Resource configuration method and apparatus, and terminal and network-side device

By configuring information to instruct terminals to skip specific resources, the problem of high transmission latency in communication systems is solved, resulting in lower transmission latency and a simplified resource skipping process.

WO2026067291A1PCT designated stage Publication Date: 2026-04-02VIVO MOBILE COMM CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-09-22
Publication Date
2026-04-02

AI Technical Summary

Technical Problem

In communication systems, terminal devices are unable to transmit data at intervals and limited times, resulting in significant transmission delays.

Method used

By receiving and sending configuration information, it indicates target resources that can be skipped, target resources that cannot be skipped, and whether to enable skipping target resources, so as to carry out transmission on the skipped target resources, including intervals and timing restrictions.

Benefits of technology

This reduces transmission latency and lowers the complexity of enabling terminals to skip target resources.

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Abstract

The present application belongs to the technical field of communications. Disclosed are a resource configuration method and apparatus, and a terminal and a network-side device. The resource configuration method in the embodiments of the present application comprises: a terminal receiving first configuration information, which is used for indicating at least one of the following: a target resource that can be skipped, a target resource that cannot be skipped, and whether the skipping of a target resource is enabled, wherein the terminal performs transmission on the skipped target resource, and the target resource comprises at least one of a gap and a restriction occasion that are configured for the terminal.
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Description

Resource configuration method and device, terminal and network side equipment

[0001] Cross-reference to related applications

[0002] The present application claims priority to Chinese Patent Application No. 202411374610.8, filed on September 29, 2024, the contents of which are incorporated herein by reference in its entirety. TECHNICAL FIELD

[0003] The present application belongs to the field of communication technology, and specifically relates to a resource configuration method, device, terminal and network side equipment. BACKGROUND

[0004] In a communication system, a network side equipment configures a gap for a terminal, and the gap is used for the terminal to perform measurement, such as radio resource management (RRM) measurement. The protocol can also define some restriction occasions, and the scheduling is restricted on the restriction occasions. That is, the terminal cannot perform transmission on the gap and the restriction occasions, that is, can only perform transmission after the gap and the restriction occasions, which results in a large transmission delay. SUMMARY

[0005] Embodiments of the present application provide a resource configuration method, device, terminal and network side equipment, which can solve the problem of large transmission delay.

[0006] In a first aspect, a resource configuration method is provided, comprising:

[0007] A terminal receives first configuration information, and the first configuration information is used to indicate at least one of the following:

[0008] Target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping; wherein the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of the gap and the restriction occasion configured for the terminal.

[0009] In a second aspect, a resource configuration method is provided, comprising:

[0010] A network side equipment sends first configuration information to a terminal, and the first configuration information is used to indicate at least one of the following:

[0011] Target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping; wherein the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of the gap and the restriction occasion configured for the terminal.

[0012] In a third aspect, a resource configuration apparatus is provided, comprising:

[0013] a receiving module configured to receive first configuration information, the first configuration information being used to indicate at least one of the following:

[0014] skippable target resources, non-skippable target resources, and whether to enable target resource skipping; wherein the terminal performs transmission on the target resources that are skipped, and the target resources comprise at least one of interval and limited occasions configured for the terminal.

[0015] In a fourth aspect, a resource configuration apparatus is provided, comprising:

[0016] a sending module configured to send first configuration information to a terminal, the first configuration information being used to indicate at least one of the following:

[0017] skippable target resources, non-skippable target resources, and whether to enable target resource skipping; wherein the terminal performs transmission on the target resources that are skipped, and the target resources comprise at least one of interval and limited occasions configured for the terminal.

[0018] In a fifth aspect, a resource configuration apparatus is provided, the apparatus being configured to perform the steps of the method according to the first aspect, or implement the steps of the method according to the second aspect.

[0019] In a sixth aspect, a terminal is provided, comprising a processor and a memory, the memory storing programs or instructions executable on the processor, the programs or instructions being executed by the processor to implement the steps of the resource configuration method on the terminal side provided by the embodiments of the present application.

[0020] In a seventh aspect, a terminal is provided, comprising a processor and a communication interface, wherein the communication interface is configured to receive first configuration information, the first configuration information being used to indicate at least one of the following: skippable target resources, non-skippable target resources, and whether to enable target resource skipping; wherein the terminal performs transmission on the target resources that are skipped, and the target resources comprise at least one of interval and limited occasions configured for the terminal.

[0021] In an eighth aspect, a network side device is provided, comprising a processor and a memory, the memory storing programs or instructions executable on the processor, the programs or instructions being executed by the processor to implement the steps of the resource configuration method of the network side device provided by the embodiments of the present application.

[0022] In a ninth aspect, a network-side device is provided, including a processor and a communication interface, wherein the communication interface is configured to send a first configuration information to a terminal, the first configuration information being used to indicate at least one of the following: a target resource that can be skipped, a target resource that cannot be skipped, and whether to enable target resource skipping; and wherein the terminal performs transmission on the target resource that is skipped, and the target resource includes at least one of an interval and a limited occasion configured for the terminal.

[0023] In a tenth aspect, a readable storage medium is provided, and the readable storage medium stores a program or instructions, which are executed by a processor to implement steps of a resource configuration method for a terminal side or a resource configuration method for a network-side device according to embodiments of the present application.

[0024] In an eleventh aspect, a wireless communication system is provided, including a terminal and a network-side device, the terminal being configured to implement steps of a resource configuration method for a terminal side according to embodiments of the present application, and the network-side device being configured to implement steps of a resource configuration method for a network-side device according to embodiments of the present application.

[0025] In a twelfth aspect, a chip is provided, including a processor and a communication interface, the communication interface being coupled to the processor, and the processor being configured to run a program or instructions to implement steps of a resource configuration method for a terminal side or a resource configuration method for a network-side device according to embodiments of the present application.

[0026] In a thirteenth aspect, a computer program / program product is provided, and the computer program / program product is stored in a storage medium, and the computer program / program product is executed by at least one processor to implement steps of a resource configuration method for a terminal side or a resource configuration method for a network-side device according to embodiments of the present application.

[0027] In the embodiment of the present application, a terminal receives first configuration information, the first configuration information is used to indicate at least one of the following: target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping; wherein the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of the interval and the limited occasion configured for the terminal. In this way, since the terminal performs transmission on the target resources that are skipped, the terminal is supported to perform transmission in at least one of the interval and the limited occasion configured for the terminal, so as to reduce the transmission delay. In addition, since the first configuration information is used to indicate the target resources that can be skipped, the target resources that cannot be skipped, and whether to enable target resource skipping, the terminal can determine the target resources that can be skipped, the target resources that cannot be skipped, and whether to enable target resource skipping in advance, and compared with the way of directly dynamically indicating the target resources to be skipped, the implementation complexity of the terminal skipping the target resources is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0028] FIG. 1 is a schematic diagram of a system provided by an embodiment of the present application;

[0029] FIG. 2 is a schematic diagram of an interval parameter provided by an embodiment of the present application;

[0030] FIG. 3 is a flowchart of a resource configuration method provided by an embodiment of the present application;

[0031] FIG. 4 is a flowchart of another resource configuration method provided by an embodiment of the present application;

[0032] FIG. 5 is a schematic diagram of resource configuration signaling interaction provided by an embodiment of the present application;

[0033] FIG. 6 is a schematic diagram of parameter indication provided by an embodiment of the present application;

[0034] FIG. 7 is a schematic diagram of another parameter indication provided by an embodiment of the present application;

[0035] FIG. 8 is a schematic diagram of priority provided by an embodiment of the present application;

[0036] FIG. 9 is a structural diagram of a resource configuration apparatus provided by an embodiment of the present application;

[0037] FIG. 10 is a structural diagram of another resource configuration apparatus provided by an embodiment of the present application;

[0038] FIG. 11 is a structural diagram of a communication device provided by an embodiment of the present application;

[0039] FIG. 12 is a structural diagram of a terminal provided by an embodiment of the present application;

[0040] FIG. 13 is a structural diagram of a network side device provided by an embodiment of the present application. DETAILED DESCRIPTION

[0041] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art belong to the scope of protection of the present application.

[0042] The terms "first", "second", and the like in the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the terms used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second" are generally a class, and are not limited to the number of objects, for example, the first object can be one or more. In addition, "or" in the present application means at least one of the connected objects. For example, the protection scope of "A or B" at least covers three schemes, namely, scheme one: including A and not including B; scheme two: including B and not including A; scheme three: including A and B. In addition, the terms "A and / or B", "at least one of A and B", "at least one of A or B" also at least cover the above three schemes, respectively. The character " / " generally represents that the objects before and after are in an "or" relationship.

[0043] The term "indicate" in the present application can be a direct indication (or explicit indication) or an indirect indication (or implicit indication). Among them, the direct indication can be understood as that the sender explicitly informs the receiver of the specific information, the operation to be performed or the request result, etc. in the sent indication; the indirect indication can be understood as that the receiver determines the corresponding information according to the indication sent by the sender, or judges and determines the operation to be performed or the request result, etc. according to the judgment result.

[0044] It is worth noting that the technology described in the embodiments of the present application is not limited to Long Term Evolution (LTE) / LTE-Advanced (LTE-A) systems, but can also be used in other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-carrier Frequency-Division Multiple Access (SC-FDMA) or other systems.

[0045] The terms "system" and "network" in the embodiments of the present application are often used interchangeably, and the described technology can be used in the above-mentioned systems and radio technologies, as well as in other systems and radio technologies. The following description describes a New Radio (NR) system for example purposes, and NR terminology is used in most of the following description, but these technologies can also be applied to systems other than NR systems, such as 6th Generation (6G) communication systems. th

[0046] Figure 1 shows a schematic diagram of a wireless communication system to which the embodiments of the present application can be applied. The wireless communication system includes a terminal 11 and a network-side device 12.

[0047] ​The terminal 11 can be a mobile phone, a Tablet Personal Computer, a Laptop Computer, a notebook computer, a Personal Digital Assistant (PDA), a palm computer, a netbook, an Ultra-mobile Personal Computer (UMPC), a Mobile Internet Device (MID), an Augmented Reality (AR) device, a Virtual Reality (VR) device, a robot, a wearable device, a flight vehicle, a drone (also referred to as an Uncrewed Aerial Vehicle, UAV), an electric Vertical Take-off and Landing (eVTOL), a helicopter, a traditional fixed-wing aircraft, a Vehicle User Equipment (VUE), a shipboard device, a Pedestrian User Equipment (PUE), a smart home (a home device with a wireless communication function, such as a refrigerator, a television, a washing machine, or furniture), a game console, a Personal Computer (PC), a teller machine, or a self-service machine, and the like. The wearable device includes a smart watch, a smart bracelet, a smart earphone, smart glasses, smart jewelry (a smart bracelet, a smart necklace, a smart ring, a smart necklace, a smart anklet, a smart necklace, and the like), a smart wristband, smart clothing, and the like. The vehicle-mounted device can also be referred to as a vehicle-mounted terminal, a vehicle-mounted controller, a vehicle-mounted module, a vehicle-mounted component, a vehicle-mounted chip, or a vehicle-mounted unit, and the like. It should be noted that the specific type of the terminal 11 is not limited in the embodiments of the present application.

[0048] The network side device 12 can include an access network device or a core network device, wherein the access network device can also be referred to as a radio access network (RAN) device, a radio access network function, a radio access network unit, or a satellite. The access network device can include a base station, a wireless local area network (WLAN) access point (AP), or a wireless fidelity (WiFi) node, etc. Among them, the base station can be referred to as a node B (NB), an evolved node B (eNB), a next generation node B (gNB), a new radio node B (NR Node B), an access point, a relay base station (RBS), a serving base station (SBS), a base transceiver station (BTS), a radio base station, a radio transceiver, a basic service set (BSS), an extended service set (ESS), a home node B (HNB), a home evolved node B, a transmit / receive point (TRP), or some other suitable term in the art, as long as the same technical effect is achieved. The base station is not limited to a specific technical term, and it should be noted that in the embodiments of the present application, only the base station in the NR system is taken as an example for introduction, and the specific type of the base station is not limited.

[0049] The core network device can also be referred to as a core network node, a core network function, or a core network network element, etc., which includes but is not limited to at least one of the following: a mobility management entity (MME), an access and mobility management function (AMF), a session management function (SMF), a user plane function (UPF), a policy control function (PCF), a policy and charging rules function (PCRF), an edge application server discovery function (EASDF), a unified data management (UDM), a unified data repository (UDR), a home subscriber server (HSS), a centralized network configuration (CNC), a network repository function (NRF), a network exposure function (NEF), a local NEF (L-NEF), a binding support function (BSF), an application function (AF), a location management function (LMF), a gateway mobile location center (GMLC), a network data analytics function (NWDAF), etc. It should be noted that only the core network device in the NR system is taken as an example for introduction in the embodiments of the present application, and the specific type of the core network device is not limited. If the name of the core network device mentioned in the embodiments of the present application changes in the subsequent protocol version (for example, 6G), it is also within the protection scope of the present application.

[0050] Optionally, the core network device can be implemented by one or more function modules in one device, or can be implemented by multiple devices jointly, and the embodiments of the present application do not make a specific limitation. It can be understood that the above function modules can be network elements in a hardware device, can be software function modules running on a special hardware, or can be virtualized function modules instantiated on a platform (for example, a cloud platform).

[0051] In some embodiments, taking the gap mechanism in New Radio (NR) as an example, in the NR system, in order to support system (such as mobility, cell switching, etc.), Multi universal Subscriber Identity Module (MUSIM), transport (Tx) power control, beam management, radio link monitoring measurement, the network side device configures the terminal with synchronization signal block (SSB) / channel state information reference signal (CSI-RS) resources of the current serving cell and one to multiple neighboring cells for RRM measurement. At the same time, due to the terminal transceiver capability limitation, for example, the terminal cannot simultaneously transmit and receive, cannot simultaneously receive downlink transmission of different subcarrier spacing (SCS), beam capability, etc., when performing the above measurement, the UE needs a certain gap, and the network side device will configure the terminal with a certain measurement gap or protocol defines some scheduling restrictions.

[0052] In some embodiments, the basic measurement gap (Measurement Gap, MG) configuration can be as follows:

[0053] If the terminal needs a measurement gap to identify and measure at least one of intra-frequency cells, inter-frequency cells, and inter-RAT E-UTRAN cells in a frequency range, then:

[0054] If the terminal does not support independent measurement gap patterns for different frequency ranges, the network needs to provide a per-UE measurement gap pattern for concurrent monitoring of all frequency layers;

[0055] If the terminal supports independent measurement gap patterns for different frequency ranges, the network needs to provide either a per-FR measurement gap pattern for frequency ranges for which the terminal is required to monitor all frequency layers of each frequency range independently and concurrently, or a per-UE measurement gap pattern for concurrent monitoring of all frequency layers of all frequency ranges.

[0056] In some embodiments, the terminal behavior when configured with measurement gaps can be as follows:

[0057] Wherein during the per-UE measurement gap, the terminal behavior includes one or more of the following:

[0058] For Evolved-Universal Terrestrial Radio Access-New Radio (E-UTRA-NR) dual connectivity, in addition to receiving signals for RRM measurement and signals for random access procedure, no reception / transmission is required from / to the corresponding Evolved-Universal Terrestrial Radio Access (E-UTRAN) primary cell (PCell), E-UTRAN cell, and New Radio (NR) serving cell for E-UTRA-NR dual connectivity;

[0059] For Standalone Architecture (SA), in addition to receiving signals for RRM measurement, Positioning Reference Signal (PRS) measurement, and signals for random access procedure, no reception / transmission is required from / to the corresponding NR serving cell, which can be configured with single carrier or carrier aggregation (CA).

