Resource configuration method / apparatus / user equipment / network side device and storage medium

By reporting measurement capability information from the UE, the network equipment configures corresponding resources, which solves the problem of inaccurate measurement resource configuration in the communication system and achieves efficient resource utilization and accurate measurement results.

CN115053557BActive Publication Date: 2025-10-10BEIJING XIAOMI MOBILE SOFTWARE CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202280001331.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-09
Publication Date
2025-10-10
Estimated Expiration
2042-05-09

AI Technical Summary

Technical Problem

In a communication system, network equipment is unable to accurately configure measurement resources for UE, resulting in resource waste or inaccurate measurement results.

Method used

The UE reports measurement capability information to the network device, including the measurement capabilities of non-connected cells and connected cells, and the network device configures corresponding resource configurations based on the UE's measurement capabilities.

Benefits of technology

This enables accurate configuration of measurement resources, avoids resource waste and inaccurate measurement results, and ensures that resource configuration matches the measurement capabilities of the UE.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115053557B_ABST
    Figure CN115053557B_ABST
Patent Text Reader

Abstract

The present disclosure provides a resource configuration method / apparatus / device / storage medium, which belongs to the technical field of communication. The method comprises: reporting measurement capability information to a network device, wherein the measurement capability information comprises: first capability information indicating the measurement capability of the UE when measuring a non-connected cell of the UE, and / or second capability information indicating the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell; and obtaining first measurement resource configuration configured by the network device for measuring the non-connected cell and second measurement resource configuration configured by the network device for measuring the connected cell. The method of the present disclosure can make the measurement resource configuration configured by the network device match the measurement capability of the UE, avoid the situation that the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in that the UE cannot achieve measurement and resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in that the UE cannot obtain accurate measurement results, and achieve accurate configuration of the measurement resource.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present disclosure relates to the field of communication technologies, and in particular to a resource configuration method, apparatus, device, and storage medium. Background Art

[0002] In communication systems, multi-beam management technology enables user equipment (UE) to connect to multiple network devices simultaneously, achieving better signal connectivity and communication speeds. During inter-cell multi-beam management, the UE not only measures connected cells but also discovers and measures unconnected cells.

[0003] In related technologies, the UE only reports its measurement capability of the connected cell to the network device, which may result in the network device being unable to configure accurate measurement resources for the UE. For example, the measurement resources configured by the network device to the UE may be greater than the UE's measurement capability, resulting in the UE being unable to perform measurement, causing a waste of resources. Alternatively, the measurement resources configured by the network device to the UE may be less than the UE's measurement capability, resulting in the UE being unable to obtain accurate measurement results. Summary of the Invention

[0004] The present disclosure proposes a resource configuration method, apparatus, device, and storage medium to solve the problem in related technologies that network equipment cannot configure accurate measurement resources for UE.

[0005] A resource configuration method proposed in an embodiment of one aspect of the present disclosure is applied to a UE, including:

[0006] Report measurement capability information to the network device, where the measurement capability information includes at least one of the following:

[0007] first capability information, used to indicate a measurement capability of the UE when measuring a non-connected cell of the UE;

[0008] The second capability information is used to indicate a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE;

[0009] A first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell configured by the network device are acquired.

[0010] Optionally, in an embodiment of the present disclosure, the first capability information includes: a maximum number that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell.

[0011] Optionally, in an embodiment of the present disclosure, the second capability information includes: a maximum number of reference signals of the connected cell and the non-connected cell that can be supported by the UE when simultaneously measuring the reference signals.

[0012] Optionally, in an embodiment of the present disclosure, reporting the measurement capability information to the network device includes:

[0013] The measurement capability information is reported to the network device through radio resource control (RRC) signaling.

[0014] Optionally, in one embodiment of the present disclosure, in response to the network device configuring the UE to simultaneously measure the connected cell and the non-connected cell, the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration;

[0015] The first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0016] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0017] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

[0018] Optionally, in one embodiment of the present disclosure, in response to the network device configuring the UE not to measure the connected cell and the non-connected cell simultaneously, a time domain resource corresponding to the first measurement resource configuration is different from a time domain resource corresponding to the second measurement resource configuration;

[0019] The first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0020] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

[0021] Another aspect of the present disclosure provides a resource configuration method, which is applied to a network device and includes:

[0022] Obtain measurement capability information reported by the UE, where the measurement capability information includes at least one of the following:

[0023] first capability information, used to indicate a measurement capability of the UE when measuring a non-connected cell of the UE;

[0024] The second capability information is used to indicate a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE;

[0025] A first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell are configured for the UE.

[0026] Optionally, in one embodiment of the present disclosure, the first capability information comprises: a maximum number of simultaneous measurements of reference signals of the non-connected cell that the UE can support.

[0027] Optionally, in one embodiment of the present disclosure, the second capability information comprises: a maximum number of simultaneous measurements of reference signals of the connected cell and the non-connected cell that the UE can support.

[0028] Optionally, in one embodiment of the present disclosure, the obtaining of the measurement capability information reported by the UE comprises:

[0029] The measurement capability information reported by the UE through RRC signaling is obtained.

[0030] Optionally, in one embodiment of the present disclosure, in response to the network device configuring the UE to simultaneously measure the connected cell and the non-connected cell, the time domain resource corresponding to the first measurement resource configuration is the same as the time domain resource corresponding to the second measurement resource configuration.

[0031] The first measurement resource configuration and the second measurement resource configuration satisfy the following conditions:

[0032] The number of resources occupied by the to-be-measured reference signals in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

[0033] The number of resources occupied by the to-be-measured reference signals in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

[0034] Optionally, in one embodiment of the present disclosure, in response to the network device configuring the UE to not simultaneously measure the connected cell and the non-connected cell, the time domain resource corresponding to the first measurement resource configuration is different from the time domain resource corresponding to the second measurement resource configuration.

[0035] The first measurement resource configuration and the second measurement resource configuration satisfy the following conditions:

[0036] The number of resources occupied by the to-be-measured reference signals in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

[0037] Another aspect of the present disclosure provides a resource configuration device, comprising:

[0038] A reporting module is configured to report measurement capability information to a network device, wherein the measurement capability information comprises at least one of the following:

[0039] First capability information is used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE.

[0040] second capability information, used for indicating a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE;

[0041] The apparatus further includes an obtaining module configured to obtain a first measurement resource configuration configured by the network device for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell.

[0042] The apparatus further includes an obtaining module configured to obtain a first measurement resource configuration configured by the network device for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell.

[0043] The apparatus further includes an obtaining module configured to obtain a first measurement resource configuration configured by the network device for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell.

[0044] first capability information, used for indicating a measurement capability of the UE when measuring a non-connected cell of the UE;

[0045] second capability information, used for indicating a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE;

[0046] The apparatus further includes an obtaining module configured to obtain a first measurement resource configuration configured by the network device for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell.

[0047] The apparatus further includes an obtaining module configured to obtain a first measurement resource configuration configured by the network device for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell.

[0048] The apparatus further includes an obtaining module configured to obtain a first measurement resource configuration configured by the network device for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell.

[0049] The apparatus further includes an obtaining module configured to obtain a first measurement resource configuration configured by the network device for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell.

[0050] The interface circuit is configured to receive code instructions and transmit the code instructions to the processor.

[0051] The processor is configured to run the code instructions to perform the method according to an aspect of the present disclosure.

[0052] The apparatus further includes an obtaining module configured to obtain a first measurement resource configuration configured by the network device for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell.

[0053] The interface circuit is configured to receive code instructions and transmit the code instructions to the processor.

[0054] The processor is configured to execute the code instructions to perform the method according to an embodiment of another aspect.

