WO2016176965A1 - 资源分配的方法和装置 - Google Patents

资源分配的方法和装置 Download PDF

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Publication number
WO2016176965A1
WO2016176965A1 PCT/CN2015/092119 CN2015092119W WO2016176965A1 WO 2016176965 A1 WO2016176965 A1 WO 2016176965A1 CN 2015092119 W CN2015092119 W CN 2015092119W WO 2016176965 A1 WO2016176965 A1 WO 2016176965A1
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WO
WIPO (PCT)
Prior art keywords
resource
information
specific service
threshold
service data
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PCT/CN2015/092119
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English (en)
French (fr)
Inventor
罗薇
陈琳
陈玉芹
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to EP15891213.9A priority Critical patent/EP3294022B1/en
Priority to US15/571,594 priority patent/US10638486B2/en
Publication of WO2016176965A1 publication Critical patent/WO2016176965A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/51Allocation or scheduling criteria for wireless resources based on terminal or device properties
    • 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
    • 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
    • H04W72/12Wireless traffic scheduling
    • H04W72/1263Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/16Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]
    • H04W28/18Negotiating wireless communication parameters
    • 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
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/56Allocation or scheduling criteria for wireless resources based on priority criteria

Definitions

  • This document relates to, but is not limited to, the field of wireless communication technologies, and in particular, to a method and apparatus for resource allocation.
  • D2D Device-to-Device, device to the new direction of future communication technology development
  • Equipment that is, equipment direct communication
  • the application of D2D technology can reduce the burden of cellular networks, reduce the battery power consumption of user equipment, increase the data rate, and improve the robustness of the network infrastructure, which satisfies the requirements of the above high data rate services and proximity services.
  • D2D technology can work in licensed or unlicensed bands, allowing multiple D2D-enabled user equipment (D2D User Equipment, D2D UE) to directly discover without network infrastructure or network infrastructure. / Direct communication.
  • D2D User Equipment D2D User Equipment
  • D2D UE D2D User Equipment
  • the UE relay transmission in the weak/uncovered area allows the UE4 with poor signal quality to communicate with the network through the UE3 with network coverage nearby, which can help the operator to expand coverage and increase capacity;
  • the D2D technology generally includes a D2D discovery technology and a D2D communication technology, wherein the D2D discovery technology refers to a technology for determining/determining whether the first user equipment is adjacent to the second user equipment.
  • D2D user equipment can discover each other by transmitting or receiving discovery signals/information;
  • D2D communication technology refers to a technology in which some or all communication data between D2D user equipments can communicate directly without using a network infrastructure.
  • D2D technology Based on the above characteristics and advantages of D2D technology, related technologies have proposed the use of cellular wireless communication and D2D technology to realize the possibility of vehicle networking applications.
  • the main scenarios supporting communication include instant communication and vehicle warning.
  • Communication-based collision warning system through the use of advanced wireless cellular communication technology, real-time information interaction between vehicle and vehicle, vehicle and roadside infrastructure, and inform each other's current status (including vehicle position, speed, acceleration, driving path) ) and the knowledge of road environment information, collaboratively aware of road hazard conditions, timely provision of multiple types of collision warning information to prevent road traffic safety accidents, and become a new way of thinking for countries to solve road traffic safety problems.
  • Vehicle warnings may include collision warnings, lane change warnings, etc., but the delay requirements are very high in this scenario, and the related D2D technology cannot be realized.
  • the related technology does not design a special resource allocation mechanism for transmitting service data. According to the related resource allocation manner, the delay of transmitting low delay data cannot meet the real-time requirement.
  • the embodiments of the present invention provide a method and an apparatus for resource allocation, so as to solve the technical problem of how to enable a user equipment to quickly obtain specific service data for a wireless resource.
  • the embodiment of the invention provides a method for resource allocation, including:
  • the resource allocation information includes at least one of the following information:
  • the sending the resource allocation information to the user equipment UE includes:
  • the resource allocation information is transmitted by a broadcast message or a radio resource control RRC dedicated signaling.
  • the specific service data includes one or more of the following data packets:
  • the resource type is a data packet of guaranteed bit rate GBR
  • the resource type is an emergency type of data packet
  • the resource type is the indicated car network service type data packet.
  • the method further includes:
  • the specific service type indication information is sent to the user equipment UE; when the resource type of the specific service data packet is the indicated vehicle network service type, the specific vehicle is sent to the user equipment UE.
  • the networked service type indication information; the specific service type indication information and the specific vehicle network service type indication information are used to indicate a service type belonging to a specific service data packet.
  • the semi-persistent scheduling resource information includes one or more of the following information:
  • Service type indication information For example, resource pool priority indication information, and timer timeout threshold.
  • the pre-configured resource information includes one or more of the following information:
  • Resource period Resource period, resource sub-frame offset, resource frequency domain indication, resource frequency domain configuration index, resource time domain indication, resource time domain configuration index, transmission power parameter configuration information, resource pool priority indication information, pre-configured resource identification information, Timer timeout threshold.
  • the sending resource pool information includes one or more of the following information:
  • Service type indication information For example, resource pool priority indication information, and timer timeout threshold.
