WO2019024114A1 - 数据传输的方法、终端设备和网络设备 - Google Patents

数据传输的方法、终端设备和网络设备 Download PDF

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Publication number
WO2019024114A1
WO2019024114A1 PCT/CN2017/096110 CN2017096110W WO2019024114A1 WO 2019024114 A1 WO2019024114 A1 WO 2019024114A1 CN 2017096110 W CN2017096110 W CN 2017096110W WO 2019024114 A1 WO2019024114 A1 WO 2019024114A1
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WIPO (PCT)
Prior art keywords
logical channel
information
service
channel group
terminal device
Prior art date
Application number
PCT/CN2017/096110
Other languages
English (en)
French (fr)
Inventor
杨宁
Original Assignee
Oppo广东移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority to KR1020197037336A priority Critical patent/KR20200033804A/ko
Priority to JP2019568363A priority patent/JP2020533819A/ja
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Priority to BR112019027829-0A priority patent/BR112019027829A2/pt
Priority to US16/622,818 priority patent/US20210153222A1/en
Priority to EP17920535.6A priority patent/EP3629643A4/en
Priority to CN201780091012.1A priority patent/CN110651514B/zh
Priority to CA3066828A priority patent/CA3066828A1/en
Priority to SG11201911716SA priority patent/SG11201911716SA/en
Priority to RU2020101952A priority patent/RU2742100C1/ru
Priority to PCT/CN2017/096110 priority patent/WO2019024114A1/zh
Priority to AU2017425815A priority patent/AU2017425815A1/en
Priority to TW107127178A priority patent/TW201911800A/zh
Publication of WO2019024114A1 publication Critical patent/WO2019024114A1/zh
Priority to PH12019502752A priority patent/PH12019502752A1/en
Priority to IL271282A priority patent/IL271282A/en
Priority to ZA2019/08311A priority patent/ZA201908311B/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/70Services for machine-to-machine communication [M2M] or machine type communication [MTC]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/0278Traffic management, e.g. flow control or congestion control using buffer status reports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/40Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/40Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
    • H04W4/46Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P] for vehicle-to-vehicle communication [V2V]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/02Selection of wireless resources by user or terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling
    • H04W72/1263Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/535Allocation or scheduling criteria for wireless resources based on resource usage policies
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/56Allocation or scheduling criteria for wireless resources based on priority criteria
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/56Allocation or scheduling criteria for wireless resources based on priority criteria
    • H04W72/566Allocation or scheduling criteria for wireless resources based on priority criteria of the information or information source or recipient
    • H04W72/569Allocation or scheduling criteria for wireless resources based on priority criteria of the information or information source or recipient of the traffic information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W92/00Interfaces specially adapted for wireless communication networks
    • H04W92/16Interfaces between hierarchically similar devices
    • H04W92/18Interfaces between hierarchically similar devices between terminal devices
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/005Moving wireless networks

Definitions

  • the present application relates to the field of communications, and more particularly to a method, a terminal device and a network device for data transmission.
  • Vehicle networking or Vehicle to Everything (V2X) communication system is a side-link (SideLink, SL) transmission technology based on Device to Device (D2D) communication, with traditional long-term evolution ( In the Long Term Evolution (LTE) system, the communication data is received or transmitted by the base station in different ways.
  • the vehicle networking system adopts the terminal-to-terminal direct communication mode, and thus has higher spectrum efficiency and lower transmission delay.
  • the data transmission may be performed in a Carrier Aggregation (CA) scenario, or may be transmitted based on a Short Transmission Time Interval (sTTI).
  • CA Carrier Aggregation
  • sTTI Short Transmission Time Interval
  • the transmission service is determined by the terminal device, and the network device cannot directly obtain this information when performing resource scheduling, and thus, the resource can not be reasonably scheduled.
  • the embodiment of the present application provides a data transmission method, a terminal device, and a network device. After the network device learns that the terminal device needs to perform a data replication service and/or an sTTI transmission service, the logical channel configuration may be performed according to the configuration, and further, the resource is implemented. Reasonable scheduling.
  • an embodiment of the present application provides a data transmission method, including:
  • the status information indicating that the terminal device needs to perform a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service.
  • the logical channel configuration may be performed according to the configuration, thereby implementing reasonable scheduling of resources.
  • the status information includes identifier information of a logical channel that needs to perform a data replication service and/or an sTTI transmission service, and logic that needs to perform a data replication service and/or an sTTI transmission service.
  • the method further includes:
  • the partial or all logical channels of the plurality of logical channels are corresponding to the logical channel group, where the logical channel group is A logical channel group for which the target service needs to be performed.
  • the method further includes:
  • the priority information according to the multiple logical channels, and the correspondence between the logical channel group and the priority information, part of the multiple logical channels or All logical channels correspond to the logical channel group, including:
  • At least one of the plurality of logical channels is associated with the logical channel group on.
  • the method further includes:
  • the buffer status report carries identification information and/or target address index information of the logical channel group, wherein the target address index information indicates target address information for performing the target service.
  • the terminal device may report the amount of data required for the data replication service and/or the sTTI transmission service to the network device by using the buffer status report, and further, the network device may reasonably schedule the resource.
  • the method when the status information includes the identifier information of the logical channel that needs to perform the data replication service and/or the sTTI transmission service, the method further includes:
  • the third information indicates a correspondence between a logical channel and a logical channel group corresponding to the identifier information of the logical channel, where the logical channel group is a logical channel group that needs to perform the target service;
  • the logical channel corresponding to the identification information of the logical channel is corresponding to the logical channel group.
  • the method further includes:
  • the buffer status report carries identification information and/or target address index information of the logical channel group, wherein the target address index information indicates target address information for performing the target service.
  • the method is applied to a vehicle networking system.
  • an embodiment of the present application provides a data transmission method, including:
  • the status information indicating that the terminal device needs to perform a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service.
  • the logical channel configuration may be performed according to the configuration, thereby implementing reasonable scheduling of resources.
  • the status information includes identifier information of a logical channel that needs to perform a data replication service and/or an sTTI transmission service, and logic that needs to perform a data replication service and/or an sTTI transmission service.
  • the method further includes:
  • the terminal device Transmitting, according to the status information, first information to the terminal device, where the first information indicates a correspondence between a logical channel group and a priority information, where the logical channel group is a logical channel group that needs data to perform the target service;
  • the buffer status report carries identification information and/or target address index information of the logical channel group, where the target address index information indicates target address information for performing the target service;
  • the amount of data that the terminal device needs to perform the target service is determined.
  • the method when the status information includes the identifier information of the logical channel that needs to perform the data replication service and/or the sTTI transmission service, the method further includes:
  • the buffer status report carries identification information and/or target address index information of the logical channel group, wherein the target address index information indicates Destination address information of the target service;
  • the amount of data that the terminal device needs to perform the target service is determined.
  • the terminal device may report the amount of data required for the data replication service and/or the sTTI transmission service to the network device by using the buffer status report, and further, the network device may reasonably schedule the resource.
  • the method is applied to a vehicle networking system.
  • an embodiment of the present application provides a data transmission method, including:
  • configuration information indicates a logical channel or a logical channel group for performing a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service, where the logical channel group includes at least one logical channel .
  • the network device may configure a logical channel or a logical channel group for performing data replication service and/or short transmission time interval sTTI transmission service for the terminal device, and further, Reasonable scheduling.
  • the method before the sending the configuration information to the terminal device, the method further includes:
  • the status information includes identification information of a logical channel that needs to perform a data replication service and/or an sTTI transmission service, and priority information of a logical channel that needs to perform a data replication service and/or an sTTI transmission service, Performing at least one of data copy service and/or target address information of the sTTI transmission service.
  • the configuration information indicates that the target service is performed by using a logical channel group as a granularity
  • the configuration information indicates that the target service is all logic in the logical channel group. channel.
  • the embodiment of the present application provides a data transmission method, including:
  • configuration information indicates a logical channel or a logical channel group for performing a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service, where the logical channel group includes at least one logical channel ;
  • the target service is performed according to the configuration information.
  • the network device may configure a logical channel or a logical channel group for performing data replication service and/or short transmission time interval sTTI transmission service for the terminal device, and further, Reasonable scheduling.
  • the receiving network device sends a configuration signal Before the interest, the method also includes:
  • the network device Sending, to the network device, status information, where the information includes the identification information of the logical channel that needs to perform the data replication service and/or the sTTI transmission service, and the priority information of the logical channel that needs to perform the data replication service and/or the sTTI transmission service. At least one of data replication service and/or destination address information of the sTTI transmission service.
  • the target service is performed according to the configuration information, including:
  • the target service is performed on all logical channels in the logical channel group.
  • the embodiment of the present application provides a terminal device, which can execute the module or unit of the method in the first aspect or any optional implementation manner of the first aspect.
  • the embodiment of the present application provides a network device, which can execute the module or unit of the method in the second aspect or any alternative implementation manner of the second aspect.
  • the embodiment of the present application provides a network device, which can execute the module or unit of the method in any of the optional implementations of the third aspect or the third aspect.
  • the embodiment of the present application provides a terminal device, which can execute the module or unit of the method in any of the optional implementations of the fourth aspect or the fourth aspect.
  • a terminal device comprising a processor, a memory, and a communication interface.
  • the processor is coupled to the memory and communication interface.
  • the memory is for storing instructions for the processor to execute, and the communication interface is for communicating with other network elements under the control of the processor.
  • the processor executes the instructions stored by the memory, the execution causes the processor to perform the method of the first aspect or any of the possible implementations of the first aspect.
  • a network device comprising a processor, a memory, and a communication interface.
  • the processor is coupled to the memory and communication interface.
  • the memory is for storing instructions for the processor to execute, and the communication interface is for communicating with other network elements under the control of the processor.
  • the processor executes the instructions stored by the memory, the execution causes the processor to perform the method of any of the possible implementations of the second aspect or the second aspect.
  • a network device comprising a processor, a memory, and a communication interface.
  • the processor is coupled to the memory and communication interface.
  • the memory is for storing instructions for the processor to execute, and the communication interface is for communicating with other network elements under the control of the processor.
  • the processor executes the instruction stored by the memory, the execution causes the processor to perform the third aspect or the The method in any of the possible implementations of the three aspects.
  • a terminal device comprising a processor, a memory, and a communication interface.
  • the processor is coupled to the memory and communication interface.
  • the memory is for storing instructions for the processor to execute, and the communication interface is for communicating with other network elements under the control of the processor.
  • the processor executes the instructions stored by the memory, the execution causes the processor to perform the method of any of the possible implementations of the fourth aspect or the fourth aspect.
  • a thirteenth aspect a computer storage medium storing program code for instructing a computer to perform the method of any of the above first aspect or the first aspect of the first aspect Instructions.
  • a computer storage medium storing program code for instructing a computer to perform the method in any one of the foregoing second aspect or the second aspect Instructions.
