by the processor to implement the steps of the method of the first aspect.

[0009] In a fourth aspect, there is provided a terminal including a processor used to determine, when the number of ports of a first sounding reference signal (SRS) is 6 or 8, a cyclic shift (CS) corresponding to each port of the first SRS and / or a comb position to which each port of the first SRS is mapped, and a communication interface, wherein the size of the comb configuration of the first SRS is N, where N is 2, 4, 6, or 8.

[0010] In a fifth aspect, there is provided a readable storage medium storing a program or commands which, when executed by a processor, implements the steps of the method of the first aspect.

[0011] In a sixth aspect, there is provided a chip comprising a processor and a communication interface, the communication interface and the processor being coupled together, the processor executing a program or command to implement the method according to the first aspect.

[0012] In a seventh aspect, there is provided a computer program / program product stored on a storage medium, which, when executed by at least one processor, implements the steps of the sounding reference signal port mapping method described in the first aspect. [Effects of the Invention]

[0013] In the embodiment of the present application, when the number of SRS ports is 6 or 8, a solution for port mapping is provided when the SRS is located in different combs, which can improve the orthogonality of the SRS reference signal transmission on each port and further improve the uplink transmission performance. [Brief explanation of the drawings]

[0014] [Figure 1] 1 is a block diagram of a wireless communication system to which an embodiment of the present application can be applied. [Figure 2]1 is a schematic flow chart of a port mapping method for a sounding reference signal provided in an embodiment of the present application; [Figure 3] FIG. 2 is a schematic diagram of the configuration of a port mapping device for a sounding reference signal provided in an embodiment of the present application; [Figure 4] 1 is a schematic diagram of the configuration of a communication device provided in an embodiment of the present application. [Figure 5] FIG. 2 is a schematic diagram of a hardware configuration of a terminal that realizes an embodiment of the present application. DETAILED DESCRIPTION OF THE INVENTION

[0015] Hereinafter, the technical solutions in the embodiments of the present application will be clearly explained with reference to the drawings in the embodiments of the present application, and it should be understood that the described embodiments are only a part of the embodiments of the present application, not all of the embodiments, and all other embodiments obtained by those skilled in the art based on the embodiments in the present application fall within the scope of protection of the present application.

[0016] The terms "first," "second," etc., used in the specification and claims of this application are not intended to describe a particular order or chronology, but rather to distinguish between similar objects. It should be understood that terms used in this manner may be interchanged where appropriate so that the embodiments of this application can be practiced in orders other than those illustrated or described herein. It should also be understood that objects distinguished by "first" and "second" generally belong to a single category and do not limit the number of objects; for example, a first object may be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of connected objects, and the symbol " / " generally indicates that the related objects before and after are in an "or" relationship.

[0017] It should be noted that the techniques described in the embodiments of this application are not limited to Long Term Evolution (LTE) / LTE-Advanced (LTE-A) systems, but can also be used in other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-Carrier Frequency Division Multiple Access (SC-FDMA), and other systems. The terms "system" and "network" in the embodiments of this application are often used interchangeably, and the techniques described can be used in other systems and wireless technologies in addition to those mentioned above. While the following description will discuss New Radio (NR) systems for illustrative purposes, and NR terminology is used in much of the following description, these technologies may be used in conjunction with other systems and wireless technologies, such as 6th Generation (6G) networks. th It can also be applied to applications other than NR system applications, such as 6G (Generation 6G) communication systems.

[0018] 1 shows a block diagram of a wireless communication system applicable to an embodiment of the present application. The wireless communication system includes a terminal 11 and a network side device 12. Here, the terminal 11 may be a terminal side device such as a mobile phone, a tablet personal computer (PC), a laptop computer (also called a notebook computer), a personal digital assistant (PDA), a personal digital assistant (PDA), a netbook, an ultra-mobile personal computer (UMPC), a mobile internet device (MID), an augmented reality (AR) / virtual reality (VR) device, a robot, a wearable device, a vehicle-mounted equipment (VUE), a pedestrian-mounted equipment (PUE), a smart home (home devices equipped with wireless communication functions such as a refrigerator, a television, a washing machine, or furniture), a game console, a personal computer (PC), an automated teller machine (ATM), or a kiosk. The wearable device includes a smart watch, a smart wristband, a smart earphone, a smart glasses, a smart accessory (such as a smart bracelet, a smart ring, a smart necklace, a smart anklet, or the like), a smart wristlet, a smart wear, etc. It should be noted that the embodiments of the present application are not limited to a specific type of the terminal 11. The network side equipment 12 may include an access network equipment or a core network equipment, where the access network equipment may be referred to as a radio access network equipment, a radio access network (RAN), a radio access network function, or a radio access network unit.The access network equipment 12 may include a base station, a WLAN access point, a WiFi node, etc., and the base station may be called a Node B, an evolved Node B (eNB), an access point, a base transceiver station (BTS), a radio base station, a radio transceiver, a basic service set (BSS), an extended service set (ESS), a home B node, a home evolved B node, a transmitting receiving point (TRP), or any other appropriate term in the art. As long as the same technical effect can be achieved, the base station is not limited to a specific technical term. It should be noted that although the embodiments of this application only take a base station in an NR system as an example, the specific type of the base station is not limited. The network side equipment 12 may include access network equipment or core network equipment, and here, the access network equipment 12 may be called a radio access network equipment, a radio access network (RAN), a radio access network function, or a radio access network unit. The access network equipment 12 may include a base station, a WLAN access point, a WiFi node, or the like. The base station may be referred to as a Node B, an evolved Node B (eNB), an access point, a base transceiver station (BTS), a radio base station, a radio transceiver, a basic service set (BSS), an extended service set (ESS), a home B node, a home evolved B node, a transmitting receiving point (TRP), or any other appropriate term in the field. As long as the same technical effect can be achieved, the base station is not limited to a specific technical term. In the embodiments of the present application, only a base station in an NR system is introduced as an example, but it should be noted that the specific type of base station is not limited.Core network devices include core network nodes, core network functions, mobility management entities (MMEs), access and mobility management functions (AMFs), session management functions (SMFs), user plane functions (UPFs), policy control functions (PCFs), policy and charging rules functions (PCRFs), edge application server discovery functions (EASDFs), unified data management (UDMs), unified data repository (UDRs), home subscriber servers (HSSs), centralized network configuration (CNCs), network repository functions (NRFs), network exposure functions (NEFs), local NEFs (Local NEFs or L-NEFs), binding support functions (BSFs), and application functions (Application Node Functions). The present application may include, but is not limited to, at least one of the following: a core network device in an NR system; a mobile station; a mobile terminal; a mobile terminal function; a mobile terminal access ...

[0019] Next, with reference to the drawings, a port mapping method for a sounding reference signal provided in the embodiments of the present application will be described in detail according to several embodiments and use cases thereof.

[0020] FIG. 2 is a schematic flow chart of a port mapping method for a sounding reference signal provided in an embodiment of the present application. As shown in FIG. 2, the method includes: When the number of ports of a first sounding reference signal (SRS) is 6 or 8, the terminal may determine a cyclic shift (CS) corresponding to each port of the first SRS and / or a comb position to which each port of the first SRS is mapped in step 200; The size of the comb configuration of the first SRS is N, where N is 2, 4, 6, or 8.

[0021] It should be mentioned that the comb position may be understood as the subcarrier position to which the SRS is mapped in the frequency domain.

[0022] In the embodiment of the present application, when the number of ports of the SRS is 6 or 8, a solution for port mapping is provided when the SRS is located in different combs, thereby improving the orthogonality of the transmission of the SRS reference signal on each port.

[0023] Optionally, the CS corresponding to each port of the first SRS is determined by at least one of a cyclic shift offset, a maximum cyclic shift offset, a first parameter, a comb configuration size, a port number, and a port number; and / or The comb position to which each port of the first SRS is mapped is determined by at least one of a comb offset, a size of the comb configuration, a cyclic shift offset, a maximum cyclic shift offset, a first parameter, and a port number.

[0024] Here, the first parameter is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal.

[0025] In the embodiment of the present application, a method is provided for determining the CS corresponding to each port of the SRS and the comb position to which each port is mapped, which can improve the orthogonality of the transmission of the SRS reference signal on each port and further improve the performance of uplink transmission.

[0026] Optionally, when the number of ports is 8 and the size of the comb configuration is 2, the CS mapping method 1 is as follows: different ports of the first SRS correspond to different CS, i.e., 8 ports adopt different CS; Here, CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000001.jpg1053 where: JPEG0007778943000002.jpg46 is the CS corresponding to port i, JPEG0007778943000003.jpg46 is the cyclic shift offset, JPEG0007778943000004.jpg48 is the maximum cyclic shift offset, JPEG0007778943000005.jpg33 is the port number, JPEG0007778943000006.jpg57 is the port number. where: The file is JPEG0007778943000007.jpg517.

[0027] It should be noted that JPEG0007778943000008.jpg531 is the cyclic shift offset configured by the network device via RRC signaling. This is the maximum cyclic shift offset. JPEG0007778943000009.jpg48 JPEG0007778943000010.jpg414if JPEG0007778943000011.jpg412, JPEG0007778943000012.jpg415if JPEG0007778943000013.jpg411, JPEG0007778943000014.jpg414if The file is JPEG0007778943000015.jpg411. JPEG0007778943000016.jpg35 is the size of the comb configuration.

[0028] When this CS mapping method 1 is used, the specific CS values ​​corresponding to each port are shown in Table 1.

[0029] The specific CS value corresponding to each port [Table 1]

[0030] In this application, the initial CS in each table is the cyclic shift offset It is necessary to explain that it is JPEG0007778943000018.jpg46.

[0031] Optionally, when the number of ports is 8 and the size of the comb configuration is 2, and the above CS mapping method 1 is used, the corresponding comb position mapping method 1 is as follows: Each port of the first SRS is mapped to the same comb position, and the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000019.jpg513 where: JPEG0007778943000020.jpg56 is the comb position to which port i is mapped, JPEG0007778943000021.jpg55 is the comb offset.

[0032] In each embodiment of the present application, comb offset JPEG0007778943000022.jpg526 is placed by the network side device via RRC signaling, JPEG0007778943000023.jpg45 is the size of the comb configuration, for example, in the case of comb-4, It needs to be explained that the image is JPEG0007778943000024.jpg49.

[0033] Optionally, when the number of ports is 8 and the size of the comb configuration is 2, and the above CS mapping method 1 is used, the corresponding comb position mapping method 2 is as follows: The eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions.

[0034] That is, port {1001, 1003, 1005, 1007} ​​is one group and is mapped to the same first comb position, and port {1000, 1002, 1004, 1006} is one group and is mapped to the same second comb position, where the first comb position and the second comb position are different.

[0035] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000025.jpg1076 Or, JPEG0007778943000026.jpg1076 where: JPEG0007778943000027.jpg56 is the comb position to which port i is mapped, JPEG0007778943000028.jpg55 is the comb offset, JPEG0007778943000029.jpg35 is the size of the comb configuration.

[0036] Optionally, when the number of ports is 8 and the size of the comb configuration is 2, and the above CS mapping method 1 is used, the corresponding comb position mapping method 3 is as follows: The comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and for a specific cyclic shift offset, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions.

