WO2021057121A1 - Ue处理能力的指示方法、装置、电子设备及存储介质 - Google Patents

Ue处理能力的指示方法、装置、电子设备及存储介质 Download PDF

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Publication number
WO2021057121A1
WO2021057121A1 PCT/CN2020/097129 CN2020097129W WO2021057121A1 WO 2021057121 A1 WO2021057121 A1 WO 2021057121A1 CN 2020097129 W CN2020097129 W CN 2020097129W WO 2021057121 A1 WO2021057121 A1 WO 2021057121A1
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processing capability
indication information
codebook
measurement
resources
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PCT/CN2020/097129
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English (en)
French (fr)
Inventor
李辉
高秋彬
刘正宣
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大唐移动通信设备有限公司
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Publication of WO2021057121A1 publication Critical patent/WO2021057121A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0091Signaling for the administration of the divided path
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/54Allocation or scheduling criteria for wireless resources based on quality criteria
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/54Allocation or scheduling criteria for wireless resources based on quality criteria
    • H04W72/542Allocation or scheduling criteria for wireless resources based on quality criteria using measured or perceived quality

Definitions

  • This application relates to the field of wireless communication technologies, and in particular to a method, device, electronic device, and storage medium for indicating UE processing capabilities.
  • Rel-15 defines Type I single-panel (panel) codebook, Type I multi-panel (panel) codebook, Type II codebook and Type II port selection codebook.
  • Rel-16 has added a low-overhead Type II codebook and a low-overhead Type II port selection codebook.
  • UE User Equipment
  • gNB base station
  • the processing capability of the UE is defined for each codebook type, and is indicated to the base station through signaling.
  • the signaling indicates the capability of the UE when the UE processes only one codebook type.
  • the base station may require the UE to process different types of codebooks at the same time, for example, simultaneous feedback of Type II codebook type and Type I single-array codebook type feedback.
  • Rel-15 also supports the UE to report the total maximum number of CSI-RS resources S supported by the UE, and this signaling does not distinguish codebook types.
  • the embodiments of the present application provide a method, device, electronic device, and storage medium for indicating the processing capability of the UE, which can realize the effective utilization of the processing capability of the UE.
  • an embodiment of the present application provides a method for indicating UE processing capabilities, including:
  • the number of auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE;
  • the UE processing capability indication information includes the first maximum measurement resource information and the auxiliary indication information, so that the network side can provide the UE processing capability indication information as the The UE configures measurement resources within the processing capability.
  • the auxiliary indication information includes: a combination of measurement resources corresponding to each codebook type under multiple codebook types, the combination being a combination not supported by the UE, and/or the combination being the The combination supported by the UE. Still further, the auxiliary indication information further includes: the maximum number of measurement resources that are supported by the UE regardless of the codebook type.
  • the auxiliary indication information includes second maximum measurement resource information and a total number of measurement resources that are supported by the UE irrespective of the codebook type, and when the second maximum measurement resource information is to configure a multiple codebook type, The maximum number of measurement resources respectively corresponding to each codebook type supported by the UE.
  • the maximum number of measurement resources includes one or more of the following information: the maximum number of CSI-RS resources, the maximum number of ports for each CSI-RS resource, and the total number of ports.
  • embodiments of the present application provide another method for indicating UE processing capabilities, including:
  • the UE processing capability indication information includes first maximum measurement resource information and auxiliary indication information.
  • first maximum measurement resource information is that only a single codebook type is configured
  • the UE supports The maximum number of measurement resources corresponding to each of the single codebook types
  • the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE;
  • the auxiliary indication information includes: a combination of measurement resources corresponding to each codebook type under multiple codebook types, the combination being a combination not supported by the UE, and/or the combination being the The combination supported by the UE;
  • the configuring measurement resources within the processing capability range for the UE according to the UE processing capability indication information includes:
  • Configure measurement resources within the processing capability range for the UE according to the following configuration conditions; the configuration conditions include:
  • the number of measurement resources configured for the single codebook type is not greater than the maximum number of measurement resources corresponding to the single codebook type
  • the UE is configured with measurement resources within the processing capability range.
  • the auxiliary indication information further includes: the maximum number of measurement resources that are supported by the UE regardless of the codebook type;
  • the configuring measurement resources within the processing capability range for the UE according to the UE processing capability indication information further includes:
  • Configure measurement resources within the processing capability range for the UE according to the following configuration conditions; the configuration conditions include:
  • the number of measurement resources configured for each codebook type is not greater than the maximum number of measurement resources corresponding to each single codebook type, and is the number of measurement resources configured for each codebook type The sum is not greater than the total number of measurement resources that are supported by the UE regardless of the codebook type.
  • the auxiliary indication information includes second maximum measurement resource information and a total number of measurement resources that are supported by the UE irrespective of the codebook type, and when the second maximum measurement resource information is to configure a multiple codebook type, The maximum number of measurement resources respectively corresponding to each codebook type supported by the UE;
  • the configuring measurement resources within the processing capability range for the UE according to the UE processing capability indication information includes:
  • Configure measurement resources within the processing capability range for the UE according to the following configuration conditions; the configuration conditions include:
  • the number of measurement resources configured for the single codebook type is not greater than the maximum number of measurement resources corresponding to the single codebook type
  • the number of measurement resources configured for each codebook type is not greater than the maximum number of measurement resources corresponding to each codebook type, and is the sum of the number of measurement resources configured for each codebook type It is not greater than the total number of measurement resources that are supported by the UE regardless of the codebook type.
  • the maximum number of measurement resources includes one or more of the following information: the maximum number of CSI-RS resources, the maximum number of ports for each CSI-RS resource, and the total number of ports.
  • an embodiment of the present application provides a UE processing capability indicating device, including:
  • the determining module is configured to determine first maximum measurement resource information and auxiliary indication information corresponding to the UE, where the first maximum measurement resource information is that when only a single codebook type is configured, the UE supports the same as each single codebook type Corresponding maximum number of measurement resources, the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE;
  • the reporting module is configured to report UE processing capability indication information to the network side, where the UE processing capability indication information includes the first maximum measurement resource information and the auxiliary indication information for the network side according to the UE processing capability
  • the indication information configures measurement resources within the processing capability range for the UE.
  • an embodiment of the present application provides another UE processing capability indicating device, including:
  • the receiving module is configured to receive UE processing capability indication information reported by the UE, where the UE processing capability indication information includes first maximum measurement resource information and auxiliary indication information, and the first maximum measurement resource information is when only a single codebook type is configured , The maximum number of measurement resources corresponding to each of the single codebook types supported by the UE, and the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE;
  • the configuration module is configured to configure measurement resources within the processing capability range for the UE according to the UE processing capability indication information.
  • an embodiment of the present application provides an electronic device, including a memory, a processor, and a computer program stored in the memory and capable of running on the processor.
  • the processor executes the program, it implements the or The steps of the method provided in the second aspect.
  • the embodiments of the present application provide a non-transitory computer-readable storage medium on which a computer program is stored, and when the computer program is executed by a processor, the steps of the method provided in the first aspect or the second aspect are implemented.
  • the UE processing capability indication information reported by the UE includes the first maximum measurement resource information and other auxiliary indication information, so that the base station can learn the UE’s Actual processing capabilities, and configure measurement resources within the processing capabilities of the UE for the UE, avoid the configured resources including codebook type combinations that the UE does not support, and effectively improve the processing capabilities of the UE.
  • FIG. 1 is a schematic flowchart of a method for indicating UE processing capabilities provided by an embodiment of this application;
  • FIG. 2 is a schematic flowchart of a method for indicating UE processing capabilities provided by another embodiment of this application;
  • FIG. 3 is a schematic structural diagram of a device for indicating UE processing capabilities provided by an embodiment of this application;
  • FIG. 4 is a schematic diagram of the structure of an electronic device provided by an embodiment of the application.
  • FIG. 5 is a schematic structural diagram of a device for indicating UE processing capabilities according to another embodiment of this application.
  • FIG. 6 is a schematic structural diagram of an electronic device provided by another embodiment of this application.
  • NR Rel-15 defines four codebook types, including Type I single-panel codebook, Type I multi-panel codebook, Type II codebook, and Type II port selection codebook. Since the processing capabilities of different UEs are different, when the base station configures channel measurement resources for the UE, it needs to ensure that it is within the processing range of the UE, otherwise the UE cannot perform measurement feedback according to the requirements of the base station.
  • These signalings indicate the capabilities that the UE has when only processing one codebook type.
  • the base station may require the UE to process different types of codebooks at the same time, for example, simultaneous feedback of Type II codebook type and Type I single-array codebook type feedback.
  • Rel-15 also supports the UE to report the total maximum number of CSI-RS resources S supported by the UE, and this signaling does not distinguish codebook types.
  • the base station can configure 7 CSI-RS resources for the Type I single-array codebook, and the number of CSI-RS resources for the Type II codebook. 3 CSI-RS resources. And the number of resources for each codebook type does not exceed A1 and A3 respectively.