[0060] For NR-E-UTRA Dual Connectivity, except for receiving signals for RRM measurement, PRS measurement and for random access procedure, no reception / transmission is required from / to the corresponding PCell, Secondary Cell (Scell) and E-UTRAN serving cell.

[0061] For NR Dual Connectivity (NR-DC), except for receiving signals for RRM measurement, PRS measurement and for random access procedure, no reception / transmission is required for NR-DC from / to the corresponding NR serving cell.

[0062] During a measurement gap at a frequency range (FR) level, the behavior of the terminal includes one or more of the following:

[0063] For E-UTRA-NR Dual Connectivity, except for receiving signals for RRM measurement and for random access procedure, no reception / transmission is required in the corresponding frequency range of E-UTRA-NR Dual Connectivity from / to the corresponding E-UTRAN PCell, E-UTRAN cell and NR serving cell.

[0064] For SA (single carrier or CA configured), in the corresponding frequency range, except for receiving signals for RRM measurement, PRS measurement and for random access procedure, no reception / transmission is required from / to the corresponding NR serving cell.

[0065] For NR-E-UTRA Dual Connectivity, except for receiving signals for RRM measurement, PRS measurement and for random access procedure, no reception / transmission is required from / to the corresponding PCell, Scell and E-UTRAN serving cell of NR-E-UTRA Dual Connectivity.

[0066] For NR-DC, in the corresponding frequency range, except for receiving signals for RRM measurement, PRS measurement and for random access procedure, no reception / transmission is required from / to the corresponding NR serving cell in the corresponding frequency range of NR-DC.

[0067] In some embodiments, the derivation or enhancement mechanisms based on the measurement gap can be as follows:

[0068] Based on the above configuration of the per-UE measurement gap or per-FR measurement gap and the behavior of the terminal, the following derivation or enhancement mechanisms are further introduced in NR:

[0069] I. Measurement gap sharing

[0070] When either of Intra-frequency measurement and Inter-frequency measurement needs to occupy or affect the usage of measurement gap (e.g., SSB based measurement corresponds to SSB Measurement Timing Configuration (SMTC) window fully overlaps with measurement gap), the sharing of measurement gap between Intra-frequency measurement and Inter-frequency measurement needs to be considered.

[0071] Specifically, when the following conditions are all met simultaneously based on terminal level measurement gap or FR level measurement gap, the measurement gap sharing for terminal level measurement gap and / or FR corresponding FR level measurement gap is applied:

[0072] Condition 1: Intra-frequency measurement needs to occupy or affect the usage of measurement gap;

[0073] Condition 2: Inter-frequency measurement or Radio Access Technology (RAT) measurement needs to occupy measurement gap, or Inter-frequency measurement does not need to occupy measurement gap but affects the usage of measurement gap;

[0074] Condition 3: The terminal is configured to measure positioning frequency layers.

[0075] For measurement gap sharing, it can be controlled by the parameter MeasGapSharingScheme in the Radio Resource Control (RRC) message configured by the network device.

[0076] II. Pre-configured measurement gap

[0077] Compared with the basic measurement gap, NR further introduces the Activation / Deactivation mechanism. When a certain pre-configured measurement gap is activated, its operation is exactly the same as the basic measurement gap.

[0078] For the Activation / Deactivation mechanism, the following two mechanisms can be further distinguished:

[0079] Autonomous activation / deactivation mechanism, under which the terminal can autonomously change the status of a pre-configured measurement gap from activated to deactivated, or vice versa, according to any one or any combination of the trigger conditions listed in the relevant protocol.

[0080] Network-controlled activation / deactivation mechanism, under which the terminal can determine the status of a certain pre-configured measurement gap as activated or deactivated based on the parameter preConfGapStatus in the RRC message configured by the network device.

[0081] Three, concurrent measurement gaps

[0082] Relative to the basic measurement gap, the terminal is allowed to be configured with a combination of measurement gap occasions that have conflicts.

[0083] When the terminal does not support the configuration of FR-level measurement gaps, the network device can configure the terminal with up to two per-UE measurement gap patterns; when the UE supports the configuration of FR-level measurement gaps (per-FR MG), the network can configure the UE with a combination of measurement gap patterns in the relevant protocol.

[0084] The judgment of the collision of measurement gap occasions is referred to the relevant protocol. When it is judged that there is a collision, the corresponding measurement gap occasion with higher priority (Higher priority) is applied (effective), and the corresponding measurement gap occasion with lower priority (Lower priority) is abandoned (not effective). It is required that any two measurement gap occasions judged to have a collision have corresponding priorities, and the corresponding priorities are different.

[0085] 4) Other (independent of measurement gap) gap mechanisms

[0086] In NR, the following gap mechanisms are further introduced:

[0087] One, network-controlled small gap (Network controlled small gap, NCSG)

[0088] When NCSG is configured, no other measurement gap is allowed to be configured simultaneously.

[0089] The illustration of NCSG parameters is shown in Figure 2.

[0090] In Figure 2, visible interruption length (VIL) 1 is the visible interruption length before measurement length (ML), and VIL 2 is the visible interruption length after ML. During VIL 1 and VIL 2, the terminal does not need to send and receive any data.

[0091] During ML, whether the terminal is expected to send and receive data on the corresponding service operator depends on the scheduling restriction requirement agreed by the protocol.

[0092] VIRP is the visible interruption repetition period.

[0093] See the protocol agreement for NCSG configurations table. The NCSG configuration table is different from the measurement gap configuration table.

[0094] II. MUSIM Gap

[0095] MUSIM Gap is used for MUSIM operation, such as cell identification and measurement, paging monitoring, on-demand representative system information block (SIB) acquisition, and / or on-demand system information (SI) request for target cells in a target network.

[0096] III. UL gap for Tx power management

[0097] UL gap is used for transmit power measurement for NR FR2, and there is a restriction for partial uplink transmission in the following scenarios:

[0098] In FR2 single component carrier (CC) scenarios, FR2 intra-band carrier aggregation (CA) scenarios, and FR2 inter-band CA scenarios where the terminal does not support UL transmission within the FR2 UL gap (specifically, the terminal capability parameter tx-Support-UL-GapFR2-r17, which indicates whether the terminal supports UL transmission within the FR2 UL gap when the FR2 UL gap is activated in inter-band UL CA. For details, see the corresponding protocol specification), when the UL gap of the NR service unit overlaps with the uplink transmission, the terminal does not need to perform some specific transmission in the UL gap of the NR service unit. For details, see the specific transmission defined in the protocol.

[0099] The uplink interval pattern configuration table is different from the basic measurement interval configuration table, as specified in the protocol.

[0100] In some embodiments, the scheduling availability restrictions can be as follows:

[0101] In addition to the data transmission and reception restrictions on the terminal side of the aforementioned interval mechanism, scheduling availability restrictions are introduced in the time period (or subset of symbols therein) during which the terminal (may) perform RRM operations.

[0102] It should be noted that the following listed cases are concerned with scheduling restrictions when the terminal is not in the measurement interval (the case marked with NCSG is for the scheduling restriction of the terminal during the ML of NCSG, at which time the terminal is not allowed to be configured with other measurement intervals simultaneously).

[0103] Specifically, the factors considered for introducing scheduling availability restrictions in the time period during which the terminal (may) perform RRM operations include the following factors:

[0104] Factor 1: Switching between uplink and downlink transmission directions

[0105] At this time, only the uplink transmission is affected: the terminal does not expect to transmit physical uplink control channel (PUCCH) / physical uplink shared channel (PUSCH) / sounding reference signal (SRS).

[0106] Cases: The terminal performs measurement in Time Division Duplexing (TDD) band, see "Note 11" below for FR1, including the following cases:

[0107] Case 1: Intra-frequency measurement without MG (or with NCSG) based on NR SSB;

[0108] In this case, the scheduling restrictions involve symbols including SSB symbols within the SMTC window duration, Received Signal Strength Indicator (RSSI) measurement symbols (only for SS reference signal received quality (SS-RSRQ) measurement), and some data symbols before / after the aforementioned symbols.

[0109] In this case, it is extended to other serving cells, see "Note 12" and "Note 13" below.

[0110] Case 2: Inter-frequency measurement without MG (or with NCSG) based on NR SSB;

[0111] In this case, the scheduling restrictions involve symbols including SSB symbols within the SMTC window duration, RSSI measurement symbols (only for SS-RSRQ measurement), and some data symbols before / after the aforementioned symbols.

[0112] In this case, it is extended to other serving cells, see "Note 12" and "Note 13" below (only for NCSG case).

[0113] Case 3: Cross Link Interference (CLI) (Sounding Reference Signal–Reference Signal Received Power (SRS-RSRP) / CLI-RSSI) measurement on FR1 / FR2 (always without MG);

[0114] In this case, the scheduling restrictions involve symbols including Orthogonal Frequency Division Multiplexing (OFDM) symbols for performing CLI measurement and some data pre-symbols before these symbols.

[0115] In this case, it is extended to other serving cells, see "Note 12" below.

[0116] Case 4: Intra-frequency measurement based on NR CSI-RS (MG is never needed);

[0117] In this case, the scheduling restriction involves symbols including the configured CSI-RS resource symbols and some data symbols before / after these symbols.

[0118] This case is extended to other serving cells, see “Note 12” below.

[0119] Note 11: Applicable to Case 3 and Case 4, not limited to FR1.

[0120] Note 12: The scheduling restriction is applicable to other serving cells within the same frequency band. It can be understood that Note 12 is also applicable to Case 1 / Case 2 / Case 3 / Case 4 above.

[0121] Specifically, when performing TDD intra-band carrier aggregation, the scheduling restriction due to a given serving cell should also be applicable to all other serving cells on the same frequency band that are fully or partially overlapped with the symbols involved in the above scheduling restriction.

[0122] Note 13: When the UE does not support simultaneousRxTxInterBandCA for a certain other frequency band for the frequency band pair consisting of the current frequency band and the other frequency band, the scheduling restriction is applicable to the serving cells within this other frequency band.

[0123] Specifically, when performing TDD inter-band carrier aggregation, if the UE does not have the capability to support simultaneousRxTxInterBandCA for this band pair, the scheduling restriction due to a given serving cell should also be applicable to another serving cell in a different frequency band that is fully or partially overlapped with the restricted symbols. That is, in TDD cross-band carrier aggregation, if one serving cell has scheduling restrictions, these restrictions should also be applicable to the symbols of another serving cell in a different frequency band that is partially or fully overlapped.

[0124] Factor 2: Switching between different Downlink Subcarrier Spacing (DL SCS) on FR1

[0125] This time affects both uplink transmission and downlink reception: the terminal does not expect to transmit Physical Uplink Control Channel (PUCCH) / Physical Uplink Shared Channel (PUSCH) / Sounding Reference Signal (SRS), or, does not expect to receive Physical downlink control channel (PDCCH) / Physical downlink shared channel (PDSCH) / tracking reference signal (TRS) / CSI-RS for tracking / CSI-RS for channel quality indication (CQI). Among them, the TRS and CSI-RS for tracking items only take effect for the following cases.

[0126] The cases involved include: for terminals that do not support simultaneous reception of data and SSB (simultaneousRxDataSSB-DiffNumerolog) of different numerologies (for intra-frequency measurement (including the case of no MG or using NCSG), L1-RSRP measurement (including the case of reporting or candidate beam detection), LI-SINR measurement, radio link monitoring, beam failure detection) or simultaneous reception of data and SSB (simultaneousRxDataSSB-DiffNumerology-Inter-r16) of different numerologies for inter-frequency measurement, and SSB-based operation, specifically including the following: Case I, Case II and Case III:

[0127] Case I: UE uses different subcarrier spacing from PDSCH / PDCCH for measurement (not applicable to CSI-RS) in FR1, specifically including the following:

[0128] Case 1: NR intra-frequency measurement without MG (or using NCSG) based on SSB;

[0129] In this case, the scheduling restrictions involve symbols including: SSB symbols within SMTC window duration and some data symbols before / after SSB symbols if RRC parameter deriveSSB_IndexFromCell is enabled; all symbols within SMTC window duration if deriveSSB_IndexFromCell is not enabled;

[0130] In this case, it is extended to other serving cells, see "Note 21" below.

[0131] Case 2: NR based inter-frequency measurement without MG (or using NCSG) based on SSB;

[0132] In this case, the scheduling restrictions involve symbols including: SSB symbols within SMTC window duration and some data symbols before / after SSB symbols;

[0133] In this case, it is extended to other serving cells, see "Note 21" below.

[0134] Case 3: L1-RSRP measurement based on NR SSB for reporting or candidate beam detection (always without MG);

[0135] In this case, the scheduling restrictions involve symbols including: symbols corresponding to SSB indices for L1-RSRP measurement;

[0136] In this case, it is extended to other serving cells, see "Note 21" and "Note 22" below.

[0137] Case 4: L1-SINR measurement based on NR SSB (always without MG);

[0138] In this case, the scheduling restrictions involve symbols including: SSB symbols to be measured for L1-SINR measurement;

[0139] In this case, it is extended to other serving cells, see "Note 21" and "Note 22" below.

[0140] Case II: UE performs radio link monitoring using different subcarrier spacing than PDSCH / PDCCH on FR1;

[0141] In this case, the scheduling restrictions involve symbols including: SSB symbols for radio link monitoring;

[0142] In this case, it is extended to other serving cells, see "Note 21" and "Note 22" below.

[0143] Case III: UE uses different subcarrier spacing than PDSCH / PDCCH for beam failure detection on FR1;

[0144] In this case, the scheduling limitation involves symbols for SSB symbols for beam failure detection;

[0145] This case is extended to other serving cells, see "Note 21" and "Note 22" below.

[0146] Note 21: The scheduling limitation applies to other serving cells within the same frequency band. It can be understood that Note 21 applies to all the above cases at the same time.

[0147] Specifically, when intra-band carrier aggregation is performed, the scheduling limitation due to a given serving cell should also apply to all other serving cells within the same frequency band on symbols that are fully or partially overlapped with the above restricted symbols.

[0148] Note 22: The scheduling limitation does not apply to serving cells within other frequency bands.

[0149] Specifically, when inter-band carrier aggregation within FR1 is configured, in addition to the frequency band where the serving cell with scheduling limitation is located, the FR1 serving cells configured in other frequency bands are not subject to scheduling limitations.

[0150] Factor 3: Switching between different analog beams (Beam management) in FR2

[0151] This simultaneously affects uplink transmission and downlink reception: the terminal does not expect to transmit PUCCH / PUSCH / SRS, or does not expect to receive PDCCH / PDSCH / TRS / CSI-RS for tracking / CSI-RS for channel quality indication (CQI). Among them, the TRS and CSI-RS for tracking items only take effect for the following part of the case.

[0152] The cases involved include the following: Case I, Case II and Case III:

[0153] Case I: UE performs measurement on FR2, which includes the following:

[0154] Case 1: NR intra-frequency measurement without MG (or using NCSG) based on SSB;

[0155] In this case, the scheduling restrictions involve symbols including: SSB symbols within the SMTC window duration and some data symbols before / after the SSB symbols if deriveSSB_IndexFromCell is enabled; all symbols within the SMTC window duration if deriveSSB_IndexFromCell is not enabled.

[0156] This is extended to other serving cells, see "Note 31", "Note 32", "Note 33" and "Note 34" below.