[0037] That is, the FDM multiplexing method between each port is cyclic shift offset Ports are grouped and for a particular cyclic shift offset, ports in different groups are mapped to different comb positions.

[0038] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000031.jpg10116 Or, JPEG0007778943000032.jpg10116 where: JPEG0007778943000033.jpg56 is the comb position to which port i is mapped, JPEG0007778943000034.jpg55 is the comb offset, JPEG0007778943000035.jpg35 is the size of the comb configuration.

[0039] Optionally, when the number of ports is 8 and the size of the comb configuration is 2, the CS mapping method 2 used is as follows: Ports are grouped, and ports in different groups correspond to different CSs, while ports within the same group adopt the same CS.

[0040] Optionally, the 8 ports of the first SRS are divided into 4 groups, and ports in the same group adopt the same CS, while ports in different groups adopt different CS.

[0041] That is, port{1000,1001} is one group and adopts the same CS, port{1002,1003} is one group and adopts the same CS, port{1004,1005} is one group and adopts the same CS, and port{1006,1007} ​​is one group and adopts the same CS.

[0042] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000036.jpg1061 where: JPEG0007778943000037.jpg46 is the CS corresponding to port i, JPEG0007778943000038.jpg46 is the cyclic shift offset, JPEG0007778943000039.jpg48 is the maximum cyclic shift offset, JPEG0007778943000040.jpg33 is the port number, JPEG0007778943000041.jpg57 is the port number, JPEG0007778943000042.jpg22 is the first parameter, JPEG0007778943000043.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, JPEG0007778943000044.jpg48.

[0043] When using this mapping method 2, the specific CS values ​​corresponding to each port are shown in Table 2.

[0044] The specific CS value corresponding to each port [Table 2]

[0045] Optionally, when the number of ports is 8 and the size of the comb configuration is 2, and CS mapping method 2 is used, the corresponding comb position mapping method 4 is as follows: Ports are grouped and ports in different groups are mapped to different comb locations.

[0046] Optionally, the 8 ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions.

[0047] That is, port {1001, 1003, 1005, 1007} ​​is mapped to the same first comb position, and port {1000, 1002, 1004, 1006} is mapped to the same second comb position, where the first comb position and the second comb position are different.

[0048] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000046.jpg1076 Or, JPEG0007778943000047.jpg1076 where: JPEG0007778943000048.jpg56 is the comb position to which port i is mapped, JPEG0007778943000049.jpg55 is the comb offset, JPEG0007778943000050.jpg35 is the size of the comb configuration.

[0049] In the embodiment of the present application, a CS mapping method and a comb position mapping method are provided when the number of SRS ports is 8 and the comb configuration size is 2, which can be used to improve the orthogonality of the transmission of SRS reference signals on each port, and further improve the uplink transmission performance.

[0050] Optionally, when the number of ports is 8 and the size of the comb configuration is 4, the CS mapping method 3 is as follows: Ports are grouped, and ports in different groups correspond to different CSs, while ports within the same group adopt the same CS.

[0051] Optionally, the eight ports of the first SRS are divided into four groups, and ports in the same group adopt the same CS, while ports in different groups adopt different CS, i.e., port {1000, 1001} adopt the same CS, port {1002, 1003} adopt the same CS, port {1004, 1005} adopt the same CS, and port {1006, 1007} ​​adopt the same CS.

[0052] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000051.jpg1061 where: JPEG0007778943000052.jpg46 is the CS corresponding to port i, JPEG0007778943000053.jpg46 is the cyclic shift offset, JPEG0007778943000054.jpg48 is the maximum cyclic shift offset, JPEG0007778943000055.jpg33 is the port number, JPEG0007778943000056.jpg57 is the port number, JPEG0007778943000057.jpg22 is the first parameter, JPEG0007778943000058.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, JPEG0007778943000059.jpg48.

[0053] When the above CS mapping method 3 is used, the specific CS values ​​corresponding to each port are shown in Table 3.

[0054] The specific CS value corresponding to each port [Table 3]

[0055] Optionally, when the number of ports is 8 and the size of the comb configuration is 4, and CS mapping method 3 is used, the corresponding comb position mapping method 5 is as follows: The eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions, i.e., port {1001, 1003, 1005, 1007} ​​are mapped to the same first comb position, and port {1000, 1002, 1004, 1006} are mapped to the same second comb position, where the first comb position and the second comb position are different.

[0056] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000061.jpg1076 Or, JPEG0007778943000062.jpg1076 where: JPEG0007778943000063.jpg56 is the comb position to which port i is mapped, JPEG0007778943000064.jpg55 is the comb offset, JPEG0007778943000065.jpg35 is the size of the comb configuration.

[0057] Optionally, when the number of ports is 8 and the size of the comb configuration is 4, and CS mapping method 3 is used, the corresponding comb position mapping method 6 is as follows: The comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and ports are grouped such that for a particular cyclic shift offset, ports in different groups are mapped to different comb positions.

[0058] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000066.jpg28115 Or, JPEG0007778943000067.jpg17115 Or, JPEG0007778943000068.jpg17115 Or, JPEG0007778943000069.jpg27111 Or, JPEG0007778943000070.jpg27115 where: JPEG0007778943000071.jpg56 is the comb position to which port i is mapped, JPEG0007778943000072.jpg55 is the comb offset, JPEG0007778943000073.jpg35 is the size of the comb configuration.

[0059] Optionally, when the number of ports is 8 and the comb configuration size is 4, the CS mapping method 4 used is as follows: ports are grouped, ports in different groups correspond to different CSs, and ports in the same group adopt the same CS; the 8 ports of the first SRS are divided into two groups, ports in the same group adopt the same CS, and ports in different groups adopt different CSs.

[0060] That is, port {1000, 1001, 1002, 1003} adopts the same CS, and port {1004, 1005, 1006, 1007} ​​adopts the same CS.

[0061] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000074.jpg1061 Or, JPEG0007778943000075.jpg1068 where: JPEG0007778943000076.jpg46 is the CS corresponding to port i, JPEG0007778943000077.jpg46 is the cyclic shift offset, JPEG0007778943000078.jpg48 is the maximum cyclic shift offset, JPEG0007778943000079.jpg33 is the port number, JPEG0007778943000080.jpg57 is the port number, JPEG0007778943000081.jpg22 is the first parameter, JPEG0007778943000082.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, JPEG0007778943000083.jpg47, JPEG0007778943000084.jpg35 is the size of the comb configuration.

[0062] When CS mapping method 4 is used, the specific CS values ​​corresponding to each port are shown in Table 4.

[0063] The specific CS value corresponding to each port [Table 4]

[0064] Optionally, when the number of ports is 8, the size of the comb configuration is 4, and CS mapping method 4 is used, the corresponding comb position mapping method 7 is as follows: The eight ports of the first SRS are divided into four groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions, i.e., port{1000, 1004} are mapped to the same first comb position, port{1001, 1005} are mapped to the same second comb position, port{1002, 1006} are mapped to the same third comb position, and port{1003, 1007} ​​are mapped to the same fourth comb position, where the first comb position, second comb position, third comb position, and fourth comb position are different.

[0065] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000086.jpg2256 Or, JPEG0007778943000087.jpg552 Or, JPEG0007778943000088.jpg549 Or, JPEG0007778943000089.jpg549 where: JPEG0007778943000090.jpg56 is the comb position to which port i is mapped, JPEG0007778943000091.jpg55 is the comb offset, JPEG0007778943000092.jpg22 is the first parameter, JPEG0007778943000093.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000094.jpg47.

[0066] In the embodiment of the present application, a CS mapping method and a comb position mapping method are provided when the number of SRS ports is 8 and the comb configuration size is 4, which can be used to improve the orthogonality of the transmission of SRS reference signals on each port, and further improve the uplink transmission performance.

[0067] Optionally, when the number of ports is 8 and the size of the comb configuration is 8, the CS mapping method 5 used is as follows: The eight ports of the first SRS are divided into two groups, and ports in the same group adopt the same CS, while ports in different groups adopt different CS, i.e., port {1000, 1001, 1002, 1003} adopt the same CS, and port {1004, 1005, 1006, 1007} ​​adopt the same CS.

[0068] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000095.jpg1061 where: JPEG0007778943000096.jpg46 is the CS corresponding to port i, JPEG0007778943000097.jpg46 is the cyclic shift offset, JPEG0007778943000098.jpg48 is the maximum cyclic shift offset, JPEG0007778943000099.jpg33 is the port number, JPEG0007778943000100.jpg57 is the port number, JPEG0007778943000101.jpg22 is the first parameter, JPEG0007778943000102.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000103.jpg47.

[0069] When CS mapping method 5 is used, the specific CS values ​​corresponding to each port are shown in Table 5.

[0070] The specific CS value corresponding to each port [Table 5]

[0071] Optionally, when the number of ports is 8 and the size of the comb configuration is 8, and CS mapping method 5 is used, the corresponding comb position mapping method 8 is as follows: The eight ports of the first SRS are divided into four groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions, i.e., port{1000, 1004} are mapped to the same first comb position, port{1001, 1005} are mapped to the same second comb position, port{1002, 1006} are mapped to the same third comb position, and port{1003, 1007} ​​are mapped to the same fourth comb position, where the first comb position, second comb position, third comb position, and fourth comb position are different.

[0072] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000105.jpg2256 Or, JPEG0007778943000106.jpg552 Or, JPEG0007778943000107.jpg557 where: JPEG0007778943000108.jpg56 is the comb position to which port i is mapped, JPEG0007778943000109.jpg55 is the comb offset, JPEG0007778943000110.jpg35 is the size of the comb configuration, JPEG0007778943000111.jpg22 is the first parameter, JPEG0007778943000112.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000113.jpg47.

[0073] Optionally, when the number of ports is 8 and the size of the comb configuration is 8, the CS mapping method 6 used is as follows: The eight ports of the first SRS all adopt the same CS, and the CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000114.jpg1061 Or, JPEG0007778943000115.jpg413 where: JPEG0007778943000116.jpg46 is the CS corresponding to port i, JPEG0007778943000117.jpg46 is the cyclic shift offset, JPEG0007778943000118.jpg48 is the maximum cyclic shift offset, JPEG0007778943000119.jpg33 is the port number, JPEG0007778943000120.jpg57 is the port number, JPEG0007778943000121.jpg22 is the first parameter, JPEG0007778943000122.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000123.jpg47.

[0074] When CS mapping method 6 is used, the specific CS values ​​corresponding to each port are shown in Table 6.

[0075] The specific CS value corresponding to each port [Table 6]

[0076] Optionally, when the number of ports is 8 and the size of the comb configuration is 8, and CS mapping method 6 is used, the corresponding comb position mapping method 9 is as follows: Different ports of the first SRS are mapped to different comb locations.

[0077] It should be noted that mapping different ports of the first SRS to different comb positions may also be understood as grouping the ports, each port being one group, and ports in different groups being mapped to different comb positions, i.e., different ports being mapped to different comb positions.

[0078] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000125.jpg4550 Or, JPEG0007778943000126.jpg539 Or, JPEG0007778943000127.jpg557 where: JPEG0007778943000128.jpg56 is the comb position to which port i is mapped, JPEG0007778943000129.jpg55 is the comb offset, JPEG0007778943000130.jpg35 is the size of the comb configuration.