  • a fifteenth aspect a computer storage medium storing program code for instructing a computer to perform the method of any of the above third aspect or the third aspect of the possible implementation manner Instructions.
  • a computer storage medium storing program code for instructing a computer to perform the method in any one of the possible implementation manners of the fourth aspect or the fourth aspect Instructions.
  • a computer program product comprising instructions for causing a computer to perform the method of the above aspects when executed on a computer is provided.
  • FIG. 1 is a schematic diagram of an application scenario of an embodiment of the present application.
  • FIG. 2 is a schematic diagram of data transmission by carrier aggregation in an embodiment of the present application.
  • FIG. 3 is a schematic flowchart of a method for data transmission according to an embodiment of the present application.
  • FIG. 4 is a schematic flowchart of another method for data transmission according to an embodiment of the present application.
  • FIG. 5 is a schematic flowchart of still another method 400 for data transmission according to an embodiment of the present application.
  • FIG. 6 is a schematic flowchart of still another method 400 for data transmission according to an embodiment of the present application.
  • FIG. 7 is a schematic block diagram of a terminal device according to an embodiment of the present application.
  • FIG. 8 is a schematic block diagram of a network device according to an embodiment of the present application.
  • FIG. 9 is a schematic block diagram of another network device according to an embodiment of the present application.
  • FIG. 10 is a schematic block diagram of another terminal device according to an embodiment of the present application.
  • FIG. 11 is a schematic block diagram of an apparatus for data transmission provided by an embodiment of the present application.
  • FIG. 12 is a schematic structural diagram of a system chip according to an embodiment of the present application.
  • the technical solutions of the embodiments of the present application may be applied to a vehicle networking system, and the vehicle networking system may be based on various communication systems, for example, an LTE-D2D-based vehicle networking system.
  • Communication data between terminals in a conventional LTE system is differently received or transmitted by a network device (for example, a base station), and the vehicle networking system adopts a terminal-to-terminal direct communication method, thereby having higher spectral efficiency and lower Transmission delay.
  • the communication system based on the Internet of Vehicles system may be a Global System of Mobile communication (GSM) system, a Code Division Multiple Access (CDMA) system, and a Wideband Code Division Multiple Access (Wideband Code Division). Multiple Access, WCDMA) System, General Packet Radio Service (GPRS), LTE System, LTE Frequency Division Duplex (FDD) System, LTE Time Division Duplex (TDD), General Purpose Universal Mobile Telecommunication System (UMTS), Worldwide Interoperability for Microwave Access (WiMAX) communication system, New Radio (NR) or future 5G systems.
  • GSM Global System of Mobile communication
  • CDMA Code Division Multiple Access
  • Wideband Code Division Multiple Access Wideband Code Division Multiple Access
  • Multiple Access WCDMA) System
  • GPRS General Packet Radio Service
  • LTE System LTE Frequency Division Duplex
  • FDD Frequency Division Duplex
  • TDD Time Division Duplex
  • UMTS General Purpose Universal Mobile Telecommunication System
  • WiMAX Worldwide Interoperability for Microwave Access
  • the terminal device in the embodiment of the present application may be an in-vehicle terminal device, or may be a terminal device in a future 5G network or a terminal device in a public land mobile communication network (PLMN) in a future evolution.
  • PLMN public land mobile communication network
  • the example is not limited.
  • the present application describes various embodiments in connection with a network device.
  • the network device in the embodiment of the present application may be a device for communicating with a terminal device, where the network device may be a Base Transceiver Station (BTS) in GSM or CDMA, or may be a base station (NodeB, NB) in a WCDMA system. ), which may also be an evolved base station (Evolutional NodeB, eNB or eNodeB) in the LTE system, or may be a Cloud Radio Access Network (CRAN).
  • BTS Base Transceiver Station
  • NodeB NodeB
  • NB base station
  • eNodeB evolved base station
  • CRAN Cloud Radio Access Network
  • the wireless controller in the scenario, or the network device may be a relay station, an access point, an in-vehicle device, a wearable device, a network device in a future 5G network, or a network device in a future evolved PLMN network, etc. Not limited.
  • FIG. 1 is a schematic diagram of an application scenario of an embodiment of the present application.
  • FIG. 1 exemplarily shows a network device and two terminal devices.
  • the wireless communication system in the embodiment of the present application may include multiple network devices and may include other numbers in the coverage of each network device.
  • the terminal device is not limited in this application.
  • the wireless communication system may further include other network entities such as a Mobile Management Entity (MME), a Serving Gateway (S-GW), and a Packet Data Network Gateway (P-GW).
  • MME Mobile Management Entity
  • S-GW Serving Gateway
  • P-GW Packet Data Network Gateway
  • the application is not limited to this.
  • the terminal device 20 and the terminal device 30 can communicate by the D2D communication mode.
  • the terminal device 20 and the terminal device 30 directly communicate through a D2D link, ie, a side link (Sidelink, SL).
  • a side link Sidelink, SL
  • the terminal device 20 and the terminal device 30 directly communicate via a side line.
  • the terminal device 20 and the terminal device 30 communicate via a side line, and their transmission resources are allocated by the network device.
  • the D2D communication may refer to a vehicle to vehicle (V2V) communication or a vehicle to Everything (V2X) communication.
  • V2X communication X can refer to any device with wireless receiving and transmitting capabilities, such as but not limited to slow moving wireless devices, fast moving in-vehicle devices, or network control nodes with wireless transmit and receive capabilities. It should be understood that the embodiment of the present application is mainly applied to the scenario of V2X communication, but can also be applied to any other D2D communication scenario, which is not limited in this embodiment of the present application.
  • a terminal device having a listening capability such as a Vehicle User Equipment (VUE) or a Pedestrian User Equipment (PUE), and no listening.
  • VUE Vehicle User Equipment
  • PUE Pedestrian User Equipment
  • Capable terminal equipment such as PUE.
  • VUE has higher processing power and is usually powered by the battery in the car, while PUE has lower processing power, and reducing power consumption is also a major factor that PUE needs to consider. Therefore, in the existing car network system, VUE is considered to have Full reception and listening capabilities; while PUE is considered to have partial or no reception and listening capabilities.
  • the resource may be selected by using a similar listening method as the VUE, and the available resources may be selected on the part of the resources that can be intercepted; if the PUE does not have the listening capability, the PUE is in the resource pool. Randomly select transmission resources.
  • transmission mode 3 (mode 3) and transmission mode 4 (mode 4).
  • the transmission resource of the terminal device using the transmission mode 3 is allocated by the base station, and the terminal device performs data transmission on the side line according to the resource allocated by the base station; the base station may allocate the resource for the single transmission to the terminal device, or may be the terminal.
  • the device allocates resources that are semi-statically transmitted. If the terminal device using the transmission mode 4 has the capability of listening, the data is transmitted by means of sensing and reservation. If the listening capability is not available, the transmission resource is randomly selected in the resource pool.
  • the terminal device with the listening capability acquires the available resource set by means of interception in the resource pool, and the terminal device randomly selects one resource from the set for data transmission. Since the service in the car network system has periodic characteristics, the terminal device usually adopts a semi-static transmission mode, that is, after the terminal device selects one transmission resource, the terminal device continuously uses the resource in multiple transmission cycles, thereby reducing the resource weight. The probability of selection and resource conflicts.
  • the terminal device carries the information for reserving the next transmission resource in the control information of the current transmission, so that the other terminal device can determine whether the resource is reserved and used by the terminal device by detecting the control information of the terminal device. Reduce the purpose of resource conflicts.
  • the resource pool of the transmission mode 4 is pre-configured or configured by the base station, so there is no overlap of the resource pools, that is, the transmission mode 3 and the transmission mode 4 respectively correspond to each other.
  • the resource pools are separated or not overlapped, and the terminal device using mode 3 performs data transmission on the time-frequency resources in the resource pool supporting mode 3, and the terminal device in mode 4 supports the time-frequency resources in the resource pool of mode 4. Data transfer is performed.
  • two transmission modes such as the transmission mode 3 and the transmission mode 4 described above are also supported.
  • the terminal device of Release-15 and the terminal device of Release-14 jointly perform data transmission in the communication system, for the terminal device with the listening capability, the resource can be selected through resource sensing, and for the terminal device without the listening capability. It is difficult to avoid interference with data transmission of other terminal devices. Since the terminal device using the transmission mode 3 is connected to the base station, and its transmission resource is allocated by the base station, when the terminal device using the transmission mode 3 and the terminal device using the transmission mode 4 coexist, it is more necessary to protect the transmission mode 3 The transmission reliability of the terminal equipment.
  • the terminal device may send the same PDCP layer data to the network device by using two carriers according to a carrier aggregation manner.
  • one PDCP entity is bound to two RLC entities.
  • the terminal device performs duplication of the first PDCP PDU to be sent to obtain a second PDCP PDU.
  • Terminal equipment A PDCP PDU is delivered to one of the two RLC entities, RLC 1, and the second PDCP PDU is delivered to another RLC entity RLC 2 of the two RLC entities.
  • the two RLC entities respectively process the received PDCP PDU and send the first PDCP PDU and the second PDCP PDU to the network device through two different carriers.
  • the terminal device may perform the reverse process of the data transmission process as shown in FIG. 2 when receiving data transmitted by the network device or other terminal device.
  • the terminal device can transmit the service by using sTTI.
  • the term "article of manufacture” as used in this application encompasses a computer program accessible from any computer-readable device, carrier, or media.
  • the computer readable medium may include, but is not limited to, a magnetic storage device (eg, a hard disk, a floppy disk, or a magnetic tape, etc.), such as a compact disc (CD), a digital versatile disc (Digital Versatile Disc, DVD). Etc.), smart cards and flash memory devices (eg, Erasable Programmable Read-Only Memory (EPROM), cards, sticks or key drivers, etc.).
  • various storage media described herein can represent one or more devices and/or other machine-readable media for storing information.
  • the term "machine-readable medium” may include, but is not limited to, a variety of media capable of storing, containing, and/or carrying instructions and/or data.
  • system and “network” are used interchangeably herein.
  • the term “and/or” in this context is merely an association describing the associated object, indicating that there may be three relationships, for example, A and/or B, which may indicate that A exists separately, and both A and B exist, respectively. B these three situations.
  • the character "/" in this article generally indicates that the contextual object is an "or" relationship.
  • FIG. 3 is a schematic flowchart of a method 200 for data transmission according to an embodiment of the present application.
  • the method 200 can be performed by a terminal device, which can be a terminal device as shown in FIG. 1, which can perform data transmission as shown in FIG. 2, and the network in the method 200
  • the device may be a network device as shown in FIG. 1, and the method 200 may be applied to a car network system.
  • the method 200 includes the following.
  • the terminal device sends status information to the network device, where the status information indicates that the terminal device needs to perform a target service, where the target service includes a data replication service and/or an sTTI transmission service.
  • the terminal device can implement frequency diversity gain when performing data replication services, thereby improving reliability of data transmission.
