Time domain resource determination method and apparatus, device, and medium

By receiving configuration information of network-side devices, combined with the cell-level and terminal-specific TDD configuration, the time domain location of the symbol where the uplink subband is located is determined, solving the problem of symbol type determination in the time division duplex mode, and improving the coverage and capacity of the communication system.

WO2025167641A1PCT designated stage Publication Date: 2025-08-14DATANG MOBILE COMM EQUIP CO LTD
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
PCT/CN2025/073931
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-02-07
Filing Date
2025-01-22
Publication Date
2025-08-14

AI Technical Summary

Technical Problem

In the time division duplex mode, the prior art cannot determine the time domain position of the symbol where the uplink subband is located, resulting in the terminal being unable to accurately determine the symbol type.

Method used

By receiving the first configuration and the second configuration sent by the network side device, combined with the cell-level and terminal-specific TDD configuration, the time domain location of the symbol where the uplink subband is located is determined.

Benefits of technology

It realizes the accurate determination of the time domain position of the symbol where the uplink subband is located, solves the problem of symbol type determination, and improves the coverage and capacity of the communication system.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN2025073931_14082025_PF_FP_ABST
    Figure CN2025073931_14082025_PF_FP_ABST
Patent Text Reader

Abstract

The present disclosure provides a time domain resource determination method and apparatus, a terminal, and a medium. The method of the present disclosure comprises: receiving a first configuration and a second configuration which are sent by a network side device, the first configuration being used for indicating a configuration of a first symbol, the first symbol being the symbol on which an uplink subband is located, and the second configuration being used for indicating a configuration of a second symbol, the second symbol being an upstream symbol, a downstream symbol, and / or a flexible symbol; and determining a time domain position of the first symbol on the basis of the first configuration and the second configuration.
Need to check novelty before this filing date? Find Prior Art

Description

Time domain resource determination method, device, equipment and medium

[0001] This disclosure claims priority to the Chinese patent application filed with the China Patent Office on February 7, 2024, with application number 202410174005.X and application name “Time Domain Resource Determination Method, Device, Equipment and Medium”, all contents of which are incorporated herein by reference. Technical Field

[0002] The present disclosure relates to the field of communication technologies, and in particular to a method, apparatus, device, and medium for determining time domain resources. Background Art

[0003] To address the coverage, latency, and capacity issues of uplink and downlink transmission in Time Division Duplex (TDD) mode, research has been proposed on non-overlapping sub-band full duplex (SBFD). This involves dividing frequency resources into multiple, non-overlapping sub-bands, with the uplink and downlink frequency resources located in separate sub-bands. This is referred to as sub-band full duplex (SBFD).

[0004] The relevant protocols only specify how the terminal determines the symbol type based on all or part of the signaling in TDD-UL-DL-ConfigCommon, TDD-UL-DL-ConfigDedicated and the Slot Format Indication (SFI).

[0005] However, when the base station indicates the configuration of the symbol where the uplink subband is located in addition to indicating all or part of the above-mentioned signaling, since the configuration of the symbol where the uplink subband is located is also related to the symbol, it is impossible to determine the symbol type based on relevant technologies; and how the terminal determines the final symbol type is key to how to determine the time domain position of the symbol where the uplink subband is located. Therefore, how to determine the time domain position of the symbol where the uplink subband is located is a technical problem that needs to be solved. Summary of the Invention

[0006] The present disclosure aims to provide a method, apparatus, terminal, and medium for determining time domain resources, so as to solve the problem of how to determine the time domain position of the symbol where the uplink subband is located.

[0007] To achieve the above objectives, in a first aspect, an embodiment of the present disclosure provides a method for determining time domain resources, which is applied to a terminal and includes:

[0008] receiving a first configuration and a second configuration sent by a network-side device, wherein the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol;

[0009] According to the first configuration and the second configuration, a time domain position of a first symbol is determined.

[0010] In some embodiments, the first configuration includes a cell-level configuration of a first symbol; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration;

[0011] The determining, according to the first configuration and the second configuration, a time domain position of the first symbol includes:

[0012] Determine the time domain position of the first symbol according to the cell-level configuration of the first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect to change the time domain position of the first symbol; or

[0013] The time domain position of the first symbol is determined according to the cell-level configuration of the first symbol, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

[0014] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period;

[0015] The determining, according to the cell-level configuration of the first symbol and the cell-level TDD configuration, a time domain position of the first symbol includes:

[0016] A time domain position of the first symbol is determined according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period.

[0017] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration;

[0018] The determining, according to the first configuration and the second configuration, a time domain position of the first symbol includes:

[0019] Determine the time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration; or,

[0020] The time domain position of the first symbol is determined according to the cell-level first symbol configuration, the UE-specific first symbol configuration and the cell-level TDD configuration.

[0021] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration;

[0022] The determining, according to the first configuration and the second configuration, a time domain position of the first symbol includes:

[0023] Determining a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect the time domain position of the first symbol to be changed; or

[0024] Determining a time domain position of the first symbol according to the cell-level configuration of the first symbol, the UE-specific configuration of the first symbol, and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect the time domain position of the first symbol to be changed; or

[0025] Determine the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration; or,

[0026] The time domain position of the first symbol is determined according to the cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

[0027] In some embodiments, the UE-specific configuration of the first symbol indicates a second target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period;

[0028] The determining, according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, a time domain position of the first symbol includes:

[0029] The time domain position of the first symbol is determined according to a second target position of the first symbol within the TDD configuration period and the TDD configuration period.

[0030] In some embodiments, the cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, the UE-specific first symbol configuration indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period;

[0031] Determining a time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration includes:

[0032] Determine a position of the first symbol in the first target position within the TDD configuration period, excluding the second target position, as the time domain position of the first symbol within the TDD configuration period; determine a time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol; or,

[0033] Determine the first target position and the second target position as the time domain position of the first symbol within the TDD configuration period; determine the time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol.

[0034] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period;

[0035] Determining a time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration includes:

[0036] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0037] Determine one or more TDD configuration periods in which a third target position is valid according to the configuration of the UE-specific first symbol; and determine the time domain position of the first symbol according to the third target position and the one or more TDD configuration periods in which the third target position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position is valid over multiple TDD configuration periods; or

[0038] Determine one or more TDD configuration periods in which the third target position is valid and / or invalid according to the configuration of the UE-specific first symbol; determine the first time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is valid according to the third target position and the one or more TDD configuration periods in which the third target position is valid; and / or, determine the second time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is invalid according to the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid and the third target position; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid.

[0039] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D;

[0040] The determining, according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration, the time domain position of the first symbol includes:

[0041] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0042] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; determine that the other time domain positions of the third target position except the fourth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodic repetition according to the TDD configuration period as the time domain position of the first symbol; or,

[0043] Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol; or,

[0044] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, and determine that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determine that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol;

[0045] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0046] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D;

[0047] The determining, according to the cell-level configuration of the first symbol, the UE-specific configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration, the time domain position of the first symbol includes:

[0048] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0049] Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and determine that other time domain positions of the third target position except the fourth target position are time domain positions of the first symbol within the TDD configuration period; or,

[0050] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that other time domain positions of the third target position except the fifth target position are time domain positions of the first symbol within the TDD configuration period; or,

[0051] Determining, according to the semi-static UE-specific TDD configuration, a symbol type of the symbol at the fourth target position as a downlink symbol D, an uplink symbol U, or a flexible symbol F, determining that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determining that other time domain positions of the third target position except the fourth target position and the fifth target position are time domain positions of the first symbol within the TDD configuration period;

[0052] Determining one or more TDD configuration periods in which a first position is valid according to a configuration of a UE-specific first symbol, where the first position is a time domain position of the first symbol within the TDD configuration period, and determining the time domain position of the first symbol according to the first position and the one or more TDD configuration periods in which the first position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position over multiple TDD configuration periods is valid; or

[0053] Determine, according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the first position is valid and / or invalid, where the first position is a time domain position of the first symbol within the TDD configuration period; determine, according to the first position and the one or more TDD configuration periods in which the first position is valid, the first time domain position of the first symbol in the one or more TDD configuration periods in which the first position is valid; and / or, according to the one or more TDD configuration periods in which the first position is invalid and the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid, determine the second time domain position of the first symbol in the one or more TDD configuration periods in which the first position is invalid; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid;

[0054] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0055] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0056] In a second aspect, an embodiment of the present disclosure further provides a method for determining time domain resources, which is applied to a network-side device, including:

[0057] A first configuration and a second configuration are sent to the terminal, where the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

[0058] In some embodiments, the first configuration includes a cell-level first symbol configuration; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration;

[0059] The cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol, or the cell-level first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol.

[0060] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; or the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration;

[0061] The UE-specific configuration of the first symbol and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0062] The cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0063] The cell-level first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol; or,

[0064] The cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine a time domain position of the first symbol.

[0065] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate at least one of the following:

[0066] The symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, the fourth target position includes the third target position configured at the sixth target position, the sixth target position being the time domain position at which the cell-level TDD configuration indication is a flexible symbol,

[0067] The symbol at the fifth target position is a downlink symbol D, the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration;

[0068] The third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level.

[0069] In some embodiments, the configuration of the UE-specific first symbol is used to indicate at least one of the following:

[0070] a second target position of the first symbol within the TDD configuration period;

[0071] Indicating whether the preset positions on multiple TDD configuration cycles are valid using the TDD configuration cycle as an indication unit;

[0072] First symbol configuration information in one or more TDD configuration periods where a preset position is invalid;

[0073] Among them, the preset position is the third target position or the first position, the third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level; the first position is determined by the configuration of the first symbol at the cell level, the TDD configuration at the cell level and the semi-static UE-specific TDD configuration.

[0074] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0075] In a third aspect, an embodiment of the present disclosure further provides a terminal, comprising: a memory, a transceiver, and a processor: the memory is configured to store a computer program; the transceiver is configured to transmit and receive data under the control of the processor, and the processor performs the following operations:

[0076] receiving a first configuration and a second configuration sent by a network-side device, wherein the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol;

[0077] According to the first configuration and the second configuration, a time domain position of a first symbol is determined.

[0078] In some embodiments, the first configuration includes a cell-level configuration of a first symbol; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration; and the processor is further configured to:

[0079] Determine the time domain position of the first symbol according to the cell-level configuration of the first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect to change the time domain position of the first symbol; or

[0080] The time domain position of the first symbol is determined according to the cell-level configuration of the first symbol, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

[0081] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; and the processor is further configured to:

[0082] A time domain position of the first symbol is determined according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period.

[0083] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; and the processor is further configured to:

[0084] Determine the time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration; or,

[0085] The time domain position of the first symbol is determined according to the cell-level first symbol configuration, the UE-specific first symbol configuration and the cell-level TDD configuration.

[0086] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration; and the processor is further configured to:

[0087] Determining a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect the time domain position of the first symbol to be changed; or

[0088] Determining a time domain position of the first symbol according to the cell-level configuration of the first symbol, the UE-specific configuration of the first symbol, and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect the time domain position of the first symbol to be changed; or

[0089] Determine the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration; or,

[0090] The time domain position of the first symbol is determined according to the cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

[0091] In some embodiments, the configuration of the UE-specific first symbol indicates a second target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; and the processor is further configured to:

[0092] The time domain position of the first symbol is determined according to a second target position of the first symbol within the TDD configuration period and the TDD configuration period.

[0093] In some embodiments, the cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, the UE-specific first symbol configuration indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; the processor is further configured to:

[0094] Determine a position of the first symbol in the first target position within the TDD configuration period, excluding the second target position, as the time domain position of the first symbol within the TDD configuration period; determine a time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol; or,

[0095] Determine the first target position and the second target position as the time domain position of the first symbol within the TDD configuration period; determine the time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol.

[0096] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; and the processor is further configured to:

[0097] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0098] Determine one or more TDD configuration periods in which a third target position is valid according to the configuration of the UE-specific first symbol; and determine the time domain position of the first symbol according to the third target position and the one or more TDD configuration periods in which the third target position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position is valid over multiple TDD configuration periods; or

[0099] Determine one or more TDD configuration periods in which the third target position is valid and / or invalid according to the configuration of the UE-specific first symbol; determine the first time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is valid according to the third target position and the one or more TDD configuration periods in which the third target position is valid; and / or, determine the second time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is invalid according to the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid and the third target position; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid.

