WO2022257850A1 - 业务数据传输方法、装置、通信设备、存储介质及系统 - Google Patents

业务数据传输方法、装置、通信设备、存储介质及系统 Download PDF

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Publication number
WO2022257850A1
WO2022257850A1 PCT/CN2022/096837 CN2022096837W WO2022257850A1 WO 2022257850 A1 WO2022257850 A1 WO 2022257850A1 CN 2022096837 W CN2022096837 W CN 2022096837W WO 2022257850 A1 WO2022257850 A1 WO 2022257850A1
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information
target
logical channel
following
network side
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PCT/CN2022/096837
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English (en)
French (fr)
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曾超君
孙晓东
陈晓航
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维沃移动通信有限公司
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Publication of WO2022257850A1 publication Critical patent/WO2022257850A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/0205Traffic management, e.g. flow control or congestion control at the air interface
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/08Load balancing or load distribution
    • H04W28/09Management thereof
    • H04W28/0917Management thereof based on the energy state of entities
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/16Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]
    • H04W28/18Negotiating wireless communication parameters
    • H04W28/22Negotiating communication rate
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation

Definitions

  • the present application belongs to the technical field of communication, and in particular relates to a service data transmission method, device, communication equipment, storage medium and system.
  • Extended reality refers to all real and virtual combined environments and human-computer interactions generated by computer technology and wearable devices, which can include augmented reality (Augmented Reality, AR), mixed reality (Mix reality, MR) , virtual reality (Virtual Reality, VR) and other representative forms, and the cross fields between them.
  • AR Augmented Reality
  • Mix reality Mixed reality
  • VR Virtual Reality
  • Embodiments of the present application provide a service data transmission method, device, communication device, storage medium, and system, which can solve the problem of how to efficiently transmit XR service data using limited air interface resources.
  • a service data transmission method includes: a user equipment (User Equipment, UE) sends target information to a network side device, and the target information is used to determine a transmission strategy for target service data, and the target
  • the information includes at least one of the following: first information and second information.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side device to adjust the data packet delay budget (Packet Delay Budget, PDB) of the air interface data transmission
  • PDB Packet Delay Budget
  • the third indication information is used to instruct the network side device to adjust the encoding rate of the video stream/audio stream
  • the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • a service data transmission method comprising: a network side device receiving target information sent by a UE, the target information including at least one of the following: first information and second information; the network side device According to the target information, the transmission strategy of the target business data is determined.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • a service data transmission device includes: a sending unit.
  • the sending unit is configured to send target information to the network side device, the target information is used to determine a transmission policy of target service data, and the target information includes at least one of the following: first information and second information.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • a service data transmission device includes: a receiving unit and a determining unit.
  • the receiving unit is configured to receive target information sent by the UE, where the target information includes at least one of the following items: first information and second information.
  • the determining unit is configured to determine the transmission strategy of the target service data according to the target information received by the receiving unit.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • a UE in a fifth aspect, includes a processor, a memory, and a program or instruction stored in the memory and operable on the processor, when the program or instruction is executed by the processor. The steps of the method described in the first aspect are realized.
  • a network-side device includes a processor, a memory, and a program or instruction stored in the memory and operable on the processor.
  • the program or instruction is executed by the The processor implements the steps of the method described in the second aspect when executed.
  • a UE including a processor and a communication interface, wherein the communication interface is used to send target information to a network side device, the target information is used to determine a transmission policy of target service data, and the target information includes At least one of the following: first information and second information.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • a network side device including a processor and a communication interface, wherein the communication interface is used to receive target information sent by the UE, and the target information includes at least one of the following: first information and second information; and according to the target information, determine the transmission strategy of the target business data.
  • the first information includes at least one of the following: UE power consumption-related information, UE heat dissipation-related information, UE remaining power information, and UE load-related information.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • a readable storage medium is provided, and programs or instructions are stored on the readable storage medium, and when the programs or instructions are executed by a processor, the steps of the method described in the first aspect are realized, or the steps of the method described in the first aspect are realized, or The steps of the method described in the second aspect.
  • a chip in a tenth aspect, includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the method as described in the first aspect , or implement the method described in the second aspect.
  • a computer program/program product is provided, the computer program/program product is stored in a non-transitory storage medium, and the program/program product is executed by at least one processor to implement the first The steps of the service data transmission method described in the first aspect, or the steps of implementing the service data transmission method described in the second aspect.
  • the UE may send target information to the network-side device, so that the network-side device may determine a transmission policy of the target service data according to the target information, so as to transmit the target service data.
  • the UE can indicate to the network side equipment the auxiliary information that the UE receives the target service data, that is, some information of the UE itself (power consumption, heat dissipation, remaining power, load, etc.) and/or some suggestions from the UE to the network side equipment /recommended/desired information, so that the network side device can determine a better/more matching transmission strategy according to the UE's own information and/or the UE's suggested information, so that the network side device can provide the UE with a better/more matching way Send target business data, so as to achieve the purpose of efficiently transmitting target business data using limited air interface resources, and also meet business needs and improve business capacity.
  • FIG. 1 is a schematic structural diagram of a communication system provided by an embodiment of the present application.
  • FIG. 2 is a schematic diagram of a service data transmission method provided by an embodiment of the present application.
  • Fig. 3 is one of the schematic structural diagrams of a service data transmission device provided in the embodiment of the present application.
  • Fig. 4 is the second structural schematic diagram of a service data transmission device provided by the embodiment of the present application.
  • FIG. 5 is a schematic diagram of a hardware structure of a communication device provided in an embodiment of the present application.
  • FIG. 6 is a schematic diagram of a hardware structure of a UE provided in an embodiment of the present application.
  • FIG. 7 is a schematic diagram of a hardware structure of a network side device provided by an embodiment of the present application.
  • first, second and the like in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific sequence or sequence. It is to be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the application are capable of operation in sequences other than those illustrated or described herein and that "first" and “second” distinguish objects. It is usually one category, and the number of objects is not limited. For example, there may be one or more first objects.
  • “and/or” in the description and claims means at least one of the connected objects, and the character “/” generally means that the related objects are an "or” relationship.
  • LTE Long Term Evolution
  • LTE-Advanced LTE-Advanced
  • LTE-A Long Term Evolution-Advanced
  • CDMA Code Division Multiple Access
  • TDMA Time Division Multiple Access
  • FDMA Frequency Division Multiple Access
  • OFDMA Orthogonal Frequency Division Multiple Access
  • SC-FDMA Single-carrier Frequency-Division Multiple Access
  • system and “network” in the embodiments of the present application are often used interchangeably, and the described technology can be used for the above-mentioned system and radio technology, and can also be used for other systems and radio technologies.
  • the following description describes the New Radio (New Radio, NR) system for example purposes, and uses NR terminology in most of the following descriptions, but these techniques can also be applied to applications other than NR system applications, such as the 6th Generation (6th Generation , 6G) communication system.
  • 6th Generation 6th Generation
  • Fig. 1 shows a block diagram of a wireless communication system to which the embodiment of the present application is applicable.
  • the wireless communication system includes UE 11 and network side equipment 12.
  • UE 11 can also be called a terminal device or a terminal, and UE 11 can be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer) or a notebook computer, a personal digital assistant (Personal Digital Assistant, PDA) ), handheld computer, netbook, ultra-mobile personal computer (ultra-mobile personal computer, UMPC), mobile Internet device (Mobile Internet Device, MID), wearable device (Wearable Device) or vehicle-mounted equipment (VUE), pedestrian terminal ( PUE) and other terminal-side devices, wearable devices include: smart watches, bracelets, earphones, glasses, etc.
  • the network side device 12 may be a base station or a core network, where a base station may be called a node B, an evolved node B, an access point, a base transceiver station (Base Transceiver Station, BTS), a radio base station, a radio transceiver, a basic service Basic Service Set (BSS), Extended Service Set (ESS), Node B, Evolved Node B (eNB), Home Node B, Home Evolved Node B, WLAN access point, WiFi node, transmission Receiving point (Transmitting Receiving Point, TRP) or some other suitable term in the field, as long as the same technical effect is achieved, the base station is not limited to specific technical terms. It should be noted that in the embodiment of this application, only The base station in the NR system is taken as an example, but the specific type of the base station is not limited.
  • Extended Reality Including AR, MR, VR and other representative forms, as well as the cross fields between them.
  • the levels of virtual worlds range from partial sensory input to fully immersive virtual reality.
  • a key aspect of XR is the expansion of human experience, especially that related to presence (represented by VR) and cognitive acquisition (represented by AR).
  • the uplink mainly transmits relatively dense small data packets. These small data packets can carry information such as gestures and control as the input and reference of downlink presentation data; the downlink mainly transmits multimedia data such as video and audio.
  • multimedia data such as video and audio.
  • the timely reception and presentation of these multimedia data provides users with an immersive experience.
  • data packets arrive periodically or quasi-periodically, the data rate can reach tens or even hundreds of Mbps, the typical value of FPS (frame rate) is 60 or 120 Hz, and the interval between adjacent data packets is roughly It is 1/FPS second, and these data generally need to be successfully transmitted within 10ms on the air interface, and the transmission success rate must not be lower than 99% or even 99.9%.
  • uplink may also transmit multimedia data such as video and audio. It can also be relaxed, for example, it generally needs to be successfully transmitted within 60ms; the characteristics of downlink data transmission are basically consistent with those of VR services.
  • the service data transmission method provided by the embodiment of the present application will be described below through a specific interaction embodiment (interaction between the UE and the network side device).
  • FIG. 2 shows a flow chart of the service data transmission method provided in the embodiment of the present application.
  • the service data transmission method provided by the embodiment of the present application may include the following steps 201 to 203 .
  • step 201 the UE sends target information to the network side device.
  • the above target information is used by the network side device to determine the transmission policy of the target service data, and the target information includes at least one of the following: first information and second information.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • the foregoing target service data may be XR service data.
  • the above second information is the suggestion information from the UE side to the network side device (that is, the suggestion information, recommendation information or preference information received by the UE for downlink service data).
  • the network side device can follow the Perform the corresponding operation according to the instruction of the second information; or, do not follow or not completely follow the instruction of the second information to perform the corresponding operation, but according to the situation of the network side device itself, and/or, refer to/integrate the UE side Enter the information and perform the corresponding operation.
  • the UE may consider at least one of the following factors 1 to 3, and report the information related to the downlink service data, so that the network side device can send the downlink service data to the UE according to the information (ie The network side device may use this information as decision input or reference for operations such as downlink service data transmission/downlink scheduling/downlink packet loss).
  • Factor 1 the current wireless channel environment and/or channel quality of the UE.
  • the UE can judge based on Radio Link Monitoring (Radio Link Monitoring, RLM)/Radio Resource Management (Radio Resource Management, RRM)/downlink channel state information (Channel State Information, CSI) measurement information.
  • RLM Radio Link Monitoring
  • RRM Radio Resource Management
  • CSI Channel State Information
  • the remaining power value is greater than or equal to a preset threshold
  • it can receive more service data/service data with higher quality requirements, otherwise it can only receive Less data to ensure that the UE does not overheat, or the remaining power can last for a long time.
  • the processor of the UE when the processor of the UE is relatively idle, it can receive more data, or can receive data with a higher degree of compression that requires more complex processing at the receiving end to recover; otherwise, it can only receive less data, or only require
  • the data processed by the receiving end is relatively simple to ensure the smoothness of processing.
  • the UE may report information about the channel where the UE is currently located, such as the wireless channel environment and/or channel quality, etc.
  • information about the channel where the UE is currently located such as the wireless channel environment and/or channel quality, etc.
  • the UE may report at least one item of information related to power consumption of the UE, information related to heat dissipation of the UE, and information about remaining power of the UE.
  • the UE may report UE load-related information.
  • the UE's power consumption-related information includes at least one of the following: overall power consumption information of the UE, and power consumption information of at least one module in the UE.
  • the overall power consumption information of the UE may be understood as: the power consumption information of the UE for the overall equipment of the UE.
  • the overall power consumption information of the UE may include at least one of the following: the absolute amount of power consumption, the ratio of actual power consumption to rated power consumption/recommended power consumption, and the current power consumption level of the UE ( low/medium/high), etc.
  • the power consumption information of the above at least one module may be the power consumption information of each module in the UE, or may be the power consumption information of one or more important/key modules in the UE.
  • key/key modules may include: a bottom data transceiver module (modem), a service data processing module (application processor), and the like.
  • the representation form of the above-mentioned overall power consumption information (that is, the absolute amount of power consumption, the ratio of actual power consumption to rated power consumption/recommended power consumption, the current power consumption of UE at least one of the power consumption level (low/medium/high) etc.) to report.
  • the heat dissipation related information of the UE includes at least one of the following: the overall temperature information of the UE, the temperature information of at least one module in the UE, the current heat dissipation level of the UE, the fourth indication information, and the target difference value.
  • the fourth indication information is used to indicate whether the temperature value corresponding to the UE is greater than or equal to the alarm threshold for heat dissipation; the target difference is the difference between the temperature value corresponding to the UE and the alarm threshold.
  • the overall temperature information of the UE may be understood as: for the overall equipment of the UE, the temperature information of the UE.
  • the temperature value corresponding to the UE may be understood as an overall temperature value of the UE, or a temperature value of at least one module in the UE.
  • the temperature information of the above at least one module may be the temperature information of each module in the UE, or may be the temperature information of one or more important/key modules in the UE.
  • key/key modules may include: the underlying data transceiving module, business data processing module (application processor) and so on.
  • the remaining power information of the UE includes at least one of the following: a percentage of the remaining power of the UE, and a first duration.
  • the first duration is a duration for supporting continuous operation/working of the UE (that is, a duration for which the UE can continue to support/operate according to the current power consumption situation of the UE).
  • the load-related information of the UE includes at least one of the following: overall load information of the UE, load information of at least one module in the UE, and a target load amount expected by the UE.