  • the terminal device may use a resource granularity of sTTI of 0.5 ms or sTTI of 0.2 ms or sTTI of 0.1 ms to perform data transmission, thereby reducing the delay of data transmission.
  • the status information may only occupy 1 bit resource, indicating that the target service needs to be performed.
  • the status information includes identification information of a logical channel that needs to perform data replication service and/or sTTI transmission service, priority information of a logical channel that needs to perform data replication service and/or sTTI transmission service, and data replication service and / or sTTI transmits at least one of the destination address information of the service.
  • the priority information may be a value of a ProSe Per-Packet Priority (PPPP).
  • PPPP ProSe Per-Packet Priority
  • the terminal device sends the status information to the network device by using Sidelink UE Information.
  • the method 200 further includes:
  • the terminal device corresponds to some or all of the plurality of logical channels to the logical channel group according to the priority information of the plurality of logical channels and the correspondence between the logical channel group and the priority information.
  • the logical channel group is a logical channel group that needs to perform the target service.
  • the correspondence between the logical channel group and the priority information may be pre-configured by the network device.
  • the terminal device acquires, from the network device, a correspondence between the logical channel group and the priority information.
  • the network device sends the second information to the terminal device according to the status information sent by the terminal device.
  • the terminal device receives the second information sent by the network device, where the second information indicates a correspondence between the logical channel group and the priority information.
  • the network device may simultaneously send, to the terminal device, a correspondence between the plurality of logical channel groups (the logical channel group in which the target service exists and the logical channel group in which the target service does not exist) and the priority information.
  • the terminal device can associate the logical channel to the corresponding logical channel group according to the priority attribute of the logical channel of the own.
  • the terminal device performs at least one of the plurality of logical channels according to priority information of each of the plurality of logical channels and a correspondence between the logical channel group and the priority information.
  • the channel corresponds to the logical channel group.
  • the method 200 further includes:
  • the terminal device sends a buffer status report to the network device, where the buffer status report carries identification information and/or target address index information of the logical channel group, wherein the target address index information indicates target address information for performing the target service.
  • the cache status report includes cache information of at least one logical channel group.
  • the terminal device may separately report the identification information of the logical channel group and/or the target address index information. At this time, the terminal device simultaneously reports the cache information of the logical channel group.
  • the method 200 further includes:
  • the logical channel corresponding to the identification information of the logical channel is corresponding to the logical channel group.
  • the method 200 further includes:
  • the terminal device sends a buffer status report to the network device, where the buffer status report carries identification information and/or target address index information of the logical channel group, wherein the target address index information indicates target address information for performing the target service.
  • the terminal device may separately report the identification information of the logical channel group and/or the target address index information.
  • the logical channel configuration may be performed according to the configuration, thereby implementing reasonable scheduling of resources.
  • the terminal device can report the amount of data required for the data replication service and/or the sTTI transmission service to the network device by using the buffer status report, and further, the network device can reasonably schedule the resource.
  • FIG. 4 is a schematic flowchart of a method 300 for data transmission according to an embodiment of the present application.
  • the method 300 may be performed by a network device, where the network device may be a network device as shown in FIG. 1, and the terminal device in the method 300 may be a terminal device as shown in FIG.
  • the terminal device can perform data transmission as shown in FIG. 2, and the method 300 can be applied to a car network system.
  • the method 300 includes the following.
  • the network device receives status information sent by the terminal device, where the status information indicates that the terminal device needs to perform a target service, where the target service includes a data replication service and/or an sTTI transmission service.
  • the network device may configure the terminal device for a data replication service and/or an sTTI transmission service logical channel, and allocate a corresponding authorization. Resources.
  • the status information includes identification information of a logical channel that needs to perform data replication service and/or sTTI transmission service, priority information of a logical channel that needs to perform data replication service and/or sTTI transmission service, and data replication service and / or sTTI transmission service destination address information.
  • the method 300 further includes:
  • the network device sends the first information to the terminal device according to the status information, where the first information indicates a correspondence between the logical channel group and the priority information, where the logical channel group is a logical channel group that needs to perform the target service;
  • the buffer status report carries identification information and/or target address index information of the logical channel group, where the target address index information indicates target address information for performing the target service;
  • the network device determines, according to the cache status report, the amount of data that the terminal device needs to perform the target service.
  • the method 300 further includes:
  • the network device sends the second information to the terminal device according to the status information, where the second information indicates a correspondence between a logical channel and a logical channel group corresponding to the identifier information of the logical channel, where the logical channel group needs to perform the Logical channel group of the target service;
  • the buffer status report carries identification information and/or target address index information of the logical channel group, where the target address index information indicates target address information for performing the target service;
  • the network device determines, according to the cache status report, the amount of data that the terminal device needs to perform the target service.
  • steps in the method 300 of data transmission may refer to the description of the corresponding steps in the method 200 of data transmission, and are not described herein for brevity.
  • the logical channel configuration may be performed according to the configuration, thereby implementing reasonable scheduling of resources.
  • the terminal device can report the amount of data required for the data replication service and/or the sTTI transmission service to the network device by using the buffer status report, and further, the network device can reasonably schedule the resource.
  • FIG. 5 is a schematic flowchart of a method 400 for data transmission according to an embodiment of the present application.
  • the method 400 may be performed by a network device, which may be a network device as shown in FIG. 1.
  • the terminal device in the method 400 may be a terminal device as shown in FIG.
  • the device can perform data transmission as shown in FIG. 2, which can be applied to a vehicle networking system.
  • the method 400 includes the following.
  • the network device sends, to the terminal device, configuration information, where the configuration information indicates a logical channel or a logical channel group that performs a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service, where the logical channel group includes At least one logical channel.
  • the method 400 before the sending, by the network device, the configuration information to the terminal device, the method 400 further includes:
  • the network device receives status information sent by the terminal device, where the status information includes identification information of a logical channel that needs to perform a data replication service and/or an sTTI transmission service, and a logical channel that needs to perform a data replication service and/or an sTTI transmission service. At least one of the priority information, the data copy service, and/or the target address information of the sTTI transmission service.
  • the configuration information indicates that the target service is performed by using a logical channel group as a granularity
  • the configuration information indicates that the target service is all logical channels in the logical channel group.
  • steps in the method 400 of data transmission may refer to the description of the corresponding steps in the method 200 of data transmission, and are not described herein again for brevity.
  • the network device may configure a logical channel or a logical channel group for performing data replication service and/or sTTI transmission service for the terminal device, and further, reasonable scheduling of resources may be implemented.
  • FIG. 6 is a schematic flowchart of a method 500 for data transmission according to an embodiment of the present application.
  • the method 500 can be performed by a terminal device, which can be a terminal device as shown in FIG. 1, which can perform data transmission as shown in FIG. 2, and the network in the method 500
  • the device may be a network device as shown in FIG. 1, and the method 500 may be applied to a car network. system.
  • the method 500 includes the following.
  • the receiving network device sends configuration information, where the configuration information indicates a logical channel or a logical channel group that performs a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service, where the logical channel group includes at least one Logical channel.
  • the method 500 before the receiving, by the terminal device, the network device to send configuration information, the method 500 further includes:
  • the terminal device sends status information to the network device, where the status information includes identification information of a logical channel that needs to perform a data replication service and/or an sTTI transmission service, and a logical channel that needs to perform a data replication service and/or an sTTI transmission service. At least one of priority information, data replication service, and/or destination address information of the sTTI transmission service.
  • the performing the target service according to the configuration information including:
  • the terminal device performs the target service on all logical channels in the logical channel group according to the configuration information.
  • steps in the method 500 of data transmission may refer to the description of the corresponding steps in the method 200 of data transmission, and are not described herein for brevity.
  • the network device may configure a logical channel or a logical channel group for performing data replication service and/or short transmission time interval sTTI transmission service for the terminal device, and further, Reasonable scheduling.
  • FIG. 7 is a schematic block diagram of a terminal device 600 according to an embodiment of the present application. As shown in FIG. 7, the terminal device 600 includes:
  • the sending unit 610 is configured to send status information to the network device, where the status information indicates that the terminal device needs to perform a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service.
  • the status information includes identification information of a logical channel that needs to perform data replication service and/or sTTI transmission service, priority information of a logical channel that needs to perform data replication service and/or sTTI transmission service, and data replication service and / or sTTI transmits at least one of the destination address information of the service.
  • the terminal device 600 further includes:
  • the processing unit 620 is configured to: according to priority information of multiple logical channels, and a logical channel group Corresponding to the priority information, some or all of the plurality of logical channels are corresponding to the logical channel group, and the logical channel group is a logical channel group that needs to perform the target service.
  • the processing unit 620 corresponds to some or all of the plurality of logical channels to the logic according to the priority information of the multiple logical channels and the correspondence between the logical channel groups and the priority information.
  • the terminal device 600 further includes:
  • the receiving unit 630 is configured to receive second information sent by the network device, where the second information indicates a correspondence between the logical channel group and the priority information.
  • processing unit 620 is specifically configured to:
  • At least one of the plurality of logical channels is associated with the logical channel group on.
  • the sending unit 610 is further configured to send a buffer status report to the network device, where the buffer status is The report carries identification information and/or target address index information of the logical channel group, wherein the target address index information indicates target address information for performing the target service.
  • the terminal device when the status information includes the identifier information of the logical channel that needs to perform the data replication service and/or the sTTI transmission service, the terminal device further includes:
  • the receiving unit 630 is configured to receive third information that is sent by the network device, where the third information indicates a correspondence between a logical channel and a logical channel group corresponding to the identifier information of the logical channel, where the logical channel group needs to perform the target Logical channel group of services;
  • the processing unit 620 is configured to, according to the third information, correspond to a logical channel corresponding to the identifier information of the logical channel to the logical channel group.
  • the sending unit 610 is further configured to send a buffer status report to the network device, where the buffer status report carries Identification information and/or target address index information of the logical channel group, wherein the target address index information indicates target address information for performing the target service.
  • the terminal device 600 is applied to a car network system.
  • FIG. 8 is a schematic block diagram of a network device 700 according to an embodiment of the present application. As shown in FIG. 8, the network device 700 includes:
  • the receiving unit 710 is configured to receive status information sent by the terminal device, where the status information indicates that the terminal device needs to perform a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service.
  • the status information includes identification information of a logical channel that needs to perform data replication service and/or sTTI transmission service, priority information of a logical channel that needs to perform data replication service and/or sTTI transmission service, and data replication service and / or sTTI transmission service destination address information.
  • the network device 700 further includes:
  • the sending unit 720 is configured to send, according to the status information, first information to the terminal device, where the first information indicates a correspondence between the logical channel group and the priority information, where the logical channel group is a logic that needs to perform the target service.
  • Channel group
  • the receiving unit 710 is further configured to receive a buffer status report sent by the terminal device, where the buffer status report carries identification information and/or target address index information of the logical channel group, where the target address index information indicates that the target service is performed. Destination address information;
  • the processing unit 730 is configured to determine, according to the cache status report, the amount of data that the terminal device needs to perform the target service.
