Transmission resource determination method and device, equipment and storage medium

CN120584530APending Publication Date: 2025-09-02GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD
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Patent Information

Application Number
CN202380092290.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-01-31
Publication Date
2025-09-02

AI Technical Summary

Technical Problem

In cross-duplex technology, how to effectively configure and use uplink transmission resources and downlink transmission resources has not been effectively solved, affecting the transmission efficiency and delay performance of the 5G network.

Method used

By implementing a transmission resource determination method based on subband full-duplex configuration on the terminal side, preconfigured and semi-static scheduling resources are used to dynamically activate and manage uplink and downlink transmission resources to ensure effective resource utilization and conflict handling.

Benefits of technology

It improves the transmission efficiency and delay performance of the 5G network, reduces transmission delay, ensures effective resource utilization and conflict management, and meets the high delay requirements of URLLC services.

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Abstract

The invention discloses a transmission resource determination method and device, equipment and a storage medium, and relates to the technical field of communication. The method is executed by a terminal, and the method comprises the step of determining an uplink transmission resource and / or a downlink transmission resource based on first sub-band configuration and / or transmission resource configuration.
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Description

Method, device, equipment and storage medium for determining transmission resources Technical Field

[0001] The present application relates to the field of communication technology, and in particular to a method, apparatus, device and storage medium for determining transmission resources. Background Art

[0002] Different from time division duplex (TDD) and frequency division duplex (FDD) technologies, the 3rd Generation Partnership Project (3GPP) introduced cross duplex (XDD) technology, which allows data to be sent or received simultaneously on subbands of the same subframe. This technology is mainly implemented on the network equipment side.

[0003] Based on this, there is the possibility that network devices can configure uplink subbands in downlink time slots or symbols (or flexible time slots or symbols). Regarding XDD technology, how to use and configure uplink transmission resources and / or downlink transmission resources is still under discussion.

[0004] Summary of the Invention

[0005] The embodiments of the present application provide a method, apparatus, device, and storage medium for determining transmission resources, and provide a method for determining transmission resources. The technical solution is as follows:

[0006] According to one aspect of the present application, a method for determining transmission resources is provided. The method is performed by a terminal, and the method includes:

[0007] Based on the first subband configuration and / or the transmission resource configuration, uplink transmission resources and / or downlink transmission resources are determined.

[0008] According to one aspect of the present application, a device for determining transmission resources is provided, the device including:

[0009] The determination module is configured to determine uplink transmission resources and / or downlink transmission resources based on the first subband configuration and / or the transmission resource configuration.

[0010] According to one aspect of the present application, a terminal is provided, including a processor; the processor is configured to implement the method for determining transmission resources as described above.

[0011] According to one aspect of the present application, a computer-readable storage medium is provided, in which a computer program is stored. The computer program is configured to be executed by a processor to implement the method for determining transmission resources as described above.

[0012] According to one aspect of the present application, a chip is provided. The chip includes a programmable logic circuit and / or program instructions. When the chip is running, it is used to implement the method for determining the transmission resources as described above.

[0013] According to one aspect of the present application, a computer program product or computer program is provided, which includes computer instructions stored in a computer-readable storage medium, and a processor reads and executes the computer instructions from the computer-readable storage medium to implement the method for determining transmission resources as described above.

[0014] The technical solutions provided by the embodiments of the present application include at least the following beneficial effects:

[0015] A method for determining transmission resources is provided, for determining uplink transmission resources and / or downlink transmission resources based on a first subband configuration and / or a transmission resource configuration. The first subband configuration may be a subband full-duplex (SBFD) configuration, and the transmission resources may be configured grant (CG) resources and / or semi-persistent scheduling (SPS) resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0017] FIG1 is a schematic diagram of a 5G network architecture provided by an exemplary embodiment of the present application;

[0018] FIG2 is a schematic diagram of an SBFD subframe provided by an exemplary embodiment of the present application;

[0019] FIG3 is a flow chart of a method for determining transmission resources provided by an exemplary embodiment of the present application;

[0020] FIG4 is a flowchart of a method for determining transmission resources provided by an exemplary embodiment of the present application;

[0021] FIG5 is a schematic diagram of an SBFD timeslot configuration provided by an exemplary embodiment of the present application;

[0022] FIG6 is a flowchart of a method for determining transmission resources provided by an exemplary embodiment of the present application;

[0023] FIG7 is a schematic diagram of an SBFD timeslot configuration provided by an exemplary embodiment of the present application;

[0024] FIG8 is a schematic diagram of a device for determining transmission resources provided by an exemplary embodiment of the present application;

[0025] FIG9 is a schematic structural diagram of a communication device provided by an exemplary embodiment of the present application. DETAILED DESCRIPTION

[0026] In order to make the objectives, technical solutions and advantages of this application clearer, the implementation methods of this application will be further described in detail below with reference to the accompanying drawings.

[0027] Referring to Figure 1, in the 5th Generation (5G) communication, its network system architecture includes: User Equipment (UE), (Radio) Access Network (R)AN), User Plane Function (UPF), Data Network (DN) and Control Plane Function.

[0028] Among them, the control plane functions include: Access and Mobility Management Function (AMF), Session Management Function (SMF), Policy Control Function (PCF) and Unified Data Manager (UDM), Application Function (AF), Network Slice Selection Function (NSSF), and Authentication Server Function (AUSF).

[0029] Among them, the UE establishes an access layer connection with the AN through the Uu air interface, exchanges access layer messages and performs wireless data transmission. The UE establishes a non-access layer (NAS) connection with the AMF through the N1 interface and exchanges NAS messages. AMF is the mobility management function in the core network, and SMF is the session management function in the core network. In addition to managing the mobility of the UE, the AMF is also responsible for forwarding session management-related messages between the UE and the SMF. PCF is the policy management function in the core network, responsible for formulating policies related to UE mobility management, session management, billing, etc. UPF is the user plane function in the core network, which transmits data with the external data network through the N6 interface and with the AN through the N3 interface.

[0030] Uplink and downlink configuration:

[0031] For Time Division Duplex (TDD) systems, uplink and downlink configurations are used to configure or indicate the transmission direction of each symbol. The 5G New Radio (NR) system uses one or more of the following three methods to indicate the transmission direction of each symbol: uplink, downlink, and flexible. Illustratively, the three methods include: TDD-Uplink (UL)-Downlink (DL)-ConfigCommon, TDD-UL-DL-ConfigDedicated, and Slot Format Indication (SFI).

[0032] Among them, TDD-UL-DL-ConfigCommon and TDD-UL-DL-ConfigDedicated are high-layer signaling and are cell-specific configurations. The former is sent to all users in the cell through broadcast information, and the latter is sent independently to the required users through Radio Resource Control (RRC) signaling. The details are as follows:

[0033] TDD-UL-DL-ConfigCommon information element

[0034] TDD-UL-DL-ConfigDedicated information element

[0035] Illustratively, SFI indicates the transmission direction of each symbol on each carrier through the user group's Downlink Control Information (DCI) or DCI format (DCI format 2_0). Because SFI is dynamic signaling, it can indicate the semi-statically configured flexible time slot / symbol as a specific transmission method, including uplink or downlink.

[0036] Enhancements to Configured Grant (CG) in Ultra-Reliable Low-Latency Communications (URLLC):

[0037] NR supports semi-persistent scheduling, which corresponds to Semi-Persistent Scheduling (SPS) for the downlink and CG for the uplink. SPS is configured by RRC and then activated by Downlink Control Information (DCI) before use. CG is divided into two types, which can be expressed as type 1 CG type (type 1CG) and type 2 CG type (type 2CG). Type 1CG is the CG used immediately after RRC configuration, while type 2CG is the CG used after RRC configuration and DCI activation.

[0038] To support the high latency requirements of URLLC services, URLLC enhances the CG cycle and supports service cycles of any slot-level granularity.

[0039] To support various URLLC services and the high latency requirements of URLLC services, URLLC introduces multiple CGs. Different CGs configure different Hybrid Automatic Repeat-reQuest (HARQ) processes.

[0040] When CG is activated, single CG activation is adopted. When CG is deactivated, single CG deactivation or CG joint deactivation is supported.

[0041] Due to the conflict between CG resources and other resources, in order to ensure that the Media Access Control Protocol Data Unit (MAC PDU) that has been packaged in the CG resources is not discarded / transmitted as soon as possible, that is, the degraded MAC PDU (Deprioritized MAC PDU) is not discarded / transmitted as soon as possible, automatic transmission for CG is introduced. For the CG that cannot be transmitted due to resource conflict, the subsequent CG resources in the same HARQ process and the same CG configuration can be used for new transmission. The use of automatic transmission is determined by automatic sending (autonomousTx).

[0042] If the physical layer priorities are different: there is a conflict between CG and CG, the MAC can indicate one or more MAC PDUs to the physical layer. Similarly, if there is a conflict between data and scheduling request (SR), the MAC can also indicate the SR and MAC PDU to the physical layer.

[0043] In some embodiments, when low-priority resources appear, such as configuring logical channel (LCH)-based prioritization (expressed as LCH-based prioritization) and autonomousTx, the configured grant retransmission timer (CGRT) is stopped.

[0044] Subband Full Duplex (SBFD) symbol / time slot:

[0045] Schematically, the SBFD symbol / time slot can also be understood as the uplink subband in the downlink symbol / time slot (UL subband in DL symbol / slot). Figure 2 shows a schematic diagram of an SBFD subframe provided by an exemplary embodiment of the present application, in which the middle subband of a downlink time slot is configured as an uplink subband.

[0046] Different from TDD and FDD technologies, the 3rd Generation Partnership Project (3GPP) introduced cross duplexing (XDD), which allows data to be sent or received simultaneously on subbands within the same subframe. XDD is primarily implemented on the network side, while the terminal side maintains the existing state, which means that only data can be sent or received within a subframe.