[0100] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; the processor is further configured to:

[0101] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0102] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; determine that the other time domain positions of the third target position except the fourth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodic repetition according to the TDD configuration period as the time domain position of the first symbol; or,

[0103] Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol; or,

[0104] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, and determine that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determine that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol;

[0105] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0106] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; the processor is further configured to:

[0107] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0108] Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and determine that other time domain positions of the third target position except the fourth target position are time domain positions of the first symbol within the TDD configuration period; or,

[0109] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that other time domain positions of the third target position except the fifth target position are time domain positions of the first symbol within the TDD configuration period; or,

[0110] Determining, according to the semi-static UE-specific TDD configuration, a symbol type of the symbol at the fourth target position as a downlink symbol D, an uplink symbol U, or a flexible symbol F, determining that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determining that other time domain positions of the third target position except the fourth target position and the fifth target position are time domain positions of the first symbol within the TDD configuration period;

[0111] Determining one or more TDD configuration periods in which a first position is valid according to a configuration of a UE-specific first symbol, where the first position is a time domain position of the first symbol within the TDD configuration period, and determining the time domain position of the first symbol according to the first position and the one or more TDD configuration periods in which the first position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position over multiple TDD configuration periods is valid; or

[0112] Determine, according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the first position is valid and / or invalid, where the first position is a time domain position within the TDD configuration period; determine, according to the first position and the one or more TDD configuration periods in which the first position is valid, a first time domain position of the first symbol in the one or more TDD configuration periods in which the first position is valid; and / or, according to the one or more TDD configuration periods in which the first position is invalid and the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid, determine a second time domain position of the first symbol in the one or more TDD configuration periods in which the first position is invalid; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid;

[0113] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0114] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0115] In a fourth aspect, an embodiment of the present disclosure further provides a time domain resource determination device, applied to a terminal, including:

[0116] a receiving module, configured to receive a first configuration and a second configuration sent by a network-side device, wherein the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol;

[0117] A resource determination module is used to determine the time domain position of a first symbol according to the first configuration and the second configuration.

[0118] In a fifth aspect, an embodiment of the present disclosure further provides a network-side device, comprising: a memory, a transceiver, and a processor: the memory is used to store program instructions; the transceiver is used to send and receive data under the control of the processor, and the processor performs the following operations:

[0119] A first configuration and a second configuration are sent to the terminal, where the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

[0120] In some embodiments, the first configuration includes a cell-level first symbol configuration; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration;

[0121] The cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol, or the cell-level first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol.

[0122] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; or the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration;

[0123] The UE-specific configuration of the first symbol and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0124] The cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0125] The cell-level first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol; or,

[0126] The cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine a time domain position of the first symbol.

[0127] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate at least one of the following:

[0128] The symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, the fourth target position includes the third target position configured at the sixth target position, the sixth target position being the time domain position at which the cell-level TDD configuration indication is a flexible symbol,

[0129] The symbol at the fifth target position is a downlink symbol D, the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration;

[0130] The third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level.

[0131] In some embodiments, the configuration of the UE-specific first symbol is used to indicate at least one of the following:

[0132] a second target position of the first symbol within the TDD configuration period;

[0133] Indicating whether the preset positions on multiple TDD configuration cycles are valid using the TDD configuration cycle as an indication unit;

[0134] First symbol configuration information in one or more TDD configuration periods where a preset position is invalid;

[0135] Among them, the preset position is the third target position or the first position, the third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level; the first position is determined by the configuration of the first symbol at the cell level, the TDD configuration at the cell level and the semi-static UE-specific TDD configuration.

[0136] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0137] In a sixth aspect, an embodiment of the present disclosure further provides a time domain resource determination apparatus, applied to a network-side device, comprising:

[0138] A sending module, used to send a first configuration and a second configuration to a terminal, wherein the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

[0139] In the seventh aspect, an embodiment of the present disclosure also provides a processor-readable storage medium, which stores a computer program, and the computer program is used to enable the processor to execute the steps of the time domain resource determination method described in the first aspect above, or execute the steps of the time domain resource determination method described in the second aspect above.

[0140] In a fifth aspect, an embodiment of the present disclosure further provides a computer program product, comprising computer instructions, which, when executed by a processor, implement the steps in the time domain resource determination method as described in the first aspect above, or implement the steps in the time domain resource determination method as described in the second aspect above.

[0141] The above technical solution disclosed in the present invention has at least the following beneficial effects:

[0142] In the above technical solution of the embodiment of the present disclosure, by receiving the first configuration and the second configuration sent by the network side device, the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol; according to the first configuration and the second configuration, the time domain position of the first symbol is determined, and through the above processing, the time domain position of the symbol where the uplink subband is located can be determined, and then the final symbol type is determined. BRIEF DESCRIPTION OF THE DRAWINGS

[0143] FIG1 is a flow chart of a method for determining time domain resources according to an embodiment of the present disclosure;

[0144] FIG2 is a second flow chart of a method for determining time domain resources according to an embodiment of the present disclosure;

[0145] FIG3 is a schematic diagram of the hardware structure of a terminal according to an embodiment of the present disclosure;

[0146] FIG4 is a schematic diagram of a module of a device for determining time domain resources according to an embodiment of the present disclosure;

[0147] FIG5 is a schematic diagram of the hardware structure of a network-side device according to an embodiment of the present disclosure;

[0148] FIG6 is a second schematic diagram of modules of the apparatus for determining time domain resources according to an embodiment of the present disclosure. DETAILED DESCRIPTION

[0149] In the embodiments of the present disclosure, the term "and / or" describes the association relationship between associated objects, indicating that three relationships can exist. For example, A and / or B can represent three situations: A exists alone, A and B exist simultaneously, and B exists alone. The character " / " generally indicates that the associated objects are in an "or" relationship.

[0150] In the embodiments of the present disclosure, the term "plurality" refers to two or more than two, and other quantifiers are similar thereto.

[0151] The following will be combined with the accompanying drawings in the embodiments of the present disclosure to clearly and completely describe the technical solutions in the embodiments of the present disclosure. Obviously, the embodiments described are only part of the embodiments of the present disclosure and not all of the embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present disclosure.

[0152] In order to facilitate understanding of the solutions of the present disclosure, the relevant contents involved in the present disclosure are first introduced.

[0153] In the New Radio (NR) technology versions R15 to R17, the network configures the cell-level TDD configuration (cell specific TDD UL / DL configuration) through tdd-UL-DL-configurationCommon in System Information Block 1 (SIB1), that is, the transmission direction type on the time slot (slot) / symbol (symbol), including U (uplink), D (downlink), and F (flexible).

[0154] The network may also change only the F-type symbols configured at the cell level to uplink or downlink for a specific UE through tdd-UL-DL-ConfigurationDedicated (ie, TDD configuration dedicated to user equipment (UE)).

[0155] The network can also dynamically indicate the uplink and downlink directions through the downlink control information (DCI) format DCI format2_0. Similarly, DCI format2_0 can only configure the symbol indicated as F in tdd-UL-DL-configurationCommon / tdd-UL-DL-ConfigurationDedicated as uplink or downlink.

[0156] The network may semi-statically indicate the cell-level SBFD configuration, that is, indicate the configuration of the symbol where the cell-level uplink subband is located; further, it may also indicate the UE-dedicated SBFD configuration, that is, indicate the configuration of the symbol where the UE-dedicated uplink subband is located.

[0157] The relevant technology only specifies a method for the terminal to determine the symbol type based on all or part of the signaling in tdd-UL-DL-ConfigCommon, tdd-UL-DL-ConfigDedicated and SFI (DCI can be used to indicate changes in the uplink and downlink time slot formats). When the network-side device indicates the SBFD configuration in addition to indicating all or part of the above signaling, the configuration of the symbol where the uplink subband is located is also related to the symbol. Therefore, the symbol type cannot be determined based on the relevant technology; and the key to how the terminal determines the final symbol type lies in how to determine the time domain position of the symbol where the uplink subband is located. Therefore, how to determine the time domain position of the symbol where the uplink subband is located is a technical problem that needs to be solved.

[0158] In order to solve the above technical problems, the embodiments of the present disclosure provide a time domain resource determination method, device, equipment and medium, wherein the method and device are based on the same application concept. Since the principles of solving the problems by the method and device are similar, the implementation of the device and method can refer to each other, and the repeated parts will not be repeated.

[0159] As shown in Figure 1, a flow chart of a method for determining time domain resources provided by an embodiment of the present disclosure is provided. The method is applied to a terminal, that is, the method is executed by the terminal. The method may include:

[0160] Step 101: Receive a first configuration and a second configuration sent by a network-side device, where the first configuration indicates a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration indicates a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol.

[0161] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol.

[0162] In some embodiments, the second configuration includes one or more of the following configurations:

[0163] TDD configuration at the cell level;

[0164] Semi-static UE-specific TDD configuration;

[0165] SFI.

[0166] Step 102: Determine a time domain position of a first symbol according to the first configuration and the second configuration.

[0167] In some embodiments, the first configuration includes a cell-level configuration of a first symbol; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration;

[0168] Here, the cell-level TDD configuration is the configuration indicated by TDD-UL-DL-ConfigCommon signaling; and the UE-specific TDD configuration is the configuration indicated by TDD-UL-DL-ConfigDedicated signaling.

[0169] That is, the UE does not support the configuration of the UE-specific first symbol, or the network-side device has not configured the configuration of the UE-specific first symbol, or the UE has not received the configuration of the UE-specific first symbol.

[0170] Accordingly, step 102, determining the time domain position of the first symbol according to the first configuration and the second configuration, includes:

[0171] a1. Determine a time domain position of the first symbol according to the cell-level configuration of the first symbol and the cell-level TDD configuration, wherein a semi-static UE-specific TDD configuration is not supported or the terminal does not expect to change the time domain position of the first symbol;

[0172] Here, not supporting or not expecting the semi-static UE-specific TDD configuration to change the time domain position of the first symbol by the terminal can be understood as the terminal receiving the semi-static UE-specific TDD configuration sent by the network-side device, but the semi-static UE-specific TDD configuration cannot cover the configuration of the first symbol determined according to the cell-level configuration of the first symbol; or not supporting the semi-static UE-specific TDD configuration to change the time domain position of the first symbol can be understood as: if the UE-specific TDD configuration indicates that the configuration of the first symbol determined according to the cell-level configuration of the first symbol is covered, the UE ignores the configuration. It should be understood that the meaning of not being able to cover means that the configuration of other signaling cannot be canceled or changed.

[0173] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, step a1, determining the time domain position of the first symbol according to the cell-level configuration of the first symbol and the cell-level TDD configuration, includes:

[0174] A time domain position of the first symbol is determined according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period.

[0175] It should be noted that the time domain position of the first symbol is repeated periodically with the TDD configuration period. In some embodiments, the symbol type corresponding to the first target position in the cell-level TDD configuration is a downlink symbol and / or a flexible symbol.

[0176] That is, the configuration of the first symbol at the cell level can override the cell-level TDD configuration indication as a downlink symbol or a flexible symbol whose symbol type is the first symbol. It should be understood that the meaning of overriding is to partially or completely cancel the configuration of other signaling, or partially or completely replace the configuration of other signaling, or to update part or all of the configuration of other signaling with the configuration of its own signaling.

[0177] In one example, the TDD-UL-DL-ConfigCommon signaling (cell-level TDD configuration) is {D,D,D,F,U,D,D,D,F,U}, where D represents a downlink time slot, F represents a flexible time slot, and U represents an uplink time slot. The cell-level configuration of the first symbol indicates that the time domain position of the symbol where the subband is located is the time slot with an index (index) of 1 to 3, where the time slot numbering starts from index = 0. Then the symbol type determined by the UE based on the TDD-UL-DL-ConfigCommon signaling and the cell-level configuration of the first symbol is {D,X,X,X,U,D,D,D,F,U}, where X represents the time domain position of the symbol where the subband is located. In this case, the symbol type of the symbol at X is the first symbol.

[0178] Alternatively, a2: determine the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration.

[0179] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D;

[0180] Correspondingly, step a2, determining the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration, includes:

[0181] a21, determining a third target position according to a first target position of the first symbol in the TDD configuration period and the TDD configuration period;

[0182] Here, the third target position is the position of the first symbol in the TDD configuration period. The third target position is repeated with the TDD configuration period as a period.

[0183] a22. Determine, based on the semi-static UE-specific TDD configuration, a symbol type of the symbol at the fourth target position as a downlink symbol D, an uplink symbol U, or a flexible symbol F; determine that other time domain positions of the third target position except the fourth target position are time domain positions of the first symbol within the TDD configuration period, and determine a time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol;

[0184] The fourth target position includes the third target position configured at a sixth target position, and the sixth target position is a time domain position where the cell-level TDD configuration indication is a flexible symbol.

