WO2020030163A1 - 通信控制方法、装置、系统、终端、基站及存储介质 - Google Patents

通信控制方法、装置、系统、终端、基站及存储介质 Download PDF

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Publication number
WO2020030163A1
WO2020030163A1 PCT/CN2019/100108 CN2019100108W WO2020030163A1 WO 2020030163 A1 WO2020030163 A1 WO 2020030163A1 CN 2019100108 W CN2019100108 W CN 2019100108W WO 2020030163 A1 WO2020030163 A1 WO 2020030163A1
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Prior art keywords
information
terminal
resource
communication control
base station
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PCT/CN2019/100108
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English (en)
French (fr)
Inventor
罗薇
陈琳
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中兴通讯股份有限公司
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Publication of WO2020030163A1 publication Critical patent/WO2020030163A1/zh

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    • 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
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal

Definitions

  • the embodiments of the present disclosure relate to, but are not limited to, the field of communication technologies, and in particular, to but not limited to a communication control method, a communication control device, a communication control system, a terminal, a base station, and a storage medium.
  • 3GPP 3rd Generation Generation Partnership Project
  • 5G fifth generation mobile communication technology
  • 5G fifth generation mobile communication technology
  • 5G 5th Generation
  • LTE Long Term Evolution, Long Term Evolution
  • NR New Radio Access Technology
  • the present disclosure proposes a communication resource allocation scheme for the Internet of Vehicles based on multi-system coexistence.
  • a communication control method, a communication control device, a communication control system, a terminal, a base station, and a storage medium provided in the embodiments of the present disclosure.
  • An embodiment of the present disclosure provides a communication control method, including:
  • the resource configuration request includes at least one of the following: an auxiliary message, a through link message, and a buffer status report;
  • An embodiment of the present disclosure further provides a communication control method, including:
  • the resource pool information includes at least one of the following: standard information, frequency point information, time slot information, and beam indication information.
  • An embodiment of the present disclosure further provides a communication control method, including:
  • the indication information including at least one of the following: first indication information, which is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; second indication information, which is used to instruct the terminal to pass The way of requesting resources is to obtain resource information of other systems from the base station; third indication information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station;
  • the terminal reads broadcast messages of other cells on the other carrier frequency or the other standard;
  • the terminal When the indication information is the second indication information, the terminal reports a resource configuration request to request resources of other standards.
  • the terminal reads the broadcast message of the other NR frequency point and reports it to the base station.
  • An embodiment of the present disclosure further provides a communication control method, including:
  • the resource configuration request includes at least one of the following: an auxiliary message, a through link message, and a buffer status report;
  • An embodiment of the present disclosure further provides a communication control method, which includes: sending one or more resource pool information to a terminal; and used for the terminal to select resources to send and / or receive a vehicle networking message according to the resource pool information.
  • the resource pool information includes at least one of the following: standard information, frequency point information, time slot information, and beam indication information.
  • An embodiment of the present disclosure further provides a communication control method, including: sending instruction information to a terminal, where the instruction information includes at least one of the following: first instruction information for instructing the terminal to autonomously read other carrier frequencies or other formats System broadcast message; the second indication information is used to instruct the terminal to obtain resource information of other systems from the base station by requesting the resource; the third indication information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the service Base station.
  • An embodiment of the present disclosure further provides a communication control method, including:
  • the terminal sends a resource configuration request for the base station to configure resources for the local end;
  • the resource configuration request includes at least one of the following: an auxiliary message, a through link message, and a buffer status report;
  • the base station receives the resource configuration request, configures resources for the terminal according to the resource configuration request, and sends resource information to the terminal;
  • the terminal receives the resource information allocated by the base station.
  • An embodiment of the present disclosure further provides a communication control method, including:
  • the base station delivers one or more resource pool information, where the resource pool information includes at least one of the following: standard information, frequency point information, time slot information, beam indication information; and
  • the terminal receives the one or more resource pool information, and selects a resource to send and / or receive a vehicle networking message according to the resource pool information.
  • An embodiment of the present disclosure further provides a communication control method, including:
  • the base station sends instruction information
  • the instruction information includes at least one of the following: the first instruction information is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; the second instruction information is used to instruct the terminal to pass
  • the method of requesting resources obtains resource information of other systems from the base station; third indication information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station; and
  • the terminal receives the indication information, and when the indication information is the first indication information, the terminal reads broadcast messages of other cells on the other carrier frequency or the other standard; When the second instruction information is described, the terminal reports a resource configuration request to request resources of other standards; when the instruction information is the third instruction information, the terminal reads the broadcast message of the other NR frequency point and reports it To the base station.
  • An embodiment of the present disclosure further provides a communication control apparatus including a first sending module and a first receiving module.
  • the first sending module is configured to send a resource configuration request to the base station, so that the base station configures resources for the local end;
  • the resource configuration request includes at least one of the following: an auxiliary message, a through link message, and a buffer status report.
  • the first receiving module is configured to receive resource information allocated by a base station.
  • An embodiment of the present disclosure further provides a communication control apparatus including: a second receiving module and a selecting module.
  • the second receiving module is configured to receive one or more resource pool information sent by the base station; the resource pool information includes at least one of the following: standard information, frequency point information, time slot information, and beam indication information.
  • the selection module is configured to select a resource to send and / or receive an IoV message according to the resource pool information.
  • An embodiment of the present disclosure further provides a communication control apparatus including: a third receiving module, a first processing module, a second processing module, and a third processing module.
  • the third receiving module is configured to receive instruction information issued by the base station, where the instruction information includes at least one of the following: the first instruction information is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; the second Indication information is used to instruct the terminal to obtain resource information of other systems from the base station by requesting resources; third instruction information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station.
  • the first processing module is configured to read broadcast messages of other cells on the other carrier frequency or the other standard when the indication information is the first indication information.
  • the second processing module is configured to report a resource configuration request to request a resource of another system when the instruction information is the second instruction information.
  • the third processing module is configured to: when the instruction information is the third instruction information, read the broadcast message of the other NR frequency point and report it to the base station.
  • An embodiment of the present disclosure further provides a communication control apparatus including a fourth receiving module and a resource configuration module.
  • the fourth receiving module is configured to receive a resource configuration request sent by the terminal, where the resource configuration request includes at least one of the following: an auxiliary message, a through link message, and a cache status report.
  • the resource configuration module is configured to configure resources for the terminal according to the resource configuration request, and send resource information to the terminal.
  • An embodiment of the present disclosure further provides a communication control device, including: a second sending module.
  • the second sending module is configured to deliver one or more resource pool information to the terminal; for the terminal to select a resource to send and / or receive a vehicle networking message according to the resource pool information; wherein the resource pool information includes at least the following One: system information, frequency information, time slot information, beam indication information.
  • An embodiment of the present disclosure further provides a communication control device, including: a third sending module.
  • the third sending module is configured to send instruction information to the terminal, where the instruction information includes at least one of the following: the first instruction information is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; the second instruction The information is used to instruct the terminal to obtain resource information of other systems from the base station by requesting resources. The third instruction information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station.
  • An embodiment of the present disclosure further provides a communication control system, including at least one of the following:
  • the first communication control device and the fourth communication control device among the above six communication control devices;
  • the second communication control device and the fifth communication control device of the above six communication control devices are configured to control the second communication control device and the fifth communication control device of the above six communication control devices.
  • the third communication control device and the sixth communication control device among the above six communication control devices.
  • An embodiment of the present disclosure further provides a terminal including a first processor, a first memory, and a first communication bus.
  • the first communication bus is configured to implement connection and communication between a first processor and a first memory.
  • the first processor is configured to execute one or more computer programs stored in a first memory to implement the steps of the communication control method according to the first group of the above-mentioned nine groups of communication control methods.
  • An embodiment of the present disclosure further provides a terminal including a second processor, a second memory, and a second communication bus.
  • the second communication bus is configured to implement connection and communication between the second processor and the second memory.
  • the second processor is configured to execute one or more computer programs stored in a second memory to implement the steps of the communication control method according to the second group of the above-mentioned nine groups of communication control methods.
  • An embodiment of the present disclosure further provides a terminal including a third processor, a third memory, and a third communication bus.
  • the third communication bus is configured to implement connection and communication between a third processor and a third memory.
  • the third processor is configured to execute one or more computer programs stored in a third memory to implement the steps of the communication control method according to the third group of the above-mentioned nine groups of communication control methods.
  • An embodiment of the present disclosure further provides a base station including a fourth processor, a fourth memory, and a fourth communication bus.
  • the fourth communication bus is configured to implement connection and communication between a fourth processor and a fourth memory.
  • the fourth processor is configured to execute one or more computer programs stored in a fourth memory to implement the steps of the communication control method according to the fourth group of the above-mentioned nine groups of communication control methods.
  • An embodiment of the present disclosure further provides a base station including a fifth processor, a fifth memory, and a fifth communication bus.
  • the fifth communication bus is configured to implement connection and communication between a fifth processor and a fifth memory.
  • the fifth processor is configured to execute one or more computer programs stored in a fifth memory to implement the steps of the communication control method according to the fifth group of the above-mentioned nine groups of communication control methods.
  • An embodiment of the present disclosure further provides a base station including a sixth processor, a sixth memory, and a sixth communication bus.
  • the sixth communication bus is configured to implement connection communication between the sixth processor and the sixth memory.
  • the sixth processor is configured to execute one or more computer programs stored in a sixth memory to implement the steps of the communication control method according to the sixth group of the above-mentioned nine groups of communication control methods.
  • An embodiment of the present disclosure further provides a storage medium, where the storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the above-mentioned nine groups of communication control methods. The steps of the communication control method according to any one of the groups.
  • the communication control method sends a resource configuration request to the base station for the base station to configure resources for the end;
  • the request includes at least one of the following: an auxiliary message, a direct link message, and a buffer status report; and receiving resource information allocated by the base station to implement resource allocation when multiple systems coexist.
  • FIG. 1A is a schematic diagram of a communication network according to a first embodiment of the present disclosure
  • FIG. 1B is a schematic flowchart of a communication control method according to Embodiment 1 of the present disclosure
  • FIG. 2 is a first flowchart of a communication control method according to a third embodiment of the present disclosure
  • FIG. 3 is a second schematic flowchart of a communication control method according to Embodiment 3 of the present disclosure.
  • FIG. 4 is a first flowchart of a communication control method according to a fourth embodiment of the present disclosure.
  • FIG. 5 is a second schematic flowchart of a communication control method according to Embodiment 4 of the present disclosure.
  • FIG. 6 is a schematic flowchart of a communication control method according to Embodiment 5 of the present disclosure.
  • FIG. 7 is a schematic flowchart of a communication control method according to Embodiment 6 of the present disclosure.
  • FIG. 8 is a schematic flowchart of a communication control method according to Embodiment 7 of the present disclosure.
  • Embodiment 8 of the present disclosure is a schematic flowchart of a communication control method according to Embodiment 8 of the present disclosure.
  • FIG. 10 is a schematic flowchart of a communication control method according to Embodiment 9 of the present disclosure.
  • FIG. 11 is a schematic flowchart of a communication control method according to Embodiment 10 of the present disclosure.
  • FIG. 12 is a schematic structural diagram of a communication control apparatus according to Embodiment 11 of the present disclosure.
  • FIG. 13 is a schematic structural diagram of a communication control apparatus according to Embodiment 12 of the present disclosure.
  • FIG. 14 is a schematic structural diagram of a communication control apparatus according to Embodiment 13 of the present disclosure.
  • FIG. 15 is a schematic structural diagram of a communication control device according to a fourteenth embodiment of the present disclosure.
  • FIG. 16 is a schematic structural diagram of a communication control apparatus according to Embodiment 15 of the present disclosure.
  • FIG. 17 is a schematic structural diagram of a communication control apparatus according to Embodiment 16 of the present disclosure.
  • Embodiment 18 is a first schematic structural diagram of a communication control system according to Embodiment 17 of the present disclosure.
  • FIG. 19 is a second schematic structural diagram of a communication control system according to Embodiment 17 of the present disclosure.
  • FIG. 20 is a third schematic structural diagram of a communication control system according to Embodiment 17 of the present disclosure.