[0055] The computer readable storage medium according to an embodiment of a further aspect of the present disclosure stores instructions that, when executed, cause the method according to an embodiment of an aspect of the present disclosure to be implemented.

[0056] The computer readable storage medium according to an embodiment of a further aspect of the present disclosure stores instructions that, when executed, cause the method according to an embodiment of another aspect of the present disclosure to be implemented.

[0057] To sum up, in the resource configuration method, apparatus, device and storage medium provided by the embodiments of the present disclosure, the UE reports the measurement capability information to the network device, the measurement capability information includes at least one of the following: the first capability information, which can be used to indicate the measurement capability of the UE when measuring the non-connected cell of the UE, and the second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring the connected cell and the non-connected cell of the UE, and then the UE acquires the first measurement resource configuration configured by the network device for measuring the non-connected cell and the second measurement resource configuration configured by the network device for measuring the connected cell. Therefore, in the embodiments of the present disclosure, the UE reports the measurement capability of the connected cell of the UE and / or the measurement capability of simultaneously measuring the connected cell and the non-connected cell of the UE to the network device, and then the network device can configure the measurement resource configuration to the UE based on the measurement capability of the connected cell of the UE and / or the measurement capability of simultaneously measuring the connected cell and the non-connected cell of the UE, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation that the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in that the UE cannot achieve measurement, causing resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in that the UE cannot obtain accurate measurement results, and accurate configuration of the measurement resource is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0058] The above and / or additional aspects and advantages of the present disclosure will become apparent and more readily appreciated from the following description of embodiments, taken in conjunction with the accompanying drawings, in which:

[0059] Figure 1 A flowchart of a resource configuration method according to an embodiment of the present disclosure;

[0060] Figure 2 A flowchart of a resource configuration method according to another embodiment of the present disclosure;

[0061] Figure 3 A flowchart of a resource configuration method according to another embodiment of the present disclosure;

[0062] Figure 4 A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0063] Figure 5a A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0064] Figure 5b A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0065] Figure 6a A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0066] Figure 6b A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0067] Figure 7 A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0068] Figure 8 A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0069] Figure 9 A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0070] Figure 10 A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0071] Figure 11a A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0072] Figure 11b A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0073] Figure 12a A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0074] Figure 12b A flowchart of a resource configuration method provided by another embodiment of the present disclosure;

[0075] Figure 13 A schematic diagram of the structure of a resource configuration device provided by an embodiment of the present disclosure;

[0076] Figure 14 A schematic structural diagram of a resource configuration device provided by another embodiment of the present disclosure;

[0077] Figure 15is a block diagram of a user equipment provided by one embodiment of the present disclosure;

[0078] Figure 16 A block diagram of a network-side device provided in one embodiment of the present disclosure. DETAILED DESCRIPTION

[0079] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, when referring to the drawings, identical numerals in different figures represent identical or similar elements, unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all possible implementations consistent with the present disclosure. Rather, they are merely examples of apparatuses and methods consistent with certain aspects of the present disclosure, as detailed in the appended claims.

[0080] The terms used in the embodiments of the present disclosure are for the purpose of describing specific embodiments only and are not intended to limit the embodiments of the present disclosure. The singular forms "a," "an," and "the" used in the embodiments of the present disclosure and the appended claims are also intended to include plural forms unless the context clearly indicates otherwise. It should also be understood that the term "and / or" as used herein refers to and includes any or all possible combinations of one or more associated listed items.

[0081] It should be understood that although the terms first, second, third, etc. may be used to describe various information in the embodiments of the present disclosure, such information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of the embodiments of the present disclosure, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Depending on the context, the words "if" and "if" as used herein may be interpreted as "at the time of" or "when" or "in response to determining".

[0082] The resource configuration method, apparatus, device, and storage medium provided by the embodiments of the present disclosure are described in detail below with reference to the accompanying drawings.

[0083] Figure 1 A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 1 As shown, the resource configuration method may include the following steps:

[0084] Step 101: Report measurement capability information to a network device.

[0085] It should be noted that in an embodiment of the present disclosure, the UE can refer to a device that provides voice and / or data connectivity to a user. The terminal device can communicate with one or more core networks via a RAN (Radio Access Network), and the UE can be an Internet of Things terminal, such as a sensor device, a mobile phone (or called "cellular" phone) and a computer with an Internet of Things terminal, which can be a fixed, portable, pocket-sized, handheld, computer-embedded or vehicle-mounted device. For example, a station (Station, STA), a subscriber unit, a subscriber station, a mobile station, a mobile, a remote station, an access point, a remote terminal, an access terminal, a user terminal or a user agent. Alternatively, the UE can also be a device of an unmanned aerial vehicle. Alternatively, the UE can also be a vehicle-mounted device, which can be a vehicle-mounted computer with wireless communication function or a wireless terminal of an external vehicle-mounted computer. Alternatively, the UE can also be a roadside device, which can be a street lamp, a signal lamp or other roadside devices with wireless communication function, etc.

[0086] In an embodiment of the present disclosure, the measurement capability information can include at least one of the following:

[0087] The first capability information is used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE. In an embodiment of the present disclosure, the first capability information can include the maximum number of reference signals that the UE can support when simultaneously measuring a plurality of reference signals of a non-connected cell, wherein the reference signal of the non-connected cell can be an SSB (Synchronization Signal Block), and the UE can measure the L1-RSRP (Layer 1 Reference Signal Received Power) of the SSB. Based on this, the first capability information can include the maximum number of reference signals that the UE can support when simultaneously measuring the L1-RSRP of a plurality of SSBs on the non-connected cell. For example, assuming that the UE can support a maximum of 5 reference signals (such as 5 SSBs) for simultaneously measuring the L1-RSRP on the non-connected cell, the first capability information can be 5.

[0088] The second capability information is used to indicate the measurement capability of the UE when simultaneously measuring the connected cell and the non-connected cell of the UE. In one embodiment of the present disclosure, the second capability information may include: the maximum number of reference signals that the UE can support when simultaneously measuring the reference signals of the connected cell and the non-connected cell, wherein, in one embodiment of the present disclosure, the reference signal of the connected cell may be SSB and / or CSI-RS (Channel State Information-Reference Signal). And, the UE can measure the L1-RSRP of the CSI-RS. Based on this, the second capability information may include: the maximum number of reference signals that the UE can support when measuring the L1-RSRP of the SSB and / or CSI-RS on the connected cell, and measuring the L1-RSRP of the SSB on the non-connected cell at the same time. For example, assuming that the UE measures the connected cell and the non-connected cell at the same time, it can support the simultaneous measurement of the L1-RSRP of 2 reference signals (such as one SSB and one CSI-RS) on the connected cell, and can support the simultaneous measurement of the L1-RSRP of 2 reference signals (such as 2 SSBs) on the non-connected cell. Then, the first capability information can be 4.

[0089] Furthermore, in one embodiment of the present disclosure, the method for the UE to report the measurement capability information to the network device may include: reporting the measurement capability information to the network device through RRC (Ratio Resource Control) signaling.

[0090] Step 102: Acquire a first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell configured by a network device.

[0091] In one embodiment of the present disclosure, the first measurement resource configuration and the second measurement resource configuration may be configured by the network device based on the measurement capability information reported by the UE.

[0092] Furthermore, in one embodiment of the present disclosure, the first measurement resource configuration may include time domain resources and frequency domain resources corresponding to the reference signal to be measured of the non-connected cell, and the second measurement resource configuration may include time domain resources and frequency domain resources corresponding to the reference signal to be measured of the connected cell.

