WO2022006853A1 - 测量数据的上报、接收方法、装置、设备及可读存储介质 - Google Patents

测量数据的上报、接收方法、装置、设备及可读存储介质 Download PDF

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Publication number
WO2022006853A1
WO2022006853A1 PCT/CN2020/101327 CN2020101327W WO2022006853A1 WO 2022006853 A1 WO2022006853 A1 WO 2022006853A1 CN 2020101327 W CN2020101327 W CN 2020101327W WO 2022006853 A1 WO2022006853 A1 WO 2022006853A1
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Prior art keywords
computing power
measurement data
access network
threshold
signal quality
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PCT/CN2020/101327
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English (en)
French (fr)
Inventor
李艳华
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北京小米移动软件有限公司
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Priority to CN202080001490.0A priority Critical patent/CN114175735B/zh
Priority to PCT/CN2020/101327 priority patent/WO2022006853A1/zh
Publication of WO2022006853A1 publication Critical patent/WO2022006853A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/24Reselection being triggered by specific parameters
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present disclosure relates to the field of communications, and in particular, to a method, apparatus, device, and readable storage medium for reporting and receiving measurement data.
  • AI artificial intelligence
  • ML machine learning
  • the terminal only reports measurement data related to wireless interface resources, such as time-frequency resources, signal quality, etc., to the access network device, but does not involve the content of reporting measurement data related to computing resources.
  • the embodiments of the present disclosure provide a method, apparatus, device, and readable storage medium for reporting and receiving measurement data, which can improve the comprehensiveness of the measurement data reporting process.
  • the technical solution is as follows:
  • a method for reporting measurement data which is applied to a terminal device, and the method includes:
  • the measurement data is reported to the network node where the terminal device resides, wherein the measurement data is associated with the computing power of one or more network nodes.
  • the computing power is determined according to at least one of computing capability, radio resource capability and backward link bandwidth.
  • the network node includes an access network device
  • the reporting conditions include:
  • the first computing power value of the access network equipment of the serving cell is higher than the first computing power threshold
  • the first computing power value of the access network equipment of the serving cell is lower than the second computing power threshold
  • the second computing power value of the access network equipment of the neighboring cell is higher than the third computing power threshold
  • the computing power difference value reaches the first offset value, wherein the computing power difference value is the difference between the second computing power value of the access network equipment of the neighboring cell and the first computing power value of the access network equipment of the serving cell, so The second computing power value is greater than the first computing power value.
  • the reporting condition is related to the signal quality of the access network device.
  • reporting conditions further include:
  • the first signal quality of the serving cell access network device is higher than the first quality threshold, and the first computing power value of the serving cell access network device is higher than the first computing power threshold.
  • reporting conditions further include:
  • the first signal quality of the access network device of the serving cell is lower than the second quality threshold, or the first computing power value of the access network device of the serving cell is lower than the second computing power threshold.
  • reporting conditions further include:
  • the signal quality difference value is higher than the second offset value, and the second computing power value of the adjacent cell access network equipment is higher than the third computing power threshold, wherein the signal quality difference value is the adjacent cell access network equipment.
  • reporting conditions further include:
  • the second signal quality of the access network device of the neighboring cell is higher than the third quality threshold, and the second computing power value of the access network device of the neighboring cell is higher than the third computing power threshold.
  • reporting conditions further include:
  • the second signal quality of the access network device of the neighboring cell is higher than the third quality threshold
  • the first signal quality of the access network device of the serving cell is lower than the second quality threshold
  • the second computing power of the access network device of the neighboring cell The value is higher than the third hash power threshold.
  • reporting conditions further include:
  • the third signal quality of the access network device of the different system is higher than the fourth quality threshold, and the third computing power value of the access network device of the different system is higher than the fourth computing power threshold.
  • reporting conditions further include:
  • the third signal quality of the access network device of the different system is higher than the fourth quality threshold
  • the first signal quality of the access network device of the serving cell is lower than the second quality threshold
  • the third computing power of the access network device of the different system The value is higher than the fourth computing power threshold.
  • the method further includes:
  • the network node includes a wireless access point
  • the reporting conditions include:
  • the fourth computing power value of the wireless access point is greater than the fifth computing power threshold
  • the fourth computing power value of the wireless access point is less than the sixth computing power threshold.
  • the reporting condition is related to the signal quality of the wireless access point.
  • reporting conditions further include:
  • the signal quality of the wireless access point is higher than the fifth quality threshold, and the fourth computing power value of the wireless access point is greater than the fifth computing power threshold.
  • reporting conditions further include:
  • the signal quality of the first wireless access point in the wireless access set is lower than the sixth quality threshold, the signal quality of the second wireless access point outside the wireless access set is higher than the fifth quality threshold, and the second wireless access point
  • the fourth computing power value of the access point is greater than the fifth computing power threshold.
  • reporting conditions further include:
  • the signal quality of the wireless access point in the wireless access set is lower than the sixth quality threshold, or the fourth computing power value of the wireless access point in the wireless access set is lower than the fifth computing power threshold.
  • the method further includes:
  • a method for receiving measurement data is provided, which is applied to a network node, and the method includes:
  • the method further includes:
  • the computing power value is determined according to at least one of computing capability, radio resource capability and backward link bandwidth.
  • an apparatus for reporting measurement data which is applied to terminal equipment, and the apparatus includes:
  • the sending module is configured to, in response to determining that the measurement reporting condition is met, report measurement data to the network node where the terminal device resides, wherein the measurement data is associated with computing power of one or more network nodes.
  • an apparatus for receiving measurement data which is applied to a network node, and the apparatus includes:
  • a receiving module configured to receive measurement data reported by a terminal residing on a network node, wherein the measurement data is associated with computing power of one or more network nodes; and wherein the measurement data is in response to the measurement Sent for reporting conditions.
  • a terminal comprising:
  • transceiver connected to the processor
  • the processor is configured to load and execute executable instructions to implement the method for reporting measurement data as described in the foregoing embodiments of the present disclosure.
  • a network node comprising:
  • transceiver connected to the processor
  • the processor is configured to load and execute executable instructions to implement the method for receiving measurement data as described in the above embodiments of the present disclosure.
  • a computer-readable storage medium stores at least one instruction, at least one piece of program, code set or instruction set, the above-mentioned at least one instruction, at least one piece of program, code set or instruction set
  • the set is loaded and executed by the processor to implement the method for reporting measurement data or the method for receiving measurement data as described in the foregoing embodiments of the present disclosure.
  • the computing power of the network node is used as the measurement factor for the measurement data reporting conditions, so that when the computing power meets the computing power requirements, the measurement data is reported to the network node, and the network node is based on the measurement data.
  • the data is switched between network nodes, which satisfies the switching conditions for the signal quality and computing resources of the network nodes in the mobile application scenario of AI/ML.
  • FIG. 1 is a block diagram of a communication system provided by an exemplary embodiment of the present disclosure
  • FIG. 2 is a flowchart of a method for reporting measurement data provided by an exemplary embodiment of the present disclosure
  • FIG. 3 is a flowchart of a method for reporting and receiving measurement data provided by another exemplary embodiment of the present disclosure
  • FIG. 4 is a structural block diagram of an apparatus for reporting measurement data provided by an exemplary embodiment of the present disclosure
  • FIG. 5 is a structural block diagram of an apparatus for receiving measurement data provided by another exemplary embodiment of the present disclosure.
  • FIG. 6 is a structural block diagram of a terminal provided by an exemplary embodiment of the present disclosure.
  • FIG. 7 is a structural block diagram of a network node provided by an exemplary embodiment of the present disclosure.
  • FIG. 1 shows a block diagram of a communication system provided by an exemplary embodiment of the present disclosure.
  • the communication system includes a core network 11 , an access network 12 and a terminal 13 .
  • the core network 11 includes several core network devices 110 .
  • the core network device 110 includes an access and mobility management function (Access and Mobility Management Function, AMF), a session management function (Session Management Function, SMF), and a user plane management function (User Plane Function, UPF) and other equipment, wherein the AMF uses
  • AMF Access and Mobility Management Function
  • SMF Session Management Function
  • UPF User Plane Function
  • the access network 12 includes several access network devices 120 .
  • the access network device 120 is a base station, which is a device deployed in an access network to provide a wireless communication function for a terminal.
  • the base station includes various forms of macro base station, micro base station, relay station and so on.
  • the names of devices with base station functions may be different.
  • LTE Long Term Evolution
  • eNodeB eNodeB
  • gNode B gNode B
  • gNode B 5G new air interface
  • the name "base station” may be descriptive and will change.
  • the foregoing apparatuses for providing a wireless communication function for a terminal are collectively referred to as access network equipment.
  • the access network 12 further includes a wireless access point (Access Point, AP), which serves as the central point of the wireless local area network, and may also be referred to as a wireless local area network access device, to communicate with other computers equipped with wireless network cards, That is, a wireless station (Station, STA) provides wireless local area network access.
  • AP Access Point
  • STA wireless station
  • the access network device 120 involved in the embodiment of the present disclosure has edge computing capability, or the access network device 120 is connected to a server that provides AI/ML computing.
  • the terminal 13 includes various handheld devices with wireless communication functions, vehicle-mounted devices, wearable devices, computing devices or other processing devices connected to the wireless modem, as well as various forms of terminals (User Equipment, UE), mobile stations (Mobile Stations) , MS), terminal device, etc.
  • terminals User Equipment, UE
  • mobile stations Mobile Stations
  • terminal device etc.
  • the access network device 120 and the terminal 13 communicate with each other through a certain air interface technology, such as a Uu interface.
  • network resources are usually divided into two dimensions:
  • the first is the resources of the wireless interface, that is, the commonly understood time domain resources, frequency domain resources, coding resources, signal quality, etc.;
  • the second is computing resources, that is, the computing power of the device, central processing unit (CPU) resources, memory resources, etc.