  • the method further includes:
  • the activation resource pre-judging condition includes one or more of the following conditions:
  • the adjacent vehicle distance is less than the first threshold, the moving speed is greater than the second threshold, and the acceleration is greater than the third threshold, and the lane is changed to enter the hotspot area;
  • the first threshold, the second threshold, and the third threshold are sent by using broadcast signaling and/or radio resource control RRC-specific signaling, or are pre-configured by the protocol.
  • the method further includes:
  • the step of receiving the resource request release information of the specific service data reported by the UE includes:
  • the release resource pre-judging condition includes one or more of the following conditions:
  • the adjacent vehicle distance is greater than the fourth threshold, the moving speed is less than the fifth threshold, the acceleration is less than the sixth threshold, and the hotspot area is left;
  • the method further includes:
  • receiving the status information reported by the UE includes:
  • the status information reported by the UE includes at least one of the following information:
  • Geographical location information speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and variation of one or more of the above parameters Instructions.
  • the method further includes:
  • the sending period configuration information is used to indicate a period during which the UE reports the status information.
  • the method further includes:
  • a semi-persistent scheduling resource network identifier is used to scramble the physical downlink control channel to activate semi-persistent resources, Simultaneously, the indication information is sent to indicate that the activated semi-persistent resource is used for pre-configuring resources.
  • the release of pre-configured resources for sending specific business data includes:
  • Send pre-configured resource release signaling including:
  • the physical downlink control channel is scrambled by the pre-configured resource network identifier to indicate release of the pre-configured resource;
  • the semi-persistent resource is used to release the semi-persistent resource by using the semi-persistent scheduling resource network identifier, and the sending indication information is used to indicate that the semi-persistent resource is released for releasing the pre-configured resource.
  • a resource allocation information sending module configured to send resource allocation information for transmitting specific service data to the user equipment UE;
  • a resource allocation information storage module configured to store the resource allocation information
  • the resource allocation information includes at least one of the following information:
  • the resource allocation information sending module is configured to send resource allocation information to the user equipment UE by:
  • the resource allocation information is sent to the UE by using a broadcast message or a radio resource to control RRC dedicated signaling.
  • the semi-persistent scheduling resource information includes one or more of the following information: service type indication information, resource pool priority indication information, and a timer timeout threshold.
  • the pre-configured resource information includes one or more of the following information: a resource period, a resource subframe offset, a resource frequency domain indication, a resource frequency domain configuration index, a resource time domain indication, a resource time domain configuration index, and a transmit power.
  • Parameter configuration information, resource pool priority indication information, pre-configured resource identification information, and timer timeout threshold are included in the resource period.
  • the sending resource pool information includes one or more of the following information: service type indication information, resource pool priority indication information, and a timer timeout threshold.
  • the method further includes:
  • the resource application information receiving module is configured to receive resource application information of the specific service data reported by the UE.
  • the resource application information receiving module is configured to implement resource application information for receiving specific service data reported by the UE by:
  • the first threshold, the second threshold, and the third threshold are sent by using broadcast signaling and/or radio resource control RRC-specific signaling, or are pre-configured by the protocol.
  • the method further includes:
  • the resource request release information receiving module is configured to receive resource request release information of the specific service data reported by the UE.
  • the resource request release information receiving module is configured to implement resource request release information for receiving specific service data reported by the UE by:
  • the release resource pre-judgment condition includes one or more of the following conditions: the adjacent vehicle distance is greater than the first Four thresholds, the moving speed is less than the fifth threshold, the acceleration is less than the sixth threshold, and leaving the hotspot area;
  • the fourth threshold, the fifth threshold, and the sixth threshold are sent by using broadcast signaling and/or RRC dedicated signaling, or are pre-configured by the protocol.
  • the method further includes:
  • the shortest time threshold sending module is configured to send a minimum time threshold for the state transition to the UE, where the shortest time threshold is used to indicate that the UE activates the resource for transmitting the specific service data and releases the shortest time interval for the resource for sending the specific service data.
  • the method further includes:
  • the status information receiving module is configured to receive status information reported by the UE.
  • the status information receiving module is configured to receive status information reported by the UE by:
  • the status information reported by the UE includes at least one of the following information:
  • Geographical location information speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and variation of one or more of the above parameters Instructions.
  • the method further includes:
  • the periodic configuration information sending module is configured to instruct the UE to report the period of the status information.
  • the method further includes:
  • the state change threshold sending module is configured to instruct the UE to report the status information when the state change exceeds the state change threshold.
  • the invention also provides a method for resource allocation, comprising:
  • the resource allocation information of the specific service includes at least one of the following information:
  • the semi-persistent scheduling resource information includes one or more of the following information:
  • Service type indication information For example, resource pool priority indication information, and timer timeout threshold.
  • the pre-configured resource information includes one or more of the following information:
  • Resource period Resource period, resource sub-frame offset, resource frequency domain indication, resource frequency domain configuration index, resource time domain indication, resource time domain configuration index, transmission power parameter configuration information, resource pool priority indication information, pre-configured resource identification information, Timer timeout threshold.
  • the sending resource pool information includes one or more of the following information:
  • Service type indication information For example, resource pool priority indication information, and timer timeout threshold.
  • the method further includes:
  • the step of reporting the resource application information of the specific service data includes:
  • the resource application information for reporting specific service data when the resource pre-judgment condition is satisfied is satisfied.