  • A1 to A4 do not correspond to the real UE processing capabilities. This problem became more prominent after the Rel-16 Type II codebook type was added. Therefore, the reporting of UE processing capabilities defined in Rel-15 cannot guarantee the effective use of UE processing capabilities.
  • each embodiment of the present application provides a solution, that is, in the reported UE processing capability signaling, not only the UE supports the same type of codebook when only a single codebook type is configured.
  • the maximum number of measurement resources corresponding to a single codebook type may also include auxiliary indication information for assisting in indicating the actual processing capability of the UE, so as to realize effective utilization of the processing capability of the UE.
  • Fig. 1 is a schematic flowchart of a method for indicating UE processing capabilities provided by an embodiment of the application. As shown in Fig. 1, the method includes the following steps:
  • Step 100 Determine the first maximum measurement resource information and auxiliary indication information corresponding to the UE, where the first maximum measurement resource information is that when only a single codebook type is configured, the UE supports the information corresponding to each single codebook type
  • the maximum number of measurement resources, the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE;
  • the relevant information includes not only the first maximum measurement resource information, but also other auxiliary indication information.
  • These signalings indicate the capabilities that the UE has when only processing one codebook type.
  • the auxiliary indication information is information specifically used to assist in indicating the actual processing capabilities of the UE, that is, while reporting the first maximum measurement resource information, by simultaneously reporting the auxiliary indication information, the base station can combine the first maximum measurement resource information and the auxiliary indication information,
  • the UE is configured with measurement resources within the processing capability of the UE to avoid the configured resources including codebook type combinations that the UE does not support, and it can also effectively improve the processing capability of the UE.
  • Step 101 Report UE processing capability indication information to the network side, where the UE processing capability indication information includes the first maximum measurement resource information and the auxiliary indication information, so that the network side can use the UE processing capability indication information Configure measurement resources within the processing capability range for the UE.
  • the UE may report the UE processing capability indication information to the network side, such as a base station, where the UE processing capability indication information may carry the first maximum measurement resource information and auxiliary indication information.
  • the first maximum measurement resource information and the auxiliary indication information may be encapsulated in the capability signaling, and sent to the base station through an existing capability reporting channel.
  • the base station After receiving the UE processing capability indication information reported by the UE, the base station can comprehensively consider the configuration of measurement resources within its processing capability for the UE according to the first maximum measurement resource information and auxiliary indication information carried in the UE processing capability indication information .
  • the report UE processing capability indication information reported by the UE includes the first maximum measurement resource information and other auxiliary indication information, so that the base station can learn the actual processing capability of the UE and provide the UE Configure the measurement resources within the processing capability of the UE to avoid the configured resources including the codebook type combination that the UE does not support, and effectively improve the processing capability of the UE.
  • the auxiliary indication information included in the UE processing capability indication information is used to assist in indicating the actual processing capability of the UE. Therefore, any information that can serve as an auxiliary indication may be used.
  • the following is an introduction to the auxiliary indication information in combination with several examples.
  • the auxiliary indication information includes: a combination of measurement resources corresponding to each codebook type under multiple codebook types, the combination being a combination not supported by the UE, and/or the combination being the The combination supported by the UE.
  • the UE separately reports the first maximum measurement resource information corresponding to this codebook type for N codebook types, and also simultaneously reports the combination of measurement resources corresponding to each codebook type under multiple codebook types.
  • the combination may be a combination not supported by the UE, the combination may also be a combination supported by the UE, and the combination may also include a combination not supported by the UE and a supported combination at the same time.
  • the number of measurement resources corresponding to each codebook type is restricted by the first maximum measurement resource information Ai, that is, each codebook
  • the number of measurement resources corresponding to each type is smaller than the corresponding Ai; in the combination of measurement resources supported by the UE carried in the auxiliary information, the measurement resources corresponding to each codebook type may not be subject to the first maximum measurement
  • the resource information Ai is restricted, that is, the number of measurement resources corresponding to some codebook types can be larger than the corresponding Ai.
  • the base station When the base station receives the UE processing capability indication information that carries the above-mentioned auxiliary indication information, it may configure the number of resources corresponding to a single codebook for the UE based on the first maximum measured resource information, and may also configure the number of resources corresponding to a single codebook based on the carried multiple codebook types.
  • the combination of measurement resources corresponding to each codebook type configures measurement resources for multiple codebooks.
  • the combination of measurement resources corresponding to each codebook type under multiple codebook types includes at least one set of codebook type combinations supported by the UE. In this case, the base station may configure corresponding measurement resources for the UE based on the combination.
  • Example 2 While the auxiliary indication information includes a combination of measurement resources corresponding to each codebook type under multiple codebook types, it may also include the maximum number of measurement resources S supported by the UE regardless of the codebook type.
  • the base station When the base station receives the UE processing capability indication information that carries the above-mentioned auxiliary indication information, it can configure the number of resources corresponding to a single codebook for the UE based on the first maximum measured resource information, and it can also be based on the multiple codebook types carried.
  • the combination of measurement resources corresponding to each codebook type and the maximum number of measurement resources S supported by the UE irrespective of the codebook type are used to configure measurement resources for multiple codebooks.
  • the combination of measurement resources corresponding to each codebook type under multiple codebook types includes at least one set of codebook type combinations supported by the UE. In this case, the base station may configure corresponding measurement resources for the UE based on the combination.
  • the base station can configure channel state information measurement resources for the UE according to the constraints of S and Ai (the maximum resource corresponding to the corresponding codebook type), and the base station will correspond to each codebook type based on multiple unsupported codebook types.
  • the combination of measurement resources is avoided to avoid configuring a combination of measurement resources that the UE does not support.
  • the base station may also configure channel state information measurement resources for the UE according to the constraints of S and Ai (the maximum resource corresponding to the corresponding codebook type).
  • the auxiliary indication information may include: second maximum measurement resource information, and the total number of measurement resources that are supported by the UE irrespective of the codebook type, and the second maximum measurement resource information is the configuration of multiple codebooks In the case of the type, the maximum number of measurement resources respectively corresponding to each codebook type supported by the UE.
  • the second maximum measurement resource information is the maximum number of measurement resources respectively corresponding to each codebook type supported by the UE when multiple codebook types need to be configured for the UE.
  • B3 2 (Rel-16 Type II) Codebook) CSI
  • the base station When the base station receives the UE processing capability indication information carrying the above-mentioned auxiliary indication information, it may configure the number of resources corresponding to the single codebook for the UE based on the first maximum measurement resource information; it may also be based on the second maximum measurement resource information and The maximum number of measurement resources S that is not related to the codebook type supported by the UE is used to configure measurement resources for multiple codebooks. For example, the base station may configure channel state information measurement resources for the UE according to the constraints of S and Bi.
  • FIG. 2 is a schematic flowchart of a method for indicating UE processing capabilities according to another embodiment of the application. As shown in FIG. 2, the method includes the following steps:
  • Step 200 Receive UE processing capability indication information reported by the UE.
  • the UE processing capability indication information includes first maximum measurement resource information and auxiliary indication information.
  • the first maximum measurement resource information The maximum number of measurement resources corresponding to each of the single codebook types supported by the UE, and the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE;
  • the UE Before the UE reports the processing capability of the UE, it must first determine the relevant information that can indicate the actual processing capability of the UE to the base station.
  • the relevant information includes not only the first maximum measurement resource information, but also other auxiliary indication information. After the maximum measurement resource information and the auxiliary indication information, the UE processing capability indication information can be reported to the network side, such as the base station.
  • the first maximum measurement resource information is the maximum number of measurement resources corresponding to each single codebook type supported by the UE when only a single codebook type is configured.
  • the foregoing method embodiment please refer to the foregoing method embodiment, which will not be repeated here.
  • the auxiliary indication information is information specifically used to assist in indicating the actual processing capabilities of the UE, that is, while reporting the first maximum measurement resource information, by simultaneously reporting the auxiliary indication information, the base station can combine the first maximum measurement resource information and the auxiliary indication information,
  • the UE is configured with measurement resources within the processing capability of the UE to avoid the configured resources including codebook type combinations that the UE does not support, and it can also effectively improve the processing capability of the UE.
  • Step 201 Configure measurement resources within the processing capability range for the UE according to the UE processing capability indication information.
  • the base station After receiving the UE processing capability indication information reported by the UE, the base station can comprehensively consider the configuration of measurement resources within its processing capability for the UE according to the first maximum measurement resource information and auxiliary indication information carried in the UE processing capability indication information , Used for UE channel measurement and feedback.
  • the report UE processing capability indication information reported by the UE includes the first maximum measurement resource information and other auxiliary indication information, so that the base station can learn the actual processing capability of the UE and provide the UE Configure the measurement resources within the processing capability of the UE to avoid the configured resources including the codebook type combination that the UE does not support, and effectively improve the processing capability of the UE.
  • the auxiliary indication information included in the UE processing capability indication information is used to assist in indicating the actual processing capability of the UE. Therefore, any information that can serve as an auxiliary indication may be used.
  • the following describes the auxiliary indication information and how the base station uses the auxiliary information to configure the measurement resources in combination with several examples.