[0079] In the embodiments of the present application, a CS mapping method and a comb position mapping method are provided when the number of SRS ports is 8 and the comb configuration size is 8, which can be used to improve the orthogonality of the transmission of SRS reference signals on each port, and further improve the uplink transmission performance.

[0080] Alternatively, when the number of ports is 6 and the size of the comb configuration is 2, the CS mapping method 7 used is as follows: Different ports of the first SRS adopt different CSs, and different ports correspond to different CS truncations.

[0081] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000131.jpg1054 where: JPEG0007778943000132.jpg46 is the CS corresponding to port i, JPEG0007778943000133.jpg46 is the cyclic shift offset, JPEG0007778943000134.jpg48 is the maximum cyclic shift offset, JPEG0007778943000135.jpg33 is the port number, JPEG0007778943000136.jpg57 is the port number.

[0082] When this CS mapping method 7 is used, the specific CS values ​​corresponding to each port are shown in Table 7.

[0083] The specific CS value corresponding to each port [Table 7]

[0084] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, and the CS mapping method 7 is used, the corresponding comb position mapping method 10 is as follows: The six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions.

[0085] In one embodiment, port {1000, 1002, 1003, 1005} is a group that is mapped to the same first comb position, and port {1001, 1004} is a group that is mapped to the same second comb position, where the first comb position and the second comb position are different.

[0086] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000138.jpg1076 In this case, it is permitted for the port of the second SRS to be mapped to the same comb position as the port {1001, 1004} of the first SRS.

[0087] It should be noted that the second SRS is a two-port SRS, or the second SRS is an N-port SRS, where N>2, and two of the ports are mapped to the same comb positions as ports {1001, 1004} of the first SRS.

[0088] In addition, the cyclic shift offset corresponding to the second SRS is the maximum cyclic shift offset corresponding to the first SRS obtained by adding 3 to the cyclic shift offset corresponding to the first SRS. This is the value obtained by performing remainder calculation on JPEG0007778943000139.jpg48.

[0089] Alternatively, the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000140.jpg1062 In this case, the ports of the second SRS are allowed to be mapped to the same comb position as the ports {1001, 1004} of the first SRS, and the second SRS is a two-port SRS, or the second SRS is an N-port SRS, where N>2, and two of the ports are mapped to the same comb position as the ports {1001, 1004} of the first SRS.

[0090] Also, the cyclic shift offset corresponding to the second SRS is a value obtained by adding 3 to the cyclic shift offset corresponding to the first SRS and then performing remainder calculation on the maximum cyclic shift offset corresponding to the first SRS.

[0091] In another embodiment, port {1000, 1002, 1004} is grouped and mapped to the same first comb position, and port {1001, 1003, 1005} is grouped and mapped to the same second comb position. Here, the first comb position and the second comb position are different. The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000141.jpg1069 Or, JPEG0007778943000142.jpg1069 where: JPEG0007778943000143.jpg56 is the comb position to which port i is mapped, JPEG0007778943000144.jpg55 is the comb offset, JPEG0007778943000145.jpg35 is the size of the comb configuration.

[0092] Alternatively, when the number of ports is 6 and the size of the comb configuration is 2, the CS mapping method 8 used is as follows: Different ports of the first SRS adopt different CSs, and different ports correspond to different CS rounding up.

[0093] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000146.jpg1054 where: JPEG0007778943000147.jpg46 is the CS corresponding to port i, JPEG0007778943000148.jpg46 is the cyclic shift offset, JPEG0007778943000149.jpg48 is the maximum cyclic shift offset, JPEG0007778943000150.jpg33 is the port number, JPEG0007778943000151.jpg57 is the port number.

[0094] When this CS mapping method 8 is used, the specific CS values ​​corresponding to each port are shown in Table 8.

[0095] The specific CS value corresponding to each port [Table 8]

[0096] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, and the CS mapping method 8 is used, the corresponding comb position mapping method 11 is as follows: The six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions, and the number of ports in each group may be different.

[0097] In one embodiment, port {1000, 1001, 1003, 1004} is a group that is mapped to the same first comb position, and port {1002, 1005} is a group that is mapped to the same second comb position, where the first comb position and the second comb position are different.

[0098] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000153.jpg1076 In this case, it is permitted for the port of the third SRS to be mapped to the same comb position as the port {1002, 1005} of the first SRS.

[0099] It should be noted that the third SRS is a two-port SRS, or the third SRS is an N-port SRS, where N>2, and two of the ports are mapped to the same comb positions as ports {1002, 1005} of the first SRS.

[0100] Also, the cyclic shift offset corresponding to the third SRS is a value obtained by adding 1 to the cyclic shift offset corresponding to the first SRS and then performing remainder calculation on the maximum cyclic shift offset corresponding to the first SRS.

[0101] Alternatively, the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000154.jpg1062 In this case, it is permitted for the port of the third SRS to be mapped to the same comb position as the port {1002, 1005} of the first SRS.

[0102] It should be noted that the third SRS is a two-port SRS, or the third SRS is an N-port SRS, where N>2, and two of the ports are mapped to the same comb positions as ports {1002, 1005} of the first SRS.

[0103] Also, the cyclic shift offset corresponding to the third SRS is a value obtained by adding 1 to the cyclic shift offset corresponding to the first SRS and then performing remainder calculation on the maximum cyclic shift offset corresponding to the first SRS.

[0104] In another embodiment, port {1000, 1002, 1004} is a group that is mapped to the same first comb position, and port {1001, 1003, 1005} is a group that is mapped to the same second comb position, where the first comb position and the second comb position are different.

[0105] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000155.jpg1069 Or, JPEG0007778943000156.jpg1069 where: JPEG0007778943000157.jpg56 is the comb position to which port i is mapped, JPEG0007778943000158.jpg55 is the comb offset, JPEG0007778943000159.jpg35 is the size of the comb configuration.

[0106] Alternatively, when the number of ports is 6 and the size of the comb configuration is 2, the CS mapping method 9 used is as follows: Different ports of the first SRS adopt different CSs, some ports are rounded up and some ports are rounded down.

[0107] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000160.jpg3279 where: JPEG0007778943000161.jpg46 is the CS corresponding to port i, JPEG0007778943000162.jpg46 is the cyclic shift offset, JPEG0007778943000163.jpg48 is the maximum cyclic shift offset, JPEG0007778943000164.jpg33 is the port number, JPEG0007778943000165.jpg57 is the port number.

[0108] When this CS mapping method 9 is used, the specific CS values ​​corresponding to each port are shown in Table 9.

[0109] The specific CS value corresponding to each port [Table 9]

[0110] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, and the CS mapping method 9 is used, the corresponding comb position mapping method 12 is as follows: The six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions, and the number of ports in each group may be different.

[0111] In one embodiment, port {1001, 1002, 1004, 1005} is a group that is mapped to the same first comb position, and port {1000, 1003} is a group that is mapped to the same second comb position, where the first comb position and the second comb position are different.

[0112] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000167.jpg1075 In this case, the ports of the fourth SRS are allowed to be mapped to the same comb location as the ports {1000, 1003} of the first SRS.

[0113] It should be noted that the fourth SRS is a two-port SRS, or the fourth SRS is an N-port SRS, where N>2, and two of the ports are mapped to the same comb positions as ports {1000, 1003} of the first SRS.

[0114] Also, the cyclic shift offset corresponding to the fourth SRS is a value obtained by adding 2 to the cyclic shift offset corresponding to the first SRS and then performing remainder calculation on the maximum cyclic shift offset corresponding to the first SRS.

[0115] Alternatively, the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000168.jpg1062 In this case, it is permitted for the port of the fourth SRS to be mapped to the same comb position as the port {1000, 1003} of the first SRS.

[0116] It should be noted that the fourth SRS is a two-port SRS, or the fourth SRS is an N-port SRS, where N>2, and two of the ports are mapped to the same comb positions as ports {1000, 1003} of the first SRS.

[0117] Also, the cyclic shift offset corresponding to the fourth SRS is a value obtained by adding 2 to the cyclic shift offset corresponding to the first SRS and then performing remainder calculation on the maximum cyclic shift offset corresponding to the first SRS.

[0118] In another embodiment, port {1000, 1002, 1004} is a group that is mapped to the same first comb position, and port {1001, 1003, 1005} is a group that is mapped to the same second comb position, where the first comb position and the second comb position are different.

[0119] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000169.jpg1069 Or, JPEG0007778943000170.jpg1069 where: JPEG0007778943000171.jpg56 is the comb position to which port i is mapped, JPEG0007778943000172.jpg55 is the comb offset, JPEG0007778943000173.jpg35 is the size of the comb configuration.

[0120] Alternatively, when the number of ports is 6 and the size of the comb configuration is 2, the CS mapping method used is as follows: Different ports of the first SRS adopt different CSs, some ports are rounded up and some ports are rounded down.

[0121] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000174.jpg3286 where: JPEG0007778943000175.jpg46 is the CS corresponding to port i, JPEG0007778943000176.jpg46 is the cyclic shift offset, JPEG0007778943000177.jpg48 is the maximum cyclic shift offset, JPEG0007778943000178.jpg33 is the port number, JPEG0007778943000179.jpg57 is the port number.

[0122] The specific CS values ​​corresponding to each port when using this CS mapping method 10 are shown in Table 10.

[0123] The specific CS value corresponding to each port [Table 10]

[0124] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, and the CS mapping method 10 is used, the corresponding comb position mapping method 13 is as follows: The six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions, with the number of ports in each group being the same.

[0125] That is, port {1000, 1002, 1004} is one group and is mapped to the same first comb position, and port {1001, 1003, 1005} is one group and is mapped to the same second comb position, where the first comb position and the second comb position are different.

[0126] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000181.jpg1069 Or, JPEG0007778943000182.jpg1069 where: JPEG0007778943000183.jpg56 is the comb position to which port i is mapped, JPEG0007778943000184.jpg55 is the comb offset, JPEG0007778943000185.jpg35 is the size of the comb configuration.

[0127] In the embodiment of the present application, a CS mapping method and a comb position mapping method are provided when the number of SRS ports is 6 and the comb configuration size is 2, which can be used to improve the orthogonality of the transmission of SRS reference signals on each port, and further improve the uplink transmission performance.

[0128] Alternatively, when the number of ports is 6 and the size of the comb configuration is 4, the CS mapping method 11 used is as follows: Different ports of the first SRS adopt different CS, that is, 6port adopts different CS.

[0129] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000186.jpg1053 where: JPEG0007778943000187.jpg46 is the CS corresponding to port i, JPEG0007778943000188.jpg46 is the cyclic shift offset, JPEG0007778943000189.jpg48 is the maximum cyclic shift offset, JPEG0007778943000190.jpg33 is the port number, JPEG0007778943000191.jpg57 is the port number.

[0130] When this CS mapping method 11 is used, the specific CS values ​​corresponding to each port are shown in Table 11.

[0131] The specific CS value corresponding to each port [Table 11]

[0132] Optionally, when the number of ports is 6 and the size of the comb configuration is 4, and the above CS mapping method 11 is used, the corresponding comb position mapping method 14 is as follows: The comb position to which each port of the first SRS is mapped is related to the cyclic shift offset. For a specific cyclic shift offset, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions. The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000193.jpg10109 Or, JPEG0007778943000194.jpg10110 where: JPEG0007778943000195.jpg56 is the comb position to which port i is mapped, JPEG0007778943000196.jpg55 is the comb offset, JPEG0007778943000197.jpg35 is the size of the comb configuration.