  • FIG. 21 is a schematic structural diagram of a terminal according to Embodiment 18 of the present disclosure.
  • FIG. 22 is a schematic structural diagram of a terminal according to a nineteenth embodiment of the present disclosure.
  • FIG. 23 is a schematic structural diagram of a terminal according to Embodiment 20 of the present disclosure.
  • FIG. 24 is a schematic structural diagram of a base station according to Embodiment 21 of the present disclosure.
  • FIG. 25 is a schematic structural diagram of a base station according to Embodiment 22 of the present disclosure.
  • FIG. 26 is a schematic structural diagram of a base station according to Embodiment 23 of the present disclosure.
  • An embodiment of the present disclosure provides a communication control method to achieve V2X resource allocation when multiple systems coexist, and to ensure reasonable communication between terminals supporting different systems.
  • the embodiments of the present disclosure are mainly described on the terminal side.
  • the embodiments of the present disclosure provide two ways to configure resources. One is to request the base station to perform resource scheduling by sending a resource configuration request. The other is to implement resource allocation. It is the terminal that obtains the corresponding resource pool from the main selection resource and implements self-configuration.
  • the Internet of Vehicles refers to a large system network for wireless communication and information exchange between cars-X (X: cars, pedestrians, roadside equipment and the Internet, etc.) in accordance with agreed communication protocols and data interaction standards.
  • the communication via the Internet of Vehicles can make the vehicle driving more secure, improve traffic efficiency, and obtain convenience for users (such as entertainment information).
  • vehicle-to-vehicle communication includes three different types: Vehicle-to-Vehicle (V2V), and vehicle-roadside equipment / network infrastructure (Vehicle-to-Vehicle) to-Infrastructure / Vehicle-to-Network (referred to as V2I / V2N), and vehicle-to-pedestrian (V2P), are collectively referred to as V2X communication.
  • V2V Vehicle-to-Vehicle
  • V2I / V2N Vehicle-to-Network
  • V2P vehicle-to-pedestrian
  • a V2X communication method based on a user equipment is a V2X communication method that is one of the implementation methods of the V2X standard, that is, services.
  • the data is not forwarded by the base station and the core network, and is directly transmitted by the source user equipment to the target user equipment through the air interface.
  • this V2X communication method is simply referred to as PC5-based V2X (V2X based direct link interface) communication or V2X sidelink communication.
  • V2X communication scenarios have further expanded and have higher performance requirements.
  • the advanced V2X business is mainly divided into 4 categories: vehicle platooning, extended sensors, advanced driving (semi-automated, full-automated driving), and remote driving (remote) driving).
  • the required performance requirements the data packet size supports 50 to 12000 bytes, the transmission rate is 2 to 50 messages per second, the maximum end-to-end delay is 3-500 milliseconds, the reliability is 90% -99.999%, and the data rate is 0.5-1000Mbps And the transmission range supports 50-1000 meters.
  • FIG. 1B For a communication control method provided by an embodiment of the present disclosure, refer to FIG. 1B, including:
  • the resource configuration request includes at least one of the following: an auxiliary message, a side link information (Sidelink Information), and a buffer status report (Buffer Status Report, abbreviated as follows). BSR).
  • S102 Receive resource information allocated by a base station.
  • the cache status report carries standard indication information or configuration file index information.
  • each Destination ID not only corresponds to the carrier set, but also corresponds to the LTE and NR standards. For example, Destination ID 1 corresponds to LTE, Destination ID 2 corresponds to NR, and Destination ID 3 corresponds to LTE and NR. Then, when the terminal requests resources from the base station, the base station needs to know which system resource the UE applies for. Specifically includes the following ways:
  • Method 1 When the UE has data to send, report the standard information in the BSR. In this way, when the network side receives the BSR, it can confirm which system can be allocated to the UE.
  • Method 2 The UE first reports the UE auxiliary information, and the UE auxiliary information includes a destination identifier index (Destination index) and a destination identifier (Destination ID) and a set of correspondence relationships of available standards.
  • the target identifier index is reported in the BSR according to the target identifier corresponding to the service type.
  • Corresponding relationship set to learn about the types of IoV services supported by the UE, and the available standard information of the service types. In this way, when the network side receives the index carrying the target identification, it can determine the network format of the resource applied by the UE, and allocate resources to the UE in the corresponding format.
  • the auxiliary message or the direct link message includes at least one of the following: a set of the correspondence between the target identifier index and the target identifier and the available formats; the target identifier index and the target identifier and the configuration Correspondence set of file index profile index.
  • a NR (New Radio Access Technology) UE when a NR (New Radio Access Technology) UE cannot detect a cell with an NR frequency point, but detects a cell with an LTE frequency point, it may access the cell as an LTE UE. After learning that the accessed LTE cell supports the NR standard, it can use LTE resources to report NR sidelink information or UE assistance messages, and indicate the service type (destination) of interest in the message or indicate that it supports receiving and sending NR in the capability information. For V2X, the network side determines whether the UE needs to configure the NR receiving resource pool based on the destination ID. After receiving the V2X BSR, it allocates V2X resources for its cross-carrier and cross-system.
  • V2X New Radio Access Technology
  • the standard includes at least one of the following: LTE, NR, 4G, 5G, R-x; where X is an integer, and the R-X identifies the version numbers of different protocols. In other words, R-X identifies protocols with different version numbers.
  • the network side allocates resources for the UE including at least one of the following:
  • the SPS configuration information includes: LTE resources and NR resources.
  • the CS configuration information includes: LTE resources and NR resources.
  • DCI Downlink Control Indication, downlink control indication
  • the protocol defines the index corresponding to the CIF (Carrier Indicator Field), and the index indicates which system is allocated, that is, the different indexes not only represent frequency information, but also include RAT information (that is, system).
  • CIF Carrier Indicator Field
  • the terminal receiving the resource information allocated by the base station includes at least one of the following:
  • the SPS configuration information includes: LTE resources and NR resources.
  • the CS configuration information includes: LTE resources and NR resources.
  • the method further includes: receiving second instruction information issued by the base station, where the second instruction information is used to instruct the terminal to obtain resource information of another system from the base station by requesting a resource.
  • this embodiment provides a communication control method, which is mainly applied to a terminal and mainly requests resources by sending a resource configuration request.
  • the difference between this embodiment and the first embodiment is mainly that the auxiliary information or the through link message includes a set of the correspondence between the target identifier index and the target identifier and the profile index profile index.
  • the base station obtains the correspondence between the profile index and the transmission parameter set profile, where the transmission parameter set profile includes at least one of the following: a transmission system, a transmission power level, and a coverage range.
  • the base station may obtain the correspondence between the profile index and the transmission parameter set from the core network.
  • the base station allocates resources to the terminal according to the profile sending parameter set corresponding to the profile index.
  • the base station allocates resources to the terminal according to the profile sending parameter set corresponding to the profile index.
  • Method 1 When the UE has data to send, report the profile index profile index in the BSR. In this way, when the network side receives the BSR, it selects the corresponding profile according to the correspondence between the profile index and the sending parameter set, and can confirm which system can be allocated to the UE.
  • Method 2 The UE reports the UE auxiliary information, and the UE auxiliary information includes a set of the correspondence between the target address index, the target id, and the profile index. After that, when the UE needs to send data, the target address index may be reported in the BSR. In this way, when the network side receives the BSR and determines the profile according to the index of the carried target identifier, the network standard of the resource applied by the UE can be determined, and the UE is allocated resources in the corresponding standard.
  • the base station determines which format to use for transmission.
  • An embodiment of the present disclosure provides a communication control method.
  • a terminal implements a process of autonomously configuring resources by receiving resource pool information issued by a base station.
  • the communication control method includes:
  • the resource pool information includes at least one of the following: standard information, frequency point information, time slot information, and beam indication information.
  • LTE coverage is better than NR
  • an NR UE is not under NR coverage, but under LTE coverage, and the base station supports both LTE and NR, it can use the LTE standard to allocate resources for NR and UE, and instruct it to use NR Standard for car-to-vehicle communication.
  • the NR resource pool configuration of mode 4 can be broadcasted through the LTE system message. After receiving the configuration information, the UE that supports NR can use NR to send and Receive NR V2X.
  • FIG. 3 is a second flowchart of a communication control method according to the third embodiment.
  • the communication control method includes:
  • the base station sends the NR standard V2X resource pool information through RRC (Radio Resource Control) proprietary signaling or a system message;
  • the V2X resource pool information includes: frequency point information, time slot information, and frequency domain information.
  • the UE may use the NR system to send and / or receive NR V2X according to the configuration.
  • the network side will configure the relationship between PPPP (ProSe Per-Packet Priority) and logical channel (Logical Channel), and the data packets from the terminal application layer Data packets are mapped to the corresponding logical channels for transmission according to PPPP.
  • PPPP ProSe Per-Packet Priority
  • logical channel Logical Channel
  • the data packet of the V2X application layer when the data packet of the V2X application layer arrives, the data packet of the application layer is mapped to the QoS flow according to the QoS (Quality of Service) criterion, and then SDAP (Service Data Adaptation Protocol) service data adaptation Protocol) and then perform mapping between QoS flows and DRB (Data Radio Bearer, data radio bearer), and one or more QoS flows (flows) can be mapped into one DRB. Therefore, the UE needs to know the mapping rules between QoS flow and DRB. Regardless of the above method, for a UE supporting multiple systems, in addition to determining the correspondence between the data packet and the DRB, it is also necessary to determine whether to transmit through the NR frequency point or the LTE frequency point.
  • QoS Quality of Service
  • SDAP Service Data Adaptation Protocol
  • DRB Data Radio Bearer, data radio bearer
  • the application layer data packet will carry the format information, and the AS layer can determine which RAT the data packet is transmitted through by obtaining the format indication information sent by the application layer.
  • the AS layer can determine which RAT the data packet is transmitted through by obtaining the format indication information sent by the application layer.
  • it may be configured as LTE or RAT.
  • the UE needs to refer to some other factors to decide whether to transmit through LTE or NR.
  • the network side configures multiple resource pools for the UE. Each resource pool is associated with a network standard, such as LTE or NR.
  • V2X application data packets it may be configured as LTE or NR, and the network side sends multiple resource pools, including, for example, one or more V2X resource pools that communicate using the LTE standard, and use NR.
  • One or more V2X resource pools for standard communication the UE needs to refer to some other factors to decide whether to transmit via LTE or NR. If NR and LTE are configured with different frequency domain resources at the same time, the receiving UE can only receive one of the resource pools. Therefore, in this case, priority information needs to be configured. It includes the following two methods:
  • Method 1 The network side sends the system priority indication information.
  • Method 2 Send resource pool priority indication information.
  • the system corresponding to the resource pool with a higher priority is selected for transmission. For example, the system with a higher priority or the system corresponding to a resource pool with a higher priority.
  • the UE decides which format to use for transmission after the capability information is exchanged between the UEs. If the UEs in the group go through the capability negotiation and find that all the UEs in the group support the NR capability, then they can use the NR format to send V2X messages. Optionally, when some UEs in the group support the NR capability and the other UEs only support LTE, the V2X message may be sent using the LTE standard.
  • the resource pool information may further include: channel busyness CBR and threshold value set information corresponding to a standard.
  • the threshold value set includes threshold value sets corresponding to different CBRs, and the threshold value set corresponding to CBRs includes: threshold values corresponding to different systems under the same CRB.
  • the threshold value set includes: threshold value set A corresponding to CBR1, threshold value set B corresponding to CBR2, and threshold value set C corresponding to CBR3; wherein the threshold value set A (equivalent to a subset) includes LTE Corresponding threshold value a1 and threshold value a2 under NR; Similarly, threshold value set B includes threshold value b1 corresponding to LTE and threshold value b2 corresponding to NR; threshold value set C includes LTE corresponding And the threshold c1 corresponding to NR.
  • the threshold value set includes threshold value sets corresponding to different systems, and the corresponding threshold value set under different systems includes: threshold values corresponding to different CBRs in the same system.
  • the threshold value set includes: a threshold value set N corresponding to the LTE system and a threshold value set M corresponding to the NR system, and the threshold value set N includes a threshold value n1 corresponding to CBR4 and a threshold value corresponding to CBR5. n2; the threshold value set M includes a threshold value m1 corresponding to CBR6 and a threshold value m2 corresponding to CBR7.