[0157] Case 2: NR based inter-frequency measurement without MG (or using NCSG) based on SSB

[0158] Scheduling restrictions involve symbols: SSB symbols within the SMTC window duration and some data symbols before / after the SSB symbols.

[0159] Extended to other serving cells: see "Note 31", "Note 35 (only for NCSG)" below.

[0160] Case 3: L1-RSRP measurement reporting (or candidate beam detection) based on NR CSI-RS / SSB (always without MG)

[0161] Scheduling restrictions involve symbols: symbols corresponding to SSB index or periodic / semi-persistent / non-periodic CSI-RS resources configured for L1-RSRP measurement, and some data symbols before / after these symbols (for FR2-2 and 480 / 960 kHz SCS reference symbol cases, and for HST scenarios).

[0162] Extended to other serving cells: see "Note 31", "Note 32", "Note 33" below.

[0163] Case 4: L1-SINR measurement based on NR CSI-RS / SSB (always without MG)

[0164] Scheduling restrictions involve symbols: symbols that L1-SINR needs to measure, and some data symbols before / after these symbols (only for FR2 power class 6 UEs configured with RRC parameter highSpeedMeasFlagFR2-r17 (protocol defined RRC parameter field, specific meaning not detailed, see corresponding protocol specification for details));

[0165] Extended to other serving cells: see "Note 31" below.

[0166] Case 5: Intra-frequency measurement based on NR CSI-RS (MG is never needed)

[0167] Symbols involved by scheduling restriction: CSI-RS symbols configured for the CSI-RS resource used for measurement;

[0168] Extension to other serving cells: see “Note 31”, “Note 32” below.

[0169] Case II: UE performs radio link monitoring on FR2

[0170] Symbols involved by scheduling restriction: RLM-RS symbols for radio link monitoring measurement, and some data symbols before / after the RLM-RS symbols (only for the case of FR2-2 and RLM-RS with 480 / 960 kHz SCS);

[0171] Extension to other serving cells: see “Note 31”, “Note 32”, “Note 33” below.

[0172] Case III: UE performs beam failure detection on FR2

[0173] Symbols involved by scheduling restriction: reference symbols for candidate beam detection, and data symbols before / after these symbols (for the case of FR2-2 and RLM-RS with 480 / 960 kHz SCS);

[0174] Extension to other serving cells: see “Note 31”, “Note 32”, “Note 33” below.

[0175] Note 31: The scheduling restriction applies to other serving cells within the same frequency band (it can be understood that Note 31 applies to all the above cases simultaneously).

[0176] Specifically, when intra-band carrier aggregation is performed in FR2, the scheduling restriction due to a given serving cell should also apply to all other serving cells within the same frequency band that fully or partially overlap with the restricted symbols above.

[0177] Note 32: The scheduling restriction does not apply to serving cells within other frequency bands.

[0178] Specifically, when inter-band carrier aggregation is performed for FR2, if the UE is capable of independent beam management on each of the FR2 bands, then there is no scheduling restriction on the FR2 serving cells within each band due to the scheduling restriction of the FR2 serving cells in a different band.

[0179] NOTE 33: The scheduling restriction does not apply to the case where the SSB of one FR2 band and the data of another FR2 band have different SCS, assuming IBM (Independent Beam Management) operation is supported for the band pair consisting of these two FR2 bands.

[0180] Specifically, if the terminal configures different numerologies between the SSB on one FR2 band and the data on another FR2 band, there is no scheduling restriction, provided that the terminal is configured for Independent Beam Management (IBM) operation for the band pair.

[0181] NOTE 34: The scheduling restriction applies to the serving cell within the other band when the UE does not support simultaneousRxTxInterBandCA.

[0182] Specifically, when inter-band carrier aggregation is performed in FR2, if the UE does not have the capability to support simultaneousRxTxInterBandCA in that FR2, the scheduling restriction applies to the symbols that are fully or partially overlapped with the restricted symbols described above.

[0183] NOTE 35: For inter-band cases, the applicability of the scheduling restriction for various combinations of IBM capability and simultaneousRxTxInterBandCA capability.

[0184] Specifically, the following cases A / B / C / D can be distinguished and are specified separately:

[0185] Case A: For the band pair consisting of the target measurement band and the band where the serving cell is located, the UE does not support IBM nor simultaneousRxTxInterBandCA;

[0186] Case B: For the band pair consisting of the target measurement band and the band where the serving cell is located, the UE does not support IBM but supports simultaneousRxTxInterBandCA;

[0187] Case C: For the band pair consisting of the target measurement band and the band where the serving cell is located, the UE supports IBM but does not support simultaneousRxTxInterBandCA;

[0188] Case D: For the band pair consisting of the target measurement band and the band where the serving cell is located, the UE supports IBM and simultaneousRxTxInterBandCA: In this case, there is no scheduling restriction for the serving cell.

[0189] Factor 4: Different downlink frequency division multiplexed (FDMed) measurement and reception UE capabilities

[0190] Only downlink reception is impacted at this time: UE is not expected to receive PDCCH / PDSCH / TRS / CSI-RS for tracking / CSI-RS for channel quality indicator (CQI).

[0191] The scenarios involved include:

[0192] Scenario I: UE performs CLI measurement and DL reception in FDM manner, which specifically includes the following:

[0193] Scenario 1: CLI (SRS-RSRP / CLI-rssi) measurement on FR1 / FR2 (always no need of MG)

[0194] In this case, the scheduling restrictions involve the OFDM symbols used for SRS-RSRP measurement, the OFDM symbols used for SRS-RSRP measurement, and some data symbols before these symbols; the OFDM symbols used for CLI-RSSI measurement, the OFDM symbols used for performing CLI-RSSI measurement, and some data symbols before these symbols.

[0195] In this case, it is extended to other serving cells, see "Note 41" below.

[0196] Note 41: The scheduling restrictions apply to all other serving cells within the same frequency band (it can be understood that Note 41 applies to all the above scenarios at the same time).

[0197] Specifically, when TDD intra-band carrier aggregation is configured, the scheduling restrictions for the serving cell performing CLI measurement apply to all serving cells in the same frequency band that completely or partially overlap with the restricted symbols.

[0198] The resource configuration method, device, terminal and network side device provided by the embodiments of the present application will be described in detail in combination with some embodiments and application scenarios thereof with reference to the accompanying drawings.

[0199] Please refer to FIG. 3, which is a flowchart of a resource configuration method provided by the embodiments of the present application. As shown in FIG. 2, the method comprises the following steps:

[0200] Step 301: The terminal receives first configuration information, wherein the first configuration information is used to indicate at least one of the following:

[0201] Target resources that can be skipped, target resources that cannot be skipped, and whether to enable skipping of target resources; wherein the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of a gap configured for the terminal and a restriction occasion.

[0202] The first configuration information is received by the terminal from a network side device.

[0203] The first configuration information can be high-layer configuration, such as Radio Resource Control (RRC) parameters and / or Medium Access Control Control Element (MAC CE).

[0204] The gap configured for the terminal can be a measurement gap configured for the terminal, such as an intra-frequency, inter-frequency, or inter-RAT mobility related measurement gap. The restriction occasion configured for the terminal can be a scheduling restricted occasion configured for the terminal.

[0205] In some embodiments, the target resources can be at least one of RRM related gaps and restriction occasions.

[0206] In some embodiments, the target resources can be periodic or aperiodic resources, such as a target resource that is periodic or aperiodic according to a target resource configuration.

[0207] The target resources that can be skipped include at least one of:

[0208] The gap that can be skipped is a gap configured for the terminal.

[0209] The gap that can be skipped is a restriction occasion configured for the terminal.

[0210] In some embodiments, the target resources that can be skipped can also be referred to as target resources that can be skipped or target resources that are allowed to be skipped.

[0211] The target resources that cannot be skipped include at least one of:

[0212] The gap that cannot be skipped is a gap configured for the terminal.

[0213] The gap that cannot be skipped is a restriction occasion configured for the terminal.

[0214] In some embodiments, the target resource that cannot be skipped can also be referred to as a target resource that cannot be skipped or a target resource that is not allowed to be skipped.

[0215] In some embodiments, the target resource that can be skipped, the target resource that cannot be skipped can be a set of target resources that can be skipped, a set of target resources that cannot be skipped.

[0216] Whether to enable target resource skipping can be whether to enable the function of target resource skipping, or whether to enable skipping target resources, or whether to enable the terminal to perform target resource skipping, wherein in the case of enabling target resource skipping, i.e. allowing the terminal to skip the target resource, enabling the terminal to perform data transmission / reception in the interval and limited occasions, but whether the terminal skips or not, or which target resources to skip can be determined by the terminal according to the indication information issued by the network side device. In the case of not enabling target resource skipping, i.e. not allowing the terminal to skip the target resource.

[0217] The terminal performs transmission on the skipped target resource can include at least one of the following:

[0218] The terminal transmits data on the skipped target resource;

[0219] The terminal receives data on the skipped target resource.

[0220] In some embodiments, the transmission can include one of the following:

[0221] Detecting PDCCH, receiving PDSCH / CSI-RS, transmitting PUCCH / PUSCH / SRS, etc.

[0222] In the embodiments of the present application, since the terminal performs transmission on the skipped target resource, the terminal is supported to perform transmission in at least one of the interval and limited occasions configured by the terminal, so as to reduce the transmission delay. In addition, since the first configuration information is used to indicate the target resource that can be skipped, the target resource that cannot be skipped, and whether to enable target resource skipping, the terminal can determine the target resource that can be skipped, the target resource that cannot be skipped, and whether to enable target resource skipping in advance, which reduces the implementation complexity of the terminal dynamically skipping the target resource compared with directly dynamically indicating the skipped target resource. And because the implementation complexity of the terminal dynamically skipping the target resource is reduced, the terminal can better perform RRM, to a certain extent, to guarantee the performance of RRM and improve the mobility of the terminal.

[0223] For example, the network side device instructs the terminal to skip some target resources on which RRM measurement is originally available, which greatly affects the implementation of the terminal. For example, the terminal needs to dynamically plan which target resources to perform RRM measurement on. In the above embodiment, the first configuration information is used to indicate target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping. In this way, the terminal can determine in advance target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping. In this way, the terminal can know in advance at least which target resources can be used for RRM measurement, so that the terminal can avoid completely dynamically updating the RRM measurement strategy, thereby reducing the implementation complexity of the terminal skipping target resources. In this way, the RRM performance can be guaranteed, and the performance of terminal service transmission can be improved. In addition, the first configuration information indicates that some target resources cannot be skipped, which can improve the RRM performance of the terminal and / or reduce the implementation complexity of RRM measurement.

[0224] Taking an extended reality (XR) service as an example, the terminal transmits on the target resources that are skipped, so that the system throughput can be improved or the transmission delay can be reduced, and more XR users can be served.

[0225] It should be noted that the service to which the embodiments of the present application are applied is not limited, for example, it can also be applied to services other than dense small data packet transmission, such as video, audio, scene picture, etc.

[0226] As an optional implementation, the method further includes:

[0227] The terminal performs transmission based on the first configuration information, and the transmission includes reception or sending of data.

[0228] As an optional implementation, the method further includes:

[0229] The terminal receives indication information, and the indication information is used to indicate whether the terminal skips at least one target resource.

[0230] The indication of skipping at least one target resource can enable transmission or reception (Tx / Rx) of the at least one target resource.

[0231] In the case of indicating skipping of a certain target resource, it means that the terminal can perform data transmission and reception in the time period corresponding to the target resource, such as detecting PDCCH, receiving PDSCH / CSI-RS, and sending PUCCH / PUSCH / SRS, and the terminal behavior can be the same as that without being configured with the target resource (the same meaning as the description of the terminal performing data transmission / reception in the target resource), and the terminal does not need to perform related measurement in the target resource.

[0232] In some embodiments, the indication information can be downlink control information (DCI) carried indication information.

[0233] In some embodiments, the at least one target resource is a target resource indicated in the indication information, which can dynamically indicate whether to skip the at least one target resource, thereby reducing the transmission delay and improving the flexibility of terminal service transmission. Moreover, the terminal receives the first configuration information after receiving the indication information, which can dynamically indicate whether to skip the at least one target resource on the premise of indicating at least one of the target resources that can be skipped, the target resources that cannot be skipped, and whether to enable target resource skipping, thereby reducing the implementation complexity of the terminal completely dynamically skipping the target resources.

[0234] In some embodiments, the at least one target resource can be at least one target resource defined in advance or indicated or configured in advance.

[0235] Through the indication information, whether the terminal skips the at least one target resource can be dynamically indicated, so that the base station has greater flexibility to adapt to changes in business and communication environment, etc. Moreover, enabling the terminal to perform data transmission and reception in the target resources can reduce the service transmission delay and improve the system capacity, and dynamically enabling the terminal to perform data transmission and reception in the target resources also gives the network side device greater flexibility.

[0236] In some embodiments, the at least one target resource includes at least one of:

[0237] a first target resource no earlier than the first time;

[0238] a target resource with the highest priority in a plurality of target resources no earlier than the first time;

[0239] a target resource with the highest priority in a plurality of target resources, and the target resource with the highest priority is no earlier than the first time;

[0240] wherein the interval between the first time and the end position of the PDCCH carrying the indication information is greater than or equal to a first time interval;

[0241] the plurality of target resources overlap in time domain or the time interval between the plurality of target resources is less than or equal to a second time interval.

[0242] The first time can be after the first time, such as a first target resource after the first time. For example: the DCI explicitly indicates skipping a specific gap / restriction occasion, and the indication is part of the scheduling DCI, such as 1 bit, and the bit in the DCI indicates whether to skip the first gap / restriction occasion after the end position of the PDCCH carrying the DCI or the end position of the CORESET where the PDCCH carrying the DCI is located.

[0243] The first time can be after the first time, such as a first target resource after the first time. For example: the DCI explicitly indicates skipping a specific gap / restriction occasion, and the indication is part of the scheduling DCI, such as 1 bit, and the bit in the DCI indicates whether to skip the first gap / restriction occasion after the end position of the PDCCH carrying the DCI or the end position of the CORESET where the PDCCH carrying the DCI is located.

[0244] The first time interval and the second time interval can be determined by a protocol agreement or a predefined rule, or configured by a network side device or reported by a UE capability, for example: the first time interval is 5ms or 5 slots or related to the subcarrier spacing (SCS), such as the second time interval can be 4ms or 4 slots, etc.

[0245] In some embodiments, the first time interval and the second time interval can be related to the type of target resource configuration (such as gap configuration / restriction configuration), such as for layer 3 measurement or for layer 1 measurement, or for inter-frequency measurement or for intra-frequency measurement, or SSB-based measurement or CSI-RS-based measurement, etc.

[0246] In some embodiments, when the terminal is configured with multiple target resource configurations (e.g., gap configuration / restriction configuration), and the multiple target resource configurations have more than one occasion (i.e., a specific interval or restriction occasion) that can be indicated to be skipped by the DCI, i.e., the target resources that can be skipped, when the target resource configurations (e.g., gap configuration / restriction configuration) corresponding to the occasion that can be indicated to be skipped have different first time intervals and / or second time intervals, the first time interval or the second time interval is the maximum of the first time interval or the second time interval corresponding to the multiple target resource configurations (e.g., gap configuration / restriction configuration) configured for the terminal or the target resource configurations (e.g., gap configuration / restriction configuration) corresponding to the target resources that can be skipped.