  • the network device 700 further includes:
  • the sending unit 720 is configured to send the second information to the terminal device according to the status information, where the second information indicates a correspondence between a logical channel and a logical channel group corresponding to the identifier information of the logical channel, where the logical channel group is A logical channel group that needs to perform the target service;
  • the receiving unit 710 is further configured to receive a buffer status report sent by the terminal device, where the buffer status report carries identification information and/or target address index information of the logical channel group, where the target address index information indicates that the target service is performed. Destination address information;
  • the processing unit 730 is configured to determine, according to the cache status report, the amount of data that the terminal device needs to perform the target service.
  • the network device 700 is applied to a car network system.
  • FIG. 9 is a schematic block diagram of a network device 800 in accordance with an embodiment of the present application. As shown in FIG. 9, the network device 800 includes:
  • the sending unit 810 is configured to send, to the terminal device, configuration information, where the configuration information indicates a logical channel or a logical channel group that performs a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service, where At least one logical channel is included in the logical channel group.
  • the network device 800 further includes:
  • the receiving unit 820 is configured to receive status information sent by the terminal device, where the status information includes identification information of a logical channel that needs to perform a data replication service and/or an sTTI transmission service, and needs to perform a data replication service and/or an sTTI transmission service. At least one of priority information of the logical channel, data copy service, and/or target address information of the sTTI transmission service.
  • the configuration information indicates that the target service is a logical channel group
  • the configuration information indicates that the target service is all logical channels in the logical channel group.
  • FIG. 10 is a schematic block diagram of a terminal device 900 according to an embodiment of the present application. As shown in FIG. 10, the terminal device 900 includes:
  • the receiving unit 910 is configured to receive, by the network device, configuration information, where the configuration information indicates a logical channel or a logical channel group that performs a target service, where the target service includes a data replication service and/or a short transmission time interval sTTI transmission service, where Include at least one logical channel in the logical channel group;
  • the processing unit 920 is configured to perform the target service according to the configuration information.
  • the terminal device 900 before the receiving unit 910 receives the network device to send the configuration information, the terminal device 900 further includes:
  • the sending unit 930 is configured to send, to the network device, status information, where the status information includes identifier information of a logical channel that needs to perform a data replication service and/or an sTTI transmission service, and needs to perform a data replication service and/or an sTTI transmission service. At least one of priority information of the logical channel, data copy service, and/or target address information of the sTTI transmission service.
  • the processing unit 920 is specifically configured to:
  • FIG. 11 is a schematic block diagram of an apparatus 1000 for data transmission provided by an embodiment of the present application, where the apparatus 1000 includes:
  • the memory 1010 is configured to store a program, where the program includes a code
  • the transceiver 1020 is configured to communicate with other devices;
  • the processor 1030 is configured to execute program code in the memory 1010.
  • the processor 1030 can implement various operations performed by the terminal device in the method 200 in FIG. 3, and details are not described herein for brevity.
  • the device 1000 may be a terminal device, for example, an in-vehicle terminal.
  • the processor 1030 can implement various operations performed by the network device in the method 300 in FIG. 4, and details are not described herein for brevity.
  • the device 1000 may be an access network device or a core network device.
  • the transceiver 1020 is configured to perform specific signal transceiving under the driving of the processor 1030.
  • the processor 1030 can implement various operations performed by the network device in the method 400 in FIG. 5, and details are not described herein for brevity.
  • the device 1000 may be an access network device or a core network device.
  • the transceiver 1020 is configured to perform specific signal transceiving under the driving of the processor 1030.
  • the processor 1030 can also implement various operations performed by the terminal device in the method 500 in FIG. 6.
  • the device 1000 may be a terminal device, for example, an in-vehicle terminal.
  • the processor 1030 may be a central processing unit (CPU), and the processor 1030 may also be other general-purpose processors, digital signal processors (DSPs), and application specific integrated circuits. (ASIC), off-the-shelf programmable gate array (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, and more.
  • the general purpose processor may be a microprocessor or the processor or any conventional processor or the like.
  • the memory 1010 can include read only memory and random access memory and provides instructions and data to the processor 1030.
  • a portion of the memory 1010 may also include non-volatile random access Memory.
  • the memory 1010 can also store information of the device type.
  • the transceiver 1020 can be used to implement signal transmission and reception functions, such as frequency modulation and demodulation functions or upconversion and down conversion functions.
  • the device 1000 for data transmission can be a chip or a chipset.
  • the steps of the method disclosed in the embodiments of the present application may be directly implemented by the hardware processor, or may be performed by a combination of hardware and software modules in the processor.