  • the overall load information of the UE may be understood as: for the overall equipment of the UE, the load information of the UE.
  • the load in this embodiment of the present application may include at least one of the following: memory usage, processor occupancy, and the like.
  • the overall load information of the UE may include at least one of the following: an occupation ratio of the memory and/or processor, a load level of the memory and/or processor, and the like.
  • the load information of the above at least one module may be the load information of each module in the UE, or may be the load information of one or more important/key modules in the UE.
  • key/key modules may include: the underlying data transceiving module, business data processing module (application processor) and so on.
  • the expression form of the above-mentioned overall load information that is, at least one of the occupation ratio of the memory and/or processor, the load level of the memory and/or processor, etc. ) to report.
  • the target load expected by the UE mentioned above refers to the load of the entire UE device or one or more modules in the UE, and the corresponding suggestions given (that is, the UE expects the entire device, or one or more modules of the UE itself) The load of multiple modules reaches the target load amount).
  • the UE simultaneously reports the current load of the whole UE equipment and the suggested target load. Or, the UE gives a load adjustment suggestion for the UE equipment as a whole, for example, the UE suggests reducing the storage usage (and/or, the amount that needs to be reduced for the storage usage), or reducing the number of processing tasks/computing amount (and/or, the number of tasks/computing The amount that needs to be adjusted down) and so on.
  • the above-mentioned target logical channel/logical channel group includes at least one of the following: a logical channel/logical channel group that satisfies the first preset condition, and a logical channel/logical channel group corresponding to the video transmission enhancement layer , All Logical Channels/Logical Channel Groups.
  • the UE may report the first indication information to the network side device, and indicate the UE's suggestion information for downlink service data transmission/reception to the network side device.
  • the specific suggestion information may include the following suggestions 1 to 3. at least one.
  • Suggestion 1 The UE only receives data corresponding to logical channels/logical channel groups whose attributes meet the first preset condition.
  • the UE only receives data corresponding to a logical channel whose priority is higher than or equal to a preset value (for example, the priority corresponding to the configuration of the logical channel (such as the priority parameter in the high-level configuration parameter group Logical Channel Config) is less than or equal to a preset value), the data network side equipment corresponding to other logical channels may not need to transmit/send, or when the priority is low, the network side equipment may try its best according to its own actual situation and/or comprehensively different reference factors, etc. In order to transmit the corresponding data properly, there is no need to guarantee or strictly guarantee the transmission quality of this part of the data.
  • a preset value for example, the priority corresponding to the configuration of the logical channel (such as the priority parameter in the high-level configuration parameter group Logical Channel Config) is less than or equal to a preset value
  • Proposal 2 The UE only receives data corresponding to the logical channel/logical channel group corresponding to the video transmission enhancement layer.
  • the video coding at the source end supports the distinction between the base layer and the enhancement layer
  • the data corresponding to the base layer must be received correctly to ensure the basic operation of the service source (such as video playback), and the enhancement layer can be superimposed on the base layer Presentation (may also be an independent presentation), the presentation of which can enhance the user experience.
  • the basic operation of the service source needs to be guaranteed first.
  • the transmission of the base layer and the enhancement layer can be guaranteed at the same time.
  • the base layer and the enhancement layer of video transmission can also be distinguished on the air interface, and the specific distinction method can be identified/distinguished by the priority of the logical channel/logical channel group.
  • the manner in which the network side device identifies the base layer and the enhancement layer of the video transmission is not limited here.
  • audio coding or coding of other information also distinguishes between the base layer and the enhancement layer, operations similar to the above can also be used, and will not be repeated here.
  • Suggestion 3 The UE normally receives data corresponding to all logical channels/logical channel groups.
  • the UE can normally receive data corresponding to all logical channels/logical channel groups, and the network side equipment does not need to delete or discard some downlink service data, or process it with low priority. This can be understood as a recovery operation for the above-mentioned suggestion 1 or suggestion 2.
  • the UE may report the second indication information to the network side device to instruct the network side device to adjust the PDB suggestion information for air interface data transmission.
  • the specific suggestion information may include the following suggestion 4.
  • the network side device can increase or decrease the PDB for air interface data transmission.
  • the UE After the service data is submitted from the air interface to the receiving end of the service source due to the heavy processing load of the application layer, the UE still needs more processing time. Therefore, the UE can notify the network side device that the PDB for air interface data transmission needs to be reduced, so as to ensure The data on the air interface can be submitted in a more timely manner, leaving the compressed time margin to the service source and receiving end for corresponding processing, thereby ensuring service experience.
  • the UE can notify the network side device to restore/increase the PDB of the air interface data transmission, so as to provide
  • the data transmission scheduling of the network side device provides more flexibility, and/or ensures the reliability of air interface data transmission.
  • the network-side device can schedule based on the PDB of a data packet. When the PDB of a certain data packet is approaching or has timed out, the network-side device will no longer schedule the transmission of this data packet (or the remaining data of this data packet), resulting in This packet is dropped. After the PDB is restored/increased, in the case of air interface resource conflicts, the network side device has more opportunities to schedule the transmission of a data packet in the time domain, so the probability of successful transmission of the data packet in the PDB is also will increase accordingly.
  • the UE may simply suggest that the network side equipment needs to be reduced or increased, and may further indicate the degree of reduction or increase to the network side equipment, for example, based on the current PDB N milliseconds, or M percentage points, both N and M are positive numbers, and the specific values of N and M can be specified by the protocol or configured through high-level signaling.
  • the above air interface data transmission corresponds to at least one logical channel/logical channel group.
  • air interface data transmission corresponds to at least one logical channel/logical channel group: all logical channels/logical channel groups in at least one logical channel/logical channel group correspond to one PDB adjustment information ; Or, each logical channel/logical channel group in at least one logical channel/logical channel group corresponds to one piece of PDB adjustment information.
  • identification/distinguishment may be performed through corresponding radio bearers/logical channels/logical channel groups.
  • the UE may target at least one logical channel/logical channel group (that is, a certain radio bearer/logical channel/logical channel group, or some radio bearers/logical channels/logical channel groups, or all radio bearers/logical channels/logical channel groups) group), respectively give their respective PDB adjustment suggestions, or give a unified PDB adjustment suggestion.
  • the UE gives a corresponding PDB adjustment suggestion for a radio bearer/logical channel/logical channel group that meets a preset condition.
  • the second indication information is specifically used to instruct the network side device to increase or decrease the PDB for air interface data transmission.
  • the above second indication information is specifically used to instruct the network side device to reduce the PDB for air interface data transmission.
  • the second indication information is specifically used to instruct the network side device to expand the PDB for air interface data transmission.
  • the network side device may be instructed to reduce/decrease the PDB corresponding to the radio bearer/logic channel corresponding to the video data by X ms, or Y% (both X and Y are positive numbers).
  • the UE detects that the load on the application layer is small and the video data can be processed according to the normal processing delay, the UE can indicate to the network side device that the PDB corresponding to the radio bearer/logic channel corresponding to the video data is increased/restored to the original value.
  • the UE may report the third indication information to the network side device to instruct the network side device to adjust the encoding rate of the video stream/audio stream to the network side device.
  • the specific suggestion information may include the following suggestion 5.
  • the network side device can increase or decrease the encoding rate of the video/audio stream.
  • Proposal 5 The UE and the server can interact at a higher layer (such as the application layer), or the UE can notify the access network device through air interface signaling (at a faster frequency), and then the access network device can interact with the server .
  • a higher layer such as the application layer
  • the UE can notify the access network device through air interface signaling (at a faster frequency), and then the access network device can interact with the server .
  • the UE can report the maximum downlink data rate to the network side device, and indicate to the network side device the maximum downlink data rate that the UE expects/can receive, that is, the suggestion information of the data rate when the UE receives downlink service data, specific suggestions Information could include Recommendation 6 below.
  • Recommendation 6 Maximum downlink data rate that UE can/expect to receive.
  • the maximum downlink data rate here can be understood as: the UE expects the downlink instantaneous data rate scheduled by the network side equipment, or the downlink data rate after averaging or smoothing within a specified time window does not exceed (ie, be less than or equal to) the maximum downlink data rate rate.
  • the UE may also indicate to the network side device the start time, recommended duration, end time, etc. of applying the maximum downlink data rate of Recommendation 6.
  • the above-mentioned target information is any of the following: information sampled (or collected) at the target time, information collected within the target time window, and collected information after smoothing or filtering get the information.
  • the above-mentioned target time is a time before the sending time of the target information, or, the above-mentioned target time is earlier than or equal to (that is, not later than) the sending time of the target information and the time when the latest information is sampled.
  • the aforementioned target time window is a time window with the first moment as the end time, and the first moment is the sending time of the target information, or the first moment is earlier than or equal to (that is, not later than) the sending time of the target information, and The moment when the information was last sampled.
  • the information collected within the above target time window is: information obtained by performing linear average or weighted average processing on the same type of information collected at various time points within the target time window.
  • the information obtained after smoothing or filtering the collected information is: information sampled at the target time * (1 - target coefficient) + information after the last smoothing or filtering process *Target coefficient, the target coefficient is smoothing coefficient or filter coefficient.
  • the above-mentioned smoothing processing or filtering processing may be performed at the time when the target information is sent, or may be performed at a time earlier than or equal to (that is, not later than) the time when the target information is sent and corresponding to the latest period,
  • the period here can be stipulated by the protocol or configured based on high-level signaling.
  • Method 1 Based on instantaneous information.
  • the UE uses the latest information sampled before the reporting time (or the latest information sampled no later than the reporting time), or the information obtained by further processing/judging based on these latest information, to report the target information.
  • Method 2 Based on sliding time windows.
  • a time window is pushed forward, based on all the information corresponding to this time window (for example, the information corresponding to each sampling time point in this time window)
  • the information obtained by the comprehensive processing/judgment is taken as the target information.
  • the comprehensive processing/judgment here includes taking a linear average or a weighted average of the same kind of information corresponding to each sampling/collection time point, or further processing/judgment on the basis of the average or weighted average (such as integrating multiple pieces of information and then make a unified judgment).
  • the above time window may be stipulated by a protocol, configured through high-layer signaling, or determined by the UE independently.
  • Method 3 Based on long-term smoothing.
  • smoothing coefficients or filtering coefficients can be used to continuously smooth the collected information in the time domain, and when reporting is required based on the latest smoothing results (that is, by using smoothing coefficients or filtering coefficients , and report the information obtained after smoothing or filtering the information continuously collected in the time domain).
  • the target coefficient here, that is, the smoothing coefficient or filtering coefficient can be considered as a parameter whose value range is [0,1].
  • the values of the smoothing coefficients or filtering coefficients can be stipulated in the protocol, or configured through high-layer signaling.
  • Step 202 the network side device receives the target information sent by the UE.
  • the above target information includes at least one of the following: first information and second information.
  • Step 203 the network side device determines the transmission policy of the target service data according to the target information.
  • the network side device can perform parameter configuration/reconfiguration for the UE according to the target information (for example, at least one of the first information, the second indication information, and the third indication information), so that according to the configuration/reconfiguration parameters to determine the transmission policy of the target service data, so as to send the target service data to the UE based on the transmission policy.
  • the network side device may make a downlink scheduling decision according to the target information (for example, at least one of the first indication information, the second indication information, and the maximum downlink data rate), so as to determine the target service data according to the downlink scheduling decision information.
  • a transmission strategy so as to send target service data to the UE based on the transmission strategy.
  • the network side device may discard the downlink data packets according to the target information (such as the first indication information and/or the second indication information), so as to send the remaining data packets to the UE (that is, determine that the transmission policy of the target service data is discarding Part of the data packets in the target business data, and transmit the remaining data packets).
  • the target information such as the first indication information and/or the second indication information
  • step 203 may specifically be implemented through the following step 203a.
  • Step 203a the network side device configures/reconfigures parameters for the UE according to the target information, so as to determine the transmission strategy of the target service data.
  • the network side device may perform parameter configuration/reconfiguration corresponding to the target information for the UE. For example, the network side device may configure/reconfigure parameters related to power consumption for the UE after receiving the power consumption related information of the UE. The network side device can configure/reconfigure load-related parameters for the UE after receiving the load-related information of the UE.
  • the configuration/reconfiguration parameters include at least one of the following: Discontinuous reception (Discontinuous Reception, DRX) parameters, energy saving mechanism, logical channel/logical channel group priority, discard timer parameter , Quality of Service (QoS) parameters.
  • DRX Discontinuous Reception
  • QoS Quality of Service
  • the network side device may Configure appropriate DRX parameters, or a power saving mechanism.
  • the network side device can configure a more matching logical channel priority Air interface parameters such as level and discard timer (discard timer), or configure more matching high-level QoS parameters (such as guaranteed bit rate (Guaranteed Bit Rate, GBR), etc.).
  • level and discard timer discard timer
  • high-level QoS parameters such as guaranteed bit rate (Guaranteed Bit Rate, GBR), etc.
  • the network side device may, based on the received suggestion 5, notify the server to perform an operation corresponding to suggestion 5 (increase or decrease the encoding rate of the video stream/audio stream).
  • the network side device may transmit the target service data according to the configured/reconfigured parameters (that is, the transmission policy of the target service data).
  • the network side device can efficiently transmit service data by configuring/reconfiguring corresponding parameters for the UE according to the target information reported by the UE, so as to better meet service requirements and improve service capacity.
  • step 203 may specifically be implemented through the following step 203b.
  • step 203b the network side device executes a scheduling decision on the downlink data transmission corresponding to the UE according to the target information, so as to determine a transmission policy of the target service data.
  • the network side device may make a scheduling decision on downlink service data transmission corresponding to the UE according to the target information when making a downlink scheduling decision.