[0133] In the embodiment of the present application, a CS mapping method and a comb position mapping method are provided when the number of SRS ports is 6 and the comb configuration size is 4, which can be used to improve the orthogonality of the transmission of SRS reference signals on each port, and further improve the uplink transmission performance.

[0134] Alternatively, when the number of ports is 6 and the size of the comb configuration is 6, the CS mapping method 12 used is as follows: The six ports of the first SRS are divided into two groups, and ports in the same group use the same CS, while ports in different groups use different CS. That is, ports {1000, 1001, 1002} are in one group and use the same CS, and ports {1003, 1004, 1005} are in another group and use the same CS.

[0135] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000198.jpg1061 where: JPEG0007778943000199.jpg46 is the CS corresponding to port i, JPEG0007778943000200.jpg46 is the cyclic shift offset, JPEG0007778943000201.jpg48 is the maximum cyclic shift offset, JPEG0007778943000202.jpg33 is the port number, JPEG0007778943000203.jpg57 is the port number, JPEG0007778943000204.jpg22 is the first parameter, JPEG0007778943000205.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000206.jpg37.

[0136] When this CS mapping method 12 is used, the specific CS values ​​corresponding to each port are shown in Table 12.

[0137] The specific CS value corresponding to each port [Table 12]

[0138] Optionally, when the number of ports is 6 and the size of the comb configuration is 6, and the above CS mapping method 12 is used, the corresponding comb position mapping method 15 is as follows: The six ports of the first SRS are divided into three groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions, i.e., port{1000, 1003} are mapped to the same first comb position, port{1000, 1004} are mapped to the same second comb position, and port{1002, 1005} are mapped to the same third comb position, where the first, second, and third comb positions are different.

[0139] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000208.jpg1758 Or, JPEG0007778943000209.jpg1758 where: JPEG0007778943000210.jpg56 is the comb position to which port i is mapped, JPEG0007778943000211.jpg55 is the comb offset, JPEG0007778943000212.jpg35 is the size of the comb configuration, JPEG0007778943000213.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000214.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000215.jpg33 is a value specified by default by the network side device and the terminal, and / or a value indicated by the network side device, and / or a value notified by the terminal.

[0140] Selectable, JPEG0007778943000216.jpg47, JPEG0007778943000217.jpg48.

[0141] Selectable, JPEG0007778943000218.jpg47, JPEG0007778943000219.jpg48, JPEG0007778943000220.jpg48.

[0142] In the embodiment of the present application, a CS mapping method and a comb position mapping method are provided when the number of SRS ports is 6 and the comb configuration size is 6, which can be used to improve the orthogonality of the transmission of SRS reference signals on each port, and further improve the uplink transmission performance.

[0143] Alternatively, when the number of ports is 6 and the size of the comb configuration is 8, the CS mapping method 13 used is as follows: Different ports of the first SRS adopt different CS, that is, 6port adopts different CS.

[0144] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000221.jpg1053 where: JPEG0007778943000222.jpg46 is the CS corresponding to port i, JPEG0007778943000223.jpg46 is the cyclic shift offset, JPEG0007778943000224.jpg48 is the maximum cyclic shift offset, JPEG0007778943000225.jpg33 is the port number, JPEG0007778943000226.jpg57 is the port number.

[0145] When this CS mapping method 13 is used, the specific CS values ​​corresponding to each port are shown in Table 13.

[0146] The specific CS value corresponding to each port [Table 13]

[0147] Optionally, when the number of ports is 6 and the size of the comb configuration is 8, and the above CS mapping method 13 is used, the corresponding comb position mapping method 16 is as follows: The comb position to which each port of the first SRS is mapped is related to the cyclic shift offset. For a specific cyclic shift offset, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions. The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000228.jpg10109 Or, JPEG0007778943000229.jpg10110 where: JPEG0007778943000230.jpg56 is the comb position to which port i is mapped, JPEG0007778943000231.jpg55 is the comb offset, JPEG0007778943000232.jpg35 is the size of the comb configuration.

[0148] Alternatively, when the number of ports is 6 and the size of the comb configuration is 8, the CS mapping method 14 used is as follows: The six ports of the first SRS are divided into three groups, and ports in the same group use the same CS, while ports in different groups use different CS. That is, ports {1000, 1001} are in one group and use the same CS, ports {1002, 1003} are in another group and use the same CS, and ports {1004, 1005} are in one group and use the same CS.

[0149] The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000233.jpg1061 where: JPEG0007778943000234.jpg46 is the CS corresponding to port i, JPEG0007778943000235.jpg46 is the cyclic shift offset, JPEG0007778943000236.jpg48 is the maximum cyclic shift offset, JPEG0007778943000237.jpg33 is the port number, JPEG0007778943000238.jpg57 is the port number, JPEG0007778943000239.jpg22 is the first parameter, JPEG0007778943000240.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000241.jpg47.

[0150] The specific CS values ​​corresponding to each port when using this CS mapping method 14 are shown in Table 14.

[0151] The specific CS value corresponding to each port [Table 14]

[0152] When the number of ports is 6 and the size of the comb configuration is 8, and the CS mapping method 14 is used, the corresponding comb position mapping method 17 is as follows: Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions, i.e., port {1001, 1003, 1005} are mapped to the same first comb position, and port {1000, 1002, 1004} are mapped to the same second comb position, where the first comb position and the second comb position are different.

[0153] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000243.jpg1069 Or, JPEG0007778943000244.jpg1069 where: JPEG0007778943000245.jpg56 is the comb position to which port i is mapped, JPEG0007778943000246.jpg55 is the comb offset, JPEG0007778943000247.jpg35 is the size of the comb configuration.

[0154] Alternatively, when the number of ports is 6 and the size of the comb configuration is 8, the CS mapping method 15 used is as follows: The six ports of the first SRS are divided into two groups, and ports in the same group use the same CS, while ports in different groups use different CS. That is, ports {1000, 1001, 1002} are in one group and use the same CS, and ports {1003, 1004, 1005} are in another group and use the same CS.

[0155] The CS of the sequence to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000248.jpg1061 where: JPEG0007778943000249.jpg46 is the CS corresponding to port i, JPEG0007778943000250.jpg46 is the cyclic shift offset, JPEG0007778943000251.jpg48 is the maximum cyclic shift offset, JPEG0007778943000252.jpg33 is the port number, JPEG0007778943000253.jpg57 is the port number, JPEG0007778943000254.jpg22 is the first parameter, JPEG0007778943000255.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, JPEG0007778943000256.jpg47.

[0156] When this CS mapping method 15 is used, the specific CS values ​​corresponding to each port are shown in Table 15.

[0157] The specific CS value corresponding to each port [Table 15]

[0158] Optionally, when the number of ports is 6 and the size of the comb configuration is 8, and a CS mapping method 15 is used, the corresponding comb position mapping method 18 is as follows: The six ports of the first SRS are divided into three groups, and ports in the same group are mapped to the same comb position, while ports in different groups are mapped to different comb positions, i.e., port{1000, 1003} are mapped to the same first comb position, port{1000, 1004} are mapped to the same second comb position, and port{1002, 1005} are mapped to the same third comb position, where the first, second, and third comb positions are different.

[0159] The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000258.jpg1758 Or, JPEG0007778943000259.jpg1758 where: JPEG0007778943000260.jpg56 is the comb position to which port i is mapped, JPEG0007778943000261.jpg55 is the comb offset, JPEG0007778943000262.jpg35 is the size of the comb configuration, JPEG0007778943000263.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000264.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000265.jpg33 is a value specified by default by the network side device and the terminal, and / or a value indicated by the network side device, and / or a value notified by the terminal.

[0160] Selectable, JPEG0007778943000266.jpg47, JPEG0007778943000267.jpg48.

[0161] Selectable, JPEG0007778943000268.jpg47, JPEG0007778943000269.jpg48, JPEG0007778943000270.jpg48.

[0162] In the embodiment of the present application, a CS mapping method and a comb position mapping method are provided when the number of SRS ports is 6 and the comb configuration size is 8, which can be used to improve the orthogonality of the transmission of SRS reference signals on each port, and further improve the uplink transmission performance.

[0163] The port mapping method for a sounding reference signal provided in the embodiment of the present application may be performed by a port mapping device for a sounding reference signal. In the embodiment of the present application, the port mapping device for a sounding reference signal provided in the embodiment of the present application will be described by taking the port mapping device for a sounding reference signal performing the port mapping method for a sounding reference signal as an example.

[0164] FIG. 3 is a schematic diagram of the configuration of a port mapping device for sounding reference signals provided in an embodiment of the present application. As shown in FIG. 3, the device 300 includes: When the number of ports of a first sounding reference signal (SRS) is 6 or 8, the terminal is equipped with a first determination unit (310) for determining a cyclic shift (CS) corresponding to each port of the first SRS and / or a comb position to which each port of the first SRS is mapped; The size of the comb configuration of the first SRS is N, where N is 2, 4, 6, or 8.

[0165] Optionally, the CS corresponding to each port of the first SRS is determined by at least one of a cyclic shift offset, a maximum cyclic shift offset, a first parameter, a comb configuration size, a port number, and a port number; and / or The comb position to which each port of the first SRS is mapped is determined by at least one of a comb offset, a size of the comb configuration, a cyclic shift offset, a maximum cyclic shift offset, a first parameter, and a port number.

[0166] Optionally, when the number of ports is 8 and the size of the comb configuration is 2, different ports of the first SRS correspond to different CSs, and the CSs corresponding to each port of the first SRS are calculated by the following formula: JPEG0007778943000271.jpg1053 where: JPEG0007778943000272.jpg46 is the CS corresponding to port i, JPEG0007778943000273.jpg46 is the cyclic shift offset, JPEG0007778943000274.jpg48 is the maximum cyclic shift offset, JPEG0007778943000275.jpg33 is the port number, JPEG0007778943000276.jpg57 is the port number.

[0167] Optionally, each port of the first SRS is mapped to the same comb position, and the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000277.jpg512 where: JPEG0007778943000278.jpg56 is the comb position to which port i is mapped, JPEG0007778943000279.jpg55 is the comb offset.

[0168] Optionally, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000280.jpg1076 Or, JPEG0007778943000281.jpg1076 where: JPEG0007778943000282.jpg56 is the comb position to which port i is mapped, JPEG0007778943000283.jpg55 is the comb offset, JPEG0007778943000284.jpg35 is the size of the comb configuration.

[0169] Optionally, a comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and for a particular cyclic shift offset, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000285.jpg10116 Or, JPEG0007778943000286.jpg10116 where: JPEG0007778943000287.jpg56 is the comb position to which port i is mapped, JPEG0007778943000288.jpg55 is the comb offset, JPEG0007778943000289.jpg35 is the size of the comb configuration.

[0170] Optionally, when the number of ports is 8 and the comb configuration size is 2, the 8 ports of the first SRS are divided into 4 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000290.jpg1061 where: JPEG0007778943000291.jpg46 is the CS corresponding to port i, JPEG0007778943000292.jpg46 is the cyclic shift offset, JPEG0007778943000293.jpg48 is the maximum cyclic shift offset, JPEG0007778943000294.jpg33 is the port number, JPEG0007778943000295.jpg57 is the port number, JPEG0007778943000296.jpg22 is the first parameter, JPEG0007778943000297.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000298.jpg47.