[0047] In some embodiments, SBFD configuration prioritizes, or may even exclusively utilize, a semi-static configuration. For example, for indication of subband locations for SBFD operation, a semi-static configuration of subband time and frequency location is studied as a baseline.

[0048] As previously mentioned, a network device may configure an uplink subband (UL subband) in a downlink slot / symbol or a flexible slot / symbol. In some embodiments, UL / DL transmissions may utilize a semi-statically configured CG / SPS. When SBFD is used, how to use or configure the CG / SPS requires further discussion.

[0049] FIG3 shows a flowchart of a method for determining transmission resources provided by an exemplary embodiment of the present application. The method is executed by a terminal and includes:

[0050] Step 102: Determine uplink transmission resources and / or downlink transmission resources based on the first subband configuration and / or transmission resource configuration.

[0051] In some embodiments, the first subband configuration is an SBFD configuration, and the SBFD configuration is used to determine how to use SPS resources and / or CG resources. The use of SPS resources and / or CG resources includes at least one of activation, deactivation, use, non-use, suspension, and resumption.

[0052] In other embodiments, SBFD technology may also be referred to as sub-band transmission-related technology or fractional bandwidth transmission-related technology. That is, only a sub-band or a portion of the bandwidth can perform the corresponding transmission, such as uplink transmission. It should be understood that this application describes only SBFD. Other terms used to describe sub-band or fractional bandwidth transmission-related technologies are within the scope of this application and are not further described below. Based on this, the first sub-band configuration can also be expressed as a sub-band transmission configuration, a fractional bandwidth transmission configuration, etc.

[0053] Illustratively, transmission resource configuration includes CG configuration and / or SPS configuration. In some embodiments, a terminal may determine the resource configuration of CG / SPS resources, determine whether CG / SPS resources are available, or determine how to perform uplink / downlink transmission based on the SBFD configuration and / or the CG / SPS configuration. The SBFD configuration may be configured by a network device.

[0054] In some embodiments, the CG configuration may be a CG configuration included in the first subband configuration, or may be a configuration included in the transmission resource configuration, and the transmission resource configuration may be a CG configuration (CG-config). In some embodiments, the CG configuration may be related to the first subband configuration, or may be irrelevant to the first subband configuration. In other embodiments, the CG configuration may be a configuration in the UL resources, or may be a configuration in the first subband resources. In some embodiments, the CG configuration may be configured in a flexible time domain unit. In other embodiments, the CG configuration is an optional configuration, a conditional configuration, or a mandatory configuration.

[0055] In some embodiments, the SPS configuration may be an SPS configuration included in the first subband configuration, or may be a configuration included in the transmission resource configuration, and the transmission resource configuration may be an SPS configuration (SPS-config). In some embodiments, the SPS configuration may be related to the first subband configuration, or may be irrelevant to the first subband configuration. In other embodiments, the SPS configuration may be a configuration in the DL resources, or may be a configuration in the first subband resources. In some embodiments, the SPS configuration may be configured in a flexible time domain unit. In other embodiments, the SPS configuration is an optional configuration, a conditional configuration, or a mandatory configuration.

[0056] In some embodiments, a terminal used to perform the method for determining transmission resources includes at least one of the following: a terminal that supports and / or recognizes SBFD, a first terminal; a terminal that does not support and / or recognize SBFD; a terminal of a preset version; or a terminal of a version prior to the preset version. The first terminal may also be understood as a legacy terminal (legacy UE); and the preset version may also be understood as a specific version, a designated version, an indicated version, etc. For example, the terminal used to perform the method for determining transmission resources includes a terminal of a version indicated / specified by a communication protocol, or a terminal of a version agreed upon by a vendor.

[0057] Optionally, step 102 may be implemented as follows:

[0058] Determining a resource location of an uplink transmission resource and / or a resource location of a downlink transmission resource based on the first subband configuration and / or the transmission resource configuration;

[0059] and / or, determining an available state of uplink transmission resources and / or an available state of downlink transmission resources based on the first subband configuration and / or the transmission resource configuration;

[0060] And / or, based on the first subband configuration and / or the transmission resource configuration, determining whether to use uplink transmission resources and / or downlink transmission resources for resource transmission.

[0061] The available status is used to indicate whether the uplink transmission resource and / or downlink transmission resource is available (available) or not available (not available), and can also be understood as whether the uplink transmission resource and / or downlink transmission resource is suspended (suspended) or resumed (resume).

[0062] Taking CG / SPS resources as an example, based on the first subband configuration and / or transmission resource configuration, the terminal can perform at least one of the following operations: determine the resource location of the CG / SPS resources; determine whether the CG / SPS resources are available; determine whether to use the CG / SPS resources for uplink / downlink resource transmission.

[0063] In some embodiments, in the presence of SBFD configuration or indication, the terminal determines to activate / deactivate / use / not use / suspend / resume SPS resources.

[0064] For example, SPS resources may be configured for SBFD configuration. Optionally, corresponding SPS resources may be configured for an SBFD slot / symbol or a downlink subband (DL subband) of an SBFD slot / symbol.

[0065] Exemplarily, when a time slot / symbol is an SBFD time slot / symbol, or when SBFD is activated or used in a time slot / symbol, the terminal may perform at least one of the following operations:

[0066] Activate or use the first SPS resource;

[0067] The first SPS resource is an SPS resource corresponding to SBFD, or an SPS resource corresponding to a downlink subband of SBFD. Otherwise, the first SPS resource may be deactivated or not used.

[0068] Deactivate or not use the first CG resources;

[0069] Among them, the first CG resource is the CG resource corresponding to SBFD, or the CG resource corresponding to the downlink subband of SBFD.

[0070] The second CG resource is considered unavailable;

[0071] Among them, the second CG resource can also be called traditional (legacy) CG resource.

[0072] Deactivate or do not use the first SPS resource;

[0073] The second SPS resource is deemed unavailable;

[0074] The second SPS resource may also be referred to as a legacy SPS resource.

[0075] Splitting the third SPS resource into actual SPS resources according to the SBFD configuration;

[0076] The third SPS resource may also be referred to as a normal SPS resource.

[0077] Splitting the third CG resource into actual CG resources according to the SBFD configuration;

[0078] Among them, the third CG resource can also be called a normal CG resource.

[0079] Deactivate or do not use the first SPS resource in the first uplink subband of the time slot or symbol or in the second uplink subband corresponding to SBFD;

[0080] In the first uplink subband or the second uplink subband, the second SPS resource is considered unavailable;

[0081] Activate or use the first SPS resource in the first uplink subband or the second uplink subband;

[0082] Activate or use the first CG resource in the first uplink subband or the second uplink subband;

[0083] Activate or use the overlapping portion of the second SPS resource and the SBFD in the first uplink subband or the second uplink subband;

[0084] In the first uplink subband or the second uplink subband, an overlapping portion of the first SPS resource and the SBFD SPS is activated or used.

[0085] For example, when a time slot / symbol is not an SBFD time slot / symbol, or when SBFD is deactivated or not used in a time slot / symbol, the terminal uses the second SPS resource, or deactivates / does not use the SPS resource corresponding to the SBFD configuration, or deactivates / does not use the SPS resource of the downlink subband corresponding to the SBFD.

[0086] In some other embodiments, in the presence of SBFD configuration or indication, the terminal determines to activate / deactivate / use / not use / suspend / restore CG resources.

[0087] For example, CG resources can be configured for SBFD configuration. Optionally, corresponding CG resources can be configured for SBFD time slots / symbols or downlink subbands of SBFD time slots / symbols. The CG resources can be one of the first type CG resources (also referred to as type 1CG), the second type CG resources (also referred to as type 2CG), and the third type CG resources (also referred to as conditional CG).

[0088] Exemplarily, when a time slot / symbol is an SBFD time slot / symbol, or when SBFD is activated or used in a time slot / symbol, the terminal may perform at least one of the following operations:

[0089] Activate or use First CG resources;

[0090] Deactivate or not use the first CG resources;

[0091] The second CG resource is considered unavailable;

[0092] Among them, the second CG resource can also be called traditional (legacy) CG resource.

[0093] Deactivate or do not use the first SPS resource;

[0094] The second SPS resource is deemed unavailable;

[0095] Splitting the third SPS resource into actual SPS resources according to the SBFD configuration;

[0096] Split the third CG resource into actual CG resources according to the SBFD configuration;

[0097] Deactivate or do not use the first SPS resource in the first uplink subband or the second uplink subband;

[0098] In the first uplink subband or the second uplink subband, the second SPS resource is considered unavailable;

[0099] Activate or use the first SPS resource in the first uplink subband or the second uplink subband;

[0100] Activate or use the first CG resource in the first uplink subband or the second uplink subband;

[0101] Activate or use the overlapping portion of the second CG resource and the SBFD in the first uplink subband or the second uplink subband;

[0102] In the first uplink subband or the second uplink subband, the overlapping portion of the first CG resources and the SBFD CG is activated or used.

[0103] Exemplarily, when a time slot / symbol is not an SBFD time slot / symbol, or when a time slot / symbol is deactivated or does not use SBFD, the terminal deactivates / does not use the first CG resource, and / or activates or uses the second CG resource.

[0104] In summary, embodiments of the present application provide a method for determining transmission resources, for determining uplink transmission resources and / or downlink transmission resources based on a first subband configuration and / or a transmission resource configuration, wherein the first subband configuration may be an SBFD configuration, and the transmission resources may be CG resources and / or SPS resources.

[0105] 3 and 4 show a flow chart of a method for determining transmission resources provided by an exemplary embodiment of the present application. Step 102 may be implemented as step 1021, specifically as follows:

[0106] Step 1021: Based on the first subband configuration and / or transmission resource configuration, determine to activate / deactivate / use / not use / suspend / restore SPS resources.

[0107] The first subband configuration may be an SBFD configuration, and the transmission resource configuration may be an SPS setting.

[0108] In some embodiments, the SPS resources may be configured by a network device. Optionally, step 1021 may be implemented as follows: receiving the SPS resources configured by the network device; and using or activating or deactivating the SPS resources configured by the network device.