[0185] It should be understood that, according to the semi-static UE-specific TDD configuration, the symbol type of the symbol at the third target position configured at the time domain position where the cell-level TDD configuration indication is the flexible symbol F is determined to be D, U or F.

[0186] That is, the semi-static UE-specific TDD configuration (configuration indicated by TDD-UL-DL-ConfigDedicated signaling) can cover the cell-level first symbol at the position indicated as F by TDD-UL-DL-ConfigCommon as D, U or F.

[0187] For example, the TDD-UL-DL-ConfigCommon signaling is {D,D,D,F,U,D,D,D,F,U}, and the configuration of the first symbol at the cell level indicates that the time domain position of the symbol in the subband is the time slot with index 1 to 3, where the time slot number starts from index = 0, that is, the symbol type determined by the UE according to the TDD-UL-DL-ConfigCommon signaling and the configuration of the first symbol at the cell level is {D,X1,X2,X3,U,D,D,D,F,U}. Since the X3 position is the position where TDD-UL-DL-ConfigCommon indicates F, according to the above rules, the semi-static UE-specific TDD configuration can change the symbol type of the symbol at the X3 position from the first symbol to D, U or F. The symbol type determined in this way is {D,X1,X2,(D / U / F),U,D,D,D,F,U}, then the time domain position of the first symbol is the X1 position and the X2 position.

[0188] Alternatively, a23, according to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodic repetition according to the TDD configuration period as the time domain position of the first symbol;

[0189] The fifth target position includes the third target position configured at the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0190] It should be understood that, according to the semi-static UE-specific TDD configuration, it is determined that the symbol type of the symbol at the third target position configured at the time domain position of the downlink symbol D indicated by the cell-level TDD configuration is D.

[0191] That is, the semi-static UE-specific TDD configuration (configuration indicated by TDD-UL-DL-ConfigDedicated signaling) can cover the cell-level first symbol at the position indicated as D by TDD-UL-DL-ConfigCommon as D, but cannot cover it as U.

[0192] In one example, the TDD-UL-DL-ConfigCommon signaling is {D,D,D,F,U,D,D,D,F,U}, and the configuration of the first symbol at the cell level indicates that the time domain position of the symbol in the subband is the time slot with index 1 to 3, where the time slot number starts from index = 0, that is, the symbol type determined by the UE according to the TDD-UL-DL-ConfigCommon signaling and the configuration of the first symbol at the cell level is {D,X1,X2,X3,U,D,D,D,F,U}. Since the X1 position and the X2 position are the positions indicated as D by TDD-UL-DL-ConfigCommon, according to the above rules, the semi-static UE-specific TDD configuration can change the symbol type of the symbol at the X1 position from the first symbol to D. The symbol type determined in this way can be {D,D,X2,X3,U,D,D,D,F,U}, then the time domain position of the first symbol is the X2 and X3 positions.

[0193] Alternatively, a24, according to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, and determine that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determine that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol;

[0194] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0195] It should be understood that according to the semi-static UE-specific TDD configuration, the symbol type of the symbol at the third target position on the time domain position where the TDD configuration indication configured at the cell level is the flexible symbol F is determined to be D, U or F; and the symbol type of the symbol at the third target position on the time domain position where the TDD configuration indication configured at the cell level is the downlink symbol D is determined to be D.

[0196] That is, the semi-static UE-specific TDD configuration (configuration indicated by TDD-UL-DL-ConfigDedicated signaling) can cover the cell-level first symbol at the position indicated as F by TDD-UL-DL-ConfigCommon as D, U or F, and can also cover the cell-level first symbol at the position indicated as D by TDD-UL-DL-ConfigCommon as D, but it cannot be covered as U.

[0197] For example, the TDD-UL-DL-ConfigCommon signaling is {D,D,D,F,U,D,D,D,F,U}, and the time domain position of the symbol where the configuration indication subband of the first symbol at the cell level is located is the time slot with index 1 to 3, where the time slot number starts from index = 0, that is, the symbol type determined by the UE according to the TDD-UL-DL-ConfigCommon signaling and the configuration of the first symbol at the cell level is {D,X1,X2,X3,U,D,D,D,F,U}. Since the X3 position is TDD-UL-DL-Conf The position indicated by igCommon is F. According to the above rules, the semi-static UE-specific TDD configuration can change the symbol type of the symbol at the X3 position from the first symbol to D, U or F. The X2 position is the position indicated by TDD-UL-DL-ConfigCommon as D. According to the above rules, the semi-static UE-specific TDD configuration can change the symbol type of the symbol at the X2 position from the first symbol to D. The final determined symbol type is {D,X1,D,(D / U / F),U,D,D,D,F,U}, then the time domain position of the first symbol is the X1 position.

[0198] It should be noted that the above a21 and a22 are combined into one solution, a21 and a23 are combined into one solution, and a21 and a24 are combined into one solution, that is, three parallel solutions.

[0199] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration;

[0200] That is, the UE supports and receives the UE-specific first symbol configuration, but the network-side device is not configured with the semi-static UE-specific TDD configuration or the UE does not receive the semi-static UE-specific TDD configuration.

[0201] Accordingly, the above step 102, determining the time domain position of the first symbol according to the first configuration and the second configuration, includes:

[0202] b1, determining a time domain position of the first symbol according to a configuration of the UE-specific first symbol and the cell-level TDD configuration;

[0203] In this solution, the cell-level first symbol configuration is not used because the UE-specific first symbol configuration overrides / changes the cell-level first symbol configuration. The UE no longer determines the time domain position of the first symbol based on the cell-level first symbol configuration.

[0204] In some embodiments, the configuration of the UE-specific first symbol indicates a second target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, step b1, determining the time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, includes:

[0205] The time domain position of the first symbol is determined according to a second target position of the first symbol within the TDD configuration period and the TDD configuration period.

[0206] It should be noted that the time domain position of the first symbol is repeated periodically with the TDD configuration period. In some embodiments, the second target position is at a time domain position where the cell-level TDD configuration indicates a downlink symbol and / or a flexible symbol. In other words, the symbol type corresponding to the second target position in the cell-level TDD configuration is a downlink symbol and / or a flexible symbol.

[0207] That is, the configuration of the first symbol at the cell level can cover the TDD configuration indication at the cell level, which indicates that the symbol type of the downlink symbol or the flexible symbol is the first symbol.

[0208] In one example, the TDD-UL-DL-ConfigCommon signaling (cell-level TDD configuration) is {D,D,D,F,U,D,D,D,F,U}, where D represents a downlink time slot, F represents a flexible time slot, and U represents an uplink time slot. The configuration of the UE-specific first symbol indicates that the time domain position of the symbol where the subband is located is the time slot with index 1 to 3, where the time slot numbering starts from index = 0. Then the symbol type determined by the UE based on the TDD-UL-DL-ConfigCommon signaling and the UE-specific configuration of the first symbol is {D,X,X,X,U,D,D,D,F,U}, where X represents the time domain position of the symbol where the subband is located. In this case, the symbol type of the symbol at X is the first symbol.

[0209] Alternatively, b2: determining the time domain position of the first symbol according to the configuration of the cell-level first symbol, the configuration of the UE-specific first symbol, and the cell-level TDD configuration.

[0210] In some embodiments, the cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, the UE-specific first symbol configuration indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, step b2, determining the time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration, includes:

[0211] Determine the position of the first symbol in the first target position within the TDD configuration period, excluding the second target position, as the time domain position of the first symbol within the TDD configuration period; determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol.

[0212] Under this scheme, the configuration of the UE-specific first symbol is used to cancel the configuration of the first symbol at the second target position, so the time domain position of the first symbol within the TDD configuration period is a position in the first target position except the second target position.

[0213] Alternatively, the first target position and the second target position are determined to be the time domain position of the first symbol within the TDD configuration period; the time domain position of the first symbol within the TDD configuration period is obtained by periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol.

[0214] This embodiment is a partial coverage / change of the configuration of the UE-specific first symbol within the TDD configuration period.

[0215] In some embodiments, the cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, step b2, determining the time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration, includes:

[0216] (1) determining a third target position according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period;

[0217] Here, the third target position is the position of the first symbol in the TDD configuration period. The third target position is repeated with the TDD configuration period as a period.

[0218] (2) determining one or more TDD configuration periods in which a third target position is valid based on the configuration of the UE-specific first symbol; and determining the time domain position of the first symbol based on the third target position and the one or more TDD configuration periods in which the third target position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position is valid over multiple TDD configuration periods;

[0219] It should be noted that the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit and multiple TDD configuration periods as indication periods, that is, the configuration of the UE-specific first symbol is repeated with multiple TDD configuration periods as a period.

[0220] Here, the third target position is repeated with the TDD configuration period as a period, indicating that there is a third target position in each TDD configuration period. Here, the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid. In other words, there is a third target position in each TDD configuration period, but which TDD configuration period the third target position is valid is indicated by the configuration of the UE-specific first symbol. The time domain position of the first symbol is determined by the third target position in one or more valid TDD configuration periods.

[0221] Alternatively, (3) determining one or more TDD configuration periods in which the third target position is valid and / or invalid based on the configuration of the UE-specific first symbol; determining the first time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is valid based on the third target position and the one or more TDD configuration periods in which the third target position is valid; and / or determining the second time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is invalid based on the one or more TDD configuration periods in which the third target position is invalid and the first symbol configuration information within the one or more TDD configuration periods in which the third target position is invalid; and determining the time domain position of the first symbol based on the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information within the one or more TDD configuration periods in which the third target position is invalid.

[0222] Here, the configuration of the UE-specific first symbol not only uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, but also indicates the first symbol configuration information in one or more TDD configuration periods in which the third target position is invalid.

[0223] Here, the third target position is repeated with the TDD configuration period as a period, which means that there is a third target position in each TDD configuration period.

[0224] It should be noted that when the configuration of the UE-specific first symbol indicates one or more TDD configuration periods in which the third target position is valid, after determining the one or more TDD configuration periods in which the third target position is valid according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the third target position is invalid are indirectly determined; when the configuration of the UE-specific first symbol indicates one or more TDD configuration periods in which the third target position is invalid, after determining the one or more TDD configuration periods in which the third target position is invalid according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the third target position is valid are indirectly determined; when the configuration of the UE-specific first symbol indicates one or more TDD configuration periods in which the third target position is valid and invalid, one or more TDD configuration periods in which the third target position is valid and invalid are directly determined according to the configuration of the UE-specific first symbol. Afterwards, the first time domain position of the first symbol is determined based on the third target position within one or more valid TDD configuration periods, and / or the second time domain position of the first symbol is determined based on the first symbol configuration information within one or more invalid TDD configuration periods and one or more TDD configuration periods indicating that the third target position is invalid; the first time domain position and the second time domain position of the first symbol are the time domain position of the first symbol.

[0225] In this embodiment, the configuration of the UE-specific first symbol cancels or changes the configuration of the first symbol in part or all of the TDD configuration periods.

[0226] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration;

[0227] That is, the UE supports and receives the UE-specific first symbol configuration and the semi-static UE-specific TDD configuration.

[0228] Accordingly, the above step 102, determining the time domain position of the first symbol according to the first configuration and the second configuration, includes:

[0229] c1. Determine a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect the time domain position of the first symbol to be changed;

[0230] In this solution, the reason why the cell-level configuration of the first symbol is not utilized is that the UE-specific configuration of the first symbol overrides / changes the cell-level configuration of the first symbol, and the UE no longer determines the time domain position of the first symbol based on the cell-level configuration of the first symbol. Here, not supporting or the terminal not expecting the semi-static UE-specific TDD configuration to change the time domain position of the first symbol can be understood as the terminal receiving the semi-static UE-specific TDD configuration sent by the network-side device, but the semi-static UE-specific TDD configuration cannot override the configuration of the first symbol determined according to the UE-specific configuration of the first symbol; or, not supporting the semi-static UE-specific TDD configuration to change the time domain position of the first symbol can be understood as: if the UE-specific TDD configuration indicates that the configuration of the first symbol determined according to the UE-specific configuration of the first symbol is overwritten, the UE ignores the configuration.

[0231] In some embodiments, the configuration of the UE-specific first symbol indicates a second target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, step c1, determining the time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, includes:

[0232] The time domain position of the first symbol is determined according to a second target position of the first symbol within the TDD configuration period and the TDD configuration period.

[0233] It should be noted that the time domain position of the first symbol is repeated periodically with the TDD configuration period. In some embodiments, the second target position is at a time domain position where the cell-level TDD configuration indicates a downlink symbol and / or a flexible symbol. In other words, the symbol type corresponding to the second target position in the cell-level TDD configuration is a downlink symbol and / or a flexible symbol.