  • the network side device can adjust the allocation to the corresponding UE Priority of resources (for example, high/low priority to process service data corresponding to the UE, or certain service data corresponding to the UE), and/or allocated resource amount (for example, increase/decrease the allocated resource amount), etc.
  • Priority of resources for example, high/low priority to process service data corresponding to the UE, or certain service data corresponding to the UE
  • allocated resource amount for example, increase/decrease the allocated resource amount
  • the network side device may transmit the target service data according to the decision information of the scheduling decision (that is, the transmission policy of the target service data).
  • the network side device can transmit service data efficiently by performing scheduling judgment for downlink data transmission corresponding to the UE according to the target information reported by the UE, so as to better meet service requirements and improve service capacity.
  • step 203 may specifically be implemented through the following step 203c.
  • Step 203c the network side device determines the transmission strategy of the target service data according to the target information: discard the data in the target service data that meets the target preset condition, and transmit the remaining data in the target service data.
  • the network side device may not transmit the downlink service data that meets the target preset condition according to the target information (that is, discard the downlink service data), or use the target information as Reference factors for downlink packet loss.
  • the network side device may directly discard all pending data packets corresponding to logical channels/logical channel groups that do not meet the target preset conditions (for example, the discarding priority is lower than Data packets corresponding to logical channels/logical channel groups with preset values), and transmit data packets corresponding to other logical channels/logical channel groups (such as logical channels/logical channel groups with priority higher than or equal to the preset value).
  • the network side device may directly discard all pending data packets corresponding to logical channels/logical channel groups that do not meet the target preset conditions (for example, discarding the video transmission enhanced layer corresponding to the logical channel/logic channel group other than the logical channel/logic channel group), and transmit other logical channels/logic channel groups (such as the logical channel/logic channel group corresponding to the video transmission enhancement layer) corresponding to data pack.
  • the network side device may perform a discarding operation of downlink data packets based on the adjusted PDB, and transmit remaining downlink data packets.
  • the network side device can efficiently transmit service data by discarding downlink data packets according to the target information reported by the UE, so as to better meet service requirements and improve service capacity.
  • the UE in order to enable the UE and the network side equipment to synchronize the relevant information of downlink service data transmission in a more timely manner, and facilitate the efficient transmission of service data by adjusting parameter configuration, scheduling, packet loss, etc., the UE can report the downlink Service data (that is, target service data) receives relevant information correspondingly, so that service requirements can be better met and service capacity can be improved.
  • the downlink Service data that is, target service data
  • An embodiment of the present application provides a method for transmitting service data.
  • the UE can send target information to a network side device, so that the network side device can determine a transmission policy of target service data according to the target information, so as to transmit the target service data.
  • the UE can indicate to the network side equipment the auxiliary information that the UE receives the target service data, that is, some information of the UE itself (power consumption, heat dissipation, remaining power, load, etc.) and/or some suggestions from the UE to the network side equipment /recommended/desired information, so that the network side device can determine a better/more matching transmission strategy according to the UE's own information and/or the UE's suggested information, so that the network side device can provide the UE with a better/more matching way Send target business data, so as to achieve the purpose of efficiently transmitting target business data using limited air interface resources, and also meet business needs and improve business capacity.
  • the execution subject may also be a service data transmission device, or a control module in the UE (or network side equipment) for executing the service data transmission method.
  • the interaction between the UE and the network side device is taken as an example to illustrate the service data transmission method provided in the embodiment of the present application.
  • Fig. 3 shows a possible structural diagram of a service data transmission device involved in the embodiment of the present application.
  • the service data transmission apparatus 30 may include: a sending unit 31 .
  • the sending unit 31 is configured to send target information to the network side device, the target information is used to determine a transmission policy of target service data, and the target information includes at least one of the following: first information and second information.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • the UE's power consumption-related information includes at least one of the following: overall power consumption information of the UE, power consumption information of at least one module in the UE;
  • the heat dissipation related information of the UE includes at least one of the following: the overall temperature information of the UE, the temperature information of at least one module in the UE, the current heat dissipation level of the UE, the fourth indication information and the target difference, the fourth indication information is used to indicate that the UE Whether the corresponding temperature value is greater than or equal to the alarm threshold for heat dissipation, and the target difference is the difference between the corresponding temperature value of the UE and the alarm threshold;
  • the remaining power information of the UE includes at least one of the following: the percentage of the remaining power of the UE, the first duration, and the first duration is the duration for supporting the UE to continue to operate/work;
  • the load-related information of the UE includes at least one of the following: overall load information of the UE, load information of at least one module in the UE, and a target load amount expected by the UE.
  • the above-mentioned target logical channel/logical channel group includes at least one of the following: a logical channel/logical channel group that satisfies the first preset condition, a logical channel/logical channel group corresponding to the video transmission enhancement layer, All Logical Channels/Logical Channel Groups.
  • the foregoing air interface data transmission corresponds to at least one logical channel/logical channel group. All logical channels/logical channel groups in at least one logical channel/logical channel group correspond to one PDB adjustment information; or, each logical channel/logical channel group in at least one logical channel/logical channel group corresponds to one PDB adjustment information .
  • the above second indication information is specifically used to instruct the network side device to increase or decrease the PDB for air interface data transmission.
  • the target information is any of the following: information sampled at a target time, information collected within a target time window, and information obtained by smoothing or filtering the collected information.
  • the target time is a time before the sending time of the target information, or, the target time is earlier than or equal to the sending time of the target information and the time when the latest information is sampled;
  • the target time window is the time with the first time as the end time For the time window, the first moment is the sending moment of the target information, or the first moment is earlier than or equal to the sending moment of the target information and the latest time of sampling information.
  • the above-mentioned information collected in the target time window is: information obtained by performing linear average or weighted average processing on the same type of information collected at each time point in the target time window;
  • the information obtained after smoothing or filtering the collected/collected information is: information sampled at the target time * (1-target coefficient) + information after the last smoothing or filtering process * target coefficient, the target coefficient is smoothing coefficients or filter coefficients.
  • An embodiment of the present application provides a service data transmission device.
  • the service data transmission device can instruct the network side device to receive auxiliary information of the target service data, that is, some information of the UE itself (power consumption, heat dissipation, etc.) , remaining power, load, etc.) and/or some suggestions/recommendations/desired information from the UE to the network-side device, so that the network-side device can determine a better/more matching Transmission strategy, so that the network side equipment can send target business data to the business data transmission device in a better/more matching way, so as to achieve the purpose of efficiently transmitting target business data using limited air interface resources, and also meet business needs and improve business capacity.
  • auxiliary information of the target service data that is, some information of the UE itself (power consumption, heat dissipation, etc.) , remaining power, load, etc.) and/or some suggestions/recommendations/desired information from the UE to the network-side device, so that the network-side device can determine a
  • the service data transmission device in the embodiment of the present application may be a device, a device with an operating system or a UE, or a component, an integrated circuit, or a chip in the UE.
  • the apparatus or UE may be a mobile terminal or a non-mobile terminal.
  • the mobile terminal may include but not limited to the types of UE 11 listed above, and the non-mobile terminal may be a server, a network attached storage (Network Attached Storage, NAS), a personal computer (Personal Computer, PC), a television ( Television, TV), teller machines or self-service machines, etc., are not specifically limited in this embodiment of the present application.
  • the service data transmission device provided in the embodiment of the present application can realize each process implemented by the UE in the above method embodiment, and achieve the same technical effect. To avoid repetition, details are not repeated here.
  • Fig. 4 shows a possible structural diagram of a service data transmission device involved in the embodiment of the present application.
  • the service data transmission device 40 may include: a receiving unit 41 and a determining unit 42 .
  • the receiving unit 41 is configured to receive target information sent by the UE, where the target information includes at least one of the following items: first information and second information.
  • the determining unit 42 is configured to determine a transmission policy of the target service data according to the target information received by the receiving unit 41 .
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • the UE's power consumption-related information includes at least one of the following: overall power consumption information of the UE, power consumption information of at least one module in the UE;
  • the heat dissipation related information of the UE includes at least one of the following: the overall temperature information of the UE, the temperature information of at least one module in the UE, the current heat dissipation level of the UE, the fourth indication information and the target difference, the fourth indication information is used to indicate that the UE Whether the corresponding temperature value is greater than or equal to the alarm threshold for heat dissipation, and the target difference is the difference between the corresponding temperature value of the UE and the alarm threshold;
  • the remaining power information of the UE includes at least one of the following: the percentage of the remaining power of the UE, the first duration, and the first duration is the duration for supporting the UE to continue to operate/work;
  • the load-related information of the UE includes at least one of the following: overall load information of the UE, load information of at least one module in the UE, and a target load amount expected by the UE.
  • the above-mentioned target logical channel/logical channel group includes at least one of the following: a logical channel/logical channel group that satisfies the first preset condition, a logical channel/logical channel group corresponding to the video transmission enhancement layer, All Logical Channels/Logical Channel Groups.
  • the determination unit 42 is specifically configured to perform parameter configuration/reconfiguration for the UE according to the target information, so as to determine a transmission policy of the target service data.
  • the configured/reconfigured parameters include at least one of the following: DRX parameters, energy saving mechanism, priority of logical channels/logical channel groups, discard timer parameters, and QoS parameters.
  • the determination unit 42 is specifically configured to perform a scheduling decision on downlink data transmission corresponding to the UE according to the target information, so as to determine a transmission policy of the target service data.
  • the above-mentioned determining unit 42 is specifically used to determine the transmission strategy of the target business data according to the target information as follows: discard the data in the target business data that meets the target preset conditions, and transmit the data in the target business data remaining data.
  • An embodiment of the present application provides a service data transmission device.
  • the service data transmission device can receive the auxiliary information of the target service data indicated by the UE, that is, some information of the UE itself (power consumption, heat dissipation, remaining power, Load, etc.) and/or some suggestions/recommendations/expectations from the UE to the network side equipment to determine a better/more matching transmission strategy, so that the service data transmission device can send target service data to the UE in a better/more matching manner
  • the purpose of efficiently transmitting target service data using limited air interface resources is also met, and the service capacity is improved.
  • the service data transmission device in the embodiment of the present application may be a device, a device with an operating system or a network-side device, or a component, an integrated circuit, or a chip in the network-side device.
  • the service data transmission device provided in the embodiment of the present application can implement various processes implemented by the network side equipment in the above method embodiment, and achieve the same technical effect. To avoid repetition, details are not repeated here.
  • this embodiment of the present application further provides a communication device 500, including a processor 501, a memory 502, and programs or instructions stored in the memory 502 and operable on the processor 501,
  • a communication device 500 including a processor 501, a memory 502, and programs or instructions stored in the memory 502 and operable on the processor 501
  • the communication device 500 is a UE
  • the program or instruction is executed by the processor 501
  • various processes of the UE in the foregoing method embodiments are implemented, and the same technical effect can be achieved.
  • the communication device 500 is a network-side device
  • the program or instruction is executed by the processor 501
  • various processes of the network-side device in the foregoing method embodiments can be achieved, and the same technical effect can be achieved. To avoid repetition, details are not repeated here.
  • the embodiment of the present application also provides a UE, including a processor and a communication interface, the communication interface is used to send target information to the network side device, the target information is used to determine the transmission strategy of target service data, and the target information includes at least one of the following : First message and second message.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • This UE embodiment corresponds to the UE side method embodiment above, and each implementation process and implementation manner of the above method embodiment can be applied to this UE embodiment, and can achieve the same technical effect.
  • FIG. 6 is a schematic diagram of a hardware structure of a UE implementing an embodiment of the present application.
  • the UE 100 includes but is not limited to: a radio frequency unit 101, a network module 102, an audio output unit 103, an input unit 104, a sensor 105, a display unit 106, a user input unit 107, an interface unit 108, a memory 109, and a processor 110, etc. at least some of the components.
  • the UE 100 may also include a power supply (such as a battery) for supplying power to various components, and the power supply may be logically connected to the processor 110 through the power management system, so as to manage charging, discharging, and power consumption through the power management system Management and other functions.
  • a power supply such as a battery
  • the UE structure shown in FIG. 6 does not limit the UE, and the UE may include more or fewer components than shown in the figure, or combine some components, or arrange different components, which will not be repeated here.
  • the input unit 104 may include a graphics processing unit (Graphics Processing Unit, GPU) 1041 and a microphone 1042, and the graphics processing unit 1041 is used by the image capturing device (such as the image data of the still picture or video obtained by the camera) for processing.
  • the display unit 106 may include a display panel 1061, and the display panel 1061 may be configured in the form of a liquid crystal display, an organic light emitting diode, or the like.
  • the user input unit 107 includes a touch panel 1071 and other input devices 1072 .
  • the touch panel 1071 is also called a touch screen.
  • the touch panel 1071 may include two parts, a touch detection device and a touch controller.
  • Other input devices 1072 may include, but are not limited to, physical keyboards, function keys (such as volume control keys, switch keys, etc.), trackballs, mice, and joysticks, which will not be repeated here.
  • the radio frequency unit 101 receives the downlink data from the network side device, and processes it to the processor 110; in addition, sends the uplink data to the network side device.
  • the radio frequency unit 101 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
  • the memory 109 can be used to store software programs or instructions as well as various data.
  • the memory 109 may mainly include a program or instruction storage area and a data storage area, wherein the program or instruction storage area may store an operating system, an application program or instructions required by at least one function (such as a sound playback function, an image playback function, etc.) and the like.
  • the memory 109 may include a high-speed random access memory, and may also include a nonvolatile memory, wherein the nonvolatile memory may be a read-only memory (Read-Only Memory, ROM), a programmable read-only memory (Programmable ROM) , PROM), erasable programmable read-only memory (Erasable PROM, EPROM), electrically erasable programmable read-only memory (Electrically EPROM, EEPROM) or flash memory.