  • the auxiliary indication information includes: a combination of measurement resources corresponding to each codebook type under multiple codebook types, the combination being a combination not supported by the UE, and/or the combination being the The combination supported by the UE.
  • the UE separately reports the first maximum measurement resource information corresponding to this codebook type for N codebook types, and also simultaneously reports the combination of measurement resources corresponding to each codebook type under multiple codebook types.
  • the combination may be a combination not supported by the UE, the combination may also be a combination supported by the UE, and the combination may also include a combination not supported by the UE and a supported combination at the same time.
  • the base station configuring measurement resources within the processing capability range for the UE according to the UE processing capability indication information includes:
  • Configure measurement resources within the processing capability range for the UE according to the following configuration conditions; the configuration conditions include:
  • the number of measurement resources configured for the single codebook type is not greater than the maximum number of measurement resources corresponding to the single codebook type.
  • the UE is configured with measurement resources within the processing capability range.
  • the base station when it receives the UE processing capability indication information that carries the above-mentioned auxiliary indication information, it may configure the number of resources corresponding to a single codebook for the UE based on the first maximum measurement resource information, or may also be based on the number of resources carried in a single codebook.
  • the combination of measurement resources corresponding to each codebook type under the codebook type configures measurement resources for multiple codebooks.
  • the combination of measurement resources corresponding to each codebook type under multiple codebook types includes at least one set of codebook type combinations supported by the UE. In this case, the base station may configure corresponding measurement resources for the UE based on the combination.
  • Example 2 While the auxiliary indication information includes a combination of measurement resources corresponding to each codebook type under multiple codebook types, it may also include the maximum number of measurement resources S supported by the UE regardless of the codebook type.
  • the base station configuring measurement resources within the processing capability range for the UE according to the UE processing capability indication information includes:
  • Configure measurement resources within the processing capability range for the UE according to the following configuration conditions; the configuration conditions include:
  • the number of measurement resources configured for each codebook type is not greater than the maximum number of measurement resources corresponding to each single codebook type, and is the number of measurement resources configured for each codebook type The sum is not greater than the total number of measurement resources that are supported by the UE regardless of the codebook type.
  • the base station when it receives the UE processing capability indication information that carries the above-mentioned auxiliary indication information, it may configure the number of resources corresponding to a single codebook for the UE based on the first maximum measurement resource information, or may also be based on the number of resources carried in a single codebook.
  • the combination of measurement resources corresponding to each codebook type under the codebook type and the maximum number of measurement resources S supported by the UE irrespective of the codebook type are used to configure measurement resources for multiple codebooks.
  • the combination of measurement resources corresponding to each codebook type under multiple codebook types includes at least one set of codebook type combinations supported by the UE. In this case, the base station may configure corresponding measurement resources for the UE based on the combination.
  • the base station can configure channel state information measurement resources for the UE according to the constraints of S and Ai (corresponding to the maximum resource corresponding to each single codebook type), and at the same time, the base station will configure each codebook based on multiple unsupported codebook types.
  • the combination of measurement resources corresponding to the type avoids configuring a combination of measurement resources that the UE does not support.
  • the base station may also configure channel state information measurement resources for the UE according to the constraints of S and Ai (the maximum resource corresponding to the corresponding codebook type).
  • the above-mentioned constraint condition may be that the number of measurement resources configured for each codebook type is not greater than the maximum number of measurement resources Ai corresponding to each single codebook type, and it is the number of measurement resources configured for each codebook type. The sum of the numbers is not greater than S.
  • the auxiliary indication information may include: second maximum measurement resource information, and the total number of measurement resources that are supported by the UE irrespective of the codebook type, and the second maximum measurement resource information is the configuration of multiple codebooks In the case of the type, the maximum number of measurement resources respectively corresponding to each codebook type supported by the UE.
  • the second maximum measurement resource information is the maximum number of measurement resources respectively corresponding to each codebook type supported by the UE when multiple codebook types need to be configured for the UE.
  • B3 2 (Rel-16 Type II) Codebook) CSI
  • the base station configuring measurement resources within the processing capability range for the UE according to the UE processing capability indication information includes:
  • Configure measurement resources within the processing capability range for the UE according to the following configuration conditions; the configuration conditions include:
  • the number of measurement resources configured for the single codebook type is not greater than the maximum number of measurement resources corresponding to the single codebook type.
  • the number of measurement resources configured for each codebook type is not greater than the maximum number of measurement resources corresponding to each codebook type, and is the sum of the number of measurement resources configured for each codebook type It is not greater than the total number of measurement resources that are supported by the UE regardless of the codebook type.
  • the base station when it receives the UE processing capability indication information carrying the above-mentioned auxiliary indication information, it may configure the number of resources corresponding to a single codebook for the UE based on the first maximum measurement resource information; it may also be based on the second maximum measurement resource information.
  • the resource information and the maximum number of measurement resources S supported by the UE irrespective of the codebook type are used to configure measurement resources for multiple codebooks.
  • the base station may configure channel state information measurement resources for the UE according to the constraints of S and Bi.
  • the constraint condition can be that the number of measurement resources configured for each codebook type is not greater than the maximum number of measurement resources Bi corresponding to each codebook type, and the sum of the number of measurement resources configured for each codebook type is not greater than S.
  • the maximum number of measurement resources involved in the maximum number of measurement resources respectively corresponding to each codebook type supported by the UE may include one or more of the following information: the maximum number of CSI-RS resources, each The maximum number of ports and the total number of ports for each CSI-RS resource.
  • the following describes how the UE reports the UE processing capability indication information and how the base station performs measurement resource configuration based on the UE processing capability indication information in conjunction with several embodiments.
  • combination 2 means that 4 CSI-RS resources are configured for Type I codebook, 2 CSI-RS resources are configured for Rel-15 Type II codebook, and 2 CSI-RS resources are configured for Rel-16 Type II codebook. .
  • the base station configures channel state information measurement resources for the UE according to the constraints of S and A1, A2, and A3, and at the same time, the base station avoids the combination of measurement resource information in the configuration table. For example, the base station configures 5 CSI-RS resources for the Type I codebook, 1 CSI-RS resource for the Rel-15 Type II codebook, and 1 CSI-RS resource for the Rel-16 Type II codebook.
  • four CSI-RS resources are configured for the Type I codebook
  • two CSI-RS resources are configured for the Rel-15 Type II codebook
  • two CSI-RS resources are configured for the Rel-16 Type II codebook.
  • you can also configure the resource information combination in the table reported by the UE, such as configuring 3 CSI-RS resources for the Type I codebook, and configuring 3 CSI-RS resources for the Rel-16 Type II codebook.
  • the measurement resource corresponding to each codebook type may not be restricted by the first maximum measurement resource information Ai, that is, partial code
  • the number of measurement resources corresponding to this type can be larger than the corresponding Ai, for example, a1(6)>A1(5).
  • the first maximum CSI-RS resource information is the maximum number of CSI-RS resources corresponding to this codebook type supported by the UE when only a single codebook type is configured.
  • the second maximum measurement resource information is the maximum number of measurement resources respectively corresponding to each codebook type supported by the UE when multiple codebook types are configured.
  • four CSI-RS resources are configured for the Type I codebook
  • two CSI-RS resources are configured for the Rel-15 Type II codebook
  • two CSI-RS resources are configured for the Rel-16 Type II codebook.
  • the first maximum CSI-RS resource information is the maximum number of CSI-RS resources corresponding to this codebook type supported by the UE when only a single codebook type is configured.
  • four CSI-RS resources are configured for Type I codebook, or two CSI-RS resources are configured for Rel-15 Type II codebook, or two CSI-RS resources are configured for Rel-16 Type II codebook.
  • the measurement resource corresponding to each codebook type may not be restricted by the first maximum measurement resource information Ai, that is, partial code
  • the number of measurement resources corresponding to this type can be larger than the corresponding Ai, for example, a1(6)>A1(5).
  • FIG. 3 is a schematic structural diagram of a device for indicating UE processing capabilities according to an embodiment of the application. As shown in FIG. 3, the device includes a determining module 301 and a reporting module 302, wherein:
  • the determining module 301 is configured to determine the first maximum measurement resource information and auxiliary indication information corresponding to the UE, where the first maximum measurement resource information is that when only a single codebook type is configured, the UE supports and each single codebook type The corresponding maximum number of measurement resources, the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE; the reporting module 302 is configured to report UE processing capability indication information to the network side, the UE processing capability indication information including The first maximum measurement resource information and the auxiliary indication information are used for the network side to configure measurement resources within a processing capability range for the UE according to the UE processing capability indication information.
  • the foregoing device embodiments are specifically used to execute the processes recorded in the foregoing method embodiments, and their functions can be referred to the foregoing method embodiments, and details are not described herein again.
  • the device for indicating the processing capability of the UE includes the first maximum measurement resource information and other auxiliary indication information in the reported UE processing capability indication information, so that the base station can learn the actual processing capability of the UE and configure it for the UE
  • the UE processes the measurement resources within the processing capability, and avoids that the configured resources include a combination of codebook types that the UE does not support, and effectively improves the processing capability of the UE.