[0247] In some embodiments, the first time interval described above can also be referred to as time interval X, which can be predefined by the protocol, for example: 5ms or 5 slots or related to SCS interval, if SCS is 15 kHz, it is 5 slots, if it is 60 kHz, it is 10 slots, etc., or time interval X is predetermined by a rule, for example, the uplink (UL) transmission cancellation time interval T proc,2 +d1, where T proc,2 represents the preparation time of PUSCH, d1 is a value reported by the terminal capability, which can be seen in the corresponding protocol specification. Or time interval X is related to the terminal capability, for example, the terminal reports time interval X.

[0248] In some embodiments, the terminal is configured with different target resources, e.g., the terminal is configured with different target resource configurations, e.g., Gap configurations (GapConfig) configured Gap, each target resource configuration is used to configure different target resource parameters, e.g., Gap offset, Gap length, Gap corresponding Tracking Area (TA), Gap corresponding reference serving cell indication, etc., then the different target resources configured for the terminal can correspond to respective time intervals, in which case the first time interval described above can be the maximum of the different time intervals corresponding to the different target resources configured for the terminal, and these different target resources configured can be target resources that can be skipped.

[0249] By indicating the first target resource no earlier than the first time, the network side device or the terminal can be enabled to transmit services earlier to further reduce transmission delay, and since it is no earlier than the first time, the terminal can have sufficient time to process the DCI and take corresponding actions, such as adjusting RRM measurement, performing RF switching, etc., after receiving the DCI.

[0250] The plurality of target resources can be partially or fully overlapped in the time domain.

[0251] The plurality of target resources can be a plurality of target resources configured by a plurality of target resource configurations.

[0252] The priority can be a priority determined according to a predefined rule, such as a priority determined according to a target resource priority value (such as a Gap Priority value, such as a value configured by the parameter GapPriority-r17).

[0253] The target resource with the highest priority in the plurality of target resources no earlier than the first time means that the plurality of target resources are all no earlier than the first time, i.e., determining the target resource with the highest priority in the plurality of target resources no earlier than the first time, such as: the time interval from the DCI to the earliest start position of the plurality of target resources (i.e., the conflicting plurality of target resources) satisfies the first time interval requirement. And here, no earlier than can also mean that the plurality of target resources are all after the first time.

[0254] The target resource with the highest priority in the plurality of target resources, and the target resource with the highest priority is no earlier than the first time means that the target resource with the highest priority is no earlier than the first time, and other target resources can be no earlier than the first time or later than the first time, such as: the time interval from the DCI to the start position of the target resource with the highest priority satisfies the first time interval requirement. And here, no earlier than can also mean that the target resource with the highest priority is after the first time.

[0255] By the target resource with the highest priority in the plurality of target resources no earlier than the first time, the terminal can be enabled to transmit in the target resource with the highest priority to improve the transmission performance of the terminal.

[0256] For example, when the terminal is configured with multiple target resource configurations, for example, the UE is configured with multiple concurrent measurement gaps, if the occasions corresponding to the multiple target resources configured by the multiple target resource configurations partially or fully overlap in the time domain or the time interval is less than or equal to a second time interval, such as 4 ms, the terminal first determines a highest priority target resource according to a predefined rule (such as according to the GapPriority value, where a value of 1 represents the highest priority, and a value of 2 represents a second level priority), and the DCI sent by the network side device is used to indicate whether the highest priority target resource is skipped.

[0257] In some embodiments, the at least one target resource is a target resource in at least one of the following:

[0258] The target resource configured by the first configuration information as being able to be skipped;

[0259] The target resource not configured by the first configuration information as being unable to be skipped.

[0260] In this embodiment, the indication information can be indicated only in the target resource that can be skipped or the target resource not configured by the first configuration information as being unable to be skipped, to improve the reliability of the target resource indication, and to ensure that the terminal has some semi-statically available target resources that can be used for measurement.

[0261] For example, the network side device indicates to the terminal to skip a certain target resource through DCI, wherein the DCI can only indicate the target resource indicated by the first configuration information as being able to be skipped or the target resource not configured as being unable to be skipped. For example, the DCI includes a 1-bit information, and the bit information is used to indicate the first target resource that can be skipped after a time interval X after the end position of the PDCCH carrying the DCI, that is, the start symbol of the target resource indicated by the DCI to be skipped is not earlier than the end position of the DCI + the time interval X, and the target resource is configured by the first configuration information as being able to be skipped. In some embodiments, the DCI indication cannot be applied to the target resource configured by the higher layer parameter as being unable to be skipped. In some embodiments, when the DCI indication can be applied to all target resources configured by the terminal (optionally, except for the target resources that do not support skipping according to the protocol or reported by the terminal), when the DCI is applied to the target resource configured by the higher layer parameter as being unable to be skipped, the indication information of the DCI must be consistent with the higher layer signaling configuration, that is, it can only be indicated as not skipping, or not indicated as skipping.

[0262] In some embodiments, the indication information is used to indicate whether to skip at least one target resource in a case that the first configuration information configures to enable the target resource skipping, so as to avoid indicating in a case that the target resource skipping is not enabled, resulting in waste of indication information transmission, so as to save transmission overhead.

[0263] It should be noted that the above indication information is not necessarily sent by the network side device and the above indication information is not necessarily received by the terminal in the embodiments of the present application. For example, in some embodiments, in a case that the first configuration information indicates the target resources that can be skipped, it can be defaulted that the terminal can skip the target resources, that is, the network side device can not issue the above indication information.

[0264] It should be noted that one of the above first configuration information, the target resources that can be skipped, the target resources that cannot be skipped, and whether to enable the target resource skipping can also be pre-configured or pre-defined, or the target resources that can be skipped, the target resources that cannot be skipped, and whether to enable the target resource skipping can be defaulted in the embodiments of the present application.

[0265] As an optional embodiment, the first configuration information indicates at least one of the following through pattern information (pattern):

[0266] The target resources that can be skipped and the target resources that cannot be skipped.

[0267] In this embodiment, the target resources that can be skipped and the target resources that cannot be skipped can be configured through the pattern, so that the configuration overhead is saved.

[0268] It should be noted that the target resources that can be skipped and the target resources that cannot be skipped are not necessarily indicated through the pattern in the embodiments of the present application. The first configuration information can also indicate the target resources that can be skipped and the target resources that cannot be skipped through other manners.

[0269] In some embodiments, the above pattern information includes at least one of the following:

[0270] At least one bitmap and indication of at least one time window.

[0271] Each bit in each bitmap is used to indicate whether at least one target resource can be skipped.

[0272] The target resource overlapping with a time window in the at least one time window can be skipped, or the target resource overlapping with a time window in the at least one time window cannot be skipped.

[0273] The number of bits of the bitmap can be fixed or determined according to a predefined rule, such as according to a period of the pattern and a number of target resources contained in the period. Each bit of the bitmap can correspond to one or more target resources, and in a preferred implementation, each bit of the bitmap corresponds to one target resource. For example, bit 0 indicates that the corresponding target resource cannot be skipped, and bit 1 indicates that the corresponding target resource can be skipped, or vice versa. In addition, the bitmap can be repeated in time to indicate more target resources (or periodically repeated).

[0274] The target resources that overlap with the time window in the at least one time window can include all target resources that fall within the time window, or also include target resources that partially fall within the time window.

[0275] The time window can be configured by a period, an offset, and a time window length, and through the time window, it can be indicated that when a target resource overlaps with the time window or falls completely within the time window or the start time / end time overlaps with the time window, the corresponding target resource can be skipped, or otherwise cannot be skipped, or when a target resource overlaps with the time window or falls completely within the time window or the start time / end time overlaps with the time window, the corresponding target resource cannot be skipped, or otherwise can be skipped.

[0276] The indication of the target resources that can be skipped, the target resources that cannot be skipped by at least one bitmap and at least one time window can save configuration overhead.

[0277] As an optional implementation, the first configuration information is used to indicate one of the following:

[0278] Whether to enable target resource skipping, and in the case of enabling target resource skipping, the target DCI format corresponding to the terminal includes indication information; or

[0279] Whether the target DCI format corresponding to the terminal includes indication information;

[0280] The indication information is used to indicate whether to skip at least one target resource.

[0281] The target DCI format can be all DCI formats corresponding to the terminal, or all DCI formats for scheduling a shared channel, or all unicast DCI formats for scheduling a shared channel, or can be a specific DCI format or a specific DCI format corresponding to the first configuration information.

[0282] In the case of indicating that target resource skipping is not enabled, it can be indicated that the target DCI format corresponding to the terminal does not include indication information.

[0283] In a case where the indication information is included in the target DCI format corresponding to the terminal, the first configuration information indicates whether the target resource skipping is enabled indirectly. For example, if the target DCI format includes the indication information, it indicates that the target resource skipping is enabled. If the target DCI format does not include the indication information, it indicates that the target resource skipping is not enabled.

[0284] In this embodiment, it can be indicated whether the indication information is included in the target DCI format, so that the terminal can better parse the target DCI format and better assist the terminal in skipping the target resource.

[0285] In some embodiments, the enabling of the target resource skipping includes:

[0286] enabling the target resource skipping in a granularity of a DCI format; or

[0287] enabling the target resource skipping in a granularity of a target resource configuration, the target resource configuration being used to configure parameters of the target resource; or

[0288] enabling the target resource skipping in a granularity of a terminal;

[0289] enabling the target resource skipping in a granularity of a bandwidth part (BWP);

[0290] enabling the target resource skipping in a granularity of a serving cell;

[0291] enabling the target resource skipping in a granularity of a serving cell group.

[0292] The above enabling of the target resource skipping in the granularity of the DCI format can realize configuration of whether the indication information is included in the DCI in the granularity of the DCI format.

[0293] The target resource configuration can be a configuration of various parameters of the target resource, such as a period, an offset, etc. For example, a repeating period of an interval, an offset, a Gap length, a TA, a reference serving cell indication, etc. Since the target resource can be periodic, after the terminal is configured with a target resource configuration, there will be multiple target resources in time.

[0294] In this embodiment, the target resource skipping can be enabled in multiple granularities, so as to improve the flexibility of the target resource skipping and meet the needs of more scenarios or services of the terminal.

[0295] As an optional embodiment, the first configuration information includes configuration information in at least one of the following:

[0296] PDSCH configuration (PDSCH-config), PUSCH configuration (PUSCH-config), measurement gap configuration (e.g., MeasGapConfig).

[0297] In an implementation, the network-side device can configure an RRC parameter, such as skipGapRestriction, in the PDSCH-config and / or the PUSCH-config, which is used to configure whether the indication information (i.e., a bit field indicating the target resource skipping indication) is included in the target DCI format. For example, when the skipGapRestriction is configured, it indicates that the terminal is enabled to skip the target resource (gap / restriction occasion skipping), and the x-bit field in the DCI is used to indicate whether the terminal skips a specific target resource.

[0298] The measurement gap configuration can be a measurement gap related configuration, such as a measurement configuration information element (IE MeasConfig) or MeasGapConfig or GapConfig or preConfigInd or ncsgInd. Specifically, an RRC parameter can be configured in the measurement gap related configuration to indicate whether the target resource skipping is enabled. For example, the network-side device enables the target resource skipping in the IE MeasConfig / MeasGapConfig / GapConfig, such as skipGapRestriction.

[0299] In some implementations, in a case where the first configuration information includes configuration information in the measurement gap configuration:

[0300] The configuration information in the measurement gap configuration is used to indicate whether the first target resource corresponding to the measurement gap configuration enables the target resource skipping; or

[0301] The configuration information in the measurement gap configuration is used to indicate whether the second target resource enables the target resource skipping, and the second target resource is a target resource indicated by the configuration information in the measurement gap configuration.

[0302] The first target resource is a target resource related to the measurement gap configuration, and the second target resource is a target resource dynamically indicated by the configuration information in the measurement gap configuration.

[0303] In this embodiment, whether the first target resource or the second target resource enables target resource skipping can be flexibly indicated. For example, whether the target resource configured in MeasConfig / MeasGapConfig / GapConfig enables target resource skipping, such as skipGapRestriction configuration, indicates that the related first target resource is enabled for target resource skipping, and the network side device can instruct the terminal to skip the target resource. When the skipGapRestriction configuration is included in the first configuration information, it indicates that the terminal is enabled for target resource process, and the x-bit field in the DCI is used to indicate whether the terminal skips a certain specific target resource.

[0304] For another example, the network side device configures whether the terminal enables target resource skipping in the granularity of a measurement gap (per measurement Gap). When the network side device configures skipGapRestriction in the measurement gap configuration, it is used to indicate whether the measurement gap enables target resource skipping.

[0305] In some embodiments, whether at least one target resource configuration is enabled for target resource skipping can be configured by a measurement gap configuration, and whether the indication information is included in the DCI is configured in PDSCH-cofing / PUSCH-config.

[0306] In some embodiments, when the first configuration information includes configuration information in the PDSCH configuration: the configuration information in the PDSCH configuration is used to indicate whether the first DCI format includes the indication information; and / or

[0307] When the first configuration information includes configuration information in the PUSCH configuration: the configuration information in the PUSCH configuration is used to indicate whether the second DCI format includes the indication information.

[0308] The indication information is used to indicate whether to skip at least one target resource.

[0309] The first DCI format can include DCI format 1_1, DCI format 1_2, or DCI format 1_3.

[0310] The second DCI format can include DCI format 0_1, DCI format 0_2, or DCI format 0_3.

[0311] In this embodiment, different DCI formats can be indicated by different configurations to include the indication information.

[0312] As an optional embodiment, the method further includes:

[0313] reporting capability information, the capability information being used to indicate one of:

[0314] whether the terminal supports target resource skipping;

[0315] whether the terminal supports transmission on a target resource;

[0316] the first time interval.

[0317] The terminal reporting the capability information means that the terminal reports the capability information to a network side device.

[0318] In this embodiment, the terminal reports the capability information, so that the network side device can configure appropriate first configuration information for the terminal based on the capability information, to avoid the content indicated by the first configuration information being unsuitable for the terminal.

[0319] As an optional embodiment, the method further comprises:

[0320] The terminal reports terminal assistance information (UAI), the UAI being used to assist at least one of the following operations:

[0321] determining target resources required by the terminal for RRM;

[0322] determining target resources that can be skipped;

[0323] determining target resources that cannot be skipped.

[0324] The UAI can indicate at least one of:

[0325] a maximum number / ratio of target resources that can / be suggested to be skipped by the terminal;

[0326] a minimum number / ratio of target resources that cannot / be suggested not to be skipped by the terminal;

[0327] a position of target resources that can / be suggested to be skipped by the terminal;

[0328] a position of target resources that cannot / be suggested not to be skipped by the terminal.

[0329] The UAI can make the target resources that can be skipped or the target resources that cannot be skipped indicated by the network side device to the terminal more matched to the terminal, thereby improving the transmission performance of the terminal.

[0330] As an optional embodiment, in a case where the terminal is not configured or provided with the first configuration information, the terminal defaults to at least one of:

[0331] All target resources can be skipped, or the target resources that can be skipped include the target resources that can be skipped reported by the terminal;

[0332] The target resources that cannot be skipped include the target resources that cannot be skipped reported by the terminal.

[0333] The terminal is not configured or not provided with the first configuration information can be that the network side device does not send the first configuration information, or the network side device fails to send the first configuration information, the terminal does not successfully receive the first configuration information, or the terminal defaults the at least one item before step 301 is performed.

[0334] In this embodiment, the default target resources that can be skipped or the target resources that cannot be skipped can be used in the case that the first configuration information is not received, so that the configuration overhead is saved.