  • ROM Read-Only Memory
  • PROM programmable read-only memory
  • PROM erasable programmable read-only memory
  • Erasable PROM Erasable PROM
  • EPROM electrically erasable programmable read-only memory
  • EEPROM electrically erasable programmable read-only memory
  • flash memory for example at least one magnetic disk storage device, flash memory device, or other non-volatile solid-state storage device.
  • the processor 110 may include one or more processing units; optionally, the processor 110 may integrate an application processor and a modem processor, wherein the application processor mainly processes the operating system, user interface and application programs or instructions, etc., Modem processors mainly handle wireless communications, such as baseband processors. It can be understood that the foregoing modem processor may not be integrated into the processor 110 .
  • the radio frequency unit 101 is configured to send target information to the network side device, the target information is used to determine a transmission policy of target service data, and the target information includes at least one of the following: first information and second information.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • An embodiment of the present application provides a UE.
  • the UE can indicate to the network side equipment the auxiliary information that the UE receives the target service data, that is, some information of the UE itself (power consumption, heat dissipation, remaining power, load, etc.) and/or Or some suggestion/recommended/desired information from the UE to the network-side device, so that the network-side device can determine a better/more matching transmission strategy according to the UE's own information and/or the UE's suggested information, so that the network-side device can use
  • a better/more matching method is used to send the target service data to the UE, so as to achieve the purpose of efficiently transmitting the target service data using limited air interface resources, which also meets the service requirements and improves the service capacity.
  • the UE provided in the embodiment of the present application can implement each process implemented by the UE in the foregoing method embodiment, and achieve the same technical effect. To avoid repetition, details are not repeated here.
  • the embodiment of the present application further provides a network side device, including a processor and a communication interface, where the communication interface is configured to receive target information sent by a UE, where the target information includes at least one of the following: first information and second information.
  • the processor is configured to determine a transmission policy of the target service data according to the target information.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • the network-side device embodiment corresponds to the above-mentioned network-side device method embodiment, and each implementation process and implementation mode of the above-mentioned method embodiment can be applied to this network-side device embodiment, and can achieve the same technical effect.
  • the embodiment of the present application also provides a network side device.
  • the network side device 700 includes: an antenna 71 , a radio frequency device 72 , and a baseband device 73 .
  • the antenna 71 is connected to a radio frequency device 72 .
  • the radio frequency device 72 receives information through the antenna 71, and sends the received information to the baseband device 73 for processing.
  • the baseband device 73 processes the information to be sent and sends it to the radio frequency device 72
  • the radio frequency device 72 processes the received information and sends it out through the antenna 71 .
  • the foregoing frequency band processing device may be located in the baseband device 73 , and the method performed by the network side device in the above embodiments may be implemented in the baseband device 73 , and the baseband device 73 includes a processor 74 and a memory 75 .
  • the baseband device 73 can include at least one baseband board, for example, a plurality of chips are arranged on the baseband board, as shown in FIG. The operation of the network side device shown in the above method embodiments.
  • the baseband device 73 may also include a network interface 76 for exchanging information with the radio frequency device 72, such as a Common Public Radio Interface (CPRI).
  • CPRI Common Public Radio Interface
  • the radio frequency device 72 is configured to receive target information sent by the UE, where the target information includes at least one of the following items: first information and second information.
  • the baseband device 73 is configured to determine a transmission policy of the target service data according to the target information.
  • the first information includes at least one of the following: information related to power consumption of the UE, information related to heat dissipation of the UE, information about remaining power of the UE, and information related to the load of the UE.
  • the second information includes at least one of the following: first indication information, second indication information, third indication information, and maximum downlink data rate.
  • the first indication information is used to indicate the data corresponding to the target logical channel/logical channel group that the UE expects to receive
  • the second indication information is used to instruct the network side equipment to adjust the PDB for air interface data transmission
  • the third indication information is used to instruct the network side equipment to adjust
  • the encoding rate of the video stream/audio stream, the maximum downlink data rate is the maximum threshold value of the data rate when the UE receives data.
  • An embodiment of the present application provides a network-side device.
  • the network-side device can receive auxiliary information of the target service data for the UE indicated by the UE, that is, some information about the UE itself (power consumption, heat dissipation, remaining power, load, etc. ) and/or some suggestion/recommendation/expectation information from the UE to the network-side device to determine a better/more matching transmission strategy, so that the network-side device can send target service data to the UE in a better/more matching way, so as to achieve
  • auxiliary information of the target service data for the UE indicated by the UE that is, some information about the UE itself (power consumption, heat dissipation, remaining power, load, etc. ) and/or some suggestion/recommendation/expectation information from the UE to the network-side device to determine a better/more matching transmission strategy, so that the network-side device can send target service data to the UE in a better/more matching way, so as to achieve
  • the network-side device provided by the embodiment of the present application can implement the various processes implemented by the network-side device in the above method embodiments, and achieve the same technical effect. To avoid repetition, details are not repeated here.
  • the network-side device in the embodiment of the present application also includes: instructions or programs stored in the memory 75 and operable on the processor 74, and the processor 74 calls the instructions or programs in the memory 75 to execute the above-mentioned modules or units. method, and achieve the same technical effect, in order to avoid repetition, it is not repeated here.