[0171] Optionally, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000299.jpg1076 Or, JPEG0007778943000300.jpg1076 where: JPEG0007778943000301.jpg56 is the comb position to which port i is mapped, JPEG0007778943000302.jpg55 is the comb offset, JPEG0007778943000303.jpg35 is the size of the comb configuration.

[0172] Optionally, when the number of ports is 8 and the size of the comb configuration is 4, the 8 ports of the first SRS are divided into 4 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000304.jpg1061 where: JPEG0007778943000305.jpg46 is the CS corresponding to port i, JPEG0007778943000306.jpg46 is the cyclic shift offset, JPEG0007778943000307.jpg48 is the maximum cyclic shift offset, JPEG0007778943000308.jpg33 is the port number, JPEG0007778943000309.jpg57 is the port number, JPEG0007778943000310.jpg22 is the first parameter, JPEG0007778943000311.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000312.jpg47.

[0173] Optionally, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000313.jpg1076 Or, JPEG0007778943000314.jpg1076 where: JPEG0007778943000315.jpg56 is the comb position to which port i is mapped, JPEG0007778943000316.jpg55 is the comb offset, JPEG0007778943000317.jpg35 is the size of the comb configuration.

[0174] Optionally, a comb position to which each port of the first SRS is mapped is related to the cyclic shift offset; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000318.jpg28115 Or, JPEG0007778943000319.jpg17115 Or, JPEG0007778943000320.jpg17115 Or, JPEG0007778943000321.jpg27111 Or, JPEG0007778943000322.jpg27115 where: JPEG0007778943000323.jpg56 is the comb position to which port i is mapped, JPEG0007778943000324.jpg55 is the comb offset, JPEG0007778943000325.jpg35 is the size of the comb configuration.

[0175] Optionally, when the number of ports is 8 and the comb configuration size is 4, the 8 ports of the first SRS are divided into 2 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000326.jpg1061 Or, JPEG0007778943000327.jpg1068 where: JPEG0007778943000328.jpg46 is the CS corresponding to port i, JPEG0007778943000329.jpg46 is the cyclic shift offset, JPEG0007778943000330.jpg48 is the maximum cyclic shift offset, JPEG0007778943000331.jpg33 is the port number, JPEG0007778943000332.jpg57 is the port number, JPEG0007778943000333.jpg22 is the first parameter, JPEG0007778943000334.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, JPEG0007778943000335.jpg47, JPEG0007778943000336.jpg35 is the size of the comb configuration.

[0176] Optionally, the eight ports of the first SRS are divided into four groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000337.jpg2256 Or, JPEG0007778943000338.jpg552 Or, JPEG0007778943000339.jpg549 Or, JPEG0007778943000340.jpg549 where: JPEG0007778943000341.jpg56 is the comb position to which port i is mapped, JPEG0007778943000342.jpg55 is the comb offset.

[0177] Optionally, when the number of ports is 8 and the size of the comb configuration is 8, the 8 ports of the first SRS are divided into two groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000343.jpg1061 where: JPEG0007778943000344.jpg46 is the CS corresponding to port i, JPEG0007778943000345.jpg46 is the cyclic shift offset, JPEG0007778943000346.jpg48 is the maximum cyclic shift offset, JPEG0007778943000347.jpg33 is the port number, JPEG0007778943000348.jpg57 is the port number, JPEG0007778943000349.jpg22 is the first parameter, JPEG0007778943000350.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000351.jpg47.

[0178] Optionally, the eight ports of the first SRS are divided into four groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000352.jpg2256 Or, JPEG0007778943000353.jpg552 Or, JPEG0007778943000354.jpg557 where: JPEG0007778943000355.jpg56 is the comb position to which port i is mapped, JPEG0007778943000356.jpg55 is the comb offset, JPEG0007778943000357.jpg35 is the size of the comb configuration.

[0179] Optionally, when the number of ports is 8 and the size of the comb configuration is 8, the 8 ports of the first SRS all adopt the same CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000358.jpg1061 Or, JPEG0007778943000359.jpg413 where: JPEG0007778943000360.jpg46 is the CS corresponding to port i, JPEG0007778943000361.jpg46 is the cyclic shift offset, JPEG0007778943000362.jpg48 is the maximum cyclic shift offset, JPEG0007778943000363.jpg33 is the port number, JPEG0007778943000364.jpg57 is the port number, JPEG0007778943000365.jpg22 is the first parameter, JPEG0007778943000366.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000367.jpg37.

[0180] Selectably, different ports of the first SRS are mapped to different comb locations; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000368.jpg4550 Or, JPEG0007778943000369.jpg539 Or, JPEG0007778943000370.jpg557 where: JPEG0007778943000371.jpg56 is the comb position to which port i is mapped, JPEG0007778943000372.jpg55 is the comb offset, JPEG0007778943000373.jpg35 is the size of the comb configuration.

[0181] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000374.jpg1054 where: JPEG0007778943000375.jpg46 is the CS corresponding to port i, JPEG0007778943000376.jpg46 is the cyclic shift offset, JPEG0007778943000377.jpg48 is the maximum cyclic shift offset, JPEG0007778943000378.jpg33 is the port number, JPEG0007778943000379.jpg57 is the port number.

[0182] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000380.jpg1076 Or, JPEG0007778943000381.jpg1062 Or, JPEG0007778943000382.jpg1069 Or, JPEG0007778943000383.jpg1069 where: JPEG0007778943000384.jpg56 is the comb position to which port i is mapped, JPEG0007778943000385.jpg55 is the comb offset, JPEG0007778943000386.jpg35 is the size of the comb configuration.

[0183] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000387.jpg1076 The ports of the second SRS are mapped to the same comb position as the ports {1001, 1004} of the first SRS, and the cyclic shift offset corresponding to the second SRS is a value obtained by adding 3 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0184] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000388.jpg1062 The ports of the second SRS are mapped to the same comb position as the ports {1001, 1004} of the first SRS, and the cyclic shift offset corresponding to the second SRS is a value obtained by adding 3 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0185] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000389.jpg1054 where: JPEG0007778943000390.jpg46 is the CS corresponding to port i, JPEG0007778943000391.jpg46 is the cyclic shift offset, JPEG0007778943000392.jpg48 is the maximum cyclic shift offset, JPEG0007778943000393.jpg33 is the port number, JPEG0007778943000394.jpg57 is the port number.

[0186] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000395.jpg1076 Or, JPEG0007778943000396.jpg1062 Or, JPEG0007778943000397.jpg1069 Or, JPEG0007778943000398.jpg1069 where: JPEG0007778943000399.jpg56 is the comb position to which port i is mapped, JPEG0007778943000400.jpg55 is the comb offset, JPEG0007778943000401.jpg35 is the size of the comb configuration.

[0187] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000402.jpg1076 The port of the third SRS is mapped to the same comb position as the port {1002, 1005} of the first SRS, and the cyclic shift offset corresponding to the third SRS is a value obtained by adding 1 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0188] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000403.jpg1062 The port of the third SRS is mapped to the same comb position as the port {1002, 1005} of the first SRS, and the cyclic shift offset corresponding to the third SRS is a value obtained by adding 1 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0189] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000404.jpg3279 where: JPEG0007778943000405.jpg46 is the CS corresponding to port i, JPEG0007778943000406.jpg46 is the cyclic shift offset, JPEG0007778943000407.jpg48 is the maximum cyclic shift offset, JPEG0007778943000408.jpg33 is the port number, JPEG0007778943000409.jpg57 is the port number.

[0190] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000410.jpg1075 Or, JPEG0007778943000411.jpg1062 Or, JPEG0007778943000412.jpg1069 Or, JPEG0007778943000413.jpg1069 where: JPEG0007778943000414.jpg56 is the comb position to which port i is mapped, JPEG0007778943000415.jpg55 is the comb offset, JPEG0007778943000416.jpg35 is the size of the comb configuration.

[0191] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000417.jpg1075 The port of the fourth SRS is mapped to the same comb position as the port {1000, 1003} of the first SRS, and the cyclic shift offset corresponding to the fourth SRS is a value obtained by adding 2 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0192] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000418.jpg1062 The port of the fourth SRS is mapped to the same comb position as the port {1000, 1003} of the first SRS, and the cyclic shift offset corresponding to the fourth SRS is a value obtained by adding 2 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0193] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000419.jpg3286 where: JPEG0007778943000420.jpg46 is the CS corresponding to port i, JPEG0007778943000421.jpg46 is the cyclic shift offset, JPEG0007778943000422.jpg48 is the maximum cyclic shift offset, JPEG0007778943000423.jpg33 is the port number, JPEG0007778943000424.jpg57 is the port number.

[0194] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000425.jpg1069 Or, JPEG0007778943000426.jpg1069 where: JPEG0007778943000427.jpg56 is the comb position to which port i is mapped, JPEG0007778943000428.jpg55 is the comb offset, JPEG0007778943000429.jpg35 is the size of the comb configuration.

[0195] Optionally, when the number of ports is 6 and the size of the comb configuration is 4, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000430.jpg1053 where: JPEG0007778943000431.jpg46 is the CS corresponding to port i, JPEG0007778943000432.jpg46 is the cyclic shift offset, JPEG0007778943000433.jpg48 is the maximum cyclic shift offset, JPEG0007778943000434.jpg33 is the port number, JPEG0007778943000435.jpg57 is the port number.

[0196] Optionally, the comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and for a specific cyclic shift offset, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions, and the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000436.jpg10109 Or, JPEG0007778943000437.jpg10110 where: JPEG0007778943000438.jpg56 is the comb position to which port i is mapped, JPEG0007778943000439.jpg55 is the comb offset, JPEG0007778943000440.jpg35 is the size of the comb configuration.

[0197] Optionally, when the number of ports is 6 and the size of the comb configuration is 6, the 6 ports of the first SRS are divided into two groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000441.jpg1061 where: JPEG0007778943000442.jpg46 is the CS corresponding to port i, JPEG0007778943000443.jpg46 is the cyclic shift offset, JPEG0007778943000444.jpg48 is the maximum cyclic shift offset, JPEG0007778943000445.jpg33 is the port number, JPEG0007778943000446.jpg57 is the port number, JPEG0007778943000447.jpg22 is the first parameter, JPEG0007778943000448.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000449.jpg47.

[0198] Optionally, the six ports of the first SRS are divided into three groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000450.jpg1758 Or, JPEG0007778943000451.jpg1758 where: JPEG0007778943000452.jpg56 is the comb position to which port i is mapped, JPEG0007778943000453.jpg55 is the comb offset, JPEG0007778943000454.jpg35 is the size of the comb configuration, JPEG0007778943000455.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000456.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000457.jpg33 is a value specified by default by the network side device and the terminal, and / or a value indicated by the network side device, and / or a value notified by the terminal.

[0199] Optionally, when the number of ports is 6 and the size of the comb configuration is 8, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000458.jpg1053 where: JPEG0007778943000459.jpg46 is the CS corresponding to port i, JPEG0007778943000460.jpg46 is the cyclic shift offset, JPEG0007778943000461.jpg48 is the maximum cyclic shift offset, JPEG0007778943000462.jpg33 is the port number, JPEG0007778943000463.jpg57 is the port number.