  • FIG. 4 is a schematic structural diagram of an electronic device provided by an embodiment of the application.
  • the electronic device may include: a processor 410, a communication interface 420, a memory 430, and a communication bus 440.
  • the processor 410, the communication interface 420, and the memory 430 communicate with each other through the communication bus 440.
  • the processor 410 may call the logical instructions in the memory 430 to perform the following method: determine the first maximum measurement resource information and auxiliary indication information corresponding to the UE, where the first maximum measurement resource information is that when only a single codebook type is configured, The maximum number of measurement resources corresponding to each of the single codebook types supported by the UE, the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE; the UE processing capability indication information is reported to the network side, so The UE processing capability indication information includes the first maximum measurement resource information and the auxiliary indication information, so that the network side configures measurement resources within a processing capability range for the UE according to the UE processing capability indication information.
  • the aforementioned logic instructions in the memory 430 can be implemented in the form of computer-executable commands and when sold or used as an independent product, they can be stored in a computer-readable storage medium. Therefore, an embodiment of the present application provides a computer software product, which is stored in a storage medium and includes several instructions to enable a computer device (for example, a personal computer, a server, or a network device, etc.) Perform all or part of the steps of the method described in each embodiment of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), magnetic disks or optical disks and other media that can store program codes. .
  • the embodiments of the present application also provide a non-transitory computer-readable storage medium on which a computer program is stored.
  • the computer program is executed by a processor, the computer program is implemented to perform the transmission methods provided in the foregoing embodiments, for example, including : Determine the first maximum measurement resource information and auxiliary indication information corresponding to the UE, where the first maximum measurement resource information is the maximum measurement supported by the UE corresponding to each single codebook type when only a single codebook type is configured
  • the number of resources the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE; the UE processing capability indication information is reported to the network side, and the UE processing capability indication information includes the first maximum measurement resource information and
  • the auxiliary indication information is used by the network side to configure measurement resources within a processing capability range for the UE according to the UE processing capability indication information.
  • FIG. 5 is a schematic structural diagram of a device for indicating UE processing capabilities according to another embodiment of the application. As shown in FIG. 5, the device includes a receiving module 501 and a configuration module 502, wherein:
  • the receiving module 501 is configured to receive UE processing capability indication information reported by the UE, where the UE processing capability indication information includes first maximum measurement resource information and auxiliary indication information, and the first maximum measurement resource information is when only a single codebook type is configured , The maximum number of measurement resources corresponding to each of the single codebook types supported by the UE, and the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE;
  • the processing capability indication information configures measurement resources within the processing capability range for the UE.
  • the foregoing device embodiments are specifically used to execute the steps recorded in the foregoing method embodiments, and their functions can be referred to the foregoing method embodiments, and details are not described herein again.
  • the report UE processing capability indication information reported by the UE includes the first maximum measurement resource information and other auxiliary indication information, so that the base station can learn the actual processing capability of the UE and provide the UE Configure the measurement resources within the processing capability of the UE to avoid the configured resources including the codebook type combination that the UE does not support, and effectively improve the processing capability of the UE.
  • FIG. 6 is a schematic structural diagram of an electronic device provided by another embodiment of the application.
  • the electronic device may include: a processor 610, a communication interface 620, a memory (memory) 630, and communication The bus 640, wherein the processor 610, the communication interface 620, and the memory 630 communicate with each other through the communication bus 640.