[0234] In one example, the TDD-UL-DL-ConfigCommon signaling (cell-level TDD configuration) is {D,D,D,F,U,D,D,D,F,U}, where D represents a downlink time slot, F represents a flexible time slot, and U represents an uplink time slot. The configuration of the UE-specific first symbol indicates that the time domain position of the symbol where the subband is located is the time slot with index 1 to 3, where the time slot numbering starts from index = 0. Then the symbol type determined by the UE based on the TDD-UL-DL-ConfigCommon signaling and the UE-specific configuration of the first symbol is {D,X,X,X,U,D,D,D,F,U}, where X represents the time domain position of the symbol where the subband is located. In this case, the symbol type of the symbol at X is the first symbol.

[0235] Alternatively, c2: determining a time domain position of the first symbol according to the cell-level configuration of the first symbol, the UE-specific configuration of the first symbol, and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect the time domain position of the first symbol to be changed;

[0236] Here, not supporting or expecting the semi-static UE-specific TDD configuration to change the time domain position of the first symbol can be understood as the terminal receiving the semi-static UE-specific TDD configuration sent by the network side device, but the semi-static UE-specific TDD configuration cannot cover the configuration of the first symbol determined according to the cell-level first symbol configuration and the UE-specific first symbol configuration; or not supporting or expecting the semi-static UE-specific TDD configuration to change the time domain position of the first symbol can be understood as: if the UE-specific TDD configuration indicates coverage of the configuration of the first symbol determined according to the cell-level first symbol configuration and the UE-specific first symbol configuration, the UE ignores the configuration.

[0237] In some embodiments, the cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, the UE-specific first symbol configuration indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, step c2, determining the time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration, includes:

[0238] Determine the position of the first symbol in the first target position within the TDD configuration period, excluding the second target position, as the time domain position of the first symbol within the TDD configuration period; determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol.

[0239] Under this scheme, the configuration of the UE-specific first symbol is used to cancel the configuration of the first symbol at the second target position, so the time domain position of the first symbol within the TDD configuration period is a position in the first target position except the second target position.

[0240] Alternatively, the first target position and the second target position are determined to be the time domain position of the first symbol within the TDD configuration period; the time domain position of the first symbol within the TDD configuration period is obtained by periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol.

[0241] This embodiment is a partial coverage / change of the configuration of the UE-specific first symbol within the TDD configuration period.

[0242] In some embodiments, the cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, step c2, determining the time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration, includes:

[0243] (1) determining a third target position according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period;

[0244] Here, the third target position is the position of the first symbol in the TDD configuration period. The third target position is repeated with the TDD configuration period as a period.

[0245] (2) determining one or more TDD configuration periods in which a third target position is valid based on the configuration of the UE-specific first symbol; and determining the time domain position of the first symbol based on the third target position and the one or more TDD configuration periods in which the third target position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position is valid over multiple TDD configuration periods;

[0246] It should be noted that the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit and multiple TDD configuration periods as indication periods, that is, the configuration of the UE-specific first symbol is repeated with multiple TDD configuration periods as a period.

[0247] Here, the third target position is repeated with the TDD configuration period as a period, indicating that there is a third target position in each TDD configuration period. Here, the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid. In other words, there is a third target position in each TDD configuration period, but which TDD configuration period the third target position is valid is indicated by the configuration of the UE-specific first symbol. The time domain position of the first symbol is determined by the third target position in one or more valid TDD configuration periods.

[0248] Alternatively, (3) determining one or more TDD configuration periods in which the third target position is valid and / or invalid based on the configuration of the UE-specific first symbol; determining the first time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is valid based on the third target position and the one or more TDD configuration periods in which the third target position is valid; and / or determining the second time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is invalid based on the one or more TDD configuration periods in which the third target position is invalid and the first symbol configuration information within the one or more TDD configuration periods in which the third target position is invalid; and determining the time domain position of the first symbol based on the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information within the one or more TDD configuration periods in which the third target position is invalid.

[0249] Here, the configuration of the UE-specific first symbol not only uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, but also indicates the first symbol configuration information in one or more TDD configuration periods in which the third target position is invalid.

[0250] Here, the third target position is repeated with the TDD configuration period as a period, which means that there is a third target position in each TDD configuration period.

[0251] It should be noted that when the configuration of the UE-specific first symbol indicates one or more TDD configuration periods in which the third target position is valid, after determining the one or more TDD configuration periods in which the third target position is valid according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the third target position is invalid are indirectly determined; when the configuration of the UE-specific first symbol indicates one or more TDD configuration periods in which the third target position is invalid, after determining the one or more TDD configuration periods in which the third target position is invalid according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the third target position is valid are indirectly determined; when the configuration of the UE-specific first symbol indicates one or more TDD configuration periods in which the third target position is valid and invalid, one or more TDD configuration periods in which the third target position is valid and invalid are directly determined according to the configuration of the UE-specific first symbol. Afterwards, the first time domain position of the first symbol is determined based on the third target position within one or more valid TDD configuration periods, and / or the second time domain position of the first symbol is determined based on the first symbol configuration information within one or more invalid TDD configuration periods and one or more TDD configuration periods indicating that the third target position is invalid; the first time domain position and the second time domain position of the first symbol are the time domain position of the first symbol.

[0252] In this embodiment, the configuration of the UE-specific first symbol cancels or changes the configuration of the first symbol in part or all of the TDD configuration periods.

[0253] Alternatively, c3, determining a time domain position of the first symbol according to a cell-level configuration of the first symbol, a cell-level TDD configuration, and the semi-static UE-specific TDD configuration;

[0254] Here, the terminal ignores or interprets the configuration of the UE-specific first symbol.

[0255] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D;

[0256] Correspondingly, step c3, determining the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration, includes:

[0257] c31, determining a third target position according to the first target position of the first symbol in the TDD configuration period and the TDD configuration period;

[0258] Here, the third target position is the position of the first symbol in the TDD configuration period. The third target position is repeated with the TDD configuration period as a period.

[0259] c32. Determine, based on the semi-static UE-specific TDD configuration, the symbol type of the symbol at the fourth target position as a downlink symbol D, an uplink symbol U, or a flexible symbol F; determine that the other time domain positions of the third target position except the fourth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol;

[0260] The fourth target position includes the third target position configured at a sixth target position, and the sixth target position is a time domain position where the cell-level TDD configuration indication is a flexible symbol.

[0261] It should be understood that, according to the semi-static UE-specific TDD configuration, the symbol type of the symbol at the third target position configured at the time domain position where the cell-level TDD configuration indication is the flexible symbol F is determined to be D, U or F.

[0262] That is, the semi-static UE-specific TDD configuration (configuration indicated by TDD-UL-DL-ConfigDedicated signaling) can cover the cell-level first symbol at the position indicated as F by TDD-UL-DL-ConfigCommon as D, U or F.

[0263] For example, the TDD-UL-DL-ConfigCommon signaling is {D,D,D,F,U,D,D,D,F,U}, and the configuration of the first symbol at the cell level indicates that the time domain position of the symbol in the subband is the time slot with index 1 to 3, where the time slot number starts from index = 0, that is, the symbol type determined by the UE according to the TDD-UL-DL-ConfigCommon signaling and the configuration of the first symbol at the cell level is {D,X1,X2,X3,U,D,D,D,F,U}. Since the X3 position is the position where TDD-UL-DL-ConfigCommon indicates F, according to the above rules, the semi-static UE-specific TDD configuration can change the symbol type of the symbol at the X3 position from the first symbol to D, U or F. The symbol type determined in this way is {D,X1,X2,(D / U / F),U,D,D,D,F,U}, then the time domain position of the first symbol is the X1 position and the X2 position.

[0264] Alternatively, c33, according to the semi-static UE-specific TDD configuration, determines that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determines that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determines the time domain position of the first symbol within the TDD configuration period after periodic repetition according to the TDD configuration period as the time domain position of the first symbol;

[0265] The fifth target position includes the third target position configured at the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0266] It should be understood that, according to the semi-static UE-specific TDD configuration, it is determined that the symbol type of the symbol at the third target position configured at the time domain position of the downlink symbol D indicated by the cell-level TDD configuration is D.

[0267] That is, the semi-static UE-specific TDD configuration (configuration indicated by TDD-UL-DL-ConfigDedicated signaling) can cover the cell-level first symbol at the position indicated as D by TDD-UL-DL-ConfigCommon as D, but cannot cover it as U.

[0268] For example, the TDD-UL-DL-ConfigCommon signaling is {D,D,D,F,U,D,D,D,F,U}, and the configuration of the first symbol at the cell level indicates that the time domain position of the symbol in the subband is the time slot with index 1 to 3, where the time slot number starts from index = 0, that is, the symbol type determined by the UE according to the TDD-UL-DL-ConfigCommon signaling and the configuration of the first symbol at the cell level is {D,X1,X2,X3,U,D,D,D,F,U}. Since the X1 position and the X2 position are the positions indicated as D by TDD-UL-DL-ConfigCommon, according to the above rules, the semi-static UE-specific TDD configuration can change the symbol type of the symbol at the X1 position from the first symbol to D. The symbol type determined in this way can be {D,D,X2,X3,U,D,D,D,F,U}, then the time domain position of the first symbol is the X2 and X3 positions.

[0269] Alternatively, c34, according to the semi-static UE-specific TDD configuration, determines that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, and determines that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determines that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determines the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol;

[0270] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0271] It should be understood that according to the semi-static UE-specific TDD configuration, the symbol type of the symbol at the third target position on the time domain position where the TDD configuration indication configured at the cell level is the flexible symbol F is determined to be D, U or F; and the symbol type of the symbol at the third target position on the time domain position where the TDD configuration indication configured at the cell level is the downlink symbol D is determined to be D.

[0272] That is, the semi-static UE-specific TDD configuration (configuration indicated by TDD-UL-DL-ConfigDedicated signaling) can cover the cell-level first symbol at the position indicated as F by TDD-UL-DL-ConfigCommon as D, U or F, and can also cover the cell-level first symbol at the position indicated as D by TDD-UL-DL-ConfigCommon as D, but it cannot be covered as U.

[0273] For example, the TDD-UL-DL-ConfigCommon signaling is {D,D,D,F,U,D,D,D,F,U}, and the time domain position of the symbol where the configuration indication subband of the first symbol at the cell level is located is the time slot with index 1 to 3, where the time slot number starts from index = 0, that is, the symbol type determined by the UE according to the TDD-UL-DL-ConfigCommon signaling and the configuration of the first symbol at the cell level is {D,X1,X2,X3,U,D,D,D,F,U}. Since the X3 position is TDD-UL-DL-Conf The position indicated by igCommon is F. According to the above rules, the semi-static UE-specific TDD configuration can change the symbol type of the symbol at the X3 position from the first symbol to D, U or F. The X2 position is the position indicated by TDD-UL-DL-ConfigCommon as D. According to the above rules, the semi-static UE-specific TDD configuration can change the symbol type of the symbol at the X2 position from the first symbol to D. The final determined symbol type is {D,X1,D,(D / U / F),U,D,D,D,F,U}, then the time domain position of the first symbol is the X1 position.

[0274] It should be noted that the above c31 and c32 are combined into one solution, c31 and c33 are combined into one solution, and c31 and c34 are combined into one solution, that is, three parallel solutions.

[0275] Alternatively, c4, determine the time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

[0276] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; accordingly, step c4 includes:

[0277] c41, determining a third target position according to a first target position of the first symbol in the TDD configuration period and the TDD configuration period;

[0278] Here, the third target position is the position of the first symbol in the TDD configuration period. The third target position is repeated with the TDD configuration period as a period.

[0279] c42, according to the semi-static UE-specific TDD configuration, determining that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and determining that the other time domain positions of the third target position except the fourth target position are the time domain positions of the first symbol within the TDD configuration period; wherein the fourth target position includes the third target position configured at the sixth target position, and the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration.

[0280] Alternatively, c43, based on the semi-static UE-specific TDD configuration, determines that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determines that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period; wherein the fifth target position includes the third target position configured at the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0281] Alternatively, c44, based on the semi-static UE-specific TDD configuration, determines that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U or a flexible symbol F, and determines that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determines that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period; wherein the fourth target position includes the third target position configured at the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured at the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0282] For the detailed description of the aforementioned parts c41 to c44, please refer to the aforementioned steps c31 to c34, which will not be repeated here.