  • the embodiment of the present application also provides a readable storage medium, the readable storage medium stores a program or an instruction, and when the program or instruction is executed by the processor, each process of the above-mentioned business data transmission method embodiment is realized, and can achieve The same technical effects are not repeated here to avoid repetition.
  • the processor is the processor in the UE described in the foregoing embodiments.
  • the readable storage medium includes computer readable storage medium, such as computer read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk, etc.
  • the embodiment of the present application further provides a chip, the chip includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the above-mentioned service data transmission method embodiment Each process, and can achieve the same technical effect, in order to avoid repetition, will not repeat them here.
  • the chip mentioned in the embodiment of the present application may also be called a system-on-chip, a system-on-chip, a system-on-a-chip, or a system-on-a-chip.
  • the term “comprising”, “comprising” or any other variation thereof is intended to cover a non-exclusive inclusion such that a process, method, article or apparatus comprising a set of elements includes not only those elements, It also includes other elements not expressly listed, or elements inherent in the process, method, article, or device. Without further limitations, an element defined by the phrase “comprising a " does not preclude the presence of additional identical elements in the process, method, article, or apparatus comprising that element.
  • the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in reverse order according to the functions involved. Functions are performed, for example, the described methods may be performed in an order different from that described, and various steps may also be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.
  • the methods of the above embodiments can be implemented by means of software plus a necessary general-purpose hardware platform, and of course also by hardware, but in many cases the former is better implementation.
  • the technical solution of the present application can be embodied in the form of computer software products, which are stored in a storage medium (such as ROM/RAM, magnetic disk, etc.) , CD-ROM), including several instructions to enable a terminal (which may be a mobile phone, computer, server, air conditioner, or network-side device, etc.) to execute the methods described in various embodiments of the present application.

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Abstract

本申请公开了一种业务数据传输方法、装置、通信设备、存储介质及系统,业务数据传输方法包括:UE向网络侧设备发送目标信息,该目标信息用于确定目标业务数据的传输策略,目标信息包括第一信息和/或第二信息。第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率。

Description

业务数据传输方法、装置、通信设备、存储介质及系统
相关申请的交叉引用
本申请主张在2021年06月07日在中国提交的中国专利申请号202110634383.8的优先权,其全部内容通过引用包含于此。
技术领域
本申请属于通信技术领域,具体涉及一种业务数据传输方法、装置、通信设备、存储介质及系统。
背景技术
扩展现实(Extended Reality,XR)是指由计算机技术和可穿戴设备产生的所有真实与虚拟的组合环境和人机交互,可以包括增强现实(Augmented Reality,AR)、混合现实(Mix reality,MR)、虚拟现实(Virtual Reality,VR)等代表性形式,以及它们之间的交叉领域。对于XR业务,由于其数据量比较大,传输要求比较高,因此如何使用有限的空口资源高效地传输XR业务数据,是一个亟待解决的问题。
发明内容
本申请实施例提供一种业务数据传输方法、装置、通信设备、存储介质及系统,能够解决如何使用有限的空口资源高效地传输XR业务数据的问题。
第一方面,提供了一种业务数据传输方法,该业务数据传输方法包括:用户设备(User Equipment,UE)向网络侧设备发送目标信息,该目标信息用于确定目标业务数据的传输策略,目标信息包括以下至少一项:第一信息和第二信息。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的数据包时延预算(Packet Delay Budget,PDB),第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
第二方面,提供了一种业务数据传输方法,该业务数据传输方法包括:网络侧设备接收UE发送的目标信息,该目标信息包括以下至少一项:第一信息和第二信息;网络侧设备根据目标信息,确定目标业务数据的传输策略。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为 UE接收数据时数据速率的最大门限值。
第三方面,提供了一种业务数据传输装置,该业务数据传输装置包括:发送单元。其中,发送单元,用于向网络侧设备发送目标信息,该目标信息用于确定目标业务数据的传输策略,目标信息包括以下至少一项:第一信息和第二信息。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
第四方面,提供了一种业务数据传输装置,该业务数据传输装置包括:接收单元和确定单元。其中,接收单元,用于接收UE发送的目标信息,该目标信息包括以下至少一项:第一信息和第二信息。确定单元,用于根据接收单元接收的目标信息,确定目标业务数据的传输策略。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
第五方面,提供了一种UE,该UE包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如第一方面所述的方法的步骤。
第六方面,提供了一种网络侧设备,该网络侧设备包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如第二方面所述的方法的步骤。
第七方面,提供了一种UE,包括处理器及通信接口,其中,所述通信接口,用于向网络侧设备发送目标信息,该目标信息用于确定目标业务数据的传输策略,目标信息包括以下至少一项:第一信息和第二信息。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
第八方面,提供了一种网络侧设备,包括处理器及通信接口,其中,所述通信接口,用于接收UE发送的目标信息,该目标信息包括以下至少一项:第一信息和第二信息;并根据目标信息,确定目标业务数据的传输策略。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷 相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
第九方面,提供了一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如第一方面所述的方法的步骤,或者实现如第二方面所述的方法的步骤。
第十方面,提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如第一方面所述的方法,或者实现如第二方面所述的方法。
第十一方面,提供了一种计算机程序/程序产品,所述计算机程序/程序产品被存储在非瞬态的存储介质中,所述程序/程序产品被至少一个处理器执行以实现如第一方面所述的业务数据传输方法的步骤,或者实现如第二方面所述的业务数据传输方法的步骤。
在本申请实施例中,UE可以向网络侧设备发送目标信息,以使得网络侧设备可以根据该目标信息,确定目标业务数据的传输策略,以进行目标业务数据的传输。对于目标业务数据,UE可以向网络侧设备指示UE接收目标业务数据的辅助信息,即UE自身的一些信息(功耗、散热、剩余电量、负荷等)和/或UE给网络侧设备的一些建议/推荐/期望信息,从而使得网络侧设备可以根据UE自身的信息和/或UE的建议信息,确定更好/更匹配的传输策略,从而便于网络侧设备以更好/更匹配的方式向UE发送目标业务数据,如此达到使用有限的空口资源高效地传输目标业务数据的目的,也满足了业务需求,提升了业务容量。
附图说明
图1是本申请实施例提供的一种通信系统的架构示意图;
图2是本申请实施例提供的一种业务数据传输方法的示意图;
图3是本申请实施例提供的一种业务数据传输装置的结构示意图之一;
图4是本申请实施例提供的一种业务数据传输装置的结构示意图之二;
图5是本申请实施例提供的一种通信设备的硬件结构示意图;
图6是本申请实施例提供的一种UE的硬件结构示意图;
图7是本申请实施例提供的一种网络侧设备的硬件结构示意图。
具体实施方式
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所获得的所有其他实施例,都属于本申请保护的范围。
本申请的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的术语在适当情况下可以互换,以便本申请的实施例能够以除了在这里图示或描述的那些以外的顺序实施,且“第一”、 “第二”所区别的对象通常为一类,并不限定对象的个数,例如第一对象可以是一个,也可以是多个。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”一般表示前后关联对象是一种“或”的关系。
值得指出的是,本申请实施例所描述的技术不限于长期演进型(Long Term Evolution,LTE)/LTE的演进(LTE-Advanced,LTE-A)系统,还可用于其他无线通信系统,诸如码分多址(Code Division Multiple Access,CDMA)、时分多址(Time Division Multiple Access,TDMA)、频分多址(Frequency Division Multiple Access,FDMA)、正交频分多址(Orthogonal Frequency Division Multiple Access,OFDMA)、单载波频分多址(Single-carrier Frequency-Division Multiple Access,SC-FDMA)和其他系统。本申请实施例中的术语“系统”和“网络”常被可互换地使用,所描述的技术既可用于以上提及的系统和无线电技术,也可用于其他系统和无线电技术。以下描述出于示例目的描述了新空口(New Radio,NR)系统,并且在以下大部分描述中使用NR术语,但是这些技术也可应用于NR系统应用以外的应用,如第6代(6th Generation,6G)通信系统。
图1示出本申请实施例可应用的一种无线通信系统的框图。无线通信系统包括UE 11和网络侧设备12。其中,UE 11也可以称作终端设备或者终端,UE 11可以是手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)或称为笔记本电脑、个人数字助理(Personal Digital Assistant,PDA)、掌上电脑、上网本、超级移动个人计算机(ultra-mobile personal computer,UMPC)、移动上网装置(Mobile Internet Device,MID)、可穿戴式设备(Wearable Device)或车载设备(VUE)、行人终端(PUE)等终端侧设备,可穿戴式设备包括:智能手表、手环、耳机、眼镜等。需要说明的是,在本申请实施例并不限定UE 11的具体类型。网络侧设备12可以是基站或核心网,其中,基站可被称为节点B、演进节点B、接入点、基收发机站(Base Transceiver Station,BTS)、无线电基站、无线电收发机、基本服务集(Basic Service Set,BSS)、扩展服务集(Extended Service Set,ESS)、B节点、演进型B节点(eNB)、家用B节点、家用演进型B节点、WLAN接入点、WiFi节点、发送接收点(Transmitting Receiving Point,TRP)或所述领域中其他某个合适的术语,只要达到相同的技术效果,所述基站不限于特定技术词汇,需要说明的是,在本申请实施例中仅以NR系统中的基站为例,但是并不限定基站的具体类型。
下面对本申请实施例提供的业务数据传输方法、装置、通信设备、存储介质及系统中涉及的一些概念和/或术语做一下解释说明。
扩展现实(XR):包括AR、MR、VR等代表性形式,以及它们之间的交叉领域。虚拟世界的级别从部分感官输入到完全沉浸式虚拟现实。XR的一个关键方面是人类经验的扩展,尤其是与存在感(以VR为代表)和认知习得(以AR为代表)相关的经验。
对于VR业务,上行以较为密集的小数据包传输为主,这些小数据包可承载手势、控制等信息,作为下行呈现数据的输入和参考;下行以视频和音频等多媒体数据传输为主,通过这些多媒体数据的及时接收以及呈现,向用户提供沉浸式的感受。以下行视频数据为例,数据包周期或准周期性到达,数据速率可达几十甚至上百Mbps,FPS(帧率)的典型值为60或120赫兹,相邻数据包之间的间隔大致为1/FPS秒,这些数据在空口一般需要在10ms内成功传输,并且传输成功率要求不低于99%甚至99.9%。
对于AR业务,上行除了上述密集小数据包传输之外,也可能传输视频和音频等多媒 体数据,其业务特性和下行类似,通常数据速率相对较低,例如最多几十Mbps,空口传输的时间限也可以放宽,例如一般需要在60ms内成功传输;下行数据传输特性基本与VR业务一致。
下面通过具体的交互实施例(UE与网络侧设备的交互)对本申请实施例提供的业务数据传输方法进行说明。
本申请实施例提供一种业务数据传输方法,图2示出了本申请实施例提供的一种业务数据传输方法的流程图。如图2所示,本申请实施例提供的业务数据传输方法可以包括下述的步骤201至步骤203。
步骤201、UE向网络侧设备发送目标信息。
本申请实施例中,上述目标信息用于网络侧设备确定目标业务数据的传输策略,该目标信息包括以下至少一项:第一信息和第二信息。
其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。