  • the processor 610 may call the logical instructions in the memory 630 to execute the following method: receive UE processing capability indication information reported by the UE, where the UE processing capability indication information includes the first maximum measurement resource information and auxiliary indication information, and the first The maximum measurement resource information is the maximum number of measurement resources corresponding to each single codebook type supported by the UE when only a single codebook type is configured, and the auxiliary indication information is configured to assist in indicating the actual processing capability of the UE Information; according to the UE processing capability indication information, configure measurement resources within the processing capability range for the UE.
  • the aforementioned logic instructions in the memory 630 can be implemented in the form of computer executable instructions and when sold or used as an independent product, they can be stored in a computer readable storage medium. Therefore, an embodiment of the present application provides a computer software product, which is stored in a storage medium and includes several instructions to enable a computer device (for example, a personal computer, a server, or a network device, etc.) Perform all or part of the steps of the method described in each embodiment of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), magnetic disks or optical disks and other media that can store program codes. .
  • the embodiments of the present application also provide a non-transitory computer-readable storage medium on which a computer program is stored.
  • the computer program is executed by a processor, the computer program is implemented to perform the transmission methods provided in the foregoing embodiments, for example, including : Receive UE processing capability indication information reported by the UE.
  • the UE processing capability indication information includes first maximum measurement resource information and auxiliary indication information.
  • the first maximum measurement resource information is that only a single codebook type is configured
  • the UE The maximum number of supported measurement resources corresponding to each of the single codebook types
  • the auxiliary indication information is information configured to assist in indicating the actual processing capability of the UE; the UE is configured according to the UE processing capability indication information Measurement resources within the processing capacity.
  • the device embodiments described above are merely illustrative.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in One location, or it can be distributed to multiple network units.
  • Some or all of the modules can be selected according to actual needs to achieve the objectives of the solutions of the embodiments. Based on the disclosure of this application, those of ordinary skill in the art can understand and implement the technical solutions disclosed in this application without creative work.
  • an embodiment of the present application provides a computer software product, which can be stored in a computer-readable storage medium, such as ROM/RAM, magnetic disk, optical disk, etc., and includes several instructions to make a computer
  • a device for example, a personal computer, a server, or a network device, etc. executes the method described in each embodiment or some parts of the embodiment.

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Abstract

一种UE处理能力的指示方法、装置、电子设备及存储介质,方法包括确定UE对应的第一最大测量资源信息和辅助指示信息,第一最大测量资源信息为仅配置单一码本类型时,UE支持的与各单一码本类型对应的最大测量资源个数,辅助指示信息为配置成辅助指示UE实际处理能力的信息;向网络侧上报UE处理能力指示信息,以供网络侧根据UE处理能力指示信息为UE配置处理能力范围内的测量资源。UE上报的UE处理能力指示信息中包括第一最大测量资源信息以及其他的辅助指示信息,使得基站能够获知UE的实际处理能力,并为UE配置处理能力范围内的测量资源,避免所配置的资源包括UE不支持的码本类型组合,有效地提高UE的处理能力。

Description

UE处理能力的指示方法、装置、电子设备及存储介质
相关申请的交叉引用
本申请要求于2019年9月29日提交的申请号为201910935842.9,发明名称为“UE处理能力的指示方法、装置、电子设备及存储介质”的中国专利申请的优先权,其通过引用方式全部并入本文。
技术领域
本申请涉及无线通信技术领域,尤其涉及一种UE处理能力的指示方法、装置、电子设备及存储介质。
背景技术
NR(New Radio,新空口)系统中定义了多种类型的码本。Rel-15中定义了Type I单阵面(panel)码本,Type I多阵面(panel)码本、Type II码本和Type II端口选择码本。Rel-16中又增加了低开销Type II码本和低开销Type II端口选择码本。
由于不同用户设备(User Equipment,UE)的处理能力不同,基站(gNB)为UE配置信道测量资源时,需要保证其在UE的处理范围之内,否则UE无法按照基站的要求进行测量反馈。UE的处理能力分别针对每种码本类型进行定义,并通过信令指示给基站,该信令指示了当UE仅处理一种码本类型时,所具有的能力。但在一些场景下,基站可以要求UE同时处理不同类型的码本,例如同时进行Type II码本类型的反馈和Type I单阵面码本类型的反馈。为了支持这种场景,Rel-15中还支持UE上报其支持的总的最大CSI-RS资源个数S,此信令不区分码本类型。
在多码本类型同时上报时,UE处理能力信令中仅给出了全部码本类型所支持的CSI-RS资源总的最大个数S。在既满足资源总数小于等于S,且每个码本类型的资源数小于等于相应码本类型对应的最大资源Ai的条件下,存在多种资源配置组合。为了确保这些组合中不包括UE不支持的组合,需要将上报的Ai的取值减小以减少配置组合的范围。这样造成Ai的取值并非体现为真实的UE处理能力,因此如何保证UE的处理能力得 到有效利用,是业界亟待解决的问题。
发明内容
本申请实施例提供一种UE处理能力的指示方法、装置、电子设备及存储介质,可以实现对UE的处理能力的有效利用。
第一方面,本申请实施例提供一种UE处理能力的指示方法,包括:
确定UE对应的第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
向网络侧上报UE处理能力指示信息,所述UE处理能力指示信息包括所述第一最大测量资源信息和所述辅助指示信息,以供所述网络侧根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
进一步地,所述辅助指示信息包括:多个码本类型下每个码本类型对应的测量资源的组合,所述组合为所述UE不支持的组合,和/或,所述组合为所述UE支持的组合。再进一步地,所述辅助指示信息还包括:所述UE支持的与码本类型无关的最大测量资源个数。
进一步地,所述辅助指示信息包括第二最大测量资源信息以及所述UE支持的与码本类型无关的总的测量资源个数,所述第二最大测量资源信息为配置多码本类型时,所述UE支持的与各码本类型分别对应的最大测量资源个数。
进一步地,所述最大测量资源个数,包括以下信息中的一个或多个:最大CSI-RS资源个数、每个CSI-RS资源的最大端口数以及总端口数。
第二方面,本申请实施例提供另一种UE处理能力的指示方法,包括:
接收UE上报的UE处理能力指示信息,所述UE处理能力指示信息包括第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
进一步地,所述辅助指示信息包括:多个码本类型下每个码本类型对应的测量资源的组合,所述组合为所述UE不支持的组合,和/或,所述组合为所述UE支持的组合;
相应地,所述根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,包括:
按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
针对单一码本类型,为所述单一码本类型所配置的测量资源的个数不大于所述单一码本类型对应的最大测量资源个数;
或者,
针对多码本类型,根据多个码本类型下每个码本类型对应的测量资源的组合,为所述UE配置处理能力范围内的测量资源。
再进一步地,所述辅助指示信息还包括:所述UE支持的与码本类型无关的最大测量资源个数;
相应地,所述根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,还包括:
按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
针对多码本类型,为各码本类型所配置的测量资源的个数均不大于各单一码本类型对应的最大测量资源个数,且为各码本类型所配置的测量资源的个数之和不大于所述UE支持的与码本类型无关的总的测量资源个数。