  • the software module can be located in a conventional storage medium such as random access memory, flash memory, read only memory, programmable read only memory or electrically erasable programmable memory, registers, and the like.
  • the storage medium is located in the memory, and the processor 1030 reads the information in the memory and combines the hardware to complete the steps of the above method. To avoid repetition, it will not be described in detail here.
  • FIG. 12 is a schematic structural diagram of a system chip 1100 according to an embodiment of the present application.
  • the system chip 1100 of FIG. 12 includes an input interface 1101, an output interface 1102, a processor 1103, and a memory 1104 that can be connected by an internal communication connection line.
  • the processor 1103 is configured to execute code in the memory 1104.
  • the processor 1103 implements a method performed by the terminal device in the method embodiment. For the sake of brevity, it will not be repeated here.
  • the processor 1103 when the code is executed, the processor 1103 implements a method performed by a network device in a method embodiment. For the sake of brevity, it will not be repeated here.
  • the computer program product includes one or more computer instructions.
  • the computer can be a general purpose computer, a special purpose computer, a computer network, or other programmable device.
  • the computer instructions can be stored in a computer readable storage medium or transferred from one computer readable storage medium to another computer readable storage medium, for example, the computer instructions can be wired from a website site, computer, server or data center (for example, coaxial cable, fiber optic, digital subscriber line (DSL)) or wireless (eg infrared, wireless, microwave, etc.) to another website site, computer, server or data center.
  • the computer readable storage medium can be any available media that can be accessed by a computer or contain one or more of the available Media integrated server, data center and other data storage devices.
  • the usable medium may be a magnetic medium (eg, a floppy disk, a hard disk, a magnetic tape), an optical medium (eg, a DVD), or a semiconductor medium (such as a solid state disk (SSD)).
  • the size of the sequence numbers of the foregoing processes does not mean the order of execution sequence, and the order of execution of each process should be determined by its function and internal logic, and should not be applied to the embodiment of the present application.
  • the implementation process constitutes any limitation.

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Abstract

本申请提供了一种数据传输的方法、终端设备和网络设备,网络设备获知终端设备需要进行数据复制业务和/或sTTI传输业务之后,可以据此进行逻辑信道配置,进而,实现资源的合理调度。该方法包括:向网络设备发送状态信息,该状态信息指示终端设备需要进行目标业务,该目标业务包括数据复制业务和/或sTTI传输业务。

Description

数据传输的方法、终端设备和网络设备 技术领域
本申请涉及通信领域,并且更具体地,涉及一种数据传输的方法、终端设备和网络设备。
背景技术
车联网或称车对设备(Vehicle to Everything,V2X)通信系统是基于设备对设备(Device to Device,D2D)通信的一种侧行链路(SideLink,SL)传输技术,与传统的长期演进(Long Term Evolution,LTE)系统中通信数据通过基站接收或者发送的方式不同,车联网系统采用终端到终端直接通信的方式,因此具有更高的频谱效率以及更低的传输时延。
在车联网系统中,可以在载波聚合(Carrier Aggregation,CA)场景下进行复制数据传输,也可以基于短传输时间间隔(short Transmission Time Interval,sTTI)传输业务,然而,是否进行数据复制业务和sTTI传输业务是由终端设备决定,网络设备在进行资源调度时无法直接获取这一信息,进而,无法实现资源的合理调度。
发明内容
本申请实施例提供了一种数据传输的方法、终端设备和网络设备,网络设备获知终端设备需要进行数据复制业务和/或sTTI传输业务之后,可以据此进行逻辑信道配置,进而,实现资源的合理调度。
第一方面,本申请实施例提供了一种数据传输的方法,包括:
向网络设备发送状态信息,该状态信息指示终端设备需要进行目标业务,该目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务。
因此,在本申请实施例的数据传输的方法中,网络设备获知终端设备需要进行数据复制业务和/或sTTI传输业务之后,可以据此进行逻辑信道配置,进而,实现资源的合理调度。
可选地,在第一方面的一种实现方式中,该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或 sTTI传输业务的目标地址信息中的至少一种信息。
可选地,在第一方面的一种实现方式中,该方法还包括:
根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上,该逻辑信道组为需要进行该目标业务的逻辑信道组。
可选地,在第一方面的一种实现方式中,在该根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上之前,该方法还包括:
接收该网络设备发送的第二信息,该第二信息指示该逻辑信道组与该优先级信息之间的对应关系。
可选地,在第一方面的一种实现方式中,该根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上,包括:
根据该多个逻辑信道中每个逻辑信道的优先级信息,以及该逻辑信道组与该优先级信息之间的对应关系,将该多个逻辑信道中的至少一个逻辑信道对应到该逻辑信道组上。
可选地,在第一方面的一种实现方式中,在将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上之后,该方法还包括:
向该网络设备发送缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息。
因此,在本申请实施例的数据传输的方法中,终端设备可以通过缓存状态报告向网络设备上报需要进行数据复制业务和/或sTTI传输业务的数据量,进而,可以使网络设备合理调度资源。
可选地,在第一方面的一种实现方式中,在该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,该方法还包括:
接收该网络设备发送的第三信息,该第三信息指示该逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,该逻辑信道组为需要进行该目标业务的逻辑信道组;
根据该第三信息,将该逻辑信道的标识信息对应的逻辑信道对应到该逻辑信道组上。
可选地,在第一方面的一种实现方式中,在将该逻辑信道的标识信息对应的逻辑信道对应到该逻辑信道组上之后,该方法还包括:
向该网络设备发送缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息。
可选地,在第一方面的一种实现方式中,该方法应用于车联网系统。
第二方面,本申请实施例提供了一种数据传输的方法,包括:
接收终端设备发送的状态信息,该状态信息指示该终端设备需要进行目标业务,该目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务。
因此,在本申请实施例的数据传输的方法中,网络设备获知终端设备需要进行数据复制业务和/或sTTI传输业务之后,可以据此进行逻辑信道配置,进而,实现资源的合理调度。
可选地,在第二方面的一种实现方式中,该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息。
可选地,在第二方面的一种实现方式中,该方法还包括:
根据该状态信息,向该终端设备发送第一信息,该第一信息指示逻辑信道组与优先级信息之间的对应关系,该逻辑信道组为需要数据进行该目标业务的逻辑信道组;
接收该终端设备发送的缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息;
根据该缓存状态报告,确定该终端设备需要进行该目标业务的数据量。
可选地,在第二方面的一种实现方式中,在该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,该方法还包括:
根据该状态信息,向该终端设备发送第二信息,该第二信息指示该逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,该逻辑信道组为需要进行该目标业务的逻辑信道组;
接收该终端设备发送的缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行 该目标业务的目标地址信息;
根据该缓存状态报告,确定该终端设备需要进行该目标业务的数据量。
因此,在本申请实施例的数据传输的方法中,终端设备可以通过缓存状态报告向网络设备上报需要进行数据复制业务和/或sTTI传输业务的数据量,进而,可以使网络设备合理调度资源。
可选地,在第二方面的一种实现方式中,该方法应用于车联网系统。
第三方面,本申请实施例提供了一种数据传输的方法,包括:
向终端设备发送配置信息,该配置信息指示进行目标业务的逻辑信道或逻辑信道组,该目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,该逻辑信道组中包括至少一个逻辑信道。
因此,在本申请实施例的数据传输的方法中,网络设备可以为终端设备配置进行数据复制业务和/或短传输时间间隔sTTI传输业务的逻辑信道或逻辑信道组,进而,可以实现对资源的合理调度。
可选地,在第三方面的一种实现方式中,在该向终端设备发送配置信息之前,该方法还包括:
接收该终端设备发送的状态信息,该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
可选地,在第三方面的一种实现方式中,在该配置信息以逻辑信道组为粒度指示进行该目标业务时,该配置信息指示进行该目标业务的为该逻辑信道组中的所有逻辑信道。
第四方面,本申请实施例提供了一种数据传输的方法,包括:
接收网络设备发送配置信息,该配置信息指示进行目标业务的逻辑信道或逻辑信道组,该目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,该逻辑信道组中包括至少一个逻辑信道;
根据该配置信息进行该目标业务。
因此,在本申请实施例的数据传输的方法中,网络设备可以为终端设备配置进行数据复制业务和/或短传输时间间隔sTTI传输业务的逻辑信道或逻辑信道组,进而,可以实现对资源的合理调度。
可选地,在第四方面的一种实现方式中,在该接收网络设备发送配置信 息之前,该方法还包括:
向该网络设备发送状态信息,该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
可选地,在第四方面的一种实现方式中,在该配置信息以逻辑信道组为粒度指示进行该目标业务时,该根据该配置信息进行该目标业务,包括:
根据该配置信息,在该逻辑信道组中的所有逻辑信道上进行该目标业务。
第五方面,本申请实施例提供了一种终端设备,可以执行第一方面或第一方面的任一可选的实现方式中的方法的模块或者单元。
第六方面,本申请实施例提供了一种网络设备,可以执行第二方面或第二方面的任一可选的实现方式中的方法的模块或者单元。
第七方面,本申请实施例提供了一种网络设备,可以执行第三方面或第三方面的任一可选的实现方式中的方法的模块或者单元。
第八方面,本申请实施例提供了一种终端设备,可以执行第四方面或第四方面的任一可选的实现方式中的方法的模块或者单元。
第九方面,提供了一种终端设备,该终端设备包括处理器、存储器和通信接口。处理器与存储器和通信接口连接。存储器用于存储指令,处理器用于执行该指令,通信接口用于在处理器的控制下与其他网元进行通信。该处理器执行该存储器存储的指令时,该执行使得该处理器执行第一方面或第一方面的任意可能的实现方式中的方法。