[0109] Optionally, the SPS resources configured by the network device include at least one of first type SPS resources, second type SPS resources and conditional type SPS resources; and / or, the SPS resources configured by the network device are determined by the network device according to the downlink unit or the first subband configuration.

[0110] In some other embodiments, based on the first subband configuration and / or the transmission resource configuration, the terminal performs at least one of the following steps:

[0111] Activate or use the first SPS resource;

[0112] The first SPS resource is an SPS resource corresponding to SBFD, or the first SPS resource is an SPS resource corresponding to an uplink subband of SBFD.

[0113] Deactivate or not use the first CG resources;

[0114] Among them, the first CG resource is a CG resource corresponding to SBFD, or the first CG resource is a CG resource corresponding to the uplink subband of SBFD.

[0115] Activate or use First CG resources;

[0116] The second CG resource is considered unavailable;

[0117] Deactivate or do not use the first SPS resource;

[0118] The second SPS resource is deemed unavailable;

[0119] Splitting the third SPS resource into actual SPS resources;

[0120] Split the third CG resource into actual CG resources;

[0121] Deactivate or do not use the first SPS resource in the first uplink subband of the time slot or symbol or in the second uplink subband corresponding to SBFD;

[0122] In the first uplink subband or the second uplink subband, the second SPS resource is considered unavailable;

[0123] Activate or use the first SPS resource in the first uplink subband or the second uplink subband;

[0124] Activate or use the first CG resource in the first uplink subband or the second uplink subband;

[0125] Activate or use the overlapping portion of the second SPS resource and the SBFD in the first uplink subband or the second uplink subband;

[0126] In the first uplink subband or the second uplink subband, an overlapping portion of the first SPS resource and the SBFD SPS is activated or used.

[0127] Optionally, the terminal executes at least one of the above steps, which needs to meet the execution conditions.

[0128] That is, the terminal performs at least one of the aforementioned steps if the first condition is met. The first condition includes at least one of the following conditions: the first time unit is a time unit corresponding to SBFD; the second time unit is a time unit in which SBFD is activated; the first time slot is an SBFD time slot; the first symbol is an SBFD symbol; the first subband configuration is activated in the second time slot; and the first subband configuration is activated in the second symbol. The first subband configuration may be an SBFD configuration.

[0129] Fig. 5 shows a schematic diagram of SBFD time slot configuration provided by an exemplary embodiment of the present application. Optionally, the flexible time slot (ie, F slot) supports or does not support SBFD configuration.

[0130] In some other embodiments, step 1021 may be implemented as follows:

[0131] Based on the first subband configuration and / or transmission resource configuration, deactivate or do not use the first SPS resource, where the first SPS resource is the SPS resource corresponding to the first subband configuration; and / or, based on the first subband configuration and / or transmission resource configuration, activate or use the second SPS resource.

[0132] Optionally, the terminal executes at least one of the above steps, which needs to meet the execution conditions.

[0133] That is, the terminal performs at least one of the aforementioned steps if the second condition is met. The second condition includes at least one of the following conditions: the first time unit is not a time unit corresponding to SBFD; the second time unit is a time unit in which SBFD is activated; the first time slot is not a SBFD time slot; the first symbol is not a SBFD symbol; the first subband configuration is deactivated or not used in the second time slot; and the first subband configuration is deactivated or not used in the second symbol. The first subband configuration may be an SBFD configuration.

[0134] In some embodiments, the terminal may also perform related operations based on the instruction information of the network device.

[0135] Optionally, step 1021 can also be implemented as follows: receiving first indication information sent by the network device, the first indication information is used to configure SPS resources, or to indicate activation or deactivation of SPS resources; configuring, activating or using SPS resources according to the first indication information.

[0136] It can be understood that the SPS configuration is conditionally configured, or the SPS configuration is conditionally activated or deactivated, or the first SPS resource / second SPS resource is conditionally configured, or the first SPS resource / second SPS resource is conditionally activated or deactivated.

[0137] For example, a network device conditionally configures SPS resources or conditionally activates / deactivates SPS resources. This can be understood as the presence or use of SBFD configuration, the presence or use of SBFD time slots / symbols, or the configuration, activation, or use of SPS resources.

[0138] In some embodiments, the first subband configuration and / or transmission resource configuration is configured by a network device. Optionally, the method for determining transmission resources provided in this application further includes: receiving configuration information sent by the network device, the configuration information including the first subband configuration and / or transmission resource configuration.

[0139] The first subband configuration may be an SBFD configuration.

[0140] Optionally, the configuration information sent by the network device is carried in RRC signaling.

[0141] In some embodiments, the configuration information includes at least one of the following information: configuration information at a public or cell granularity; configuration information specific to a terminal; configuration information at a cell group granularity; and configuration information specific to a terminal group.

[0142] Optionally, the configuration information of the public or cell granularity is carried in any one of the following signalings: RRC message; System Information Block (SIB) message; Management Information Block (MIB) message.

[0143] Optionally, the terminal-specific configuration information is carried in any one of the following signaling: a terminal-specific RRC message; downlink control information (DCI); or a downlink media access control element (MAC CE).

[0144] Optionally, the configuration information of the cell group granularity is carried in a DCI or RRC message.

[0145] Optionally, the terminal group-specific configuration information is carried in a DCI, or a downlink MAC CE, or an RRC message.

[0146] In some embodiments, the first subband configuration includes at least one of the following information: time slots / symbols of the uplink part; time slots / symbols supporting SBFD; frequency domain configuration of the uplink part; frequency domain configuration supporting SBFD; SPS configuration corresponding to the first subband configuration; CG configuration corresponding to the first subband configuration; SPS configuration corresponding to the downlink subband of the SBFD time slots / symbols; CG configuration corresponding to the downlink subband of the SBFD time slots / symbols.

[0147] Optionally, the configuration granularity of the first subband configuration is at least one of a time slot, a radio frame, and a symbol.

[0148] Optionally, the first sub-band configuration includes at least one type of first sub-band configuration.

[0149] Among them, the configuration type of the first subband configuration includes at least one of the following: periodic first subband configuration; semi-static first subband configuration; dynamic first subband configuration; non-periodic first subband configuration; public first subband configuration; terminal-specific first subband configuration; and terminal group-specific first subband configuration.

[0150] With reference to the foregoing, the SPS resource involved in the present application is one of the following resources: the SPS resource is an SPS resource that is used by RRC configuration; or, the SPS resource is an SPS resource that is used by RRC configuration and DCI activation; or, the SPS resource is an SPS resource that is used by RRC configuration and the first subband configuration; or, the SPS resource is an SPS resource that is configured by RRC configuration and the first subband configuration; or, the SPS resource is an SPS resource that is activated by RRC configuration and the first subband configuration; or, the SPS resource is an SPS resource that is activated by RRC configuration and SBFD activation; Alternatively, the SPS resource is an SPS resource that is deactivated by RRC configuration and SBFD deactivation; or, the SPS resource is an SPS resource that is deconfigured by RRC configuration and SBFD deconfiguration; or, the SPS resource is an SPS resource that is deactivated by RRC configuration and SBFD deconfiguration; or, the SPS resource is an SPS resource that is used by RRC configuration and SBFD activation; or, the SPS resource is an SPS resource that is used by RRC configuration, DCI activation, and first subband configuration; or, the SPS resource is an SPS resource that is used by RRC configuration, DCI activation, and SBFD activation. The SPS resource corresponds to the first subband configuration, or, the SPS resource is configured in the SPS configuration (SPS-config), or, the SPS resource is a terminal-specific downlink (DL) configuration, or, the SPS resource has no association with the first subband configuration.

[0151] With reference to the foregoing, the CG resource involved in the present application is one of the following resources: the CG resource is a CG resource used after being configured by RRC; or, the CG resource is a CG resource used after being configured by RRC and activated by DCI; or, the CG resource is a CG resource used after being configured by RRC and the first subband is configured; or, the CG resource is a CG resource configured after being configured by RRC and the first subband is configured; or, the CG resource is a CG resource activated after being configured by RRC and the first subband is configured; or, the CG resource is a CG resource activated after being configured by RRC and SBFD is activated; or, the CG resource is a CG resource deactivated after being configured by RRC and SBFD is deactivated; or, the CG resource is a CG resource deconfigured after being configured by RRC and SBFD is deconfigured; or, the CG resource is a CG resource deactivated after being configured by RRC and SBFD is deconfigured; or, the CG resource is a CG resource deactivated after being configured by RRC and SBFD is deconfigured; or, the CG resource is a CG resource used after being configured by RRC and SBFD is activated; or, the CG resource is a CG resource used after being configured by RRC and SBFD is activated; or, the CG resource is a CG resource used after being configured by RRC and DCI is activated and the first subband is configured; or, the CG resource is a CG resource used after being configured by RRC and DCI is activated and SBFD is activated. Among them, the CG resource corresponds to the first subband configuration, or the CG resource is configured in the CG configuration (configured grant-config), or the CG resource is a terminal-specific uplink (UL) configuration, or the CG resource has no association with the first subband configuration.

[0152] In summary, the method for determining transmission resources provided in the embodiment of the present application provides a specific method for determining SPS resources.

[0153] Exemplarily, when there is SBFD configuration (indication), determine how to configure or use SPS resources, or how to perform DL SPS transmission, so as to clarify the behavior of terminals and network devices, reduce transmission delay, and maximize resource utilization for efficient transmission.

[0154] The method for determining transmission resources provided in the embodiment of the present application can be implemented as follows:

[0155] Step 1: The terminal receives the network configuration sent by the network.

[0156] Optionally, the network configuration is carried by RRC signaling. The network configuration can be understood as the first indication information in the aforementioned content. Specifically, the network configuration includes at least one of the following:

[0157] 1) SBFD configuration.