进一步地,所述辅助指示信息包括第二最大测量资源信息以及所述UE支持的与码本类型无关的总的测量资源个数,所述第二最大测量资源信息为配置多码本类型时,所述UE支持的与各码本类型分别对应的最大测量资源个数;
相应地,所述根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,包括:
按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
针对单一码本类型,为所述单一码本类型所配置的测量资源的个数不 大于所述单一码本类型对应的最大测量资源个数;
或者,
针对多码本类型,为各码本类型所配置的测量资源的个数均不大于各码本类型对应的最大测量资源个数,且为各码本类型所配置的测量资源的个数之和不大于所述UE支持的与码本类型无关的总的测量资源个数。
进一步地,所述最大测量资源个数,包括以下信息中的一个或多个:最大CSI-RS资源个数、每个CSI-RS资源的最大端口数以及总端口数。
第三方面,本申请实施例提供一种UE处理能力的指示装置,包括:
确定模块,配置成确定UE对应的第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
上报模块,配置成向网络侧上报UE处理能力指示信息,所述UE处理能力指示信息包括所述第一最大测量资源信息和所述辅助指示信息,以供所述网络侧根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
第四方面,本申请实施例提供另一种UE处理能力的指示装置,包括:
接收模块,配置成接收UE上报的UE处理能力指示信息,所述UE处理能力指示信息包括第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
配置模块,配置成据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
第五方面,本申请实施例提供一种电子设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时实现如第一方面或第二方面所提供的方法的步骤。
第六方面,本申请实施例提供非暂态计算机可读存储介质,其上存储有计算机程序,该计算机程序被处理器执行时实现如第一方面或第二方面所提供的方法的步骤。
本申请实施例提供的UE处理能力的指示方法、装置、电子设备及存储介质,UE上报的UE处理能力指示信息中包括第一最大测量资源信息以及其他的辅助指示信息,使得基站能够获知UE的实际处理能力,并为UE配置UE处理处理能力范围内的测量资源,避免所配置的资源包括UE不支持的码本类型组合,有效地提高UE的处理能力。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请一实施例提供的UE处理能力的指示方法流程示意图;
图2为本申请另一实施例提供的UE处理能力的指示方法流程示意图;
图3为本申请一实施例提供的UE处理能力的指示装置结构示意图;
图4为本申请一实施例提供的电子设备结构示意图;
图5为本申请另一实施例提供的UE处理能力的指示装置结构示意图;
图6为本申请另一实施例提供的电子设备结构示意图。
具体实施方式
为使本申请实施例的目的、技术方案和优点更加清楚,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
NR Rel-15中定义了四种码本类型,包括Type I单阵面(panel)码本,Type I多阵面(panel)码本、Type II码本和Type II端口选择码本。由于不同UE的处理能力不同,基站为UE配置信道测量资源时,需要保证其在UE的处理范围之内,否则UE无法按照基站的要求进行测量反馈。UE的处理能力分别针对每种码本类型进行定义,并通过信令指示给基站。例如,对于Type I单阵面码本UE可以支持测量最大A1=8个CSI-RS资源,针对Type I多阵面码本UE可以支持测量最大A2=8个 CSI-RS资源,针对Type II码本UE可以支持测量最大A3=4个CSI-RS资源,针对Type II端口选择码本UE可以支持测量最大A4=5个CSI-RS资源。这些信令指示了当UE仅处理一种码本类型时,所具有的能力。在一些场景下,基站可以要求UE同时处理不同类型的码本,例如同时进行Type II码本类型的反馈和Type I单阵面码本类型的反馈。为了支持这种场景,Rel-15中还支持UE上报其支持的总的最大CSI-RS资源个数S,此信令不区分码本类型。例如,UE上报其支持的总的最大CSI-RS资源个数为S=10,则基站可以为其配置针对Type I单阵面码本的7个CSI-RS资源,和针对Type II码本的3个CSI-RS资源。且其中针对每个码本类型的资源个数分别不超过A1以及A3。
在多种码本类型同时上报时,UE处理能力信令中给出了全部码本类型所支持的CSI-RS资源总的最大个数S。在既满足资源总数小于等于S,且每个码本类型的资源数小于等于相应码本类型对应的最大资源Ai的条件下,存在多种资源配置组合。为了保证这些组合中不包含UE不支持的组合,需要将上报的Ai的取值减小以减少配置组合的范围。这样造成Ai的取值并非体现为真实的UE处理能力。例如,S=10,且体现真实UE处理能力的(A1,A2,A3,A4)=(8,8,4,5)。但UE不支持(a1,a2,a3,a4)=(6,6,4,5)的码本组合。为了去除掉这样的组合,现有技术中,UE将上报(A1,A2,A3,A4)=(5,5,3,4)。此时A1~A4未对应真实的UE处理能力。这个问题在增加了Rel-16 Type II码本类型后更加突出。因此,Rel-15中定义的UE处理能力上报,不能保证UE处理能力的有效利用。
针对现有技术存在的上述技术问题,本申请各实施例提供一种解决方案,即在上报的UE处理能力信令中,不但包括有仅配置单一码本类型时,UE支持的与各所述单一码本类型对应的最大测量资源个数,还可以包括辅助指示信息用于辅助指示所述UE实际处理能力的信息,以实现UE的处理能力的有效利用。
图1为本申请一实施例提供的UE处理能力的指示方法流程示意图,如图1所示,该方法包括如下步骤:
步骤100:确定UE对应的第一最大测量资源信息和辅助指示信息, 所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
UE在上报UE处理能力之前,首先要确定能够向基站指示出UE实际处理能力的相关信息,该相关信息中不但包括第一最大测量资源信息,还要包括其他的辅助指示信息。具体地,所述的第一最大测量资源信息为仅配置单一码本类型时,该UE支持的与各所述单一码本类型对应的最大测量资源个数。例如,对于Type I单阵面码本UE可以支持测量最大A1=8个CSI-RS资源,针对Type I多阵面码本UE可以支持测量最大A2=8个CSI-RS资源,针对Type II码本UE可以支持测量最大A3=4个CSI-RS资源,针对Type II端口选择码本UE可以支持测量最大A4=5个CSI-RS资源。这些信令指示了当UE仅处理一种码本类型时所具有的能力。所述辅助指示信息是具体用于辅助指示UE实际处理能力的信息,即上报第一最大测量资源信息的同时,通过同时上报辅助指示信息使得基站能够结合第一最大测量资源信息和辅助指示信息,为UE配置UE处理处理能力范围内的测量资源,避免所配置的资源包括UE不支持的码本类型组合,而且还能够有效地提高UE的处理能力。
步骤101:向网络侧上报UE处理能力指示信息,所述UE处理能力指示信息包括所述第一最大测量资源信息和所述辅助指示信息,以供所述网络侧根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
UE在获得第一最大测量资源信息和辅助指示信息后,便可以向网络侧例如基站上报UE处理能力指示信息,该UE处理能力指示信息可以携带第一最大测量资源信息和辅助指示信息。具体可以将第一最大测量资源信息和辅助指示信息封装至能力信令中,通过已有的能力上报途径发送给基站。
基站在接收到UE上报的UE处理能力指示信息后,便可以根据该UE处理能力指示信息中携带的第一最大测量资源信息和辅助指示信息,综合考虑为UE配置其处理能力范围内的测量资源。
本申请实施例提供的UE处理能力的指示方法,UE上报的上报UE 处理能力指示信息中包括第一最大测量资源信息以及其他的辅助指示信息,使得基站能够获知UE的实际处理能力,并为UE配置UE处理处理能力范围内的测量资源,避免所配置的资源包括UE不支持的码本类型组合,有效地提高UE的处理能力。
在上述方法实施例的基础上,UE处理能力指示信息中包括的辅助指示信息的作用是用于辅助指示该UE实际处理能力的信息,因此只要是能够起到辅助指示的作用的信息都可以,以下结合若干示例对辅助指示信息进行介绍。
示例1:所述辅助指示信息包括:多个码本类型下每个码本类型对应的测量资源的组合,所述组合为所述UE不支持的组合,和/或,所述组合为所述UE支持的组合。具体地,本申请实施例通过在UE处理能力上报中,增加UE不支持和/或支持的测量信息组合,保证UE的处理能力得到有效利用。可以理解地,UE针对N个码本类型分别上报与此码本类型对应的第一最大测量资源信息的同时,还同时上报多个码本类型下每个码本类型对应的测量资源的组合,所述组合可以为UE不支持的组合,所述组合还可以为UE支持的组合,所述组合也可以同时包括UE不支持的组合和支持的组合。
可以理解的是,UE在辅助信息中携带的UE不支持的测量资源的组合中,各码本类型所分别对应的测量资源个数均受第一最大测量资源信息Ai的约束,即各码本类型所分别对应的测量资源个数均要比对应的Ai小;UE在辅助信息中携带的UE支持的测量资源的组合中,各码本类型所分别对应的测量资源可以不受第一最大测量资源信息Ai的约束,即部分码本类型所分别对应的测量资源个数可以比对应的Ai大。
基站在接收到携带有上述辅助指示信息的UE处理能力指示信息时,可以基于第一最大测量资源信息为UE配置单一码本所对应的资源个数,还可以基于携带的多个码本类型下每个码本类型对应的测量资源的组合来配置针对多码本的测量资源。例如多个码本类型下每个码本类型对应的测量资源的组合中包括有至少一组UE支持的码本类型组合,此时基站可以基于该组合为UE配置相应地测量资源。
示例2:所述辅助指示信息在包括多个码本类型下每个码本类型对应 的测量资源的组合的同时,还可以包括该UE支持的与码本类型无关的最大测量资源个数S。
基站在接收到携带有上述辅助指示信息的UE处理能力指示信息的时候,可以基于第一最大测量资源信息为UE配置单一码本所对应的资源个数,还可以基于携带的多个码本类型下每个码本类型对应的测量资源的组合以及该UE支持的与码本类型无关的最大测量资源个数S,来配置针对多码本的测量资源。例如,多个码本类型下每个码本类型对应的测量资源的组合中包括有至少一组UE支持的码本类型组合,此时基站可以基于该组合为UE配置相应地测量资源。还例如,基站可以根据S及Ai(相应码本类型对应的最大资源)的约束为UE配置信道状态信息测量资源,同时基站将根据基于不支持的多个码本类型下每个码本类型对应的测量资源的组合,避免配置UE不支持的测量资源的组合。再例如,基站还可以根据S及Ai(相应码本类型对应的最大资源)的约束为UE配置信道状态信息测量资源。
示例3:所述辅助指示信息可以包括:第二最大测量资源信息,以及所述UE支持的与码本类型无关的总的测量资源个数,所述第二最大测量资源信息为配置多码本类型时,所述UE支持的与各码本类型分别对应的最大测量资源个数。其中,所述的第二最大测量资源信息为需要给UE配置多码本类型的情况下,该UE支持的与各码本类型分别对应的最大测量资源个数。例如,针对Type I单阵面码本、Rel-15 Type II码本和Rel-16 Type II码本三个类型的码本,UE通过UE处理能力信令分别指示其可以支持第二最大CSI-RS资源信息为,B1=5(Type I单阵面码本)个CSI-RS资源,B2=3(Rel-15 Type II码本)个CSI-RS资源和B3=2(Rel-16 Type II码本)个CSI-RS资源。同时,UE还要上报其支持最大S=10个CSI-RS资源,此S个CSI-RS资源与码本类型无关。
基站在接收到携带有上述辅助指示信息的UE处理能力指示信息的时候,可以基于第一最大测量资源信息为UE配置单一码本所对应的资源个数;还可以基于第二最大测量资源信息以及该UE支持的与码本类型无关的最大测量资源个数S,来配置针对多码本的测量资源。例如,基站可以根据S及Bi的约束为UE配置信道状态信息测量资源。
图2为本申请另一实施例提供的UE处理能力的指示方法流程示意图,如图2所示,该方法包括如下步骤:
步骤200:接收UE上报的UE处理能力指示信息,所述UE处理能力指示信息包括第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
UE在上报UE处理能力之前,首先要确定能够向基站指示出UE实际处理能力的相关信息,该相关信息中不但包括第一最大测量资源信息,还要包括其他的辅助指示信息,UE在获得第一最大测量资源信息和辅助指示信息后,便可以向网络侧例如基站上报UE处理能力指示信息。