  • the method further includes:
  • the resource request release information for reporting specific service data The resource request release information for reporting specific service data.
  • the step of reporting the resource request release information of the specific service data includes:
  • the resource request release information for reporting specific service data when the resource pre-judging condition is satisfied is satisfied.
  • the method further includes:
  • the status information includes at least one of the following information:
  • Geographical location information speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and variation of one or more of the above parameters Instructions.
  • the reporting status information includes:
  • the status information is periodically reported, or the status information is reported when the status change exceeds the status change threshold.
  • the step of sending specific service data according to the sending resource pool information includes:
  • the timer is enabled. If the resource allocation is not obtained after the timer expires, the resource is selected from the sending resource pool to send specific service data.
  • the step of sending specific service data according to the sending resource pool information includes:
  • the resource is selected from the resource pool with the highest priority of the resource pool to send the specific service data; or: the specific service data is selected from the resource pool whose service type is corresponding to the emergency type; or: Select the most recent resource in the time domain to send specific business data from all resource pools.
  • An embodiment of the present invention further provides an apparatus for resource allocation, including:
  • a resource allocation information receiving module configured to receive resource allocation information sent by a base station or a roadside unit for transmitting specific service data
  • a specific service data sending module configured to send specific service data according to the resource allocation information
  • the resource allocation information of the specific service includes at least one of the following information:
  • the semi-persistent scheduling resource information includes one or more of the following information: service type indication information, resource pool priority indication information, and a timer timeout threshold.
  • the sending resource pool information includes one or more of the following information: service type indication information, resource pool priority indication information, and a timer timeout threshold.
  • the method further includes:
  • the activation resource module is configured to report resource application information for reporting specific service data when the resource pre-judgment condition is met;
  • the release resource module is configured to release resource request release information for reporting specific service data when the pre-judgment condition for releasing resources is satisfied.
  • the method further includes:
  • the status information reporting module is set to report status information
  • the status information includes at least one of the following information:
  • Geographical location information speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and variation of one or more of the above parameters Instructions.
  • the status information reporting module is configured to periodically report the status information, or report the status information when the status change exceeds the status change threshold.
  • the resource allocation information receiving module is configured to receive one or more sending resource pool information sent by the base station or the roadside unit;
  • the specific service data sending module is configured to enable a timer, and if the resource allocation is still not obtained after the timer expires, the resource is selected from the sending resource pool to send the specific service data.
  • the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the above method.
  • the user equipment can quickly obtain the radio resource to send the specific service data, which greatly reduces the communication delay compared to the related technology.
  • Figure 1 is a schematic diagram of D2D system discovery/communication
  • FIG. 2 is a block diagram of a resource allocation apparatus applied to a base station or a roadside unit according to an embodiment of the present invention
  • FIG. 3 is a block diagram of a resource allocation apparatus applied to a UE according to an embodiment of the present invention
  • FIG. 4 is a schematic view of Embodiment 1 of the present invention.
  • Figure 5 is a schematic view of Embodiment 3 of the present invention.
  • FIG. 6 is a schematic view of Embodiment 4 of the present invention.
  • Figure 7 is a schematic view of Embodiment 5 of the present invention.
  • Figure 8 is a schematic view of Embodiment 6 of the present invention.
  • Figure 9 is a schematic view of Embodiment 7 of the present invention.
  • Figure 10 is a schematic view of Embodiment 10 of the present invention.
  • Figure 11 is a schematic view of Embodiment 11 of the present invention.
  • the UE by sending resource allocation information for transmitting specific service data to the UE, the UE can quickly use the allocated resource to send specific service data, thereby ensuring the timeliness of the specific service communication.
  • a base station or a roadside unit sends resource allocation information for transmitting specific service data to a user equipment, so that the UE follows the resource. Assigning information to send specific business data;
  • the resource allocation information includes at least one of the following information:
  • the resource can be used to transmit data.
  • the base station or the roadside unit allocates resources to the UE by transmitting resource allocation information to the UE.
  • the base station or the roadside unit sends resource allocation information for transmitting specific service data to the UE, so that the UE can transmit the specific service data by using the resource for which the specific service data is allocated for the UE.
  • Specific services refer to services requiring low latency, such as emergency services, security information services, and high reliability services.
  • the UE includes a variety of user equipment such as mobile phones, vehicles, machines, and the like.
  • the resource type is a data packet of a guaranteed bit rate (GBR);
  • the resource type is an emergency type of data packet
  • the resource type is the indicated car network service type data packet.
  • the resource allocation information may be sent to the UE through a broadcast message or Radio Resource Control (RRC) proprietary signaling.
  • RRC Radio Resource Control
  • the semi-persistent scheduling resource information and the pre-configured resource information may both be resource pool information or Specify information about the resource.
  • a resource pool is a collection of multiple resources.
  • the UE may select some or all resources from the resource pool to send specific service data.
  • the UE may use the specified resource to send specific service data.
  • a dynamic scheduling technology is used, that is, when the UE needs to send data, the base station sends a request for scheduling allocation of resources, and the base station allocates dynamic scheduling resources according to the scheduling request, and the dynamic scheduling resource is characterized by the resource. Only the indicated subframe is valid and only valid once.
  • the related art also defines a semi-persistent scheduling resource (also called semi-persistent scheduling resource), which is different from dynamic scheduling in that the base station allocates the UE.