  • the terminal Based on the resource pool information, select resources to send and / or receive IoV messages.
  • the terminal obtains (or measures) the CBR value of each available resource pool, and compares each CBR value with the target threshold determined by the CBR and the standard configured by the base station. The values are compared respectively. If the CBR measurement value is less than the target threshold, the UE puts the currently measured available resource pool into a candidate resource pool set. If the CBR value is greater than the target threshold, the UE does not select the current measurement.
  • Resource pools during the screening process, or after completing the screening of all available resource pools, if the number of resource pools in the candidate resource pool set is greater than or equal to one, all candidate resource pools are sorted from low to high by the CBR value, A resource pool with the lowest CBR value is selected for sending and / or receiving IoV messages.
  • a resource pool is randomly selected from candidate resource pools for sending and / or receiving IoV messages.
  • the filtering can be stopped and the candidate resource pools can be directly collected from the current candidate resource pool. Choose one of the three candidate resource pools.
  • the resource pool information is divided into a resource pool of the LTE system and a resource pool of the NR system.
  • the resource pool of the NR system can be used as an available resource pool, and the resource pool of the LTE system can be used as an unavailable resource pool.
  • both the LTE system resource pool and the NR system resource pool can be used as available resource pools.
  • Embodiment 4 is a diagrammatic representation of Embodiment 4:
  • the embodiment of the present disclosure provides a communication control method.
  • the main difference from the above embodiment is that the terminal receives instruction information issued by the base station to obtain resources. See Figure 4, including:
  • the instruction information includes at least one of the following: the first instruction information is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; the second instruction information is used to instruct the terminal to pass The method of requesting resources obtains resource information of other systems from the base station; and the third indication information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station.
  • the terminal When the indication information is the first indication information, the terminal reads broadcast messages of other cells on other carrier frequencies or other standards; when the indication information is the second indication information, the terminal reports a resource configuration request to request other information. Resources in the standard format; when the indication information is the third indication information, the terminal reads the broadcast messages of other NR frequency points and reports them to the base station.
  • the terminal When the indication information is the first indication information, the terminal reads broadcast messages of other cells on other carrier frequencies or other standards.
  • receive the operator information Public Land Mobile Network, Public Land Mobile Network
  • corresponding frequency information sent by the base station that allow the terminal to use the NR system to send car networking messages
  • Monitoring system messages on the corresponding frequency to obtain NR vehicle network resource configuration information
  • NR vehicle network resource configuration information using the NR system to send and / or receive NR vehicle networking messages.
  • the communication control method includes:
  • the serving base station broadcasts operator information and corresponding frequency information that allow the terminal to use the NR system to send V2X messages.
  • the terminal After reading the above-mentioned message broadcast by the serving base station, the terminal obtains the corresponding frequency information, and then can read the system message on this frequency, thereby obtaining the V2X transmission resource configuration information of the NR.
  • the UE may send and receive NR V2X using the NR system according to the V2X sending resource configuration information of the NR.
  • the terminal decides which PLMN resource pools can be used according to the authorization information of the higher layer, so as to perform V2X communication in the NR resource pool corresponding to the corresponding PLMN.
  • the UE may further include:
  • the terminal sends a request message to the base station to request a time slot for sending and / or receiving NR car networking messages; the request message carries the subframe information and frequency point indication of the time slot that the terminal indicates to the base station. information.
  • the base station receives a request message sent by the terminal, configures a time slot and a frequency point for the terminal according to the request message, and sends time slot information and frequency point indication information to the terminal.
  • the terminal receives time slot information and frequency point indication information configured by the base station, and uses a target time slot corresponding to the time slot information and a target frequency point corresponding to the frequency point indication information to send and / or receive an NR vehicle networking message.
  • the serving base station needs to further indicate whether the terminal autonomously reads system broadcast messages of other carrier frequencies or obtains it from the serving base station by requesting resources.
  • NR resource information if the base station does not provide specific resource information of the NR standard in the broadcast, the serving base station needs to further indicate whether the terminal autonomously reads system broadcast messages of other carrier frequencies or obtains it from the serving base station by requesting resources.
  • the UE reads broadcast messages of other cells on the carrier frequencies.
  • the UE reports UE auxiliary information or resource request information.
  • the LTE base station may instruct the UE supporting NR V2X to read the broadcast messages of other NR frequency points and report it to the serving base station for the base station to configure the resource pool information of the NR frequency points.
  • the base station sends instruction information through RRC proprietary signaling or a system message; the instruction information is used to instruct the UE supporting NR V2X to read the broadcast messages of other NR frequency points and report to the serving base station.
  • the UE reads broadcast messages of other NR frequency points and reports them to the serving base station.
  • Embodiment 5 is a diagrammatic representation of Embodiment 5:
  • the embodiment of the present disclosure is mainly based on the first embodiment described above, and mainly stands at the base station side, and provides a communication control method. Referring to FIG. 6, the method includes:
  • S602 Configure resources for the terminal according to the resource configuration request, and send resource information to the terminal.
  • configuring resources for the terminal according to the resources includes: obtaining standard indication information or configuration file index information in the cache status report; and configuring resources for the terminal according to the format indication information or configuration file index information.
  • configuring resources for the terminal according to the resource includes: obtaining at least one of the following in the auxiliary message or the direct link message: a set of the correspondence between the target identifier index and the target identifier and the available formats ; The set of correspondence between the target identifier index and the target identifier and the profile index profile index;
  • Configure resources for the terminal according to the above-mentioned set of correspondences between the target identifier index and the target identifier and the available system, and / or the corresponding correspondence sets of the target identifier index and the target identifier and the profile index profile index.
  • the format includes at least one of the following: LTE, NR, 4G, 5G, R-x; where X is an integer, and R-X identifies the version numbers of different protocols.
  • the base station configures resources in at least one of the following ways:
  • SPS configuration information includes: LTE resources and NR resources;
  • CS configuration information includes: LTE resources and NR resources;
  • the base station before receiving the resource configuration request, may further include: sending, by the base station, second instruction information to the terminal, where the second instruction information is used to instruct the terminal to obtain resource information of another system from the base station by requesting the resource.
  • Embodiment 6 is a diagrammatic representation of Embodiment 6
  • the embodiment of the present disclosure is mainly based on the above embodiments, and mainly stands at the base station side, and provides a communication control method. Referring to FIG. 7, the method includes:
  • the terminal uses the resource pool information to select resources to send and / or receive connected vehicle messages according to the resource pool information; wherein the resource pool information includes at least one of the following: Standard information, frequency point information, time slot information, beam indication information.
  • the resource pool information may further include: Channel Busy Ratio (CBR) and threshold value set information corresponding to the standard; the threshold value set includes information corresponding to different CBRs.
  • CBR Channel Busy Ratio
  • the corresponding threshold value set under the standard includes: threshold values corresponding to different CBRs under the same standard.
  • the resource pool information may further include: standard priority indication information and / or resource pool priority indication information.
  • Embodiment 7 is a diagrammatic representation of Embodiment 7:
  • the embodiment of the present disclosure is mainly based on the above embodiment, and mainly stands at the base station side, and provides a communication control method. Referring to FIG. 8, the method includes:
  • Send instruction information to the terminal where the instruction information includes at least one of the following: the first instruction information is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; the second instruction information is used to Instruct the terminal to obtain resource information of other systems from the base station by requesting resources.
  • the third instruction information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station.
  • the method when the issued instruction message is the first instruction information, the method further includes: transmitting operator information and corresponding frequency information that allow the terminal to use the NR system to send a car networking message.
  • the base station may also receive a request message sent by the terminal, the request message is used to request a time slot for sending and / or receiving NR car networking messages; configure a time slot and frequency point for the terminal according to the request message, and Slot information and frequency point indication information are sent to the terminal.
  • Embodiment 8 is a diagrammatic representation of Embodiment 8
  • the embodiment of the present disclosure is mainly based on the foregoing embodiment, and mainly stands on the system side, and provides a communication control method. Referring to FIG. 9, the method includes:
  • the terminal sends a resource configuration request for the base station to configure resources for the local end.
  • the resource configuration request includes at least one of the following: an auxiliary message, a through link message, and a buffer status report.
  • the base station receives the resource configuration request, configures resources for the terminal according to the resource configuration request, and sends resource information to the terminal.
  • the terminal receives resource information allocated by the base station.
  • the embodiment of the present disclosure is mainly based on the foregoing embodiment, and mainly stands on the system side, and provides a communication control method. Referring to FIG. 10, the embodiment includes:
  • the base station delivers one or more resource pool information, and the resource pool information includes at least one of the following: standard information, frequency point information, time slot information, and beam indication information.
  • S10b The terminal receives one or more resource pool information, and selects a resource to send and / or receive a vehicle networking message according to the resource pool information.
  • Embodiment 10 is a diagrammatic representation of Embodiment 10:
  • the embodiment of the present disclosure is mainly based on the above embodiments, and mainly stands on the system side, and provides a communication control method. Referring to FIG. 11, the method includes:
  • the base station sends instruction information, the instruction information includes at least one of the following: the first instruction information is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; the second instruction information is used to instruct the terminal to pass The way of requesting resources is to obtain resource information of other systems from the base station; third indication information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station;
  • the terminal receives the instruction information.
  • the instruction information is the first instruction information
  • the terminal reads broadcast messages of other cells on another carrier frequency or the other standard
  • the instruction information is the second instruction information
  • the terminal The terminal reports a resource configuration request to request resources of other standards
  • the indication information is the third indication information
  • the terminal reads broadcast messages of other NR frequency points and reports to the base station.
  • Embodiment 11 is a diagrammatic representation of Embodiment 11:
  • the embodiment of the present disclosure is mainly based on the first embodiment and / or the second embodiment, and mainly stands on the terminal side, and provides a communication control device for implementing at least the first embodiment and / or the second embodiment.
  • the communication control device 120 includes a first sending module 121 and a first receiving module 122.
  • the first sending module 121 is configured to send a resource configuration request to a base station, so that the base station configures resources for the local end;
  • the resource configuration request includes at least one of the following: an auxiliary message, a through link message, and a buffer status report.
  • the first receiving module 122 is configured to receive resource information allocated by a base station.
  • Embodiment 12 is a diagrammatic representation of Embodiment 12
  • the embodiment of the present disclosure is mainly based on the third embodiment described above, and mainly stands on the terminal side, and provides a communication control device to implement at least the steps of the communication control method described in the third embodiment.
  • the communication The control device 130 includes a second receiving module 131 and a selection module 132.
  • the second receiving module 131 is configured to receive one or more resource pool information sent by the base station; the resource pool information includes at least one of the following: standard information, frequency point information, time slot information, and beam indication information.
  • the selection module 132 is configured to select a resource to send and / or receive an IoV message according to the resource pool information.
  • Embodiment 13 is a diagrammatic representation of Embodiment 13:
  • the embodiment of the present disclosure is mainly based on the fourth embodiment described above, and mainly stands on the terminal side, and provides a communication control device to implement at least the steps of the communication control method described in the fourth embodiment.
  • the communication The control device 140 includes a third receiving module 141, a first processing module 142, a second processing module 143, and a third processing module 144.
  • the third receiving module 141 is configured to receive indication information of the base station, where the indication information includes at least one of the following: the first indication information is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; the second indication The information is used to instruct the terminal to obtain resource information of other systems from the base station by requesting resources. The third instruction information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station.
  • the first processing module 142 is configured to read broadcast messages of other cells on the other carrier frequency or the other standard when the indication information is the first indication information.
  • the second processing module 143 is configured to report a resource configuration request to request a resource of another system when the instruction information is the second instruction information.
  • the third processing module 144 is configured to, when the indication information is the third indication information, read the broadcast messages of the other NR frequency points and report them to the base station.
  • Embodiment 14 is a diagrammatic representation of Embodiment 14:
  • the embodiment of the present disclosure is mainly based on the foregoing fifth embodiment, and mainly stands at the base station side, and provides a communication control device for implementing at least the steps of the communication control method according to the fifth embodiment.
  • the communication The control device 150 includes a fourth receiving module 151 and a resource configuration module 152.