[0335] In the embodiment of the application, a terminal receives first configuration information, and the first configuration information is used to indicate at least one of the following: target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping; and the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of interval and limited occasions configured for the terminal. In this way, since the terminal performs transmission on the target resources that are skipped, the terminal is supported to perform transmission in at least one of the interval and the limited occasions configured for the terminal, so as to reduce transmission delay. In addition, since the first configuration information is used to indicate the target resources that can be skipped, the target resources that cannot be skipped, and whether to enable target resource skipping, the terminal can determine the target resources that can be skipped, the target resources that cannot be skipped, and whether to enable target resource skipping in advance, and compared with a direct dynamic indication of skipping target resources, the implementation complexity of the terminal in dynamically skipping target resources is reduced.

[0336] Please refer to FIG. 4, which is a flowchart of a resource configuration method provided by an embodiment of the application. As shown in FIG. 4, the method comprises the following steps:

[0337] In step 401, a network side device sends first configuration information to a terminal, and the first configuration information is used to indicate at least one of the following:

[0338] target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping; and the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of interval and limited occasions configured for the terminal.

[0339] Optionally, the method further comprises:

[0340] The network-side device sends indication information to the terminal, the indication information being used to indicate whether to skip at least one target resource.

[0341] Optionally, the at least one target resource comprises at least one of:

[0342] a first target resource not earlier than the first time;

[0343] a target resource with the highest priority among a plurality of target resources not earlier than the first time;

[0344] a target resource with the highest priority among a plurality of target resources, and the target resource with the highest priority is not earlier than the first time;

[0345] wherein an interval between the first time and an end position of a PDCCH carrying the indication information is greater than or equal to a first time interval;

[0346] the plurality of target resources overlap in time domain or a time interval between the plurality of target resources is less than or equal to a second time interval.

[0347] Optionally, the at least one target resource is a target resource in at least one of:

[0348] a target resource capable of skipping configured by the first configuration information;

[0349] a target resource not configured by the first configuration information as incapable of skipping.

[0350] Optionally, the indication information is used to indicate whether to skip at least one target resource in a case where the first configuration information configures the target resource skipping.

[0351] Optionally, the first configuration information indicates at least one of:

[0352] a target resource capable of skipping and a target resource incapable of skipping.

[0353] Optionally, the mode information comprises at least one of:

[0354] at least one bitmap and indication of at least one time window;

[0355] wherein each bit in each bitmap is used to indicate whether at least one target resource is capable of skipping;

[0356] a target resource overlapping a time window in the at least one time window is capable of skipping or a target resource overlapping a time window in the at least one time window is incapable of skipping.

[0357] Optionally, the first configuration information is used to indicate one of the following:

[0358] whether to enable target resource skipping, and in the case of enabling target resource skipping, whether to include indication information in a target downlink control information (DCI) format corresponding to the terminal; or

[0359] whether to include indication information in the target DCI format corresponding to the terminal;

[0360] wherein the indication information is used to indicate whether to skip at least one target resource.

[0361] Optionally, the enabling of the target resource skipping includes:

[0362] enabling the target resource skipping in a DCI format granularity; or

[0363] enabling the target resource skipping in a target resource configuration granularity, the target resource configuration being used to configure parameters of the target resource; or

[0364] enabling the target resource skipping in a terminal granularity;

[0365] enabling the target resource skipping in a bandwidth part (BWP) granularity;

[0366] enabling the target resource skipping in a serving cell granularity;

[0367] enabling the target resource skipping in a serving cell group granularity.

[0368] Optionally, the first configuration information includes configuration information in at least one of the following:

[0369] physical downlink shared channel (PDSCH) configuration, physical uplink shared channel (PUSCH) configuration, measurement interval configuration.

[0370] Optionally, in the case where the first configuration information includes configuration information in the measurement interval configuration:

[0371] the configuration information in the measurement interval configuration is used to indicate whether the first target resource corresponding to the measurement interval configuration enables target resource skipping; or

[0372] the configuration information in the measurement interval configuration is used to indicate whether a second target resource enables target resource skipping, the second target resource being a target resource indicated by the configuration information in the measurement interval configuration.

[0373] Optionally, in the case where the first configuration information includes configuration information in the PDSCH configuration: the configuration information in the PDSCH configuration is used to indicate whether a first DCI format includes indication information; and / or

[0374] In a case where the first configuration information comprises configuration information in the PUSCH configuration: the configuration information in the PUSCH configuration is used to indicate whether the second DCI format comprises indication information.

[0375] The indication information is used to indicate whether to skip at least one target resource.

[0376] Optionally, the method further comprises:

[0377] The network-side device receives the capability information reported by the terminal, and the capability information is used to indicate one of the following:

[0378] Whether the terminal supports target resource skipping;

[0379] Whether the terminal supports transmission on a target resource;

[0380] The first time interval.

[0381] Optionally, the method further comprises:

[0382] The network-side device receives terminal assistance information (UAI) reported by the terminal, and the UAI is used to assist at least one of the following operations:

[0383] Determining a target resource required by the terminal for radio resource management (RRM);

[0384] Determining a target resource that can be skipped;

[0385] Determining a target resource that cannot be skipped.

[0386] It should be noted that the present embodiment is an implementation of a corresponding network-side device in the embodiment shown in FIG. 3, and the specific implementation can be referred to the related description of the embodiment shown in FIG. 3. To avoid repeated description, the present embodiment will not be described again.

[0387] The method provided by the present embodiment will be described below by taking a gap / restriction occasion as an example:

[0388] Embodiment One:

[0389] The main idea of the embodiment is that the base station configures through a high-level parameter which gap / restriction occasions cannot be skipped (or which gap / restriction occasions can be skipped, for example, for occasions that can be skipped, whether they are skipped can be further indicated through DCI), thereby solving the problem that the UE cannot know in advance which gap / restriction occasions are determined to be used for RRM measurement only through DCI indicating which gap occasions the UE skips, thereby affecting RRM implementation or performance, and reducing UE implementation complexity or improving RRM or UE mobility performance.

[0390] The corresponding signaling flowchart is shown in FIG. 5.

[0391] Optionally, the UE reports its capability information, for example, whether the UE supports gap / restriction skipping (or data transmission / reception within the gap / restriction. It can be understood that gap / restriction skipping means that the UE needs to perform data transmission / reception as if there is no gap / restriction. In the embodiment of the application, the two are equivalent. For the sake of simplicity, gap / restriction skipping is used for description in the embodiment).

[0392] Optionally, the UE reports gap / restriction skipping related assistance information UAI, which can help the base station understand the gap / restriction occasions required by the UE for RRM or assist the base station in making a gap / restriction occasion skipping decision. For example, the UAI can be the maximum number / ratio of gap / restriction occasions that the UE can / suggests skipping or the minimum number / ratio of gap / restriction occasions that the UE cannot / suggests not skipping, or the position of gap / restriction occasions that the UE can / suggests skipping or the position (pattern) of gap / restriction occasions that the UE cannot / suggests not skipping, and the like.

[0393] The base station configures a pattern (i.e. the first configuration information) via RRC parameters to indicate which gap / restriction occasion cannot be skipped (or which gap / restriction occasion can be skipped). Specifically, the pattern can be a bitmap, where the length of the bitmap can be fixed or determined according to a predefined rule (e.g. according to how many gap / restriction occasions are contained in a period of the pattern), and the pattern can be repeated in time to indicate more gap / restriction occasions (i.e. periodic repetition). For example, the bitmap is 10111 as shown in Figure 6, where each bit can correspond to one or more gap / restriction occasions (preferably, one), and 0 can indicate that the gap / restriction occasion cannot be skipped, and 1 can indicate that the gap / restriction occasion can be skipped, or vice versa. Repeating the bitmap 10111 in time indicates that the same bitmap corresponds to every 5 gap / restriction occasions.

[0394] Alternatively, the pattern can be a time window with a period, offset, and duration, and whether a gap / restriction occasion can be skipped can be determined according to whether the gap / restriction occasion is within / overlaps with the duration configured by the pattern. For example, if a gap / restriction occasion is within / overlaps with the duration configured by the pattern, it indicates that the gap / restriction occasion cannot be skipped, otherwise it indicates that the gap / restriction occasion can be skipped, as shown in Figure 7. Alternatively, if a gap / restriction occasion is within / overlaps with the duration configured by the pattern, it indicates that the gap / restriction occasion can be skipped, otherwise it indicates that the gap / restriction occasion cannot be skipped.

[0395] Optionally, the RRC configuration above can be configured per UE, e.g., the base station configures a pattern which applies to / includes all of the gap / restriction configurations (e.g., UE capability reporting or protocol specified) that the UE is configured with that support skipping; or per gap / restriction configuration, e.g., each gap / restriction configuration can be identified by an index / ID; or per gap / restriction category, e.g., different purpose of measurement, for intra / inter-frequency RRM measurement, or inter-RAT RRM measurement, or gap / restriction for L1 measurement or for L3 measurement, or gap / restriction based on SSB measurement or based on CSI-RS, or SMTC, MUSIM, gap / restriction for beam management, etc., e.g., the base station configures a pattern for at least one of L3, L1, concurrent gap, and SMTC, respectively.

[0396] Optionally, the pattern above is configured for the configuration that the UE reports capability to support gap / restriction skipping and / or for the configuration that the protocol specification supports gap / restriction skipping.

[0397] Optionally, when the UE is not configured with the pattern above, any of the following can be applied:

[0398] The default gap / restriction pattern that can or cannot be skipped is consistent with the gap / restriction pattern that the UE reports (if the UE reports) that can or cannot be skipped;

[0399] All of the gap / restriction occasions corresponding to the default pattern are skipped.

[0400] After the higher layer parameter configures the gap / restriction occasion which can / can not be skipped, the base station can use the scheduling DCI to dynamically (i.e. the above-mentioned indication information) indicate the UE to skip which gap / restriction occasion. Among them, the DCI can only indicate the gap / restriction occasion which is configured by the higher layer parameter as can be skipped (or the DCI indication is not applicable to / for the gap / restriction occasion which is configured by the higher layer parameter as can not be skipped).

[0401] Specifically, the DCI can be the DCI format scheduling the downlink PDSCH or PUSCH transmission, such as at least one of DCI format 1_1, 1_2, 1_3 or 0_1, 0_2, 0_3, preferably DCI format 1_1, 1_2, 0_1, 0_2. For example: the DCI contains 1-bit information, in one embodiment, the bit information is used to indicate the first gap / restriction occasion which is configured by the higher layer parameter as can be skipped after the time interval X after the end position of the PDCCH carrying the DCI, i.e. the starting symbol of the skipped gap / restriction occasion indicated by the DCI is not earlier than the end position of the DCI + time interval X, and the gap / restriction occasion is configured by the higher layer parameter as can be skipped. In one embodiment, the bit information is used to indicate the first gap / restriction occasion after the time interval X after the end position of the PDCCH carrying the DCI, i.e. the starting symbol of the skipped gap / restriction occasion indicated by the DCI is not earlier than the end position of the DCI + time interval X, and the UE expects the DCI to indicate the skipped gap / restriction occasion, and the gap / restriction occasion is configured by the higher layer parameter as can be skipped. If a gap / restriction occasion is configured by the higher layer parameter as can not be skipped, the UE does not expect the DCI to indicate the UE to skip the gap / restriction occasion.

[0402] Specifically, a new bit field, e.g., x bits, preferably x = 1, can be introduced in the DCI to indicate the UE to skip the first gap / restriction occasion after a time interval X after the end of the PDCCH carrying the DCI. The time interval X can be pre-defined in the protocol, e.g., 5 ms or 5 slots or related to the SCS, e.g., 5 slots if the SCS is 15 kHz, 10 slots if the SCS is 60 kHz, etc., or the time interval is pre-defined in the protocol, e.g., the UL transmission cancellation time interval T proc,2 +d1, or the time interval is related to the UE capability, e.g., the UE reports the time interval X.

[0403] Alternatively, if the UE is configured to skip different gaps / restrictions corresponding to different time intervals X, X can be the maximum of the time intervals corresponding to the different gaps / restrictions. For example, the time interval corresponding to the scheduling restriction / gap for skipping L1 measurement is 2 ms, and the time interval corresponding to the scheduling restriction / gap for skipping L3 measurement is 5 ms. If the base station enables the UE to skip the scheduling restriction / gap corresponding to L1 / L3, the corresponding X is 2 ms / 5 ms. If the base station enables the UE to skip the scheduling restriction / gap corresponding to L1 and L3, the corresponding X is max(2 ms, 5 ms), i.e., 5 ms.

[0404] Optionally, when the UE is configured with multiple gap / restriction configurations (concurrent measurement gaps), the occasions corresponding to the multiple gap / restriction configurations can collide in time (e.g., two occasions partially or fully overlap in time or the interval between the two occasions is less than or equal to 4 ms), the UE will handle the collision according to certain rules (e.g., according to the priority values (e.g., gapPriority, which indicates the priority of the measurement gap, the priority value can be 1, 2, 3…, 7, where 1 represents the highest priority, 2 represents the second priority, and so on) corresponding to the gap / restriction configurations, and finally only one gap / restriction occasion is retained (i.e., the UE only performs measurement in the remaining gap / restriction occasion, and the remaining gap / restriction occasion is considered to be dropped), for example: the gap / restriction occasion corresponding to the minimum gapPriority value has the highest priority and is retained.

[0405] When the DCI is used to indicate that the UE skips the first gap / restriction occasion after a certain time after the end of the DCI, if there are multiple gap / restriction configurations corresponding to the occasion collision, the UE first handles the collision of multiple gap / restriction occasions according to the protocol to obtain the remaining / surviving gap / restriction occasions. The DCI is used to indicate whether the remaining / surviving gap / restriction occasion is skipped. As shown in FIG. 8, the numbers in the figure represent g1, g2, g3, which correspond to three different measurement gap configurations, and their corresponding gapPriority values are 1, 2, and 3, respectively. It can be seen that g1, g2, and g3 are three colliding gap occasions, of which g1 has the highest priority. The UE only needs to perform measurement in the occasion corresponding to g1, i.e., the UE should perform measurement in the case of a higher-priority measurement gap, while a lower-priority measurement gap is considered to be dropped. The DCI sent by the base station can indicate that the UE skips g1. The time interval from the end of the DCI to the start symbol position of g1 satisfies the above time interval X requirement. Or the time interval from the end of the DCI to the earliest start time in the colliding gap satisfies the above time interval X requirement.

[0406] Embodiment two:

[0407] Embodiment one is that the gap / restriction cannot / may be skipped by high layer parameter configuration, and the main idea of this embodiment is: how the high layer parameter enables the UE to skip the gap / restriction occasion, or how the high layer parameter configures whether the bit field for indicating the gap / restriction occasion skipping is contained in the DCI of the UE, thereby solving the problem of enabling the UE to skip the gap / restriction occasion and improving the effectiveness of the communication system.