[0200] Optionally, the comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and for a specific cyclic shift offset, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions, and the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000464.jpg10109 Or, JPEG0007778943000465.jpg10110 where: JPEG0007778943000466.jpg56 is the comb position to which port i is mapped, JPEG0007778943000467.jpg55 is the comb offset, JPEG0007778943000468.jpg35 is the size of the comb configuration.

[0201] Optionally, when the number of ports is 6 and the size of the comb configuration is 8, the 6 ports of the first SRS are divided into 3 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000469.jpg1061 where: JPEG0007778943000470.jpg46 is the CS corresponding to port i, JPEG0007778943000471.jpg46 is the cyclic shift offset, JPEG0007778943000472.jpg48 is the maximum cyclic shift offset, JPEG0007778943000473.jpg33 is the port number, JPEG0007778943000474.jpg57 is the port number, JPEG0007778943000475.jpg22 is the first parameter, JPEG0007778943000476.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000477.jpg47.

[0202] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000478.jpg1069 Or, JPEG0007778943000479.jpg1069 where: JPEG0007778943000480.jpg56 is the comb position to which port i is mapped, JPEG0007778943000481.jpg55 is the comb offset, JPEG0007778943000482.jpg35 is the size of the comb configuration.

[0203] Optionally, when the number of ports is 6 and the size of the comb configuration is 8, the 6 ports of the first SRS are divided into two groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS of the sequence to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000483.jpg1061 where: JPEG0007778943000484.jpg46 is the CS corresponding to port i, JPEG0007778943000485.jpg46 is the cyclic shift offset, JPEG0007778943000486.jpg48 is the maximum cyclic shift offset, JPEG0007778943000487.jpg33 is the port number, JPEG0007778943000488.jpg57 is the port number, JPEG0007778943000489.jpg22 is the first parameter, JPEG0007778943000490.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000491.jpg47.

[0204] Optionally, the six ports of the first SRS are divided into three groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000492.jpg1758 Or, JPEG0007778943000493.jpg1758 where: JPEG0007778943000494.jpg56 is the comb position to which port i is mapped, JPEG0007778943000495.jpg55 is the comb offset, JPEG0007778943000496.jpg35 is the size of the comb configuration, JPEG0007778943000497.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000498.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000499.jpg33 is a value specified by default by the network side device and the terminal, and / or a value indicated by the network side device, and / or a value notified by the terminal.

[0205] In the embodiment of the present application, when the number of SRS ports is 6 or 8, a solution for port mapping is provided when the SRS is located in different combs, which can improve the orthogonality of the SRS reference signal transmission on each port and further improve the uplink transmission performance.

[0206] The sounding reference signal port mapping device in the embodiment of the present application may be an electronic device, for example, an electronic device with an operating system, or a component of the electronic device, for example, an integrated circuit or a chip. The electronic device may be a terminal or other device other than a terminal. For example, the terminal may include, but is not limited to, the types of terminal 11 listed above, and the other device may be a server, a network attached storage (NAS), etc. The embodiment of the present application is not specifically limited.

[0207] The sounding reference signal port mapping device provided in the embodiment of the present application can implement each step implemented in the method embodiment of Figure 2 and achieve the same technical effects, so detailed description will be omitted here to avoid repetition.

[0208] Optionally, as shown in Fig. 4, an embodiment of the present application further provides a communication device 400 including a processor 401 and a memory 402 storing a program or command executable by the processor 401. For example, when the communication device 400 is a terminal, the program or command is executed by the processor 401 to implement each step of the embodiment of the port mapping method for a sounding reference signal, and the same technical effect can be achieved. When the communication device 400 is a network-side device, the program or command is executed by the processor 401 to implement each step of the embodiment of the port mapping method for a sounding reference signal, and the same technical effect can be achieved. In order to avoid repetition, detailed description will be omitted here.

[0209] An embodiment of the present application further provides a terminal including: a processor for determining, when the number of ports of a first sounding reference signal (SRS) is 6 or 8, a cyclic shift (CS) corresponding to each port of the first SRS and / or a comb position to which each port of the first SRS is mapped; and a communication interface, wherein the comb configuration size of the first SRS is N, where N is 2, 4, 6, or 8. This embodiment of the terminal corresponds to the embodiment of the terminal-side method described above, and the implementation steps and realization modes of the embodiment of the method can be applied to this embodiment of the terminal, and the same technical effects can be achieved. Specifically, Figure 5 is a schematic diagram of the hardware configuration of a terminal implementing this embodiment of the present application.

[0210] The terminal 500 includes at least some elements such as, but not limited to, a radio frequency unit 501, a network module 502, an audio output unit 503, an input unit 504, a sensor 505, a display unit 506, a user input unit 507, an interface unit 508, a memory 509 and a processor 510.

[0211] As will be understood by those skilled in the art, the terminal 500 may further include a power source (e.g., a battery) for supplying power to each component, and the power source may be logically connected to the processor 510 via a power management system, which may further realize functions such as charge / discharge management and power consumption management. The configuration of the terminal shown in Figure 5 is not intended to limit the terminal, and the terminal may include more or fewer components than those shown, or a combination of some components, or a different component arrangement, and detailed description thereof will be omitted here.

[0212] It should be understood that in the embodiment of the present application, the input unit 504 may include a graphics processing unit (GPU) 5041 and a microphone 5042 for processing image data of still or video images captured by an image capture device (e.g., a camera) in a video capture mode or an image capture mode. The display unit 506 may include a display panel 5061, which may be configured in the form of a liquid crystal display, an organic light-emitting diode, or the like. The user input unit 507 includes at least one of a touch panel 5071 and other input devices 5072. The touch panel 5071 is also called a touch panel. The touch panel 5071 may include two parts: a touch detection device and a touch controller. The other input devices 5072 may include, but are not limited to, a physical keyboard, function buttons (e.g., volume control buttons, switch buttons, etc.), a trackball, a mouse, and a control lever. Detailed description thereof will be omitted here.

[0213] In the embodiment of the present application, the radio frequency unit 501 can receive downlink data from the network side device and then transmit the data to the processor 510 for processing. The radio frequency unit 501 can also transmit uplink data to the network side device. Typically, the radio frequency unit 501 includes, but is not limited to, an antenna, at least one amplifier, a receiver / transmitter, a coupler, a low-noise amplifier, a duplexer, etc.

[0214] The memory 509 can be used to store software programs or commands and various data. The memory 509 may mainly include a first storage area for storing programs or commands, which can store an operating system, an application or command required for at least one function (e.g., an audio playback function, an image playback function, etc.), and a second storage area for storing data. The memory 509 may include volatile memory or nonvolatile memory, or may include both volatile and nonvolatile memory. Here, the nonvolatile memory may be read-only memory (ROM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), or flash memory. The volatile memory may be random access memory (RAM), static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synch link dynamic random access memory (SLDRAM), and direct Rambus random access memory (DRRAM). Memory 509 in embodiments of the present application includes, but is not limited to, these and any other suitable types of memory.

[0215] The processor 510 may include one or more processing units, and may optionally integrate an application processor that mainly processes operations related to an operating system, a user interface, applications, etc., and a modem processor that mainly processes wireless communication signals, such as a baseband processor, in the processor 510. It is understood that the modem processor may not be integrated into the processor 510.

[0216] Here, when the number of ports of the first sounding reference signal (SRS) is 6 or 8, the processor 510 is used by the terminal to determine a cyclic shift CS corresponding to each port of the first SRS and / or a comb position to which each port of the first SRS is mapped, and the size of the comb configuration of the first SRS is N, where N is 2, 4, 6, or 8.

[0217] Optionally, the CS corresponding to each port of the first SRS is determined by at least one of a cyclic shift offset, a maximum cyclic shift offset, a first parameter, a comb configuration size, a port number, and a port number; and / or The comb position to which each port of the first SRS is mapped is determined by at least one of a comb offset, a size of the comb configuration, a cyclic shift offset, a maximum cyclic shift offset, a first parameter, and a port number.

[0218] Optionally, when the number of ports is 8 and the size of the comb configuration is 2, different ports of the first SRS correspond to different CSs, and the CSs corresponding to each port of the first SRS are calculated by the following formula: JPEG0007778943000500.jpg1053 where: JPEG0007778943000501.jpg46 is the CS corresponding to port i, JPEG0007778943000502.jpg46 is the cyclic shift offset, JPEG0007778943000503.jpg48 is the maximum cyclic shift offset, JPEG0007778943000504.jpg33 is the port number, JPEG0007778943000505.jpg57 is the port number.

[0219] Optionally, each port of the first SRS is mapped to the same comb position, and the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000506.jpg512 where: JPEG0007778943000507.jpg56 is the comb position to which port i is mapped, JPEG0007778943000508.jpg55 is the comb offset.

[0220] Optionally, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000509.jpg1076 Or, JPEG0007778943000510.jpg1076 where: JPEG0007778943000511.jpg56 is the comb position to which port i is mapped, JPEG0007778943000512.jpg55 is the comb offset, JPEG0007778943000513.jpg35 is the size of the comb configuration.

[0221] Optionally, a comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and for a particular cyclic shift offset, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000514.jpg10116 Or, JPEG0007778943000515.jpg10116 where: JPEG0007778943000516.jpg56 is the comb position to which port i is mapped, JPEG0007778943000517.jpg55 is the comb offset, JPEG0007778943000518.jpg35 is the size of the comb configuration.

[0222] Optionally, when the number of ports is 8 and the comb configuration size is 2, the 8 ports of the first SRS are divided into 4 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000519.jpg1061 where: JPEG0007778943000520.jpg46 is the CS corresponding to port i, JPEG0007778943000521.jpg46 is the cyclic shift offset, JPEG0007778943000522.jpg48 is the maximum cyclic shift offset, JPEG0007778943000523.jpg33 is the port number, JPEG0007778943000524.jpg57 is the port number, JPEG0007778943000525.jpg22 is the first parameter, JPEG0007778943000526.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000527.jpg47.

[0223] Optionally, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000528.jpg1076 Or, JPEG0007778943000529.jpg1076 where: JPEG0007778943000530.jpg56 is the comb position to which port i is mapped, JPEG0007778943000531.jpg55 is the comb offset, JPEG0007778943000532.jpg35 is the size of the comb configuration.

[0224] Optionally, when the number of ports is 8 and the size of the comb configuration is 4, the 8 ports of the first SRS are divided into 4 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000533.jpg1061 where: JPEG0007778943000534.jpg46 is the CS corresponding to port i, JPEG0007778943000535.jpg46 is the cyclic shift offset, JPEG0007778943000536.jpg48 is the maximum cyclic shift offset, JPEG0007778943000537.jpg33 is the port number, JPEG0007778943000538.jpg57 is the port number, JPEG0007778943000539.jpg22 is the first parameter, JPEG0007778943000540.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000541.jpg47.

[0225] Optionally, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000542.jpg1076 Or, JPEG0007778943000543.jpg1076 where: JPEG0007778943000544.jpg56 is the comb position to which port i is mapped, JPEG0007778943000545.jpg55 is the comb offset, JPEG0007778943000546.jpg35 is the size of the comb configuration.