  • the UE may periodically use the resource to send data packets, and the semi-persistent scheduling configuration information generally includes: a resource period, a resource subframe offset, a resource frequency domain indication, a resource frequency domain configuration index, a resource time domain indication, Resource time domain configuration index, transmit power parameter configuration information, semi-persistent scheduling identifier information.
  • the related semi-persistent scheduling mode is improved, and the semi-persistent scheduling configuration information may further include one or more of the following information: service type indication information, resource pool priority indication information, and timing. Timer timeout threshold.
  • the service type indication information is used to indicate whether the type of the service is a normal service or a specific service
  • V2V Vehicle-to-Vehicle Communications
  • V2I Vehicle-to-Infrastructure Communications
  • V2P Vehicle-to-Pedestrian Communications
  • the UE may determine, according to the indication of the service type, whether the semi-persistently scheduled resource can be used to send specific service data. Then, when the UE needs to send a specific service, the service type configuration can be used to send a specific service for the semi-persistent scheduling resource of the specific service.
  • the resource pool priority indication information is used to indicate the priority of the resource, and the high priority resource is used to send the specific service data.
  • the resource pool priority configuration may be used to send a specific service to the high-priority semi-persistent scheduling resource.
  • the timer timeout threshold is used to indicate the timeout period for semi-persistent scheduling resource allocation.
  • the timer can be started, and the resource is preferentially applied in a dynamic scheduling manner. However, if the dynamically scheduled resource allocation is not obtained after the timer exceeds the threshold, the UE may use the semi-persistent scheduling resource to send specific service data.
  • the base station sends the sending resource pool information to the UE, where the sending resource pool information generally includes: a resource period, a resource subframe offset, a resource frequency domain indication, a resource frequency domain configuration index, a resource time domain indication, and a resource time. Domain configuration index and transmit power parameter configuration information.
  • the resource pool priority indication information is used to indicate the priority of the resource, and the high priority resource is used to send the specific service data. By prioritizing, you can prevent low-priority services from preempting resources of high-priority services.
  • the timer timeout threshold is used to indicate the timeout period.
  • the timer can be started. If the dynamic allocation resource allocation is not obtained after the timer exceeds the threshold, the UE can select a resource from the sending resource pool. Send specific business data.
  • the base station or the roadside unit receives the resource application information of the specific service data reported by the UE, and the resource request release information of the specific service data reported by the UE.
  • the resource application information of the specific service data is reported to activate the resource for transmitting the specific service data; when the UE is satisfied to release The resource request release information for reporting the specific service data when the resource pre-judgment condition is released to release the resource for transmitting the specific service data.
  • the resource application information may be: a semi-persistent scheduling resource activation request, and a pre-configured resource activation request.
  • the resource request release information may be: a semi-persistent scheduling resource release request, and a pre-configured resource release request.
  • the activation resource pre-judgment condition includes one or more of the following conditions: the adjacent vehicle distance is less than the first threshold, the moving speed is greater than the second threshold, and the acceleration is greater than the third threshold, and the lane is changed to enter the hotspot area.
  • the first threshold, the second threshold, and the third threshold are sent by broadcast signaling and/or RRC dedicated signaling, or pre-configured by the protocol.
  • the release resource pre-judging condition includes one or more of the following conditions: the adjacent vehicle distance is greater than the fourth threshold, the moving speed is less than the fifth threshold, the acceleration is less than the sixth threshold, and the hotspot area is left; the fourth threshold, The fifth threshold and the sixth threshold are transmitted by broadcast signaling and/or RRC dedicated signaling, or are pre-configured by the protocol.
  • the base station or the roadside unit may send a minimum time threshold for the state transition to the UE, and is used to indicate that the UE activates the resource for transmitting the specific service data and the shortest interval for releasing the resource for sending the specific service data. .
  • the status information reported by the UE may be received by using the RRC dedicated signaling or the physical layer uplink control channel; the status information reported by the UE includes at least one of the following information:
  • Geographical location information speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and variation of one or more of the above parameters Instructions.
  • the speed indication information includes information about the current speed of the UE.
  • the relative speed indication information includes information of the current speed of the UE relative to a specified reference object.
  • the relative distance indication information includes information of the distance of the UE currently relative to a specified reference object.
  • the speed level information includes level information of the current speed of the UE.
  • the acceleration level information includes level information of the current acceleration of the UE.
  • the relative speed level information includes level information of the speed of the UE currently relative to a specified reference object.
  • the relative distance level information includes level information of the distance of the UE currently relative to a specified reference object.
  • the information may be sent to the sending period to indicate the period in which the UE reports the status information, and/or the sending status change threshold is used to indicate that the UE changes its own state when the status changes exceed the threshold. Report status information.
  • the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the above method.
  • the device for resource allocation in the embodiment of the present invention is applied to a base station or a roadside unit, as shown in FIG. 2, including:
  • a resource allocation information sending module configured to send resource allocation information for transmitting specific service data to the user equipment UE;
  • a resource allocation information storage module configured to store the resource allocation information
  • the resource allocation information includes at least one of the following information:
  • the resource allocation information sending module sends the resource allocation information to the UE by using a broadcast message or RRC dedicated signaling.
  • the device may also include the following modules:
  • the resource application information receiving module is configured to receive resource application information of the specific service data reported by the UE.