具体地,所述的第一最大测量资源信息为仅配置单一码本类型时,该UE支持的与各所述单一码本类型对应的最大测量资源个数。具体举例详见上述方法实施例,此处不再赘述。
所述辅助指示信息是具体用于辅助指示UE实际处理能力的信息,即上报第一最大测量资源信息的同时,通过同时上报辅助指示信息使得基站能够结合第一最大测量资源信息和辅助指示信息,为UE配置UE处理处理能力范围内的测量资源,避免所配置的资源包括UE不支持的码本类型组合,而且还能够有效地提高UE的处理能力。
步骤201:根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
基站在接收到UE上报的UE处理能力指示信息后,便可以根据该UE处理能力指示信息中携带的第一最大测量资源信息和辅助指示信息,综合考虑为UE配置其处理能力范围内的测量资源,用于UE进行信道测量及反馈。
本申请实施例提供的UE处理能力的指示方法,UE上报的上报UE处理能力指示信息中包括第一最大测量资源信息以及其他的辅助指示信息,使得基站能够获知UE的实际处理能力,并为UE配置UE处理处理能力范围内的测量资源,避免所配置的资源包括UE不支持的码本类型组合,有效地提高UE的处理能力。
在上述方法实施例的基础上,UE处理能力指示信息中包括的辅助指示信息的作用是用于辅助指示该UE实际处理能力的信息,因此只要是能够起到辅助指示的作用的信息都可以,以下结合若干示例对辅助指示信息以及基站如何利用辅助信息进行测量资源的配置进行介绍。
示例1:所述辅助指示信息包括:多个码本类型下每个码本类型对应的测量资源的组合,所述组合为所述UE不支持的组合,和/或,所述组合为所述UE支持的组合。具体地,本申请实施例通过在UE处理能力上报中,增加UE不支持和/或支持的测量信息组合,保证UE的处理能力得到有效利用。可以理解地,UE针对N个码本类型分别上报与此码本类型对应的第一最大测量资源信息的同时,还同时上报多个码本类型下每个码本类型对应的测量资源的组合,所述组合可以为UE不支持的组合,所述组合还可以为UE支持的组合,所述组合也可以同时包括UE不支持的组合和支持的组合。
相应地,基站根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,包括:
按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
针对单一码本类型,为所述单一码本类型所配置的测量资源的个数不大于所述单一码本类型对应的最大测量资源个数。
或者,
针对多码本类型,根据多个码本类型下每个码本类型对应的测量资源的组合,为所述UE配置处理能力范围内的测量资源。
具体地,基站在接收到携带有上述辅助指示信息的UE处理能力指示信息的时候,可以基于第一最大测量资源信息为UE配置单一码本所对应的资源个数,还可以基于携带的多个码本类型下每个码本类型对应的测量资源的组合来配置针对多码本的测量资源。例如多个码本类型下每个码本类型对应的测量资源的组合中包括有至少一组UE支持的码本类型组合,此时基站可以基于该组合为UE配置相应地测量资源。
示例2:所述辅助指示信息在包括多个码本类型下每个码本类型对应的测量资源的组合的同时,还可以包括该UE支持的与码本类型无关的最 大测量资源个数S。
相应地,基站根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,包括:
按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
针对多码本类型,为各码本类型所配置的测量资源的个数均不大于各单一码本类型对应的最大测量资源个数,且为各码本类型所配置的测量资源的个数之和不大于所述UE支持的与码本类型无关的总的测量资源个数。
具体地,基站在接收到携带有上述辅助指示信息的UE处理能力指示信息的时候,可以基于第一最大测量资源信息为UE配置单一码本所对应的资源个数,还可以基于携带的多个码本类型下每个码本类型对应的测量资源的组合以及该UE支持的与码本类型无关的最大测量资源个数S,来配置针对多码本的测量资源。例如,多个码本类型下每个码本类型对应的测量资源的组合中包括有至少一组UE支持的码本类型组合,此时基站可以基于该组合为UE配置相应地测量资源。还例如,基站可以根据S及Ai(相应各单一码本类型对应的最大资源)的约束为UE配置信道状态信息测量资源,同时基站将根据基于不支持的多个码本类型下每个码本类型对应的测量资源的组合,避免配置UE不支持的测量资源的组合。再例如,基站还可以根据S及Ai(相应码本类型对应的最大资源)的约束为UE配置信道状态信息测量资源。上述所述的约束条件可以为各码本类型所配置的测量资源的个数均不大于各单一码本类型对应的最大测量资源个数Ai,且为各码本类型所配置的测量资源的个数之和不大于S。
示例3:所述辅助指示信息可以包括:第二最大测量资源信息,以及所述UE支持的与码本类型无关的总的测量资源个数,所述第二最大测量资源信息为配置多码本类型时,所述UE支持的与各码本类型分别对应的最大测量资源个数。其中,所述的第二最大测量资源信息为需要给UE配置多码本类型的情况下,该UE支持的与各码本类型分别对应的最大测量资源个数。例如,针对Type I单阵面码本、Rel-15 Type II码本和Rel-16 Type II码本三个类型的码本,UE通过UE处理能力信令分别指示其可以 支持第二最大CSI-RS资源信息为,B1=5(Type I单阵面码本)个CSI-RS资源,B2=3(Rel-15 Type II码本)个CSI-RS资源和B3=2(Rel-16 Type II码本)个CSI-RS资源。同时,UE还要上报其支持最大S=10个CSI-RS资源,此S个CSI-RS资源与码本类型无关。
相应地,基站根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,包括:
按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
针对单一码本类型,为所述单一码本类型所配置的测量资源的个数不大于所述单一码本类型对应的最大测量资源个数。
或者,
针对多码本类型,为各码本类型所配置的测量资源的个数均不大于各码本类型对应的最大测量资源个数,且为各码本类型所配置的测量资源的个数之和不大于所述UE支持的与码本类型无关的总的测量资源个数。
具体地,基站在接收到携带有上述辅助指示信息的UE处理能力指示信息的时候,可以基于第一最大测量资源信息为UE配置单一码本所对应的资源个数;还可以基于第二最大测量资源信息以及该UE支持的与码本类型无关的最大测量资源个数S,来配置针对多码本的测量资源。例如,基站可以根据S及Bi的约束为UE配置信道状态信息测量资源。约束条件可以为各码本类型所配置的测量资源的个数均不大于各码本类型对应的最大测量资源个数Bi,且为各码本类型所配置的测量资源的个数之和不大于S。
可以理解的是,上述各方法实施例中有关UE支持的与各所述单一码本类型对应的最大测量资源个数、UE支持的与码本类型无关的最大测量资源个数、配置多码本类型时所述UE支持的与各码本类型分别对应的最大测量资源个数中所涉及的最大测量资源个数,可以包括以下信息中的一个或多个:最大CSI-RS资源个数、每个CSI-RS资源的最大端口数以及总端口数。
以下结合若干实施例,对UE上报UE处理能力指示信息以及基站如 何基于UE处理能力指示信息进行测量资源配置进行说明。
实施例一:
针对Type I单阵面码本、Rel-15 Type II码本和Rel-16 Type II码本,UE通过UE处理能力信令分别指示其可以支持第一最大CSI-RS资源信息为:A1=8(Type I单阵面码本)个CSI-RS资源,A2=5(Rel-15 Type II码本)个CSI-RS资源和A3=4(Rel-16 Type II码本)个CSI-RS资源。同时,UE还上报支持最大S=12个CSI-RS资源。此S个CSI-RS资源与码本类型无关。此外UE还上报其不支持下表中的测量资源信息组合:
  a1(<=A1) a2(<=A2) a3(<=A3)
组合1 6 4 2
组合2 4 2 2
组合3 6 0 4
其中每个组合均满足S及A1,A2,A3的约束,即a1<=A1,a2<=A2,a3<=A3,且a1+a2+a3<=S。例如,组合2表示为Type I码本配置4个CSI-RS资源,同时为Rel-15 Type II码本配置2个CSI-RS资源,为Rel-16 Type II码本配置2个CSI-RS资源。这样,基站在接收到UE处理能力信令之后,根据S及A1,A2,A3的约束为UE配置信道状态信息测量资源,同时基站将避免配置表中的测量资源信息组合。例如,基站为Type I码本配置5个CSI-RS资源,为Rel-15 Type II码本配置1个CSI-RS资源,为Rel-16 Type II码本配置1个CSI-RS资源。
由该表中所示的,UE在辅助信息中携带的UE不支持的测量资源的组合中,各码本类型所分别对应的测量资源个数均受第一最大测量资源信息Ai的约束,即各码本类型所分别对应的测量资源个数均要比对应的Ai小,例如a1(6)<A1(8)、a2(4)<A2(5)、a3(2)<A3(3),且a1+a2+a3(12)<=S(12)。
实施例二:
针对Type I单阵面码本、Rel-15 Type II码本和Rel-16 Type II码本,UE通过UE处理能力信令分别指示其可以支持第一最大CSI-RS资源信息为,A1=5(Type I单阵面码本)个CSI-RS资源,A2=3(Rel-15  Type II码本)个CSI-RS资源和A3=2(Rel-16 Type II码本)个CSI-RS资源。同时,UE还上报支持最大S=10个CSI-RS资源。此S个CSI-RS资源与码本类型无关。此外UE还上报其支持下表中的测量资源信息组合:
  a1 a2 a3
组合1 6 2 2
组合2 1 4 0
组合3 3 0 3
其中每个组合均满足小于等于S的约束,即a1+a2+a3<=S,但不满足A1,A2,A3的约束。基站根据UE的反馈,可以配置所有的满足a1<=A1,a2<=A2,a3<=A3,且a1+a2+a3<=S的资源配置。例如为Type I码本配置4个CSI-RS资源,同时为Rel-15 Type II码本配置2个CSI-RS资源,为Rel-16 Type II码本配置2个CSI-RS资源。同时,还可以配置UE上报的表格中的资源信息组合,如为Type I码本配置3个CSI-RS资源,同时为Rel-16 Type II码本配置3个CSI-RS资源。
由该表中所示的,UE在辅助信息中携带的UE支持的测量资源的组合中,各码本类型所分别对应的测量资源可以不受第一最大测量资源信息Ai的约束,即部分码本类型所分别对应的测量资源个数可以比对应的Ai大,例如a1(6)>A1(5)。
实施例三:
UE上报第一最大CSI-RS资源信息,为A1=8(Type I单阵面码本)个CSI-RS资源,A2=5(Rel-15 Type II码本)个CSI-RS资源和A3=4(Rel-16 Type II码本)个CSI-RS资源。第一最大CSI-RS资源信息为仅配置单一码本类型时,UE支持的与此码本类型对应的最大CSI-RS资源个数。同时,针对Type I单阵面码本、Rel-15 Type II码本和Rel-16 Type II码本,UE还通过UE处理能力信令分别指示其可以支持第二最大CSI-RS资源信息为,B1=5(Type I单阵面码本)个CSI-RS资源,B2=3(Rel-15 Type II码本)个CSI-RS资源和B3=2(Rel-16 Type II码本)个CSI-RS资源。所述第二最大测量资源信息为配置多码本类型时,所述UE支持的与各码本类型分别对应的最大测量资源个数。同时,UE还上 报支持最大S=10个CSI-RS资源,此S个CSI-RS资源与码本类型无关。
基站根据UE的反馈,可以配置所有的满足a1<=B1,a2<=B2,a3<=B3,且a1+a2+a3<=S的资源配置。例如为Type I码本配置4个CSI-RS资源,同时为Rel-15 Type II码本配置2个CSI-RS资源,为Rel-16 Type II码本配置2个CSI-RS资源。同时,还可以针对单一Type I码本配置8(<=A 1)个CSI-RS资源。
实施例四:
针对Type I单阵面码本、Rel-15 Type II码本和Rel-16 Type II码本,UE通过UE处理能力信令分别指示其可以支持第一最大CSI-RS资源信息为,A1=5(Type I单阵面码本)个CSI-RS资源,A2=3(Rel-15 Type II码本)个CSI-RS资源和A3=2(Rel-16 Type II码本)个CSI-RS资源。此外UE还上报其支持下表中的测量资源信息组合:
  a1 a2 a3
组合1 6 2 2
组合2 1 4 0
组合3 3 0 3
所述的第一最大CSI-RS资源信息为仅配置单一码本类型时,UE支持的与此码本类型对应的最大CSI-RS资源个数。基站侧根据UE的反馈,可以配置满足a1<=A1,或a2<=A2,或a3<=A3的资源配置。例如为Type I码本配置4个CSI-RS资源,或为Rel-15 Type II码本配置2个CSI-RS资源,或为Rel-16 Type II码本配置2个CSI-RS资源。同时,针对多种类型码本组合上报时,还可以配置表中的组合1,或组合2,或组合3的资源信息。