第十方面,提供了一种网络设备,该网络设备包括处理器、存储器和通信接口。处理器与存储器和通信接口连接。存储器用于存储指令,处理器用于执行该指令,通信接口用于在处理器的控制下与其他网元进行通信。该处理器执行该存储器存储的指令时,该执行使得该处理器执行第二方面或第二方面的任意可能的实现方式中的方法。
第十一方面,提供了一种网络设备,该网络设备包括处理器、存储器和通信接口。处理器与存储器和通信接口连接。存储器用于存储指令,处理器用于执行该指令,通信接口用于在处理器的控制下与其他网元进行通信。该处理器执行该存储器存储的指令时,该执行使得该处理器执行第三方面或第 三方面的任意可能的实现方式中的方法。
第十二方面,提供了一种终端设备,该终端设备包括处理器、存储器和通信接口。处理器与存储器和通信接口连接。存储器用于存储指令,处理器用于执行该指令,通信接口用于在处理器的控制下与其他网元进行通信。该处理器执行该存储器存储的指令时,该执行使得该处理器执行第四方面或第四方面的任意可能的实现方式中的方法。
第十三方面,提供了一种计算机存储介质,该计算机存储介质中存储有程序代码,该程序代码用于指示计算机执行上述第一方面或第一方面的任一种可能的实现方式中的方法的指令。
第十四方面,提供了一种计算机存储介质,该计算机存储介质中存储有程序代码,该程序代码用于指示计算机执行上述第二方面或第二方面的任一种可能的实现方式中的方法的指令。
第十五方面,提供了一种计算机存储介质,该计算机存储介质中存储有程序代码,该程序代码用于指示计算机执行上述第三方面或第三方面的任一种可能的实现方式中的方法的指令。
第十六方面,提供了一种计算机存储介质,该计算机存储介质中存储有程序代码,该程序代码用于指示计算机执行上述第四方面或第四方面的任一种可能的实现方式中的方法的指令。
第十七方面,提供了一种包括指令的计算机程序产品,当其在计算机上运行时,使得计算机执行上述各方面所述的方法。
附图说明
图1是本申请实施例一个应用场景的示意图。
图2是本申请实施例通过载波聚合进行数据传输的示意图。
图3是根据本申请实施例的一种数据传输的方法的示意性流程图。
图4是根据本申请实施例的另一种数据传输的方法的示意性流程图。
图5是根据本申请实施例的再一种数据传输的方法400的示意性流程图。
图6是根据本申请实施例的再一种数据传输的方法400的示意性流程图。
图7是根据本申请实施例的一种终端设备的示意性框图。
图8是根据本申请实施例的一种网络设备的示意性框图。
图9是根据本申请实施例的另一种网络设备的示意性框图。
图10是根据本申请实施例的另一种终端设备的示意性框图。
图11示出了本申请实施例提供的数据传输的设备的示意性框图。
图12是根据本申请实施例的系统芯片的示意性结构图。
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、完整地描述。
应理解,本申请实施例的技术方案可以应用于车联网系统,车联网系统可以基于各种通信系统,例如,基于LTE-D2D的车联网系统。与传统的LTE系统中终端之间的通信数据通过网络设备(例如,基站)接收或者发送的方式不同,车联网系统采用终端到终端直接通信的方式,因此具有更高的频谱效率以及更低的传输时延。
可选地,车联网系统基于的通信系统可以是全球移动通讯(Global System of Mobile communication,GSM)系统、码分多址(Code Division Multiple Access,CDMA)系统、宽带码分多址(Wideband Code Division Multiple Access,WCDMA)系统、通用分组无线业务(General Packet Radio Service,GPRS)、LTE系统、LTE频分双工(Frequency Division Duplex,FDD)系统、LTE时分双工(Time Division Duplex,TDD)、通用移动通信系统(Universal Mobile Telecommunication System,UMTS)、全球互联微波接入(Worldwide Interoperability for Microwave Access,WiMAX)通信系统、新无线(New Radio,NR)或未来的5G系统等。
本申请实施例中的终端设备可以指车载终端设备,也可以是未来5G网络中的终端设备或者未来演进的公用陆地移动通信网络(Public Land Mobile Network,PLMN)中的终端设备等,本申请实施例并不限定。
本申请结合网络设备描述了各个实施例。本申请实施例中的网络设备可以是用于与终端设备通信的设备,该网络设备可以是GSM或CDMA中的基站(Base Transceiver Station,BTS),也可以是WCDMA系统中的基站(NodeB,NB),还可以是LTE系统中的演进型基站(Evolutional NodeB,eNB或eNodeB),还可以是云无线接入网络(Cloud Radio Access Network,CRAN) 场景下的无线控制器,或者该网络设备可以为中继站、接入点、车载设备、可穿戴设备以及未来5G网络中的网络设备或者未来演进的PLMN网络中的网络设备等,本申请实施例并不限定。
图1是本申请实施例的一个应用场景的示意图。图1示例性地示出了一个网络设备和两个终端设备,可选地,本申请实施例中的无线通信系统可以包括多个网络设备并且每个网络设备的覆盖范围内可以包括其它数量的终端设备,本申请对此不做限定。此外,该无线通信系统还可以包括移动管理实体(Mobile Management Entity,MME)、服务网关(Serving Gateway,S-GW)、分组数据网络网关(Packet Data Network Gateway,P-GW)等其他网络实体,但本申请不限于此。
具体地,终端设备20和终端设备30可以通过D2D通信模式进行通信,在进行D2D通信时,终端设备20和终端设备30通过D2D链路即侧行链路(Sidelink上,SL)直接进行通信。例如图1所示,终端设备20和终端设备30通过侧行链路直接进行通信。在图1中,终端设备20和终端设备30之间通过侧行链路通信,其传输资源是由网络设备分配的。
D2D通信可以指车对车(Vehicle to Vehicle,简称“V2V”)通信或车辆到其他设备(Vehicle to Everything,V2X)通信。在V2X通信中,X可以泛指任何具有无线接收和发送能力的设备,例如但不限于慢速移动的无线装置,快速移动的车载设备,或是具有无线发射接收能力的网络控制节点等。应理解,本申请实施例主要应用于V2X通信的场景,但也可以应用于任意其它D2D通信场景,本申请实施例对此不做任何限定。
在车联网系统中,可以存在两种类型的终端设备,即具有侦听能力的终端设备例如车载终端(Vehicle User Equipment,VUE)或行人手持终端(Pedestrian User Equipment,PUE),以及不具有侦听能力的终端设备例如PUE。VUE具有更高的处理能力,并且通常通过车内的蓄电池供电,而PUE处理能力较低,降低功耗也是PUE需要考虑的一个主要因素,因此在现有的车联网系统中,VUE被认为具有完全的接收能力和侦听能力;而PUE被认为具有部分或者不具有接收和侦听能力。如果PUE具有部分侦听能力,其资源的选取可以采用和VUE类似的侦听方法,在可侦听的那部分资源上进行可用资源的选取;如果PUE不具有侦听能力,则PUE在资源池中随机选取传输资源。
在3GPP协议的版本Release-14中,定义了两种传输模式,即传输模式3(mode 3)和传输模式4(mode 4)。使用传输模式3的终端设备的传输资源是由基站分配的,终端设备根据基站分配的资源在侧行链路上进行数据的发送;基站可以为终端设备分配单次传输的资源,也可以为终端设备分配半静态传输的资源。使用传输模式4的终端设备如果具备侦听能力,采用侦听(sensing)和预留(reservation)的方式传输数据,如果不具备侦听能力,则在资源池中随机选取传输资源。具侦听能力的终端设备在资源池中通过侦听的方式获取可用的资源集合,终端设备从该集合中随机选取一个资源进行数据传输。由于车联网系统中的业务具有周期性特征,因此终端设备通常采用半静态传输的方式,即终端设备选取一个传输资源后,就会在多个传输周期中持续的使用该资源,从而降低资源重选以及资源冲突的概率。终端设备会在本次传输的控制信息中携带预留下次传输资源的信息,从而使得其他终端设备可以通过检测该终端设备的控制信息判断这块资源是否被该终端设备预留和使用,达到降低资源冲突的目的。
由于传输模式3的资源是由基站调度的,传输模式4的资源池是预配置或者基站配置的,因此两者不会存在资源池交叠的情况,即传输模式3和传输模式4各自对应的资源池是分离或者不重叠的,使用模式3的终端设备在支持模式3的资源池中的时频资源上进行数据传输,使用模式4的终端设备在支持模式4的资源池中的时频资源上进行数据传输。
对于支持3GPP协议的新版本Release-15的通信协议的终端设备来说,同样支持两种传输模式例如上述的传输模式3和传输模式4。当Release-15的终端设备和Release-14的终端设备在通信系统中共同进行数据传输时,对于有侦听能力的终端设备,可以通过资源侦听选择资源,而对于没有侦听能力的终端设备,就难以避免地会与其他终端设备的数据传输之间产生干扰。由于使用传输模式3的终端设备与基站连接,并且其传输资源是由基站分配的,因此当使用传输模式3的终端设备和使用传输模式4的终端设备共存的时候,更需要保护使用传输模式3的终端设备的传输可靠性。
可选地,如图2所示,在车联网系统中,终端设备可以基于载波聚合的方式,通过两个载波向网络设备发送相同的PDCP层数据。具体地,如图2所示,一个PDCP实体与两个RLC实体绑定。该终端设备将待发送的第一PDCP PDU进行复制(duplication),得到第二PDCP PDU。终端设备将该第 一PDCP PDU下发到该两个RLC实体中的一个RLC实体RLC 1,将该第二PDCP PDU下发到该两个RLC实体中的另一个RLC实体RLC 2。该两个RLC实体分别对收到的PDCP PDU进行处理,并通过两个不同的载波将该第一PDCP PDU和该第二PDCP PDU发送至网络设备。
应理解,终端设备在接收网络设备或其他终端设备发送的数据时,可以执行如图2所示的数据发送过程的逆过程。
可选地,在车联网系统中,终端设备可以通过sTTI的方式传输业务。
此外,本申请的各个方面或特征可以实现成方法、装置或使用标准编程和/或工程技术的制品。本申请中使用的术语“制品”涵盖可从任何计算机可读器件、载体或介质访问的计算机程序。例如,计算机可读介质可以包括,但不限于:磁存储器件(例如,硬盘、软盘或磁带等),光盘(例如,压缩盘(Compact Disc,CD)、数字通用盘(Digital Versatile Disc,DVD)等),智能卡和闪存器件(例如,可擦写可编程只读存储器(Erasable Programmable Read-Only Memory,EPROM)、卡、棒或钥匙驱动器等)。另外,本文描述的各种存储介质可代表用于存储信息的一个或多个设备和/或其它机器可读介质。术语“机器可读介质”可包括但不限于,能够存储、包含和/或承载指令和/或数据的各种介质。
应理解,本文中术语“系统”和“网络”在本文中常被可互换使用。本文中术语“和/或”,仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。
图3是根据本申请实施例的一种数据传输的方法200的示意性流程图。如图3所示,该方法200可以由终端设备执行,该终端设备可以是如图1中所示的终端设备,该终端设备可以执行如图2所示的数据传输,该方法200中的网络设备可以是如图1所示的网络设备,该方法200可以应用于车联网系统。该方法200包括以下内容。
210,终端设备向网络设备发送状态信息,该状态信息指示该终端设备需要进行目标业务,该目标业务包括数据复制业务和/或sTTI传输业务。
可选地,终端设备在进行数据复制业务时,可以实现频率分集增益,进而提高数据传输的可靠性。
可选地,终端设备在进行sTTI传输业务时,可以使用sTTI为0.5ms,或,sTTI为0.2ms,或,sTTI为0.1ms的资源粒度进行数据传输,进而降低数据传输的时延。
可选地,该状态信息可以只占用1bit资源,指示需要进行该目标业务。
可选地,该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
可选地,优先级信息可以是单包优先级(ProSe Per-Packet Priority,PPPP)的值。
可选地,该终端设备通过侧行链路用户信息(Sidelink UE Information)向该网络设备发送该状态信息。
可选地,该方法200还包括:
终端设备根据自身的多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上,该逻辑信道组为需要进行该目标业务的逻辑信道组。
可选地,该逻辑信道组与该优先级信息之间的对应关系可以是网络设备预配置的。
可选地,该终端设备从该网络设备获取该逻辑信道组与该优先级信息之间的对应关系。
可选地,该网络设备根据该终端设备发送的状态信息,向该终端设备发送该第二信息。
例如,该终端设备接收该网络设备发送的第二信息,该第二信息指示该逻辑信道组与该优先级信息之间的对应关系。
可选地,网络设备可以同时向终端设备发送多个逻辑信道组(存在目标业务的逻辑信道组和不存在目标业务的逻辑信道组)与优先级信息之间的对应关系。此时,终端设备可以根据自身逻辑信道的优先级属性,将逻辑信道对应到相应的逻辑信道组上。
可选地,该终端设备根据该多个逻辑信道中每个逻辑信道的优先级信息,以及该逻辑信道组与该优先级信息之间的对应关系,将该多个逻辑信道中的至少一个逻辑信道对应到该逻辑信道组上。
可选地,在将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上之后,该方法200还包括:
该终端设备向该网络设备发送缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息。
可选地,该缓存状态报告包括至少一个逻辑信道组的缓存信息。
可选地,终端设备可以单独上报该逻辑信道组的标识信息和/或该目标地址索引信息,此时,该终端设备同时上报该逻辑信道组的缓存信息。
可选地,在该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,该方法200还包括:
该终端设备接收该网络设备发送的第三信息,该第三信息指示该逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,该逻辑信道组为需要进行该目标业务的逻辑信道组;
根据该第三信息,将该逻辑信道的标识信息对应的逻辑信道对应到该逻辑信道组上。
可选地,在将该逻辑信道的标识信息对应的逻辑信道对应到该逻辑信道组上之后,该方法200还包括:
该终端设备向该网络设备发送缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息。
可选地,终端设备也可以单独上报该逻辑信道组的标识信息和/或该目标地址索引信息。
因此,在本申请实施例的数据传输的方法中,网络设备获知终端设备需要进行数据复制业务和/或sTTI传输业务之后,可以据此进行逻辑信道配置,进而,实现资源的合理调度。
进一步地,终端设备可以通过缓存状态报告向网络设备上报需要进行数据复制业务和/或sTTI传输业务的数据量,进而,可以使网络设备合理调度资源。