  • the fourth receiving module 151 is configured to receive a resource configuration request sent by the terminal.
  • the resource configuration request includes at least one of the following: an auxiliary message, a through link message, and a cache status report.
  • the resource configuration module 152 is configured to configure resources for the terminal according to the resource configuration request, and send the resource information to the terminal.
  • the embodiment of the present disclosure is mainly based on the sixth embodiment described above, and mainly stands at the base station side, and provides a communication control device for realizing at least the steps of the communication control method described in the sixth embodiment.
  • the communication The control device 160 includes a second sending module 161.
  • the second sending module 161 is configured to send one or more resource pool information to the terminal; for the terminal to select a resource to send and / or receive a vehicle networking message according to the resource pool information; wherein the resource pool information includes at least one of the following: Standard information, frequency point information, time slot information, beam indication information.
  • the embodiment of the present disclosure is mainly based on the seventh embodiment described above, and mainly stands at the base station side, and provides a communication control device for realizing at least the steps of the communication control method described in the seventh embodiment.
  • the communication The control device 170 includes a third sending module 171.
  • the third sending module 171 is configured to send instruction information to the terminal, the instruction information includes at least one of the following: the first instruction information is used to instruct the terminal to autonomously read system broadcast messages of other carrier frequencies or other standards; the second instruction information , Used to instruct the terminal to obtain resource information of other systems from the base station by requesting resources; third instruction information is used to instruct the terminal to read the broadcast messages of other NR frequency points and report to the serving base station.
  • Embodiment 17 is a diagrammatic representation of Embodiment 17:
  • the embodiments of the present disclosure are mainly based on the eighth, ninth, and tenth embodiments, and mainly stand on the system side, and provide a communication control system to implement at least the steps of the communication control method in the corresponding embodiments.
  • the communication control system 180 includes a communication control device 181 according to the eleventh embodiment and a communication control device 182 according to the fourteenth embodiment.
  • the communication control system 190 includes: a communication control device 191 according to the twelfth embodiment, and a communication control device 192 according to the fifteenth embodiment.
  • the communication control system 200 includes: a communication control device 201 according to the thirteenth embodiment, and a communication control device 202 according to the sixteenth embodiment.
  • Embodiment 18 is a diagrammatic representation of Embodiment 18:
  • the embodiments of the present disclosure mainly provide a terminal on the basis of the foregoing first embodiment and / or the second embodiment to implement at least the steps of the communication control method described in the first embodiment and / or the second embodiment, as shown in FIG. 21.
  • the terminal 210 includes a first processor 211, a first memory 212, and a first communication bus 213.
  • the first communication bus 213 is configured to implement connection and communication between the first processor 211 and the first memory 212.
  • the first processor 211 is configured to execute one or more computer programs stored in the first memory 212 to implement at least the steps of the communication control method according to the first embodiment and / or the second embodiment.
  • Embodiment 19 is a diagrammatic representation of Embodiment 19:
  • the embodiment of the present disclosure mainly provides a terminal based on the third embodiment, to implement at least the steps of the communication control method described in the third embodiment.
  • the terminal 220 includes a second processor 221 , A second memory 222, and a second communication bus 223.
  • the second communication bus 223 is configured to implement connection and communication between the second processor 221 and the second memory 222.
  • the second processor 221 is configured to execute one or more computer programs stored in the second memory 222 to implement at least the steps of the communication control method according to the third embodiment.
  • Embodiment 20 is a diagrammatic representation of Embodiment 20.
  • the embodiment of the present disclosure mainly provides a terminal based on the fourth embodiment, to implement at least the steps of the communication control method described in the fourth embodiment.
  • the third communication bus 233 is configured to implement connection and communication between the third processor 231 and the third memory 232.
  • the third processor 231 is configured to execute one or more computer programs stored in the third memory 232 to implement at least the steps of the communication control method according to the fourth embodiment.
  • Embodiment 21 is a diagrammatic representation of Embodiment 21.
  • the embodiment of the present disclosure mainly provides a base station on the basis of the foregoing fifth embodiment to implement at least the steps of the communication control method described in the fifth embodiment.
  • the terminal 240 includes a fourth processor 241 A fourth memory 242 and a fourth communication bus 243.
  • the fourth communication bus 243 is configured to implement connection and communication between the fourth processor 241 and the fourth memory 242.
  • the fourth processor 241 is configured to execute one or more computer programs stored in the fourth memory 242 to implement at least the steps of the communication control method according to the fifth embodiment.
  • Embodiment 22 is a diagrammatic representation of Embodiment 22.
  • the embodiment of the present disclosure mainly provides a base station based on the sixth embodiment, to implement at least the steps of the communication control method described in the sixth embodiment.
  • the base station 250 includes a fifth processor 251 A fifth memory 252 and a fifth communication bus 253.
  • the fifth communication bus 253 is configured to implement connection and communication between the fifth processor 251 and the fifth memory 252;
  • the fifth processor 251 is configured to execute one or more computer programs stored in the fifth memory 252 to implement at least the steps of the communication control method according to the sixth embodiment.