[0158] The SBFD configuration includes at least one of the following: an uplink time slot / symbol (or, SBFD support) or an uplink frequency domain configuration (or, SBFD support). Optionally, the SBFD configuration includes an SPS configuration for the SBFD configuration or an SPS configuration for the DL subband of the SBFD slot / symbol. Optionally, the SPS configuration is conditional, i.e., based on the SBFD configuration, activation, or use.

[0159] a) Optional, SBFD configuration is for slots, radio frames, or symbols.

[0160] b) Optionally, the SBFD configuration may include one or more types of SBFD configurations.

[0161] i. SBFD configuration type includes at least one of the following: periodic (semi-static), dynamic / aperiodic.

[0162] ii. The SBFD configuration type includes at least one of the following: common and UE-specific.

[0163] iii. Optionally, the SPS corresponding to SBFD can be used with RRC configuration or with RRC configuration and DCI activation.

[0164] c) When the SBFD configuration is for a slot or a symbol, the granularity of the indication is the same or different (slot / symbol is different) for different SBFD types.

[0165] d) SBFD configuration may be included in common or cell-level information, in UE-specific information, or in group-level information.

[0166] i. Common or cell-level information can be an RRC message, a SIB message, or a MIB message. Optionally, the SIB message is SIB1 or SIB2, or another SIB (such as a new SIB). Optionally, the information includes at least one of periodic, semi-static, and common SBFD configurations.

[0167] ii. UE-specific information includes a dedicated RRC message or a DCI message. Optionally, the information includes at least UE-specific or dynamic SBFD configuration.

[0168] iii. The group-level information includes DCI information. Optionally, the information includes at least dynamic SBFD configuration.

[0169] 2) SPS configuration, and / or, CG configuration.

[0170] For example, the CG / SPS configuration of each cell (per cell) has no binding relationship with the SBFD configuration.

[0171] Step 2: The terminal determines the SPS location, or whether the SPS resources are available, or activates / deactivates / uses the SPS resources, or determines to perform UL / DL transmission according to the network configuration. Specifically, it may include at least one of the following:

[0172] 1) The network configures SPS resources for SBFD. Specifically, it configures SPS resources for the SBFD slot / symbol or the DL subband of the SBFD slot / symbol. Optionally, the UE uses, activates, or deactivates the SPS resource configuration for SBFD. Optionally, the UE supports or recognizes SBFD.

[0173] 2) When a slot / symbol is an SBFD slot / symbol, or when SBFD is activated or used in a slot / symbol, the UE activates or uses the SPS configuration. The SPS configuration is the SPS configuration corresponding to SBFD, or the SPS configuration corresponding to the DL subband of SBFD (otherwise, the SPS configuration may be deactivated or not used). Optionally, the UE supports or recognizes SBFD.

[0174] 3) When a slot / symbol is not an SBFD slot / symbol, or when SBFD is deactivated or not used in a slot / symbol, the UE uses the legacy SPS configuration and / or deactivates / does not use the SPS configuration corresponding to the SBFD configuration (or the SPS configuration of the DL subband corresponding to SBFD). Optionally, the UE is a UE that supports or recognizes SBFD, a legacy UE, or a UE that does not support or recognize SBFD.

[0175] 4) When a slot / symbol is an SBFD slot / symbol, or when a slot / symbol activates or uses SBFD, the CG configuration is deactivated or not used (for example, flexible slot / symbol, configured by legacy CG), or the legacy CG configuration is considered unavailable (for example, flexible slot / symbol, configured by legacy CG), or the SPS configuration is deactivated or not used (for example, DL / flexible slot / symbol, configured by legacy SPS. Further, legacy SPS is in the UL subband part), or the legacy SPS configuration is considered unavailable (for example, DL / flexible slot / symbol, configured by legacy SPS. Further, legacy SPS is in the UL subband part). Optionally, the UE is a legacy UE (which can be achieved by network instructions to deactivate, not use, or deconfigure. Or, it can be achieved by the network staggering the positions of SBFD and SPS), or a UE that does not support SBFD, or a UE that does not recognize SBFD.

[0176] 5) When a slot / symbol is an SBFD slot / symbol, or when a slot / symbol activates or uses SBFD, the normative SPS is split into actual SPS according to the configuration of SFBD (for example, DL / flexible slot / symbol, configured by legacy SPS. Further, a part of legacy SPS exists in the UL subband part. The SPS can be split into actual SPS, and / or, only SPS resources within the DL subband are used), and / or, the normative CG is split into actual CG according to the configuration of SFBD (for example, flexible slot / symbol, configured by legacy CG. Further, a part of legacy CG exists in the UL subband part. The CG can be split into actual SPS, and / or, only CG resources within the UL subband are used). Optionally, the UE is a UE that supports SBFD or recognizes SBFD.

[0177] 6) When a slot / symbol is an SBFD slot / symbol, or when a slot / symbol activates or uses SBFD, in the UL subband of the slot / symbol or the UL subband corresponding to the SBFD, the SPS configuration is deactivated or not used, or the legacy SPS configuration is considered unavailable, or the SPS resources corresponding to the SBFD configuration are activated or used (the SPS configuration configured in the DL subband of the SBFD), or the CG resources corresponding to the SBFD configuration are activated or used (the CG configuration configured in the UL subband of the SBFD), or the overlapping part of the legacy SPS and SBFD is activated or used, or the overlapping part of the legacy SPS and SBFD SPS is activated or used. Optionally, the UE is a UE that supports SBFD or recognizes SBFD.

[0178] 7) The network conditionally configures SPS configuration or conditionally activates / deactivates SPS configuration. This means that SBFD configuration exists or is used, or an SBFD slot / symbol exists or is used, or an SBFD slot / symbol is configured, activated, or used. Accordingly, the UE activates or uses conditional SPS (furthermore, in the non-SBFD case, the UE deconfigures, deactivates, or does not use the SPS configuration).

[0179] 3 and 6 show a flow chart of a method for determining transmission resources provided by an exemplary embodiment of the present application. Step 102 may be implemented as step 1022, specifically as follows:

[0180] Step 1022: Based on the first subband configuration and / or transmission resource configuration, determine to activate / deactivate / use / not use / pause / restore CG resources.

[0181] Among them, the first subband configuration can be an SBFD configuration, and the transmission resource configuration can be a CG setting.

[0182] In some embodiments, the CG resources may be configured by a network device. Optionally, step 1022 may be implemented as follows: receiving the CG resources configured by the network device; and using or activating or deactivating the CG resources configured by the network device.

[0183] Optionally, the CG resources configured by the network device include at least one of first type CG resources, second type CG resources and conditional type CG resources; and / or, the CG resources configured by the network device are determined by the network device according to the uplink unit or the first subband configuration.

[0184] In some other embodiments, based on the first subband configuration and / or the transmission resource configuration, the terminal performs at least one of the following steps:

[0185] Activate or use First CG resources;

[0186] Among them, the first CG resource is a CG resource corresponding to SBFD, or the first CG resource is a CG resource corresponding to the uplink subband of SBFD.

[0187] Deactivate or not use the first CG resources;

[0188] The second CG resource is considered unavailable;

[0189] Deactivate or do not use the first SPS resource;

[0190] The first SPS resource is an SPS resource corresponding to SBFD, or the first SPS resource is an SPS resource corresponding to an uplink subband of SBFD.

[0191] The second SPS resource is deemed unavailable;

[0192] Splitting the third SPS resource into actual SPS resources;

[0193] Split the third CG resource into actual CG resources;

[0194] Deactivate or do not use the first SPS resource in the first uplink subband of the time slot or symbol or in the second uplink subband corresponding to SBFD;

[0195] In the first uplink subband or the second uplink subband, the second SPS resource is considered unavailable;

[0196] Activate or use the first SPS resource in the first uplink subband or the second uplink subband;

[0197] Activate or use the first CG resource in the first uplink subband or the second uplink subband;

[0198] Activate or use the overlapping portion of the second CG resource and the SBFD in the first uplink subband or the second uplink subband;

[0199] In the first uplink subband or the second uplink subband, the overlapping portion of the first CG resources and the SBFD CG is activated or used.

[0200] Optionally, the terminal executes at least one of the above steps, which needs to meet the execution conditions.

[0201] That is, the terminal performs at least one of the aforementioned steps if the first condition is met. The first condition includes at least one of the following conditions: the first time unit is a time unit corresponding to SBFD; the second time unit is a time unit in which SBFD is activated; the first time slot is an SBFD time slot; the first symbol is an SBFD symbol; the first subband configuration is activated in the second time slot; and the first subband configuration is activated in the second symbol. The first subband configuration may be an SBFD configuration.

[0202] Figure 7 shows a schematic diagram of SBFD time slot configuration provided by an exemplary embodiment of the present application. Optionally, the flexible time slot (ie, F slot) supports or does not support SBFD configuration.

[0203] In some other embodiments, step 1022 may be implemented as follows:

[0204] Based on the first subband configuration and / or transmission resource configuration, deactivate or do not use the first CG resource, where the first CG resource is the CG resource corresponding to the first subband configuration, or the first CG resource is the CG resource corresponding to the uplink subband of SBFD; and / or, based on the first subband configuration and / or transmission resource configuration, activate or use the second CG resource.

[0205] Optionally, the terminal executes at least one of the above steps, which needs to meet the execution conditions.

[0206] That is, the terminal performs at least one of the aforementioned steps if the second condition is met. The second condition includes at least one of the following conditions: the first time unit is not a time unit corresponding to SBFD; the second time unit is a time unit in which SBFD is activated; the first time slot is not a SBFD time slot; the first symbol is not a SBFD symbol; the first subband configuration is deactivated or not used in the second time slot; and the first subband configuration is deactivated or not used in the second symbol. The first subband configuration may be an SBFD configuration.

[0207] In some embodiments, the terminal may also perform related operations based on the instruction information of the network device.

[0208] Optionally, step 1022 can also be implemented as follows: receiving second indication information sent by the network device, the second indication information is used to configure CG resources, or to indicate activation or deactivation of CG resources; configuring, activating or using CG resources according to the second indication information.