[0093] It should be noted that, in one embodiment of the present disclosure, the network device may configure the UE to measure connected cells and non-connected cells at the same time. In this case, the time domain resources of the first measurement resource configuration and the second measurement resource configuration configured by the network device are the same, such as the first measurement resource configuration and the second measurement resource configuration correspond to the same time domain OFDM (Orthogonal Frequency Division Multiplexing) symbol. In another embodiment of the present disclosure, the network device may configure the UE to measure connected cells and non-connected cells at different times. In this case, the time domain resources of the first measurement resource configuration and the second measurement resource configuration configured by the network device are different. Among them, when the time domain resources of the first measurement resource configuration and the second measurement resource configuration are the same or different, the first measurement resource configuration and the second measurement resource configuration configured by the network device based on the measurement capability information obtained by the UE will also be different. This part of the content will be described in subsequent embodiments.

[0094] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0095] Figure 2 A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 2 As shown, the resource configuration method may include the following steps:

[0096] Step 201: Report first capability information to a network device via a first signaling.

[0097] In one embodiment of the present disclosure, the first signaling may be, for example, maxNumberSSB-Resource-NSC (maximum number of SSB resources supported by unlicensed cells for L1-RSRP measurement) signaling.

[0098] Step 202: Acquire a first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell configured by a network device.

[0099] For a detailed description of steps 201 - 202 , please refer to the above embodiment description, which will not be elaborated herein in detail.

[0100] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0101] Figure 3 A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 3 As shown, the resource configuration method may include the following steps:

[0102] Step 301: Report first capability information to a network device through a first signaling, and report second capability information to the network device through a second signaling.

[0103] In one embodiment of the present disclosure, the first signaling may be, for example, maxNumberSSB-Resource-NSC signaling, and the second signaling may be, for example, maxNumberSSB-CSI-RS-Total (the total number of resources supported by authorized and unauthorized cells for L1-RSRP measurement) signaling.

[0104] Step 302: Acquire a first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell configured by a network device.

[0105] For a detailed description of steps 301 - 302 , please refer to the above embodiment description, which will not be elaborated herein in detail.

[0106] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0107] Figure 4 A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 4 As shown, the resource configuration method may include the following steps:

[0108] Step 401: Report third capability information to a network device, where the third capability information is used to indicate the measurement capability of the UE when measuring a connected cell.

[0109] Among them, in one embodiment of the present disclosure, the third capability information may include: the maximum number of reference signals that the UE can support when simultaneously measuring multiple reference signals of the connected cell. And, in one embodiment of the present disclosure, the reference signal of the connected cell may be SSB and / or CSI-RS. Based on this, the third capability information may include: the maximum number of reference signals that the UE can support measuring when simultaneously measuring the L1-RSRP of SSB and / or CSI-RS in the connected cell. For example, assuming that the UE can support the simultaneous measurement of the L1-RSRP of 5 reference signals (such as 3 SSBs and 2 CSI-RS) on the connected cell, the first capability information can be 5.

[0110] Furthermore, in one embodiment of the present disclosure, the UE may report third capability information to the network device through a third signaling, wherein the third signaling may be, for example, beamManagementSSB-CSI-RS (number of SSB and CSI-RS resources used for beam management) signaling.

[0111] Step 402: Report measurement capability information to the network device.

[0112] In one embodiment of the present disclosure, the measurement capability information may include at least one of the following:

[0113] The first capability information is used to indicate the measurement capability of the UE when measuring the non-connected cell of the UE. In one embodiment of the present disclosure, the first capability information may include: the maximum number of reference signals that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell, wherein, in one embodiment of the present disclosure, the reference signal of the non-connected cell may be an SSB, and the UE can measure the L1-RSRP of the SSB. Based on this, the first capability information may include: the maximum number of reference signals that the UE can support when simultaneously measuring the L1-RSRP of multiple SSBs on a non-connected cell. For example, assuming that the UE can support the simultaneous measurement of the L1-RSRP of 5 reference signals (such as 5 SSBs) on a non-connected cell, the first capability information may be 5.

[0114] The second capability information is used to indicate the measurement capability of the UE when simultaneously measuring the UE's connected cell and non-connected cell. In one embodiment of the present disclosure, the second capability information may include: the maximum number of reference signals that the UE can support when simultaneously measuring connected and non-connected cells, wherein in one embodiment of the present disclosure, the reference signal of the connected cell may be an SSB and / or a CSI-RS. In addition, the UE can measure the L1-RSRP of the CSI-RS. Based on this, the second capability information may include: the maximum number of reference signals that the UE can support measuring when measuring the L1-RSRP of the SSB and / or CSI-RS on the connected cell and the L1-RSRP of the SSB on the non-connected cell at the same time. For example, assuming that when the UE simultaneously measures connected and non-connected cells, it can support the simultaneous measurement of the L1-RSRP of a maximum of two reference signals (such as one SSB and one CSI-RS) on the connected cell, and can support the simultaneous measurement of the L1-RSRP of a maximum of two reference signals (such as two SSBs) on the non-connected cell, then the first capability information may be 4.

[0115] Furthermore, in one embodiment of the present disclosure, the method for the UE to report the measurement capability information to the network device may include: reporting the measurement capability information to the network device through RRC signaling.

[0116] Step 403: Acquire a first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell configured by the network device.

[0117] For a detailed description of steps 401 - 402 , please refer to the above embodiment description, which will not be elaborated herein in detail.

[0118] Furthermore, it should be noted that, in one embodiment of the present disclosure, there is no order restriction between step 401 and step 402. That is, step 401 and step 402 may be performed simultaneously, step 401 may be performed first and then step 402, or step 402 may be performed first and then step 401.

[0119] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0120] Figure 5a A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 5a As shown, the resource configuration method may include the following steps:

[0121] Step 501a: Report measurement capability information to the network device.

[0122] For the relevant introduction of step 501a, please refer to the description of the above embodiment.

[0123] Step 502a: Obtain a first measurement resource configuration for measuring unconnected cells and a second measurement resource configuration for measuring connected cells configured by the network device, wherein the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration.

[0124] In one embodiment of the present disclosure, when the time domain resources corresponding to the first measurement resource configuration and the second measurement resource configuration configured by the network device to the UE are the same, it indicates that the network device configures the UE to simultaneously measure connected cells and non-connected cells. In this case, the first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0125] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0126] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

[0127] That is, in one embodiment of the present disclosure, when the network device configures the UE to simultaneously measure connected cells and non-connected cells, the number of reference signals to be measured of the non-connected cells shall be less than or equal to the maximum number that the UE can support when simultaneously measuring multiple reference signals of the non-connected cells, and the total number of reference signals to be measured of the connected cells and non-connected cells shall be less than or equal to the maximum number that the UE can support when simultaneously measuring the reference signals of the connected cells and non-connected cells. This ensures that the measurement resource configuration configured by the network device to the UE does not exceed the measurement capability of the UE or is excessively lower than the measurement capability of the UE, but is accurately matched with the measurement capability of the UE.

[0128] For example, in one embodiment of the present disclosure, assume that the first capability information includes 5 and the second capability information includes 4. In this case, if the network device configures the UE to measure both connected and non-connected cells, the number of reference signals to be measured for the non-connected cells should be less than or equal to 5, and the total number of reference signals to be measured for both connected and non-connected cells should be less than or equal to 4. For example, the number of reference signals to be measured for non-connected cells can be 2, and the number of reference signals to be measured for connected cells can be 2.

[0129] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0130] Figure 5bA schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 5b As shown, the resource configuration method may include the following steps:

[0131] Step 501b: Report third capability information to the network device, where the third capability information is used to indicate the measurement capability of the UE when measuring the connected cell.

[0132] Step 502b: Report measurement capability information to the network device.

[0133] For the introduction of steps 501b-502b, please refer to the description of the above embodiment.