[0408] In order to be able to flexibly indicate which gap / restriction occasion the UE skips, to adapt to the flexible change of the channel and service situation, the base station can use the DCI to indicate the UE to skip a certain specific gap / restriction occasion. For a certain UE, whether the base station needs to indicate it to skip a certain specific gap / restriction occasion is related to the service of the UE or the configuration situation of the gap / restriction occasion, etc., so it is necessary to open or close the bit field in the DCI format by high layer switch, for example, when the high layer parameter enables the gap / restriction occasion skipping, the bit field in the DCI is 1 bit, that is, there is a bit field for indicating the gap / restriction occasion skipping, when the high layer parameter disables the gap / restriction occasion skipping, the bit field in the DCI is 0 bit, that is, there is no bit field for indicating the gap / restriction occasion skipping. The base station configures the UE to enable / disable to skip the gap / restriction occasion by RRC parameter. For example: the parameter name is skipGapRestriction, which can be used to configure whether the UE opens the gap / restriction occasion skipping by configuring whether the parameter is enabled, for example, when the parameter is configured, it means enabled, when the parameter is not configured, it means disabled, the specific form is as follows:

[0409] skipGapRestriction ENUMERATED{enabled}

[0410] Specifically, whether the bit field in the above DCI format is determined in any one of the following ways:

[0411] Way one, the base station configures the parameter skipGapRestriction under IE PDSCH-config and / or PUSCH-config

[0412] Optionally, the base station can configure whether the bit field is contained in different DCI formats per DCI format, for example, skipGapRestriction or skipGapRestrictionDCI-1-1 under PDSCH-config is used to configure whether the bit field is contained in DCI format 1_1, and skipGapRestrictionDCI-1-2 under PDSCH-config can also be configured at least one of the following parameters: is used to configure whether the bit field is contained in DCI format 1_2, and skipGapRestrictionDCI-1-3 under PDSCH-config can also be configured at least one of the following parameters: is used to configure whether the bit field is contained in DCI format 1_3.

[0413] skipGapRestriction or skipGapRestrictionDCI-0-1 under PUSCH-config is used to configure whether the bit field is contained in DCI format 0_1, and skipGapRestrictionDCI-0-2 under PUSCH-config can also be configured at least one of the following parameters: is used to configure whether the bit field is contained in DCI format 0_2, and skipGapRestrictionDCI-0-3 under PUSCH-config can also be configured at least one of the following parameters: is used to configure whether the bit field is contained in DCI format 0_3.

[0414] When skipGapRestriction is configured, the corresponding bit field is contained in the corresponding DCI format, for example, 1 bit. When skipGapRestriction is not configured, the corresponding bit field is not contained in the corresponding DCI format, for example, 0 bit.

[0415] Way two, the base station enables UE gap / restriction occasion skipping in IE MeasConfig / MeasGapConfig / MeasObjectNR / MUSIM-GapConfig / GapConfig, such as skipGapRestriction, which is used to configure at least one of the following parameters

[0416] Whether the measurement gap (e.g. intra-frequency, inter-frequency, inter-RAT mobility related measurement gap) configured in MeasConfig / MeasGapConfig / MeasObjectNR / MUSIM-GapConfig / gapConfig is enabled for gap / restriction occasion skipping, e.g. skipGapRestriction is configured, indicates that the related measurement gap is enabled for gap / restriction occasion skipping, the gNB can indicate the UE to skip certain gap / restriction occasion.

[0417] Whether the bit field indicating gap / restriction skipping is included in DCI, e.g. skipGapRestriction is configured, indicates that the UE is enabled for gap / restriction occasion skipping, X bit field is included in DCI to indicate whether the UE skips certain gap / restriction occasion.

[0418] Optionally, the gNB configures the UE per measurement gap whether to be enabled for gap / restriction occasion skipping, e.g. the gNB configures skipGapRestriction in GapConfig to indicate whether the gap is enabled for gap / restriction occasion skipping, e.g. in gapConfig configuration parameter skipGapRestriction, when skipGapRestriction is configured in any one of gapConfig, X bits are included in DCI.

[0419] Method three, the gNB enables the UE gap / restriction occasion skipping in IE MeasConfig / MeasGapConfig / MeasObjectNR / MUSIM-GapConfig / GapConfig, e.g. skipGapRestriction, the parameter is used to configure at least one of the following

[0420] whether the measurement gap (e.g., intra-frequency, inter-frequency, inter-RAT mobility related measurement gap) configured in MeasConfig / MeasGapConfig / MeasObjectNR / MUSIM-GapConfig / gapConfig is enabled to skip gap / restriction occasion, e.g., skipGapRestriction is configured, indicating that the related measurement gap is enabled to skip gap / restriction occasion, the base station can instruct the UE to skip the specific gap / restriction occasion.

[0421] Optionally, the base station configures whether the UE is enabled to skip gap / restriction occasion per measurement gap, e.g., the base station configures skipGapRestriction in GapConfig to indicate whether the gap is enabled to skip gap / restriction occasion.

[0422] The base station configures whether the gap / restriction occasion configured in the measurement gap related configuration is enabled to skip gap / restriction occasion in the measurement gap related configuration, and the base station configures whether the corresponding bit field is included in the DCI in PDSCH-config / PUSCH-config. The bit field in the DCI is used to indicate whether the gap / restriction occasion configured in the measurement gap related configuration to skip gap / restriction occasion is skipped.

[0423] By the scheme provided in the embodiments of the present application, the high-layer parameter does not configure the gap / restriction occasion that can be skipped, and the DCI can only instruct the UE to skip the gap / restriction occasion that is not configured by the high-layer parameter to be skipped, thereby reducing the implementation complexity of the terminal to completely dynamically skip the gap / restriction occasion, to a certain extent, guaranteeing the performance of RRM and improving mobility. The present application also provides a way for the base station to enable the UE to skip the gap / restriction occasion, thereby improving the effectiveness of the communication system.

[0424] The resource configuration method provided in the embodiments of the present application can be executed by a resource configuration device. The resource configuration device executing the resource configuration method is taken as an example in the embodiments of the present application to illustrate the resource configuration device provided in the embodiments of the present application.

[0425] The resource configuration device provided in the embodiments of the present application can be a communication device or a component in a communication device, for example, a chip. The communication device can be a terminal, a network side device or a server, etc. For example, the terminal can include but is not limited to the types of the terminal 11 listed above, the network side device can include but is not limited to the types of the network side device 12 listed above, and the embodiments of the present application do not make specific limitations.

[0426] The resource configuration device can include a receiving module, a sending module and a processing module. The receiving module, the sending module and the processing module can be implemented by software or by hardware. When implemented by hardware, the processing module can be implemented by a processor, for example, a general processor, a special purpose processor, etc., including a central processing unit (CPU), a microprocessor, a digital signal processor (DSP), an artificial intelligent (AI) processor, a graphics processing unit (GPU), an application specific integrated circuit (ASIC), a network processor (NP), a field programmable gate array (FPGA) or other programmable logic devices, a gate circuit, a transistor, a discrete hardware component, etc. The receiving module and the sending module can be implemented by a communication interface, which can include one or more of a transceiver, a pin, a circuit, a bus, a radio frequency unit, etc.

[0427] Specifically, referring to FIG. 9, when the resource configuration device is a terminal or a component in a terminal, the resource configuration device 900 includes:

[0428] The receiving module 901 is configured to receive first configuration information, where the first configuration information is used to indicate at least one of the following:

[0429] a target resource that can be skipped, a target resource that cannot be skipped, and whether to enable target resource skipping, where the terminal performs transmission on the target resource that is skipped, and the target resource includes at least one of an interval and a restricted occasion configured for the terminal.

[0430] Optionally, the receiving module 901 is further configured to receive indication information, the indication information being used to indicate whether the terminal skips at least one target resource.

[0431] Optionally, the at least one target resource comprises at least one of the following:

[0432] a first target resource not earlier than the first time;

[0433] a target resource with the highest priority among a plurality of target resources not earlier than the first time;

[0434] a target resource with the highest priority among a plurality of target resources, and the target resource with the highest priority is not earlier than the first time;

[0435] wherein an interval between the first time and an end position of a PDCCH carrying the indication information is greater than or equal to a first time interval;

[0436] the plurality of target resources overlap in time domain or a time interval between the plurality of target resources is less than or equal to a second time interval.

[0437] Optionally, the at least one target resource is a target resource in at least one of the following:

[0438] a target resource capable of skipping configured by the first configuration information;

[0439] a target resource not configured as incapable of skipping by the first configuration information.

[0440] Optionally, the indication information is used to indicate whether to skip at least one target resource in a case where the first configuration information configures to enable the target resource skipping.

[0441] Optionally, the first configuration information indicates at least one of the following through mode information:

[0442] a target resource capable of skipping and a target resource incapable of skipping.

[0443] Optionally, the mode information comprises at least one of the following:

[0444] at least one bitmap and indication of at least one time window;

[0445] wherein each bit in each bitmap is used to indicate whether at least one target resource is capable of skipping;

[0446] a target resource overlapping a time window in the at least one time window is capable of skipping or a target resource overlapping a time window in the at least one time window is incapable of skipping.

[0447] Optionally, the first configuration information is used to indicate one of the following:

[0448] whether to enable target resource skipping, and in the case of enabling target resource skipping, the terminal includes indication information in a target downlink control information (DCI) format corresponding to the terminal; or

[0449] whether the indication information is included in the target DCI format corresponding to the terminal;

[0450] wherein the indication information is used to indicate whether to skip at least one target resource.

[0451] Optionally, the enabling of the target resource skipping includes:

[0452] enabling the target resource skipping in a DCI format granularity; or

[0453] enabling the target resource skipping in a target resource configuration granularity, the target resource configuration being used to configure parameters of the target resource; or

[0454] enabling the target resource skipping in a terminal granularity;

[0455] enabling the target resource skipping in a bandwidth part (BWP) granularity;

[0456] enabling the target resource skipping in a serving cell granularity;

[0457] enabling the target resource skipping in a serving cell group granularity.

[0458] Optionally, the first configuration information includes configuration information in at least one of the following:

[0459] physical downlink shared channel (PDSCH) configuration, physical uplink shared channel (PUSCH) configuration, measurement interval configuration.

[0460] Optionally, in the case where the first configuration information includes configuration information in the measurement interval configuration:

[0461] the configuration information in the measurement interval configuration is used to indicate whether the first target resource corresponding to the measurement interval configuration enables target resource skipping; or

[0462] the configuration information in the measurement interval configuration is used to indicate whether a second target resource enables target resource skipping, the second target resource being a target resource indicated by the configuration information in the measurement interval configuration.

[0463] Optionally, in the case where the first configuration information includes configuration information in the PDSCH configuration: the configuration information in the PDSCH configuration is used to indicate whether a first DCI format includes indication information; and / or

[0464] In a case where the first configuration information comprises configuration information in the PUSCH configuration: the configuration information in the PUSCH configuration is used to indicate whether the second DCI format comprises indication information.

[0465] The indication information is used to indicate whether at least one target resource is skipped.

[0466] Optionally, the apparatus further comprises a sending module configured to perform at least one of the following:

[0467] reporting capability information;

[0468] reporting terminal assistance information (UAI);

[0469] The capability information is used to indicate at least one of the following:

[0470] whether the terminal supports target resource skipping;

[0471] whether the terminal supports transmission on a target resource;

[0472] a first time interval;

[0473] The UAI is used to assist at least one of the following operations:

[0474] determining a target resource required by the terminal for radio resource management (RRM);

[0475] determining a target resource that can be skipped;

[0476] determining a target resource that cannot be skipped.

[0477] Optionally, in a case where the terminal is not configured or provided with the first configuration information, the terminal defaults to at least one of the following:

[0478] all target resources can be skipped, or target resources that can be skipped comprise target resources that can be skipped reported by the terminal;

[0479] target resources that cannot be skipped comprise target resources that cannot be skipped reported by the terminal.

[0480] The above resource configuration apparatus can reduce transmission latency.

[0481] The resource configuration apparatus provided in the embodiments of the present application can implement each process achieved by the method embodiment of FIG. 3 and achieve the same technical effects. To avoid repetition, details are not described herein.

[0482] Specifically, referring to FIG. 10, when the resource configuration apparatus is a network side device or a component in the network side device, the resource configuration apparatus 1000 comprises:

[0483] The sending module 1001 is configured to send first configuration information to a terminal, where the first configuration information is used to indicate at least one of the following:

[0484] Target resources that can be skipped, target resources that cannot be skipped, and whether to enable skipping of target resources; where the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of an interval and a limited occasion configured for the terminal.

[0485] Optionally, the sending module 1001 is further configured to:

[0486] Send indication information to the terminal, where the indication information is used to indicate whether to skip at least one target resource.

[0487] Optionally, the at least one target resource includes at least one of the following:

[0488] A first target resource that is not earlier than a first time;

[0489] A target resource with the highest priority among a plurality of target resources that are not earlier than the first time;

[0490] A target resource with the highest priority among a plurality of target resources, and the target resource with the highest priority is not earlier than the first time;

[0491] Wherein an interval between the first time and an end position of a PDCCH carrying the indication information is greater than or equal to a first time interval;

[0492] The plurality of target resources overlap in a time domain or a time interval between the plurality of target resources is less than or equal to a second time interval.

[0493] Optionally, the at least one target resource is a target resource in at least one of the following:

[0494] Target resources that can be skipped according to the first configuration information;

[0495] Target resources that are not configured as target resources that cannot be skipped according to the first configuration information.

[0496] Optionally, the indication information is used to indicate whether to skip at least one target resource in a case where the first configuration information enables skipping of the target resources.

[0497] Optionally, the first configuration information indicates at least one of the following through mode information:

[0498] Target resources that can be skipped and target resources that cannot be skipped.

[0499] Optionally, the mode information comprises at least one of:

[0500] at least one bitmap, an indication of at least one time window;

[0501] wherein each bit in each bitmap is used to indicate whether at least one target resource is able to be skipped or not;

[0502] a target resource that overlaps with a time window in the at least one time window is able to be skipped, or a target resource that overlaps with a time window in the at least one time window is not able to be skipped.

[0503] Optionally, the first configuration information is used to indicate at least one of:

[0504] whether to enable target resource skipping, and in the case of enabling target resource skipping, indicating that the terminal corresponds to a target downlink control information (DCI) format including indication information; or

[0505] whether the terminal corresponds to a target DCI format including indication information;

[0506] wherein the indication information is used to indicate whether to skip at least one target resource.

[0507] Optionally, the enabling of target resource skipping comprises:

[0508] enabling target resource skipping in a DCI format granularity; or

[0509] enabling target resource skipping in a target resource configuration granularity, the target resource configuration being used to configure parameters of a target resource; or

[0510] enabling target resource skipping in a terminal granularity;

[0511] enabling target resource skipping in a bandwidth part (BWP) granularity;

[0512] enabling target resource skipping in a serving cell granularity;

[0513] enabling target resource skipping in a serving cell group granularity.

[0514] Optionally, the first configuration information comprises configuration information in at least one of:

[0515] a physical downlink shared channel (PDSCH) configuration, a physical uplink shared channel (PUSCH) configuration, a measurement interval configuration.

[0516] Optionally, in the case where the first configuration information comprises configuration information in the measurement interval configuration:

[0517] The configuration information in the measurement interval configuration is used to indicate whether the first target resource corresponding to the measurement interval configuration enables target resource skipping.

[0518] The configuration information in the measurement interval configuration is used to indicate whether the second target resource enables target resource skipping, the second target resource being the target resource indicated by the configuration information in the measurement interval configuration.

[0519] Optionally, in a case where the first configuration information includes configuration information in the PDSCH configuration: the configuration information in the PDSCH configuration is used to indicate whether the first DCI format includes indication information; and / or

[0520] In a case where the first configuration information includes configuration information in the PUSCH configuration: the configuration information in the PUSCH configuration is used to indicate whether the second DCI format includes indication information.

[0521] The indication information is used to indicate whether to skip at least one target resource.