  • the measurement event that triggers the handover of the access network equipment is realized by the measurement of signal quality
  • both types of resources are required to support the implementation of application functions. Therefore, in the embodiment of the present disclosure, on the basis of the measurement based on the first type of resource, the measurement of the second type of resource is added, and the When the terminal reports the measurement data to the network node, both the measurement data of the first resource and the measurement data of the second resource are reported to the network node.
  • the computing power resource is indicated by the computing power value, and the computing power resource includes at least one of the following resources:
  • Computing capacity refers to the current remaining capacity of resources that network nodes need to use in the calculation process, such as: memory usage, CPU resource usage, storage resource usage, etc.;
  • the usage of resources is measured by a percentage.
  • the usage of resources is measured by a percentage.
  • the remaining computing power of the memory is 80%.
  • Wireless resource capabilities including the bandwidth provided by the system, spectrum utilization, etc.;
  • Backward link bandwidth When the network node is implemented as an access network device, the backward link includes the interface link between the access network device and the core network element, or the access network device and the AI provider.
  • the interface link between the servers of the /ML service when the network node is implemented as a wireless access point, the backward link includes the interface link between the martial arts access point and the server providing the AI/ML service.
  • the computing power value is determined by at least two of the above-mentioned resources, optionally, the computing power value is obtained after weighted summation and normalization of the at least two resources.
  • LTE measurement events mainly include the following events:
  • A1 event indicates that the signal quality of the serving cell is higher than a certain threshold.
  • the eNodeB stops inter-frequency/inter-system measurement;
  • A2 event (Serving becomes worse than threshold): indicates that the signal quality of the serving cell is lower than a certain threshold. When an event that meets this condition is reported, the eNodeB starts inter-frequency/inter-system measurement;
  • A3 event (Neighbour becomes offset better than serving): Indicates that the signal quality of intra-frequency/inter-frequency neighboring cells is higher than that of the serving cell. When an event that meets this condition is reported, the source eNodeB initiates an intra-frequency handover request;
  • A4 event Indicates that the signal quality of inter-frequency neighboring cells is higher than a certain threshold. When an event that meets this condition is reported, the source eNodeB initiates an inter-frequency handover request;
  • A5 event (Serving becomes worse than threshold1 and neighbor becomes better than threshold2): indicates that the signal quality of the serving cell is lower than a certain threshold and the signal quality of the neighboring cell is higher than a certain threshold;
  • Event B1 (Inter RAT neighbors better than threshold): Indicates that the signal quality of the neighboring cells of the inter-RAT system is higher than a certain threshold. When an event that meets this condition is reported, the source eNodeB initiates an inter-system handover request;
  • B2 event (Serving becomes worse than threshold1 and inter RAT neighbor becomes better than threshold2): indicates that the signal quality of the serving cell is lower than a certain threshold and the signal quality of the neighboring cells of the different system is higher than a certain threshold;
  • W1 event (WLAN becomes better than a threshold): indicates that the signal quality of the wireless access point is higher than a certain threshold;
  • W2 event (All WLAN inside WLAN mobility set becomes worse than threshold1 and a WLAN outside WLAN mobility set becomes better than threshold2): indicates that the signal quality of all wireless access points in the wireless mobility set corresponding to the wireless access point is lower than a certain threshold, and The signal quality of a wireless access point outside the wireless mobile set is higher than a certain threshold;
  • W3 event (All WLAN inside WLAN mobility set becomes worse than a threshold): Indicates the wireless mobility set corresponding to the wireless access point, and the signal quality of all wireless access points is lower than a certain threshold.
  • FIG. 2 is a flowchart of the method for reporting measurement data provided by an exemplary embodiment of the present disclosure. The method is applied to A terminal device is used as an example to illustrate, as shown in FIG. 2 , the method includes:
  • Step 201 in response to determining that the measurement reporting condition is met, report measurement data to the network node where the terminal device resides, where the measurement data is associated with the computing power of one or more network nodes.
  • the measurement reporting condition also includes a reporting opportunity in the measurement cycle, at which the terminal can report the measurement data, that is, the measurement data is reported periodically; or, the measurement reporting condition also includes the terminal receiving the information sent by the base station Measurement report request. The terminal can report the measurement data according to the measurement report request.
  • the computing power value is determined according to at least one of computing capability, radio resource capability and backward link bandwidth.
  • the measurement data reported by the terminal to the network node includes the computing power value of the one or more network nodes, or the computing power difference between the network nodes.
  • the measurement data further includes signal quality values of one or more network nodes, or signal quality difference values between network nodes.
  • the above one or more network nodes may include a network node where the terminal device resides, or may not include a network node where the terminal device resides.
  • the network node includes any one of an access network device and a wireless access point.
  • the network node broadcasts its own computing power value to the terminal, so that the terminal can obtain the computing power value of the network node, and determine whether the measurement reporting condition is met according to the computing power value.
  • the network node includes at least one of an access network device and a wireless access point.
  • the reporting condition when determining whether the reporting condition is met according to the computing power of the network node, includes any one of the following conditions:
  • the first computing power value of the access network equipment of the serving cell is higher than the first computing power threshold
  • the first computing power value of the access network equipment of the serving cell is lower than the second computing power threshold
  • the first computing power value is the computing power value sent by the serving cell access network device to the terminal, that is, the terminal receives the system message sent by the serving cell access network device,
  • the system message includes the first computing power value of the access network device.
  • the second computing power value of the access network equipment of the neighboring cell is higher than the third computing power threshold
  • the computing power difference value reaches the first offset value, wherein the computing power difference value is the difference between the second computing power value of the access network device of the adjacent cell and the first computing power value of the access network device of the serving cell, and the second computing power value is greater than the first computing power value;
  • the second computing power value is the computing power value sent by the access network device of the neighboring cell to the terminal, that is, the terminal receives the system message sent by the access network device of the neighboring cell,
  • the system message includes the second computing power value of the access network device of the neighboring cell.
  • the above-mentioned first to fourth situations are situations in which the network node includes access network equipment.
  • the fourth computing power value of the wireless access point is greater than the fifth computing power threshold
  • the fourth computing power value of the wireless access point is less than the sixth computing power threshold.
  • the fourth computing power value is the computing power value sent by the wireless access point to the terminal, that is, the terminal receives a broadcast message sent by the wireless access point, in which the broadcast message Including the fourth computing power value of the wireless access point.
  • the computing power value of the network node is used as the measurement data or a part of the measurement data, and the measurement data is reported to the network node.
  • the measurement data when reporting the measurement data to the network node, when the network node includes an access network device, the measurement data is reported to the serving cell access network device, so that the serving cell access network device determines whether to access the network at the source according to the measurement data.
  • the measurement data is reported to the wireless access point.
  • the first computing power value of the access network equipment in the serving cell is higher than the first computing power threshold, the first computing power value is reported to the access network equipment as statistical data; or, the first computing power value is reported to the access network equipment.
  • the signal quality of the access network equipment in the serving cell is reported to the access network equipment as statistical data.
  • the first computing power value of the access network equipment of the serving cell is lower than the second computing power threshold, the first computing power value is reported to the access network equipment as statistical data; or, the first computing power value is connected to the serving cell.
  • the signal quality of the network access device is reported to the access network device as statistical data.
  • the second computing power value of the access network equipment of the neighboring cell is higher than the third computing power threshold, the second computing power value is reported to the access network equipment as statistical data; or, the second computing power value is connected to the neighboring cell.
  • the signal quality of the network access device is reported to the access network device as statistical data.
  • the computing power difference When the computing power difference reaches the first offset value, the computing power difference is reported to the access network device as statistical data; or, the computing power difference and the signal quality difference are reported to the access network device as statistical data,
  • the signal quality difference is the difference between the signal quality of the access network device of the neighboring cell and the signal quality of the access network device of the serving cell.
  • the fourth computing power value of the wireless access point is greater than the fifth computing power threshold, the fourth computing power value is reported to the wireless access point as statistical data; or, the fourth computing power value and the signal of the wireless access point are reported. Quality is reported to the AP as a statistic.
  • the fourth computing power value of the wireless access point is less than the sixth computing power threshold, the fourth computing power value is reported to the wireless access point as statistical data; or, the fourth computing power value and the signal of the wireless access point are reported. Quality is reported to the AP as a statistic.
  • the reporting condition is related to the signal quality of the access network device, that is, the reporting condition may include any one of the following conditions:
  • the first signal quality of the access network device of the serving cell is higher than the first quality threshold, and the first computing power value of the access network device of the serving cell is higher than the first computing power threshold.
  • the first reporting condition is a modification of the A1 event in the above-mentioned LTE measurement event, and optionally, the event is named as the A1' event.
  • the first signal quality of the access network device of the serving cell is lower than the second quality threshold, or the first computing power value of the access network device of the serving cell is lower than the second computing power threshold.
  • the second reporting condition is a modification of the A2 event in the above-mentioned LTE measurement event, and optionally, the event is named as the A2' event.
  • the signal quality difference value is higher than the second offset value, and the second computing power value of the access network equipment of the neighboring cell is higher than the third computing power threshold.
  • the signal quality difference is a difference between the second signal quality of the access network device of the neighboring cell and the first signal quality of the access network device of the serving cell, and the second signal quality is higher than the first signal quality.
  • the third reporting condition is a modification of the A3 event in the above-mentioned LTE measurement event, and optionally, the event is named as the A3' event.
  • the second signal quality of the access network device of the neighboring cell is higher than the third quality threshold, and the second computing power value of the access network device of the neighboring cell is higher than the third computing power threshold.
  • the fourth reporting condition is a modification of the A4 event in the above-mentioned LTE measurement event, and optionally, the event is named as the A4' event.