  • the embodiment of the present disclosure mainly provides a base station based on the seventh embodiment, to implement at least the steps of the communication control method described in the sixth embodiment.
  • the base station 260 includes: a sixth processor 261 A sixth memory 262 and a sixth communication bus 263.
  • the sixth communication bus 263 is configured to implement connection and communication between the sixth processor 261 and the sixth memory 262.
  • the sixth processor 261 is configured to execute one or more computer programs stored in the sixth memory 262 to implement at least the steps of the communication control method according to the sixth embodiment.
  • Embodiment 24 is a diagrammatic representation of Embodiment 24.
  • This embodiment provides a storage medium that includes volatile or non-volatile data that is implemented in any method or technology for storing information such as computer-readable instructions, data structures, computer program modules, or other data. Lost, removable or non-removable media.
  • Storage media include, but are not limited to, RAM (Random Access Memory, Random Access Memory), ROM (Read-Only Memory, Read-Only Memory), EEPROM (Electrically Erasable Programmable Read Only Memory) Or other memory technology, CD-ROM (Compact Disc Read-Only Memory), digital versatile disc (DVD) or other optical disc storage, magnetic box, magnetic tape, disk storage or other magnetic storage device, or can Any other medium for storing the desired information and accessible by the computer.
  • the storage medium stores one or more computer programs, and the one or more computer programs can be executed by one or more processors to implement the steps of the communication control method in any one of the foregoing embodiments.
  • This embodiment also provides a computer program (also referred to as computer software), which can be distributed on a computer-readable medium and executed by a computable device to implement the communication control in the above-mentioned Embodiments 1 and 10. At least one step of the method; and in some cases, at least one step shown or described may be performed in a different order than that described in the above embodiments.
  • a computer program also referred to as computer software
  • This embodiment also provides a computer program product including a computer-readable device, where the computer-readable device stores the computer program as shown above.
  • the computer-readable device in this embodiment may include a storage medium as shown above.
  • a communication medium typically contains computer-readable instructions, data structures, computer program modules, or other data in a modulated data signal such as a carrier wave or other transmission mechanism, and may include any information delivery medium. Therefore, the present disclosure is not limited to any particular combination of hardware and software.

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Abstract

提供一种通信控制方法、通信控制装置、通信控制系统、终端、基站及存储介质。该通信控制方法包括:向基站发送资源配置请求,以及接收基站分配的资源信息。资源配置请求用于基站为本端配置资源。资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告。实现了多制式共存时的资源分配。

Description

通信控制方法、装置、系统、终端、基站及存储介质
本申请要求在2018年8月10日提交中国专利局、申请号为201810910282.7的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本公开实施例涉及但不限于通信技术领域,具体而言,涉及但不限于通信控制方法、通信控制装置、通信控制系统、终端、基站及存储介质。
背景技术
3GPP(3rd Generation Partnership Project)已经立项基于第五代移动通信技术(5G,5th Generation)的车联网通信研究,包括基于5G空口的车联网通信及基于5G直通链路(也称为副链路,sidelink)的车联网通信。但是目前LTE(Long Term Evolution,长期演进)作为一种广泛存在是使用的技术,并不会被立即取代,而是会在相当一段时间与NR(New Radio Access Technology,新的无线接入技术)技术并存,那么未来支持NR能力和支持LTE能力的终端会共同存在,如何进行资源分配,保证他们之间合理的进行通信,是当前急需解决的问题。本公开提出基于多制式共存时车联网通信资源分配方案。
发明内容
本公开实施例提供的通信控制方法、通信控制装置、通信控制系统、终端、基站及存储介质。
本公开实施例提供一种通信控制方法,包括:
向基站发送资源配置请求,用于所述基站为本端配置资源;所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告;以及
接收基站分配的资源信息。
本公开实施例还提供一种通信控制方法,包括:
接收基站发送的一个或者多个资源池信息;以及
根据所述资源池信息,选择资源发送和/或接收车联网消息;
其中,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
本公开实施例还提供一种通信控制方法,包括:
接收基站的指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站;
在所述指示信息为所述第一指示信息时,则终端在所述其他载频或者所述其他制式上读取其他小区的广播消息;
在所述指示信息为所述第二指示信息时,则终端上报资源配置请求用以请求其他制式的资源;以及
在所述指示信息为所述第三指示信息时,则终端读取所述其他NR频点的广播消息后上报给基站。
本公开实施例还提供一种通信控制方法,包括:
接收终端发送的资源配置请求,所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告;以及
根据所述资源配置请求为所述终端配置资源,并将资源信息发送给所述终端。
本公开实施例还提供一种通信控制方法,包括:向终端下发一个或者多个资源池信息;以用于终端根据所述资源池信息,选择资源发送和/或接收车联网消息。其中,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
本公开实施例还提供一种通信控制方法,包括:向终端下发指示信息,所 述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
本公开实施例还提供一种通信控制方法,包括:
终端发送资源配置请求,用于所述基站为本端配置资源;所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告;
基站接收所述资源配置请求,并根据所述资源配置请求为所述终端配置资源,并将资源信息发送给所述终端;以及
终端接收所述基站分配的所述资源信息。
本公开实施例还提供一种通信控制方法,包括:
基站下发一个或者多个资源池信息,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息;以及
终端接收所述一个或者多个资源池信息,根据所述资源池信息,选择资源发送和/或接收车联网消息。
本公开实施例还提供一种通信控制方法,包括:
基站下发指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站;以及
终端接收所述指示信息,在所述指示信息为所述第一指示信息时,则终端在所述其他载频或者所述其他制式上读取其他小区的广播消息;在所述指示信息为所述第二指示信息时,则终端上报资源配置请求用以请求其他制式的资源;在所述指示信息为所述第三指示信息时,则终端读取所述其他NR频点的广播消息后上报给基站。
本公开实施例还提供一种通信控制装置,包括:第一发送模块和第一接收模块。
第一发送模块设置为向基站发送资源配置请求,使所述基站为本端配置资源;所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告。
第一接收模块设置为接收基站分配的资源信息。
本公开实施例还提供一种通信控制装置,包括:第二接收模块和选择模块。
第二接收模块设置为接收基站发送的一个或者多个资源池信息;所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
选择模块设置为根据所述资源池信息,选择资源发送和/或接收车联网消息。
本公开实施例还提供一种通信控制装置,包括:第三接收模块,第一处理模块,第二处理模块,以及第三处理模块。
第三接收模块设置为接收基站下发的指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
第一处理模块设置为在所述指示信息为所述第一指示信息时,在所述其他载频或者所述其他制式上读取其他小区的广播消息。
第二处理模块设置为在所述指示信息为所述第二指示信息时,上报资源配置请求用以请求其他制式的资源。
第三处理模块设置为在所述指示信息为所述第三指示信息时,读取所述其他NR频点的广播消息后上报给基站。
本公开实施例还提供一种通信控制装置,包括:第四接收模块以及资源配置模块。
第四接收模块设置为接收终端发送的资源配置请求,所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告。
资源配置模块设置为根据所述资源配置请求为所述终端配置资源,并将资源信息发送给所述终端。
本公开实施例还提供一种通信控制装置,包括:第二发送模块。
第二发送模块设置为向终端下发一个或者多个资源池信息;以用于终端根据所述资源池信息,选择资源发送和/或接收车联网消息;其中,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
本公开实施例还提供一种通信控制装置,包括:第三发送模块。
第三发送模块设置为向终端下发指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
本公开实施例还提供一种通信控制系统,包括如下至少一种:
如上述六个通信控制装置中的第一个通信控制装置以及第四个通信控制装置;
如上述六个通信控制装置中的第二个通信控制装置以及第五个通信控制装置;
如上述六个通信控制装置中的第三个通信控制装置以及第六个通信控制装置。
本公开实施例还提供一种终端,包括第一处理器、第一存储器及第一通信总线。
所述第一通信总线设置为实现第一处理器和第一存储器之间的连接通信。
所述第一处理器设置为执行第一存储器中存储的一个或者多个计算机程序,以实现如上述九组通信控制方法中的第一组所述的通信控制方法的步骤。
本公开实施例还提供一种终端,包括第二处理器、第二存储器及第二通信总线。
所述第二通信总线设置为实现第二处理器和第二存储器之间的连接通信。
所述第二处理器设置为执行第二存储器中存储的一个或者多个计算机程序,以实现如上述九组通信控制方法中的第二组所述的通信控制方法的步骤。
本公开实施例还提供一种终端,包括第三处理器、第三存储器及第三通信总线。
所述第三通信总线设置为实现第三处理器和第三存储器之间的连接通信。
所述第三处理器设置为执行第三存储器中存储的一个或者多个计算机程序,以实现如上述九组通信控制方法中的第三组所述的通信控制方法的步骤。
本公开实施例还提供一种基站,包括第四处理器、第四存储器及第四通信总线。
所述第四通信总线设置为实现第四处理器和第四存储器之间的连接通信。
所述第四处理器设置为执行第四存储器中存储的一个或者多个计算机程序,以实现如上述九组通信控制方法中的第四组所述的通信控制方法的步骤。
本公开实施例还提供一种基站,包括第五处理器、第五存储器及第五通信总线。
所述第五通信总线设置为实现第五处理器和第五存储器之间的连接通信。
所述第五处理器设置为执行第五存储器中存储的一个或者多个计算机程序,以实现如上述九组通信控制方法中的第五组所述的通信控制方法的步骤。
本公开实施例还提供一种基站,包括第六处理器、第六存储器及第六通信总线。
所述第六通信总线设置为实现第六处理器和第六存储器之间的连接通信。
所述第六处理器设置为执行第六存储器中存储的一个或者多个计算机程序,以实现如上述九组通信控制方法中的第六组所述的通信控制方法的步骤。
本公开实施例还提供一种存储介质,所述存储介质存储有一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现如上述九组通信控制方法中的任一组的任一项所述的通信控制方法的步骤。