[0283] c45. Determine, based on the configuration of the UE-specific first symbol, one or more TDD configuration periods in which a first position is valid, where the first position is a time domain position of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol based on the first position and the one or more TDD configuration periods in which the first position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position over multiple TDD configuration periods is valid;

[0284] It should be noted that, for any of the above-mentioned schemes c42 to c44, the time domain position of the first symbol determined based on the third target position within the TDD configuration period is invalid if the corresponding TDD configuration period is invalid. The time domain position of the determined first symbol is valid only when the corresponding TDD configuration period is valid.

[0285] For the above content, a more popular understanding is that the configuration of the UE-specific first symbol can cancel the configuration of the time domain position of the first symbol within the TDD configuration period determined according to the cell-level first symbol configuration and the semi-static UE-specific TDD configuration in one or more TDD configuration periods, that is, the configuration on the one or more TDD configuration periods is not effective.

[0286] Alternatively, c46, determines one or more TDD configuration periods in which the first position is valid and / or invalid based on the configuration of the UE-specific first symbol, the first position being the time domain position of the first symbol within the TDD configuration period, and determines the first time domain position of the first symbol on the one or more TDD configuration periods in which the first position is valid based on the first position and the one or more TDD configuration periods in which the first position is valid, and / or determines the second time domain position of the first symbol on the one or more TDD configuration periods in which the first position is invalid based on the one or more TDD configuration periods in which the first position is invalid and the first symbol configuration information within the one or more TDD configuration periods in which the first position is invalid, and determines the time domain position of the first symbol based on the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information within the one or more TDD configuration periods in which the first position is invalid.

[0287] It should be noted that, for any of the above-mentioned schemes c42 to c44, the time domain position of the first symbol within the TDD configuration period determined based on the third target position is determined. If the corresponding TDD configuration period is valid, the time domain position of the first symbol within the TDD configuration period is determined to be valid, and the first time domain position of the first symbol is determined based on the first position (the time domain position of the first symbol within the TDD configuration period) and one or more TDD configuration periods in which the first position is valid; if the corresponding TDD configuration period is invalid, it is necessary to further determine the second time domain position of the first symbol based on the first symbol configuration information within the TDD configuration period in which the first position is invalid and one or more TDD configuration periods in which the first position is invalid; finally, the first time domain position and the second time domain position of the first symbol are the time domain position of the first symbol.

[0288] In some embodiments, the UE first determines the third target position based on the first target position of the first symbol within the TDD configuration period and the TDD configuration period; then, determines one or more valid / invalid TDD configuration periods based on the UE-specific first symbol configuration; finally, for the one or more TDD configuration periods in which the third target position is valid, further determines the time domain position of the first symbol within the one or more valid TDD configuration periods based on the semi-static UE-specific TDD configuration.

[0289] In some embodiments, the UE first determines one or more valid / invalid TDD configuration periods based on the UE-specific first symbol configuration, and then determines the time domain position of the first symbol within the TDD configuration period based on the first target position of the first symbol within the TDD configuration period, the TDD configuration period and the UE-specific TDD configuration, and finally determines the time domain position of the first symbol within the valid one or more TDD configuration periods based on the time domain position of the first symbol within the TDD configuration period and the valid / invalid one or more TDD configuration periods.

[0290] For the above content, a more popular understanding is that the configuration of the UE-specific first symbol can change the configuration of the cell-level first symbol on one or more TDD configuration periods, and the symbol type on the one or more TDD configuration periods is determined according to the configuration of the UE-specific first symbol, that is, the configuration of the UE-specific first symbol covers the configuration of the cell-level first symbol on one or more TDD configuration periods.

[0291] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0292] The time domain resource determination method of an embodiment of the present invention receives a first configuration and a second configuration sent by a network side device, wherein the first configuration is used to indicate the configuration of a first symbol, wherein the first symbol is a symbol where an uplink subband is located; the second configuration is used to indicate the configuration of a second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol; according to the first configuration and the second configuration, the time domain position of the first symbol is determined; through the above processing, the time domain position of the symbol where the uplink subband is located can be determined, and then the final symbol type is determined.

[0293] As shown in Figure 2, Figure 2 is a flow chart of a method for determining time domain resources provided by an embodiment of the present disclosure. The method is applied to a network-side device, that is, the method is executed by the network-side device. The method may include:

[0294] Step 201: Send a first configuration and a second configuration to the terminal, where the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

[0295] In some embodiments, the second configuration includes one or more of the following configurations:

[0296] TDD configuration at the cell level;

[0297] Semi-static UE-specific TDD configuration;

[0298] SFI.

[0299] In some embodiments, the first configuration includes a cell-level first symbol configuration; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration;

[0300] The cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol, or the cell-level first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol.

[0301] Here, the cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol, rather than the cell-level first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration being used to determine the time domain position of the first symbol. The reason is that the terminal side does not support or the terminal does not expect the semi-static UE-specific TDD configuration to change the time domain position of the first symbol.

[0302] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration; the cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol.

[0303] This embodiment illustrates that the network side device sends the configuration of the UE-specific first symbol to the terminal, but the terminal side does not receive the configuration of the UE-specific first symbol or the terminal side does not support the configuration of the UE-specific first symbol; and the terminal side does not support or the terminal does not expect the semi-static UE-specific TDD configuration to change the time domain position of the first symbol.

[0304] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; or the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration;

[0305] The UE-specific configuration of the first symbol and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0306] The cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0307] The cell-level first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol; or,

[0308] The cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine a time domain position of the first symbol.

[0309] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate at least one of the following:

[0310] The symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, the fourth target position includes the third target position configured at the sixth target position, the sixth target position being the time domain position at which the cell-level TDD configuration indication is a flexible symbol,

[0311] The symbol at the fifth target position is a downlink symbol D, the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration;

[0312] The third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level.

[0313] In some embodiments, the configuration of the UE-specific first symbol is used to indicate at least one of the following:

[0314] a second target position of the first symbol within the TDD configuration period;

[0315] Indicating whether the preset positions on multiple TDD configuration cycles are valid using the TDD configuration cycle as an indication unit;

[0316] First symbol configuration information in one or more TDD configuration periods where a preset position is invalid;

[0317] Among them, the preset position is the third target position or the first position, the third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level; the first position is determined by the configuration of the first symbol at the cell level, the TDD configuration at the cell level and the semi-static UE-specific TDD configuration.

[0318] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0319] The time domain resource determination method of the embodiment of the present disclosure sends a first configuration and a second configuration to the terminal, and the first configuration and the second configuration are used to determine the time domain position of the first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol, which can assist the terminal in determining the time domain position of the symbol where the uplink subband is located, and then determine the final symbol type.

[0320] As shown in FIG3 , an embodiment of the present disclosure further provides a terminal, including: a memory 320 , a transceiver 300 , and a processor 310 : the memory 320 is configured to store program instructions; the transceiver 300 is configured to transmit and receive data under the control of the processor 310 ; the processor 310 performs the following operations:

[0321] receiving a first configuration and a second configuration sent by a network-side device, wherein the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol;

[0322] According to the first configuration and the second configuration, a time domain position of a first symbol is determined.

[0323] In FIG3 , the bus architecture may include any number of interconnected buses and bridges, specifically various circuits connected together by one or more processors represented by processor 310 and memory represented by memory 320. The bus architecture may also connect various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are well known in the art and are therefore not further described herein. The bus interface provides an interface. The transceiver 300 may be a plurality of components, including a transmitter and a receiver, providing a unit for communicating with various other devices on a transmission medium, such as a wireless channel, a wired channel, an optical cable, and the like. For different user devices, the user interface 330 may also be an interface capable of connecting external or internal devices as required, and the connected devices include but are not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.

[0324] The processor 310 is responsible for managing the bus architecture and general processing, and the memory 320 can store data used by the processor 310 when performing operations.

[0325] In some embodiments, the processor 310 may be a central processing unit (CPU), an application specific integrated circuit (ASIC), a field programmable gate array (FPGA), or a complex programmable logic device (CPLD). The processor 310 may also adopt a multi-core architecture.

[0326] The processor 310 is configured to execute any of the methods provided by the embodiments of the present disclosure according to the obtained executable instructions by calling the program instructions stored in the memory. The processor 310 and the memory 320 may also be physically separated.

[0327] In some embodiments, the first configuration includes a cell-level configuration of a first symbol; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration; and the processor 310 is further configured to:

[0328] Determine the time domain position of the first symbol according to the cell-level configuration of the first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect to change the time domain position of the first symbol; or

[0329] The time domain position of the first symbol is determined according to the cell-level configuration of the first symbol, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

[0330] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; the processor 310 is further configured to:

[0331] A time domain position of the first symbol is determined according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period.

[0332] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; and the processor 310 is further configured to:

[0333] Determine the time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration; or,

[0334] The time domain position of the first symbol is determined according to the cell-level first symbol configuration, the UE-specific first symbol configuration and the cell-level TDD configuration.

[0335] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration; and the processor 310 is further configured to:

[0336] Determining a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect the time domain position of the first symbol to be changed; or

[0337] Determining a time domain position of the first symbol according to the cell-level configuration of the first symbol, the UE-specific configuration of the first symbol, and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect the time domain position of the first symbol to be changed; or

[0338] Determine the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration; or,

[0339] The time domain position of the first symbol is determined according to the cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

[0340] In some embodiments, the configuration of the UE-specific first symbol indicates a second target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; the processor 310 is further configured to:

[0341] The time domain position of the first symbol is determined according to a second target position of the first symbol within the TDD configuration period and the TDD configuration period.

[0342] In some embodiments, the cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, the UE-specific first symbol configuration indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; the processor 310 is further configured to:

[0343] Determine a position of the first symbol in the first target position within the TDD configuration period, excluding the second target position, as the time domain position of the first symbol within the TDD configuration period; determine a time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol; or,

[0344] Determine the first target position and the second target position as the time domain position of the first symbol within the TDD configuration period; determine the time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol.

[0345] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; the processor 310 is further configured to:

[0346] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0347] Determine one or more TDD configuration periods in which a third target position is valid according to the configuration of the UE-specific first symbol; and determine the time domain position of the first symbol according to the third target position and the one or more TDD configuration periods in which the third target position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position is valid over multiple TDD configuration periods; or

[0348] Determine one or more TDD configuration periods in which the third target position is valid and / or invalid according to the configuration of the UE-specific first symbol; determine the first time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is valid according to the third target position and the one or more TDD configuration periods in which the third target position is valid; and / or, determine the second time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is invalid according to the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid and the third target position; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid.

[0349] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; the processor 310 is further configured to:

[0350] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0351] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; determine that the other time domain positions of the third target position except the fourth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodic repetition according to the TDD configuration period as the time domain position of the first symbol; or,

[0352] Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol; or,

[0353] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, and determine that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determine that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol;

[0354] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0355] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; the processor 310 is further configured to:

[0356] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0357] Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and determine that other time domain positions of the third target position except the fourth target position are time domain positions of the first symbol within the TDD configuration period; or,

[0358] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that other time domain positions of the third target position except the fifth target position are time domain positions of the first symbol within the TDD configuration period; or,

[0359] Determining, according to the semi-static UE-specific TDD configuration, a symbol type of the symbol at the fourth target position as a downlink symbol D, an uplink symbol U, or a flexible symbol F, determining that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determining that other time domain positions of the third target position except the fourth target position and the fifth target position are time domain positions of the first symbol within the TDD configuration period;

[0360] Determining one or more TDD configuration periods in which a first position is valid according to a configuration of a UE-specific first symbol, where the first position is a time domain position of the first symbol within the TDD configuration period, and determining the time domain position of the first symbol according to the first position and the one or more TDD configuration periods in which the first position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position over multiple TDD configuration periods is valid; or

[0361] Determine, according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the first position is valid and / or invalid, where the first position is a time domain position of the first symbol within the TDD configuration period; determine, according to the first position and the one or more TDD configuration periods in which the first position is valid, the first time domain position of the first symbol in the one or more TDD configuration periods in which the first position is valid; and / or, according to the one or more TDD configuration periods in which the first position is invalid and the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid, determine the second time domain position of the first symbol in the one or more TDD configuration periods in which the first position is invalid; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid;

[0362] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0363] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0364] The terminal of the embodiment of the present disclosure receives a first configuration and a second configuration sent by a network side device, wherein the first configuration is used to indicate the configuration of a first symbol, wherein the first symbol is a symbol where an uplink subband is located; the second configuration is used to indicate the configuration of a second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol; according to the first configuration and the second configuration, the time domain position of the first symbol is determined. Through the above processing, the time domain position of the symbol where the uplink subband is located can be determined, and then the final symbol type is determined.