  • the second signal quality of the access network device of the neighboring cell is higher than the third quality threshold
  • the first signal quality of the access network device of the serving cell is lower than the first quality threshold
  • the second computing power of the access network device of the neighboring cell The value is higher than the third hash power threshold.
  • the fifth reporting condition is a modification of the A5 event in the above-mentioned LTE measurement event, and optionally, the event is named as the A5' event.
  • the third signal quality of the access network device of the different system is higher than the fourth quality threshold, and the third computing power value of the access network device of the different system is higher than the fourth computing power threshold.
  • the sixth reporting condition is a modification of the B1 event in the above-mentioned LTE measurement event, and optionally, the event is named as the B1' event.
  • the same system refers to the interaction between LTE cells, including the same-frequency LTE cell and the inter-frequency LTE cell; the different system refers to the interaction between the LTE system and other systems, such as: LTE The interaction between the system and the Wideband Code Division Multiple Access (WCDMA) system.
  • WCDMA Wideband Code Division Multiple Access
  • the third signal quality of the access network device of the different system is higher than the fourth quality threshold, the quality of the first signal of the access network device of the serving cell is lower than the quality threshold, and the third computing power value of the access network device of the different system is high at the fourth computing power threshold.
  • the seventh reporting condition is a modification of the B2 event in the above-mentioned LTE measurement event, and optionally, the event is named as the B2' event.
  • the reporting condition is also related to the signal quality of the wireless access point, that is, the reporting condition also includes any one of the following conditions:
  • the signal quality of the wireless access point is higher than the fifth quality threshold, and the fourth computing power value of the wireless access point is greater than the fifth computing power threshold.
  • the first reporting condition is a modification of the W1 event in the above-mentioned LTE measurement event, and optionally, the event is named as the W1' event.
  • the signal quality of the first wireless access point in the wireless access set is lower than the sixth quality threshold, the signal quality of the second wireless access point outside the wireless access set is higher than the fifth quality threshold, and the second wireless access point
  • the fourth computing power value of is greater than the fifth computing power threshold.
  • the second reporting condition is a modification of the W2 event in the above-mentioned LTE measurement event, and optionally, the event is named as the W2' event.
  • the signal quality of the wireless access point in the wireless access concentration is lower than the sixth quality threshold, or the fourth computing power value of the wireless access point in the wireless access concentration is lower than the fifth computing force threshold.
  • the third reporting condition is a modification of the W3 event in the above-mentioned LTE measurement event, and optionally, the event is named as the W3' event.
  • the computing power of the network node is used as a measurement factor for the measurement data reporting conditions, so that when the computing power satisfies the computing power
  • the measurement data is reported to the network node, and the network node switches between the network nodes according to the measurement data, so that in the mobile application scenario of AI/ML, the signal quality and computing power resources of the network node can meet the switching requirements. condition.
  • FIG. 3 is a flowchart of a method for reporting and receiving measurement data provided by another exemplary embodiment of the present disclosure. , taking the method applied to a communication system as an example for illustration, as shown in FIG. 3 , the method includes:
  • Step 301 the terminal receives the computing power value sent by the network node.
  • the terminal When the network node includes an access network device, the terminal receives a system message sent by the access network device, where the system message includes the computing power value of the access network device.
  • the terminal when the terminal receives the system message sent by the access network device, it includes receiving the system message sent by the access network device of the serving cell, or receiving the system message sent by the access network device of the neighboring cell. That is, the terminal receives a system message sent by the access network device of the serving cell, and the system message includes the computing power value of the access network device of the serving cell; or, the terminal receives the system message sent by the access network device of the neighboring cell, and the system message contains Including the computing power value of the access network equipment of the neighboring cells.
  • the terminal when the network node includes a wireless access point, the terminal receives a broadcast message sent by the wireless access point, where the broadcast message includes the computing power value of the wireless access point.
  • the network node sends the computing power value to the terminal after determining the computing power value according to at least one parameter of computing capability, radio resource capability and backward link bandwidth.
  • Step 302 in response to determining that the measurement reporting condition is met, report the measurement data to the network node where the terminal resides.
  • the measurement data is associated with the computing power of one or more network nodes.
  • the reporting condition is related to the computing power value and signal quality of the access network device, that is, the reporting condition includes any one of the following conditions:
  • the first signal quality of the access network device of the serving cell is higher than the first quality threshold, and the first computing power value of the access network device of the serving cell is higher than the first computing power threshold.
  • the first signal quality of the access network device of the serving cell is lower than the second quality threshold, or the first computing power value of the access network device of the serving cell is lower than the second computing power threshold.
  • the signal quality difference value is higher than the second offset value, and the second computing power value of the access network equipment of the neighboring cell is higher than the third computing power threshold.
  • the signal quality difference is a difference between the second signal quality of the access network device of the neighboring cell and the first signal quality of the access network device of the serving cell, where the second signal quality is greater than the first signal quality.
  • the second signal quality of the access network device of the neighboring cell is higher than the third quality threshold, and the second computing power value of the access network device of the neighboring cell is higher than the third computing power threshold.
  • the second signal quality of the access network device of the neighboring cell is higher than the third quality threshold
  • the first signal quality of the access network device of the serving cell is lower than the first quality threshold
  • the second computing power of the access network device of the neighboring cell The value is higher than the third hash power threshold.
  • the third signal quality of the access network device of the different system is higher than the fourth quality threshold, and the third computing power value of the access network device of the different system is higher than the fourth computing power threshold.
  • the third signal quality of the access network device of the different system is higher than the fourth quality threshold, the quality of the first signal of the access network device of the serving cell is lower than the quality threshold, and the third computing power value of the access network device of the different system is high at the fourth computing power threshold.
  • the reporting condition is related to the computing power value and signal quality of the wireless access point, that is, the reporting condition includes any one of the following conditions:
  • the signal quality of the wireless access point is higher than the fifth quality threshold, and the fourth computing power value of the wireless access point is greater than the fifth computing power threshold.
  • the signal quality of the first wireless access point in the wireless access set is lower than the sixth quality threshold, the signal quality of the second wireless access point outside the wireless access set is higher than the fifth quality threshold, and the second wireless access point
  • the fourth computing power value of is greater than the fifth computing power threshold.
  • the signal quality of the wireless access point in the wireless access concentration is lower than the sixth quality threshold, or the fourth computing power value of the wireless access point in the wireless access concentration is lower than the fifth computing force threshold.
  • Step 303 the network node receives the measurement data reported by the terminal.
  • the network node is a network node where the terminal resides. That is, the network node receives measurement data reported by terminals residing on the network node.
  • the measurement data is associated with the computing power of one or more network nodes, and the measurement data is sent in response to measurement reporting conditions.
  • the computing power is determined according to at least one of computing capability, radio resource capability and backward link bandwidth.
  • the network node is implemented as a source base station as an example.
  • the source base station After receiving the measurement data, the source base station makes a handover decision according to the measurement data, that is, determines whether to switch the base station accessed by the terminal device from the source base station to the target base station.
  • the source base station is handed over to the target base station, optionally, the source base station sends a handover request to the target base station, and the target base station feeds back a handover request confirmation to the source base station, thereby completing the terminal access.
  • the computing power of the network node is used as a measurement factor for the measurement data reporting conditions, so that when the computing power satisfies the computing power
  • the measurement data is reported to the network node, and the network node switches between the network nodes according to the measurement data, so that in the mobile application scenario of AI/ML, the signal quality and computing power resources of the network node can meet the switching requirements. condition.
  • FIG. 4 is a structural block diagram of an apparatus for reporting measurement data provided by an exemplary embodiment of the present disclosure. Taking the application of the apparatus in a terminal device as an example, as shown in FIG. 4 , the apparatus includes:
  • the sending module 410 is configured to, in response to determining that the measurement reporting condition is met, report measurement data to the network node where the terminal device resides, wherein the measurement data is associated with computing power of one or more network nodes.
  • the network node includes an access network device
  • the reporting conditions include:
  • the first computing power value of the access network equipment of the serving cell is higher than the first computing power threshold
  • the first computing power value of the access network equipment of the serving cell is lower than the second computing power threshold
  • the second computing power value of the access network equipment of the neighboring cell is higher than the third computing power threshold
  • the computing power difference value reaches the first offset value, wherein the computing power difference value is the difference between the second computing power value of the access network equipment of the neighboring cell and the first computing power value of the access network equipment of the serving cell, so The second computing power value is greater than the first computing power value.
  • the reporting condition is related to the signal quality of the access network device.
  • reporting conditions further include:
  • the first signal quality of the serving cell access network device is higher than the first quality threshold, and the first computing power value of the serving cell access network device is higher than the first computing power threshold.
  • reporting conditions further include:
  • the first signal quality of the access network device of the serving cell is lower than the second quality threshold, or the first computing power value of the access network device of the serving cell is lower than the second computing power threshold.
  • reporting conditions further include:
  • the signal quality difference value is higher than the second offset value, and the second computing power value of the adjacent cell access network equipment is higher than the third computing power threshold, wherein the signal quality difference value is the adjacent cell access network equipment.
  • reporting conditions further include:
  • the second signal quality of the access network device of the neighboring cell is higher than the third quality threshold, and the second computing power value of the access network device of the neighboring cell is higher than the third computing power threshold.
  • reporting conditions further include:
  • the second signal quality of the access network device of the neighboring cell is higher than the third quality threshold
  • the first signal quality of the access network device of the serving cell is lower than the second quality threshold
  • the second computing power of the access network device of the neighboring cell The value is higher than the third hash power threshold.
  • reporting conditions further include:
  • the third signal quality of the access network device of the different system is higher than the fourth quality threshold, and the third computing power value of the access network device of the different system is higher than the fourth computing power threshold.