[0134] Step 503b: Obtain a first measurement resource configuration for measuring unconnected cells and a second measurement resource configuration for measuring connected cells configured by the network device, wherein the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration.

[0135] In one embodiment of the present disclosure, when the time domain resources corresponding to the first measurement resource configuration and the second measurement resource configuration configured by the network device to the UE are the same, it indicates that the network device configures the UE to simultaneously measure connected cells and non-connected cells. In this case, the first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0136] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0137] The number of resources occupied by the reference signals to be measured in the second measurement resource configuration is less than or equal to the maximum number in the third capability information;

[0138] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

[0139] That is, in one embodiment of the present disclosure, when the network device configures the UE to simultaneously measure connected cells and non-connected cells, the number of reference signals to be measured in the non-connected cells shall be less than or equal to the maximum number that the UE can support when simultaneously measuring multiple reference signals of the non-connected cells, the number of reference signals to be measured in the connected cells shall be less than or equal to the maximum number that the UE can support when simultaneously measuring multiple reference signals of the connected cells, and the total number of reference signals to be measured in the connected cells and non-connected cells shall be less than or equal to the maximum number that the UE can support when simultaneously measuring the reference signals of the connected cells and non-connected cells. This ensures that the measurement resource configuration configured by the network device to the UE does not exceed the measurement capability of the UE or is excessively lower than the measurement capability of the UE, but is accurately matched with the measurement capability of the UE.

[0140] For example, in one embodiment of the present disclosure, assume that the first capability information includes 5, the second capability information includes 4, and the third capability information includes 6. In this case, if the network device configures the UE to measure both connected and non-connected cells, the number of reference signals to be measured for the non-connected cells should be less than or equal to 5, the number of reference signals to be measured for connected cells should be less than or equal to 6, and the total number of reference signals to be measured for connected and non-connected cells should be less than or equal to 4. For example, the number of reference signals to be measured for non-connected cells can be 2, and the number of reference signals to be measured for connected cells can be 2.

[0141] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0142] Figure 6a A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 6a As shown, the resource configuration method may include the following steps:

[0143] Step 601a: Report measurement capability information to the network device.

[0144] For the relevant introduction of step 601a, please refer to the description of the above embodiment.

[0145] Step 602a: Obtain a first measurement resource configuration configured by the network device for measuring non-connected cells, where the time domain resources where the first measurement resource configuration is located only include reference signals to be measured for non-connected cells, to ensure that the UE does not simultaneously perform measurements of connected cells and non-connected cells on the same OFDM symbol.

[0146] In one embodiment of the present disclosure, when the time domain resources corresponding to the first measurement resource configuration configured by the network device to the UE are different from the time domain resources corresponding to the second measurement resource configuration, it means that the network device configures the UE to measure connected cells and non-connected cells at different times. In this case, the first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0147] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

[0148] That is, in one embodiment of the present disclosure, when the network device configures the UE not to measure connected cells and non-connected cells at the same time, the number of reference signals to be measured in the non-connected cells should be less than or equal to the maximum number that can be supported when the UE simultaneously measures multiple reference signals of the non-connected cells. This ensures that the measurement resource configuration configured by the network device to the UE does not exceed the measurement capability of the UE or is excessively lower than the measurement capability of the UE, but is accurately matched with the measurement capability of the UE.

[0149] For example, in one embodiment of the present disclosure, assume that the first capability information includes 5. In this case, if the network device configures the UE not to measure both connected cells and non-connected cells simultaneously, the number of reference signals to be measured for the non-connected cell should be less than or equal to 5. For example, the number of reference signals to be measured for the non-connected cell can be set to 4.

[0150] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0151] Figure 6b A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 6b As shown, the resource configuration method may include the following steps:

[0152] Step 601b: Report third capability information to the network device, where the third capability information is used to indicate the measurement capability of the UE when measuring the connected cell.

[0153] Step 602b: Report measurement capability information to the network device.

[0154] For the relevant introduction of steps 601b-602b, reference may be made to the description of the above embodiment.

[0155] Step 603b: Obtain a first measurement resource configuration for measuring unconnected cells and a second measurement resource configuration for measuring connected cells configured by the network device, wherein the time domain resources corresponding to the first measurement resource configuration are different from the time domain resources corresponding to the second measurement resource configuration.

[0156] In one embodiment of the present disclosure, when the time domain resource corresponding to the first measurement resource configuration is different from the time domain resource corresponding to the second measurement resource configuration, it means that the network device configures the UE to measure connected cells and non-connected cells at different times. In this case, the first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0157] The number of resources occupied by the to-be-measured reference signals in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0158] The number of resources occupied by the to-be-measured reference signals in the second measurement resource configuration is less than or equal to the maximum number in the third capability information.

[0159] That is, in one embodiment of the present disclosure, when the network device configures the UE to measure the connected cell and the non-connected cell at different times, the number of to-be-measured reference signals of the non-connected cell should be less than or equal to the maximum number of reference signals that the UE can simultaneously measure for the non-connected cell, and the number of to-be-measured reference signals of the connected cell should be less than or equal to the maximum number of reference signals that the UE can simultaneously measure for the connected cell, so as to ensure that the measurement resource configuration configured by the network device to the UE does not exceed or is excessively lower than the measurement capability of the UE, but is accurately matched to the measurement capability of the UE.

[0160] For example, in one embodiment of the present disclosure, it is assumed that the first capability information includes 5, and the third capability information includes 6. At this time, if the network device configures the UE to measure the connected cell and the non-connected cell at different times, the number of to-be-measured reference signals of the non-connected cell should be less than or equal to 5, and the number of to-be-measured reference signals of the connected cell should be less than or equal to 6. As can be seen, the number of to-be-measured reference signals of the non-connected cell can be 4, and the number of to-be-measured reference signals of the connected cell can be 5.

[0161] In summary, in the resource configuration method provided in the embodiments of the present disclosure, the UE reports the measurement capability information to the network device, the measurement capability information includes at least one of the following: the first capability information, which can be used to indicate the measurement capability of the UE when measuring the non-connected cell of the UE, and the second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring the connected cell and the non-connected cell of the UE, and then the UE obtains the first measurement resource configuration configured by the network device for measuring the non-connected cell and the second measurement resource configuration configured by the network device for measuring the connected cell. As can be seen, in the embodiments of the present disclosure, the UE reports the measurement capability of the connected cell of the UE and / or the measurement capability of the UE when simultaneously measuring the connected cell and the non-connected cell to the network device, and then the network device can configure the measurement resource configuration to the UE based on the measurement capability of the UE for the connected cell and / or the measurement capability of the UE when simultaneously measuring the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can be matched to the measurement capability of the UE, avoiding the situation that the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in that the UE cannot achieve measurement and resources are wasted, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in that the UE cannot obtain accurate measurement results, and accurate configuration of the measurement resource is achieved.

[0162] Figure 7 A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 7 As shown, the resource configuration method may include the following steps:

[0163] Step 701: Obtain measurement capability information reported by UE.

[0164] In one embodiment of the present disclosure, the measurement capability information includes at least one of the following:

[0165] First capability information, used to indicate a measurement capability of the UE when measuring a non-connected cell of the UE, and the first capability information includes: a maximum number of reference signals that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell;

[0166] The second capability information is used to indicate the measurement capability of the UE when simultaneously measuring connected cells and non-connected cells of the UE, and the second capability information includes: a maximum number of reference signals that the UE can support when simultaneously measuring connected cells and non-connected cells.

[0167] Furthermore, in one embodiment of the present disclosure, the method of reporting measurement capability information to a network device may include: reporting the measurement capability information to the network device through RRC signaling.

[0168] Step 702: Configure the UE with a first measurement resource configuration for measuring non-connected cells and a second measurement resource configuration for measuring connected cells.