[0209] It can be understood that the CG configuration is conditionally configured, or the CG configuration is conditionally activated or deactivated, or the first CG resource / second CG resource is conditionally configured, or the first CG resource / second CG resource is conditionally activated or deactivated.

[0210] For example, the network device configures CG resources through conditional, or activates / deactivates CG resources through conditional. It can be understood that there is or is using SBFD configuration, or there is or is using SBFD time slots / symbols or SBFD time slots / symbols, and CG resources are configured, activated, or used. In some embodiments, the CG configured or activated through conditional is a new CG type. Optionally, the CG configured or activated through conditional is type1 or type2 CG and is used under SBFD conditions.

[0211] In some embodiments, the first subband configuration and / or transmission resource configuration is configured by a network device. Optionally, the method for determining transmission resources provided in this application further includes: receiving configuration information sent by the network device, the configuration information including the first subband configuration and / or transmission resource configuration.

[0212] The first subband configuration may be an SBFD configuration.

[0213] Optionally, the configuration information sent by the network device is carried in RRC signaling.

[0214] In some embodiments, the configuration information includes at least one of the following information: configuration information at a public or cell granularity; configuration information specific to a terminal; configuration information at a cell group granularity; and configuration information specific to a terminal group.

[0215] The configuration information of the public or cell granularity is carried in any of the following signaling: RRC message; SIB message; MIB message.

[0216] Optionally, the terminal-specific configuration information is carried in any one of the following signaling: a terminal-specific RRC message; DCI; or MAC CE.

[0217] Optionally, the configuration information of the cell group granularity is carried in a DCI or RRC message.

[0218] Optionally, the terminal group-specific configuration information is carried in a DCI, or a downlink MAC CE, or an RRC message.

[0219] In some embodiments, the first subband configuration includes at least one of the following information: time slots / symbols of the uplink part; time slots / symbols supporting SBFD; frequency domain configuration of the uplink part; frequency domain configuration supporting SBFD; SPS configuration corresponding to the first subband configuration; CG configuration corresponding to the first subband configuration; SPS configuration corresponding to the downlink subband of the SBFD time slots / symbols; CG configuration corresponding to the downlink subband of the SBFD time slots / symbols.

[0220] Optionally, the configuration granularity of the first subband configuration is at least one of a time slot, a radio frame, and a symbol.

[0221] Optionally, the first sub-band configuration includes at least one type of first sub-band configuration.

[0222] Among them, the configuration type of the first subband configuration includes at least one of the following: periodic first subband configuration; semi-static first subband configuration; dynamic first subband configuration; non-periodic first subband configuration; public first subband configuration; terminal-specific first subband configuration; and terminal group-specific first subband configuration.

[0223] With reference to the foregoing, the SPS resource involved in the present application is one of the following resources: an SPS resource is an SPS resource used by RRC configuration; or an SPS resource is an SPS resource used by RRC configuration and DCI activation; or an SPS resource is an SPS resource used by RRC configuration and first subband configuration; or an SPS resource is an SPS resource used by RRC configuration and SBFD activation; or an SPS resource is an SPS resource used by RRC configuration, DCI activation, and first subband configuration; or an SPS resource is an SPS resource used by RRC configuration, DCI activation, and SBFD activation. The SPS resource corresponds to the first subband configuration.

[0224] With reference to the foregoing, the CG resource involved in the present application is one of the following resources: the CG resource is a CG resource used after RRC configuration; or, the CG resource is a CG resource used after RRC configuration and DCI activation; or, the CG resource is a CG resource used after RRC configuration and the first subband configuration; or, the CG resource is a CG resource used after radio resource control RRC configuration and SBFD activation; or, the CG resource is a CG resource used after RRC configuration and DCI activation and the first subband configuration; or, the CG resource is a CG resource used after RRC configuration and DCI activation and SBFD activation. Among them, the CG resource corresponds to the first subband configuration.

[0225] To sum up, the method for determining transmission resources provided in the embodiment of the present application provides a specific method for determining CG resources.

[0226] For example, when there is an SBFD configuration (indication), determine how to configure or use CG, or how to perform UL CG transmission, so as to clarify the behavior of UE and network equipment, reduce transmission delay, and maximize the use of resources for effective transmission.

[0227] The method for determining transmission resources provided in the embodiment of the present application can be implemented as follows:

[0228] Step 1: The terminal receives the network configuration sent by the network.

[0229] Optionally, the network configuration is carried by RRC signaling. The network configuration can be understood as the second indication information in the aforementioned content. Specifically, the network configuration includes at least one of the following:

[0230] 1) SBFD configuration.

[0231] The SBFD configuration includes at least one of the following: an uplink time slot / symbol (or, SBFD support) or an uplink frequency domain configuration (or, SBFD support). Optionally, the SBFD configuration includes a CG configuration for the SBFD configuration or a CG configuration for the UL subband of the SBFD slot / symbol. Optionally, the CG configuration is conditional, i.e., based on the SBFD configuration, activation, or use.

[0232] a) Optionally, SBFD configuration exists or is used, or SBFD slot / symbol exists or is used, or SBFD slot / symbol is configured or activated or CG configuration is used.

[0233] b) Optionally, the conditional configured or activated CG is a new CG type.

[0234] c) Optionally, the conditional configured or activated CG is type 1 or type 2, and the CG is used under SBFD conditions.

[0235] d) Optionally, the CG corresponding to SBFD can be used with RRC configuration or with RRC configuration and DCI activation.

[0236] e) Optionally, SBFD configuration is for slots, radio frames, or symbols.

[0237] f) Optionally, the SBFD configuration may include one or more types of SBFD configurations.

[0238] i. SBFD configuration type includes at least one of the following: periodic (semi-static), dynamic / aperiodic.

[0239] ii. The SBFD configuration type includes at least one of the following: common and UE-specific.

[0240] g) In the case where the SBFD configuration is for a slot or a symbol, the granularity of the indication is the same or different (slot / symbol is different) for different SBFD types.

[0241] h) SBFD configuration may be included in common or cell-level information, in UE-specific information, or in group-level information.

[0242] i. Common or cell-level information can be an RRC message, a SIB message, or a MIB message. Optionally, the SIB message is SIB1 or SIB2, or another SIB (such as a new SIB). Optionally, the information includes at least one of periodic, semi-static, and common SBFD configurations.

[0243] ii. UE-specific information includes a dedicated RRC message or a DCI message. Optionally, the information includes at least UE-specific or dynamic SBFD configuration.

[0244] iii. The group-level information includes DCI information. Optionally, the information includes at least dynamic SBFD configuration.

[0245] 2) SPS configuration, and / or, CG configuration.

[0246] For example, the per-cell CG / SPS configuration is not bound to the SBFD configuration.

[0247] Step 2: The terminal determines the CG location, or whether the CG resources are available, or activates / deactivates / uses the CG resources, or determines to perform UL / DL transmission according to the network configuration. Specifically, it may include at least one of the following:

[0248] 1) The network configures CG resources for SBFD. Specifically, CG resources are configured for the SBFD slot / symbol or the UL subband of the SBFD slot / symbol. Optionally, the CG is a type 1 CG, a type 2 CG, or a conditional CG. Optionally, the UE uses, activates, or deactivates the CG resource configuration for SBFD. Optionally, the UE supports or recognizes SBFD.

[0249] 2) When a slot / symbol is an SBFD slot / symbol, or when a slot / symbol activates or uses SBFD, the UE activates or uses the CG configuration. The CG configuration is the CG configuration corresponding to SBFD, or the CG configuration corresponding to the UL subband of SBFD (otherwise, the CG configuration may be deactivated or not used). Optionally, the UE supports or recognizes SBFD.

[0250] 3) When a slot / symbol is not an SBFD slot / symbol, or when SBFD is deactivated or not used in a slot / symbol, the UE uses the legacy CG configuration and / or deactivates / does not use the CG configuration corresponding to the SBFD configuration (or the CG configuration of the UL subband corresponding to SBFD). Optionally, the UE is a UE that supports or recognizes SBFD, a legacy UE, or a UE that does not support or recognize SBFD.

[0251] 4) When a slot / symbol is an SBFD slot / symbol, or when a slot / symbol activates or uses SBFD, the CG configuration is deactivated or not used (for example, flexible slot / symbol, configured by legacy CG), or the legacy CG configuration is considered unavailable (for example, flexible slot / symbol, configured by legacy CG), or the SPS configuration is deactivated or not used (for example, DL / flexible slot / symbol, configured by legacy SPS. Further, legacy SPS is in the UL subband part), or the legacy SPS configuration is considered unavailable (for example, DL / flexible slot / symbol, configured by legacy SPS. Further, legacy SPS is in the UL subband part). Optionally, the UE is a legacy UE (which can be achieved by network instructions to deactivate, not use, or deconfigure. Or, it can be achieved by the network staggering the positions of SBFD and SPS), or a UE that does not support SBFD, or a UE that does not recognize SBFD.

[0252] 5) When a slot / symbol is an SBFD slot / symbol, or when a slot / symbol activates or uses SBFD, the normative SPS is split into actual SPS according to the configuration of SFBD (for example, DL / flexible slot / symbol, configured by legacy SPS. Further, a part of legacy SPS exists in the UL subband part. The SPS can be split into actual SPS, and / or, only SPS resources within the DL subband are used), and / or, the normative CG is split into actual CG according to the configuration of SFBD (for example, flexible slot / symbol, configured by legacy CG. Further, a part of legacy CG exists in the UL subband part. The CG can be split into actual SPS, and / or, only CG resources within the UL subband are used). Optionally, the UE is a UE that supports SBFD or recognizes SBFD.