[0365] As shown in FIG4 , an embodiment of the present disclosure further provides a time domain resource determination device, which is applied to a terminal. The device includes:

[0366] A receiving module 401 is configured to receive a first configuration and a second configuration sent by a network-side device, where the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol.

[0367] The resource determination module 402 is configured to determine a time domain position of a first symbol according to the first configuration and the second configuration.

[0368] In some embodiments, the first configuration includes a cell-level configuration of a first symbol; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration; accordingly, the resource determination module 402 includes:

[0369] A first resource determining unit is configured to determine a time domain position of the first symbol according to the cell-level configuration of the first symbol and the cell-level TDD configuration, wherein a semi-static UE-specific TDD configuration is not supported or the terminal does not expect to change the time domain position of the first symbol; or

[0370] The second resource determination unit is configured to determine the time domain position of the first symbol according to the cell-level first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration.

[0371] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, the first resource determination unit is specifically configured to:

[0372] A time domain position of the first symbol is determined according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period.

[0373] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; accordingly, the resource determination module 402 includes:

[0374] A third resource determining unit is configured to determine a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration; or

[0375] The fourth resource determination unit is used to determine the time domain position of the first symbol according to the configuration of the cell-level first symbol, the configuration of the UE-specific first symbol and the cell-level TDD configuration.

[0376] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration; accordingly, the resource determination module 402 includes:

[0377] a fifth resource determination unit, configured to determine a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect to change the time domain position of the first symbol; or

[0378] a sixth resource determination unit, configured to determine a time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or the terminal does not expect to change the time domain position of the first symbol; or

[0379] a seventh resource determination unit, configured to determine the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration; or

[0380] The eighth resource determination unit is used to determine the time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

[0381] In some embodiments, the configuration of the UE-specific first symbol indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, the third resource determination unit or the fifth resource determination unit is specifically used to:

[0382] The time domain position of the first symbol is determined according to a second target position of the first symbol within the TDD configuration period and the TDD configuration period.

[0383] In some embodiments, the cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, the UE-specific first symbol configuration indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, the fourth resource determination unit or the sixth resource determination unit is specifically configured to:

[0384] Determine a position of the first symbol in the first target position within the TDD configuration period, excluding the second target position, as the time domain position of the first symbol within the TDD configuration period; determine a time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol; or,

[0385] Determine the first target position and the second target position as the time domain position of the first symbol within the TDD configuration period; determine the time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol.

[0386] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; accordingly, the fourth resource determination unit or the sixth resource determination unit is specifically configured to:

[0387] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0388] Determine one or more TDD configuration periods in which a third target position is valid according to the configuration of the UE-specific first symbol; and determine the time domain position of the first symbol according to the third target position and the one or more TDD configuration periods in which the third target position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position is valid over multiple TDD configuration periods; or

[0389] Determine one or more TDD configuration periods in which the third target position is valid and / or invalid according to the configuration of the UE-specific first symbol; determine the first time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is valid according to the third target position and the one or more TDD configuration periods in which the third target position is valid; and / or, determine the second time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is invalid according to the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid and the third target position; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid.

[0390] In some embodiments, the configuration of the cell-level first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or, the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; accordingly, the second resource determination unit or the seventh resource determination unit is specifically used to:

[0391] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0392] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; determine that the other time domain positions of the third target position except the fourth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodic repetition according to the TDD configuration period as the time domain position of the first symbol; or,

[0393] Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol; or,

[0394] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, and determine that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determine that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol;

[0395] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0396] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; accordingly, the eighth resource determination unit is specifically used to:

[0397] determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period;

[0398] Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and determine that other time domain positions of the third target position except the fourth target position are time domain positions of the first symbol within the TDD configuration period; or,

[0399] According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that other time domain positions of the third target position except the fifth target position are time domain positions of the first symbol within the TDD configuration period; or,

[0400] Determining, according to the semi-static UE-specific TDD configuration, a symbol type of the symbol at the fourth target position as a downlink symbol D, an uplink symbol U, or a flexible symbol F, determining that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determining that other time domain positions of the third target position except the fourth target position and the fifth target position are time domain positions of the first symbol within the TDD configuration period;

[0401] Determining one or more TDD configuration periods in which a first position is valid according to a configuration of a UE-specific first symbol, where the first position is a time domain position of the first symbol within the TDD configuration period, and determining the time domain position of the first symbol according to the first position and the one or more TDD configuration periods in which the first position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position over multiple TDD configuration periods is valid; or

[0402] Determine, according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the first position is valid and / or invalid, where the first position is a time domain position of the first symbol within the TDD configuration period; determine, according to the first position and the one or more TDD configuration periods in which the first position is valid, the first time domain position of the first symbol in the one or more TDD configuration periods in which the first position is valid; and / or, according to the one or more TDD configuration periods in which the first position is invalid and the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid, determine the second time domain position of the first symbol in the one or more TDD configuration periods in which the first position is invalid; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid;

[0403] Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

[0404] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0405] The time domain resource determination device of the embodiment of the present disclosure receives a first configuration and a second configuration sent by a network side device, wherein the first configuration is used to indicate the configuration of a first symbol, wherein the first symbol is a symbol where an uplink subband is located; the second configuration is used to indicate the configuration of a second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol; according to the first configuration and the second configuration, the time domain position of the first symbol is determined. Through the above processing, the time domain position of the symbol where the uplink subband is located can be determined, and then the final symbol type is determined.

[0406] It should be noted that the division of units in the embodiments of the present disclosure is schematic and is merely a logical functional division. In actual implementation, other division methods may be used. Furthermore, the functional units in the various embodiments of the present disclosure may be integrated into a single processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or software functional units.

[0407] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a processor-readable storage medium. Based on this understanding, the technical solution of the present disclosure is essentially or the part that contributes to the prior art or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor to execute all or part of the steps of the method described in each embodiment of the present disclosure. The aforementioned storage medium includes: various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.

[0408] It should be noted here that the above-mentioned device provided in the embodiment of the present disclosure can implement all the method steps implemented in the above-mentioned method embodiment and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as those in the method embodiment will not be described in detail here.

[0409] In some embodiments, a processor-readable storage medium is further provided, wherein the processor-readable storage medium stores program instructions, and the program instructions are used to cause the processor to execute the following steps:

[0410] receiving a first configuration and a second configuration sent by a network-side device, wherein the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol;

[0411] According to the first configuration and the second configuration, a time domain position of a first symbol is determined.

[0412] When the program is executed by the processor, it can implement all the implementation methods of the above-mentioned method embodiment applied to the terminal side as shown in Figure 1. To avoid repetition, they are not described here.

[0413] As shown in FIG5 , an embodiment of the present disclosure further provides a network-side device, including: a memory 520 , a transceiver 500 , and a processor 510 : the memory 520 is configured to store computer programs; the transceiver 500 is configured to send and receive data under the control of the processor 510 , and the processor 510 performs the following operations:

[0414] A first configuration and a second configuration are sent to the terminal, where the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

[0415] In FIG5 , the bus architecture may include any number of interconnected buses and bridges, specifically various circuits linked together by one or more processors represented by processor 510 and memory represented by memory 520. The bus architecture may also link together various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are well known in the art and are therefore not further described herein. The bus interface provides an interface. The transceiver 500 may be a plurality of components, namely, a transmitter and a receiver, providing a unit for communicating with various other devices over a transmission medium, such as a wireless channel, a wired channel, an optical cable, and the like. The processor 510 is responsible for managing the bus architecture and general processing, and the memory 520 may store data used by the processor 510 when performing operations.

[0416] The processor 510 may be a central processing unit (CPU), an application specific integrated circuit (ASIC), a field programmable gate array (FPGA), or a complex programmable logic device (CPLD). The processor may also adopt a multi-core architecture.

[0417] In some embodiments, the first configuration includes a cell-level first symbol configuration; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration;

[0418] The cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol, or the cell-level first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol.

[0419] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; or the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration;

[0420] The UE-specific configuration of the first symbol and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0421] The cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0422] The cell-level first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol; or,

[0423] The cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine a time domain position of the first symbol.

[0424] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate at least one of the following:

[0425] The symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, the fourth target position includes the third target position configured at the sixth target position, the sixth target position being the time domain position at which the cell-level TDD configuration indication is a flexible symbol,

[0426] The symbol at the fifth target position is a downlink symbol D, the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration;

[0427] The third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level.

[0428] In some embodiments, the configuration of the UE-specific first symbol is used to indicate at least one of the following:

[0429] a second target position of the first symbol within the TDD configuration period;

[0430] Indicating whether the preset positions on multiple TDD configuration cycles are valid using the TDD configuration cycle as an indication unit;

[0431] First symbol configuration information in one or more TDD configuration periods where a preset position is invalid;

[0432] Among them, the preset position is the third target position or the first position, the third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level; the first position is determined by the configuration of the first symbol at the cell level, the TDD configuration at the cell level and the semi-static UE-specific TDD configuration.

[0433] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0434] The network side device of the embodiment of the present disclosure sends a first configuration and a second configuration to the terminal, and the first configuration and the second configuration are used to determine the time domain position of the first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol, so as to assist the terminal in determining the time domain position of the symbol where the uplink subband is located, and then determine the final symbol type.

[0435] As shown in FIG6 , the present disclosure also provides a time domain resource determination device, which is applied to a network side device and includes:

[0436] The sending module 601 is used to send a first configuration and a second configuration to the terminal, where the first configuration and the second configuration are used to determine the time domain position of the first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

[0437] In some embodiments, the first configuration includes a cell-level first symbol configuration; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static UE-specific TDD configuration;

[0438] The cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol, or the cell-level first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol.

[0439] In some embodiments, the first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; or the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration;

[0440] The UE-specific configuration of the first symbol and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0441] The cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or,

[0442] The cell-level first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol; or,

[0443] The cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine a time domain position of the first symbol.

[0444] In some embodiments, the cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate at least one of the following:

[0445] The symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, the fourth target position includes the third target position configured at the sixth target position, the sixth target position being the time domain position at which the cell-level TDD configuration indication is a flexible symbol,

[0446] The symbol at the fifth target position is a downlink symbol D, the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration;

[0447] The third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level.

[0448] In some embodiments, the configuration of the UE-specific first symbol is used to indicate at least one of the following:

[0449] a second target position of the first symbol within the TDD configuration period;

[0450] Indicating whether the preset positions on multiple TDD configuration cycles are valid using the TDD configuration cycle as an indication unit;

[0451] First symbol configuration information in one or more TDD configuration periods where a preset position is invalid;

[0452] Among them, the preset position is the third target position or the first position, the third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level; the first position is determined by the configuration of the first symbol at the cell level, the TDD configuration at the cell level and the semi-static UE-specific TDD configuration.

[0453] In some embodiments, the first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or the terminal does not expect SFI to change the configuration of the first symbol.

[0454] The time domain resource determination device of the embodiment of the present disclosure sends a first configuration and a second configuration to the terminal, and the first configuration and the second configuration are used to determine the time domain position of the first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol, so as to assist the terminal in determining the time domain position of the symbol where the uplink subband is located, and then determine the final symbol type.

[0455] It should be noted that the division of units in the embodiments of the present disclosure is schematic and is merely a logical functional division. In actual implementation, other division methods may be used. Furthermore, the functional units in the various embodiments of the present disclosure may be integrated into a single processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or software functional units.

[0456] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a processor-readable storage medium. Based on this understanding, the technical solution of the present disclosure is essentially or the part that contributes to the prior art or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor to execute all or part of the steps of the method described in each embodiment of the present disclosure. The aforementioned storage medium includes: various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.

[0457] It should be noted here that the above-mentioned device provided in the embodiment of the present disclosure can implement all the method steps implemented in the above-mentioned method embodiment and can achieve the same technical effect. The parts and beneficial effects of this embodiment that are the same as those in the method embodiment will not be described in detail here.

[0458] In some embodiments, a processor-readable storage medium is further provided, wherein the processor-readable storage medium stores program instructions, and the program instructions are used to cause the processor to execute the following steps:

[0459] A first configuration and a second configuration are sent to the terminal, where the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

[0460] When the program is executed by the processor, it can implement all the implementation methods of the above-mentioned method embodiment applied to the network side device as shown in Figure 2. To avoid repetition, they are not described here.

[0461] In some embodiments, a computer program product is also provided, including computer instructions. When the computer instructions are executed by a processor, the various processes of the method embodiment shown in Figure 1 or Figure 2 are implemented, and the same technical effect can be achieved. To avoid repetition, they will not be repeated here.