根据本公开实施例提供的通信控制方法、通信控制装置、通信控制系统、终端、基站及存储介质,该通信控制方法通过向基站发送资源配置请求,用于基站为本端配置资源;其中资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告;并接收基站分配的资源信息,以实现多制式共存时 的资源分配。在某些实施过程中可实现包括但不限于上述技术效果。
附图说明
图1A为本公开实施例一的通信网络示意图;
图1B为本公开实施例一的通信控制方法流程示意图;
图2为本公开实施例三的通信控制方法流程示意图一;
图3为本公开实施例三的通信控制方法流程示意图二;
图4为本公开实施例四的通信控制方法流程示意图一;
图5为本公开实施例四的通信控制方法流程示意图二;
图6为本公开实施例五的通信控制方法流程示意图;
图7为本公开实施例六的通信控制方法流程示意图;
图8为本公开实施例七的通信控制方法流程示意图;
图9为本公开实施例八的通信控制方法流程示意图;
图10为本公开实施例九的通信控制方法流程示意图;
图11为本公开实施例十的通信控制方法流程示意图;
图12为本公开实施例十一的通信控制装置结构示意图;
图13为本公开实施例十二的通信控制装置结构示意图;
图14为本公开实施例十三的通信控制装置结构示意图;
图15为本公开实施例十四的通信控制装置结构示意图;
图16为本公开实施例十五的通信控制装置结构示意图;
图17为本公开实施例十六的通信控制装置结构示意图;
图18为本公开实施例十七的通信控制系统结构示意图一;
图19为本公开实施例十七的通信控制系统结构示意图二;
图20为本公开实施例十七的通信控制系统结构示意图三;
图21为本公开实施例十八的终端结构示意图;
图22为本公开实施例十九的终端结构示意图;
图23为本公开实施例二十的终端结构示意图;
图24为本公开实施例二十一的基站结构示意图;
图25为本公开实施例二十二的基站结构示意图;
图26为本公开实施例二十三的基站结构示意图。
具体实施方式
为了使本公开的目的、技术方案及优点更加清楚明白,下面通过具体实施方式结合附图对本公开实施例作进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本公开,并不用于限定本公开。
实施例一:
本公开实施例提供一种通信控制方法,以实现多制式共存时V2X资源分配,保证支持不同制式的终端之间进行合理通信。本公开实施例主要站在终端侧进行说明,本公开实施例提供两种配置资源的方式,一种是终端通过发送资源配置请求的方式,请求基站进行资源调度,实现资源的配置;另一种是终端获取相应的资源池来自主选择资源,实现自配置。
首先需要对如下技术进行说明:
车联网是指按照约定的通信协议和数据交互标准,在车-X(X:车、行人、路边设备及互联网等)之间,进行无线通讯和信息交换的大系统网络。通过车联网通信可以使车辆驾驶获得更加安全的保证、提高交通效率以及为用户获得便利(例如娱乐信息)。从无线通信的对象来分类,车联网通信包括三种不同类型:车辆与车辆之间通信(Vehicle-to-Vehicle,简称为V2V),车辆与路边设备/网络基础设施之间通信(Vehicle-to-Infrastructure/Vehicle-to-Network,简称V2I/V2N),以及车辆与行人之间通信(Vehicle-to-Pedestrian,简称V2P),统称为V2X通信。
在3GPP组织的基于LTE的V2X通信研究中,基于用户设备(User Equipment,简称为UE)之间的直通/旁链链路(Sidelink)的V2X通信方法是V2X标准实现的方式之一,即业务数据不经过基站和核心网的转发,直接由源用户设备通过空口传输给目标用户设备。如图1A所示,这种V2X通信方式简 称PC5-based V2X(基于V2X的直通链路接口)通信或V2X sidelink通信。
随着技术进步与自动化产业发展,V2X通信场景进一步延伸且有更高的性能需求。高级V2X业务主要分为4大类:车辆组队(vehicle platooning),扩展传感器(extended sensors),高级驾驶(半自动驾驶、全自动驾驶(semi-automated or full-automated driving))以及远程驾驶(remote driving)。要求达到的性能需求:数据包大小支持50到12000字节,传输速率每秒2到50条消息,最大端到端延时3-500毫秒,可靠性90%-99.999%,数据率0.5-1000Mbps,以及传输范围支持50-1000米。
对于本公开实施例提供的通信控制方法,请参见图1B,包括:
S101、向基站发送资源配置请求,用于基站为本端配置资源;其中,资源配置请求包括如下至少一种:辅助消息、直通链路消息(Sidelink Information)、缓存状态报告(Buffer Status Report,简称BSR)。
S102、接收基站分配的资源信息。
当资源配置请求信息为缓存状态报告时,在缓存状态报告中携带制式指示信息或者配置文件索引信息。
如果NR UE支持多种V2X业务的收发,高层来配置业务类型和目标标识Destination ID的对应关系,进一步地,每个Destination ID不仅与载波集合有对应关系,还与LTE和NR制式存在对应关系。例如,Destination ID 1对应LTE,Destination ID 2对应NR,Destination ID 3对应LTE和NR。那么,终端向基站申请资源的时候,基站需要获知UE申请的是哪个制式的资源。具体包括下面方式:
方式1:当UE有数据需要发送时,在BSR中上报制式信息。这样当网络侧收到BSR后,即可确认可以分配哪种制式给UE。
方式2:UE先上报UE辅助信息,UE辅助信息包括目标标识索引(Destination index)与目标标识(Destination ID)以及可用制式的对应关系集合。当UE有业务到达时,也即有数据需要发送,根据业务类型对应的目标标识,在BSR中上报目标标识索引,网络侧根据UE上报的UE辅助消息(包括 目标标识索引与目标标识以及可用制式的对应关系集合),获知UE支持的车联网业务类型,以及该业务类型可用的制式信息。这样当网络侧收到携带目标标识索引后,就可以判断出UE申请的资源的网络制式,从而在相应的制式上为UE分配资源。
当资源配置请求信息为辅助消息或者直通链路消息时,辅助消息或者直通链路消息包括以下至少之一:目标标识索引与目标标识以及可用制式的对应关系集合;目标标识索引与目标标识以及配置文件索引profile index的对应关系集合。
可选的,当NR(New Radio Access Technology,新的无线传输技术)UE检测不到NR频点的小区,但检测到LTE频点的小区时,可能以LTE UE的身份接入小区,在其获知接入的LTE小区支持NR制式后,可以使用LTE资源上报NR sidelink information或者UE辅助消息,并在该消息中指示自己感兴趣的业务类型(destination id)或者在能力信息中指示其支持收发NR V2X,网络侧基于该destination id判断UE是否需要配置NR的接收资源池,后续在接收到V2X BSR后,为其跨载波跨制式的分配V2X资源。
其中,制式包括以下至少之一:LTE,NR,4G,5G,R-x;其中X为整数,所述R-X标识不同协议的版本号。或者说R-X标识不同版本号的协议。
网络侧为UE分配资源包括如下至少之一:
1.发送半静态调度SPS(Semi-Persistent Scheduling,半静态调度)配置信息,SPS配置信息包括:LTE资源和NR资源。
2.发送配置调度CS(Configuration scheduling,配置调度)配置信息,CS配置信息包括:LTE资源和NR资源。
3.如果配置的LTE资源和NR资源在相同频点,发送DCI(Downlink Control Indication,下行控制指示)信息,在DCI中携带制式指示信息。
4.协议定义CIF(Carrier Indicator Field,载波指示域)对应的index,通过该index指示分配那种制式,即不同的index不仅代表频点信息,还包括RAT信息(即制式)。
可选的,终端接收基站分配的资源信息包括以下至少之一:
1.接收半静态调度SPS配置信息,SPS配置信息包括:LTE资源和NR资源。
2.接收配置调度CS配置信息,CS配置信息包括:LTE资源和NR资源。
3.接收下行控制指示DCI信息,DCI中携带制式指示信息。
在终端向基站发送资源配置请求之前,还包括:接收到基站下发的第二指示信息,所述第二指示信息用于指示终端通过请求资源的方式从基站获得其他制式的资源信息。
实施例二:
本实施例在实施例的基础上,提供一种通信控制方法,主要应用于终端,主要通过发送资源配置请求的方式请求资源。本实施例与实施例一的区别主要在于:辅助信息或直通链路消息包括目标标识索引与目标标识以及配置文件索引profile index的对应关系集合。基站获取profile index与发送参数集profile的对应关系,其中发送参数集profile包括以下至少之一:发送制式、发送功率等级、覆盖范围等。
可选的,基站可以从核心网获取所述profile index与发送参数集的对应关系。
之后,基站根据与profile index对应的profile发送参数集为终端分配资源。可选的,包括以下两种方式:
方式1:当UE有数据需要发送时,在BSR中上报配置文件索引profile index。这样当网络侧收到BSR后,根据profile index与发送参数集的对应关系,选择对应的profile,即可确认可以分配哪种制式给UE。
方式2:UE上报UE辅助信息,UE辅助信息包括目标地址索引与目标id以及profile index的对应关系集合,之后,当UE有数据需要发送时,在BSR中上报目标地址索引即可。这样当网络侧收到BSR后,根据携带目标标识索引来确定profile,就可以判断出UE申请的资源的网络制式,从而在相应的制 式上为UE分配资源。
进一步地,如果对于某类业务的数据包,UE指示通过NR或者LTE传输都可以,那么基站来决定使用哪种制式进行发送。
实施例三:
本公开实施例提供一种通信控制方法,终端通过接收基站下发的资源池信息,实现自主配置资源的过程。在实施例三的一种实施方式中,请参见图2,通信控制方法包括:
S201、接收基站发送的一个或者多个资源池信息;其中,资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
S202、根据资源池信息,选择资源发送和/或接收车联网消息。
考虑到LTE覆盖较NR好,如果某个NR UE不在NR覆盖下,但在LTE覆盖下,且该基站同时支持LTE和NR,它就可以使用LTE制式为NR UE分配资源,并指示其以NR制式进行车联网通信。
例如:某小区如果同时支持LTE和NR制式V2X,可以通过LTE的系统消息广播mode 4的NR资源池配置,支持NR制式的UE接收到该配置信息后,则可以根据该配置使用NR制式发送和接收NR V2X。
可选的,图3是实施例三的通信控制方法流程示意图二。请参见图3,通信控制方法包括:
S301、基站通过RRC(Radio Resource Control,无线资源控制)专有信令或者系统消息发送NR制式的V2X资源池信息;V2X资源池信息包括:频点信息,时隙信息,频域信息。
S302、UE接收到该配置信息后,则可以根据该配置使用NR制式发送和/或接收NR V2X。
对于发送NR V2X LTE的过程,在LTE下,网络侧会配置PPPP(ProSe Per-Packet Priority,近距离通信数据分组优先级)与逻辑信道(Logical Channel)的关系,从终端应用层来的数据包会根据PPPP将数据包映射到相应的逻辑信 道进行传输。而在NR制式下,当V2X应用层的数据包到达后,根据QoS(Quality of Service,服务质量)准则将应用层的数据包映射成QoS流,然后SDAP(Service Data Adaptation Protocol,业务数据适配协议)再执行QoS流与DRB(Data Radio bearer,数据无线承载)之间的映射,一个或多个QoS flow(流)可以映射成一个DRB。因此,UE需要知道QoS flow与DRB之间的映射规则。无论上述哪种方式,对于支持多制式的UE来说,除了确定数据包与DRB的对应关系外,还需要确定通过NR频点还是通过LTE频点进行传输。
可选的,应用层数据包会携带制式信息,AS层根据获得应用层发送的制式指示信息,即可确定数据包通过哪个RAT进行传输了。进一步地,对于某些V2X应用的数据包,可能配置成LTE或者RAT均可,这种情况下,UE需要参考一些其他因素来决定是通过LTE还是NR传输,网络侧为UE配置多个资源池,每个资源池关联一种网络制式,例如LTE或者NR。
进一步地,对于某些V2X应用的数据包,可能配置成LTE或者NR均可,而网络侧发送了多个资源池,例如包括:用LTE制式通信的一个或者多个V2X资源池,以及用NR制式通信的一个或者多个V2X资源池。这种情况下,UE需要参考一些其他因素来决定是通过LTE还是NR传输。如果NR和LTE在相同时间配置了不同频域资源,那么接收UE只能接收其中一个资源池,因此,这种情况下,需要配置优先级信息。具体包括以下两种方式:
方式1:网络侧发送制式优先级指示信息。
方式2:发送资源池优先级指示信息。
那么对于支持多种制式发送的数据包,则选择优先级高的资源池对应的制式进行发送。例如优先级高的制式,或者是优先级高的资源池对应的制式。
进一步地,对于单播和组播,且NR和LTE都可以支持的应用,UE之间交互能力信息后,UE决定使用哪种制式进行传输。如果组内的UE经过能力协商后,发现组内所有UE都支持NR能力,那么则可以采用NR制式发送V2X消息。可选的,当组内其中一部分UE支持NR能力,而另一部分UE只支持LTE,则可以采用LTE制式发送V2X消息。
在本公开的其他示例中,资源池信息还可以包括:信道繁忙度CBR以及与制式相对应的门限值集合信息。其中,门限值集合包括由不同CBR对应的门限值集合,其中,CBR对应的门限值集合包括:相同CRB下不同制式对应的门限值。例如,门限值集合包括:CBR1对应的门限值集合A、CBR2对应的门限值集合B、以及CBR3对应的门限值集合C;其中门限值集合A(相当于子集)包括LTE对应的门限值a1,以及NR下的门限值a2;同理,门限值集合B包括LTE对应的门限值b1,以及NR对应的门限值b2;门限值集合C包括LTE对应的门限值c1,以及NR对应的门限值c2。
或者,门限值集合包括由不同制式下对应的门限值集合,其中,不同制式下对应的门限值集合包括:相同制式下不同CBR对应的门限值。例如,门限值集合包括:LTE制式对应的门限值集合N,以及NR制式对应的门限值集合M,且门限值集合N包括CBR4对应的门限值n1,CBR5对应的门限值n2;门限值集合M包括CBR6对应的门限值m1,CBR7对应的门限值m2。
根据资源池信息,选择资源以发送和/或接收车联网消息。可选的,当存在多个可用资源池信息时,终端分别获取(或称为测量)各个可用资源池的CBR值,并将各CBR值与由基站配置的根据CBR和制式确定的目标门限值分别作比较;若CBR测量值小于目标门限值,则UE将当前所测量的可用资源池放入一个候选资源池集合中;若CBR值大于目标门限值,则UE不选择当前所测量资源池;在筛选过程中,或者是在完成全部可用资源池的筛选后,若候选资源池集合中的资源池个数大于等于一,则对所有候选资源池按CBR值由低到高排序,并选出CBR值最低的资源池,用以发送和/或接收车联网消息;在本公开的其他示例,也从候选资源池中随机选择一个资源池用来发送和/或接收车联网消息。
可选的,在筛选过程中,候选资源池的数量达到预设个数时,例如为3个时,若当前还存在未筛选完成的资源池,可以停止筛选,直接从当前候选资源池集合的三个候选资源池中选择一个。
可选的,资源池信息分为LTE制式的资源池、NR制式的资源池。对于只 能通过NR制式传输的业务数据,则可以将NR制式的资源池作为可用资源池,而LTE制式的资源池作为不可用的资源池。同理,对于既可以通过LTE制式传输,又可以通过NR制式传输的业务数据,则LTE制式的资源池、NR制式的资源池都可以作为可用资源池。
实施例四:
本公开实施例提供一种通信控制方法,与上述实施例的主要区别在于:终端接收基站下发的指示信息,以获取资源。请参见图4,包括:
S401、接收基站的指示信息,指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