  • the resource application information receiving module is configured to receive the UE in the satisfaction The resource application information of the specific business data reported when the living resource predicts the condition.
  • the resource request release information receiving module is configured to receive resource request release information of the specific service data reported by the UE.
  • the resource request release information receiving module is configured to receive resource request release information of the specific service data that is reported by the UE when the pre-judgment condition for releasing the resource is met.
  • the status information receiving module is configured to receive status information reported by the UE.
  • the status information receiving module is configured to receive status information that is reported by the UE by using RRC dedicated signaling or a physical layer uplink control channel.
  • the periodic configuration information sending module is configured to instruct the UE to report the period of the status information.
  • the state change threshold sending module is configured to instruct the UE to report the status information when the state change exceeds the state change threshold.
  • the method for resource allocation in the embodiment of the present invention is applied to a user equipment UE, including:
  • the resource allocation information of the specific service includes at least one of the following information:
  • the method further includes: reporting resource application information of the specific service data.
  • the step of reporting the resource application information of the specific service data includes:
  • the resource application information for reporting specific service data when the resource pre-judgment condition is satisfied is satisfied.
  • the method further includes: reporting resource request release information of the specific service data.
  • the step of reporting the resource request release information of the specific service data includes:
  • the resource request release information for reporting specific service data when the resource pre-judging condition is satisfied is satisfied.
  • the method further includes: reporting status information;
  • the status information includes at least one of the following information:
  • Geographical location information speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and variation of one or more of the above parameters Instructions.
  • the status information is periodically reported, or the status information is reported when the status change exceeds the status change threshold.
  • the timer is enabled. If the resource allocation is not obtained after the timer expires, the resource is selected from the sending resource pool to send specific service data.
  • the step of sending the specific service data according to the sending resource pool information includes:
  • the resource is selected from the resource pool with the highest priority of the resource pool to send the specific service data; or: the resource is selected from the resource pool whose service type is corresponding to the emergency type to send the specific service data; or: from all the resources In the pool, select the most recent resource on the time domain to send specific business data.
  • the apparatus for resource allocation in the embodiment of the present invention is applied to a UE, as shown in FIG. 3, and may include:
  • a resource allocation information receiving module configured to receive resource allocation information sent by a base station or a roadside unit for transmitting specific service data
  • a specific service data sending module configured to send specific service data according to the resource allocation information
  • the device may also include the following modules:
  • the resource module is activated and set to report resource application information of specific service data.
  • the activation resource module is configured to report resource application information of the specific service data when the resource pre-judgment condition is met.
  • the release resource module is configured to release resource request release information for reporting specific service data when the resource pre-judgment condition is met.
  • the status information reporting module is set to report status information
  • the status information includes at least one of the following information:
  • Geographical location information speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and variation of one or more of the above parameters Instructions.
  • the status information reporting module may periodically report the status information, or report the status information when the status change exceeds the status change threshold.
  • the resource allocation information receiving module is configured to receive one or more sending resource pool information sent by the base station or the roadside unit; the specific service data sending module is set to enable a timer, when the timer If the resource allocation is still not obtained after the timeout, the resource is selected from the sending resource pool to send specific service data.
  • the specific service data sending module is configured to: when the UE is in the RRC idle state, select a resource from the resource pool with the highest resource pool priority to send the specific service data; or: the slave service type corresponds to the emergency type.
  • the resource pool selects a resource to send specific service data; or: selects the most recent resource in the time domain from all resource pools to send specific service data.
  • the base station sends semi-persistent scheduling resource information by using a broadcast message or RRC dedicated signaling, where the semi-persistent scheduling resource information includes one or more of the following information: service type indication information; resource period; resource subframe offset; resource Frequency domain indication; resource frequency domain configuration index; resource time domain indication; resource time domain configuration index; transmission power parameter configuration information; resource pool priority indication information; semi-persistent scheduling identification information (C-RNTI); timer timeout threshold.
  • service type indication information includes one or more of the following information: service type indication information; resource period; resource subframe offset; resource Frequency domain indication; resource frequency domain configuration index; resource time domain indication; resource time domain configuration index; transmission power parameter configuration information; resource pool priority indication information; semi-persistent scheduling identification information (C-RNTI); timer timeout threshold.
  • the base station sends the entry threshold and the exit threshold of the moving speed, the entry threshold and the exit threshold of the vehicle distance through the broadcast message or the RRC dedicated signaling, and in addition, in order to prevent frequent activation and release of the half hold
  • the scheduling resource is continually scheduled.
  • the base station may also send the minimum time threshold for the activation release state transition. After the UE initiates the activation/release of the resource pool request, the resource pool request may not be initiated/released within the time threshold.
  • the semi-persistent scheduling resource activation request is reported, where the pre-judging condition includes:
  • the adjacent vehicle distance is less than the entry threshold, the moving speed is greater than the entry threshold, and the lane change is required to enter the hot spot area.
  • the threshold of the moving speed and the threshold of the distance may be delivered by the base station or pre-configured by the protocol.
  • the base station After receiving the semi-persistent scheduling resource activation request reported by the UE, the base station sends response activation information.
  • the activation request may be initiated only when the time when the UE initiates the release of the resource request is greater than the minimum time threshold for the activation release state transition.