[0169] For the relevant introduction of steps 701-702, please refer to the description of the above embodiment.

[0170] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0171] Figure 8 A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 8 As shown, the resource configuration method may include the following steps:

[0172] Step 801: Obtain first capability information reported by a UE through a first signaling.

[0173] In one embodiment of the present disclosure, the first signaling may be, for example, maxNumberSSB-Resource-NSC signaling.

[0174] Step 802: Configure the UE with a first measurement resource configuration for measuring non-connected cells and a second measurement resource configuration for measuring connected cells.

[0175] For the relevant introduction of steps 801-802, please refer to the description of the above embodiment.

[0176] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0177] Figure 9 A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 9 As shown, the resource configuration method may include the following steps:

[0178] Step 901: Acquire first capability information reported by the UE through first signaling, and acquire second capability information reported by the UE through second signaling.

[0179] In one embodiment of the present disclosure, the second signaling may be, for example, maxNumberSSB-CSI-RS-Total signaling.

[0180] Step 902: Configure the UE with a first measurement resource configuration for measuring non-connected cells and a second measurement resource configuration for measuring connected cells.

[0181] For the relevant introduction of steps 901-902, please refer to the description of the above embodiment.

[0182] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0183] Figure 10 A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 10 As shown, the resource configuration method may include the following steps:

[0184] Step 1001: Obtain third capability information reported by UE.

[0185] In one embodiment of the present disclosure, the method for obtaining the third capability information reported by the UE may include:

[0186] The third capability information reported by the UE through the third signaling is obtained, wherein, in one embodiment of the present disclosure, the third signaling may be, for example, beamManagementSSB-CSI-RS signaling.

[0187] Step 1002: Obtain measurement capability information reported by the UE.

[0188] It should be noted that, in one embodiment of the present disclosure, there is no order restriction between step 1001 and step 1002. That is, step 1001 and step 1002 may be performed simultaneously, step 1001 may be performed first and then step 1002, or step 1002 may be performed first and then step 1001.

[0189] Step 1003: Configure the UE with a first measurement resource configuration for measuring non-connected cells and a second measurement resource configuration for measuring connected cells.

[0190] For the relevant introduction of steps 1001-1003, please refer to the description of the above embodiment.

[0191] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0192] Figure 11a A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 11a As shown, the resource configuration method may include the following steps:

[0193] Step 1101a: Obtain measurement capability information reported by the UE.

[0194] Step 1102a: Configure the UE with a first measurement resource configuration for measuring non-connected cells and a second measurement resource configuration for measuring connected cells, where the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration.

[0195] In one embodiment of the present disclosure, when the time domain resource corresponding to the first measurement resource configuration is the same as the time domain resource corresponding to the second measurement resource configuration, the first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0196] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0197] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

[0198] For the introduction of steps 1101a-1102a, please refer to the above embodiment description.

[0199] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0200] Figure 11b A schematic diagram of a resource configuration method provided by an embodiment of the present disclosure is shown in FIG. Figure 11b As shown, the resource configuration method may include the following steps:

[0201] Step 1101b: Obtain the third capability information reported by the UE.

[0202] In one embodiment of the present disclosure, the third capability information is used to indicate the measurement capability of the UE when measuring a connected cell.

[0203] Furthermore, in one embodiment of the present disclosure, the third capability information includes: a maximum number of reference signals of a connected cell that the UE can support when simultaneously measuring the multiple reference signals.

[0204] Step 1102b: Obtain measurement capability information reported by the UE.

[0205] Step 1103b: Configure the UE with a first measurement resource configuration for measuring non-connected cells and a second measurement resource configuration for measuring connected cells, where the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration.

[0206] In one embodiment of the present disclosure, when the time domain resource corresponding to the first measurement resource configuration is the same as the time domain resource corresponding to the second measurement resource configuration, the first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0207] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0208] The number of resources occupied by the reference signals to be measured in the second measurement resource configuration is less than or equal to the maximum number in the third capability information;

[0209] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

[0210] For the relevant introduction of steps 1101b-1103b, please refer to the description of the above embodiment.

[0211] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0212] Figure 12a FIG12 is a flow chart of a resource configuration method provided in an embodiment of the present disclosure. The method is executed by a network device. As shown in FIG12 , the resource configuration method may include the following steps:

[0213] Step 1201a: Obtain measurement capability information reported by the UE.

[0214] Step 1202a: Configure the UE with a first measurement resource configuration for measuring non-connected cells, where the time domain resources where the first measurement resource configuration is located only include reference signals to be measured for non-connected cells, to ensure that the UE does not simultaneously perform measurements of connected cells and non-connected cells on the same OFDM symbol.

[0215] In one embodiment of the present disclosure, when the time domain resource corresponding to the first measurement resource configuration is different from the time domain resource corresponding to the second measurement resource configuration, the first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0216] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

[0217] For the relevant introduction of steps 1201a-1202a, please refer to the description of the above embodiment.

[0218] To summarize, in the resource configuration method provided in the embodiment of the present disclosure, the UE reports measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE. Afterwards, the UE obtains the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0219] Figure 12bFIG12 is a flow chart of a resource configuration method provided in an embodiment of the present disclosure. The method is executed by a network device. As shown in FIG12 , the resource configuration method may include the following steps:

[0220] Step 1201b: Obtain the third capability information reported by the UE.

[0221] In one embodiment of the present disclosure, the third capability information is used to indicate the measurement capability of the UE when measuring a connected cell.

[0222] Furthermore, in one embodiment of the present disclosure, the third capability information includes: a maximum number of reference signals of a connected cell that the UE can support when simultaneously measuring the multiple reference signals.

[0223] Step 1202b: Obtain measurement capability information reported by the UE.

[0224] Step 1203b: Configure the UE with a first measurement resource configuration for measuring non-connected cells and a second measurement resource configuration for measuring connected cells, where the time domain resources corresponding to the first measurement resource configuration are different from the time domain resources corresponding to the second measurement resource configuration.

[0225] In one embodiment of the present disclosure, when the time domain resource corresponding to the first measurement resource configuration is different from the time domain resource corresponding to the second measurement resource configuration, the first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0226] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0227] The number of resources occupied by the reference signals to be measured in the second measurement resource configuration is less than or equal to the maximum number in the third capability information.

[0228] For the relevant introduction of steps 1201b-1203b, please refer to the description of the above embodiment.

[0229] In summary, in the resource configuration method provided in the embodiments of the present disclosure, the UE reports measurement capability information to the network device, the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE, and second capability information, which can be used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE, and then the UE acquires the first measurement resource configuration configured by the network device for measuring the non-connected cell and the second measurement resource configuration configured by the network device for measuring the connected cell. Therefore, in the embodiments of the present disclosure, the UE reports the measurement capability of the connected cell of the UE and / or the measurement capability of the UE when simultaneously measuring the connected cell and the non-connected cell to the network device, and then the network device can configure the measurement resource configuration to the UE based on the measurement capability of the connected cell of the UE and / or the measurement capability of the UE when simultaneously measuring the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation that the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in that the UE cannot achieve measurement, causing resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in that the UE cannot obtain accurate measurement results, and accurate configuration of the measurement resource is achieved.

[0230] Figure 13 The structure diagram of a resource configuration device provided in the embodiments of the present disclosure is shown in FIG. 1. Figure 13 As shown in FIG. 1, the device can include:

[0231] a reporting module, configured to report measurement capability information to the network device, the measurement capability information including at least one of the following:

[0232] first capability information, used to indicate the measurement capability of the UE when measuring a non-connected cell of the UE;

[0233] second capability information, used to indicate the measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE;

[0234] an acquiring module, configured to acquire the first measurement resource configuration configured by the network device for measuring the non-connected cell and the second measurement resource configuration configured by the network device for measuring the connected cell.