S402、在指示信息为第一指示信息时,则终端在其他载频或者其他制式上读取其他小区的广播消息;在指示信息为第二指示信息时,则终端上报资源配置请求用以请求其他制式的资源;在指示信息为第三指示信息时,则终端读取其他NR频点的广播消息后上报给基站。
其中,在指示信息为第一指示信息时,则终端在其他载频或者其他制式上读取其他小区的广播消息。可选的,接收基站发送的允许终端使用NR制式发送车联网消息的运营商信息(Public Land Mobile Network,公共陆地移动网络)以及相应的频率信息;接收运营商信息以及频率信息后,根据频率信息,在对应频率上监听系统消息,从而获取NR的车辆网资源配置信息;根据NR的车辆网资源配置信息,使用NR制式发送和/或接收NR车联网消息。
可选的,参见图5,通信控制方法包括:
S501、服务基站广播允许终端使用NR制式发送V2X消息的运营商信息以及相应的频率信息。
S502、终端通过读取服务基站广播的上述消息后,获得相应的频率信息,就可以在这个频率上读取系统消息,从而获取NR的V2X发送资源配置信息。
S503、UE可以根据所述NR的V2X发送资源配置信息使用NR制式发送和接收NR V2X。
进一步地,终端是根据高层的授权信息来决定可以使用哪些PLMN的资源池,从而在相应PLMN对应的NR资源池进行V2X通信。
本公开的其他示例,在UE在其他载频或者其他制式上读取其他小区的广播消息之后,还可以进一步包括:
终端向基站发送请求消息,以申请用于发送和/或接收NR车联网消息的时隙;在所述请求消息中,携带有终端指示给基站其希望的时隙的子帧信息以及频点指示信息。
基站接收终端发送的请求消息,根据请求消息为终端配置时隙以及频点,将时隙信息以及频点指示信息发送给终端。
终端接收基站配置的时隙信息以及频点指示信息,并利用时隙信息对应的目标时隙以及频点指示信息对应的目标频点,来发送和/或接收NR车联网消息。
在本公开的其他示例中,如果基站没有在广播中提供NR制式的具体资源信息,服务基站需要进一步指示终端是自主去读取其他载频的系统广播消息还是通过请求资源的方式从服务基站获得NR资源信息。
如果基站指示终端是自主去读取其他载频的系统广播消息,则UE在所述载频上读取其他小区的广播消息。
如果基站指示通过请求资源的方式获取资源,则UE上报UE辅助信息或者资源请求信息。
LTE基站可以指示支持NR V2X的UE读取其他NR频点的广播消息后上报给服务基站,用于基站配置NR频点的资源池信息。
可选的,基站通过RRC专有信令或者系统消息发送指示信息;指示信息用于指示支持NR V2X的UE读取其他NR频点的广播消息后上报给服务基站。UE读取其他NR频点的广播消息后上报给服务基站。
实施例五:
本公开实施例主要在上述实施例一的基础上,主要站在基站侧,提供一种通信控制方法,参见图6,包括:
S601、接收终端发送的资源配置请求,该资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告。
S602、根据资源配置请求为终端配置资源,并将资源信息发送给终端。
在资源配置请求为缓存状态报告时,根据资源为所述终端配置资源包括:获取缓存状态报告中的制式指示信息或者配置文件索引信息;根据制式指示信息或者配置文件索引信息为终端配置资源。
在资源配置请求为辅助消息或者直通链路消息时,根据资源为终端配置资源包括:获取辅助消息或者直通链路消息中的以下至少之一:目标标识索引与目标标识以及可用制式的对应关系集合;目标标识索引与目标标识以及配置文件索引profile index的对应关系集合;
根据上述目标标识索引与目标标识以及可用制式的对应关系集合、和/或目标标识索引与目标标识以及配置文件索引profile index的对应关系集合,为终端配置资源。
制式包括以下至少之一:LTE,NR,4G,5G,R-x;其中X为整数,R-X标识不同协议的版本号。
基站配置资源的方式包括如下至少之一:
1.通过半静态调度生成SPS配置信息,所述SPS配置信息包括:LTE资源和NR资源;
2.通过配置调度生成CS配置信息,所述CS配置信息包括:LTE资源和NR资源;
3.通过在下行控制指示DCI信息中携带制式指示信息。
本公开的其他示例,在接收资源配置请求之前,还可以包括:基站向终端下发第二指示信息,第二指示信息用于指示终端通过请求资源的方式从基站获得其他制式的资源信息。
实施例六:
本公开实施例主要在上述实施例的基础上,主要站在基站侧,提供一种通信控制方法,参见图7,包括:
S701、向终端下发一个或者多个资源池信息;以用于终端根据所述资源池信息,选择资源以发送和/或接收车联网消息;其中,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
在本公开的其他示例中,资源池信息可以进一步包括:信道繁忙度(Channel Busy Ratio,简称CBR)以及与制式相对应的门限值集合信息;所述门限值集合包括由不同CBR对应的门限值集合,其中,CBR对应的门限值集合包括:相同CRB下不同制式对应的门限值;或者,所述门限值集合包括由不同制式下对应的门限值集合,其中,不同制式下对应的门限值集合包括:相同制式下不同CBR对应的门限值。
在本公开的其他示例中,资源池信息还可以包括:制式优先级指示信息和/或资源池优先级指示信息。
实施例七:
本公开实施例主要在上述实施例的基础上,主要站在基站侧,提供一种通信控制方法,参见图8,包括:
S801、向终端下发指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
在本公开的其他示例中,在下发的指示消息为所述第一指示信息时,还包括:发送允许终端使用NR制式发送车联网消息的运营商信息以及相应的频率信息。
在本公开的其他示例中,基站还可以接收终端发送的请求消息,请求消息 用于申请发送和/或接收NR车联网消息的时隙;根据请求消息为终端配置时隙以及频点,将时隙信息以及频点指示信息发送给终端。
实施例八:
本公开实施例主要在上述实施例的基础上,主要站在系统侧,提供一种通信控制方法,参见图9,包括:
S901、终端发送资源配置请求,用于所述基站为本端配置资源;所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告。
S902、基站接收所述资源配置请求,根据资源配置请求为终端配置资源,并将资源信息发送给终端。
S903、终端接基站分配的资源信息。
实施例九:
本公开实施例主要在上述实施例的基础上,主要站在系统侧,提供一种通信控制方法,参见图10,包括:
S10a、基站下发一个或者多个资源池信息,资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
S10b、终端接收一个或者多个资源池信息,根据资源池信息,选择资源发送和/或接收车联网消息。
实施例十:
本公开实施例主要在上述实施例的基础上,主要站在系统侧,提供一种通信控制方法,参见图11,包括:
S111、基站下发指示信息,指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站;
S112、终端接收所述指示信息,在指示信息为第一指示信息时,则终端在其他载频或者所述其他制式上读取其他小区的广播消息;在指示信息为第二指示信息时,则终端上报资源配置请求用以请求其他制式的资源;在指示信息为第三指示信息时,则终端读取其他NR频点的广播消息后上报给基站。
实施例十一:
本公开实施例主要在上述实施例一和/或实施例二的基础上,主要站在终端侧,提供一种通信控制装置,用以至少实现上述实施例一和/或实施例二中所述的通信控制方法的步骤,参见图12,该通信控制装置120包括:第一发送模块121和第一接收模块122。
第一发送模块121设置为向基站发送资源配置请求,使所述基站为本端配置资源;所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告。
第一接收模块122设置为接收基站分配的资源信息。
其中通信控制方法流程的具体步骤请参见实施例一和/或实施例二的描述,在此不再赘述。
实施例十二:
本公开实施例主要在上述实施例三的基础上,主要站在终端侧,提供一种通信控制装置,用以至少实现上述实施例三所述的通信控制方法的步骤,参见图13,该通信控制装置130包括:第二接收模块131以及选择模块132。
第二接收模块131设置为接收基站发送的一个或者多个资源池信息;资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
选择模块132设置为根据资源池信息,选择资源发送和/或接收车联网消息。
其中通信控制方法流程的具体步骤请参见实施例三的描述,在此不再赘述。
实施例十三:
本公开实施例主要在上述实施例四的基础上,主要站在终端侧,提供一种通信控制装置,用以至少实现上述实施例四所述的通信控制方法的步骤,参见图14,该通信控制装置140包括:第三接收模块141,第一处理模块142,第二处理模块143以及第三处理模块144。
第三接收模块141设置为接收基站的指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
第一处理模块142设置为在所述指示信息为所述第一指示信息时,在所述其他载频或者所述其他制式上读取其他小区的广播消息。
第二处理模块143设置为在所述指示信息为所述第二指示信息时,上报资源配置请求用以请求其他制式的资源。
第三处理模块144设置为在所述指示信息为所述第三指示信息时,读取所述其他NR频点的广播消息后上报给基站。
其中通信控制方法流程的具体步骤请参见实施例四的描述,在此不再赘述。
实施例十四:
本公开实施例主要在上述实施例五的基础上,主要站在基站侧,提供一种通信控制装置,用以至少实现上述实施例五所述的通信控制方法的步骤,参见图15,该通信控制装置150包括:第四接收模块151以及资源配置模块152。
第四接收模块151设置为接收终端发送的资源配置请求,资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告。
资源配置模块152设置为根据资源配置请求为终端配置资源,并将资源信息发送给终端。
其中通信控制方法流程的具体步骤请参见实施例五的描述,在此不再赘述。
实施例十五:
本公开实施例主要在上述实施例六的基础上,主要站在基站侧,提供一种通信控制装置,用以至少实现上述实施例六所述的通信控制方法的步骤,参见图16,该通信控制装置160包括:第二发送模块161。
第二发送模块161设置为向终端下发一个或者多个资源池信息;以用于终端根据资源池信息,选择资源发送和/或接收车联网消息;其中,资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
其中通信控制方法流程的具体步骤请参见实施例六的描述,在此不再赘述。
实施例十六:
本公开实施例主要在上述实施例七的基础上,主要站在基站侧,提供一种通信控制装置,用以至少实现上述实施例七所述的通信控制方法的步骤,参见图17,该通信控制装置170包括:第三发送模块171。
第三发送模块171设置为向终端下发指示信息,指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
其中通信控制方法流程的具体步骤请参见实施例七的描述,在此不再赘述。
实施例十七:
本公开实施例主要在上述实施例八、实施例九以及实施例十的基础上,主要站在系统侧,提供一种通信控制系统,用以至少实现上述相应实施例中的通信控制方法的步骤,参见图18,该通信控制系统180包括:如实施例11所述的通信控制装置181,以及如实施例14所述的通信控制装置182。
具体请参见实施例11和实施例14中的描述,在此不再赘述。
本实施例还提供一种通信控制系统,参见图19,该通信控制系统190包括: 如实施例12所述的通信控制装置191,以及如实施例15所述的通信控制装置192。
具体请参见实施例12和实施例15中的描述,在此不再赘述。
本实施例还提供一种通信控制系统,参见图20,该通信控制系统200包括:如实施例13所述的通信控制装置201,以及如实施例16所述的通信控制装置202。
具体请参见实施例13和实施例16中的描述,在此不再赘述。
实施例十八:
本公开实施例主要在上述实施例一和/或实施例二的基础上,提供一种终端,用以至少实现上述实施例一和/或实施例二所述的通信控制方法的步骤,参见图21,该终端210包括:第一处理器211、第一存储器212及第一通信总线213。
所述第一通信总线213设置为实现第一处理器211和第一存储器212之间的连接通信。
所述第一处理器211设置为执行第一存储器212中存储的一个或者多个计算机程序,以至少实现如实施例一和/或实施例二所述的通信控制方法的步骤。
实施例十九:
本公开实施例主要在上述实施例三的基础上,提供一种终端,用以至少实现上述实施例三所述的通信控制方法的步骤,参见图22,该终端220包括:第二处理器221、第二存储器222及第二通信总线223。
所述第二通信总线223设置为实现第二处理器221和第二存储器222之间的连接通信。
所述第二处理器221设置为执行第二存储器222中存储的一个或者多个计算机程序,以至少实现如实施例三所述的通信控制方法的步骤。
实施例二十:
本公开实施例主要在上述实施例四的基础上,提供一种终端,用以至少实现上述实施例四所述的通信控制方法的步骤,参见图23,该终端230包括:第三处理器231、第三存储器232及第三通信总线233。
所述第三通信总线233设置为实现第三处理器231和第三存储器232之间的连接通信。
所述第三处理器231设置为执行第三存储器232中存储的一个或者多个计算机程序,以至少实现如实施例四所述的通信控制方法的步骤。
实施例二十一:
本公开实施例主要在上述实施例五的基础上,提供一种基站,用以至少实现上述实施例五所述的通信控制方法的步骤,参见图24,该终端240包括:第四处理器241、第四存储器242及第四通信总线243。
所述第四通信总线243设置为实现第四处理器241和第四存储器242之间的连接通信。
所述第四处理器241设置为执行第四存储器242中存储的一个或者多个计算机程序,以至少实现如实施例五所述的通信控制方法的步骤。
实施例二十二:
本公开实施例主要在上述实施例六的基础上,提供一种基站,用以至少实现上述实施例六所述的通信控制方法的步骤,参见图25,该基站250包括:第五处理器251、第五存储器252及第五通信总线253。
所述第五通信总线253设置为实现第五处理器251和第五存储器252之间的连接通信;
所述第五处理器251设置为执行第五存储器252中存储的一个或者多个计算机程序,以至少实现如实施例六所述的通信控制方法的步骤。
实施例二十三:
本公开实施例主要在上述实施例七的基础上,提供一种基站,用以至少实现上述实施例六所述的通信控制方法的步骤,参见图26,该基站260包括:第六处理器261、第六存储器262及第六通信总线263。
所述第六通信总线263设置为实现第六处理器261和第六存储器262之间的连接通信。
所述第六处理器261设置为执行第六存储器262中存储的一个或者多个计算机程序,以至少实现如实施例六所述的通信控制方法的步骤。
实施例二十四:
本实施例提供了一种存储介质,该存储介质包括在用于存储信息(诸如计算机可读指令、数据结构、计算机程序模块或其他数据)的任何方法或技术中实施的易失性或非易失性、可移除或不可移除的介质。存储介质包括但不限于RAM(Random Access Memory,随机存取存储器),ROM(Read-Only Memory,只读存储器),EEPROM(Electrically Erasable Programmable read only memory,带电可擦可编程只读存储器)、闪存或其他存储器技术、CD-ROM(Compact Disc Read-Only Memory,光盘只读存储器),数字多功能盘(DVD)或其他光盘存储、磁盒、磁带、磁盘存储或其他磁存储装置、或者可以用于存储期望的信息并且可以被计算机访问的任何其他的介质。
存储介质存储有一个或者多个计算机程序,所述一个或者多个计算机程序可被一个或者多个处理器执行,以实现上述任一实施例中的通信控制方法的步骤。
本实施例还提供了一种计算机程序(或称计算机软件),该计算机程序可以分布在计算机可读介质上,由可计算装置来执行,以实现上述实施例1和实施例10中的通信控制方法的至少一个步骤;并且在某些情况下,可以采用不同于上述实施例所描述的顺序执行所示出或描述的至少一个步骤。