第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
可选地,本申请实施例中,上述目标业务数据可以为XR业务数据。
需要说明的是,上述第二信息是UE侧给网络侧设备的建议信息(即UE对于下行业务数据接收的建议信息、推荐信息或偏好信息),网络侧设备接收到第二信息之后,可以按照第二信息的指示执行对应的操作;或者,也可以不按照或不完全按照第二信息的指示执行对应的操作,而是按照网络侧设备自身的情况,和/或,参考/综合UE侧的输入信息,执行对应的操作。
本申请实施例中,UE可以从下述因素1至因素3中的至少一项考虑,上报与下行业务数据相关的信息,以使得网络侧设备可以根据这些信息,向UE发送下行业务数据(即网络侧设备可以将这些信息作为下行业务数据传输/下行调度/下行丢包等操作的决策输入或参考)。
因素1:UE当前所处的无线信道环境和/或信道质量等。
例如,UE可以基于无线链路监测(Radio Link Monitoring,RLM)/无线资源管理(Radio Resource Management,RRM)/下行信道状态信息(Channel State Information,CSI)测量信息进行判断,当判断信道质量较好(例如CSI测量信息满足一个预设条件)时,可以接收更多的业务数据/更高质量要求的业务数据,从而获得更好的业务体验,否则只能接收必需的少量数据以保证这些数据的传输质量,在一定程度上牺牲业务质量要求。
因素2:UE当前的功耗情况和/或剩余电量等。
例如,当UE的整体功耗较小或剩余电量较充裕(例如剩余电量值大于或等于一个预设阈值)时,可以接收更多的业务数据/更高质量要求的业务数据,否则可只接收较少的数据以保证UE不过于发热,或者剩余电量可维持较长时间。
因素3:UE当前的处理能力。
例如,当UE的处理器较为空闲时,可以接收更多的数据,或者可以接收压缩度更高,需要更复杂的接收端处理才能恢复的数据,否则可只接收较少的数据,或者仅需要较为简单的接收端处理的数据,以保证处理的流畅度。
可选地,本申请实施例中,针对上述因素1,UE可以上报UE当前所处信道的相关信息,例如无线信道环境和/或信道质量等,具体可以参考相关技术中的描述,此处不予赘述。
可选地,本申请实施例中,针对上述因素2,UE可以上报UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息中的至少一项。
可选地,本申请实施例中,针对上述因素3,UE可以上报UE的负荷相关信息。
可选地,本申请实施例中,UE的功耗相关信息包括以下至少一项:UE的整体功耗信息、UE中的至少一个模块的功耗信息。
需要说明的是,UE的整体功耗信息可以理解为:对于UE整体设备而言,UE的功耗信息。可选地,本申请实施例中,UE的整体功耗信息可以包括以下至少一项:功耗的绝对量、实际功耗占额定功耗/推荐功耗的比例、UE当前的功耗等级(低/中/高)等。
可选地,本申请实施例中,上述至少一个模块的功耗信息可以为UE中的各个模块的功耗信息,或者可以为UE中的一个或多个重点/关键模块的功耗信息。例如,重点/关键模块可以包括:底层数据收发模块(modem)、业务数据处理模块(应用处理器)等。
需要说明的是,针对任意一个模块的功耗信息,也可以采用上述整体功耗信息的表示形式(即功耗的绝对量、实际功耗占额定功耗/推荐功耗的比例、UE当前的功耗等级(低/中/高)等中的至少一项)进行上报。
可选地,本申请实施例中,UE的散热相关信息包括以下至少一项:UE的整体温度信息、UE中的至少一个模块的温度信息、UE的当前散热等级、第四指示信息和目标差值。其中,第四指示信息用于指示UE对应的温度值是否大于或等于散热的告警阈值;目标差值为UE对应的温度值与告警阈值之间的差值。
需要说明的是,UE的整体温度信息可以理解为:对于UE整体设备而言,UE的温度信息。UE对应的温度值可以理解为UE的整体温度值,或者UE中的至少一个模块的温度值。
可选地,本申请实施例中,上述至少一个模块的温度信息可以为UE中的各个模块的温度信息,或者可以为UE中的一个或多个重点/关键模块的温度信息。例如,重点/关键模块可以包括:底层数据收发模块、业务数据处理模块(应用处理器)等。
可选地,本申请实施例中,UE的剩余电量信息包括以下至少一项:UE的剩余电量的百分比、第一时长。其中,第一时长为支持UE继续运转/工作的时长(即按照UE当前的功耗情况可以继续支撑/运转的时长)。
可选地,本申请实施例中,UE的负荷相关信息包括以下至少一项:UE的整体负荷信息、UE中的至少一个模块的负荷信息、UE期望的目标负荷量。
需要说明的是,UE的整体负荷信息可以理解为:对于UE整体设备而言,UE的负荷信息。本申请实施例中的负荷可以包括以下至少一项:存储器的使用情况、处理器的占用情况等。
可选地,本申请实施例中,UE的整体负荷信息可以包括以下至少一项:存储器和/或处理器的占用比例、存储器和/或处理器的负荷等级等。
可选地,本申请实施例中,上述至少一个模块的负荷信息可以为UE中的各个模块的负荷信息,或者可以为UE中的一个或多个重点/关键模块的负荷信息。例如,重点/关键模块可以包括:底层数据收发模块、业务数据处理模块(应用处理器)等。
需要说明的是,针对任意一个模块的负荷信息,也可以采用上述整体负荷信息的表示形式(即存储器和/或处理器的占用比例、存储器和/或处理器的负荷等级等中的至少一项)进行上报。
需要说明的是,上述UE期望的目标负荷量,UE是针对UE设备整体,或者UE中的一个或多个模块的负荷,所给出的相应建议(即UE期望整个设备,或者自身的一个或多个模块的负荷达到目标负荷量)。
示例性地,UE同时上报UE设备整体的当前负荷量和建议的目标负荷量。或者,UE给出UE设备整体的负荷调整建议,例如UE建议降低存储占用(和/或,存储占用所需要下调的量),或降低处理任务数/运算量(和/或,任务数/运算量所需要下调的量)等。
可选地,本申请实施例中,上述目标逻辑信道/逻辑信道组包括以下至少一项:满足第一预设条件的逻辑信道/逻辑信道组、视频传输增强层对应的逻辑信道/逻辑信道组、所有逻辑信道/逻辑信道组。
本申请实施例中,UE可以通过向网络侧设备上报第一指示信息,向网络侧设备指示UE对于下行业务数据传输/接收的建议信息,具体建议信息可以包括下述建议1至建议3中的至少一项。
建议1:UE只接收属性满足第一预设条件的逻辑信道/逻辑信道组对应的数据。
示例性地,UE只接收优先级高于或等于一个预设值的逻辑信道对应的数据(例如,逻辑信道的配置对应的优先级(例如高层配置参数组Logical Channel Config中的priority参数)小于或等于一个预设值),其它逻辑信道对应的数据网络侧设备可以不用传输/发送,或者优先级较低时,网络侧设备可以根据自身的实际情况和/或综合不同的参考因素等,尽力而为地传输对应的数据,无需保证或严格保证这部分数据的传输质量。
建议2:UE只接收与视频传输增强层对应的逻辑信道/逻辑信道组对应的数据。
假设源端视频编码支持区分基础层和增强层,在业务源接收端,基础层对应的数据必须正确接收,才能保证业务源的基本操作(例如视频播放),而增强层可叠加在基础层上呈现(也可能是独立呈现),其呈现能够提升用户的体验。当空口资源紧张/较少时,需要优先保证业务源的基本操作,当空口资源富余/较多时,则可以同时保证基础层和增强层的传输。
这里假设在空口也能够区分视频传输的基础层和增强层,具体的区分方式可以通过逻辑信道/逻辑信道组的优先级来标识/区分。网络侧设备识别视频传输的基础层和增强层的方式在此不作限定。
需要说明的是,当音频编码或其它信息的编码也区分基础层和增强层时,也可以采用上述类似的操作,在此不再赘述。
建议3:UE正常接收所有逻辑信道/逻辑信道组对应的数据。
UE可正常接收所有逻辑信道/逻辑信道组对应的数据,网络侧设备无需对部分下行业务数据进行删减或丢弃,或者低优先级处理。这里可以理解为针对上述建议1或建议2的恢复操作。
本申请实施例中,UE可以通过向网络侧设备上报第二指示信息,向网络侧设备指示网络侧设备调整空口数据传输的PDB的建议信息,具体建议信息可以包括下述建议4。
建议4:网络侧设备可以增大或缩小空口数据传输的PDB。
在UE因为应用层处理负荷较大,导致业务数据由空口递交到业务源收端之后,UE还需要较多的处理时间,因此UE可以通知网络侧设备需要缩小空口数据传输的PDB,从而保证在空口上数据可更及时地递交,将压缩出来的时间余量留给业务源收端作相应处理,从而保证业务体验。
相反地,当UE因为应用层处理负荷变轻/较小,可正常或更快速地处理从空口接收的业务数据时,UE可以通知网络侧设备恢复/增大空口数据传输的PDB,从而可以为网络侧设备的数据传输调度提供更多的灵活度,和/或保证空口数据传输的可靠性。例如,网络侧设备可以基于数据包的PDB进行调度,当某个数据包的PDB临近或已超时,则网络侧设备不再调度此数据包(或此数据包的剩余数据)的传输,从而导致此数据包被丢弃。在PDB被恢复/增大之后,在存在空口资源冲突的情况下,对于某个数据包,网络侧设备在时域有更多的机会调度其传输,从而数据包在PDB内成功传输的概率也会相应地提升。
需要说明的是,针对上述PDB的缩小或增大,UE可以只简单建议网络侧设备需要缩小或增大,也可以进一步地向网络侧设备指示缩小或增大的程度,例如在当前PDB的基础上缩小或增大N毫秒,或者M个百分点,N和M均为正数,N和M的具体取值可以由协议规定,或者通过高层信令配置。
可选地,本申请实施例中,上述空口数据传输对应至少一个逻辑信道/逻辑信道组。
可选地,本申请实施例中,在空口数据传输对应至少一个逻辑信道/逻辑信道组的情况下:至少一个逻辑信道/逻辑信道组中的所有逻辑信道/逻辑信道组均对应一个PDB调整信息;或者,至少一个逻辑信道/逻辑信道组中的每个逻辑信道/逻辑信道组分别对应一个PDB调整信息。
需要说明的是,针对上述空口数据传输,可以通过对应的无线承载/逻辑信道/逻辑信道组来进行标识/区分。例如,UE可以针对至少一个逻辑信道/逻辑信道组(即某个无线承载/逻辑信道/逻辑信道组,或者某些无线承载/逻辑信道/逻辑信道组,或者所有无线承载/逻辑信道/逻辑信道组),分别给出各自的PDB调整建议,或者统一给出一个PDB调整建议。
可选地,本申请实施例中,UE对满足一个预设条件的无线承载/逻辑信道/逻辑信道组,给出对应的PDB调整建议。
可选地,本申请实施例中,在UE的应用层处理负荷信息满足第二预设条件的情况下,第二指示信息具体用于指示网络侧设备增大或缩小空口数据传输的PDB。
可选地,本申请实施例中,在UE的应用层处理负荷量大于或等于预设阈值的情况下,上述第二指示信息具体用于指示网络侧设备缩小空口数据传输的PDB。或者,在UE的应用层处理负荷量小于预设阈值的情况下,上述第二指示信息具体用于指示网络侧设备扩大空口数据传输的PDB。
示例性地,假设网络侧设备将视频数据和音频数据映射为不同的无线承载/逻辑信道,由于视频数据处理量较大,当UE侧因为应用层处理负荷较大,导致需要更多的处理时间时,可以向网络侧设备指示将视频数据对应的无线承载/逻辑信道对应的PDB缩小/下调X  ms,或者Y%(X和Y均为正数)。当UE检测到应用层负荷较小,能够按正常处理时延来处理视频数据时,UE可以向网络侧设备指示视频数据对应的无线承载/逻辑信道对应的PDB增大/恢复为原始取值。
本申请实施例中,UE可以通过向网络侧设备上报第三指示信息,向网络侧设备指示网络侧设备调整视频流/音频流的编码速率的建议信息,具体建议信息可以包括下述建议5。
建议5:网络侧设备可以提升或降低视频/音频流的编码速率。
建议5可以由UE和服务器在更高层(例如应用层)进行交互,也可以由UE通过空口信令(能够以较快的频率)通知接入网设备,然后接入网设备再与服务器进行交互。
本申请实施例中,UE可以通过向网络侧设备上报最大下行数据速率,向网络侧设备指示UE期望/能够接收的最大下行数据速率,即UE接收下行业务数据时数据速率的建议信息,具体建议信息可以包括下述建议6。
建议6:UE可以/期望接收的最大下行数据速率。
这里的最大下行数据速率可以理解为:UE期望网络侧设备调度的下行瞬时数据速率,或者在一个指定时间窗内经过平均或平滑处理后的下行数据速率不超过(即小于或等于)最大下行数据速率。
可选地,本申请实施例中,UE还可以向网络侧设备指示应用建议6的最大下行数据速率的开始时刻、推荐时长、结束时刻等。
可选地,本申请实施例中,上述目标信息为以下任一项:在目标时刻采样(或搜集)的信息、在目标时间窗内采集的信息、对采集的信息进行平滑处理或滤波处理后得到的信息。
其中,上述目标时刻为目标信息的发送时刻之前的一个时刻,或者,上述目标时刻为早于或等于(即不晚于)目标信息的发送时刻、且最近一次采样信息的时刻。上述目标时间窗为以第一时刻为结束时刻的时间窗,该第一时刻为目标信息的发送时刻,或者该第一时刻为早于或等于(即不晚于)目标信息的发送时刻、且最近一次采样信息的时刻。
可选地,本申请实施例中,上述目标时间窗内采集的信息为:对目标时间窗内的各个时间点采集的同类型信息进行线性平均或加权平均处理后得到的信息。
可选地,本申请实施例中,对采集的信息进行平滑处理或滤波处理后得到的信息为:在目标时刻采样的信息*(1-目标系数)+上一次平滑处理或滤波处理后的信息*目标系数,目标系数为平滑系数或滤波系数。
需要说明的是,上述平滑处理或滤波处理可以在目标信息的发送时刻执行,或者,可以在早于或等于(即不晚于)目标信息的发送时刻、且最近一次的周期对应的时刻执行,这里的周期可以由协议约定或基于高层信令配置。
可以理解,对于上述目标信息的搜集、处理和上报,可以采用以下方式1至方式3中的任一项。
方式1:基于瞬时信息。
UE使用上报时刻前采样的最新信息(或者,不晚于上报时刻采样的最新信息),或基于这些最新信息作进一步处理/判断得到的信息,进行目标信息的上报。
方式2:基于滑动时间窗。
基于上报时刻或者上报时刻前最近一次可采样或搜集最新信息的时刻,往前推一个时 间窗,基于在这个时间窗内对应的所有信息(例如这个时间窗内的各个采样时间点对应的信息)的综合处理/判断得到的信息作为目标信息。
需要说明的是,这里的综合处理/判断包括对各个采样/搜集时间点对应的同类信息取线性平均或加权平均,或在平均或加权平均的基础上进一步处理/判断(例如综合多项信息再作统一判断)。
可选地,本申请实施例中,上述时间窗可以由协议约定,或者通过高层信令配置,或者UE自主决定等。
方式3:基于长时平滑。
对于上述目标信息中的任意一个信息,可以采用平滑系数或滤波系数的方式,在时域上持续平滑搜集到的信息,在需要上报时基于当前最新的平滑结果(即通过采用平滑系数或滤波系数,对在时域上持续采集到的信息进行平滑处理或滤波处理后得到的信息)进行上报。
可选地,本申请实施例中,平滑/滤波方式为:平滑/滤波后的信息=上一次平滑或滤波后的信息*目标系数+当前采用或搜集时刻对应的最新瞬时信息*(1-目标系数)。这里的目标系数,即平滑系数或滤波系数可以认为是一个取值范围为[0,1]的参数。平滑系数或滤波系数的取值可以由协议约定,或者通过高层信令配置。
需要说明的是,上述符号*表示两个实数之间的乘法运算,上述符号+表示两个实数之间的加法运算。
步骤202、网络侧设备接收UE发送的目标信息。
本申请实施例中,上述目标信息包括以下至少一项:第一信息和第二信息。
需要说明的是,针对第一信息和第二信息的说明,可以参见上述实施例的描述,此处不再赘述。
步骤203、网络侧设备根据目标信息,确定目标业务数据的传输策略。
本申请实施例中,网络侧设备可以根据目标信息(例如第一信息、第二指示信息、第三指示信息中的至少一项),为UE进行参数配置/重配,以根据配置/重配的参数,确定目标业务数据的传输策略,从而基于该传输策略向UE发送目标业务数据。或者,网络侧设备可以根据目标信息(例如第一指示信息、第二指示信息、最大下行数据速率中的至少一项),进行下行调度判决,以根据下行调度的决策信息,确定目标业务数据的传输策略,从而基于该传输策略向UE发送目标业务数据。或者,网络侧设备可以根据目标信息(例如第一指示信息和/或第二指示信息),进行下行数据包的丢弃,以向UE发送剩余的数据包(即确定目标业务数据的传输策略为丢弃目标业务数据中的部分数据包,传输剩余的数据包)。
可选地,在本申请实施例的一种实现方式中,上述步骤203具体可以通过下述的步骤203a实现。
步骤203a、网络侧设备根据目标信息,为UE进行参数配置/重配,以确定目标业务数据的传输策略。
本申请实施例中,网络侧设备在接收到目标信息之后,可以为UE执行与目标信息对应的参数配置/重配。例如,网络侧设可以在接收到UE的功耗相关信息之后,为UE进行功耗相关的参数的配置/重配。网络侧设可以在接收到UE的负荷相关信息之后,为UE进 行负荷相关的参数的配置/重配。
可选地,本申请实施例中,配置/重配的参数包括以下至少一项:非连续接收(Discontinuous Reception,DRX)参数、节能机制、逻辑信道/逻辑信道组的优先级、丢弃定时器参数、服务质量(Quality of Service,QoS)参数。
可选地,本申请实施例中,网络侧设备在接收到因素2(功耗、散热情况、剩余电量等)对应的信息(功耗相关信息、散热相关信息、剩余电量信息等)之后,可以配置合适的DRX参数,或节能(power saving)机制。
可选地,本申请实施例中,网络侧设备在接收到因素3(处理能力)对应的信息(负荷相关信息),或者建议4,或者建议6等之后,可以配置更为匹配的逻辑信道优先级、丢弃定时器(discard timer)等空口参数,或者配置更为匹配的高层QoS参数(例如保证比特速率(Guaranteed Bit Rate,GBR)等)。
可选地,本申请实施例中,网络侧设备可以基于接收到的建议5,通知服务器执行与建议5相对应的操作(提升或降低视频流/音频流的编码速率)。
本申请实施例中,网络侧设备可以根据配置/重配的参数(即目标业务数据的传输策略),传输目标业务数据。
本申请实施例中,网络侧设备可以通过根据UE上报的目标信息,为UE配置/重配对应的参数的方式,高效地传输业务数据,从而可以更好地满足业务需求,提升业务容量。