[0522] Optionally, the apparatus further includes a receiving module, which is used to perform at least one of the following:

[0523] Receive the capability information reported by the terminal;

[0524] Receive the terminal assistance information (UAI) reported by the terminal;

[0525] The capability information is used to indicate at least one of the following:

[0526] Whether the terminal supports target resource skipping;

[0527] Whether the terminal supports transmission on a target resource;

[0528] A first time interval;

[0529] The UAI is used to assist at least one of the following operations:

[0530] Determine a target resource required by the terminal for radio resource management (RRM);

[0531] Determine a target resource that can be skipped;

[0532] Determine a target resource that cannot be skipped.

[0533] The above resource configuration apparatus can reduce transmission delay.

[0534] The resource configuration apparatus provided by the embodiments of the present application can implement each process achieved by the method embodiment of FIG. 4 and achieve the same technical effects. To avoid repetition, details are not described here.

[0535] As shown in FIG. 11, the embodiment of the present application further provides a communication device 1100, comprising a processor 1101 and a memory 1102, wherein the memory 1102 stores programs or instructions executable by the processor 1101, for example, when the communication device 1100 is a terminal, the programs or instructions are executed by the processor 1101 to implement each step of the above-mentioned resource configuration method embodiment on the terminal side, and the same technical effects can be achieved. When the communication device 1100 is a network side device, the programs or instructions are executed by the processor 1101 to implement each step of the above-mentioned resource configuration method embodiment on the network side device, and the same technical effects can be achieved, and details are not described herein again to avoid repetition.

[0536] The embodiment of the present application further provides a device comprising a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is configured to run programs or instructions to implement the steps of the method embodiment shown in FIG. 3. The device embodiment corresponds to the above-mentioned resource configuration method embodiment, and each implementation process and implementation manner of the above-mentioned method embodiment can be applied to the device embodiment, and the same technical effects can be achieved.

[0537] The embodiment of the present application further provides a device comprising a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is configured to run programs or instructions to implement the steps in the method embodiment shown in FIG. 3. The device embodiment corresponds to the above-mentioned resource configuration method embodiment, and each implementation process and implementation manner of the above-mentioned method embodiment can be applied to the device embodiment, and the same technical effects can be achieved. The device can be the resource configuration apparatus shown in FIG. 9. Specifically, FIG. 12 is a schematic diagram of the hardware structure of a terminal for implementing the embodiment of the present application.

[0538] The terminal 1200 includes, but is not limited to, at least part of the components such as a radio frequency unit 1201, a network module 1202, an audio output unit 1203, an input unit 1204, a sensor 1205, a display unit 1206, a user input unit 1207, an interface unit 1208, a memory 1209, and a processor 1210.

[0539] Those skilled in the art can understand that the terminal 1200 can further include a power supply (such as a battery) for supplying power to each component, and the power supply can be logically connected to the processor 1210 through a power management system, so as to realize functions such as management of charging, discharging, and power consumption management through the power management system. The terminal structure shown in FIG. 12 does not constitute a limitation on the terminal, and the terminal can include more or fewer components than those shown, or combine certain components, or different component arrangements, and details are not described herein again.

[0540] It should be understood that in the embodiments of the present application, the input unit 1204 can include a graphics processor 12041 and a microphone 12042, and the graphics processor 12041 processes image data of a still picture or a video obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. The display unit 1206 can include a display panel 12061, which can be configured in the form of a liquid crystal display, an organic light-emitting diode, etc. The user input unit 1207 includes at least one of a touch panel 12071 and other input terminals 12072. The touch panel 12071 is also called a touch screen. The touch panel 12071 can include two parts of a touch detection device and a touch controller. The other input terminals 12072 can include, but are not limited to, a physical keyboard, function keys (such as volume control keys, on-off keys, etc.), a trackball, a mouse, a joystick, and the like, which will not be described here.

[0541] In the embodiments of the present application, after the radio frequency unit 1201 receives the downlink data from the network side terminal, it can be transmitted to the processor 1210 for processing. In addition, the radio frequency unit 1201 can send uplink data to the network side terminal. Generally, the radio frequency unit 1201 includes, but is not limited to, an antenna, an amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, etc.

[0542] The memory 1209 can be used to store software programs or instructions and various data. The memory 1209 can mainly include a first storage area storing programs or instructions and a second storage area storing data, wherein the first storage area can store an operating system, at least one application program required by a function (such as a sound playing function, an image playing function, etc.), and the like. In addition, the memory 1209 can include a volatile memory or a non-volatile memory. The non-volatile memory can be a Read-Only Memory (ROM), a Programmable ROM (PROM), an Erasable PROM (EPROM), an Electrically EPROM (EEPROM), or a flash memory. The volatile memory can be a Random Access Memory (RAM), a Static RAM (SRAM), a Dynamic RAM (DRAM), a Synchronous DRAM (SDRAM), a Double Data Rate SDRAM (DDR SDRAM), an Enhanced SDRAM (ESDRAM), a Synch link DRAM (SLDRAM), and a Direct Rambus RAM (DRRAM). The memory 1209 in the embodiments of the present application includes but is not limited to these and any other suitable types of memory.

[0543] The processor 1210 can include one or more processing units; optionally, the processor 1210 integrates an application processor and a modem processor, wherein the application processor mainly processes operations related to an operating system, a user interface, and an application program, and the modem processor mainly processes wireless communication signals, such as a baseband processor. It can be understood that the above-mentioned modem processor can also not be integrated into the processor 1210.

[0544] The radio frequency unit 1201 is configured to receive first configuration information, wherein the first configuration information is used to indicate at least one of the following:

[0545] The target resource that can be skipped, the target resource that cannot be skipped, and whether to enable the target resource skipping; wherein the terminal performs transmission on the target resource that is skipped, and the target resource includes at least one of an interval and a limited occasion configured by the terminal.

[0546] Optionally, the radio frequency unit 1201 is further configured to:

[0547] receive indication information, the indication information being used to indicate whether the terminal skips at least one target resource.

[0548] Optionally, the at least one target resource comprises at least one of the following:

[0549] a first target resource no earlier than the first time;

[0550] a target resource with the highest priority among a plurality of target resources no earlier than the first time;

[0551] a target resource with the highest priority among a plurality of target resources, and the target resource with the highest priority is no earlier than the first time;

[0552] wherein an interval between the first time and an end position of a PDCCH carrying the indication information is greater than or equal to a first time interval;

[0553] the plurality of target resources overlap in time domain or a time interval between the plurality of target resources is less than or equal to a second time interval.

[0554] Optionally, the at least one target resource is a target resource in at least one of the following:

[0555] a target resource capable of skipping configured by the first configuration information;

[0556] a target resource not configured as incapable of skipping by the first configuration information.

[0557] Optionally, the indication information is used to indicate whether to skip at least one target resource in a case where the first configuration information configures to enable the target resource skipping.

[0558] Optionally, the first configuration information indicates at least one of the following through mode information:

[0559] a target resource capable of skipping, a target resource incapable of skipping.

[0560] Optionally, the mode information comprises at least one of the following:

[0561] at least one bitmap, indication of at least one time window;

[0562] wherein each bit in each bitmap is used to indicate whether at least one target resource is capable of skipping;

[0563] a target resource overlapping a time window in the at least one time window is capable of skipping, or a target resource overlapping a time window in the at least one time window is incapable of skipping.

[0564] Optionally, the first configuration information is used to indicate one of the following:

[0565] whether to enable target resource skipping, and in the case of enabling target resource skipping, the terminal includes indication information in a target downlink control information (DCI) format corresponding to the terminal; or

[0566] whether the indication information is included in the target DCI format corresponding to the terminal;

[0567] wherein the indication information is used to indicate whether to skip at least one target resource.

[0568] Optionally, the enabling of the target resource skipping includes:

[0569] enabling the target resource skipping in a DCI format granularity; or

[0570] enabling the target resource skipping in a target resource configuration granularity, the target resource configuration being used to configure parameters of the target resource; or

[0571] enabling the target resource skipping in a terminal granularity;

[0572] enabling the target resource skipping in a bandwidth part (BWP) granularity;

[0573] enabling the target resource skipping in a serving cell granularity;

[0574] enabling the target resource skipping in a serving cell group granularity.

[0575] Optionally, the first configuration information includes configuration information in at least one of the following:

[0576] physical downlink shared channel (PDSCH) configuration, physical uplink shared channel (PUSCH) configuration, measurement interval configuration.

[0577] Optionally, in the case where the first configuration information includes configuration information in the measurement interval configuration:

[0578] the configuration information in the measurement interval configuration is used to indicate whether the first target resource corresponding to the measurement interval configuration enables target resource skipping; or

[0579] the configuration information in the measurement interval configuration is used to indicate whether a second target resource enables target resource skipping, the second target resource being a target resource indicated by the configuration information in the measurement interval configuration.

[0580] Optionally, in the case where the first configuration information includes configuration information in the PDSCH configuration: the configuration information in the PDSCH configuration is used to indicate whether a first DCI format includes indication information; and / or

[0581] In a case where the first configuration information comprises configuration information in the PUSCH configuration: the configuration information in the PUSCH configuration is used to indicate whether the second DCI format comprises indication information.

[0582] The indication information is used to indicate whether to skip at least one target resource.

[0583] Optionally, the radio frequency unit 1201 is further configured to:

[0584] report capability information, wherein the capability information is used to indicate one of the following:

[0585] whether the terminal supports target resource skipping;

[0586] whether the terminal supports transmission on a target resource;

[0587] the first time interval.

[0588] Optionally, the radio frequency unit 1201 is further configured to:

[0589] report terminal assistance information (UAI), wherein the UAI is used to assist at least one of the following operations:

[0590] determine a target resource required by the terminal for radio resource management (RRM);

[0591] determine a target resource that can be skipped;

[0592] determine a target resource that cannot be skipped.

[0593] Optionally, in a case where the terminal is not configured or provided with the first configuration information, the terminal defaults to at least one of the following:

[0594] all target resources can be skipped, or the target resources that can be skipped comprise the target resources that can be skipped reported by the terminal;

[0595] the target resources that cannot be skipped comprise the target resources that cannot be skipped reported by the terminal.

[0596] The above device can reduce the transmission delay.

[0597] It can be understood that the implementation process of each implementation manner mentioned in the embodiment can refer to the related description of the resource configuration method embodiment, and achieve the same or corresponding technical effects. To avoid repetition, it will not be repeated here.

[0598] The embodiment of the present application further provides a device, comprising a processor and a communication interface, the communication interface and the processor are coupled, the processor is used for running programs or instructions, and the steps in the method embodiment shown in FIG. 4 are realized. The device embodiment corresponds to the resource configuration method embodiment described above, and each implementation process and implementation manner of the method embodiment can be applied to the device embodiment, and the same technical effects can be achieved.

[0599] Specifically, the embodiment of the present application further provides a network side device, which can be the resource configuration apparatus shown in FIG. 10. As shown in FIG. 13, the device 1300 comprises an antenna 1301, a radio frequency apparatus 1302, a baseband apparatus 1303, a processor 1304 and a memory 1305. The antenna 1301 is connected with the radio frequency apparatus 1302. In the uplink direction, the radio frequency apparatus 1302 receives information through the antenna 1301, and sends the received information to the baseband apparatus 1303 for processing. In the downlink direction, the baseband apparatus 1303 processes the information to be sent, and sends the information to the radio frequency apparatus 1302, and the radio frequency apparatus 1302 processes the received information and sends the information out through the antenna 1301.

[0600] The method performed by the device in the above embodiment can be realized in the baseband apparatus 1303, and the baseband apparatus 1303 comprises a baseband processor.

[0601] The baseband apparatus 1303 can comprise at least one baseband board, and a plurality of chips are arranged on the baseband board, as shown in FIG. 13, one of the chips is a baseband processor, and the baseband processor is connected with the memory 1305 through a bus interface to call the programs in the memory 1305 and execute the network device operations shown in the above method embodiment.

[0602] The device can further comprise a network interface 1306, which is a common public radio interface (Common Public Radio Interface, CPRI).

[0603] Specifically, the device 1300 of the embodiment of the present application further comprises instructions or programs stored in the memory 1305 and executable on the processor 1304, the processor 1304 calls the instructions or programs in the memory 1305 to execute the method performed by each module shown in FIG. 10, and the same technical effects are achieved, and thus the description is omitted here.

[0604] The radio frequency apparatus 1302 is used for sending first configuration information to a terminal, and the first configuration information is used for indicating at least one of the following:

[0605] The target resources that can be skipped, the target resources that cannot be skipped, and whether to enable skipping of the target resources; wherein the terminal transmits on the target resources that are skipped, and the target resources include at least one of an interval and a limited occasion configured for the terminal.

[0606] Optionally, the radio frequency device 1302 is further configured to:

[0607] The network-side device sends indication information to the terminal, and the indication information is used to indicate whether to skip at least one target resource.

[0608] Optionally, the at least one target resource includes at least one of the following:

[0609] A first target resource that is not earlier than a first time;

[0610] A target resource with the highest priority in a plurality of target resources that are not earlier than the first time;

[0611] A target resource with the highest priority in a plurality of target resources, and the target resource with the highest priority is not earlier than the first time;

[0612] The interval between the first time and the end position of the PDCCH carrying the indication information is greater than or equal to a first time interval.

[0613] The plurality of target resources overlap in the time domain or the time interval between the plurality of target resources is less than or equal to a second time interval.

[0614] Optionally, the at least one target resource is a target resource in at least one of the following:

[0615] The target resource that can be skipped configured by the first configuration information;

[0616] The target resource that is not configured by the first configuration information as the target resource that cannot be skipped.

[0617] Optionally, the indication information is used to indicate whether to skip at least one target resource in a case where the first configuration information enables skipping of the target resources.

[0618] Optionally, the first configuration information indicates at least one of the following through mode information:

[0619] The target resource that can be skipped and the target resource that cannot be skipped.

[0620] Optionally, the mode information includes at least one of the following:

[0621] Indication of at least one bitmap and at least one time window;

[0622] Each bit in each bitmap is used to indicate whether at least one target resource can be skipped or not.

[0623] The target resource overlapping with a time window in the at least one time window can be skipped, or the target resource overlapping with a time window in the at least one time window cannot be skipped.

[0624] Optionally, the first configuration information is used to indicate one of the following:

[0625] Whether to enable target resource skipping, and in the case of enabling target resource skipping, indicating that the terminal includes indication information in a target downlink control information (DCI) format corresponding to the terminal; or

[0626] Whether the terminal includes indication information in a target DCI format corresponding to the terminal;

[0627] The indication information is used to indicate whether to skip at least one target resource.

[0628] Optionally, the enabling of target resource skipping includes:

[0629] Enabling target resource skipping in a DCI format granularity; or

[0630] Enabling target resource skipping in a target resource configuration granularity, the target resource configuration being used to configure parameters of a target resource; or

[0631] Enabling target resource skipping in a terminal granularity;

[0632] Enabling target resource skipping in a bandwidth part (BWP) granularity;

[0633] Enabling target resource skipping in a serving cell granularity;

[0634] Enabling target resource skipping in a serving cell group granularity.

[0635] Optionally, the first configuration information includes configuration information in at least one of the following:

[0636] Physical downlink shared channel (PDSCH) configuration, physical uplink shared channel (PUSCH) configuration, and measurement interval configuration.

[0637] Optionally, in the case where the first configuration information includes configuration information in the measurement interval configuration:

[0638] The configuration information in the measurement interval configuration is used to indicate whether a first target resource corresponding to the measurement interval configuration enables target resource skipping; or

[0639] The configuration information in the measurement gap configuration is used to indicate whether the second target resource enables target resource skipping, and the second target resource is a target resource indicated by the configuration information in the measurement gap configuration.