  • the pre-judging condition includes but is not limited to:
  • the adjacent vehicle distance is greater than the exit threshold, the moving speed is less than the exit threshold, and the hot spot is left.
  • the threshold of the moving speed and the threshold of the distance may be delivered by the base station or pre-configured by the protocol.
  • the base station After receiving the semi-persistent scheduling resource release request reported by the UE, the base station sends a response semi-persistent scheduling resource release information.
  • the UE After receiving the release information, the UE releases the semi-persistent scheduling resource.
  • the release request may be initiated only when the time when the UE initiates the activation of the resource request is greater than the minimum time threshold of the activation release state transition.
  • the resource when the UE meets the pre-judging condition, the resource may be allocated in advance, and when there is specific service data to be sent, the resource application process does not need to be performed again, and the specific service data is sent to other UEs by using the pre-allocated resource. , effectively reducing the delay.
  • the base station sends semi-persistent scheduling resource information by using a broadcast message or RRC dedicated signaling, where the semi-persistent scheduling resource information includes one or more of the following information: service type indication information; resource period; resource subframe offset; resource Frequency domain indication; resource frequency domain configuration index; resource time domain indication; resource time domain configuration index; transmission power parameter configuration information; resource pool priority indication information; semi-persistent scheduling identification information (C-RNTI); timer timeout threshold.
  • service type indication information includes one or more of the following information: service type indication information; resource period; resource subframe offset; resource Frequency domain indication; resource frequency domain configuration index; resource time domain indication; resource time domain configuration index; transmission power parameter configuration information; resource pool priority indication information; semi-persistent scheduling identification information (C-RNTI); timer timeout threshold.
  • the base station activates the semi-persistent scheduling resource pool of the UE for transmitting cellular data or D2D data
  • the UE directly uses the semi-persistently scheduled resource to send specific service data to other UEs.
  • cellular data needs to be transmitted at the same time in the resource location, the cellular data is discarded because of lower priority, and subsequent retransmission processing is performed.
  • the base station allocates resources to the UE by means of semi-persistent scheduling of resources.
  • the resource application process is not required, and the resources allocated by the semi-persistent scheduling are used to send specific services to other UEs. Data, effectively reducing latency.
  • the base station sends the semi-persistent scheduling resource information by using a broadcast message or an RRC dedicated signaling, where the semi-persistent scheduling resource information includes at least one of the following: a resource period; a resource subframe offset; a resource frequency domain indication; and a resource frequency domain configuration index; Resource time domain indication; resource time domain configuration index; transmission power parameter configuration information; resource pool priority indication information; semi-persistent scheduling identification information (C-RNTI); timer timeout threshold.
  • the semi-persistent scheduling resource is a set including multiple resources, which is equivalent to one resource pool.
  • the base station sends periodic configuration information, where the period is used to indicate that the UE reports the status information. period;
  • the UE reports the status information by using the RRC dedicated signaling or the physical layer uplink control channel.
  • the base station determines and sends indication signaling for activating the semi-persistent scheduling resource pool according to the status information reported by the UE.
  • the UE After receiving the activation signaling, the UE activates the semi-persistent scheduling resource.
  • the semi-persistently scheduled resource may be used to send specific service data to other UEs.
  • the base station determines and sends the indication signaling for releasing the semi-persistent scheduling resource pool according to the status information reported by the UE.
  • the UE After receiving the release information, the UE releases the semi-persistent scheduling resource.
  • the base station sends a state change threshold, which is used to indicate that the UE reports the state information when its state changes exceed the threshold;
  • the status information includes one or more of the following: geographic location information, speed indication letter Information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and change amount indication information of one or more of the above parameters.
  • the UE When the state information of the UE changes exceeds the threshold, the UE reports the state information
  • the UE passes the RRC dedicated signaling or the status information reported by the physical layer uplink control channel.
  • the timer is started, and the time interval for the UE to report the status information twice is greater than the time threshold.
  • the UE when the state information of the UE changes beyond the threshold, the UE reports the state information to prevent the state of the UE from being frequently reported when the state of the UE is greatly fluctuated, thereby saving unnecessary air interface overhead.
  • the base station sends the pre-configured resource information by using a broadcast message or an RRC-specific signaling, where the pre-configured resource information includes at least one of the following: a resource period; a resource subframe offset; a resource frequency domain indication; a resource frequency domain configuration index; Domain indication; resource time domain configuration index; transmit power parameter configuration information; resource pool priority indication information; pre-configured resource identification information (C-RNTI); timer timeout threshold.
  • the pre-configured resource is a set including multiple resources, which is equivalent to one resource pool.
  • the UE passes the RRC dedicated signaling or the status information reported by the physical layer uplink control channel.
  • the status information includes one or more of the following: geographic location information, speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level Information, one of the above or The amount of change indication information of various parameters.
  • the base station determines and sends indication signaling (ie, pre-configured resource activation signaling) for activating the pre-configured scheduling resource pool according to the status information reported by the UE.
  • indication signaling ie, pre-configured resource activation signaling
  • sending the pre-configured resource activation signaling includes: scrambling the physical downlink control channel by using the pre-configured resource network identifier to indicate that the pre-configured resource is activated; or: using a semi-persistent scheduling (SPS) network identifier ( The Cell Radio Network Temporary Identifier (C-RNTI) scrambles the physical downlink control channel to activate the semi-persistent resource, and simultaneously sends indication information, where the indication information is used to indicate whether the cellular semi-persistent scheduling resource is activated or the pre-configured resource is activated.