[0226] Optionally, a comb position to which each port of the first SRS is mapped is related to the cyclic shift offset; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000547.jpg28115 Or, JPEG0007778943000548.jpg17115 Or, JPEG0007778943000549.jpg17115 Or, JPEG0007778943000550.jpg27111 Or, JPEG0007778943000551.jpg27115 where: JPEG0007778943000552.jpg56 is the comb position to which port i is mapped, JPEG0007778943000553.jpg55 is the comb offset, JPEG0007778943000554.jpg35 is the size of the comb configuration.

[0227] Optionally, when the number of ports is 8 and the comb configuration size is 4, the 8 ports of the first SRS are divided into 2 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000555.jpg1061 Or, JPEG0007778943000556.jpg1068 where: JPEG0007778943000557.jpg46 is the CS corresponding to port i, JPEG0007778943000558.jpg46 is the cyclic shift offset, JPEG0007778943000559.jpg48 is the maximum cyclic shift offset, JPEG0007778943000560.jpg33 is the port number, JPEG0007778943000561.jpg57 is the port number, JPEG0007778943000562.jpg22 is the first parameter, JPEG0007778943000563.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, JPEG0007778943000564.jpg48, JPEG0007778943000565.jpg35 is the size of the comb configuration.

[0228] Optionally, the eight ports of the first SRS are divided into four groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000566.jpg2256 Or, JPEG0007778943000567.jpg552 Or, JPEG0007778943000568.jpg549 Or, JPEG0007778943000569.jpg549 where: JPEG0007778943000570.jpg56 is the comb position to which port i is mapped, JPEG0007778943000571.jpg55 is the comb offset.

[0229] Optionally, when the number of ports is 8 and the size of the comb configuration is 8, the 8 ports of the first SRS are divided into two groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000572.jpg1061 where: JPEG0007778943000573.jpg46 is the CS corresponding to port i, JPEG0007778943000574.jpg46 is the cyclic shift offset, JPEG0007778943000575.jpg48 is the maximum cyclic shift offset, JPEG0007778943000576.jpg33 is the port number, JPEG0007778943000577.jpg57 is the port number, JPEG0007778943000578.jpg22 is the first parameter, JPEG0007778943000579.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, JPEG0007778943000580.jpg48.

[0230] Optionally, the eight ports of the first SRS are divided into four groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000581.jpg2256 Or, JPEG0007778943000582.jpg552 Or, JPEG0007778943000583.jpg557 where: JPEG0007778943000584.jpg56 is the comb position to which port i is mapped, JPEG0007778943000585.jpg55 is the comb offset, JPEG0007778943000586.jpg35 is the size of the comb configuration.

[0231] Optionally, when the number of ports is 8 and the size of the comb configuration is 8, the 8 ports of the first SRS all adopt the same CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000587.jpg1061 Or, JPEG0007778943000588.jpg413 where: JPEG0007778943000589.jpg46 is the CS corresponding to port i, JPEG0007778943000590.jpg46 is the cyclic shift offset, JPEG0007778943000591.jpg48 is the maximum cyclic shift offset, JPEG0007778943000592.jpg33 is the port number, JPEG0007778943000593.jpg57 is the port number, JPEG0007778943000594.jpg22 is the first parameter, JPEG0007778943000595.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000596.jpg37.

[0232] Selectably, different ports of the first SRS are mapped to different comb locations; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000597.jpg4550 Or, JPEG0007778943000598.jpg539 Or, JPEG0007778943000599.jpg557 where: JPEG0007778943000600.jpg56 is the comb position to which port i is mapped, JPEG0007778943000601.jpg55 is the comb offset, JPEG0007778943000602.jpg35 is the size of the comb configuration.

[0233] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000603.jpg1054 where: JPEG0007778943000604.jpg46 is the CS corresponding to port i, JPEG0007778943000605.jpg46 is the cyclic shift offset, JPEG0007778943000606.jpg48 is the maximum cyclic shift offset, JPEG0007778943000607.jpg33 is the port number, JPEG0007778943000608.jpg57 is the port number.

[0234] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000609.jpg1076 Or, JPEG0007778943000610.jpg1062 Or, JPEG0007778943000611.jpg1069 Or, JPEG0007778943000612.jpg1069 where: JPEG0007778943000613.jpg56 is the comb position to which port i is mapped, JPEG0007778943000614.jpg55 is the comb offset, JPEG0007778943000615.jpg35 is the size of the comb configuration.

[0235] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000616.jpg1076 The ports of the second SRS are mapped to the same comb position as the ports {1001, 1004} of the first SRS, and the cyclic shift offset corresponding to the second SRS is a value obtained by adding 3 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0236] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000617.jpg1062 The ports of the second SRS are mapped to the same comb position as the ports {1001, 1004} of the first SRS, and the cyclic shift offset corresponding to the second SRS is a value obtained by adding 3 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0237] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000618.jpg1054 where: JPEG0007778943000619.jpg46 is the CS corresponding to port i, JPEG0007778943000620.jpg46 is the cyclic shift offset, JPEG0007778943000621.jpg48 is the maximum cyclic shift offset, JPEG0007778943000622.jpg33 is the port number, JPEG0007778943000623.jpg57 is the port number.

[0238] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000624.jpg1076 Or, JPEG0007778943000625.jpg1062 Or, JPEG0007778943000626.jpg1069 Or, JPEG0007778943000627.jpg1069 where: JPEG0007778943000628.jpg56 is the comb position to which port i is mapped, JPEG0007778943000629.jpg55 is the comb offset, JPEG0007778943000630.jpg35 is the size of the comb configuration.

[0239] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000631.jpg1076 The port of the third SRS is mapped to the same comb position as the port {1002, 1005} of the first SRS, and the cyclic shift offset corresponding to the third SRS is a value obtained by adding 1 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0240] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000632.jpg1062 The port of the third SRS is mapped to the same comb position as the port {1002, 1005} of the first SRS, and the cyclic shift offset corresponding to the third SRS is a value obtained by adding 1 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0241] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000633.jpg3279 where: JPEG0007778943000634.jpg46 is the CS corresponding to port i, JPEG0007778943000635.jpg46 is the cyclic shift offset, JPEG0007778943000636.jpg48 is the maximum cyclic shift offset, JPEG0007778943000637.jpg33 is the port number, JPEG0007778943000638.jpg57 is the port number.

[0242] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000639.jpg1075 Or, JPEG0007778943000640.jpg1062 Or, JPEG0007778943000641.jpg1069 Or, JPEG0007778943000642.jpg1069 where: JPEG0007778943000643.jpg56 is the comb position to which port i is mapped, JPEG0007778943000644.jpg55 is the comb offset, JPEG0007778943000645.jpg35 is the size of the comb configuration.

[0243] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000646.jpg1075 The port of the fourth SRS is mapped to the same comb position as the port {1000, 1003} of the first SRS, and the cyclic shift offset corresponding to the fourth SRS is a value obtained by adding 2 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0244] Optionally, when calculating the comb position to which each port of the first SRS is mapped by the following formula: JPEG0007778943000647.jpg1062 The port of the fourth SRS is mapped to the same comb position as the port {1000, 1003} of the first SRS, and the cyclic shift offset corresponding to the fourth SRS is a value obtained by adding 2 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

[0245] Optionally, when the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000648.jpg3286 where: JPEG0007778943000649.jpg46 is the CS corresponding to port i, JPEG0007778943000650.jpg46 is the cyclic shift offset, JPEG0007778943000651.jpg48 is the maximum cyclic shift offset, JPEG0007778943000652.jpg33 is the port number, JPEG0007778943000653.jpg57 is the port number.

[0246] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000654.jpg1069 Or, JPEG0007778943000655.jpg1069 where: JPEG0007778943000656.jpg56 is the comb position to which port i is mapped, JPEG0007778943000657.jpg55 is the comb offset, JPEG0007778943000658.jpg35 is the size of the comb configuration.

[0247] Optionally, when the number of ports is 6 and the size of the comb configuration is 4, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000659.jpg1053 where: JPEG0007778943000660.jpg46 is the CS corresponding to port i, JPEG0007778943000661.jpg46 is the cyclic shift offset, JPEG0007778943000662.jpg48 is the maximum cyclic shift offset, JPEG0007778943000663.jpg33 is the port number, JPEG0007778943000664.jpg57 is the port number.

[0248] Optionally, the comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and for a specific cyclic shift offset, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions, and the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000665.jpg10109 Or, JPEG0007778943000666.jpg10110 where: JPEG0007778943000667.jpg56 is the comb position to which port i is mapped, JPEG0007778943000668.jpg55 is the comb offset, JPEG0007778943000669.jpg35 is the size of the comb configuration.

[0249] Optionally, when the number of ports is 6 and the size of the comb configuration is 6, the 6 ports of the first SRS are divided into two groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000670.jpg1061 where: JPEG0007778943000671.jpg46 is the CS corresponding to port i, JPEG0007778943000672.jpg46 is the cyclic shift offset, JPEG0007778943000673.jpg48 is the maximum cyclic shift offset, JPEG0007778943000674.jpg33 is the port number, JPEG0007778943000675.jpg57 is the port number, JPEG0007778943000676.jpg22 is the first parameter, JPEG0007778943000677.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000678.jpg47.

[0250] Optionally, the six ports of the first SRS are divided into three groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000679.jpg1758 Or, JPEG0007778943000680.jpg1758 where: JPEG0007778943000681.jpg56 is the comb position to which port i is mapped, JPEG0007778943000682.jpg55 is the comb offset, JPEG0007778943000683.jpg35 is the size of the comb configuration, JPEG0007778943000684.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000685.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000686.jpg33 is a value specified by default by the network side device and the terminal, and / or a value indicated by the network side device, and / or a value notified by the terminal.

[0251] Optionally, when the number of ports is 6 and the size of the comb configuration is 8, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000687.jpg1053 where: JPEG0007778943000688.jpg46 is the CS corresponding to port i, JPEG0007778943000689.jpg46 is the cyclic shift offset, JPEG0007778943000690.jpg48 is the maximum cyclic shift offset, JPEG0007778943000691.jpg33 is the port number, JPEG0007778943000692.jpg57 is the port number.

[0252] Optionally, the comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and for a specific cyclic shift offset, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions, and the comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000693.jpg10109 Or, JPEG0007778943000694.jpg10110 where: JPEG0007778943000695.jpg56 is the comb position to which port i is mapped, JPEG0007778943000696.jpg55 is the comb offset, JPEG0007778943000697.jpg35 is the size of the comb configuration.

[0253] Optionally, when the number of ports is 6 and the size of the comb configuration is 8, the 6 ports of the first SRS are divided into 3 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: JPEG0007778943000698.jpg1061 where: JPEG0007778943000699.jpg46 is the CS corresponding to port i, JPEG0007778943000700.jpg46 is the cyclic shift offset, JPEG0007778943000701.jpg48 is the maximum cyclic shift offset, JPEG0007778943000702.jpg33 is the port number, JPEG0007778943000703.jpg57 is the port number, JPEG0007778943000704.jpg22 is the first parameter, JPEG0007778943000705.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000706.jpg47.