[0253] 6) When a slot / symbol is an SBFD slot / symbol, or when a slot / symbol activates or uses SBFD, in the UL subband of the slot / symbol or the UL subband corresponding to the SBFD, the SPS configuration is deactivated or not used, or the legacy SPS configuration is considered unavailable, or the SPS resources corresponding to the SBFD configuration are activated or used (the SPS configuration configured in the DL subband of the SBFD), or the CG resources corresponding to the SBFD configuration are activated or used (the CG configuration configured in the UL subband of the SBFD), or the overlapping portion of the legacy CG and the SBFD is activated or used, or the overlapping portion of the legacy CG and the SBFD CG is activated or used. Optionally, the UE is a UE that supports SBFD or recognizes SBFD.

[0254] 7) The network conditionally configures the CG configuration, or conditionally activates / deactivates the CG configuration. This means that the SBFD configuration exists or is used, or the SBFD slot / symbol exists or is used, or the SBFD slot / symbol is configured, activated, or used. Accordingly, the UE activates or uses the conditional CG (further, in the non-SBFD case, the UE deconfigures, deactivates, or does not use the CG configuration).

[0255] It should be understood that the multiple methods provided in the foregoing content can be implemented individually or in combination. It can also be understood that the multiple embodiments provided in the foregoing content can be implemented individually or in combination. Exemplarily, based on the first subband configuration and / or transmission resource configuration, the activation / deactivation / use / non-use / pause / resumption of SPS resources and / or CG resources is determined. Other combined implementation methods are all within the scope of protection of this application and will not be repeated here.

[0256] The following is an embodiment of the device of the present application. For details not described in detail in the embodiment of the device, reference can be made to the corresponding records in the above method embodiment, and no further details will be given herein.

[0257] FIG8 shows a schematic diagram of a device for determining transmission resources provided by an exemplary embodiment of the present application, the device including:

[0258] The determination module 820 is configured to determine uplink transmission resources and / or downlink transmission resources based on the first subband configuration and / or the transmission resource configuration.

[0259] Optionally, the determination module 820 is used to determine the resource location of the uplink transmission resource and / or the resource location of the downlink transmission resource based on the first subband configuration and / or the transmission resource configuration; and / or, based on the first subband configuration and / or the transmission resource configuration, determine the available status of the uplink transmission resource and / or the available status of the downlink transmission resource; and / or, based on the first subband configuration and / or the transmission resource configuration, determine whether to use the uplink transmission resource and / or the downlink transmission resource for resource transmission.

[0260] Optionally, the determination module 820 is configured to determine whether to activate / deactivate / use / not use / suspend / restore the SPS resource based on the first subband configuration and / or the transmission resource configuration.

[0261] Optionally, the determination module 820 is configured to receive SPS resources configured by the network device; and use or activate or deactivate the SPS resources configured by the network device.

[0262] Optionally, the SPS resources configured by the network device include at least one of first type SPS resources, second type SPS resources and conditional type SPS resources; and / or, the SPS resources configured by the network device are determined by the network device according to the downlink unit or the first subband configuration.

[0263] Optionally, the determination module 820 is configured to, based on the first subband configuration and / or transmission resource configuration, cause the terminal to perform at least one of the following steps: activate or use a first SPS resource, where the first SPS resource is an SPS resource corresponding to SBFD, or the first SPS resource is an SPS resource corresponding to the uplink subband of SBFD; deactivate or not use a first pre-configured CG resource, where the first CG resource is a CG resource corresponding to SBFD, or the first CG resource is a CG resource corresponding to the uplink subband of SBFD; activate or use the first CG resource; consider the second CG resource unavailable; deactivate or not use the first SPS resource; consider the second SPS resource unavailable; and use the third SPS resource. The source is split into actual SPS resources; the third CG resource is split into actual CG resources; the first SPS resource is deactivated or not used in the first uplink subband of the time slot or symbol or in the second uplink subband corresponding to the SBFD; the second SPS resource is considered unavailable in the first uplink subband or in the second uplink subband; the first SPS resource is activated or used in the first uplink subband or in the second uplink subband; the first CG resource is activated or used in the first uplink subband or in the second uplink subband; the overlapping part of the second SPS resource and the SBFD is activated or used in the first uplink subband or in the second uplink subband; the overlapping part of the first SPS resource and the SBFD SPS is activated or used in the first uplink subband or in the second uplink subband.

[0264] Optionally, the terminal performs at least one of the steps when the first condition is met, and the first condition includes at least one of the following conditions: the first time unit is a time unit corresponding to SBFD; the second time unit is a time unit for SBFD activation; the first time slot is an SBFD time slot; the first symbol is an SBFD symbol; the first subband configuration is activated on the second time slot; and the first subband configuration is activated on the second symbol.

[0265] Optionally, the determination module 820 is used to deactivate or not use the first SPS resource based on the first subband configuration and / or the transmission resource configuration, where the first SPS resource is the SPS resource corresponding to the first subband configuration; and / or, to activate or use the second SPS resource based on the first subband configuration and / or the transmission resource configuration.

[0266] Optionally, the terminal performs at least one of the steps when the second condition is met, and the second condition includes at least one of the following conditions: the first time unit is not a time unit corresponding to SBFD; the second time unit is a time unit for SBFD activation; the first time slot is not a SBFD time slot; the first symbol is not a SBFD symbol; the first subband configuration is deactivated or not used in the second time slot; the first subband configuration is deactivated or not used in the second symbol.

[0267] Optionally, the determination module 820 is used to receive first indication information sent by the network device, where the first indication information is used to configure SPS resources or to indicate activation or deactivation of SPS resources; and configure, activate or use SPS resources according to the first indication information.

[0268] Optionally, the determination module 820 is used to determine whether to activate / deactivate / use / not use / pause / restore CG resources based on the first subband configuration and / or transmission resource configuration.

[0269] Optionally, the determination module 820 is used to receive CG resources configured by the network device; use or activate or deactivate the CG resources configured by the network device.

[0270] Optionally, the CG resources configured by the network device include at least one of first type CG resources, second type CG resources and conditional type CG resources; and / or, the CG resources configured by the network device are determined by the network device according to the uplink unit or the first subband configuration.

[0271] Optionally, the determination module 820 is used to determine that the terminal performs at least one of the following steps based on the first subband configuration and / or transmission resource configuration: activating or using the first CG resource, the first CG resource is the CG resource corresponding to the SBFD, or the first CG resource is the CG resource corresponding to the uplink subband of the SBFD; deactivating or not using the first CG resource; considering the second CG resource to be unavailable; deactivating or not using the first pre-configured SPS resource, the first SPS resource is the SPS resource corresponding to the SBFD, or the first SPS resource is the SPS resource corresponding to the uplink subband of the SBFD; considering the second SPS resource to be unavailable; splitting the third SPS resource into actual SPS resources; split the third CG resources into actual CG resources; deactivate or not use the first SPS resource in the first uplink subband of the time slot or symbol or in the second uplink subband corresponding to the SBFD; consider the second SPS resource to be unavailable in the first uplink subband or in the second uplink subband; activate or use the first SPS resource in the first uplink subband or in the second uplink subband; activate or use the first CG resource in the first uplink subband or in the second uplink subband; activate or use the overlapping part of the second CG resource and the SBFD in the first uplink subband or in the second uplink subband; activate or use the overlapping part of the first CG resource and the SBFD CG in the first uplink subband or in the second uplink subband.

[0272] Optionally, the terminal performs at least one of the steps when the first condition is met, and the first condition includes at least one of the following conditions: the first time unit is a time unit corresponding to SBFD; the second time unit is a time unit for SBFD activation; the first time slot is an SBFD time slot; the first symbol is an SBFD symbol; the first subband configuration is activated on the second time slot; and the first subband configuration is activated on the second symbol.

[0273] Optionally, the determination module 820 is used to deactivate or not use the first CG resource based on the first subband configuration and / or the transmission resource configuration, where the first CG resource is the CG resource corresponding to the first subband configuration, or the first CG resource is the CG resource corresponding to the uplink subband of the subband full-duplex SBFD; and / or, based on the first subband configuration and / or the transmission resource configuration, activate or use the second CG resource.

[0274] Optionally, the terminal performs at least one of the steps when the second condition is met, and the second condition includes at least one of the following conditions: the first time unit is not a time unit corresponding to SBFD; the second time unit is a time unit for SBFD activation; the first time slot is not a SBFD time slot; the first symbol is not a SBFD symbol; the first subband configuration is deactivated or not used in the second time slot; the first subband configuration is deactivated or not used in the second symbol.

[0275] Optionally, the determination module 820 is used to receive second indication information sent by the network device, where the second indication information is used to configure CG resources or to indicate activation or deactivation of CG resources; and configure, activate or use CG resources according to the second indication information.

[0276] Optionally, the terminal includes at least one of the following terminals: a terminal that supports SBFD and / or recognizes SBFD; a first terminal; a terminal that does not support SBFD and / or does not recognize SBFD; a terminal of a preset version; a terminal of a version previous to the preset version.

[0277] Optionally, the apparatus further includes a receiving module 840, configured to receive configuration information sent by a network device; wherein the configuration information includes a first subband configuration and / or a transmission resource configuration.

[0278] Optionally, the configuration information includes at least one of the following information: common or cell-granular configuration information;

[0279] Terminal-specific configuration information; configuration information at the cell group granularity; terminal group-specific configuration information.

[0280] Optionally, the configuration information of the public or cell granularity is carried in any one of the following signalings: RRC message; SIB message; MIB message.

[0281] Optionally, the terminal-specific configuration information is carried in any one of the following signaling: a terminal-specific RRC message; DCI; or MAC CE.

[0282] Optionally, the configuration information of the cell group granularity is carried in a DCI or RRC message.

[0283] Optionally, the terminal group-specific configuration information is carried in a DCI, or a MAC CE, or an RRC message.

[0284] Optionally, the first subband configuration includes at least one of the following information: time slot / symbol of the uplink part; time slot / symbol supporting SBFD; frequency domain configuration of the uplink part; frequency domain configuration supporting SBFD; SPS configuration corresponding to the first subband configuration; CG configuration corresponding to the first subband configuration; SPS configuration corresponding to the downlink subband of the SBFD time slot / symbol; CG configuration corresponding to the downlink subband of the SBFD time slot / symbol.