可选地,在本申请实施例的另一种实现方式中,上述步骤203具体可以通过下述的步骤203b实现。
步骤203b、网络侧设备根据目标信息,对UE对应的下行数据传输执行调度判决,以确定目标业务数据的传输策略。
本申请实施例中,网络侧设备在接收到目标信息之后,在进行下行调度判决时,可以根据该目标信息,对UE对应的下行业务数据传输进行调度判决。
可选地,本申请实施例中,网络侧设备在接收到因素3(处理能力)对应的信息,或者建议1/建议2/建议3/建议4/建议6等之后,可以调整给对应UE分配资源的优先级(例如高/低优先级处理该UE对应的业务数据,或该UE对应的某些业务数据),和/或分配的资源量(例如增大/减少分配的资源量)等。
本申请实施例中,网络侧设备可以根据调度判决的决策信息(即目标业务数据的传输策略),传输目标业务数据。
本申请实施例中,网络侧设备可以通过根据UE上报的目标信息,为UE对应的下行数据传输执行调度判决的方式,高效地传输业务数据,从而可以更好地满足业务需求,提升业务容量。
可选地,在本申请实施例的又一种实现方式中,上述步骤203具体可以通过下述的步骤203c实现。
步骤203c、网络侧设备根据目标信息,确定目标业务数据的传输策略为:丢弃目标业务数据中满足目标预设条件的数据,并传输目标业务数据中的剩余数据。
本申请实施例中,网络侧设备在接收到目标信息之后,可以根据目标信息,对于满足目标预设条件的下行业务数据不进行传输(即对这些下行业务数据进行丢弃),或者将目标信息作为下行丢包的参考因素。
可选地,本申请实施例中,网络侧设备在接收到建议1之后,可以直接丢弃不满足目标预设条件的逻辑信道/逻辑信道组对应的所有待传数据包(例如丢弃优先级低于预设值的逻辑信道/逻辑信道组对应的数据包),并传输其他逻辑信道/逻辑信道组(例如优先级高于或等于预设值的逻辑信道/逻辑信道组)对应的数据包。
可选地,本申请实施例中,网络侧设备在接收到建议2之后,可以直接丢弃不满足目标预设条件的逻辑信道/逻辑信道组对应的所有待传数据包(例如丢弃除视频传输增强层对应的逻辑信道/逻辑信道组之外的逻辑信道/逻辑信道组对应的数据包),并传输其他逻辑信道/逻辑信道组(例如视频传输增强层对应的逻辑信道/逻辑信道组)对应的数据包。
可选地,本申请实施例中,网络侧设备在接收到建议4之后,可以基于调整后的PDB,执行下行数据包的丢弃操作,并传输剩余的下行数据包。
本申请实施例中,网络侧设备可以通过根据UE上报的目标信息,执行下行数据包丢弃的方式,高效地传输业务数据,从而可以更好地满足业务需求,提升业务容量。
可以理解,本申请实施例中,为了使得UE和网络侧设备更及时地同步下行业务数据传输的相关信息,便于通过调整参数配置、调度、丢包等方式高效地传输业务数据,UE可以上报下行业务数据(即目标业务数据)对应的接收相关信息,从而可以更好地满足业务需求,并提升业务容量。
本申请实施例提供一种业务数据传输方法,UE可以向网络侧设备发送目标信息,以使得网络侧设备可以根据该目标信息,确定目标业务数据的传输策略,以进行目标业务数据的传输。对于目标业务数据,UE可以向网络侧设备指示UE接收目标业务数据的辅助信息,即UE自身的一些信息(功耗、散热、剩余电量、负荷等)和/或UE给网络侧设备的一些建议/推荐/期望信息,从而使得网络侧设备可以根据UE自身的信息和/或UE的建议信息,确定更好/更匹配的传输策略,从而便于网络侧设备以更好/更匹配的方式向UE发送目标业务数据,如此达到使用有限的空口资源高效地传输目标业务数据的目的,也满足了业务需求,提升了业务容量。
需要说明的是,本申请实施例提供的业务数据传输方法,执行主体还可以为业务数据传输装置,或者,UE(或网络侧设备)中的用于执行业务数据传输方法的控制模块。本申请实施例中以UE和网络侧设备交互为例,说明本申请实施例提供的业务数据传输方法。
图3示出了本申请实施例中涉及的业务数据传输装置的一种可能的结构示意图。如图3所示,该业务数据传输装置30可以包括:发送单元31。
其中,发送单元31,用于向网络侧设备发送目标信息,该目标信息用于确定目标业务数据的传输策略,目标信息包括以下至少一项:第一信息和第二信息。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
在一种可能的实现方式中,UE的功耗相关信息包括以下至少一项:UE的整体功耗信息、UE中的至少一个模块的功耗信息;
和/或,
UE的散热相关信息包括以下至少一项:UE的整体温度信息、UE中的至少一个模块的温度信息、UE的当前散热等级、第四指示信息和目标差值,第四指示信息用于指示UE对应的温度值是否大于或等于散热的告警阈值,目标差值为UE对应的温度值与告警阈值之间的差值;
和/或,
UE的剩余电量信息包括以下至少一项:UE的剩余电量的百分比、第一时长,第一时长为支持UE继续运转/工作的时长;
和/或,
UE的负荷相关信息包括以下至少一项:UE的整体负荷信息、UE中的至少一个模块的负荷信息、UE期望的目标负荷量。
在一种可能的实现方式中,上述目标逻辑信道/逻辑信道组包括以下至少一项:满足第一预设条件的逻辑信道/逻辑信道组、视频传输增强层对应的逻辑信道/逻辑信道组、所有逻辑信道/逻辑信道组。
在一种可能的实现方式中,上述空口数据传输对应至少一个逻辑信道/逻辑信道组。至少一个逻辑信道/逻辑信道组中的所有逻辑信道/逻辑信道组均对应一个PDB调整信息;或者,至少一个逻辑信道/逻辑信道组中的每个逻辑信道/逻辑信道组分别对应一个PDB调整信息。
在一种可能的实现方式中,在UE的应用层处理负荷信息满足第二预设条件的情况下,上述第二指示信息具体用于指示网络侧设备增大或缩小空口数据传输的PDB。
在一种可能的实现方式中,上述目标信息为以下任一项:在目标时刻采样的信息、在目标时间窗内采集的信息、对采集的信息进行平滑处理或滤波处理后得到的信息。其中,目标时刻为目标信息的发送时刻之前的一个时刻,或者,目标时刻为早于或等于目标信息的发送时刻、且最近一次采样信息的时刻;目标时间窗为以第一时刻为结束时刻的时间窗,第一时刻为目标信息的发送时刻,或者第一时刻为早于或等于目标信息的发送时刻、且最近一次采样信息的时刻。
在一种可能的实现方式中,上述目标时间窗内采集的信息为:对目标时间窗内的各个时间点采集的同类型信息进行线性平均或加权平均处理后得到的信息;
和/或,
对采集/搜集的信息进行平滑处理或滤波处理后得到的信息为:在目标时刻采样的信息*(1-目标系数)+上一次平滑处理或滤波处理后的信息*目标系数,目标系数为平滑系数或滤波系数。
本申请实施例提供一种业务数据传输装置,对于目标业务数据,业务数据传输装置可以向网络侧设备指示业务数据传输装置接收目标业务数据的辅助信息,即UE自身的一些信息(功耗、散热、剩余电量、负荷等)和/或UE给网络侧设备的一些建议/推荐/期望信息,从而使得网络侧设备可以根据UE自身的信息和/或UE的建议信息,确定更好/更匹配的传输策略,从而便于网络侧设备以更好/更匹配的方式向业务数据传输装置发送目标业务数据,如此达到使用有限的空口资源高效地传输目标业务数据的目的,也满足了业务需求,提升了业务容量。
本申请实施例中的业务数据传输装置可以是装置,具有操作系统的装置或UE,也可以是UE中的部件、集成电路、或芯片。该装置或UE可以是移动终端,也可以为非移动终端。示例性的,移动终端可以包括但不限于上述所列举的UE 11的类型,非移动终端可以为服务器、网络附属存储器(Network Attached Storage,NAS)、个人计算机(Personal Computer,PC)、电视机(Television,TV)、柜员机或者自助机等,本申请实施例不作具体限定。
本申请实施例提供的业务数据传输装置能够实现上述方法实施例UE实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
图4示出了本申请实施例中涉及的业务数据传输装置的一种可能的结构示意图。如图4所示,该业务数据传输装置40可以包括:接收单元41和确定单元42。
其中,接收单元41,用于接收UE发送的目标信息,该目标信息包括以下至少一项:第一信息和第二信息。
确定单元42,用于根据接收单元41接收的目标信息,确定目标业务数据的传输策略。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
在一种可能的实现方式中,UE的功耗相关信息包括以下至少一项:UE的整体功耗信息、UE中的至少一个模块的功耗信息;
和/或,
UE的散热相关信息包括以下至少一项:UE的整体温度信息、UE中的至少一个模块的温度信息、UE的当前散热等级、第四指示信息和目标差值,第四指示信息用于指示UE对应的温度值是否大于或等于散热的告警阈值,目标差值为UE对应的温度值与告警阈值之间的差值;
和/或,
UE的剩余电量信息包括以下至少一项:UE的剩余电量的百分比、第一时长,第一时长为支持UE继续运转/工作的时长;
和/或,
UE的负荷相关信息包括以下至少一项:UE的整体负荷信息、UE中的至少一个模块的负荷信息、UE期望的目标负荷量。
在一种可能的实现方式中,上述目标逻辑信道/逻辑信道组包括以下至少一项:满足第一预设条件的逻辑信道/逻辑信道组、视频传输增强层对应的逻辑信道/逻辑信道组、所有逻辑信道/逻辑信道组。
在一种可能的实现方式中,上述确定单元42,具体用于根据目标信息,为UE进行参数配置/重配,以确定目标业务数据的传输策略。
在一种可能的实现方式中,配置/重配的参数包括以下至少一项:DRX参数、节能机制、逻辑信道/逻辑信道组的优先级、丢弃定时器参数、QoS参数。
在一种可能的实现方式中,上述确定单元42,具体用于根据目标信息,对UE对应的下行数据传输执行调度判决,以确定目标业务数据的传输策略。
在一种可能的实现方式中,上述确定单元42,具体用于根据目标信息,确定目标业务数据的传输策略为:丢弃目标业务数据中满足目标预设条件的数据,并传输目标业务数据中的剩余数据。
本申请实施例提供一种业务数据传输装置,对于目标业务数据,业务数据传输装置可以根据UE指示的UE接收目标业务数据的辅助信息,即UE自身的一些信息(功耗、散热、剩余电量、负荷等)和/或UE给网络侧设备的一些建议/推荐/期望信息,确定更好/更匹配的传输策略,从而便于业务数据传输装置以更好/更匹配的方式向UE发送目标业务数据,如此达到使用有限的空口资源高效地传输目标业务数据的目的,也满足了业务需求,提升了业务容量。
本申请实施例中的业务数据传输装置可以是装置,具有操作系统的装置或网络侧设备,也可以是网络侧设备中的部件、集成电路、或芯片。
本申请实施例提供的业务数据传输装置能够实现上述方法实施例网络侧设备实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
可选地,如图5所示,本申请实施例还提供一种通信设备500,包括处理器501,存储器502,存储在存储器502上并可在所述处理器501上运行的程序或指令,例如,该通信设备500为UE时,该程序或指令被处理器501执行时实现上述方法实施例UE的各个过程,且能达到相同的技术效果。该通信设备500为网络侧设备时,该程序或指令被处理器501执行时实现上述方法实施例网络侧设备的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
本申请实施例还提供一种UE,包括处理器和通信接口,通信接口,用于向网络侧设备发送目标信息,该目标信息用于确定目标业务数据的传输策略,目标信息包括以下至少一项:第一信息和第二信息。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。该UE实施例是与上述UE侧方法实施例对应的,上述方法实施例的各个实施过程和实现方式均可适用于该UE实施例中,且能达到相同的技术效果。具体地,图6为实现本申请实施例的一种UE的硬件结构示意图。
该UE 100包括但不限于:射频单元101、网络模块102、音频输出单元103、输入单元104、传感器105、显示单元106、用户输入单元107、接口单元108、存储器109、以及处理器110等中的至少部分部件。
本领域技术人员可以理解,UE 100还可以包括给各个部件供电的电源(比如电池),电源可以通过电源管理系统与处理器110逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。图6中示出的UE结构并不构成对UE的限定,UE可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置,在此不再赘述。
应理解的是,本申请实施例中,输入单元104可以包括图形处理器(Graphics Processing Unit,GPU)1041和麦克风1042,图形处理器1041对在视频捕获模式或图像捕获模式中由图像捕获装置(如摄像头)获得的静态图片或视频的图像数据进行处理。显示单元106可包括显示面板1061,可以采用液晶显示器、有机发光二极管等形式来配置显示面板1061。用户输入单元107包括触控面板1071以及其他输入设备1072。触控面板1071,也称为触摸屏。触控面板1071可包括触摸检测装置和触摸控制器两个部分。其他输入设备1072可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆,在此不再赘述。
本申请实施例中,射频单元101将来自网络侧设备的下行数据接收后,给处理器110处理;另外,将上行的数据发送给网络侧设备。通常,射频单元101包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器、双工器等。
存储器109可用于存储软件程序或指令以及各种数据。存储器109可主要包括存储程序或指令区和存储数据区,其中,存储程序或指令区可存储操作系统、至少一个功能所需的应用程序或指令(比如声音播放功能、图像播放功能等)等。此外,存储器109可以包括高速随机存取存储器,还可以包括非易失性存储器,其中,非易失性存储器可以是只读存储器(Read-Only Memory,ROM)、可编程只读存储器(Programmable ROM,PROM)、可擦除可编程只读存储器(Erasable PROM,EPROM)、电可擦除可编程只读存储器(Electrically EPROM,EEPROM)或闪存。例如至少一个磁盘存储器件、闪存器件、或其他非易失性固态存储器件。
处理器110可包括一个或多个处理单元;可选地,处理器110可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序或指令等,调制解调处理器主要处理无线通信,如基带处理器。可以理解的是,上述调制解调处理器也可以不集成到处理器110中。
其中,射频单元101,用于向网络侧设备发送目标信息,该目标信息用于确定目标业务数据的传输策略,目标信息包括以下至少一项:第一信息和第二信息。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
本申请实施例提供一种UE,对于目标业务数据,UE可以向网络侧设备指示UE接收目标业务数据的辅助信息,即UE自身的一些信息(功耗、散热、剩余电量、负荷等)和/或UE给网络侧设备的一些建议/推荐/期望信息,从而使得网络侧设备可以根据UE自身的信息和/或UE的建议信息,确定更好/更匹配的传输策略,从而便于网络侧设备以更好/更匹配的方式向UE发送目标业务数据,如此达到使用有限的空口资源高效地传输目标业务数据的目的,也满足了业务需求,提升了业务容量。
本申请实施例提供的UE能够实现上述方法实施例中UE实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
本申请实施例还提供一种网络侧设备,包括处理器和通信接口,通信接口用于接收UE发送的目标信息,该目标信息包括以下至少一项:第一信息和第二信息。处理器,用于根据目标信息,确定目标业务数据的传输策略。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。该网络侧设备实施例是与上述网络侧设备方法实施例对应的,上述方法实施例的各个实施过程和实现方式均可适用于该网络侧设备实施例中,且能达到相同的技术效果。
具体地,本申请实施例还提供了一种网络侧设备。如图7所示,该网络侧设备700包括:天线71、射频装置72、基带装置73。天线71与射频装置72连接。在上行方向上,射频装置72通过天线71接收信息,将接收的信息发送给基带装置73进行处理。在下行方向上,基带装置73对要发送的信息进行处理,并发送给射频装置72,射频装置72对收到的信息进行处理后经过天线71发送出去。
上述频带处理装置可以位于基带装置73中,以上实施例中网络侧设备执行的方法可以在基带装置73中实现,该基带装置73包括处理器74和存储器75。
基带装置73例如可以包括至少一个基带板,该基带板上设置有多个芯片,如图7所示,其中一个芯片例如为处理器74,与存储器75连接,以调用存储器75中的程序,执行以上方法实施例中所示的网络侧设备操作。
该基带装置73还可以包括网络接口76,用于与射频装置72交互信息,该接口例如为通用公共无线接口(Common Public Radio Interface,CPRI)。
其中,射频装置72,用于接收UE发送的目标信息,该目标信息包括以下至少一项:第一信息和第二信息。
基带装置73,用于根据目标信息,确定目标业务数据的传输策略。其中,第一信息包括以下至少一项:UE的功耗相关信息、UE的散热相关信息、UE的剩余电量信息、UE的负荷相关信息。第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率。第一指示信息用于指示UE期望接收的目标逻辑信道/逻辑信道组对应的数据,第二指示信息用于指示网络侧设备调整空口数据传输的PDB,第三指示信息用于指示网络侧设备调整视频流/音频流的编码速率,最大下行数据速率为UE接收数据时数据速率的最大门限值。