由该表中所示的,UE在辅助信息中携带的UE支持的测量资源的组合中,各码本类型所分别对应的测量资源可以不受第一最大测量资源信息Ai的约束,即部分码本类型所分别对应的测量资源个数可以比对应的Ai大,例如a1(6)>A1(5)。
图3为本申请一实施例提供的UE处理能力的指示装置结构示意图, 如图3所示,该装置包括确定模块301和上报模块302,其中:
确定模块301用于确定UE对应的第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;上报模块302用于向网络侧上报UE处理能力指示信息,所述UE处理能力指示信息包括所述第一最大测量资源信息和所述辅助指示信息,以供所述网络侧根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
上述装置实施例具体是用于执行上述各方法实施例所记载的流程,其功能可以参见上述各方法实施例,在此不再赘述。
本申请实施例提供的UE处理能力的指示装置,通过在上报UE处理能力指示信息中包括第一最大测量资源信息以及其他的辅助指示信息,使得基站能够获知UE的实际处理能力,并为UE配置UE处理处理能力范围内的测量资源,避免所配置的资源包括UE不支持的码本类型组合,有效地提高UE的处理能力。
图4为本申请一实施例提供的电子设备结构示意图,如图4所示,该电子设备可以包括:处理器(processor)410、通信接口(Communications Interface)420、存储器(memory)430和通信总线440,其中,处理器410,通信接口420,存储器430通过通信总线440实现相互间的通信。处理器410可以调用存储器430中的逻辑指令,以执行如下方法:确定UE对应的第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;向网络侧上报UE处理能力指示信息,所述UE处理能力指示信息包括所述第一最大测量资源信息和所述辅助指示信息,以供所述网络侧根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
此外,上述的存储器430中的逻辑指令可以通过计算机可执行命令的形式实现并作为独立的产品销售或使用时,可以存储在计算机可读取存储介质中。由此,本申请的一个实施例提供一种计算机软件产品,该 计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(例如,个人计算机,服务器,或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
另一方面,本申请实施例还提供一种非暂态计算机可读存储介质,其上存储有计算机程序,该计算机程序被处理器执行时实现以执行上述各实施例提供的传输方法,例如包括:确定UE对应的第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;向网络侧上报UE处理能力指示信息,所述UE处理能力指示信息包括所述第一最大测量资源信息和所述辅助指示信息,以供所述网络侧根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
图5为本申请另一实施例提供的UE处理能力的指示装置结构示意图,如图5所示,该装置包括接收模块501和配置模块502,其中:
接收模块501用于接收UE上报的UE处理能力指示信息,所述UE处理能力指示信息包括第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;配置模块502用于据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
上述装置实施例具体是用于执行上述各方法实施例所记载的步骤,其功能可以参见上述各方法实施例,在此不再赘述。
本申请实施例提供的UE处理能力的指示装置,UE上报的上报UE处理能力指示信息中包括第一最大测量资源信息以及其他的辅助指示信息,使得基站能够获知UE的实际处理能力,并为UE配置UE处理处理能力范围内的测量资源,避免所配置的资源包括UE不支持的码本类型组合,有效地提高UE的处理能力。
图6为本申请另一实施例提供的电子设备结构示意图,如图6所示,该电子设备可以包括:处理器(processor)610、通信接口(Communications Interface)620、存储器(memory)630和通信总线640,其中,处理器610,通信接口620,存储器630通过通信总线640实现相互间的通信。处理器610可以调用存储器630中的逻辑指令,以执行如下方法:接收UE上报的UE处理能力指示信息,所述UE处理能力指示信息包括第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
此外,上述的存储器630中的逻辑指令可以通过计算机可执行指令的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。由此,本申请的一个实施例提供一种计算机软件产品,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(例如,个人计算机,服务器,或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
另一方面,本申请实施例还提供一种非暂态计算机可读存储介质,其上存储有计算机程序,该计算机程序被处理器执行时实现以执行上述各实施例提供的传输方法,例如包括:接收UE上报的UE处理能力指示信息,所述UE处理能力指示信息包括第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
以上所描述的装置实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件 可以是或者也可以不是物理单元,即可以位于一个位置,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。基于本申请公开内容,本领域普通技术人员在不付出创造性的劳动的情况下,即可以理解并实施本申请公开的技术方案。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到各实施方式可借助软件结合所需的通用硬件平台的方式来实现,当然也可以通过硬件来实现。由此,本申请的一个实施例提供一种计算机软件产品,该计算机软件产品可以存储在计算机可读存储介质中,如ROM/RAM、磁碟、光盘等,包括若干指令用以使得一台计算机设备(例如,个人计算机,服务器,或者网络设备等)执行各个实施例或者实施例的某些部分所述的方法。
最后应说明的是:以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (14)

  1. 一种UE处理能力的指示方法,其特征在于,包括:
    确定UE对应的第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
    向网络侧上报UE处理能力指示信息,所述UE处理能力指示信息包括所述第一最大测量资源信息和所述辅助指示信息,以供所述网络侧根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
  2. 根据权利要求1所述的UE处理能力的指示方法,其特征在于,所述辅助指示信息包括:多个码本类型下每个码本类型对应的测量资源的组合,所述组合为所述UE不支持的组合,和/或,所述组合为所述UE支持的组合。
  3. 根据权利要求2所述的UE处理能力的指示方法,其特征在于,所述辅助指示信息还包括:所述UE支持的与码本类型无关的最大测量资源个数。
  4. 根据权利要求1所述的UE处理能力的指示方法,其特征在于,所述辅助指示信息包括第二最大测量资源信息以及所述UE支持的与码本类型无关的总的测量资源个数,所述第二最大测量资源信息为配置多码本类型时,所述UE支持的与各码本类型分别对应的最大测量资源个数。
  5. 根据权利要求1或3或4所述的UE处理能力的指示方法,其特征在于,所述最大测量资源个数,包括以下信息中的一个或多个:最大CSI-RS资源个数、每个CSI-RS资源的最大端口数以及总端口数。
  6. 一种UE处理能力的指示方法,其特征在于,包括:
    接收UE上报的UE处理能力指示信息,所述UE处理能力指示信息包括第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
    根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
  7. 根据权利要求6所述的UE处理能力的指示方法,其特征在于,所述辅助指示信息包括:多个码本类型下每个码本类型对应的测量资源的组合,所述组合为所述UE不支持的组合,和/或,所述组合为所述UE支持的组合;
    相应地,所述根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,包括:
    按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
    针对单一码本类型,为所述单一码本类型所配置的测量资源的个数不大于所述单一码本类型对应的最大测量资源个数;
    或者,
    针对多码本类型,根据多个码本类型下每个码本类型对应的测量资源的组合,为所述UE配置处理能力范围内的测量资源。
  8. 根据权利要求7所述的UE处理能力的指示方法,其特征在于,所述辅助指示信息还包括:所述UE支持的与码本类型无关的最大测量资源个数;
    相应地,所述根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,还包括:
    按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
    针对多码本类型,为各码本类型所配置的测量资源的个数均不大于各单一码本类型对应的最大测量资源个数,且为各码本类型所配置的测量资源的个数之和不大于所述UE支持的与码本类型无关的总的测量资源个数。
  9. 根据权利要求6所述的UE处理能力的指示方法,其特征在于,所述辅助指示信息包括第二最大测量资源信息以及所述UE支持的与码本类型无关的总的测量资源个数,所述第二最大测量资源信息为配置多码本类型时,所述UE支持的与各码本类型分别对应的最大测量资源个数;
    相应地,所述根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源,包括:
    按照如下配置条件,为所述UE配置处理能力范围内的测量资源;所述配置条件包括:
    针对单一码本类型,为所述单一码本类型所配置的测量资源的个数不大于所述单一码本类型对应的最大测量资源个数;
    或者,
    针对多码本类型,为各码本类型所配置的测量资源的个数均不大于各码本类型对应的最大测量资源个数,且为各码本类型所配置的测量资源的个数之和不大于所述UE支持的与码本类型无关的总的测量资源个数。
  10. 根据权利要求6所述的UE处理能力的指示方法,其特征在于,所述最大测量资源个数,包括以下信息中的一个或多个:最大CSI-RS资源个数、每个CSI-RS资源的最大端口数以及总端口数。
  11. 一种UE处理能力的指示装置,其特征在于,包括:
    确定模块,配置成确定UE对应的第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
    上报模块,配置成向网络侧上报UE处理能力指示信息,所述UE处理能力指示信息包括所述第一最大测量资源信息和所述辅助指示信息,以供所述网络侧根据所述UE处理能力指示信息为所述UE配置处理能力范围内的测量资源。
  12. 一种UE处理能力的指示装置,其特征在于,包括:
    接收模块,配置成接收UE上报的UE处理能力指示信息,所述UE处理能力指示信息包括第一最大测量资源信息和辅助指示信息,所述第一最大测量资源信息为仅配置单一码本类型时,所述UE支持的与各所述单一码本类型对应的最大测量资源个数,所述辅助指示信息为配置成辅助指示所述UE实际处理能力的信息;
    配置模块,配置成据所述UE处理能力指示信息为所述UE配置处理 能力范围内的测量资源。
  13. 一种电子设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其特征在于,所述处理器执行所述程序时实现如权利要求1至10任一项所述UE处理能力的指示方法的步骤。
  14. 一种非暂态计算机可读存储介质,其上存储有计算机程序,其特征在于,该计算机程序被处理器执行时实现如权利要求1至10任一项所述UE处理能力的指示方法的步骤。
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