[0235] To summarize, in the resource configuration device provided in the embodiment of the present disclosure, the UE will report measurement capability information to the network device, and the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring the UE's non-connected cell, and second capability information, which can be used to indicate the measurement capability of the UE when measuring the UE's connected cell and non-connected cell at the same time. Afterwards, the UE will obtain the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0236] Optionally, in an embodiment of the present disclosure, the first capability information includes: a maximum number that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell.

[0237] Optionally, in an embodiment of the present disclosure, the second capability information includes: a maximum number of reference signals of the connected cell and the non-connected cell that can be supported by the UE when simultaneously measuring the reference signals.

[0238] Optionally, in one embodiment of the present disclosure, in response to the network device configuring the UE to simultaneously measure the connected cell and the non-connected cell, the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration;

[0239] The first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0240] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0241] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

[0242] Optionally, in one embodiment of the present disclosure, in response to the network device configuring the UE not to measure the connected cell and the non-connected cell simultaneously, a time domain resource corresponding to the first measurement resource configuration is different from a time domain resource corresponding to the second measurement resource configuration;

[0243] The first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0244] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

[0245] Figure 14 This is a schematic diagram of the structure of a resource configuration device provided by an embodiment of the present disclosure, such as Figure 14 As shown, the apparatus may include:

[0246] an acquisition module, configured to acquire measurement capability information reported by the UE, the measurement capability information including at least one of the following:

[0247] first capability information, used to indicate a measurement capability of the UE when measuring a non-connected cell of the UE;

[0248] The second capability information is used to indicate a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE;

[0249] The configuration module is configured to configure, for the UE, a first measurement resource configuration for measuring non-connected cells and a second measurement resource configuration for measuring connected cells.

[0250] To summarize, in the resource configuration device provided in the embodiment of the present disclosure, the UE will report measurement capability information to the network device, and the measurement capability information includes at least one of the following: first capability information, which can be used to indicate the measurement capability of the UE when measuring the UE's non-connected cell, and second capability information, which can be used to indicate the measurement capability of the UE when measuring the UE's connected cell and non-connected cell at the same time. Afterwards, the UE will obtain the first measurement resource configuration for measuring the non-connected cell and the second measurement resource configuration for measuring the connected cell configured by the network device. It can be seen from this that in the embodiments of the present disclosure, the UE will report the measurement capability of the UE's connected cell to the network device, and / or the UE will simultaneously measure the measurement capability of the connected cell and the non-connected cell. Afterwards, the network device can configure the measurement resource configuration to the UE based on the UE's measurement capability of the connected cell and / or the UE's measurement capability of the connected cell and the non-connected cell, so that the measurement resource configuration configured by the network device can match the measurement capability of the UE, avoiding the situation where "the measurement resource configuration configured by the network device to the UE is greater than the measurement capability of the UE, resulting in the UE being unable to perform measurement, resulting in resource waste, or the measurement resource configuration configured by the network device to the UE is less than the measurement capability of the UE, resulting in the UE being unable to obtain accurate measurement results", thereby achieving accurate configuration of measurement resources.

[0251] Optionally, in an embodiment of the present disclosure, the first capability information includes: a maximum number that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell.

[0252] Optionally, in an embodiment of the present disclosure, the second capability information includes: a maximum number of reference signals of the connected cell and the non-connected cell that can be supported by the UE when simultaneously measuring the reference signals.

[0253] Optionally, in one embodiment of the present disclosure, in response to the network device configuring the UE to simultaneously measure the connected cell and the non-connected cell, the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration;

[0254] The first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0255] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information;

[0256] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

[0257] Optionally, in one embodiment of the present disclosure, in response to the network device configuring the UE not to measure the connected cell and the non-connected cell simultaneously, a time domain resource corresponding to the first measurement resource configuration is different from a time domain resource corresponding to the second measurement resource configuration;

[0258] The first measurement resource configuration and the second measurement resource configuration meet the following conditions:

[0259] The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

[0260] Figure 15 1 is a block diagram of a user equipment UE 1500 provided by one embodiment of the present disclosure. For example, UE 1500 may be a mobile phone, a computer, a digital broadcast terminal device, a messaging device, a game console, a tablet device, a medical device, a fitness device, a personal digital assistant, etc.

[0261] Reference Figure 15 UE 1500 may include at least one of the following components: a processing component 1502 , a memory 1504 , a power component 1506 , a multimedia component 1508 , an audio component 1510 , an input / output (I / O) interface 1512 , a sensor component 1513 , and a communication component 1516 .

[0262] Processing component 1502 generally controls the overall operation of UE 1500, such as operations associated with display, phone calls, data communications, camera operation, and recording operations. Processing component 1502 may include at least one processor 1520 to execute instructions to perform all or part of the steps of the above-described method. In addition, processing component 1502 may include at least one module to facilitate interaction between processing component 1502 and other components. For example, processing component 1502 may include a multimedia module to facilitate interaction between multimedia component 1508 and processing component 1502.

[0263] The memory 1504 is configured to store various types of data to support the operation of the UE 1500. Examples of such data include instructions for any application or method operating on the UE 1500, contact data, phone book data, messages, pictures, videos, etc. The memory 1504 can be implemented by any type of volatile or non-volatile storage device, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic disk, or optical disk.

[0264] The power component 1506 provides power to various components of the UE 1500. The power component 1506 may include a power management system, at least one power supply, and other components associated with generating, managing, and distributing power to the UE 1500.

[0265] The multimedia component 1508 includes a screen that provides an output interface between the UE 1500 and the user. In some embodiments, the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touch screen to receive input signals from the user. The touch panel includes at least one touch sensor to sense touches, slides, and gestures on the touch panel. The touch sensor may not only sense the boundaries of a touch or slide action, but also detect the wake-up time and pressure associated with the touch or slide action. In some embodiments, the multimedia component 1508 includes a front camera and / or a rear camera. When the UE 1500 is in an operating mode, such as a shooting mode or a video mode, the front camera and / or the rear camera may receive external multimedia data. Each front camera and rear camera may be a fixed optical lens system or have focal length and optical zoom capabilities.

[0266] The audio component 1510 is configured to output and / or input audio signals. For example, the audio component 1510 includes a microphone (MIC) that is configured to receive external audio signals when the UE 1500 is in an operating mode, such as a call mode, a recording mode, and a voice recognition mode. The received audio signals may be further stored in the memory 1504 or transmitted via the communication component 1516. In some embodiments, the audio component 1510 further includes a speaker for outputting audio signals.

[0267] I / O interface 1512 provides an interface between processing component 1502 and peripheral interface modules, such as a keyboard, click wheel, buttons, etc. These buttons may include, but are not limited to, a home button, volume buttons, a start button, and a lock button.

[0268] Sensor assembly 1513 includes at least one sensor for providing various status assessments for UE 1500. For example, sensor assembly 1513 can detect the open / closed state of device 1500, the relative positioning of components, such as the display and keypad of UE 1500. Sensor assembly 1513 can also detect changes in the position of UE 1500 or a component of UE 1500, the presence or absence of user contact with UE 1500, the orientation or acceleration / deceleration of UE 1500, and changes in the temperature of UE 1500. Sensor assembly 1513 may include a proximity sensor configured to detect the presence of nearby objects without any physical contact. Sensor assembly 1513 may also include an optical sensor, such as a CMOS or CCD image sensor, for use in imaging applications. In some embodiments, sensor assembly 1513 may also include an accelerometer, a gyroscope, a magnetic sensor, a pressure sensor, or a temperature sensor.