  • reporting conditions further include:
  • the third signal quality of the access network device of the different system is higher than the fourth quality threshold
  • the first signal quality of the access network device of the serving cell is lower than the second quality threshold
  • the third computing power of the access network device of the different system The value is higher than the fourth computing power threshold.
  • the apparatus further includes:
  • the receiving module 420 is configured to receive a system message sent by the access network device, where the system message includes the computing power value of the access network device.
  • the network node includes a wireless access point
  • the reporting conditions include:
  • the fourth computing power value of the wireless access point is greater than the fifth computing power threshold
  • the fourth computing power value of the wireless access point is less than the sixth computing power threshold.
  • the reporting condition is related to the signal quality of the wireless access point.
  • reporting conditions further include:
  • the signal quality of the wireless access point is higher than the fifth quality threshold, and the fourth computing power value of the wireless access point is greater than the fifth computing power threshold.
  • reporting conditions further include:
  • the signal quality of the first wireless access point in the wireless access set is lower than the sixth quality threshold, the signal quality of the second wireless access point outside the wireless access set is higher than the fifth quality threshold, and the second wireless access point
  • the fourth computing power value of the access point is greater than the fifth computing power threshold.
  • reporting conditions further include:
  • the signal quality of the wireless access point in the wireless access set is lower than the sixth quality threshold, or the fourth computing power value of the wireless access point in the wireless access set is lower than the fifth computing power threshold.
  • the apparatus further includes:
  • the receiving module 420 is configured to receive a broadcast message sent by the wireless access point, where the broadcast message includes the computing power value of the wireless access point.
  • FIG. 5 is a structural block diagram of an apparatus for receiving measurement data provided by an exemplary embodiment of the present disclosure. Taking the apparatus applied to a network node as an example, as shown in FIG. 5 , the apparatus includes:
  • the receiving module 510 is configured to receive measurement data reported by the terminal, wherein the measurement data is data reported by the terminal to the network node where it resides when the measurement reporting condition is met, wherein the measurement data is associated with one or more The computing power of network nodes is related.
  • the computing power is determined according to at least one of computing capability, radio resource capability and backward link bandwidth.
  • the present application also discloses a network node, which broadcasts its own computing power value, so that the terminal can measure the computing power value and report to the network node where the terminal resides.
  • the computing power value is determined according to at least one parameter of computing capability, wireless resource capability and backward link bandwidth of the network node.
  • the network node is an access network device (e.g., a base station) that broadcasts the computing power value through a system message.
  • the network node is a wireless access point, which broadcasts the computing power value of the network node on a broadcast channel.
  • the device for reporting and receiving measurement data uses the computing power of the network node as a measurement factor for the measurement data reporting conditions when determining whether the measurement data meets the measurement reporting conditions, so that when the computing power meets the measurement reporting conditions,
  • the computing power conditions require, the measurement data is reported to the network node, and the network node switches between the network nodes according to the measurement data, which satisfies the requirements of the signal quality and computing power resources of the network node in the mobile application scenario of AI/ML.
  • the switching conditions are met.
  • FIG. 6 shows a schematic structural diagram of a terminal provided by an exemplary embodiment of the present disclosure.
  • the terminal includes: a processor 601 , a receiver 602 , a transmitter 603 , a memory 604 , and a bus 605 .
  • the processor 601 includes one or more processing cores, and the processor 601 executes various functional applications and information processing by running software programs and modules.
  • the receiver 602 and the transmitter 603 may be implemented as a communication component, which may be a communication chip.
  • the memory 604 is connected to the processor 601 through the bus 605 .
  • the memory 604 may be configured to store at least one instruction, and the processor 601 may be configured to execute the at least one instruction to implement the various steps in the above method embodiments.
  • memory 604 may be implemented by any type or combination of volatile or non-volatile storage devices including, but not limited to, magnetic or optical disks, electrically erasable programmable Read Only Memory (Electrically Erasable Programmable Read Only Memory, EEPROM), Erasable Programmable Read Only Memory (EPROM), Static Random-Access Memory (SRAM), Read Only Memory (Read Only Memory, ROM), magnetic memory, flash memory, programmable read only memory (Programmable Read Only Memory, PROM).
  • volatile or non-volatile storage devices including, but not limited to, magnetic or optical disks, electrically erasable programmable Read Only Memory (Electrically Erasable Programmable Read Only Memory, EEPROM), Erasable Programmable Read Only Memory (EPROM), Static Random-Access Memory (SRAM), Read Only Memory (Read Only Memory, ROM), magnetic memory, flash memory, programmable read only memory (Programmable Read Only Memory, PROM).
  • volatile or non-volatile storage devices including, but not limited to, magnetic or optical disk
  • a non-transitory computer-readable storage medium including instructions such as a memory including instructions, is also provided, and the instructions can be executed by the processor of the terminal to complete the above-mentioned device switching method executed by the terminal side.
  • the non-transitory computer-readable storage medium may be a ROM, a random access memory (Random Access Memory, RAM), a CD-ROM, a magnetic tape, a floppy disk, an optical data storage device, and the like.
  • a non-transitory computer-readable storage medium when the instructions in the non-transitory computer storage medium are executed by a processor of a terminal, the terminal can execute the above method for reporting measurement data.
  • Fig. 7 is a block diagram of a network node 700 according to an exemplary embodiment.
  • the network node 700 is a base station.
  • the network node 700 includes: a processor 701 , a receiver 702 , a transmitter 703 and a memory 704 .
  • the receiver 702, the transmitter 703 and the memory 704 are respectively connected to the processor 701 through a bus.
  • the processor 701 includes one or more processing cores, and the processor 701 executes the method performed by the network node in the device switching method provided by the embodiment of the present disclosure by running software programs and modules.
  • Memory 704 may be used to store software programs and modules. Specifically, the memory 704 may store the operating system 741 and an application program module 742 required for at least one function.
  • the receiver 702 is used for receiving communication data sent by other devices, and the transmitter 703 is used for sending communication data to other devices.
  • a non-transitory computer-readable storage medium when the instructions in the non-transitory computer storage medium are executed by the processor of the network node, enable the network node to execute the above method for receiving measurement data.
  • An exemplary embodiment of the present disclosure also provides a communication system, the system includes: a terminal and a network node;
  • the terminal includes the device for reporting measurement data provided by the embodiment shown in FIG. 4;
  • the network node includes the apparatus for receiving measurement data provided by the embodiment shown in FIG. 5 .
  • An exemplary embodiment of the present disclosure also provides a communication system, the communication system includes: a terminal and a network node;
  • the terminal includes the terminal provided by the embodiment shown in FIG. 6;
  • the network node includes the network node provided by the embodiment shown in FIG. 7 .
  • An exemplary embodiment of the present disclosure further provides a computer-readable storage medium, where at least one instruction, at least one piece of program, code set or instruction set is stored in the computer-readable storage medium, the at least one instruction, the At least one section of program, the code set or the instruction set is loaded and executed by the processor to implement the steps performed by the terminal in the method for reporting measurement data provided by the above method embodiments; or to implement the measurement provided by the above method embodiments Steps performed by a network node in a method for receiving data.
  • references herein to "a plurality” means two or more.
  • "And/or" which describes the association relationship of associated objects, means that there can be three kinds of relationships, for example, A and/or B, which can mean that A exists alone, A and B exist at the same time, and B exists alone.
  • the character “/” generally indicates that the associated objects are an "or" relationship.