[0254] Optionally, the six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000707.jpg1069 Or, JPEG0007778943000708.jpg1069 where: JPEG0007778943000709.jpg56 is the comb position to which port i is mapped, JPEG0007778943000710.jpg55 is the comb offset, JPEG0007778943000711.jpg35 is the size of the comb configuration.

[0255] Optionally, when the number of ports is 6 and the size of the comb configuration is 8, the 6 ports of the first SRS are divided into two groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS of the sequence to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000712.jpg1061 where: JPEG0007778943000713.jpg46 is the CS corresponding to port i, JPEG0007778943000714.jpg46 is the cyclic shift offset, JPEG0007778943000715.jpg48 is the maximum cyclic shift offset, JPEG0007778943000716.jpg33 is the port number, JPEG0007778943000717.jpg57 is the port number, JPEG0007778943000718.jpg22 is the first parameter, JPEG0007778943000719.jpg22 is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The file is JPEG0007778943000720.jpg47.

[0256] Optionally, the six ports of the first SRS are divided into three groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: JPEG0007778943000721.jpg1758 Or, JPEG0007778943000722.jpg1758 where: JPEG0007778943000723.jpg56 is the comb position to which port i is mapped, JPEG0007778943000724.jpg55 is the comb offset, JPEG0007778943000725.jpg35 is the size of the comb configuration, JPEG0007778943000726.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000727.jpg33 is a value specified by default by the network side device and the terminal, and / or a value instructed by the network side device, and / or a value notified by the terminal, JPEG0007778943000728.jpg33 is a value specified by default by the network side device and the terminal, and / or a value indicated by the network side device, and / or a value notified by the terminal.

[0257] In the embodiment of the present application, when the number of SRS ports is 6 or 8, a solution for port mapping is provided when the SRS is located in different combs, which can improve the orthogonality of the SRS reference signal transmission on each port and further improve the uplink transmission performance.

[0258] An embodiment of the present application further provides a readable storage medium that stores a program or command, which, when executed by a processor, can realize each step of the embodiment of the port mapping method for a sounding reference signal and achieve the same technical effect. Detailed description thereof will be omitted here to avoid repetition.

[0259] Wherein, the processor is the processor in the terminal described in the above embodiment. The readable storage medium includes a computer readable storage medium such as a computer read only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.

[0260] An embodiment of the present application further provides a chip comprising a processor and a communication interface, wherein the communication interface and the processor are coupled, and the processor executes a program or command to realize each step of the embodiment of the port mapping method for a sounding reference signal, and can achieve the same technical effect. Detailed description will be omitted here to avoid repetition.

[0261] It should be understood that the chips referred to in the embodiments of this application may also be referred to as system level chips, system chips, chip systems, or system-on-chips, etc.

[0262] An embodiment of the present application further provides a computer program / program product stored in a storage medium, which is executed by at least one processor to realize each step of the embodiment of the port mapping method for a sounding reference signal and achieve the same technical effect, and detailed description thereof will be omitted here to avoid repetition.

[0263] An embodiment of the present application further provides a communication system including a terminal and a network side device that can be used to perform the steps of the above-mentioned sounding reference signal port mapping method.

[0264] It should be noted that, as used herein, the terms "comprise," "consist of," or any other variation thereof, are intended to include a non-exclusive inclusion, whereby a process, method, article, or apparatus comprising a set of elements includes not only those elements but also other elements not expressly specified or elements inherent in such process, method, article, or apparatus. Unless otherwise specified, elements qualified by the phrase "comprise..." do not exclude the presence of other identical elements in the process, method, article, or apparatus that includes the element. It should also be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may include performing functions substantially simultaneously or in the reverse order, depending on such functionality. For example, the described method may be performed in a different order than described, and various steps may be added, omitted, or combined. Furthermore, features described with reference to one example may be combined in other examples.

[0265] From the description of the above embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be realized in the form of a combination of software and a necessary common hardware platform, and of course, they can also be realized by hardware, but in many cases the former is a more preferred embodiment. Based on this view, the technical solutions of the present application can be substantially embodied in the form of a computer software product, which is stored in a storage medium (e.g., ROM / RAM, magnetic disk, optical disk) and includes a plurality of commands that cause a terminal (which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) to execute the methods described in each embodiment of the present application.

[0266] Although the examples of the present application have been described above with reference to the drawings, the present application is not limited to the above-mentioned specific embodiments, which are merely illustrative and not limiting. Based on the suggestions of the present application, many forms that a person skilled in the art can make without departing from the spirit of the present application and the scope of protection of the claims are all within the scope of protection of the present application.

[0267] CROSS-REFERENCE TO RELATED APPLICATIONS This application claims priority to a Chinese patent application filed on January 7, 2022, bearing application number 202210016659.0 and entitled "Sounding reference signal port mapping method and terminal," the entire contents of which are incorporated herein by reference.

Claims

1. When the number of ports of a first sounding reference signal (SRS) is 8, the terminal may determine a cyclic shift (CS) corresponding to each port of the first SRS and a comb position to which each port of the first SRS is mapped; The size of the comb configuration of the first SRS is N, where N is 8; When the number of ports is 8 and the size of the comb configuration is 8, the 8 ports of the first SRS are divided into two groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: where: is the CS corresponding to port i, is the cyclic shift offset, is the maximum cyclic shift offset, is the port number, is the number of ports, is the first parameter, is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, and The eight ports of the first SRS are divided into four groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: Or, Or, where: is the comb position to which port i is mapped, is the comb offset, is the size of the comb configuration, or, When the number of ports is 8 and the size of the comb configuration is 8, the 8 ports of the first SRS all adopt the same CS; The CS corresponding to each port of the first SRS is calculated by the following formula: Or, where: is the CS corresponding to port i, is the cyclic shift offset, is the maximum cyclic shift offset, is the port number, is the number of ports, is the first parameter, is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, and different ports of the first SRS are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: Or, Or, where: is the comb position to which port i is mapped, is the comb offset, is the size of the comb configuration.

2. The CS corresponding to each port of the first SRS is determined by at least one of the cyclic shift offset, the maximum cyclic shift offset, the first parameter, the size of the comb configuration, the port number, and the number of ports; and / or 2. The method of claim 1, wherein a comb position to which each port of the first SRS is mapped is determined by at least one of the comb offset, the size of the comb configuration, the cyclic shift offset, the maximum cyclic shift offset, the first parameter, and the port number.

3. When the number of ports is 8 and the size of the comb configuration is 2, different ports of the first SRS correspond to different CSs, and the CSs corresponding to each port of the first SRS are calculated by the following formula: where: is the CS corresponding to port i, is the cyclic shift offset, is the maximum cyclic shift offset, is the port number, The method for port mapping of a sounding reference signal according to claim 2 , wherein: is the number of ports.

4. The comb position to which each port of the first SRS is mapped is related to the cyclic shift offset, and for a particular cyclic shift offset, the eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: Or, where: is the comb position to which port i is mapped, is the comb offset, The method of claim 3 , wherein is the size of the comb configuration.

5. When the number of ports is 8 and the size of the comb configuration is 4, the 8 ports of the first SRS are divided into 4 groups, and ports in the same group adopt the same CS, and ports in different groups adopt different CS; The CS corresponding to each port of the first SRS is calculated by the following formula: where: is the CS corresponding to port i, is the cyclic shift offset, is the maximum cyclic shift offset, is the port number, is the number of ports, is the first parameter, is a value specified by default by the network side device and the terminal and / or a value instructed by the network side device and / or a value notified by the terminal, The method for port mapping of a sounding reference signal according to claim 2, wherein:

6. The eight ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: Or, where: is the comb position to which port i is mapped, is the comb offset, The method of claim 5 , wherein is the size of the comb configuration.

7. When the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: where: is the CS corresponding to port i, is the cyclic shift offset, is the maximum cyclic shift offset, is the port number, is the number of ports, The six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: Or, Or, Or, where: is the comb position to which port i is mapped, is the comb offset, is the size of the comb configuration, When the comb position to which each port of the first SRS is mapped is calculated by the following equation: In that case, The port of the second SRS is mapped to the same comb position as the port {1001, 1004} of the first SRS, and the cyclic shift offset corresponding to the second SRS is a value obtained by adding 3 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS, Or, When the comb position to which each port of the first SRS is mapped is calculated by the following formula:

3. The method of claim 2, wherein a port of a second SRS is mapped to the same comb position as the port {1001, 1004} of the first SRS, and a cyclic shift offset corresponding to the second SRS is a value obtained by adding 3 to a cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to a maximum cyclic shift offset corresponding to the first SRS.

8. When the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: where: is the CS corresponding to port i, is the cyclic shift offset, is the maximum cyclic shift offset, is the port number, is the number of ports, The six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: Or, Or, Or, where: is the comb position to which port i is mapped, is the comb offset, is the size of the comb configuration, When the comb position to which each port of the first SRS is mapped is calculated by the following formula: The port of the third SRS is mapped to the same comb position as the port {1002, 1005} of the first SRS, and the cyclic shift offset corresponding to the third SRS is a value obtained by adding 1 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS, Or, When the comb position to which each port of the first SRS is mapped is calculated by the following formula:

3. The port mapping method of claim 2, wherein a port of a third SRS is mapped to the same comb position as the port {1002, 1005} of the first SRS, and a cyclic shift offset corresponding to the third SRS is a value obtained by adding 1 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS.

9. When the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: where: is the CS corresponding to port i, is the cyclic shift offset, is the maximum cyclic shift offset, is the port number, is the number of ports, The six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: Or, Or, Or, where: is the comb position to which port i is mapped, is the comb offset, is the size of the comb configuration, When the comb position to which each port of the first SRS is mapped is calculated by the following formula: The port of the fourth SRS is mapped to the same comb position as the port {1000, 1003} of the first SRS, and the cyclic shift offset corresponding to the fourth SRS is a value obtained by adding 2 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to the maximum cyclic shift offset corresponding to the first SRS; Or, When the comb position to which each port of the first SRS is mapped is calculated by the following formula:

3. The method of claim 2, wherein a port of a fourth SRS is mapped to the same comb position as the port {1000, 1003} of the first SRS, and a cyclic shift offset corresponding to the fourth SRS is a value obtained by adding 2 to the cyclic shift offset corresponding to the first SRS and then performing a remainder calculation with respect to a maximum cyclic shift offset corresponding to the first SRS.

10. When the number of ports is 6 and the size of the comb configuration is 2, different ports of the first SRS adopt different CSs; The CS corresponding to each port of the first SRS is calculated by the following formula: where: is the CS corresponding to port i, is the cyclic shift offset, is the maximum cyclic shift offset, is the port number, is the number of ports, The six ports of the first SRS are divided into two groups, and ports in the same group are mapped to the same comb position, and ports in different groups are mapped to different comb positions; The comb position to which each port of the first SRS is mapped is calculated by the following formula: Or, where: is the comb position to which port i is mapped, is the comb offset, is the size of the comb configuration, The method for port mapping of a sounding reference signal according to claim 2 .

11. A terminal comprising a processor and a memory for storing a program or command executable by the processor, the terminal realizing the steps of the sounding reference signal port mapping method according to any one of claims 1 to 10 when the program or command is executed by the processor.

12. A readable storage medium storing a program or command, which, when executed by a processor, implements the port mapping method for a sounding reference signal according to any one of claims 1 to 10.

Citation Information

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