图4是根据本申请实施例的一种数据传输的方法300的示意性流程图。如图4所示,该方法300可以由网络设备执行,该网络设备可以是如图1所示的网络设备,该方法300中的终端设备可以是如图1中所示的终端设备, 该终端设备可以执行如图2所示的数据传输,该方法300可以应用于车联网系统。该方法300包括以下内容。
310,网络设备接收终端设备发送的状态信息,该状态信息指示该终端设备需要进行目标业务,该目标业务包括数据复制业务和/或sTTI传输业务。
可选地,该网络设备获知该终端设备需要进行数据复制业务和/或sTTI传输业务之后,网络设备可以为该终端设备配置针对数据复制业务和/或sTTI传输业务逻辑信道,并分配相应的授权资源。
可选地,该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息。
可选地,该方法300还包括:
该网络设备根据该状态信息,向该终端设备发送第一信息,该第一信息指示逻辑信道组与优先级信息之间的对应关系,该逻辑信道组为需要进行该目标业务的逻辑信道组;
该网络设备接收该终端设备发送的缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息;
该网络设备根据该缓存状态报告,确定该终端设备需要进行该目标业务的数据量。
可选地,在该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,该方法300还包括:
该网络设备根据该状态信息,向该终端设备发送第二信息,该第二信息指示该逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,该逻辑信道组为需要进行该目标业务的逻辑信道组;
该网络设备接收该终端设备发送的缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息;
该网络设备根据该缓存状态报告,确定该终端设备需要进行该目标业务的数据量。
应理解,数据传输的方法300中的步骤可以参考数据传输的方法200中的相应步骤的描述,为了简洁,在此不再赘述。
因此,在本申请实施例的数据传输的方法中,网络设备获知终端设备需要进行数据复制业务和/或sTTI传输业务之后,可以据此进行逻辑信道配置,进而,实现资源的合理调度。
进一步地,终端设备可以通过缓存状态报告向网络设备上报需要进行数据复制业务和/或sTTI传输业务的数据量,进而,可以使网络设备合理调度资源。
图5是根据本申请实施例的一种数据传输的方法400的示意性流程图。如图5所示,该方法400可以由网络设备执行,该网络设备可以是如图1所示的网络设备,该方法400中的终端设备可以是如图1中所示的终端设备,该终端设备可以执行如图2所示的数据传输,该方法400可以应用于车联网系统。该方法400包括以下内容。
410,网络设备向终端设备发送配置信息,该配置信息指示进行目标业务的逻辑信道或逻辑信道组,该目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,该逻辑信道组中包括至少一个逻辑信道。
可选地,在所述网络设备向所述终端设备发送所述配置信息之前,所述方法400还包括:
该网络设备接收所述终端设备发送的状态信息,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
可选地,在该配置信息以逻辑信道组为粒度指示进行该目标业务时,所述配置信息指示进行所述目标业务的为所述逻辑信道组中的所有逻辑信道。
应理解,数据传输的方法400中的步骤可以参考数据传输的方法200中的相应步骤的描述,为了简洁,在此不再赘述。
因此,在本申请实施例的数据传输的方法中,网络设备可以为终端设备配置进行数据复制业务和/或sTTI传输业务的逻辑信道或逻辑信道组,进而,可以实现对资源的合理调度。
图6是根据本申请实施例的一种数据传输的方法500的示意性流程图。如图6所示,该方法500可以由终端设备执行,该终端设备可以是如图1中所示的终端设备,该终端设备可以执行如图2所示的数据传输,该方法500中的网络设备可以是如图1所示的网络设备,该方法500可以应用于车联网 系统。该方法500包括以下内容。
510,接收网络设备发送配置信息,该配置信息指示进行目标业务的逻辑信道或逻辑信道组,该目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,该逻辑信道组中包括至少一个逻辑信道。
520,根据该配置信息进行该目标业务。
可选地,在所述终端设备接收网络设备发送配置信息之前,所述方法500还包括:
该终端设备向所述网络设备发送状态信息,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
可选地,在该配置信息以逻辑信道组为粒度指示进行该目标业务时,所述根据所述配置信息进行所述目标业务,包括:
该终端设备根据所述配置信息,在所述逻辑信道组中的所有逻辑信道上进行所述目标业务。
应理解,数据传输的方法500中的步骤可以参考数据传输的方法200中的相应步骤的描述,为了简洁,在此不再赘述。
因此,在本申请实施例的数据传输的方法中,网络设备可以为终端设备配置进行数据复制业务和/或短传输时间间隔sTTI传输业务的逻辑信道或逻辑信道组,进而,可以实现对资源的合理调度。
图7是根据本申请实施例的一种终端设备600的示意性框图。如图7所示,该终端设备600包括:
发送单元610,用于向网络设备发送状态信息,该状态信息指示终端设备需要进行目标业务,该目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务。
可选地,该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
可选地,该终端设备600还包括:
处理单元620,用于根据多个逻辑信道的优先级信息,以及逻辑信道组 与优先级信息之间的对应关系,将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上,该逻辑信道组为需要进行该目标业务的逻辑信道组。
可选地,在该处理单元620根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上之前,该终端设备600还包括:
接收单元630,用于接收该网络设备发送的第二信息,该第二信息指示该逻辑信道组与该优先级信息之间的对应关系。
可选地,该处理单元620具体用于:
根据该多个逻辑信道中每个逻辑信道的优先级信息,以及该逻辑信道组与该优先级信息之间的对应关系,将该多个逻辑信道中的至少一个逻辑信道对应到该逻辑信道组上。
可选地,在该处理单元620将该多个逻辑信道中的部分或全部逻辑信道对应到该逻辑信道组上之后,该发送单元610还用于向该网络设备发送缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息。
可选地,在该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,该终端设备还包括:
接收单元630,用于接收该网络设备发送的第三信息,该第三信息指示该逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,该逻辑信道组为需要进行该目标业务的逻辑信道组;
处理单元620,用于根据该第三信息,将该逻辑信道的标识信息对应的逻辑信道对应到该逻辑信道组上。
可选地,在该处理单元620将该逻辑信道的标识信息对应的逻辑信道对应到该逻辑信道组上之后,该发送单元610还用于向该网络设备发送缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息。
可选地,该终端设备600应用于车联网系统。
应理解,根据本申请实施例的一种终端设备600中的各个模块的上述和其它操作和/或功能分别为了实现图3中的方法200中的终端设备的相应流程,为了简洁,在此不再赘述。
图8是根据本申请实施例的一种网络设备700的示意性框图。如图8所示,该网络设备700包括:
接收单元710,用于接收终端设备发送的状态信息,该状态信息指示该终端设备需要进行目标业务,该目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务。
可选地,该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息。
可选地,该网络设备700还包括:
发送单元720,用于根据该状态信息,向该终端设备发送第一信息,该第一信息指示逻辑信道组与优先级信息之间的对应关系,该逻辑信道组为需要进行该目标业务的逻辑信道组;
该接收单元710,还用于接收该终端设备发送的缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息;
处理单元730,用于根据该缓存状态报告,确定该终端设备需要进行该目标业务的数据量。
可选地,在该状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,该网络设备700还包括:
发送单元720,用于根据该状态信息,向该终端设备发送第二信息,该第二信息指示该逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,该逻辑信道组为需要进行该目标业务的逻辑信道组;
该接收单元710,还用于接收该终端设备发送的缓存状态报告,该缓存状态报告携带该逻辑信道组的标识信息和/或目标地址索引信息,其中,该目标地址索引信息指示进行该目标业务的目标地址信息;
处理单元730,用于根据该缓存状态报告,确定该终端设备需要进行该目标业务的数据量。
可选地,该网络设备700应用于车联网系统。
应理解,根据本申请实施例的一种网络设备700中的各个模块的上述和其它操作和/或功能分别为了实现图4中的方法300中的网络设备的相应流程,为了简洁,在此不再赘述。
图9是根据本申请实施例的一种网络设备800的示意性框图。如图9所示,该网络设备800包括:
发送单元810,用于向终端设备发送配置信息,所述配置信息指示进行目标业务的逻辑信道或逻辑信道组,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,所述逻辑信道组中包括至少一个逻辑信道。
可选地,在所述发送单元810向终端设备发送配置信息之前,所述网络设备800还包括:
接收单元820,用于接收所述终端设备发送的状态信息,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
可选地,在所述配置信息指示进行所述目标业务的为逻辑信道组时,所述配置信息指示进行所述目标业务的为所述逻辑信道组中的所有逻辑信道。
应理解,根据本申请实施例的一种网络设备800中的各个模块的上述和其它操作和/或功能分别为了实现图5中的方法400中的网络设备的相应流程,为了简洁,在此不再赘述。
图10是根据本申请实施例的一种终端设备900的示意性框图。如图10所示,该终端设备900包括:
接收单元910,用于接收网络设备发送配置信息,所述配置信息指示进行目标业务的逻辑信道或逻辑信道组,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,所述逻辑信道组中包括至少一个逻辑信道;
处理单元920,用于根据所述配置信息进行所述目标业务。
可选地,在所述接收单元910接收网络设备发送配置信息之前,所述终端设备900还包括:
发送单元930,用于向所述网络设备发送状态信息,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
可选地,在所述配置信息指示进行所述目标业务的为逻辑信道组时,所述处理单元920具体用于:
根据所述配置信息,在所述逻辑信道组中的所有逻辑信道上进行所述目标业务。
应理解,根据本申请实施例的一种终端设备900中的各个模块的上述和其它操作和/或功能分别为了实现图6中的方法500中的终端设备的相应流程,为了简洁,在此不再赘述。
图11示出了本申请实施例提供的数据传输的设备1000的示意性框图,该设备1000包括:
存储器1010,用于存储程序,该程序包括代码;
收发器1020,用于和其他设备进行通信;
处理器1030,用于执行存储器1010中的程序代码。
可选地,当该代码被执行时,该处理器1030可以实现图3中的方法200中终端设备执行的各个操作,为了简洁,在此不再赘述。此时,该设备1000可以为终端设备,例如,车载终端。
可选地,当该代码被执行时,该处理器1030可以实现图4中的方法300中网络设备执行的各个操作,为了简洁,在此不再赘述。此时,该设备1000可以为接入网设备,也可以是核心网设备。收发器1020用于在处理器1030的驱动下执行具体的信号收发。
可选地,当该代码被执行时,该处理器1030可以实现图5中的方法400中网络设备执行的各个操作,为了简洁,在此不再赘述。此时,该设备1000可以为接入网设备,也可以是核心网设备。收发器1020用于在处理器1030的驱动下执行具体的信号收发。
可选地,当该代码被执行时,该处理器1030还可以实现图6中的方法500中终端设备执行的各个操作,为了简洁,在此不再赘述。此时,该设备1000可以为终端设备,例如,车载终端。
应理解,在本申请实施例中,该处理器1030可以是中央处理单元(Central Processing Unit,CPU),该处理器1030还可以是其他通用处理器、数字信号处理器(DSP)、专用集成电路(ASIC)、现成可编程门阵列(FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。
该存储器1010可以包括只读存储器和随机存取存储器,并向处理器1030提供指令和数据。存储器1010的一部分还可以包括非易失性随机存取 存储器。例如,存储器1010还可以存储设备类型的信息。
收发器1020可以是用于实现信号发送和接收功能,例如频率调制和解调功能或叫上变频和下变频功能。
在实现过程中,上述方法的至少一个步骤可以通过处理器1030中的硬件的集成逻辑电路完成,或该集成逻辑电路可在软件形式的指令驱动下完成该至少一个步骤。因此,数据传输的设备1000可以是个芯片或者芯片组。结合本申请实施例所公开的方法的步骤可以直接体现为硬件处理器执行完成,或者用处理器中的硬件及软件模块组合执行完成。软件模块可以位于随机存储器,闪存、只读存储器,可编程只读存储器或者电可擦写可编程存储器、寄存器等本领域成熟的存储介质中。该存储介质位于存储器,处理器1030读取存储器中的信息,结合其硬件完成上述方法的步骤。为避免重复,这里不再详细描述。
图12是根据本申请实施例的系统芯片1100的示意性结构图。图12的系统芯片1100包括输入接口1101、输出接口1102、处理器1103以及存储器1104之间可以通过内部通信连接线路相连,该处理器1103用于执行该存储器1104中的代码。
可选地,当该代码被执行时,该处理器1103实现方法实施例中由终端设备执行的方法。为了简洁,在此不再赘述。
可选地,当该代码被执行时,该处理器1103实现方法实施例中由网络设备执行的方法。为了简洁,在此不再赘述。