[0269] The communication component 1516 is configured to facilitate wired or wireless communication between UE1500 and other devices. UE1500 can access a wireless network based on a communication standard, such as WiFi, 2G or 3G, or a combination thereof. In an exemplary embodiment, the communication component 1516 receives a broadcast signal or broadcast-related information from an external broadcast management system via a broadcast channel. In an exemplary embodiment, the communication component 1516 also includes a near field communication (NFC) module to facilitate short-range communication. For example, the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology and other technologies.

[0270] In an exemplary embodiment, UE 1500 may be implemented by at least one application-specific integrated circuit (ASIC), digital signal processor (DSP), digital signal processing device (DSPD), programmable logic device (PLD), field programmable gate array (FPGA), controller, microcontroller, microprocessor, or other electronic component to perform the above method.

[0271] Figure 16 1 is a block diagram of a network side device 1600 provided in an embodiment of the present disclosure. For example, the network side device 1600 may be provided as a network side device. Figure 16The network side device 1600 includes a processing component 1611, which further includes at least one processor, and a memory resource represented by a memory 1632 for storing instructions that can be executed by the processing component 1622, such as an application. The application stored in the memory 1632 may include one or more modules, each corresponding to a set of instructions. In addition, the processing component 1610 is configured to execute instructions to perform any of the aforementioned methods applied to the network side device, such as Figure 1 The method shown.

[0272] The network side device 1600 may further include a power supply component 1626 configured to perform power management of the network side device 1600, a wired or wireless network interface 1650 configured to connect the network side device 1600 to a network, and an input / output (I / O) interface 1658. The network side device 1600 may operate based on an operating system stored in the memory 1632, such as Windows Server™, Mac OS X™, Unix™, Linux™, Free BSD™, or the like.

[0273] In the embodiments provided above, the methods provided in the embodiments of the present disclosure are described from the perspectives of the network-side device and the UE. To implement the various functions in the methods provided in the embodiments of the present disclosure, the network-side device and the UE may include hardware structures and software modules, and implement the aforementioned functions in the form of hardware structures, software modules, or hardware structures and software modules. Certain of the aforementioned functions may be implemented in the form of hardware structures, software modules, or hardware structures and software modules.

[0274] In the embodiments provided above, the methods provided in the embodiments of the present disclosure are described from the perspectives of the network-side device and the UE. To implement the various functions in the methods provided in the embodiments of the present disclosure, the network-side device and the UE may include hardware structures and software modules, and implement the aforementioned functions in the form of hardware structures, software modules, or hardware structures and software modules. Certain of the aforementioned functions may be implemented in the form of hardware structures, software modules, or hardware structures and software modules.

[0275] Embodiments of the present disclosure provide a communication device. The communication device may include a transceiver module and a processing module. The transceiver module may include a sending module and / or a receiving module. The sending module is configured to implement a sending function, and the receiving module is configured to implement a receiving function. The transceiver module may implement both the sending function and / or the receiving function.

[0276] The communication device may be a terminal device (such as the terminal device in the aforementioned method embodiment), or a device in a terminal device, or a device that can be used in conjunction with a terminal device. Alternatively, the communication device may be a network device, or a device in a network device, or a device that can be used in conjunction with a network device.

[0277] Another communication device provided in an embodiment of the present disclosure. The communication device can be a network device, a terminal device (such as the terminal device in the aforementioned method embodiment), a chip, a chip system, or a processor that supports the network device to implement the aforementioned method, or a chip, a chip system, or a processor that supports the terminal device to implement the aforementioned method. This device can be used to implement the method described in the aforementioned method embodiment. For details, please refer to the description of the aforementioned method embodiment.

[0278] The communication device may include one or more processors. The processor may be a general-purpose processor or a dedicated processor. For example, it may be a baseband processor or a central processing unit. The baseband processor may be used to process communication protocols and communication data, and the central processing unit may be used to control the communication device (e.g., network-side equipment, baseband chips, terminal equipment, terminal equipment chips, DU or CU, etc.), execute computer programs, and process computer program data.

[0279] Optionally, the communication device may further include one or more memories, on which a computer program may be stored. The processor executes the computer program to cause the communication device to perform the method described in the above method embodiment. Optionally, the memory may also store data. The communication device and memory may be provided separately or integrated.

[0280] Optionally, the communication device may further include a transceiver and an antenna. A transceiver may be referred to as a transceiver unit, a transceiver, or a transceiver circuit, and is used to implement transceiver functions. A transceiver may include a receiver and a transmitter. The receiver may be referred to as a receiver or a receiving circuit, and is used to implement a receiving function; the transmitter may be referred to as a transmitter or a transmitting circuit, and is used to implement a transmitting function.

[0281] Optionally, the communication device may further include one or more interface circuits. The interface circuits are configured to receive code instructions and transmit them to the processor. The processor executes the code instructions to enable the communication device to execute the method described in the above method embodiment.

[0282] In one implementation, the processor may include a transceiver for implementing receiving and transmitting functions. For example, the transceiver may be a transceiver circuit, an interface, or an interface circuit. The transceiver circuit, interface, or interface circuit for implementing the receiving and transmitting functions may be separate or integrated. The transceiver circuit, interface, or interface circuit may be used for reading and writing code / data, or may be used for transmitting or delivering signals.

[0283] In one implementation, the processor may store a computer program that runs on the processor and enables the communication device to perform the method described in the above method embodiment. The computer program may be fixed in the processor, in which case the processor may be implemented by hardware.

[0284] In one implementation, the communication device may include a circuit that can implement the functions of sending, receiving, or communicating in the aforementioned method embodiments. The processor and transceiver described in the present disclosure can be implemented on an integrated circuit (IC), an analog IC, a radio frequency integrated circuit RFIC, a mixed signal IC, an application specific integrated circuit (ASIC), a printed circuit board (PCB), an electronic device, etc. The processor and transceiver can also be manufactured using various IC process technologies, such as complementary metal oxide semiconductor (CMOS), N-type metal oxide semiconductor (nMetal-oxide-semiconductor, NMOS), P-type metal oxide semiconductor (positive channel metal oxide semiconductor, PMOS), bipolar junction transistor (bipolar junction transistor, BJT), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaAs), etc.

[0285] The communication device described in the above embodiments may be a network device or a terminal device (such as the terminal device in the aforementioned method embodiment), but the scope of the communication device described in this disclosure is not limited thereto, and the structure of the communication device may not be limited thereto. The communication device may be an independent device or may be part of a larger device. For example, the communication device may be:

[0286] (1) An independent integrated circuit (IC), or chip, or chip system or subsystem;

[0287] (2) a collection of one or more ICs, optionally including a storage component for storing data and computer programs;

[0288] (3) ASIC, such as modem;

[0289] (4) Modules that can be embedded in other devices;

[0290] (5) Receivers, terminal devices, intelligent terminal devices, cellular phones, wireless devices, handheld devices, mobile units, vehicle-mounted devices, network devices, cloud devices, artificial intelligence devices, etc.;

[0291] (6)Others, etc.

[0292] In the case where the communication device can be a chip or a chip system, the chip includes a processor and an interface. The number of processors can be one or more, and the number of interfaces can be multiple.

[0293] Optionally, the chip also includes a memory for storing necessary computer programs and data.

[0294] Those skilled in the art will also appreciate that the various illustrative logical blocks and steps listed in the embodiments of the present disclosure may be implemented by electronic hardware, computer software, or a combination of both. Whether such functionality is implemented by hardware or software depends on the specific application and the design requirements of the entire system. Those skilled in the art may use various methods to implement the described functionality for each specific application, but such implementation should not be construed as exceeding the scope of protection of the embodiments of the present disclosure.

[0295] The present disclosure also provides a readable storage medium having instructions stored thereon, which implement the functions of any of the above method embodiments when executed by a computer.