[0462] The technical solution provided by the embodiment of the present disclosure can be applicable to a variety of systems, especially 5G systems. For example, applicable systems can be Global System of Mobile communication (GSM) system, Code Division Multiple Access (CDMA) system, Wideband Code Division Multiple Access (WCDMA) General Packet Radio Service (GPRS) system, Long Term Evolution (LTE) system, LTE Frequency Division Duplex (FDD) system, LTE Time Division Duplex (TDD) system, Advanced Long Term Evolution (LTE-A) system, Universal Mobile Telecommunication System (UMTS), Worldwide interoperability for Microwave Access (WiMAX) system, 5G New Radio (NR) system, etc. These various systems include terminal devices and network devices. The system may also include core network parts, such as the Evolved Packet System (EPS), 5G System (5GS), etc.

[0463] The terminal device involved in the embodiments of the present disclosure may be a device that provides voice and / or data connectivity to a user, a handheld device with wireless connection function, or other processing device connected to a wireless modem. In different systems, the name of the terminal device may also be different. For example, in a 5G system, the terminal device may be called User Equipment (UE). A wireless terminal device can communicate with one or more core networks (CN) via a radio access network (RAN). The wireless terminal device may be a mobile terminal device, such as a mobile phone (or "cellular" phone) and a computer with a mobile terminal device. For example, it may be a portable, pocket-sized, handheld, computer-built-in or vehicle-mounted mobile device that exchanges voice and / or data with a radio access network. For example, Personal Communication Service (PCS) phones, cordless phones, Session Initiated Protocol (SIP) phones, Wireless Local Loop (WLL) stations, Personal Digital Assistants (PDAs), and other devices. The wireless terminal device may also be referred to as a system, a subscriber unit, a subscriber station, a mobile station, a mobile station, a remote station, an access point, a remote terminal device, an access terminal device, a user terminal device, a user agent, or a user device, but is not limited in the embodiments of the present disclosure.

[0464] The network device involved in the embodiments of the present disclosure may be a base station, which may include multiple cells providing services to terminals. Depending on the specific application scenario, the base station may also be called an access point, or may be a device in an access network that communicates with a wireless terminal device through one or more sectors on an air interface, or may be called another name. The network device may be used to interchange received air frames with Internet Protocol (IP) packets, acting as a router between the wireless terminal device and the rest of the access network, wherein the rest of the access network may include an Internet Protocol (IP) communication network. The network device may also coordinate the attribute management of the air interface. For example, the network device involved in the embodiments of the present disclosure may be a base transceiver station (BTS) in the Global System for Mobile communications (GSM) or code division multiple access (CDMA), a network device (NodeB) in wide-band code division multiple access (WCDMA), an evolutionary Node B (eNB or e-NodeB) in the Long Term Evolution (LTE) system, a 5G base station (gNB) in the 5G network architecture (next generation system), a home evolved Node B (HeNB), a relay node, a femto, a pico, etc., and is not limited in the embodiments of the present disclosure. In some network structures, the network device may include a centralized unit (CU) node and a distributed unit (DU) node, and the centralized unit and the distributed unit may also be geographically separated.

[0465] Network devices and terminal devices can each use one or more antennas for Multiple Input Multiple Output (MIMO) transmission. MIMO transmission can be single-user MIMO (SU-MIMO) or multi-user MIMO (MU-MIMO). Depending on the form and number of antenna combinations, MIMO transmission can be two-dimensional multiple input multiple output (2D-MIMO), three-dimensional multiple input multiple output (3D-MIMO), full-dimensional multiple-input multiple-output (FD-MIMO), or massive multiple input multiple output (massive-MIMO). It can also use diversity transmission, precoded transmission, or beamforming transmission.

[0466] Those skilled in the art will appreciate that the embodiments of the present disclosure may be provided as methods, systems, or computer program products. Therefore, the present disclosure may take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Furthermore, the present disclosure may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage and optical storage, etc.) containing computer-usable program code.

[0467] The present disclosure is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of the present disclosure. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer-executable instructions. These computer-executable instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device produce a device for implementing the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.

[0468] These processor-executable instructions may also be stored in a processor-readable memory that can direct a computer or other programmable data processing device to operate in a specific manner, so that the instructions stored in the processor-readable memory produce a product including an instruction device that implements the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.

[0469] These processor-executable instructions may also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, whereby the instructions executed on the computer or other programmable device provide steps for implementing the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.

[0470] In addition, it should be noted that, in the apparatus and method of the present invention, it is obvious that each component or each step can be decomposed and / or recombined. These decompositions and / or recombinations should be regarded as equivalent schemes of the present invention. Moreover, the steps of performing the above-mentioned series of processing can naturally be performed in chronological order according to the order of description, but it is not necessary to perform them in chronological order, and some steps can be performed in parallel or independently of each other. For those of ordinary skill in the art, it will be understood that all or any steps or components of the method and apparatus of the present invention can be implemented in any computing device (including processors, storage media, etc.) or a network of computing devices in hardware, firmware, software or a combination thereof, which can be achieved by those of ordinary skill in the art using their basic programming skills after reading the description of the present invention.

[0471] It should be noted that it should be understood that the division of the above modules is merely a division of logical functions. In actual implementation, they can be fully or partially integrated into one physical entity, or they can be physically separated. Moreover, these modules can all be implemented in the form of software called by a processing element; or they can all be implemented in the form of hardware; or some modules can be implemented in the form of software called by a processing element, and some modules can be implemented in the form of hardware. For example, a module can be a separately established processing element, or it can be integrated into a chip of the above-mentioned device. In addition, it can also be stored in the memory of the above-mentioned device in the form of program code, and called by a processing element of the above-mentioned device to perform the functions of the above-mentioned module. The implementation of other modules is similar. In addition, these modules can all or partly be integrated together, or they can be implemented independently. The processing element described here can be an integrated circuit with signal processing capabilities. During implementation, each step of the above method or each module above can be completed by an integrated logic circuit of hardware in the processor element or instructions in the form of software.

[0472] For example, each module, unit, sub-unit or sub-module can be one or more integrated circuits configured to implement the above method, such as one or more application-specific integrated circuits (ASICs), one or more digital signal processors (DSPs), or one or more field programmable gate arrays (FPGAs). For another example, when a module is implemented by scheduling program code through a processing element, the processing element can be a general-purpose processor, such as a central processing unit (CPU) or other processor that can call program code. For another example, these modules can be integrated together and implemented in the form of a system-on-a-chip (SOC).

[0473] The terms "first," "second," and the like in the specification and claims of the present disclosure are used to distinguish similar objects and are not necessarily used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present disclosure described herein may be implemented in a sequence other than that illustrated or described herein. In addition, the terms "including" and "having," and any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or device that includes a series of steps or units need not be limited to those steps or units explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to these processes, methods, products, or devices. In addition, the use of "and / or" in the specification and claims to indicate at least one of the connected objects, for example, A and / or B and / or C, means that seven situations are included: A alone, B alone, C alone, both A and B present, both B and C present, both A and C present, and all A, B, and C present. Similarly, the use of "at least one of A and B" in the specification and claims should be understood to mean "A alone, B alone, or both A and B present."

[0474] Obviously, those skilled in the art may make various changes and modifications to the present disclosure without departing from the spirit and scope of the present disclosure. Thus, if these modifications and variations of the present disclosure fall within the scope of the claims of the present disclosure and their equivalents, the present disclosure is intended to include these modifications and variations.

Claims

1. A method for determining time domain resources, applied to a terminal, the method comprising: receiving a first configuration and a second configuration sent by a network-side device, where the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; The second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol; According to the first configuration and the second configuration, a time domain position of a first symbol is determined.

2. The method according to claim 1, wherein The first configuration includes a cell-level configuration of a first symbol; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static terminal UE-specific TDD configuration; The determining, according to the first configuration and the second configuration, a time domain position of the first symbol includes: determining a time domain position of the first symbol according to the cell-level configuration of the first symbol and the cell-level TDD configuration, wherein a semi-static UE-specific TDD configuration that changes the time domain position of the first symbol is not supported or expected; or The time domain position of the first symbol is determined according to the cell-level configuration of the first symbol, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

3. The method according to claim 2, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; The determining, according to the cell-level configuration of the first symbol and the cell-level TDD configuration, a time domain position of the first symbol includes: A time domain position of the first symbol is determined according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period.

4. The method according to claim 1, wherein The first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; The determining, according to the first configuration and the second configuration, a time domain position of the first symbol includes: Determining a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration; or, The time domain position of the first symbol is determined according to the configuration of the cell-level first symbol, the configuration of the UE-specific first symbol, and the cell-level TDD configuration.

5. The method according to claim 1, wherein The first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration; The determining, according to the first configuration and the second configuration, a time domain position of the first symbol includes: determining a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or expected to change the time domain position of the first symbol; or Determining a time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or expected to change the time domain position of the first symbol; or Determine the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration; or, The time domain position of the first symbol is determined according to the cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

6. The method according to claim 4 or 5, wherein: The UE-specific configuration of the first symbol indicates a second target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; The determining, according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, a time domain position of the first symbol includes: The time domain position of the first symbol is determined according to a second target position of the first symbol within the TDD configuration period and the TDD configuration period.

7. The method according to claim 4 or 5, wherein: The cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, the UE-specific first symbol configuration indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; The determining, according to the cell-level configuration of the first symbol, the UE-specific configuration of the first symbol, and the cell-level TDD configuration, the time domain position of the first symbol includes: Determine a position of the first symbol in the first target position within the TDD configuration period, excluding the second target position, as the time domain position of the first symbol within the TDD configuration period; determine a time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol; or, Determine the first target position and the second target position as the time domain position of the first symbol within the TDD configuration period; determine the time domain position obtained by periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol.

8. The method according to claim 4 or 5, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; The determining, according to the cell-level configuration of the first symbol, the UE-specific configuration of the first symbol, and the cell-level TDD configuration, the time domain position of the first symbol includes: determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period; Determine one or more TDD configuration periods in which a third target position is valid according to the configuration of the UE-specific first symbol; and determine the time domain position of the first symbol according to the third target position and the one or more TDD configuration periods in which the third target position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position is valid over multiple TDD configuration periods; or Determine one or more TDD configuration periods in which the third target position is valid and / or invalid according to the configuration of the UE-specific first symbol; determine the first time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is valid according to the third target position and the one or more TDD configuration periods in which the third target position is valid; and / or, determine the second time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is invalid according to the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid and the third target position; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the third target position is invalid.

9. The method according to claim 2 or 5, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; The determining, according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration, a time domain position of the first symbol includes: determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period; According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; determine that the other time domain positions of the third target position except the fourth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodic repetition according to the TDD configuration period as the time domain position of the first symbol; or, Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol; or, According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, and determine that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determine that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol; Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

10. The method according to claim 5, wherein The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; The determining, according to the cell-level configuration of the first symbol, the UE-specific configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration, the time domain position of the first symbol includes: determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period; Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and determine that other time domain positions of the third target position except the fourth target position are time domain positions of the first symbol within the TDD configuration period; or, According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that other time domain positions of the third target position except the fifth target position are time domain positions of the first symbol within the TDD configuration period; or, Determining, according to the semi-static UE-specific TDD configuration, a symbol type of the symbol at the fourth target position as a downlink symbol D, an uplink symbol U, or a flexible symbol F, determining that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determining that other time domain positions of the third target position except the fourth target position and the fifth target position are time domain positions of the first symbol within the TDD configuration period; Determining one or more TDD configuration periods in which a first position is valid according to a configuration of a UE-specific first symbol, where the first position is a time domain position of the first symbol within the TDD configuration period, and determining the time domain position of the first symbol according to the first position and the one or more TDD configuration periods in which the first position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position over multiple TDD configuration periods is valid; or Determine, according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the first position is valid and / or invalid, where the first position is a time domain position of the first symbol within the TDD configuration period; determine, according to the first position and the one or more TDD configuration periods in which the first position is valid, the first time domain position of the first symbol in the one or more TDD configuration periods in which the first position is valid; and / or, according to the one or more TDD configuration periods in which the first position is invalid and the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid, determine the second time domain position of the first symbol in the one or more TDD configuration periods in which the first position is invalid; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid; Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

11. The method according to claim 1, wherein The first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or expected to change the configuration of the first symbol.

12. A method for determining time domain resources, applied to a network-side device, the method comprising: A first configuration and a second configuration are sent to the terminal, where the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

13. The method according to claim 12, wherein: The first configuration includes a cell-level first symbol configuration; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static terminal UE-specific TDD configuration; The cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol, or the cell-level first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol.