  • SPS semi-persistent scheduling
  • C-RNTI The Cell Radio Network Temporary Identifier
  • the UE activates the pre-configured scheduling resource after receiving the activation signaling, and may send the specific service data to other UEs by using the pre-configured resource when the UE has specific service data arriving to be sent.
  • the UE does not need to transmit specific service data, it can be used to transmit data of other D2D services.
  • the base station determines and sends the indication signaling for releasing the pre-configured resource pool (ie, the pre-configured resource release signaling) according to the status information reported by the UE.
  • the sending the pre-configured resource release signaling includes: exchanging the physical downlink control channel by using the pre-configured resource network identifier, thereby indicating that the pre-configured resource is released; or: using a semi-persistent scheduling (SPS) network identifier (Cell Radio Network Temporary Identifier, C-RNTI for short) scrambles the physical downlink control channel to release semi-persistent resources, and simultaneously sends indication information indicating whether the cellular semi-persistent resource is released or the pre-configured resource is released.
  • SPS semi-persistent scheduling
  • the UE releases the pre-configured resource after receiving the release signaling.
  • the pre-configured resource in this embodiment is different from the semi-persistent scheduling resource in Embodiment 1, and the pre-configured resource is used to send D2D data, and the base station may separately send semi-persistent resources and pre-configured through RRC dedicated signaling. Resources.
  • the base station allocates and activates resources for the UE in advance according to the status of the status reported by the UE.
  • the semi-persistent scheduling resource allocated by the base station can be preferentially used to send specific service data to other UEs, which effectively reduces the delay.
  • the base station sends a state change threshold, which is used to indicate that the UE reports the state information when its state changes exceed the threshold;
  • the status information includes one or more of the following: geographic location information, speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level
  • the information, the amount of change of one or more of the above parameters indicates information.
  • the UE When the state information of the UE changes exceeds the threshold, the UE reports the state information
  • the base station sends a time threshold before the UE reports the status information.
  • the timer is started, and the time interval for the UE to report the status information twice is greater than the time threshold.
  • the base station sends periodic configuration information, where the period is used to indicate a period during which the UE reports the status information.
  • the UE reports the status information by using the RRC dedicated signaling or the physical layer uplink control channel.
  • the status information includes one or more of the following: geographic location information, speed indication information, acceleration indication information, relative speed indication information, relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level
  • the information, the amount of change of one or more of the above parameters indicates information.
  • the base station determines and sends the pre-configured resource information according to the status information reported by the UE.
  • the station sends the pre-configured resource information by using a broadcast message or an RRC-specific signaling, where the pre-configured resource information includes at least one of the following: a resource period; a resource subframe offset; a resource frequency domain indication; a resource frequency domain configuration index; Domain indication; resource time domain configuration index; transmit power parameter configuration information; resource pool priority indication information; pre-configured resource identification information (C-RNTI); timer timeout threshold.
  • the UE After receiving the pre-configured resource information, the UE activates the pre-configured resource.
  • the UE may use the pre-configured resource to send specific service data to other UEs.
  • the UE does not need to transmit specific service data, it can be used to transmit data of other D2D services.
  • the pre-configured resource pool resource is released.
  • the base station allocates resources to the UE in advance according to the status of the status reported by the UE.
  • the UE may preferentially use the semi-persistent scheduling resource allocated by the base station to send specific service data to other UEs, which effectively reduces the data. Delay.
  • the base station sends one or more sending resource pool information by using a broadcast message or RRC dedicated signaling, where the sending resource pool information includes at least one of the following: a resource period, a resource subframe offset, a resource frequency domain indication, and a resource frequency domain configuration. Index; resource time domain indication; resource time domain configuration index; transmission power parameter configuration information; service type indication information; resource pool priority indication information, timer timeout threshold.
  • the UE When the UE with the D2D function is in the RRC connected state, the UE receives one or more sending resource pool information sent by the base station, and determines a sending resource pool of the specific service data.
  • a data packet of a specific service type arrives, a timer is started, and a resource allocation request is initiated to the base station.
  • the resource is selected from the sending resource pool to send data to other UEs.
  • the selecting, by the UE, the resource sending data from the sending resource pool includes: selecting resource sending data from the resource pool with the highest resource pool priority; or: selecting resource sending data from the resource pool corresponding to the emergency type; or : Select one of the most recent time domains from all resource pools The resource sends data; or, selects a resource to send data from the abnormal resource pool.
  • the resource when the UE has specific service data to be sent, if the resource allocation is still not obtained after the timer expires, the resource is selected from the sending resource pool to send specific service data to other UEs, so as to avoid waiting for resource allocation for a long time.
  • the process of re-using the resource application effectively reduces the delay.
  • the base station sends one or more sending resource pool information by using a broadcast message or RRC dedicated signaling, where the sending resource pool information includes at least one of the following: a resource period, a resource subframe offset, a resource frequency domain indication, and a resource frequency domain configuration. Index; resource time domain indication; resource time domain configuration index; transmission power parameter configuration information; resource pool priority indication information, timer timeout threshold.