在上述实施例中,可以全部或部分地通过软件、硬件、固件或者其任意组合来实现。当使用软件实现时,可以全部或部分地以计算机程序产品的形式实现。该计算机程序产品包括一个或多个计算机指令。在计算机上加载和执行该计算机程序指令时,全部或部分地产生按照本申请实施例所述的流程或功能。该计算机可以是通用计算机、专用计算机、计算机网络、或者其他可编程装置。该计算机指令可以存储在计算机可读存储介质中,或者从一个计算机可读存储介质向另一个计算机可读存储介质传输,例如,该计算机指令可以从一个网站站点、计算机、服务器或数据中心通过有线(例如同轴电缆、光纤、数字用户线(DSL))或无线(例如红外、无线、微波等)方式向另一个网站站点、计算机、服务器或数据中心进行传输。该计算机可读存储介质可以是计算机能够存取的任何可用介质或者是包含一个或多个可用 介质集成的服务器、数据中心等数据存储设备。该可用介质可以是磁性介质,(例如,软盘、硬盘、磁带)、光介质(例如,DVD)、或者半导体介质(例如固态硬盘Solid State Disk(SSD))等。
应理解,在本申请的各种实施例中,上述各过程的序号的大小并不意味着执行顺序的先后,各过程的执行顺序应以其功能和内在逻辑确定,而不应对本申请实施例的实施过程构成任何限定。
所属领的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
以上所述仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何熟悉本技术领的技术人员在本申请揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应以该权利要求的保护范围为准。

Claims (40)

  1. 一种数据传输的方法,其特征在于,包括:
    向网络设备发送状态信息,所述状态信息指示终端设备需要进行目标业务,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务。
  2. 根据权利要求1所述的方法,其特征在于,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
  3. 根据权利要求1或2所述的方法,其特征在于,所述方法还包括:
    根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将所述多个逻辑信道中的部分或全部逻辑信道对应到所述逻辑信道组上,所述逻辑信道组为需要进行所述目标业务的逻辑信道组。
  4. 根据权利要求3所述的方法,其特征在于,在所述根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将所述多个逻辑信道中的部分或全部逻辑信道对应到所述逻辑信道组上之前,所述方法还包括:
    接收所述网络设备发送的第二信息,所述第二信息指示所述逻辑信道组与所述优先级信息之间的对应关系。
  5. 根据权利要求3或4所述的方法,其特征在于,所述根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将所述多个逻辑信道中的部分或全部逻辑信道对应到所述逻辑信道组上,包括:
    根据所述多个逻辑信道中每个逻辑信道的优先级信息,以及所述逻辑信道组与所述优先级信息之间的对应关系,将所述多个逻辑信道中的至少一个逻辑信道对应到所述逻辑信道组上。
  6. 根据权利要求3至5中任一所述的方法,其特征在于,在将所述多个逻辑信道中的部分或全部逻辑信道对应到所述逻辑信道组上之后,所述方法还包括:
    向所述网络设备发送缓存状态报告,所述缓存状态报告携带所述逻辑信道组的标识信息和/或目标地址索引信息,其中,所述目标地址索引信息指示进行所述目标业务的目标地址信息。
  7. 根据权利要求1或2所述的方法,其特征在于,在所述状态信息包 括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,所述方法还包括:
    接收所述网络设备发送的第三信息,所述第三信息指示所述逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,所述逻辑信道组为需要进行所述目标业务的逻辑信道组;
    根据所述第三信息,将所述逻辑信道的标识信息对应的逻辑信道对应到所述逻辑信道组上。
  8. 根据权利要求7所述的方法,其特征在于,在将所述逻辑信道的标识信息对应的逻辑信道对应到所述逻辑信道组上之后,所述方法还包括:
    向所述网络设备发送缓存状态报告,所述缓存状态报告携带所述逻辑信道组的标识信息和/或目标地址索引信息,其中,所述目标地址索引信息指示进行所述目标业务的目标地址信息。
  9. 根据权利要求1至8中任一所述的方法,其特征在于,所述方法应用于车联网系统。
  10. 一种数据传输的方法,其特征在于,包括:
    接收终端设备发送的状态信息,所述状态信息指示所述终端设备需要进行目标业务,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务。
  11. 根据权利要求10所述的方法,其特征在于,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息。
  12. 根据权利要求10或11所述的方法,其特征在于,所述方法还包括:
    根据所述状态信息,向所述终端设备发送第一信息,所述第一信息指示逻辑信道组与优先级信息之间的对应关系,所述逻辑信道组为需要进行所述目标业务的逻辑信道组;
    接收所述终端设备发送的缓存状态报告,所述缓存状态报告携带所述逻辑信道组的标识信息和/或目标地址索引信息,其中,所述目标地址索引信息指示进行所述目标业务的目标地址信息;
    根据所述缓存状态报告,确定所述终端设备需要进行所述目标业务的数据量。
  13. 根据权利要求10或11所述的方法,其特征在于,在所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,所述方法还包括:
    根据所述状态信息,向所述终端设备发送第二信息,所述第二信息指示所述逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,所述逻辑信道组为需要进行所述目标业务的逻辑信道组;
    接收所述终端设备发送的缓存状态报告,所述缓存状态报告携带所述逻辑信道组的标识信息和/或目标地址索引信息,其中,所述目标地址索引信息指示进行所述目标业务的目标地址信息;
    根据所述缓存状态报告,确定所述终端设备需要进行所述目标业务的数据量。
  14. 根据权利要求10至13中任一所述的方法,其特征在于,所述方法应用于车联网系统。
  15. 一种数据传输的方法,其特征在于,包括:
    向终端设备发送配置信息,所述配置信息指示进行目标业务的逻辑信道或逻辑信道组,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,所述逻辑信道组中包括至少一个逻辑信道。
  16. 根据权利要求15所述的方法,其特征在于,在所述向终端设备发送配置信息之前,所述方法还包括:
    接收所述终端设备发送的状态信息,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
  17. 根据权利要求15或16所述的方法,其特征在于,在所述配置信息以逻辑信道组为粒度指示进行该目标业务时,所述配置信息指示进行所述目标业务的为所述逻辑信道组中的所有逻辑信道。
  18. 一种数据传输的方法,其特征在于,包括:
    接收网络设备发送配置信息,所述配置信息指示进行目标业务的逻辑信道或逻辑信道组,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,所述逻辑信道组中包括至少一个逻辑信道;
    根据所述配置信息进行所述目标业务。
  19. 根据权利要求18所述的方法,其特征在于,在所述接收网络设备发送配置信息之前,所述方法还包括:
    向所述网络设备发送状态信息,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
  20. 根据权利要求18或19所述的方法,其特征在于,在所述配置信息以逻辑信道组为粒度指示进行该目标业务时,所述根据所述配置信息进行所述目标业务,包括:
    根据所述配置信息,在所述逻辑信道组中的所有逻辑信道上进行所述目标业务。
  21. 一种终端设备,其特征在于,包括:
    发送单元,用于向网络设备发送状态信息,所述状态信息指示终端设备需要进行目标业务,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务。
  22. 根据权利要求21所述的终端设备,其特征在于,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
  23. 根据权利要求21或22所述的终端设备,其特征在于,所述终端设备还包括:
    处理单元,用于根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将所述多个逻辑信道中的部分或全部逻辑信道对应到所述逻辑信道组上,所述逻辑信道组为需要进行所述目标业务的逻辑信道组。
  24. 根据权利要求23所述的终端设备,其特征在于,在所述处理单元根据多个逻辑信道的优先级信息,以及逻辑信道组与优先级信息之间的对应关系,将所述多个逻辑信道中的部分或全部逻辑信道对应到所述逻辑信道组上之前,所述终端设备还包括:
    接收单元,用于接收所述网络设备发送的第二信息,所述第二信息指示所述逻辑信道组与所述优先级信息之间的对应关系。
  25. 根据权利要求23或24所述的终端设备,其特征在于,所述处理单元具体用于:
    根据所述多个逻辑信道中每个逻辑信道的优先级信息,以及所述逻辑信道组与所述优先级信息之间的对应关系,将所述多个逻辑信道中的至少一个逻辑信道对应到所述逻辑信道组上。
  26. 根据权利要求23至25中任一所述的终端设备,其特征在于,在所述处理单元将所述多个逻辑信道中的部分或全部逻辑信道对应到所述逻辑信道组上之后,所述发送单元还用于向所述网络设备发送缓存状态报告,所述缓存状态报告携带所述逻辑信道组的标识信息和/或目标地址索引信息,其中,所述目标地址索引信息指示进行所述目标业务的目标地址信息。
  27. 根据权利要求21或22所述的终端设备,其特征在于,在所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,所述终端设备还包括:
    接收单元,用于接收所述网络设备发送的第三信息,所述第三信息指示所述逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,所述逻辑信道组为需要进行所述目标业务的逻辑信道组;
    处理单元,用于根据所述第三信息,将所述逻辑信道的标识信息对应的逻辑信道对应到所述逻辑信道组上。
  28. 根据权利要求27所述的终端设备,其特征在于,在所述处理单元将所述逻辑信道的标识信息对应的逻辑信道对应到所述逻辑信道组上之后,所述发送单元还用于向所述网络设备发送缓存状态报告,所述缓存状态报告携带所述逻辑信道组的标识信息和/或目标地址索引信息,其中,所述目标地址索引信息指示进行所述目标业务的目标地址信息。
  29. 根据权利要求21至28中任一所述的终端设备,其特征在于,所述终端设备应用于车联网系统。
  30. 一种网络设备,其特征在于,包括:
    接收单元,用于接收终端设备发送的状态信息,所述状态信息指示所述终端设备需要进行目标业务,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务。
  31. 根据权利要求30所述的网络设备,其特征在于,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要 进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息。
  32. 根据权利要求30或31所述的网络设备,其特征在于,所述网络设备还包括:
    发送单元,用于根据所述状态信息,向所述终端设备发送第一信息,所述第一信息指示逻辑信道组与优先级信息之间的对应关系,所述逻辑信道组为需要进行所述目标业务的逻辑信道组;
    所述接收单元,还用于接收所述终端设备发送的缓存状态报告,所述缓存状态报告携带所述逻辑信道组的标识信息和/或目标地址索引信息,其中,所述目标地址索引信息指示进行所述目标业务的目标地址信息;
    处理单元,用于根据所述缓存状态报告,确定所述终端设备需要进行所述目标业务的数据量。
  33. 根据权利要求30或31所述的网络设备,其特征在于,在所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息时,所述网络设备还包括:
    发送单元,用于根据所述状态信息,向所述终端设备发送第二信息,所述第二信息指示所述逻辑信道的标识信息对应的逻辑信道与逻辑信道组之间的对应关系,所述逻辑信道组为需要进行所述目标业务的逻辑信道组;
    所述接收单元,还用于接收所述终端设备发送的缓存状态报告,所述缓存状态报告携带所述逻辑信道组的标识信息和/或目标地址索引信息,其中,所述目标地址索引信息指示进行所述目标业务的目标地址信息;
    处理单元,用于根据所述缓存状态报告,确定所述终端设备需要进行所述目标业务的数据量。
  34. 根据权利要求30至33中任一所述的网络设备,其特征在于,所述网络设备应用于车联网系统。
  35. 一种网络设备,其特征在于,包括:
    发送单元,用于向终端设备发送配置信息,所述配置信息指示进行目标业务的逻辑信道或逻辑信道组,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,所述逻辑信道组中包括至少一个逻辑信道。
  36. 根据权利要求35所述的网络设备,其特征在于,在所述发送单元向终端设备发送配置信息之前,所述网络设备还包括:
    接收单元,用于接收所述终端设备发送的状态信息,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
  37. 根据权利要求35或36所述的网络设备,其特征在于,在所述配置信息以逻辑信道组为粒度指示进行该目标业务时,所述配置信息指示进行所述目标业务的为所述逻辑信道组中的所有逻辑信道。
  38. 一种终端设备,其特征在于,包括:
    接收单元,用于接收网络设备发送配置信息,所述配置信息指示进行目标业务的逻辑信道或逻辑信道组,所述目标业务包括数据复制业务和/或短传输时间间隔sTTI传输业务,所述逻辑信道组中包括至少一个逻辑信道;
    处理单元,用于根据所述配置信息进行所述目标业务。
  39. 根据权利要求38所述的终端设备,其特征在于,在所述接收单元接收网络设备发送配置信息之前,所述终端设备还包括:
    发送单元,用于向所述网络设备发送状态信息,所述状态信息包括需要进行数据复制业务和/或sTTI传输业务的逻辑信道的标识信息、需要进行数据复制业务和/或sTTI传输业务的逻辑信道的优先级信息、进行数据复制业务和/或sTTI传输业务的目标地址信息中的至少一种信息。
  40. 根据权利要求38或39所述的终端设备,其特征在于,在所述配置信息以逻辑信道组为粒度指示进行该目标业务时,所述处理单元具体用于:
    根据所述配置信息,在所述逻辑信道组中的所有逻辑信道上进行所述目标业务。
PCT/CN2017/096110 2017-08-04 2017-08-04 数据传输的方法、终端设备和网络设备 WO2019024114A1 (zh)

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