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Abstract

本公开提供了一种测量数据的上报、接收方法、装置、设备及可读存储介质,涉及通信领域。该方法包括:响应于确定符合测量上报条件,向所述终端设备所驻留的网络节点上报测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联。在确定测量数据是否符合上报条件时,即将网络节点的算力作为测量数据上报条件的衡量因素,从而在算力满足算力条件要求时,向网络节点上报测量数据,并由网络节点根据测量数据进行在网络节点之间的切换,满足在AI/ML的移动应用场景下,网络节点的信号质量和算力资源皆满足切换条件。

Description

测量数据的上报、接收方法、装置、设备及可读存储介质 技术领域
本公开涉及通信领域,特别涉及一种测量数据的上报、接收方法、装置、设备及可读存储介质。
背景技术
基于人工智能(Artificial Intelligence,AI)技术或机器学习(Machine Learning,ML)的移动应用日趋密集,内存消耗和功耗都较大,在6G蜂窝网络基础上部署的时候,边缘节点的学习能力或计算资源成为AI应用实现过程中的关键要素。
然而,相关技术中,终端仅会向接入网设备上报无线接口资源相关的测量数据,如:时频资源、信号质量等,而并不涉及对计算资源相关的测量数据进行上报的内容。
发明内容
本公开实施例提供了一种测量数据的上报、接收方法、装置、设备及可读存储介质,能够提高测量数据上报过程中的全面性。所述技术方案如下:
一方面,提供了一种测量数据的上报方法,应用于终端设备中,所述方法包括:
响应于确定符合测量上报条件,向所述终端设备所驻留的网络节点上报测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联。
在一个可选的实施例中,所述算力是根据计算能力、无线资源能力和后向链路带宽中的至少一项确定的。
在一个可选的实施例中,所述网络节点包括接入网设备;
所述上报条件包括:
服务小区接入网设备的第一算力值高于第一算力门限;
或,
服务小区接入网设备的第一算力值低于第二算力门限;
或,
邻小区接入网设备的第二算力值高于第三算力门限;
或,
算力差值达到第一偏移值,其中,所述算力差值为邻小区接入网设备的第二算力值与服务小区接入网设备的第一算力值的差值,所述第二算力值大于所述第一算力值。
在一个可选的实施例中,所述上报条件与所述接入网设备的信号质量相关。
在一个可选的实施例中,所述上报条件还包括:
服务小区接入网设备的第一信号质量高于第一质量门限,且所述服务小区接入网设备的第一算力值高于第一算力门限。
在一个可选的实施例中,所述上报条件还包括:
服务小区接入网设备的第一信号质量低于第二质量门限,或所述服务小区接入网设备的第一算力值低于第二算力门限。
在一个可选的实施例中,所述上报条件还包括:
信号质量差值高于第二偏移值,且邻小区接入网设备的第二算力值高于第三算力门限,其中,所述信号质量差值为所述邻小区接入网设备的第二信号质量与服务小区接入网设备的第一信号质量的差值,所述第二信号质量高于所述第一信号质量。
在一个可选的实施例中,所述上报条件还包括:
邻小区接入网设备的第二信号质量高于第三质量门限,且所述邻小区接入网设备的第二算力值高于第三算力门限。
在一个可选的实施例中,所述上报条件还包括:
邻小区接入网设备的第二信号质量高于第三质量门限,服务小区接入网设备的第一信号质量低于第二质量门限,且所述邻小区接入网设备的第二算力值高于第三算力门限。
在一个可选的实施例中,所述上报条件还包括:
异系统接入网设备的第三信号质量高于第四质量门限,且所述异系统接入网设备的第三算力值高于第四算力门限。
在一个可选的实施例中,所述上报条件还包括:
异系统接入网设备的第三信号质量高于第四质量门限,服务小区接入网设备的第一信号质量低于第二质量门限,且所述异系统接入网设备的第三算力值 高于第四算力门限。
在一个可选的实施例中,所述方法还包括:
接收所述接入网设备发送的系统消息,所述系统消息中包括所述接入网设备的算力值。
在一个可选的实施例中,所述网络节点包括无线接入点;
所述上报条件包括:
所述无线接入点的第四算力值大于第五算力门限;
或,
所述无线接入点的第四算力值小于第六算力门限。
在一个可选的实施例中,所述上报条件与所述无线接入点的信号质量相关。
在一个可选的实施例中,所述上报条件还包括:
所述无线接入点的信号质量高于第五质量门限,且所述无线接入点的第四算力值大于第五算力门限。
在一个可选的实施例中,所述上报条件还包括:
无线接入集中第一无线接入点的信号质量低于第六质量门限,所述无线接入集外的第二无线接入点的信号质量高于第五质量门限,且所述第二无线接入点的第四算力值大于第五算力门限。
在一个可选的实施例中,所述上报条件还包括:
无线接入集中无线接入点的信号质量低于第六质量门限,或所述无线接入集中无线接入点的第四算力值低于第五算力门限。
在一个可选的实施例中,所述方法还包括:
接收所述无线接入点发送的广播消息,所述广播消息中包括所述无线接入点的算力值。
另一方面,提供了一种测量数据的接收方法,应用于网络节点中,所述方法包括:
接收驻留在网络节点上的终端上报的测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联;并且其中,所述测量数据是响应于测量上报条件而发送的。
在一个可选的实施例中,所述方法还包括:
所述算力值是根据计算能力、无线资源能力和后向链路带宽中的至少一项确定的。
另一方面,提供了一种测量数据的上报装置,应用于终端设备中,所述装置包括:
发送模块,被配置为响应于确定符合测量上报条件,向所述终端设备所驻留的网络节点上报测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联。
另一方面,提供了一种测量数据的接收装置,应用于网络节点中,所述装置包括:
接收模块,被配置为接收驻留在网络节点上的终端上报的测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联;并且其中,所述测量数据是响应于测量上报条件而发送的。
另一方面,提供了一种终端,该终端包括:
处理器;
与处理器相连的收发器;
用于存储所述处理器的可执行信令的存储器;
其中,处理器被配置为加载并执行可执行指令以实现如上述本公开实施例所述的测量数据的上报方法。
另一方面,提供了一种网络节点,该网络节点包括:
处理器;
与处理器相连的收发器;
用于存储所述处理器的可执行信令的存储器;
其中,处理器被配置为加载并执行可执行指令以实现如上述本公开实施例所述的测量数据的接收方法。
另一方面,提供了一种计算机可读存储介质,该计算机可读存储介质中存储有至少一条指令、至少一段程序、代码集或指令集,上述至少一条指令、至少一段程序、代码集或指令集由处理器加载并执行以实现如上述本公开实施例所述的测量数据的上报方法或测量数据的接收方法。
本公开实施例提供的技术方案带来的有益效果至少包括:
在确定测量数据是否符合测量上报条件时,将网络节点的算力作为测量数据上报条件的衡量因素,从而在算力满足算力条件要求时,向网络节点上报测量数据,并由网络节点根据测量数据进行在网络节点之间的切换,满足在AI/ML 的移动应用场景下,网络节点的信号质量和算力资源皆满足切换条件。
附图说明
为了更清楚地说明本公开实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本公开的一些实施例,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是本公开一个示例性实施例提供的通信系统的框图;
图2是本公开一个示例性实施例提供的测量数据的上报方法的流程图;
图3是本公开另一个示例性实施例提供的测量数据的上报、接收方法的流程图;
图4是本公开一个示例性实施例提供的测量数据的上报装置的结构框图;
图5是本公开另一个示例性实施例提供的测量数据的接收装置的结构框图;
图6是本公开一个示例性实施例提供的终端的结构框图;
图7是本公开一个示例性实施例提供的网络节点的结构框图。
具体实施方式
为使本公开的目的、技术方案和优点更加清楚,下面将结合附图对本公开实施方式作进一步地详细描述。
图1示出了本公开一个示意性实施例提供的通信系统的框图,该通信系统包括:核心网11、接入网12和终端13。
核心网11中包括若干个核心网设备110。核心网设备110包括接入和移动管理功能(Access and Mobility Management Function,AMF),会话管理功能(Session Management Function,SMF)以及用户面管理功能(User Plane Function,UPF)等设备,其中,AMF用于控制终端的接入权限以及切换等功能,SMF用于提供服务器连续性、服务器的不间断用户体验,如:IP地址和锚点变化等。
接入网12中包括若干个接入网设备120。在一些实施例中,接入网设备120是基站,基站是一种部署在接入网中用以为终端提供无线通信功能的装置。基站包括各种形式的宏基站,微基站,中继站等等。在采用不同的无线接入技术 的系统中,具备基站功能的设备的名称可能会有所不同,例如在长期演进(Long Term Evolution,LTE)系统中,称为eNodeB或者eNB;在5G新空口(New Radio,NR)系统中,称为gNode B或者gNB。随着通信技术的演进,“基站”这一名称可能描述,会变化。为方便本公开实施例中,上述为终端提供无线通信功能的装置统称为接入网设备。
在一些实施例中,接入网12还包括无线接入点(Access Point,AP),作为无线局域网的中心点,也可被称为无线局域网接入设备,向其他装有无线网卡的计算机,也即无线站点(Station,STA)提供无线局域网络接入。
可选地,本公开实施例中涉及的接入网设备120具有边缘计算能力,或,接入网设备120与提供AI/ML计算的服务器连接。
终端13包括各种具有无线通信功能的手持设备、车载设备、可穿戴设备、计算设备或连接到无线调制解调器的其他处理设备,以及各种形式的终端(User Equipment,UE),移动台(Mobile Station,MS),终端(terminal device)等等。为方便描述,上面提到的设备统称为终端。接入网设备120与终端13之间通过某种空口技术互相通信,例如Uu接口。
从网络资源的分配角度考虑,网络资源通常分为两种维度:
第一种,无线接口的资源,也即通常理解的时域资源、频域资源、编码资源、信号质量等;
第二种,算力资源,也即设备的运算能力、中央处理器(Central Processing Unit,CPU)资源、内存资源等。