应当理解的是,在某些情况下,可以采用不同于上述实施例所描述的顺序 执行所示出或描述的至少一个步骤。
本实施例还提供了一种计算机程序产品,包括计算机可读装置,该计算机可读装置上存储有如上所示的计算机程序。本实施例中该计算机可读装置可包括如上所示的存储介质。
可见,本领域的技术人员应该明白,上文中所公开方法中的全部或某些步骤、系统、装置中的功能模块/单元可以被实施为软件(可以用计算装置可执行的计算机程序代码来实现)、固件、硬件及其适当的组合。在硬件实施方式中,在以上描述中提及的功能模块/单元之间的划分不一定对应于物理组件的划分;例如,一个物理组件可以具有多个功能,或者一个功能或步骤可以由若干物理组件合作执行。某些物理组件或所有物理组件可以被实施为由处理器,如中央处理器、数字信号处理器或微处理器执行的软件,或者被实施为硬件,或者被实施为集成电路,如专用集成电路。
此外,本领域普通技术人员公知的是,通信介质通常包含计算机可读指令、数据结构、计算机程序模块或者诸如载波或其他传输机制之类的调制数据信号中的其他数据,并且可包括任何信息递送介质。所以,本公开不限制于任何特定的硬件和软件结合。
以上内容是结合具体的实施方式对本公开实施例所作的进一步详细说明,不能认定本公开的具体实施只局限于这些说明。

Claims (42)

  1. 一种通信控制方法,包括:
    向基站发送资源配置请求,用于所述基站为本端配置资源;所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告;以及
    接收基站分配的资源信息。
  2. 如权利要求1所述的通信控制方法,其中,
    当所述资源配置请求为所述缓存状态报告时,在所述缓存状态报告中携带制式指示信息或者配置文件索引。
  3. 如权利要求1所述的通信控制方法,其中,当所述资源配置请求为所述辅助消息或者直通链路消息时,所述辅助消息或者所述直通链路消息包括以下至少之一:目标标识索引与目标标识以及可用制式的对应关系集合;目标标识索引与目标标识以及配置文件索引的对应关系集合。
  4. 如权利要求2或3所述的通信控制方法,其中,所述制式包括以下至少之一:LTE,NR,4G,5G,R-x;其中X为整数,所述R-X标识不同协议的版本号。
  5. 如权利要求1所述的通信控制方法,其中,所述接收基站分配的资源信息包括以下至少之一:
    接收半静态调度SPS配置信息,所述SPS配置信息包括:LTE资源和NR资源;
    接收配置调度CS配置信息,所述CS配置信息包括:LTE资源和NR资源;
    接收下行控制指示DCI信息,所述DCI中携带制式指示信息。
  6. 如权利要求1-3、5任一项所述的通信控制方法,其中,在所述向基站发送资源配置请求之前,所述方法还包括:接收到基站下发的第二指示信息,所述第二指示信息用于指示终端通过请求资源的方式从基站获得其他制式的资源信息。
  7. 一种通信控制方法,包括:
    接收基站发送的一个或者多个资源池信息;以及
    根据所述资源池信息,选择资源发送和/或接收车联网消息;
    其中,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
  8. 如权利要求7所述的通信控制方法,其中,
    所述资源池信息还包括:信道繁忙度CBR以及与制式相对应的门限值集合;
    所述门限值集合包括由不同CBR对应的门限值集合,其中,CBR对应的门限值集合包括:相同CRB下不同制式对应的门限值;
    或者,所述门限值集合包括由不同制式下对应的门限值集合,其中,不同制式下对应的门限值集合包括:相同制式下不同CBR对应的门限值。
  9. 如权利要求7所述的方法,其中,所述根据所述资源池信息,选择资源发送和/或接收车联网消息包括:
    在存在多个可用资源池时,分别获取各个可用资源池的CBR值,并将各所述CBR值与由基站配置的根据CBR和制式确定的目标门限值分别作比较;
    若所述CBR值小于所述目标门限值,则将当前所测量的可用资源池放入一个候选资源池集合中;若所述CBR值大于所述目标门限值,则不选择当前所测量资源池;
    若所述候选资源池集合中的资源池个数大于一,则对所有候选资源池按CBR值由低到高排序,并选出CBR值最低的资源池,用以发送和/或接收车联网消息;或者,从候选资源池中随机选择一个资源池发送和/或接收车联网消息。
  10. 如权利要求7所述的通信控制方法,其中,
    所述资源池信息还包括:制式优先级指示信息和/或资源池优先级指示信息;
    所述根据所述资源池信息,选择资源发送和/或接收车联网消息包括:对于支持多种制式传输的数据包,则选择优先级高的制式或优先级高的资源池对应的制式进行传输。
  11. 一种通信控制方法,包括:
    接收基站的指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站;
    在所述指示信息为所述第一指示信息时,则终端在所述其他载频或者所述其他制式上读取其他小区的广播消息;
    在所述指示信息为所述第二指示信息时,则终端上报资源配置请求用以请求其他制式的资源;以及
    在所述指示信息为所述第三指示信息时,则终端读取所述其他NR频点的广播消息后上报给基站。
  12. 如权利要求11所述的通信控制方法,其中,接收基站的第一指示信息,包括:
    接收基站发送的允许终端使用NR制式发送车辆网消息的运营商信息以及相应的频率信息;
    接收所述运营商信息以及所述频率信息后,根据所述频率信息,在对应频率上监听系统消息,从而获取NR的车联网资源配置信息;以及
    根据所述NR的车联网资源配置信息,使用NR制式发送和/或接收NR车联网消息。
  13. 如权利要求11所述的通信控制方法,其中,在所述终端在所述其他载频或者所述其他制式上读取其他小区的广播消息之后,所述方法还包括:
    发送请求消息,以申请用于发送和/或接收NR车联网消息的时隙;在所述请求消息中,携带有终端指示给基站其希望的时隙的子帧信息以及频点指示信息;以及
    接收配置的时隙信息以及频点指示信息,利用所述时隙信息对应的目标时隙以及所述频点指示信息对应的目标频点,来发送和/或接收NR车联网消息。
  14. 一种通信控制方法,包括:
    接收终端发送的资源配置请求,所述资源配置请求包括如下至少一种:辅 助消息、直通链路消息、缓存状态报告;以及
    根据所述资源配置请求为所述终端配置资源,并将资源信息发送给所述终端。
  15. 如权利要求14所述的通信控制方法,其中,在所述资源配置请求为所述缓存状态报告时,根据所述资源配置请求为所述终端配置资源包括:
    获取所述缓存状态报告中的制式指示信息或者配置文件索引;根据所述制式指示信息或者配置文件索引为所述终端配置资源。
  16. 如权利要求14所述的通信控制方法,其中,在所述资源配置请求为所述辅助消息或者所述直通链路消息时,根据所述资源配置请求为所述终端配置资源包括:
    获取所述辅助消息或者所述直通链路消息中的以下至少之一:目标标识索引与目标标识以及可用制式的对应关系集合;目标标识索引与目标标识以及配置文件索引的对应关系集合;
    根据所述目标标识索引与目标标识以及可用制式的对应关系集合、和/或所述目标标识索引与目标标识以及配置文件索引的对应关系集合,为所述终端配置资源。
  17. 如权利要求15或16所述的通信控制方法,其中,所述制式包括以下至少之一:LTE,NR,4G,5G,R-x;其中X为整数,所述R-X标识不同协议的版本号。
  18. 如权利要求14所述的通信控制方法,其中,所述配置资源的方式包括如下至少之一:
    通过半静态调度生成SPS配置信息,所述SPS配置信息包括:LTE资源和NR资源;
    通过配置调度生成CS配置信息,所述CS配置信息包括:LTE资源和NR资源;
    通过在下行控制指示DCI信息中携带制式指示信息。
  19. 如权利要求14-16、18任一项所述的通信控制方法,其中,在所述接 收资源配置请求之前,所述方法还包括:
    向终端下发第二指示信息,所述第二指示信息用于指示终端通过请求资源的方式从基站获得其他制式的资源信息。
  20. 一种通信控制方法,包括:
    向终端下发一个或者多个资源池信息;以用于终端根据所述资源池信息,选择资源发送和/或接收车联网消息;
    其中,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
  21. 如权利要求20所述的通信控制方法,其中,
    所述资源池信息还包括:信道繁忙度CBR以及与制式相对应的门限值集合;
    所述门限值集合包括由不同CBR对应的门限值集合,其中,CBR对应的门限值集合包括:相同CRB下不同制式对应的门限值;
    或者,所述门限值集合包括由不同制式下对应的门限值集合,其中,不同制式下对应的门限值集合包括:相同制式下不同CBR对应的门限值。
  22. 如权利要求20所述的通信控制方法,其中,
    所述资源池信息还包括:制式优先级指示信息和/或资源池优先级指示信息。
  23. 一种通信控制方法,包括:
    向终端下发指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
  24. 如权利要求23所述的通信控制方法,其中,在下发的指示信息为所述第一指示信息时,所述方法还包括:
    发送允许终端使用NR制式发送车辆网消息的运营商信息以及相应的频率信息。
  25. 如权利要求23所述的通信控制方法,其中,所述方法还包括:
    接收终端发送的请求消息,所述请求消息中携带有终端指示给基站其希望的时隙的子帧信息以及频点指示信息,所述请求消息用于申请发送和/或接收NR车联网消息的时隙;
    根据所述请求消息为所述终端配置时隙以及频点,将时隙信息以及频点指示信息发送给所述终端。
  26. 一种通信控制方法,包括:
    终端发送资源配置请求,用于所述基站为本端配置资源;所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告;
    基站接收所述资源配置请求,并根据所述资源配置请求为所述终端配置资源,并将资源信息发送给所述终端;以及
    终端接收所述基站分配的所述资源信息。
  27. 一种通信控制方法,包括:
    基站下发一个或者多个资源池信息,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息;以及
    终端接收所述一个或者多个资源池信息,根据所述资源池信息,选择资源发送和/或接收车联网消息。
  28. 一种通信控制方法,包括:
    基站下发指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站;以及
    终端接收所述指示信息,在所述指示信息为所述第一指示信息时,则终端在所述其他载频或者所述其他制式上读取其他小区的广播消息;在所述指示信息为所述第二指示信息时,则终端上报资源配置请求用以请求其他制式的资源;在所述指示信息为所述第三指示信息时,则终端读取所述其他NR频点的广播消息后上报给基站。
  29. 一种通信控制装置,包括:
    第一发送模块,设置为向基站发送资源配置请求,使所述基站为本端配置资源;所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告;以及
    第一接收模块,设置为接收基站分配的资源信息。
  30. 一种通信控制装置,包括:
    第二接收模块,设置为接收基站发送的一个或者多个资源池信息;所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息;以及
    选择模块,设置为根据所述资源池信息,选择资源发送和/或接收车联网消息。
  31. 一种通信控制装置,包括:
    第三接收模块,设置为接收基站下发的指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站;
    第一处理模块,设置为在所述指示信息为所述第一指示信息时,在所述其他载频或者所述其他制式上读取其他小区的广播消息;
    第二处理模块,设置为在所述指示信息为所述第二指示信息时,上报资源配置请求用以请求其他制式的资源;以及
    第三处理模块,设置为在所述指示信息为所述第三指示信息时,读取所述其他NR频点的广播消息后上报给基站。
  32. 一种通信控制装置,包括:
    第四接收模块,设置为接收终端发送的资源配置请求,所述资源配置请求包括如下至少一种:辅助消息、直通链路消息、缓存状态报告;以及
    资源配置模块,设置为根据所述资源配置请求为所述终端配置资源,并将资源信息发送给所述终端。
  33. 一种通信控制装置,包括:
    第二发送模块,设置为向终端下发一个或者多个资源池信息;以用于终端根据所述资源池信息,选择资源发送和/或接收车联网消息;其中,所述资源池信息包括以下至少之一:制式信息,频点信息,时隙信息,波束指示信息。
  34. 一种通信控制装置,包括:
    第三发送模块,设置为向终端下发指示信息,所述指示信息包括以下至少之一:第一指示信息,用于指示终端自主去读取其他载频或者其他制式的系统广播消息;第二指示信息,用于指示终端通过请求资源的方式从基站获得其他制式的资源信息;第三指示信息,用于指示终端读取其他NR频点的广播消息后上报给服务基站。
  35. 一种通信控制系统,包括如下至少一种:
    如权利要求29所述的通信控制装置以及如权利要求32所述的通信控制装置;
    如权利要求30所述的通信控制装置以及如权利要求33所述的通信控制装置;
    如权利要求31所述的通信控制装置以及如权利要求34所述的通信控制装置。
  36. 一种终端,包括第一处理器、第一存储器及第一通信总线;
    所述第一通信总线设置为实现第一处理器和第一存储器之间的连接通信;
    所述第一处理器设置为执行第一存储器中存储的一个或者多个计算机程序,以实现如权利要求1至6任一项所述的通信控制方法的步骤。
  37. 一种终端,包括第二处理器、第二存储器及第二通信总线;
    所述第二通信总线设置为实现第二处理器和第二存储器之间的连接通信;
    所述第二处理器设置为执行第二存储器中存储的一个或者多个计算机程序,以实现如权利要求7至10任一项所述的通信控制方法的步骤。
  38. 一种终端,包括第三处理器、第三存储器及第三通信总线;
    所述第三通信总线设置为实现第三处理器和第三存储器之间的连接通信;
    所述第三处理器设置为执行第三存储器中存储的一个或者多个计算机程序,以实现如权利要求11至13任一项所述的通信控制方法的步骤。
  39. 一种基站,包括第四处理器、第四存储器及第四通信总线;
    所述第四通信总线设置为实现第四处理器和第四存储器之间的连接通信;
    所述第四处理器设置为执行第四存储器中存储的一个或者多个计算机程序,以实现如权利要求14至19任一项所述的通信控制方法的步骤。
  40. 一种基站,包括第五处理器、第五存储器及第五通信总线;
    所述第五通信总线设置为实现第五处理器和第五存储器之间的连接通信;
    所述第五处理器设置为执行第五存储器中存储的一个或者多个计算机程序,以实现如权利要求20至22任一项所述的通信控制方法的步骤。
  41. 一种基站,包括第六处理器、第六存储器及第六通信总线;
    所述第六通信总线设置为实现第六处理器和第六存储器之间的连接通信;
    所述第六处理器设置为执行第六存储器中存储的一个或者多个计算机程序,以实现如权利要求23至25任一项所述的通信控制方法的步骤。
  42. 一种存储介质,其特征在于,所述存储介质存储有一个或者多个计算机程序,所述一个或者多个计算机程序可被一个或者多个处理器执行,以实现如权利要求1至6中任一项、或如权利要求7-10中任一项、或如权利要求11-13中任一项、或如权利要求14-19中任一项、或如权利要求20-22中任一项、或如权利要求23-25中任一项所述的通信控制方法。
PCT/CN2019/100108 2018-08-10 2019-08-10 通信控制方法、装置、系统、终端、基站及存储介质 WO2020030163A1 (zh)

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