[0285] Optionally, the configuration granularity of the first subband configuration is at least one of a time slot, a radio frame, and a symbol.

[0286] Optionally, the first sub-band configuration includes at least one type of first sub-band configuration.

[0287] Optionally, the configuration type of the first subband configuration includes at least one of the following: periodic first subband configuration; semi-static first subband configuration; dynamic first subband configuration; non-periodic first subband configuration; public first subband configuration; terminal-specific first subband configuration; and terminal group-specific first subband configuration.

[0288] Optionally, the SPS resource is an SPS resource that is used by RRC configuration; or, the SPS resource is an SPS resource that is used by RRC configuration and DCI activation; or, the SPS resource is an SPS resource that is used by RRC configuration and the first subband configuration; or, the SPS resource is an SPS resource that is configured by RRC configuration and the first subband configuration; or, the SPS resource is an SPS resource that is activated by RRC configuration and the first subband configuration; or, the SPS resource is an SPS resource that is activated by RRC configuration and SBFD activation; or, the SPS resource is an SPS resource that is deactivated by RRC configuration and SBFD deactivation; or, the SPS resource is an SPS resource that is configured by RRC configuration. and SBFD is deconfigured, i.e., the SPS resource is deconfigured; or, the SPS resource is configured through RRC and deconfigured through SBFD, i.e., the SPS resource is deactivated; or, the SPS resource is configured through RRC and activated through SBFD, i.e., the SPS resource is used; or, the SPS resource is configured through RRC and activated by DCI and the first subband configuration, i.e., the SPS resource is configured through RRC and activated by DCI and activated by SBFD, i.e., the SPS resource is used; wherein, the SPS resource corresponds to the first subband configuration, or, the SPS resource is configured in the SPS configuration, or the SPS resource is a terminal-specific downlink configuration, or the SPS resource has no association with the first subband configuration.

[0289] Optionally, the CG resource is a CG resource used after being configured by RRC; or, the CG resource is a CG resource used after being configured by RRC and DCI is activated; or, the CG resource is a CG resource used after being configured by RRC and the first subband configuration; or, the CG resource is a CG resource configured by RRC and the first subband configuration; or, the CG resource is a CG resource activated after being configured by RRC and the first subband configuration; or, the CG resource is a CG resource activated after being configured by RRC and SBFD is activated; or, the CG resource is a CG resource deactivated after being configured by RRC and SBFD is deactivated; or, the CG resource is a CG resource configured by RRC and SBFD deconfiguration is a CG resource that is deconfigured; or, the CG resource is configured through RRC and deconfigured through SBFD, that is, deactivated; or, the CG resource is configured through RRC and used by SBFD activation; or, the CG resource is configured through RRC and used by DCI and the first subband configuration; or, the CG resource is configured through RRC and used by DCI activation and SBFD activation; wherein, the CG resource corresponds to the first subband configuration, or, the CG resource is configured in the CG configuration, or the CG resource is a terminal-specific uplink (UL) configuration, or the CG resource has no association with the first subband configuration.

[0290] FIG9 shows a schematic structural diagram of a communication device (terminal or network device) provided by an exemplary embodiment of the present application. The communication device includes: a processor 901 , a receiver 902 , a transmitter 903 , a memory 904 and a bus 905 .

[0291] The processor 901 includes one or more processing cores. The processor 901 executes various functional applications and information processing by running software programs and modules.

[0292] The receiver 902 and the transmitter 903 may be implemented as a communication component, which may be a communication chip.

[0293] The memory 904 is connected to the processor 901 via a bus 905 .

[0294] The memory 904 may be configured to store at least one instruction, and the processor 901 may be configured to execute the at least one instruction to implement the various steps of the method for determining the RAR receiving window mentioned in the above method embodiment.

[0295] In addition, the memory 904 can be implemented by any type of volatile or non-volatile storage device or a combination thereof. Volatile or non-volatile storage devices include but are not limited to: magnetic disks or optical disks, electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), static random access memory (SRAM), read-only memory (ROM), magnetic memory, flash memory, and programmable read-only memory (PROM).

[0296] The present application also provides a terminal, which includes a processor; the processor is used to implement the method for determining transmission resources as described above.

[0297] The present application also provides a computer-readable storage medium, in which a computer program is stored. The computer program is used to be executed by a processor to implement the method for determining transmission resources as described above.

[0298] The present application also provides a chip, which includes a programmable logic circuit and / or program instructions. When the chip is running, it is used to implement the method for determining the transmission resources as described above.

[0299] The present application also provides a computer program product or computer program, which includes computer instructions stored in a computer-readable storage medium. The processor reads and executes the computer instructions from the computer-readable storage medium to implement the method for determining transmission resources as described above.

[0300] The above description is merely an optional embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the scope of protection of the present application.

Claims

1. A method for determining transmission resources, characterized in that: The method is executed by a terminal, and includes: Based on the first subband configuration and / or the transmission resource configuration, uplink transmission resources and / or downlink transmission resources are determined.

2. The method according to claim 1, characterized in that The determining of uplink transmission resources and / or downlink transmission resources based on the first subband configuration and / or the transmission resource configuration includes: Determine a resource location of the uplink transmission resource and / or a resource location of the downlink transmission resource based on the first subband configuration and / or the transmission resource configuration; and / or, determining an available state of the uplink transmission resource and / or an available state of the downlink transmission resource based on the first subband configuration and / or the transmission resource configuration; And / or, based on the first subband configuration and / or the transmission resource configuration, determining whether to use the uplink transmission resource and / or the downlink transmission resource for resource transmission.

3. The method according to claim 1 or 2, characterized in that: The determining of uplink transmission resources and / or downlink transmission resources based on the first subband configuration and / or the transmission resource configuration includes: Based on the first subband configuration and / or the transmission resource configuration, determine to activate / deactivate / use / not use / suspend / restore semi-persistent scheduling SPS resources.

4. The method according to claim 3, characterized in that The determining to activate / deactivate / use SPS resources based on the first subband configuration and / or the transmission resource configuration includes: Receive SPS resources configured by network devices; Use or activate or deactivate the SPS resources configured by the network device.

5. The method according to claim 4, characterized in that The SPS resources configured by the network device include at least one of a first type SPS resource, a second type SPS resource and a conditional type SPS resource; and / or, The SPS resources configured by the network device are determined by the network device according to the downlink unit or the first subband configuration.

6. The method according to any one of claims 3 to 5, characterized in that: The determining to activate / deactivate / use / not use the SPS resource based on the first subband configuration and / or the transmission resource configuration includes: Based on the first subband configuration and / or the transmission resource configuration, the terminal performs at least one of the following steps: activating or using a first SPS resource, where the first SPS resource is an SPS resource corresponding to sub-band full-duplex SBFD, or the first SPS resource is an SPS resource corresponding to an uplink sub-band of SBFD; Deactivating or not using a first preconfigured CG resource, where the first CG resource is a CG resource corresponding to the SBFD, or the first CG resource is a CG resource corresponding to an uplink subband of the SBFD; Activate or use the first CG resource; The second CG resource (i.e. the legacy CG in the briefing document) is considered unusable; Deactivating or not using the first SPS resource; The second SPS resource (i.e. the legacy SPS in the briefing document) is considered unavailable; Split the third SPS resource (i.e. the normative SPS in the briefing book) into actual SPS resources; Split the third CG resource into actual CG resources; Deactivate or do not use the first SPS resource in a first uplink subband of a time slot or symbol or in a second uplink subband corresponding to the SBFD; In the first uplink subband or in the second uplink subband, the second SPS resource is considered unavailable; activating or using the first SPS resource in the first uplink subband or in the second uplink subband; activating or using the first CG resource in the first uplink subband or in the second uplink subband; activating or using an overlapping portion of the second SPS resource and the SBFD in the first uplink subband or in the second uplink subband; In the first uplink subband or in the second uplink subband, an overlapping portion of the first SPS resource and the SBFD SPS is activated or used.

7. The method according to claim 6, characterized in that The terminal performs at least one of the steps when a first condition is met, and the first condition includes at least one of the following conditions: The first time unit is the time unit corresponding to SBFD; The second time unit is the time unit for SBFD activation; The first time slot is a SBFD time slot; The first symbol is the SBFD symbol; activating the first subband configuration on a second time slot; The first subband configuration is activated on a second symbol.

8. The method according to any one of claims 3 to 5, characterized in that: The determining to activate / deactivate / use / not use the SPS resource based on the first subband configuration and / or the transmission resource configuration includes: Based on the first subband configuration and / or the transmission resource configuration, deactivate or do not use a first SPS resource, where the first SPS resource is an SPS resource corresponding to the first subband configuration; And / or, based on the first subband configuration and / or the transmission resource configuration, activate or use a second SPS resource (ie, the legacy SPS in the briefing document).

9. The method according to claim 8, characterized in that The terminal performs at least one of the steps when a second condition is met, where the second condition includes at least one of the following conditions: The first time unit is not a time unit corresponding to the sub-band full-duplex SBFD; The second time unit is the time unit for SBFD activation; The first time slot is not a SBFD time slot; The first symbol is not a SBFD symbol; deactivating or not using the first subband configuration in a second time slot; The first subband configuration is deactivated or not used in the second symbol.

10. The method according to any one of claims 3 to 5, characterized in that: The determining to activate / use SPS resources based on the first subband configuration and / or the transmission resource configuration includes: receiving first indication information sent by a network device, where the first indication information is used to configure the SPS resource, or to indicate activation or deactivation of the SPS resource; According to the first indication information, the SPS resources are configured, activated or used.

11. The method according to claim 1 or 2, characterized in that: The determining of uplink transmission resources and / or downlink transmission resources based on the first subband configuration and / or the transmission resource configuration includes: Based on the first subband configuration and / or the transmission resource configuration, determine to activate / deactivate / use / not use / pause / restore the pre-configured CG resources.