14. The method according to claim 12, wherein: The first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; or the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration; The UE-specific configuration of the first symbol and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or, The cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or, The cell-level first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol; or, The cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine a time domain position of the first symbol.

15. The method according to claim 13 or 14, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate at least one of the following: The symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, the fourth target position includes the third target position configured at the sixth target position, the sixth target position being the time domain position at which the cell-level TDD configuration indication is a flexible symbol, The symbol at the fifth target position is a downlink symbol D, the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration; The third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level.

16. The method according to claim 14, wherein The configuration of the UE-specific first symbol is used to indicate at least one of the following: a second target position of the first symbol within the TDD configuration period; Indicating whether the preset positions on multiple TDD configuration cycles are valid using the TDD configuration cycle as an indication unit; First symbol configuration information in one or more TDD configuration periods where a preset position is invalid; Among them, the preset position is the third target position or the first position, the third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level; the first position is determined by the configuration of the first symbol at the cell level, the TDD configuration at the cell level and the semi-static UE-specific TDD configuration.

17. The method according to claim 12, wherein: The first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or expected to change the configuration of the first symbol.

18. A terminal comprising: Memory, transceiver, processor: Memory, used to store program instructions; a transceiver, configured to transmit and receive data under the control of the processor, wherein the processor performs the following operations: receiving a first configuration and a second configuration sent by a network-side device, wherein the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol; According to the first configuration and the second configuration, a time domain position of a first symbol is determined. The terminal according to claim 18 , wherein: The first configuration includes a cell-level configuration of a first symbol; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static terminal UE-specific TDD configuration; and the processor is further configured to: determining a time domain position of the first symbol according to the cell-level configuration of the first symbol and the cell-level TDD configuration, wherein a semi-static UE-specific TDD configuration that changes the time domain position of the first symbol is not supported or expected; or The time domain position of the first symbol is determined according to the cell-level configuration of the first symbol, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

20. The terminal according to claim 19, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; and the processor is further configured to: A time domain position of the first symbol is determined according to a first target position of the first symbol within a TDD configuration period and the TDD configuration period.

21. The terminal according to claim 18, wherein: The first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; and the processor is further configured to: Determine the time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration; or, The time domain position of the first symbol is determined according to the configuration of the cell-level first symbol, the configuration of the UE-specific first symbol, and the cell-level TDD configuration.

22. The terminal according to claim 18, wherein The first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration; and the processor is further configured to: determining a time domain position of the first symbol according to the configuration of the UE-specific first symbol and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or expected to change the time domain position of the first symbol; or Determining a time domain position of the first symbol according to the cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration, wherein the semi-static UE-specific TDD configuration is not supported or expected to change the time domain position of the first symbol; or Determine the time domain position of the first symbol according to the cell-level configuration of the first symbol, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration; or, The time domain position of the first symbol is determined according to the cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration.

23. The terminal according to claim 21 or 22, wherein: The UE-specific configuration of the first symbol indicates a second target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; and the processor is further configured to: The time domain position of the first symbol is determined according to a second target position of the first symbol within the TDD configuration period and the TDD configuration period.

24. The terminal according to claim 21 or 22, wherein: The cell-level first symbol configuration indicates a first target position of the first symbol within a TDD configuration period, the UE-specific first symbol configuration indicates a second target position of the first symbol within the TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; and the processor is further configured to: Determine a position of the first symbol in a first target position within a TDD configuration period, excluding the second target position, as a time domain position of the first symbol within the TDD configuration period; Determine the time domain position of the first symbol within the TDD configuration period after periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol; or, Determine the first target position and the second target position as time domain positions of the first symbol within a TDD configuration period; The time domain position of the first symbol within the TDD configuration period is obtained by periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol.

25. The terminal according to claim 21 or 22, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, and the cell-level TDD configuration indicates a TDD configuration period; and the processor is further configured to: determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period; Determine one or more TDD configuration periods valid for a third target position according to the configuration of the UE-specific first symbol; and determining the time domain position of the first symbol according to the third target position and one or more TDD configuration periods in which the third target position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid; or, Determine one or more TDD configuration periods in which a third target position is valid and / or invalid according to the configuration of the UE-specific first symbol; According to the third target position and one or more TDD configuration periods in which the third target position is valid, determine the first time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is valid; and / or, according to one or more TDD configuration periods in which the third target position is invalid and the first symbol configuration information within one or more TDD configuration periods in which the third target position is invalid, determine the second time domain position of the first symbol on the one or more TDD configuration periods in which the third target position is invalid; and determine the time domain position of the first symbol based on the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the third target position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information within the one or more TDD configuration periods in which the third target position is invalid.

26. The terminal according to claim 19 or 22, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; the processor is further configured to: determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period; According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; determine that the other time domain positions of the third target position except the fourth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodic repetition according to the TDD configuration period as the time domain position of the first symbol; or, Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that the other time domain positions of the third target position except the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position of the first symbol within the TDD configuration period after periodically repeating the time domain position according to the TDD configuration period as the time domain position of the first symbol; or, According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, and determine that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determine that the other time domain positions of the third target position except the fourth target position and the fifth target position are the time domain positions of the first symbol within the TDD configuration period, and determine the time domain position obtained after periodically repeating the time domain position of the first symbol within the TDD configuration period according to the TDD configuration period as the time domain position of the first symbol; Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

27. The terminal according to claim 22, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, the semi-static UE-specific TDD configuration is used to indicate that the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and / or the semi-static UE-specific TDD configuration indicates that the symbol at the fifth target position is a downlink symbol D; the processor is further configured to: determining a third target position according to a first target position of the first symbol within the TDD configuration period and the TDD configuration period; Determine, according to the semi-static UE-specific TDD configuration, that the symbol type of the symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F; and determine that other time domain positions of the third target position except the fourth target position are time domain positions of the first symbol within the TDD configuration period; or, According to the semi-static UE-specific TDD configuration, determine that the symbol type of the symbol at the fifth target position is a downlink symbol D; and determine that other time domain positions of the third target position except the fifth target position are time domain positions of the first symbol within the TDD configuration period; or, Determining, according to the semi-static UE-specific TDD configuration, a symbol type of the symbol at the fourth target position as a downlink symbol D, an uplink symbol U, or a flexible symbol F, determining that the symbol type of the symbol at the fifth target position is a downlink symbol D, and determining that other time domain positions of the third target position except the fourth target position and the fifth target position are time domain positions of the first symbol within the TDD configuration period; Determining one or more TDD configuration periods in which a first position is valid according to a configuration of a UE-specific first symbol, where the first position is a time domain position of the first symbol within the TDD configuration period, and determining the time domain position of the first symbol according to the first position and the one or more TDD configuration periods in which the first position is valid, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position over multiple TDD configuration periods is valid; or Determine, according to the configuration of the UE-specific first symbol, one or more TDD configuration periods in which the first position is valid and / or invalid, where the first position is a time domain position of the first symbol within the TDD configuration period; determine, according to the first position and the one or more TDD configuration periods in which the first position is valid, the first time domain position of the first symbol in the one or more TDD configuration periods in which the first position is valid; and / or, according to the one or more TDD configuration periods in which the first position is invalid and the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid, determine the second time domain position of the first symbol in the one or more TDD configuration periods in which the first position is invalid; and determine the time domain position of the first symbol according to the first time domain position and the second time domain position, wherein the configuration of the UE-specific first symbol uses the TDD configuration period as an indication unit to indicate whether the first position on multiple TDD configuration periods is valid, and the configuration of the UE-specific first symbol indicates the first symbol configuration information in the one or more TDD configuration periods in which the first position is invalid; Among them, the fourth target position includes the third target position configured on the sixth target position, the sixth target position is the time domain position of the flexible symbol indicated by the cell-level TDD configuration, and the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration.

28. The terminal according to claim 18, wherein: The first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or expected to change the configuration of the first symbol.

29. A time domain resource determination device, applied to a terminal, the device comprising: a receiving module, configured to receive a first configuration and a second configuration sent by a network-side device, wherein the first configuration is used to indicate a configuration of a first symbol, where the first symbol is a symbol where an uplink subband is located; and the second configuration is used to indicate a configuration of a second symbol, where the second symbol is an uplink symbol, a downlink symbol, and / or a flexible symbol; A resource determination module is used to determine the time domain position of the first symbol according to the first configuration and the second configuration.

30. A network-side device, comprising: Memory, transceiver, processor: Memory, used to store program instructions; a transceiver, configured to transmit and receive data under the control of the processor, wherein the processor performs the following operations: A first configuration and a second configuration are sent to the terminal, where the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

31. The network side device according to claim 30, wherein: The first configuration includes a cell-level first symbol configuration; the second configuration includes a cell-level time division duplex (TDD) configuration and a semi-static terminal UE-specific TDD configuration; The cell-level first symbol configuration and the cell-level TDD configuration are used to determine the time domain position of the first symbol, or the cell-level first symbol configuration, the cell-level TDD configuration and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol.

32. The network side device according to claim 30, wherein: The first configuration includes a cell-level first symbol configuration and a UE-specific first symbol configuration; the second configuration includes a cell-level TDD configuration; or the second configuration includes a cell-level TDD configuration and a semi-static UE-specific TDD configuration; The UE-specific configuration of the first symbol and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or, The cell-level first symbol configuration, the UE-specific first symbol configuration, and the cell-level TDD configuration are used to determine the time domain position of the first symbol; or, The cell-level first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine the time domain position of the first symbol; or, The cell-level first symbol configuration, the UE-specific first symbol configuration, the cell-level TDD configuration, and the semi-static UE-specific TDD configuration are used to determine a time domain position of the first symbol.

33. The network side device according to claim 31 or 32, wherein: The cell-level configuration of the first symbol indicates a first target position of the first symbol within a TDD configuration period, the cell-level TDD configuration indicates a TDD configuration period, and the semi-static UE-specific TDD configuration is used to indicate at least one of the following: The symbol at the fourth target position is a downlink symbol D, an uplink symbol U, or a flexible symbol F, the fourth target position includes the third target position configured at the sixth target position, the sixth target position being the time domain position at which the cell-level TDD configuration indication is a flexible symbol, The symbol at the fifth target position is a downlink symbol D, the fifth target position includes the third target position configured on the seventh target position, and the seventh target position is the time domain position of the downlink symbol indicated by the cell-level TDD configuration; The third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level.

34. The network side device according to claim 32, wherein: The configuration of the UE-specific first symbol is used to indicate at least one of the following: a second target position of the first symbol within the TDD configuration period; Indicating whether the preset positions on multiple TDD configuration cycles are valid using the TDD configuration cycle as an indication unit; First symbol configuration information in one or more TDD configuration periods where a preset position is invalid; Among them, the preset position is the third target position or the first position, the third target position is determined by the configuration of the first symbol at the cell level and the TDD configuration at the cell level; the first position is determined by the configuration of the first symbol at the cell level, the TDD configuration at the cell level and the semi-static UE-specific TDD configuration.

35. The network side device according to claim 30, wherein: The first configuration includes a cell-level configuration of a first symbol and / or a UE-specific configuration of a first symbol; the second configuration includes slot format indication information SFI, wherein SFI is not supported or expected to change the configuration of the first symbol.

36. A time domain resource determination device, applied to a network-side device, comprising: A sending module, used to send a first configuration and a second configuration to a terminal, wherein the first configuration and the second configuration are used to determine the time domain position of a first symbol; wherein the first configuration is used to indicate the configuration of the first symbol, wherein the first symbol is the symbol where the uplink subband is located; and the second configuration is used to indicate the configuration of the second symbol, wherein the second symbol is an uplink symbol, a downlink symbol and / or a flexible symbol.

37. A processor-readable storage medium, wherein the processor-readable storage medium stores a computer program, wherein the computer program is used to cause the processor to execute the steps of the time domain resource determination method according to any one of claims 1 to 11, or to execute the steps of the time domain resource determination method according to any one of claims 12 to 17.

38. A computer program product, comprising computer instructions, which, when executed by a processor, implement the steps of the time domain resource determination method according to any one of claims 1 to 11, or implement the steps of the time domain resource determination method according to any one of claims 12 to 17.

Citation Information

Patent Citations

  • Frame structure configuration method and device, communication equipment and storage medium

    CN115884382A

  • Resource determination method and device and storage medium

    CN116326103A

  • Resource configuration method, system and device, communication equipment and storage medium

    CN116868660A

  • Configuring uplink channel repetitions that cross slot boundaries in time domain duplexing (TDD) pattern configurations

    US20220104219A1