相关技术中,在资源的分配中,仅考虑了第一种资源的分配,也即,在移动终端的移动过程中,触发接入网设备切换的测量事件是通过信号质量的测量实现的,而在基于AI/ML的移动应用中,需要两种资源都支持应用功能的实现,因此本公开实施例中,在基于第一种资源的测量基础上,增加了对第二种资源的测量,并在终端向网络节点上报测量数据时,将第一种资源的测量数据和第二种资源的测量数据都上报至网络节点。
可选地,通过算力值指示算力资源,算力资源包括如下资源中的至少一种:
1、计算能力:是指网络节点在计算过程中所需要使用到的资源当前的剩余能力,如:内存占用情况、CPU资源使用情况、存储资源使用情况等;
可选地,资源的使用情况以百分比进行衡量,示意性的,当前内存占用20%, 则内存剩余的计算能力为80%。
2、无线资源能力:包括系统提供的带宽、频谱利用率等;
3、后向链路带宽:当网络节点实现为接入网设备时,则后向链路包括接入网设备与核心网网元之间的接口链路,或,接入网设备与提供AI/ML服务的服务器之间的接口链路;当网络节点实现为无线接入点时,则后向链路包括武侠接入点和提供AI/ML服务的服务器之间的接口链路。
其中,当通过上述资源中的至少两种确定算力值时,可选地,将至少两个资源进行加权求和并归一化后,得到算力值。
相关技术中,LTE测量事件主要包含如下事件:
A1事件(Serving becomes better than threshold):表示服务小区信号质量高于一定门限,满足此条件的事件被上报时,eNodeB停止异频/异系统测量;
A2事件(Serving becomes worse than threshold):表示服务小区信号质量低于一定门限,满足此条件的事件被上报时,eNodeB启动异频/异系统测量;
A3事件(Neighbour becomes offset better than serving):表示同频/异频邻小区信号质量高于服务小区的信号质量,满足此条件的事件被上报时,源eNodeB启动同频切换请求;
A4事件(Neighbour becomes better than threshold):表示异频邻小区信号质量高于一定门限,满足此条件的事件被上报时,源eNodeB启动异频切换请求;
A5事件(Serving becomes worse than threshold1and neighbour becomes better than threshold2):表示服务小区信号质量低于一定门限并且邻小区信号质量高于一定门限;
B1事件(Inter RAT neighbour becomes better than threshold):表示异系统邻小区信号质量高于一定门限,满足此条件的事件被上报时,源eNodeB启动异系统切换请求;
B2事件(Serving becomes worse than threshold1and inter RAT neighbour becomes better than threshold2):表示服务小区的信号质量低于一定门限并且异系统邻小区的信号质量高于一定门限;
W1事件(WLAN becomes better than a threshold):表示无线接入点的信号质量高于一定门限;
W2事件(All WLAN inside WLAN mobility set becomes worse than threshold1  and a WLAN outside WLAN mobility set becomes better than threshold2):表示无线接入点对应的无线移动集中所有无线接入点的信号质量低于一定门限,而无线移动集外某个无线接入点的信号质量高于一定门限;
W3事件(All WLAN inside WLAN mobility set becomes worse than a threshold):表示无线接入点对应的无线移动集中,所有无线接入点的信号质量低于一定门限。
结合上述对算力和LTE测量事件的介绍,对本公开提供的测量数据的上报方法进行说明,图2是本公开一个示例性实施例提供的测量数据的上报方法的流程图,以该方法应用于终端设备中为例进行说明,如图2所示,该方法包括:
步骤201,响应于确定符合测量上报条件,向终端设备所驻留的网络节点上报测量数据,其中,测量数据与一个或多个网络节点的算力相关联。
可选地,测量上报条件还包括到达在测量周期中的上报时机,在该上报时机,终端可以上报测量数据,也即周期性上报测量数据;或,测量上报条件还包括终端接收到基站发送的测量上报请求。终端可以根据测量上报请求,来上报测量数据。
可选地,算力值是根据计算能力、无线资源能力和后向链路带宽中的至少一项确定的。
可选地,终端向网络节点上报的测量数据中包括所述一个或多个网络节点的算力值,或,网络节点之间的算力差值。可选地,测量数据中还包括一个或多个网络节点的信号质量值,或,网络节点之间的信号质量差值。
可选地,上述一个或多个网络节点中,可以包括终端设备所驻留的网络节点,也可以不包括终端设备所驻留的网络节点。其中,网络节点包括接入网设备和无线接入点中的任意一种。可选地,网络节点向终端广播自己的算力值,从而终端能够获取到网络节点的算力值,并根据算力值确定是否符合测量上报条件。
可选地,网络节点包括接入网设备和无线接入点中的至少一种。可选地,根据网络节点的算力确定是否符合上报条件时,上报条件包括如下条件中的任意一种:
第一,服务小区接入网设备的第一算力值高于第一算力门限;
第二,服务小区接入网设备的第一算力值低于第二算力门限;
可选地,在第一种和第二种情况下,第一算力值为服务小区接入网设备发送至终端的算力值,即,终端接收服务小区接入网设备发送的系统消息,该系统消息中包括接入网设备的第一算力值。
第三,邻小区接入网设备的第二算力值高于第三算力门限;
第四,算力差值达到第一偏移值,其中,算力差值为邻小区接入网设备的第二算力值与服务小区接入网设备的第一算力值的差值,且第二算力值大于第一算力值;
可选地,在第三种和第四种情况下,第二算力值为邻小区接入网设备发送至终端的算力值,即,终端接收邻小区接入网设备发送的系统消息,该系统消息中包括邻小区接入网设备的第二算力值。
上述第一至第四种情况为网络节点中包括接入网设备的情况。
第五,无线接入点的第四算力值大于第五算力门限;
第六,无线接入点的第四算力值小于第六算力门限。
可选地,在第五种和第六种情况下,第四算力值为无线接入点发送至终端的算力值,即,终端接收无线接入点发送的广播消息,该广播消息中包括无线接入点的第四算力值。
可选地,响应于网络节点的算力值符合上述上报条件,将网络节点的算力值作为测量数据或测量数据的一部分,向网络节点上报测量数据。
可选地,在向网络节点上报测量数据时,当网络节点包括接入网设备,则向服务小区接入网设备上报测量数据,从而服务小区接入网设备根据测量数据确定是否在源接入网设备和目标接入网设备之间进行切换;当网络节点包括无线接入点时,则向该无线接入点上报测量数据。
示意性的,当服务小区接入网设备的第一算力值高于第一算力门限时,将第一算力值作为统计数据上报至接入网设备;或,将第一算力值和服务小区接入网设备的信号质量作为统计数据上报至接入网设备。
当服务小区接入网设备的第一算力值低于第二算力门限时,将第一算力值作为统计数据上报至接入网设备;或,将第一算力值和服务小区接入网设备的信号质量作为统计数据上报至接入网设备。
当邻小区接入网设备的第二算力值高于第三算力门限时,将第二算力值作为统计数据上报至接入网设备;或,将第二算力值和邻小区接入网设备的信号质量作为统计数据上报至接入网设备。
当算力差值达到第一偏移值时,将算力差值作为统计数据上报至接入网设备;或,将算力差值与信号质量差值作为统计数据上报至接入网设备,其中,信号质量差值为邻小区接入网设备的信号质量与服务小区接入网设备的信号质量之间的差值。
当无线接入点的第四算力值大于第五算力门限时,将第四算力值作为统计数据上报至无线接入点;或,将第四算力值和无线接入点的信号质量作为统计数据上报至无线接入点。
当无线接入点的第四算力值小于第六算力门限时,将第四算力值作为统计数据上报至无线接入点;或,将第四算力值和无线接入点的信号质量作为统计数据上报至无线接入点。
可选地,当网络节点包括接入网设备时,上报条件与接入网设备的信号质量相关,也即,上报条件可以包括如下条件中的任意一种:
1、服务小区接入网设备的第一信号质量高于第一质量门限,且服务小区接入网设备的第一算力值高于第一算力门限。
可选地,该第一种上报条件为上述LTE测量事件中A1事件的变形,可选地,将该事件命名为A1’事件。
2、服务小区接入网设备的第一信号质量低于第二质量门限,或服务小区接入网设备的第一算力值低于第二算力门限。
可选地,该第二种上报条件为上述LTE测量事件中A2事件的变形,可选地,将该事件命名为A2’事件。
3、信号质量差值高于第二偏移值,且邻小区接入网设备的第二算力值高于第三算力门限。
可选地,其中信号质量差值为邻小区接入网设备的第二信号质量与服务小区接入网设备的第一信号质量的差值,第二信号质量高于第一信号质量。
可选地,该第三种上报条件为上述LTE测量事件中A3事件的变形,可选地,将该事件命名为A3’事件。
4、邻小区接入网设备的第二信号质量高于第三质量门限,且邻小区接入网设备的第二算力值高于第三算力门限。
可选地,该第四种上报条件为上述LTE测量事件中A4事件的变形,可选地,将该事件命名为A4’事件。
5、邻小区接入网设备的第二信号质量高于第三质量门限,服务小区接入网 设备的第一信号质量低于第一质量门限,且邻小区接入网设备的第二算力值高于第三算力门限。
可选地,该第五种上报条件为上述LTE测量事件中A5事件的变形,可选地,将该事件命名为A5’事件。
6、异系统接入网设备的第三信号质量高于第四质量门限,且异系统接入网设备的第三算力值高于第四算力门限。
可选地,该第六种上报条件为上述LTE测量事件中B1事件的变形,可选地,将该事件命名为B1’事件。
可选地,以LTE系统为例,同系统是指在LTE小区之间的交互,包括同频LTE小区和异频LTE小区;异系统是指LTE系统和其他系统之间的交互,如:LTE系统与宽带码分多址(Wideband Code Division Multiple Access,WCDMA)系统之间的交互。
7、异系统接入网设备的第三信号质量高于第四质量门限,服务小区接入网设备的第一信号质量低于质量门限,且异系统接入网设备的第三算力值高于第四算力门限。
可选地,该第七种上报条件为上述LTE测量事件中B2事件的变形,可选地,将该事件命名为B2’事件。
值得注意的是,上述A1’、A2’、A3’、A4’、A5’、B1’、B2’事件的命名方式仅为示意性的举例,上述事件还可以命名为其他的事件名称,本公开实施例对此不加以限定。
可选地,当网络节点包括无线接入点时,上报条件还与无线接入点的信号质量相关,也即,上报条件还包括如下条件中的任意一种:
1、无线接入点的信号质量高于第五质量门限,且无线接入点的第四算力值大于第五算力门限。
可选地,该第一种上报条件为上述LTE测量事件中W1事件的变形,可选地,将该事件命名为W1’事件。
2、无线接入集中第一无线接入点的信号质量低于第六质量门限,无线接入集外第二无线接入点的信号质量高于第五质量门限,且第二无线接入点的第四算力值大于第五算力门限。
可选地,该第二种上报条件为上述LTE测量事件中W2事件的变形,可选地,将该事件命名为W2’事件。
3、无线接入集中无线接入点的信号质量低于第六质量门限,或无线接入集中无线接入点的第四算力值低于第五算力门限。
可选地,该第三种上报条件为上述LTE测量事件中W3事件的变形,可选地,将该事件命名为W3’事件。
值得注意的是,上述W1’、W2’、W3’事件的命名方式仅为示意性的举例,上述事件还可以命名为其他的事件名称,本公开实施例对此不加以限定。
综上所述,本公开实施例提供的测量数据的上报方法,在确定测量数据是否符合测量上报条件时,将网络节点的算力作为测量数据上报条件的衡量因素,从而在算力满足算力条件要求时,向网络节点上报测量数据,并由网络节点根据测量数据进行在网络节点之间的切换,满足在AI/ML的移动应用场景下,网络节点的信号质量和算力资源皆满足切换条件。
在一个可选的实施例中,终端接收网络节点发送的算力值后,向网络节点上报测量数据,图3是本公开另一个示例性实施例提供的测量数据的上报、接收方法的流程图,以该方法应用于通信系统中为例进行说明,如图3所示,该方法包括:
步骤301,终端接收网络节点发送的算力值。
当网络节点包括接入网设备时,终端接收接入网设备发送的系统消息,该系统消息中包括接入网设备的算力值。
可选地,终端接收接入网设备发送的系统消息时,包括接收服务小区接入网设备发送的系统消息,或,接收邻小区接入网设备发送的系统消息。即,终端接收服务小区接入网设备发送的系统消息,该系统消息中包括服务小区接入网设备的算力值;或,终端接收邻小区接入网设备发送的系统消息,该系统消息中包括邻小区接入网设备的算力值。
可选地,当网络节点包括无线接入地点时,终端接收无线接入点发送的广播消息,该广播消息中包括无线接入点的算力值。
可选地,网络节点根据计算能力、无线资源能力和后向链路带宽中的至少一种参数确定算力值后,向终端发送算力值。
步骤302,响应于确定符合测量上报条件,向终端所驻留的网络节点上报测量数据。
其中,所述测量数据与一个或多个网络节点的算力相关联。
可选地,当网络节点包括接入网设备时,上报条件与接入网设备的算力值和信号质量相关,也即,上报条件包括如下条件中的任意一种:
1、服务小区接入网设备的第一信号质量高于第一质量门限,且服务小区接入网设备的第一算力值高于第一算力门限。
2、服务小区接入网设备的第一信号质量低于第二质量门限,或服务小区接入网设备的第一算力值低于第二算力门限。
3、信号质量差值高于第二偏移值,且邻小区接入网设备的第二算力值高于第三算力门限。
可选地,其中信号质量差值为邻小区接入网设备的第二信号质量与服务小区接入网设备的第一信号质量的差值,其中,第二信号质量大于第一信号质量。
4、邻小区接入网设备的第二信号质量高于第三质量门限,且邻小区接入网设备的第二算力值高于第三算力门限。
5、邻小区接入网设备的第二信号质量高于第三质量门限,服务小区接入网设备的第一信号质量低于第一质量门限,且邻小区接入网设备的第二算力值高于第三算力门限。
6、异系统接入网设备的第三信号质量高于第四质量门限,且异系统接入网设备的第三算力值高于第四算力门限。
7、异系统接入网设备的第三信号质量高于第四质量门限,服务小区接入网设备的第一信号质量低于质量门限,且异系统接入网设备的第三算力值高于第四算力门限。
可选地,当网络节点包括无线接入点时,上报条件与无线接入点的算力值和信号质量相关,也即,上报条件包括如下条件中的任意一种:
1、无线接入点的信号质量高于第五质量门限,且无线接入点的第四算力值大于第五算力门限。
2、无线接入集中第一无线接入点的信号质量低于第六质量门限,无线接入集外第二无线接入点的信号质量高于第五质量门限,且第二无线接入点的第四算力值大于第五算力门限。
3、无线接入集中无线接入点的信号质量低于第六质量门限,或无线接入集中无线接入点的第四算力值低于第五算力门限。
步骤303,网络节点接收终端上报的测量数据。
可选地,网络节点为终端所驻留的网络节点。也即,网络节点接收驻留在 网络节点上的终端上报的测量数据。其中,测量数据与一个或多个网络节点的算力相关联,且测量数据是响应于测量上报条件而发送的。
可选地,算力是根据计算能力、无线资源能力和后向链路带宽中的至少一项确定的。
可选地,以网络节点实现为源基站为例进行说明,源基站接收到测量数据后,根据测量数据进行切换决定,也即确定是否将终端设备接入的基站由源基站切换至目标基站。
可选地,当测量数据符合切换条件时,则由源基站切换至目标基站,可选地,源基站向目标基站发送切换请求,目标基站向源基站反馈切换请求确认,从而完成终端的接入。
综上所述,本公开实施例提供的测量数据的上报方法,在确定测量数据是否符合测量上报条件时,将网络节点的算力作为测量数据上报条件的衡量因素,从而在算力满足算力条件要求时,向网络节点上报测量数据,并由网络节点根据测量数据进行在网络节点之间的切换,满足在AI/ML的移动应用场景下,网络节点的信号质量和算力资源皆满足切换条件。
图4是本公开一个示例性实施例提供的测量数据的上报装置的结构框图,以该装置应用于终端设备中为例,如图4所示,该装置包括:
发送模块410,被配置为响应于确定符合测量上报条件,向所述终端设备所驻留的网络节点上报测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联。
在一个可选的实施例中,所述网络节点包括接入网设备;
所述上报条件包括:
服务小区接入网设备的第一算力值高于第一算力门限;
或,
服务小区接入网设备的第一算力值低于第二算力门限;
或,
邻小区接入网设备的第二算力值高于第三算力门限;
或,
算力差值达到第一偏移值,其中,所述算力差值为邻小区接入网设备的第二算力值与服务小区接入网设备的第一算力值的差值,所述第二算力值大于所 述第一算力值。
在一个可选的实施例中,所述上报条件与所述接入网设备的信号质量相关。
在一个可选的实施例中,所述上报条件还包括:
服务小区接入网设备的第一信号质量高于第一质量门限,且所述服务小区接入网设备的第一算力值高于第一算力门限。
在一个可选的实施例中,所述上报条件还包括:
服务小区接入网设备的第一信号质量低于第二质量门限,或所述服务小区接入网设备的第一算力值低于第二算力门限。
在一个可选的实施例中,所述上报条件还包括:
信号质量差值高于第二偏移值,且邻小区接入网设备的第二算力值高于第三算力门限,其中,所述信号质量差值为所述邻小区接入网设备的第二信号质量与服务小区接入网设备的第一信号质量的差值,所述第二信号质量高于所述第一信号质量。
在一个可选的实施例中,所述上报条件还包括:
邻小区接入网设备的第二信号质量高于第三质量门限,且所述邻小区接入网设备的第二算力值高于第三算力门限。
在一个可选的实施例中,所述上报条件还包括:
邻小区接入网设备的第二信号质量高于第三质量门限,服务小区接入网设备的第一信号质量低于第二质量门限,且所述邻小区接入网设备的第二算力值高于第三算力门限。
在一个可选的实施例中,所述上报条件还包括:
异系统接入网设备的第三信号质量高于第四质量门限,且所述异系统接入网设备的第三算力值高于第四算力门限。
在一个可选的实施例中,所述上报条件还包括:
异系统接入网设备的第三信号质量高于第四质量门限,服务小区接入网设备的第一信号质量低于第二质量门限,且所述异系统接入网设备的第三算力值高于第四算力门限。
在一个可选的实施例中,所述装置还包括:
接收模块420,被配置为接收所述接入网设备发送的系统消息,所述系统消息中包括所述接入网设备的算力值。
在一个可选的实施例中,所述网络节点包括无线接入点;
所述上报条件包括:
所述无线接入点的第四算力值大于第五算力门限;
或,
所述无线接入点的第四算力值小于第六算力门限。
在一个可选的实施例中,所述上报条件与所述无线接入点的信号质量相关。
在一个可选的实施例中,所述上报条件还包括:
所述无线接入点的信号质量高于第五质量门限,且所述无线接入点的第四算力值大于第五算力门限。
在一个可选的实施例中,所述上报条件还包括:
无线接入集中第一无线接入点的信号质量低于第六质量门限,所述无线接入集外的第二无线接入点的信号质量高于第五质量门限,且所述第二无线接入点的第四算力值大于第五算力门限。
在一个可选的实施例中,所述上报条件还包括:
无线接入集中无线接入点的信号质量低于第六质量门限,或所述无线接入集中无线接入点的第四算力值低于第五算力门限。
在一个可选的实施例中,所述装置还包括:
接收模块420,被配置为接收所述无线接入点发送的广播消息,所述广播消息中包括所述无线接入点的算力值。
图5是本公开一个示例性实施例提供的测量数据的接收装置的结构框图,以该装置应用于网络节点中为例,如图5所示,该装置包括:
接收模块510,被配置为接收终端上报的测量数据,其中,所述测量数据为符合测量上报条件时,终端向所驻留的网络节点上报的数据,其中,所述测量数据与一个或多个网络节点的算力相关联。
在一个可选的实施例中,所述算力是根据计算能力、无线资源能力和后向链路带宽中的至少一项确定的。
本申请还公开了一种网络节点,所述网络节点广播与自身的算力值,以使得所述终端能够测量到该算力值,从而向该终端所驻留的网络节点进行上报。所述算力值是根据该网络节点的计算能力、无线资源能力和后向链路带宽中的至少一种参数确定的。
在一种实施方式中,所述网络节点是接入网设备(例如,基站),其通过系 统消息广播所述算力值。而在另一种实施方式中,所述网络节点是无线接入点,其在广播信道上对所述网络节点的算力值进行广播。
综上所述,本公开实施例提供的测量数据的上报、接收装置,在确定测量数据是否符合测量上报条件时,将网络节点的算力作为测量数据上报条件的衡量因素,从而在算力满足算力条件要求时,向网络节点上报测量数据,并由网络节点根据测量数据进行在网络节点之间的切换,满足在AI/ML的移动应用场景下,网络节点的信号质量和算力资源皆满足切换条件。
图6示出了本公开一个示例性实施例提供的终端的结构示意图,该终端包括:处理器601、接收器602、发射器603、存储器604和总线605。
处理器601包括一个或者一个以上处理核心,处理器601通过运行软件程序以及模块,从而执行各种功能应用以及信息处理。
接收器602和发射器603可以实现为一个通信组件,该通信组件可以是一块通信芯片。
存储器604通过总线605与处理器601相连。
存储器604可用于存储至少一个指令,处理器601用于执行该至少一个指令,以实现上述方法实施例中的各个步骤。