12. The method according to claim 11, characterized in that The determining to activate / deactivate / use a preconfigured CG resource based on the first subband configuration and / or the transmission resource configuration includes: Receive CG resources configured by network devices; Use or activate or deactivate the CG resources configured by the network device.

13. The method according to claim 12, characterized in that The CG resources configured by the network device include at least one of first type CG resources, second type CG resources and conditional type CG resources; and / or, The CG resources configured by the network device are determined by the network device according to the uplink unit or the first subband configuration.

14. The method according to any one of claims 11 to 13, characterized in that: The determining to activate / deactivate / use / not use CG resources based on the first subband configuration and / or the transmission resource configuration includes: Based on the first subband configuration and / or the transmission resource configuration, the terminal performs at least one of the following steps: Activate or use a first CG resource, where the first CG resource is a CG resource corresponding to sub-band full-duplex SBFD, or the first CG resource is a CG resource corresponding to an uplink sub-band of SBFD; Deactivating or not using the first CG resource; The second CG resources are considered unavailable; Deactivating or not using a first preconfigured SPS resource, where the first SPS resource is an SPS resource corresponding to the SBFD, or the first SPS resource is an SPS resource corresponding to an uplink subband of the SBFD; The second SPS resource is considered unavailable; Splitting the third SPS resource into actual SPS resources; Split the third CG resource into actual CG resources; Deactivate or do not use the first SPS resource in a first uplink subband of a time slot or symbol or in a second uplink subband corresponding to the SBFD; In the first uplink subband or in the second uplink subband, the second SPS resource is considered unavailable; activating or using the first SPS resource in the first uplink subband or in the second uplink subband; activating or using the first CG resource in the first uplink subband or in the second uplink subband; activating or using an overlapping portion of the second CG resource and the SBFD in the first uplink subband or in the second uplink subband; In the first uplink subband or in the second uplink subband, an overlapping portion of the first CG resources and the SBFD CG is activated or used.

15. The method according to claim 14, characterized in that The terminal performs at least one of the steps when a first condition is met, and the first condition includes at least one of the following conditions: The first time unit is the time unit corresponding to SBFD; The second time unit is the time unit for SBFD activation; The first time slot is a SBFD time slot; The first symbol is the SBFD symbol; activating the first subband configuration on a second time slot; The first subband configuration is activated on a second symbol.

16. The method according to any one of claims 11 to 13, characterized in that: The determining to activate / deactivate / use / not use CG resources based on the first subband configuration and / or the transmission resource configuration includes: Based on the first subband configuration and / or the transmission resource configuration, deactivate or do not use a first CG resource, where the first CG resource is a CG resource corresponding to the first subband configuration, or the first CG resource is a CG resource corresponding to an uplink subband of subband full-duplex SBFD; And / or, based on the first subband configuration and / or the transmission resource configuration, activate or use a second CG resource.

17. The method according to claim 16, characterized in that The terminal performs at least one of the steps when a second condition is met, where the second condition includes at least one of the following conditions: The first time unit is not the time unit corresponding to SBFD; The second time unit is the time unit for SBFD activation; The first time slot is not a SBFD time slot; The first symbol is not a SBFD symbol; deactivating or not using the first subband configuration in a second time slot; The first subband configuration is deactivated or not used in the second symbol.

18. The method according to any one of claims 11 to 13, characterized in that: The determining to activate / use CG resources based on the first subband configuration and / or the transmission resource configuration includes: receiving second indication information sent by a network device, where the second indication information is used to configure the CG resource, or to indicate activation or deactivation of the CG resource; According to the second indication information, configure, activate or use the CG resources.

19. The method according to any one of claims 3 to 18, characterized in that: The terminal includes at least one of the following terminals: Terminals supporting sub-band full-duplex SBFD and / or recognizing SBFD; The first terminal; Terminals that do not support SBFD and / or do not recognize SBFD; Preset version of terminal; The terminal of the previous version of the preset version.

20. The method according to any one of claims 3 to 19, characterized in that: The method further comprises: Receive configuration information sent by network devices; The configuration information includes the first subband configuration and / or the transmission resource configuration.

21. The method according to claim 20, characterized in that The configuration information includes at least one of the following information: Configuration information at public or cell granularity; Configuration information specific to the terminal; Configuration information of cell group granularity; Configuration information specific to a terminal group.

22. The method according to claim 21, characterized in that The configuration information of the common or cell granularity is carried in any of the following signalings: Radio Resource Control RRC message; System Information Block SIB message; Management Information Block (MIB) message.

23. The method according to claim 21, characterized in that The terminal-specific configuration information is carried in any of the following signaling: A dedicated radio resource control RRC message of the terminal; Downlink control information DCI; Downlink media access control element MAC CE.

24. The method according to claim 21, characterized in that The configuration information of the cell group granularity is carried in the downlink control information DCI or the radio resource control RRC message.

25. The method according to claim 21, characterized in that The terminal group-specific configuration information is carried in downlink control information DCI, or downlink media access control element MAC CE, or radio resource control RRC message.

26. The method according to any one of claims 3 to 19, characterized in that: The first subband configuration includes at least one of the following information: Time slot / symbol of the uplink part; Support sub-band full-duplex SBFD time slot / symbol; Frequency domain configuration of the uplink part; Support frequency domain configuration of SBFD; an SPS configuration corresponding to the first subband configuration; a CG configuration corresponding to the first subband configuration; The SPS configuration corresponding to the downlink subband of the SBFD time slot / symbol; The CG configuration corresponding to the downlink subband of the SBFD time slot / symbol.

27. The method according to any one of claims 3 to 19, characterized in that: A configuration granularity of the first subband configuration is at least one of a time slot, a radio frame, and a symbol.

28. The method according to any one of claims 3 to 19, characterized in that: The first sub-band configuration includes at least one type of first sub-band configuration.

29. The method according to claim 28, characterized in that The configuration type of the first subband configuration includes at least one of the following: The first subband configuration of the period; Semi-static first subband configuration; Dynamic first subband configuration; A non-periodic first subband configuration; a common first subband configuration; A first subband configuration dedicated to the terminal; The first subband configuration dedicated to the terminal group.

30. The method according to any one of claims 3 to 29, characterized in that: The SPS resources are SPS resources that are used by radio resource control RRC configuration; Alternatively, the SPS resource is an SPS resource configured by the RRC and activated by downlink control information DCI; Alternatively, the SPS resource is an SPS resource configured by the RRC and used by the first subband configuration; Alternatively, the SPS resource is an SPS resource configured by the RRC and the first subband configuration is configured; Alternatively, the SPS resource is an SPS resource that is configured by the RRC and activated by the first subband configuration; Alternatively, the SPS resource is an SPS resource that is configured by the RRC and activated by sub-band full-duplex SBFD; Alternatively, the SPS resource is an SPS resource configured by the RRC and deactivated by SBFD; Alternatively, the SPS resource is an SPS resource configured by the RRC and deconfigured by SBFD; Alternatively, the SPS resource is an SPS resource configured by the RRC and deconfigured, i.e., deactivated, by SBFD; Alternatively, the SPS resource is an SPS resource configured by the RRC and used when the SBFD is activated; Alternatively, the SPS resource is an SPS resource that is configured by the RRC and activated by the DCI and that is used by the first subband configuration; Alternatively, the SPS resource is an SPS resource used by the RRC configuration and the DCI activation and SBFD activation; The SPS resource corresponds to the first subband configuration, or the SPS resource is configured in the SPS configuration, or the SPS resource is a downlink configuration dedicated to the terminal, or the SPS resource has no association with the first subband configuration.

31. The method according to any one of claims 6 to 29, characterized in that: The CG resources are CG resources used after being configured by radio resource control RRC; Alternatively, the CG resource is a CG resource used after being configured by the RRC and activated by downlink control information DCI; Alternatively, the CG resource is a CG resource configured by the RRC and used by the first subband configuration; Alternatively, the CG resource is a CG resource configured by the RRC and the first subband configuration is configured; Alternatively, the CG resource is a CG resource that is configured by the RRC and activated by the first subband configuration; Alternatively, the CG resource is a CG resource that is activated by the RRC configuration and sub-band full-duplex SBFD activation; Alternatively, the CG resource is a CG resource configured by the RRC and deactivated by SBFD; Alternatively, the CG resource is a CG resource configured by the RRC and deconfigured by SBFD; Alternatively, the CG resource is a CG resource configured by the RRC and deconfigured, i.e., deactivated, by SBFD; Alternatively, the CG resource is a CG resource configured by the RRC and used immediately after SBFD activation; Alternatively, the CG resource is a CG resource configured by the RRC and activated by the DCI and used by the first subband configuration; Alternatively, the CG resource is a CG resource used by the RRC configuration and the DCI activation and SBFD activation; The CG resource corresponds to the first subband configuration, or the CG resource is configured in the CG configuration, or the CG resource is an uplink configuration dedicated to the terminal, or the CG resource has no association with the first subband configuration.

32. A device for determining transmission resources, characterized in that: The device comprises: The determination module is used to determine uplink transmission resources and / or downlink transmission resources based on the first subband configuration and / or the transmission resource configuration.

33. A terminal, characterized in that: The terminal includes a processor; The processor is used to implement the method for determining transmission resources as described in any one of claims 1 to 31.

34. A computer-readable storage medium, characterized in that: The storage medium stores a computer program, and the computer program is used to be executed by a processor to implement the method for determining transmission resources as described in any one of claims 1 to 31.

35. A chip, characterized in that: The chip includes a programmable logic circuit and / or program instructions, and when the chip is running, it is used to implement the method for determining the transmission resources as described in any one of claims 1 to 31.

36. A computer program product or a computer program, characterized in that The computer program product or computer program includes computer instructions, which are stored in a computer-readable storage medium. The processor reads and executes the computer instructions from the computer-readable storage medium to implement the method for determining the transmission resources as described in any one of claims 1 to 31.