[0296] The present disclosure also provides a computer program product, which implements the functions of any of the above method embodiments when executed by a computer.

[0297] In the above embodiments, all or part of the embodiments can be implemented by software, hardware, firmware or any combination thereof. When implemented using software, all or part of the embodiments can be implemented in the form of a computer program product. The computer program product includes one or more computer programs. When the computer program is loaded and executed on a computer, all or part of the processes or functions described in the embodiments of the present disclosure are generated. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer program can be stored in a computer-readable storage medium or transmitted from one computer-readable storage medium to another computer-readable storage medium. For example, the computer program can be transmitted from one website, computer, server or data center to another website, computer, server or data center via a wired (e.g., coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (e.g., infrared, wireless, microwave, etc.) method. The computer-readable storage medium can be any available medium that can be accessed by a computer or a data storage device such as a server or data center that includes one or more available media integrated therein. The available medium may be a magnetic medium (eg, a floppy disk, a hard disk, a magnetic tape), an optical medium (eg, a high-density digital video disc (DVD)), or a semiconductor medium (eg, a solid state disk (SSD)).

[0298] Those skilled in the art will understand that the various numerical numbers such as first and second involved in the present disclosure are only for the convenience of description and are not used to limit the scope of the embodiments of the present disclosure, and also indicate the order of precedence.

[0299] The at least one in the present disclosure can also be described as one or more, and the multiple can be two, three, four or more, which is not limited in the present disclosure. In the embodiments of the present disclosure, for a technical feature, the technical features in the technical feature are distinguished by "first", "second", "third", "A", "B", "C" and "D", and there is no order of precedence or size between the technical features described by "first", "second", "third", "A", "B", "C" and "D".

[0300] Other embodiments of the present invention will readily occur to those skilled in the art after considering the specification and practicing the invention disclosed herein. This disclosure is intended to cover any variations, uses, or adaptations of the invention that follow the general principles of the invention and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, with the true scope and spirit of the present disclosure being indicated by the following claims.

[0301] It should be understood that the present disclosure is not limited to the exact structures that have been described above and shown in the drawings, and that various modifications and changes can be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.

Claims

1. A resource configuration method, characterized in that: The method is executed by a user equipment UE, and includes: Report measurement capability information to the network device, where the measurement capability information includes at least one of the following: first capability information, used to indicate a measurement capability of the UE when measuring a non-connected cell of the UE; The second capability information is used to indicate a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE; Acquire a first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell configured by the network device; The first capability information includes: a maximum number of reference signals of the non-connected cell that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell; the second capability information includes: a maximum number of reference signals of the connected cell and the non-connected cell that the UE can support when simultaneously measuring; In response to the network device configuring the UE to simultaneously measure the connected cell and the non-connected cell, the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration; The first measurement resource configuration and the second measurement resource configuration meet the following conditions: The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information; The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

2. The method according to claim 1, wherein Reporting the measurement capability information to the network device includes: The measurement capability information is reported to the network device through radio resource control (RRC) signaling.

3. The method according to claim 1, wherein In response to the network device configuring the UE not to measure the connected cell and the non-connected cell simultaneously, the time domain resources corresponding to the first measurement resource configuration are different from the time domain resources corresponding to the second measurement resource configuration; The first measurement resource configuration and the second measurement resource configuration meet the following conditions: The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

4. A resource allocation method, characterized in that: Executed by a network device, the method includes: Obtain measurement capability information reported by the UE, where the measurement capability information includes at least one of the following: first capability information, used to indicate a measurement capability of the UE when measuring a non-connected cell of the UE; The second capability information is used to indicate a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE; configuring, for the UE, a first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell; The first capability information includes: a maximum number of reference signals of the non-connected cell that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell; the second capability information includes: a maximum number of reference signals of the connected cell and the non-connected cell that the UE can support when simultaneously measuring; In response to the network device configuring the UE to simultaneously measure the connected cell and the non-connected cell, the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration; The first measurement resource configuration and the second measurement resource configuration meet the following conditions: The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information; The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

5. The method according to claim 4, wherein The obtaining of the measurement capability information reported by the UE includes: Acquire measurement capability information reported by the UE through RRC signaling.

6. The method according to claim 4, wherein In response to the network device configuring the UE not to measure the connected cell and the non-connected cell simultaneously, the time domain resources corresponding to the first measurement resource configuration are different from the time domain resources corresponding to the second measurement resource configuration; The first measurement resource configuration and the second measurement resource configuration meet the following conditions: The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information.

7. A resource allocation device, characterized in that: include: A reporting module is configured to report measurement capability information to the network device, wherein the measurement capability information includes at least one of the following: First capability information, used to indicate a measurement capability of the UE when measuring a non-connected cell of the UE; The second capability information is used to indicate a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE; an acquisition module, configured to acquire a first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell, configured by the network device; The first capability information includes: a maximum number of reference signals of the non-connected cell that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell; the second capability information includes: a maximum number of reference signals of the connected cell and the non-connected cell that the UE can support when simultaneously measuring; In response to the network device configuring the UE to simultaneously measure the connected cell and the non-connected cell, the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration; The first measurement resource configuration and the second measurement resource configuration meet the following conditions: The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information; The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

8. A resource allocation device, characterized in that: include: an acquisition module, configured to acquire measurement capability information reported by the UE, the measurement capability information including at least one of the following: first capability information, used to indicate a measurement capability of the UE when measuring a non-connected cell of the UE; The second capability information is used to indicate a measurement capability of the UE when simultaneously measuring a connected cell and a non-connected cell of the UE; a configuration module, configured to configure, for the UE, a first measurement resource configuration for measuring a non-connected cell and a second measurement resource configuration for measuring a connected cell; The first capability information includes: a maximum number of reference signals of the non-connected cell that the UE can support when simultaneously measuring multiple reference signals of the non-connected cell; the second capability information includes: a maximum number of reference signals of the connected cell and the non-connected cell that the UE can support when simultaneously measuring; In which, in response to the network device configuring the UE to simultaneously measure the connected cell and the non-connected cell, the time domain resources corresponding to the first measurement resource configuration are the same as the time domain resources corresponding to the second measurement resource configuration; The first measurement resource configuration and the second measurement resource configuration meet the following conditions: The number of resources occupied by the reference signals to be measured in the first measurement resource configuration is less than or equal to the maximum number in the first capability information; The number of resources occupied by the reference signals to be measured in the first measurement resource configuration and the second measurement resource configuration is less than or equal to the maximum number in the second capability information.

9. A communication device, characterized in that: The device includes a processor and a memory, wherein a computer program is stored in the memory, and the processor executes the computer program stored in the memory to enable the device to perform the method according to any one of claims 1 to 3.

10. A communication device, characterized in that: The device includes a processor and a memory, wherein a computer program is stored in the memory, and the processor executes the computer program stored in the memory to enable the device to perform the method according to any one of claims 4 to 6.

11. A communication device, characterized in that: include: processor and interface circuitry, wherein The interface circuit is used to receive code instructions and transmit them to the processor; The processor is configured to run the code instructions to perform the method according to any one of claims 1 to 3.

12. A communication device, characterized in that: include: processor and interface circuitry, wherein The interface circuit is used to receive code instructions and transmit them to the processor; The processor is configured to run the code instructions to perform the method according to any one of claims 4 to 6.

13. A computer-readable storage medium storing instructions, which, when executed, enable the method according to any one of claims 1 to 3 to be implemented.

14. A computer-readable storage medium storing instructions, which, when executed, enable the method according to any one of claims 4 to 6 to be implemented.

Citation Information

Patent Citations

  • Channel state information-reference signal based measurement

    US20220046443A1