本申请实施例提供一种网络侧设备,对于目标业务数据,网络侧设备可以根据UE指示的UE接收目标业务数据的辅助信息,即UE自身的一些信息(功耗、散热、剩余电量、负荷等)和/或UE给网络侧设备的一些建议/推荐/期望信息,确定更好/更匹配的传输策略,从而便于网络侧设备以更好/更匹配的方式向UE发送目标业务数据,如此达到使用有限的空口资源高效地传输目标业务数据的目的,也满足了业务需求,提升了业务容量。
本申请实施例提供的网络侧设备能够实现上述方法实施例中网络侧设备实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
具体地,本申请实施例的网络侧设备还包括:存储在存储器75上并可在处理器74上 运行的指令或程序,处理器74调用存储器75中的指令或程序执行上述各模块或单元执行的方法,并达到相同的技术效果,为避免重复,故不在此赘述。
本申请实施例还提供一种可读存储介质,所述可读存储介质上存储有程序或指令,该程序或指令被处理器执行时实现上述业务数据传输方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
其中,所述处理器为上述实施例中所述的UE中的处理器。所述可读存储介质,包括计算机可读存储介质,如计算机只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等。
本申请实施例另提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现上述业务数据传输方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
应理解,本申请实施例提到的芯片还可以称为系统级芯片,系统芯片,芯片系统或片上系统芯片等。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。此外,需要指出的是,本申请实施方式中的方法和装置的范围不限按示出或讨论的顺序来执行功能,还可包括根据所涉及的功能按基本同时的方式或按相反的顺序来执行功能,例如,可以按不同于所描述的次序来执行所描述的方法,并且还可以添加、省去、或组合各种步骤。另外,参照某些示例所描述的特征可在其他示例中被组合。
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上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以计算机软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络侧设备等)执行本申请各个实施例所述的方法。
上面结合附图对本申请的实施例进行了描述,但是本申请并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本申请的启示下,在不脱离本申请宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本申请的保护之内。

Claims (35)

  1. 一种业务数据传输方法,包括:
    用户设备UE向网络侧设备发送目标信息,所述目标信息用于确定目标业务数据的传输策略,所述目标信息包括以下至少一项:第一信息和第二信息;
    其中,所述第一信息包括以下至少一项:所述UE的功耗相关信息、所述UE的散热相关信息、所述UE的剩余电量信息、所述UE的负荷相关信息;
    所述第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率;
    所述第一指示信息用于指示所述UE期望接收的目标逻辑信道/逻辑信道组对应的数据,所述第二指示信息用于指示所述网络侧设备调整空口数据传输的数据包时延预算PDB,所述第三指示信息用于指示所述网络侧设备调整视频流/音频流的编码速率,所述最大下行数据速率为所述UE接收数据时数据速率的最大门限值。
  2. 根据权利要求1所述的方法,其中,所述UE的功耗相关信息包括以下至少一项:所述UE的整体功耗信息、所述UE中的至少一个模块的功耗信息;
    和/或,
    所述UE的散热相关信息包括以下至少一项:所述UE的整体温度信息、所述UE中的至少一个模块的温度信息、所述UE的当前散热等级、第四指示信息和目标差值,所述第四指示信息用于指示所述UE对应的温度值是否大于或等于散热的告警阈值,所述目标差值为所述UE对应的温度值与所述告警阈值之间的差值;
    和/或,
    所述UE的剩余电量信息包括以下至少一项:所述UE的剩余电量的百分比、第一时长,所述第一时长为支持所述UE继续运转/工作的时长;
    和/或,
    所述UE的负荷相关信息包括以下至少一项:所述UE的整体负荷信息、所述UE中的至少一个模块的负荷信息、所述UE期望的目标负荷量。
  3. 根据权利要求1所述的方法,其中,所述目标逻辑信道/逻辑信道组包括以下至少一项:满足第一预设条件的逻辑信道/逻辑信道组、视频传输增强层对应的逻辑信道/逻辑信道组、所有逻辑信道/逻辑信道组。
  4. 根据权利要求1所述的方法,其中,所述空口数据传输对应至少一个逻辑信道/逻辑信道组;
    所述至少一个逻辑信道/逻辑信道组中的所有逻辑信道/逻辑信道组均对应一个PDB调整信息;或者,
    所述至少一个逻辑信道/逻辑信道组中的每个逻辑信道/逻辑信道组分别对应一个PDB调整信息。
  5. 根据权利要求1或4所述的方法,其中,在所述UE的应用层处理负荷信息满足第二预设条件的情况下,所述第二指示信息具体用于指示所述网络侧设备增大或缩小空口数据传输的PDB。
  6. 根据权利要求1所述的方法,其中,所述目标信息为以下任一项:在目标时刻采样的信息、在目标时间窗内采集的信息、对采集的信息进行平滑处理或滤波处理后得到的信息;
    其中,所述目标时刻为所述目标信息的发送时刻之前的一个时刻,或者,所述目标时刻为早于或等于所述目标信息的发送时刻、且最近一次采样信息的时刻;所述目标时间窗为以第一时刻为结束时刻的时间窗,所述第一时刻为所述目标信息的发送时刻,或者所述第一时刻为早于或等于所述目标信息的发送时刻、且最近一次采样信息的时刻。
  7. 根据权利要求6所述的方法,其中,所述目标时间窗内采集的信息为:对所述目标时间窗内的各个时间点采集的同类型信息进行线性平均或加权平均后得到的信息;
    和/或,
    对采集的信息进行平滑处理或滤波处理后得到的信息为:在目标时刻采样的信息*(1-目标系数)+上一次平滑处理或滤波处理后的信息*目标系数,所述目标系数为平滑系数或滤波系数。
  8. 一种业务数据传输方法,包括:
    网络侧设备接收用户设备UE发送的目标信息,所述目标信息包括以下至少一项: 第一信息和第二信息;
    所述网络侧设备根据所述目标信息,确定目标业务数据的传输策略;
    其中,所述第一信息包括以下至少一项:所述UE的功耗相关信息、所述UE的散热相关信息、所述UE的剩余电量信息、所述UE的负荷相关信息;
    所述第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率;
    所述第一指示信息用于指示所述UE期望接收的目标逻辑信道/逻辑信道组对应的数据,所述第二指示信息用于指示所述网络侧设备调整空口数据传输的数据包时延预算PDB,所述第三指示信息用于指示所述网络侧设备调整视频流/音频流的编码速率,所述最大下行数据速率为所述UE接收数据时数据速率的最大门限值。
  9. 根据权利要求8所述的方法,其中,所述UE的功耗相关信息包括以下至少一项:所述UE的整体功耗信息、所述UE中的至少一个模块的功耗信息;
    和/或,
    所述UE的散热相关信息包括以下至少一项:所述UE的整体温度信息、所述UE中的至少一个模块的温度信息、所述UE的当前散热等级、第四指示信息和目标差值,所述第四指示信息用于指示所述UE对应的温度值是否大于或等于散热的告警阈值,所述目标差值为所述UE对应的温度值与所述告警阈值之间的差值;
    和/或,
    所述UE的剩余电量信息包括以下至少一项:所述UE的剩余电量的百分比、第一时长,所述第一时长为支持所述UE继续运转/工作的时长;
    和/或,
    所述UE的负荷相关信息包括以下至少一项:所述UE的整体负荷信息、所述UE中的至少一个模块的负荷信息、所述UE期望的目标负荷量。
  10. 根据权利要求8所述的方法,其中,所述目标逻辑信道/逻辑信道组包括以下至少一项:满足第一预设条件的逻辑信道/逻辑信道组、视频传输增强层对应的逻辑信道/逻辑信道组、所有逻辑信道/逻辑信道组。
  11. 根据权利要求8至10中任一项所述的方法,其中,所述网络侧设备根据所述目标信息,确定目标业务数据的传输策略,包括:
    所述网络侧设备根据所述目标信息,为所述UE进行参数配置/重配,以确定所述目标业务数据的传输策略。
  12. 根据权利要求11所述的方法,其中,配置/重配的参数包括以下至少一项:非连续接收DRX参数、节能机制、逻辑信道/逻辑信道组的优先级、丢弃定时器参数、服务质量QoS参数。
  13. 根据权利要求8至10中任一项所述的方法,其中,所述网络侧设备根据所述目标信息,确定目标业务数据的传输策略,包括:
    所述网络侧设备根据所述目标信息,对所述UE对应的下行数据传输执行调度判决,以确定所述目标业务数据的传输策略。
  14. 根据权利要求8至10中任一项所述的方法,其中,所述网络侧设备根据所述目标信息,确定目标业务数据的传输策略,包括:
    所述网络侧设备根据所述目标信息,确定所述目标业务数据的传输策略为:丢弃所述目标业务数据中满足目标预设条件的数据,并传输所述目标业务数据中的剩余数据。
  15. 一种业务数据传输装置,包括:发送单元;
    所述发送单元,用于向网络侧设备发送目标信息,所述目标信息用于确定目标业务数据的传输策略,所述目标信息包括以下至少一项:第一信息和第二信息;
    其中,所述第一信息包括以下至少一项:用户设备UE的功耗相关信息、所述UE的散热相关信息、所述UE的剩余电量信息、所述UE的负荷相关信息;
    所述第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率;
    所述第一指示信息用于指示所述UE期望接收的目标逻辑信道/逻辑信道组对应的数据,所述第二指示信息用于指示所述网络侧设备调整空口数据传输的数据包时延预算PDB,所述第三指示信息用于指示所述网络侧设备调整视频流/音频流的编码速率,所述最大下行数据速率为所述UE接收数据时数据速率的最大门限值。
  16. 根据权利要求15所述的装置,其中,所述UE的功耗相关信息包括以下至少 一项:所述UE的整体功耗信息、所述UE中的至少一个模块的功耗信息;
    和/或,
    所述UE的散热相关信息包括以下至少一项:所述UE的整体温度信息、所述UE中的至少一个模块的温度信息、所述UE的当前散热等级、第四指示信息和目标差值,所述第四指示信息用于指示所述UE对应的温度值是否大于或等于散热的告警阈值,所述目标差值为所述UE对应的温度值与所述告警阈值之间的差值;
    和/或,
    所述UE的剩余电量信息包括以下至少一项:所述UE的剩余电量的百分比、第一时长,所述第一时长为支持所述UE继续运转/工作的时长;
    和/或,
    所述UE的负荷相关信息包括以下至少一项:所述UE的整体负荷信息、所述UE中的至少一个模块的负荷信息、所述UE期望的目标负荷量。
  17. 根据权利要求15所述的装置,其中,所述目标逻辑信道/逻辑信道组包括以下至少一项:满足第一预设条件的逻辑信道/逻辑信道组、视频传输增强层对应的逻辑信道/逻辑信道组、所有逻辑信道/逻辑信道组。
  18. 根据权利要求15所述的装置,其中,所述空口数据传输对应至少一个逻辑信道/逻辑信道组;
    所述至少一个逻辑信道/逻辑信道组中的所有逻辑信道/逻辑信道组均对应一个PDB调整信息;或者,
    所述至少一个逻辑信道/逻辑信道组中的每个逻辑信道/逻辑信道组分别对应一个PDB调整信息。
  19. 根据权利要求15或18所述的装置,其中,在所述UE的应用层处理负荷信息满足第二预设条件的情况下,所述第二指示信息具体用于指示所述网络侧设备增大或缩小空口数据传输的PDB。
  20. 根据权利要求15所述的装置,其中,所述目标信息为以下任一项:在目标时刻采样的信息、在目标时间窗内采集的信息、对采集的信息进行平滑处理或滤波处理后得到的信息;
    其中,所述目标时刻为所述目标信息的发送时刻之前的一个时刻,或者,所述目标时刻为早于或等于所述目标信息的发送时刻、且最近一次采样信息的时刻;所述目标时间窗为以第一时刻为结束时刻的时间窗,所述第一时刻为所述目标信息的发送时刻,或者所述第一时刻为早于或等于所述目标信息的发送时刻、且最近一次采样信息的时刻。
  21. 根据权利要求20所述的装置,其中,所述目标时间窗内采集的信息为:对所述目标时间窗内的各个时间点采集的同类型信息进行线性平均或加权平均处理后得到的信息;
    和/或,
    对采集的信息进行平滑处理或滤波处理后得到的信息为:在目标时刻采样的信息*(1-目标系数)+上一次平滑处理或滤波处理后的信息*目标系数,所述目标系数为平滑系数或滤波系数。
  22. 一种业务数据传输装置,包括:接收单元和确定单元;
    所述接收单元,用于接收用户设备UE发送的目标信息,所述目标信息包括以下至少一项:第一信息和第二信息;
    所述确定单元,用于根据所述接收单元接收的所述目标信息,确定目标业务数据的传输策略;
    其中,所述第一信息包括以下至少一项:所述UE的功耗相关信息、所述UE的散热相关信息、所述UE的剩余电量信息、所述UE的负荷相关信息;
    所述第二信息包括以下至少一项:第一指示信息、第二指示信息、第三指示信息、最大下行数据速率;
    所述第一指示信息用于指示所述UE期望接收的目标逻辑信道/逻辑信道组对应的数据,所述第二指示信息用于指示网络侧设备调整空口数据传输的数据包时延预算PDB,所述第三指示信息用于指示所述网络侧设备调整视频流/音频流的编码速率,所述最大下行数据速率为所述UE接收数据时数据速率的最大门限值。
  23. 根据权利要求22所述的装置,其中,所述UE的功耗相关信息包括以下至少一项:所述UE的整体功耗信息、所述UE中的至少一个模块的功耗信息;
    和/或,
    所述UE的散热相关信息包括以下至少一项:所述UE的整体温度信息、所述UE中的至少一个模块的温度信息、所述UE的当前散热等级、第四指示信息和目标差值,所述第四指示信息用于指示所述UE对应的温度值是否大于或等于散热的告警阈值,所述目标差值为所述UE对应的温度值与所述告警阈值之间的差值;
    和/或,
    所述UE的剩余电量信息包括以下至少一项:所述UE的剩余电量的百分比、第一时长,所述第一时长为支持所述UE继续运转/工作的时长;
    和/或,
    所述UE的负荷相关信息包括以下至少一项:所述UE的整体负荷信息、所述UE中的至少一个模块的负荷信息、所述UE期望的目标负荷量。
  24. 根据权利要求22所述的装置,其中,所述目标逻辑信道/逻辑信道组包括以下至少一项:满足第一预设条件的逻辑信道/逻辑信道组、视频传输增强层对应的逻辑信道/逻辑信道组、所有逻辑信道/逻辑信道组。
  25. 根据权利要求22至24中任一项所述的装置,其中,所述确定单元,具体用于根据所述目标信息,为所述UE进行参数配置/重配,以确定所述目标业务数据的传输策略。
  26. 根据权利要求25所述的装置,其中,配置/重配的参数包括以下至少一项:非连续接收DRX参数、节能机制、逻辑信道/逻辑信道组的优先级、丢弃定时器参数、服务质量QoS参数。
  27. 根据权利要求22至24中任一项所述的装置,其中,所述确定单元,具体用于根据所述目标信息,对所述UE对应的下行数据传输执行调度判决,以确定所述目标业务数据的传输策略。
  28. 根据权利要求22至24中任一项所述的装置,其中,所述确定单元,具体用于根据所述目标信息,确定所述目标业务数据的传输策略为:丢弃所述目标业务数据中满足目标预设条件的数据,并传输所述目标业务数据中的剩余数据。
  29. 一种用户设备UE,包括处理器,存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1至7中任一项所述的业务数据传输方法的步骤。
  30. 一种网络侧设备,包括处理器,存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求8至14中任一项所述的业务数据传输方法的步骤。
  31. 一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如权利要求1至7中任一项所述的业务数据传输方法的步骤,或者实现如权利要求8至14中任一项所述的业务数据传输方法的步骤。
  32. 一种通信系统,所述通信系统包括如权利要求15至21中任一项所述的业务数据传输装置和如权利要求22至28中任一项所述的业务数据传输装置;或者,
    所述通信系统包括如权利要求29所述的用户设备UE和如权利要求30所述的网络侧设备。
  33. 一种计算机程序产品,所述程序产品被至少一个处理器执行以实现如权利要求1至7中任一项所述的业务数据传输方法,或者实现如权利要求8至14中任一项所述的业务数据传输方法。
  34. 一种用户设备UE,包括所述UE被配置成用于执行如权利要求1至7中任一项所述的业务数据传输方法。
  35. 一种网络侧设备,包括所述网络侧设备被配置成用于执行如权利要求8至14中任一项所述的业务数据传输方法。
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