此外,存储器604可以由任何类型的易失性或非易失性存储设备或者它们的组合实现,易失性或非易失性存储设备包括但不限于:磁盘或光盘,电可擦除可编程只读存储器(Electrically Erasable Programmable Read Only Memory,EEPROM),可擦除可编程只读存储器(Erasable Programmable Read Only Memory,EPROM),静态随时存取存储器(Static Random-Access Memory,SRAM),只读存储器(Read Only Memory,ROM),磁存储器,快闪存储器,可编程只读存储器(Programmable Read Only Memory,PROM)。
在示例性实施例中,还提供了一种包括指令的非临时性计算机可读存储介质,例如包括指令的存储器,上述指令可由终端的处理器执行以完成上述设备切换方法中由终端侧执行的方法。例如,所述非临时性计算机可读存储介质可以是ROM、随机存取存储器(Random Access Memory,RAM)、CD-ROM、磁带、软盘和光数据存储设备等。
一种非临时性计算机可读存储介质,当所述非临时性计算机存储介质中的指令由终端的处理器执行时,使得终端能够执行上述测量数据的上报方法。
图7是根据一示例性实施例示出的一种网络节点700的框图。在一些实施例中,该网络节点700是基站。
网络节点700包括:处理器701、接收机702、发射机703和存储器704。接收机702、发射机703和存储器704分别通过总线与处理器701连接。
其中,处理器701包括一个或者一个以上处理核心,处理器701通过运行软件程序以及模块以执行本公开实施例提供的设备切换方法中网络节点所执行的方法。存储器704可用于存储软件程序以及模块。具体的,存储器704可存储操作系统741、至少一个功能所需的应用程序模块742。接收机702用于接收其他设备发送的通信数据,发射机703用于向其他设备发送通信数据。
一种非临时性计算机可读存储介质,当所述非临时性计算机存储介质中的指令由网络节点的处理器执行时,使得网络节点能够执行上述测量数据的接收方法。
本公开一示例性实施例还提供了一种通信系统,所述系统包括:终端和网络节点;
所述终端包括如图4所示实施例提供的测量数据的上报装置;
所述网络节点包括如图5所示实施例提供的测量数据的接收装置。
本公开一示例性实施例还提供了一种通信系统,所述通信系统包括:终端和网络节点;
所述终端包括如图6所示实施例提供的终端;
所述网络节点包括如图7所示实施例提供的网络节点。
本公开一示例性实施例还提供了一种计算机可读存储介质,所述计算机可读存储介质中存储有至少一条指令、至少一段程序、代码集或指令集,所述至少一条指令、所述至少一段程序、所述代码集或指令集由所述处理器加载并执行以实现上述各个方法实施例提供的测量数据的上报方法中由终端执行的步骤;或实现上述各个方法实施例提供的测量数据的接收方法中由网络节点执行的步骤。
应当理解的是,在本文中提及的“多个”是指两个或两个以上。“和/或”,描 述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。字符“/”一般表示前后关联对象是一种“或”的关系。
本领域技术人员在考虑说明书及实践这里公开的发明后,将容易想到本公开的其它实施方案。本公开旨在涵盖本公开的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本公开的一般性原理并包括本公开未公开的本技术领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本公开的真正范围和精神由下面的权利要求指出。
应当理解的是,本公开并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其范围进行各种修改和改变。本公开的范围仅由所附的权利要求来限制。

Claims (25)

  1. 一种测量数据的上报方法,其特征在于,应用于终端设备中,所述方法包括:
    响应于确定符合测量上报条件,向所述终端设备所驻留的网络节点上报测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联。
  2. 根据权利要求1所述的方法,其特征在于,所述算力是根据计算能力、无线资源能力和后向链路带宽中的至少一项确定的。
  3. 根据权利要求1所述的方法,其特征在于,所述网络节点包括接入网设备;
    所述上报条件包括:
    服务小区接入网设备的第一算力值高于第一算力门限;
    或,
    服务小区接入网设备的第一算力值低于第二算力门限;
    或,
    邻小区接入网设备的第二算力值高于第三算力门限;
    或,
    算力差值达到第一偏移值,其中,所述算力差值为邻小区接入网设备的第二算力值与服务小区接入网设备的第一算力值的差值,所述第二算力值大于所述第一算力值。
  4. 根据权利要求1-3所述的方法,其特征在于,
    所述上报条件与所述接入网设备的信号质量相关。
  5. 根据权利要求4所述的方法,其特征在于,所述上报条件还包括:
    服务小区接入网设备的第一信号质量高于第一质量门限,且所述服务小区接入网设备的第一算力值高于第一算力门限。
  6. 根据权利要求4所述的方法,其特征在于,所述上报条件还包括:
    服务小区接入网设备的第一信号质量低于第二质量门限,或所述服务小区接入网设备的第一算力值低于第二算力门限。
  7. 根据权利要求4所述的方法,其特征在于,所述上报条件还包括:
    信号质量差值高于第二偏移值,且邻小区接入网设备的第二算力值高于第三算力门限,其中,所述信号质量差值为所述邻小区接入网设备的第二信号质量与服务小区接入网设备的第一信号质量的差值,所述第二信号质量高于所述第一信号质量。
  8. 根据权利要求4所述的方法,其特征在于,所述上报条件还包括:
    邻小区接入网设备的第二信号质量高于第三质量门限,且所述邻小区接入网设备的第二算力值高于第三算力门限。
  9. 根据权利要求4所述的方法,其特征在于,所述上报条件还包括:
    邻小区接入网设备的第二信号质量高于第三质量门限,服务小区接入网设备的第一信号质量低于第二质量门限,且所述邻小区接入网设备的第二算力值高于第三算力门限。
  10. 根据权利要求4所述的方法,其特征在于,所述上报条件还包括:
    异系统接入网设备的第三信号质量高于第四质量门限,且所述异系统接入网设备的第三算力值高于第四算力门限。
  11. 根据权利要求4所述的方法,其特征在于,所述上报条件还包括:
    异系统接入网设备的第三信号质量高于第四质量门限,服务小区接入网设备的第一信号质量低于第二质量门限,且所述异系统接入网设备的第三算力值高于第四算力门限。
  12. 根据权利要求1至3任一所述的方法,其特征在于,所述方法还包括:
    接收所述接入网设备发送的系统消息,所述系统消息中包括所述接入网设备的算力值。
  13. 根据权利要求1所述的方法,其特征在于,所述网络节点包括无线接入点;
    所述上报条件包括:
    所述无线接入点的第四算力值大于第五算力门限;
    或,
    所述无线接入点的第四算力值小于第六算力门限。
  14. 根据权利要求1、2、12、13中的任一项所述的方法,其特征在于,
    所述上报条件与所述无线接入点的信号质量相关。
  15. 根据权利要求14所述的方法,其特征在于,所述上报条件还包括:
    所述无线接入点的信号质量高于第五质量门限,且所述无线接入点的第四算力值大于第五算力门限。
  16. 根据权利要求14所述的方法,其特征在于,所述上报条件还包括:
    无线接入集中第一无线接入点的信号质量低于第六质量门限,所述无线接入集外的第二无线接入点的信号质量高于第五质量门限,且所述第二无线接入点的第四算力值大于第五算力门限。
  17. 根据权利要求14所述的方法,其特征在于,所述上报条件还包括:
    无线接入集中无线接入点的信号质量低于第六质量门限,或所述无线接入集中无线接入点的第四算力值低于第五算力门限。
  18. 根据权利要求13所述的方法,其特征在于,所述方法还包括:
    接收所述无线接入点发送的广播消息,所述广播消息中包括所述无线接入点的算力值。
  19. 一种测量数据的接收方法,其特征在于,应用于网络节点,所述方法包括:
    接收驻留在网络节点上的终端上报的测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联;并且其中,所述测量数据是响应于测量上报条件而发送的。
  20. 根据权利要求19所述的方法,其特征在于,所述算力是根据计算能力、无线资源能力和后向链路带宽中的至少一项确定的。
  21. 一种测量数据的上报装置,其特征在于,应用于终端设备中,所述装置包括:
    发送模块,被配置为响应于确定符合测量上报条件,向所述终端设备所驻留的网络节点上报测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联。
  22. 一种测量数据的接收装置,其特征在于,应用于网络节点中,所述装置包括:
    接收模块,被配置为接收驻留在网络节点上的终端上报的测量数据,其中,所述测量数据与一个或多个网络节点的算力相关联;并且其中,所述测量数据是响应于测量上报条件而发送的。
  23. 一种终端,其特征在于,所述终端包括:
    处理器;
    与所述处理器相连的收发器;
    用于存储所述处理器的可执行信令的存储器;
    其中,所述处理器被配置为加载并执行可执行指令以实现如权利要求1至18任一所述的测量数据的上报方法。
  24. 一种网络节点,其特征在于,所述网络节点包括:
    处理器;
    与所述处理器相连的收发器;
    用于存储所述处理器的可执行信令的存储器;
    其中,所述处理器被配置为加载并执行可执行指令以实现如权利要求19或20所述的测量数据的接收方法。
  25. 一种计算机可读存储介质,所述计算机可读存储介质中存储有至少一条指令、至少一段程序、代码集或指令集,所述至少一条指令、所述至少一段程序、所述代码集或所述指令集由处理器加载并执行以实现如权利要求1至18任一所述的测量数据的上报方法,或如权利要求19或20所述的测量数据的接收方法。
PCT/CN2020/101327 2020-07-10 2020-07-10 测量数据的上报、接收方法、装置、设备及可读存储介质 WO2022006853A1 (zh)

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