[0640] Optionally, in a case where the first configuration information includes configuration information in the PDSCH configuration: the configuration information in the PDSCH configuration is used to indicate whether the first DCI format includes indication information; and / or

[0641] in a case where the first configuration information includes configuration information in the PUSCH configuration: the configuration information in the PUSCH configuration is used to indicate whether the second DCI format includes indication information.

[0642] The indication information is used to indicate whether to skip at least one target resource.

[0643] Optionally, the radio frequency device 1302 is further configured to:

[0644] receive the capability information reported by the terminal, and the capability information is used to indicate one of the following:

[0645] whether the terminal supports target resource skipping;

[0646] whether the terminal supports transmission on a target resource;

[0647] the first time interval.

[0648] Optionally, the radio frequency device 1302 is further configured to:

[0649] receive terminal assistance information (UAI) reported by the terminal, and the UAI is used to assist at least one of the following operations:

[0650] determine a target resource required by the terminal for radio resource management (RRM);

[0651] determine a target resource that can be skipped;

[0652] determine a target resource that cannot be skipped.

[0653] The above device can reduce the transmission delay.

[0654] It can be understood that the implementation process of each implementation manner mentioned in the embodiment can refer to the related description of the resource configuration method embodiment, and achieve the same or corresponding technical effects. To avoid repetition, it will not be repeated here.

[0655] The embodiment of the present application further provides a readable storage medium, and the readable storage medium stores programs or instructions, which are executed by a processor to implement various processes of the resource configuration method embodiment and achieve the same technical effects. To avoid repetition, details are not described herein.

[0656] The processor is the processor in the terminal in the above embodiments. The readable storage medium includes a computer readable storage medium, such as a computer readable only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, etc. In some examples, the readable storage medium can be a non-transitory readable storage medium.

[0657] The embodiment of the present application further provides a chip, which includes a processor and a communication interface. The communication interface is coupled with the processor. The processor is used to run programs or instructions to implement various processes of the resource configuration method embodiment and achieve the same technical effects. To avoid repetition, details are not described herein.

[0658] It should be understood that the chip mentioned in the embodiment of the present application can also be referred to as a system chip, a system chip, a chip system or a system on chip, etc.

[0659] The embodiment of the present application further provides a computer program / program product, which is stored in a storage medium. The computer program / program product is executed by at least one processor to implement various processes of the resource configuration method embodiment and achieve the same technical effects. To avoid repetition, details are not described herein.

[0660] The embodiment of the present application further provides a wireless communication system, which includes a terminal and a network side device. The terminal can be used to execute the steps of the resource configuration method for the terminal side provided by the embodiment of the present application. The network side device can be used to execute the steps of the resource configuration method for the network side device provided by the embodiment of the present application.

[0661] It should be noted that, in the present document, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises a", "comprising", or the like does not, without more constraints, preclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element. Furthermore, it is to be understood that the methods and apparatuses of the present application can be carried out by specific hardware, by software, or by a combination of hardware and software. It is therefore, contemplated to this patent to cover any and all modifications, variations, or equivalents that fall within the scope of the present application. Accordingly, where a concept can have been illustrated in only one of the exemplary embodiments, various aspects of the concept can be modified and / or combined to produce a variety of other embodiments that are not specifically illustrated. Thus, for purposes of describing particular embodiments, reference has been made to orientations. However, it is to be understood that the teachings of this patent are not limited in their application to any one of the mentioned orientations, but are applicable to any assembly having the features currently described or hereinafter ascertained.

[0662] From the above description of the embodiments, it is apparent that the method of the above-mentioned embodiments can be realized by means of a computer software product and a general hardware platform as necessary, of course, also by hardware. The computer software product is stored in a storage medium (such as ROM, RAM, magnetic disc, optical disc, etc.), and includes a plurality of instructions for making a terminal or a network side device execute the method described in each embodiment of the present application.

[0663] The embodiments of the present application are described above in conjunction with the drawings, but the present application is not limited to the above-described specific embodiments, and the above-described specific embodiments are merely illustrative rather than restrictive, and a person of ordinary skill in the art can make many forms of embodiments under the inspiration of the present application without departing from the scope of the present application and the scope protected by the claims, and these embodiments all belong to the protection scope of the present application.

Claims

1. A method for resource configuration, comprising: receiving, by a terminal, first configuration information, the first configuration information indicating at least one of the following: target resources that can be skipped, target resources that cannot be skipped, and whether to enable skipping of target resources, wherein the terminal transmits on the target resources that are skipped, the target resources comprising at least one of a configured interval and a restricted occasion for the terminal.

2. The method of claim 1, wherein, The method further comprises: receiving, by the terminal, indication information, the indication information indicating whether the terminal skips at least one target resource.

3. The method of claim 2, wherein, The at least one target resource comprises at least one of the following: a first target resource that is not earlier than a first time; a target resource with the highest priority among a plurality of target resources that are not earlier than the first time; a target resource with the highest priority among a plurality of target resources, the target resource with the highest priority not being earlier than the first time; wherein a gap between the first time and an end position of a PDCCH carrying the indication information is greater than or equal to a first time gap; the plurality of target resources overlap in time domain or a time gap between the plurality of target resources is less than or equal to a second time gap.

4. The method of claim 2 or 3, wherein, The at least one target resource is a target resource in at least one of the following: target resources that can be skipped and are configured by the first configuration information; target resources that are not configured by the first configuration information as target resources that cannot be skipped.

5. The method of any one of claims 2 to 4, wherein, The indication information indicates whether to skip at least one target resource in a case where the first configuration information configures to enable skipping of the target resources.

6. The method of any one of claims 1 to 5, wherein, The first configuration information indicates at least one of the following by mode information: target resources that can be skipped and target resources that cannot be skipped.

7. The method of claim 6, wherein, The mode information comprises at least one of the following: at least one bitmap and indication of at least one time window; wherein each bit in each bitmap is used to indicate whether at least one target resource can be skipped; target resources that overlap with a time window in the at least one time window can be skipped or target resources that overlap with a time window in the at least one time window cannot be skipped.

8. The method of any one of claims 1 to 7, wherein, The first configuration information indicates one of the following: whether to enable skipping of target resources, and in a case where skipping of target resources is enabled, the indication information is included in a target downlink control information (DCI) format corresponding to the terminal; or whether the indication information is included in a target DCI format corresponding to the terminal; wherein the indication information is used to indicate whether to skip at least one target resource.

9. The method of any one of claims 1 to 8, wherein, The enabling of skipping of target resources comprises: enabling skipping of target resources in a DCI format granularity; or enabling skipping of target resources in a target resource configuration granularity, the target resource configuration being used to configure parameters of target resources; or enabling skipping of target resources in a terminal granularity; enabling skipping of target resources in a bandwidth part (BWP) granularity; enabling skipping of target resources in a serving cell granularity; enabling skipping of target resources in a serving cell group granularity.

10. The method of any one of claims 1 to 9, wherein, The first configuration information comprises configuration information in at least one of the following: physical downlink shared channel (PDSCH) configuration, physical uplink shared channel (PUSCH) configuration, and measurement interval configuration.

11. The method of claim 10, wherein, In a case that the first configuration information comprises configuration information in the measurement gap configuration: the configuration information in the measurement gap configuration is used to indicate whether a first target resource corresponding to the measurement gap configuration enables target resource skipping; or the configuration information in the measurement gap configuration is used to indicate whether a second target resource enables target resource skipping, the second target resource being a target resource indicated by the configuration information in the measurement gap configuration.

12. The method of claim 10 or 11, wherein, In a case that the first configuration information comprises configuration information in the PDSCH configuration: the configuration information in the PDSCH configuration is used to indicate whether a first DCI format comprises indication information; and / or In a case that the first configuration information comprises configuration information in the PUSCH configuration: the configuration information in the PUSCH configuration is used to indicate whether a second DCI format comprises indication information; wherein the indication information is used to indicate whether to skip at least one target resource.

13. The method of any one of claims 1 to 12, wherein, The method further comprises: the terminal reporting capability information, the capability information being used to indicate one of: whether the terminal supports target resource skipping; whether the terminal supports transmission on a target resource; a first time interval.

14. The method of any one of claims 1 to 13, wherein, The method further comprises: the terminal reporting terminal assistance information (UAI), the UAI being used to assist at least one of: determination of a target resource required by the terminal for radio resource management (RRM); determination of a target resource that can be skipped; determination of a target resource that cannot be skipped.

15. The method of any one of claims 1 to 14, wherein, In a case that the terminal is not configured or provided with the first configuration information, the terminal defaults to at least one of: all target resources can be skipped, or target resources that can be skipped comprise target resources that can be skipped reported by the terminal; target resources that cannot be skipped comprise target resources that cannot be skipped reported by the terminal.

16. A resource configuration method, comprising: a network-side device sending first configuration information to a terminal, the first configuration information being used to indicate at least one of: target resources that can be skipped, target resources that cannot be skipped, or whether to enable target resource skipping; wherein the terminal performs transmission on a target resource that is skipped, the target resource comprising at least one of an interval and a restricted occasion configured for the terminal.

17. The method of claim 16, wherein, The method further comprises: the network-side device sending indication information to the terminal, the indication information being used to indicate whether to skip at least one target resource.

18. The method of claim 17, wherein, The at least one target resource comprises at least one of: a first target resource no earlier than a first time; a target resource with the highest priority among a plurality of target resources no earlier than a first time; a target resource with the highest priority among a plurality of target resources, and the target resource with the highest priority is no earlier than a first time; wherein an interval between the end position of a PDCCH carrying the indication information and the first time is greater than or equal to a first time interval; the plurality of target resources overlap in time domain or the time interval between the plurality of target resources is less than or equal to a second time interval.

19. The method of claim 17 or 18, wherein, The at least one target resource is a target resource in at least one of: The target resource configured by the first configuration information is capable of skipping; The target resource configured by the first configuration information is not capable of skipping.

20. The method of any one of claims 17-19, wherein, The indication information is used to indicate whether to skip at least one target resource in the case that the first configuration information configures to enable the target resource skipping.

21. The method of any one of claims 16-20, wherein, The first configuration information indicates at least one of the following by mode information: The target resource capable of skipping, and the target resource incapable of skipping.

22. The method of claim 21, wherein, The mode information includes at least one of the following: At least one bitmap, and indication of at least one time window; Each bit in each bitmap is used to indicate whether at least one target resource is capable of skipping; The target resource overlapping with a time window in the at least one time window is capable of skipping, or the target resource overlapping with a time window in the at least one time window is not capable of skipping.

23. The method of any one of claims 16 to 22, wherein, The first configuration information is used to indicate at least one of the following: Whether to enable target resource skipping, and in the case of enabling target resource skipping, indicating that the terminal corresponds to target downlink control information (DCI) format including indication information; or Whether the terminal corresponds to target DCI format including indication information; The indication information is used to indicate whether to skip at least one target resource.

24. The method of any one of claims 16 to 23, wherein, The enabling of target resource skipping includes: Enabling target resource skipping in the granularity of DCI format; or Enabling target resource skipping in the granularity of target resource configuration, the target resource configuration being used to configure parameters of target resource; or Enabling target resource skipping in the granularity of terminal; Enabling target resource skipping in the granularity of bandwidth part (BWP); Enabling target resource skipping in the granularity of serving cell; Enabling target resource skipping in the granularity of serving cell group.

25. The method of any one of claims 16 to 24, wherein, The first configuration information includes configuration information in at least one of the following: Physical downlink shared channel (PDSCH) configuration, physical uplink shared channel (PUSCH) configuration, and measurement interval configuration.

26. The method of claim 25, wherein, In the case that the first configuration information includes configuration information in the measurement interval configuration: The configuration information in the measurement interval configuration is used to indicate whether the first target resource corresponding to the measurement interval configuration enables target resource skipping; or The configuration information in the measurement interval configuration is used to indicate whether a second target resource enables target resource skipping, the second target resource being a target resource indicated by the configuration information in the measurement interval configuration.

27. The method of claim 25 or 26, wherein, In the case that the first configuration information includes configuration information in the PDSCH configuration: The configuration information in the PDSCH configuration is used to indicate whether a first DCI format includes indication information; and / or In the case that the first configuration information includes configuration information in the PUSCH configuration:

28. The method of any one of claims 16 to 27, wherein, The configuration information in the PUSCH configuration is used to indicate whether a second DCI format includes indication information; The indication information is used to indicate whether to skip at least one target resource. The method further includes: The network side device receives the capability information reported by the terminal, the capability information being used to indicate at least one of the following: Whether the terminal supports target resource skipping; 29. The method of any one of claims 16 to 28, wherein, Whether the terminal supports transmission on a target resource; A first time interval. The method further includes: The network-side device receives terminal assistance information (UAI) reported by the terminal, and the UAI is used to assist at least one of the following operations: determining target resources required by the terminal for radio resource management (RRM); determining target resources that can be skipped; determining target resources that cannot be skipped. 30.A resource configuration apparatus, comprising: a receiving module configured to receive first configuration information, wherein the first configuration information is used to indicate at least one of the following: target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping, wherein the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of interval and restricted occasions configured for the terminal.

31. The apparatus of claim 30, wherein, The receiving module is further configured to: receive indication information, wherein the indication information is used to indicate whether the terminal skips at least one target resource.

32. The apparatus of claim 30 or 31, wherein, The apparatus further comprises a sending module configured to at least one of the following: reporting capability information; reporting terminal assistance information (UAI); wherein the capability information is used to indicate at least one of the following: whether the terminal supports target resource skipping; whether the terminal supports transmission on target resources; a first time interval; wherein the UAI is used to assist at least one of the following operations: determining target resources required by the terminal for radio resource management (RRM); determining target resources that can be skipped; determining target resources that cannot be skipped. 33.A resource configuration apparatus, comprising: a sending module configured to send first configuration information to a terminal, wherein the first configuration information is used to indicate at least one of the following: target resources that can be skipped, target resources that cannot be skipped, and whether to enable target resource skipping, wherein the terminal performs transmission on the target resources that are skipped, and the target resources include at least one of interval and restricted occasions configured for the terminal.

34. The apparatus of claim 33, wherein, The sending module is further configured to: send indication information to the terminal, wherein the indication information is used to indicate whether to skip at least one target resource.

35. The apparatus of claim 33 or 34, wherein, The apparatus further comprises a receiving module configured to at least one of the following: receive capability information reported by the terminal; receive terminal assistance information (UAI) reported by the terminal; wherein the capability information is used to indicate at least one of the following: whether the terminal supports target resource skipping; whether the terminal supports transmission on target resources; a first time interval; wherein the UAI is used to assist at least one of the following operations: determining target resources required by the terminal for radio resource management (RRM); determining target resources that can be skipped; determining target resources that cannot be skipped. 36.A terminal, comprising a processor and a memory, wherein the memory stores programs or instructions executable on the processor, and the programs or instructions are executed by the processor to implement steps of the resource configuration method according to any one of claims 1 to 15.

37. A network-side device comprising a processor and a memory, the memory storing programs or instructions executable on the processor, the programs or instructions, when executed by the processor, implement the steps of the resource configuration method according to any one of claims 16 to 29.

38. A readable storage medium, the readable storage medium storing programs or instructions, the programs or instructions, when executed by a processor, implement the steps of the resource configuration method according to any one of claims 1 to 15, or implement the steps of the resource configuration method according to any one of claims 16 to 29.

39. A computer program product stored in a storage medium, the computer program product, when executed by at least one processor, implement the steps of the resource configuration method according to any one of claims 1 to 15, or implement the steps of the resource configuration method according to any one of claims 16 to 29.

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