  • the UE When the UE with the D2D function is in the RRC idle state, the UE receives one or more transmission resource pool information, and selects the resource transmission data from the resource pool with the highest resource pool priority; or: the service type corresponds to the emergency type resource pool. Select the resource to send data; or: Select the most recent resource in the time domain to send data from all resource pools; or select the resource to send data from the abnormal resource pool.
  • the resource in the sending resource pool can be preferentially used to send specific service data to other UEs, which effectively reduces the delay.
  • a Roadside Unit replaces a base station to implement all or part of resource allocation functions.
  • the operations performed by the base station may all be implemented by replacing them with RSUs.
  • the base station and the RSU jointly implement resource allocation. For example, after receiving the status information reported by the UE, the base station determines the access RSU of the UE, and then allocates resources for the RSU.
  • the base station receives the status information reported by the UE, where the status information includes one or more of the following: geographic location information, speed indication information, acceleration indication information, relative speed indication information, Relative distance indication information, speed level information, acceleration level information, relative speed level information, relative distance level information, and change amount indication information of one or more of the above parameters.
  • the base station determines the RSU served by the UE according to the status information reported by the UE, and sends the resource allocation indication information of the UE to the RSU.
  • the resource allocation indication information of the UE includes one or more of the following: the identifier C-RNTI information of the UE, the resource size indication information required by the UE, and the cell identifier.
  • the RSU allocates resources for the UE according to the indication information.
  • the resource allocation information is sent to the UE.
  • the resource allocated by the RSU may be used to send specific service data to other UEs, which effectively reduces the delay.
  • the resource allocated by the RSU may be used to send specific service data to other UEs, which effectively reduces the delay.
  • the embodiment of the present invention mainly proposes an improvement scheme for the D2D technology, the technical field of the communication using other peer entities, such as the M2M (Machine to Machine) system, the embodiment of the present invention The same applies.
  • M2M Machine to Machine
  • all or part of the steps of the foregoing embodiments may also be implemented by using an integrated circuit, and the steps may be separately fabricated into integrated circuit modules, or multiple modules thereof or The steps are made into a single integrated circuit module.
  • the devices/function modules/functional units in the above embodiments may be implemented by a general-purpose computing device, which may be centralized on a single computing device or distributed over a network of multiple computing devices.
  • each device/function module/functional unit in the above embodiment When each device/function module/functional unit in the above embodiment is implemented in the form of a software function module and sold or used as a stand-alone product, it can be stored in a computer readable storage medium.
  • the above mentioned computer readable storage medium may be a read only memory, a magnetic disk or an optical disk or the like.
  • the user equipment can quickly obtain the wireless resource to send the specific service data, which greatly reduces the communication delay compared to the related technology.

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Abstract

一种资源分配的方法和装置,所述方法包括:向用户设备UE发送用于发送特定业务数据的资源分配信息;其中,所述资源分配信息包括如下信息中的至少一种:半持续调度资源信息、预配置资源信息、发送资源池信息。通过上述技术方案,用户设备可以快速地获得无线资源发送特定业务数据,相比于相关的技术,极大的降低了通信时延。

Description

资源分配的方法和装置 技术领域
本文涉及但不限于无线通信技术领域,尤指一种资源分配的方法和装置。
背景技术
随着无线多媒体业务的发展,人们对高数据速率和用户体验的需求日益增长,从而对传统蜂窝网络的系统容量和覆盖提出了较高要求。另一方面,公共安全、社交网络、近距离数据共享、本地广告等应用场景使得人们对了解附近人或事物并与之通信(Proximity Services,邻近服务)的需求逐渐增加。传统的以基站为中心的蜂窝网络在高数据速率以及邻近服务的支持方面存在明显的局限性,在这种需求背景下,代表未来通信技术发展新方向的D2D(Device-to-Device,设备到设备,即设备直通)技术应运而生。D2D技术的应用,可以减轻蜂窝网络的负担、减少用户设备的电池功耗、提高数据速率,并改善网络基础设施的鲁棒性,很好地满足上述高数据速率业务和邻近服务的要求。
D2D技术可以工作在授权频段或非授权频段,允许多个支持D2D功能的用户设备(即D2D用户设备,D2D User Equipment,D2D UE)在有网络基础设施或无网络基础设施的情况下进行直接发现/直接通信。D2D的应用场景主要有三种:
UE1和UE2在蜂窝网络的覆盖下进行数据交互,用户面数据不经过网络基础设施,如图1的模式1;
在弱/无覆盖区域的UE中继传输,如图1中的模式2,允许信号质量较差的UE4通过附近有网络覆盖的UE3与网络进行通信,能帮助运营商扩展覆盖、提高容量;
在发生地震急情况,蜂窝网络不能正常工作的情况下,允许设备间直接 通信,如图1中的模式3,UE5,UE6和UE7间控制面和用户面都不经过网络基础设施而进行一跳或多跳的数据通信。
D2D技术通常包括D2D发现技术和D2D通信技术,其中,D2D发现技术是指用于判断/确定第一用户设备是否邻近第二用户设备的技术。通常,D2D用户设备间可通过发送或接收发现信号/信息来发现对方;D2D通信技术是指D2D用户设备之间部分或全部通信数据可以不通过网络基础设施而直接进行通信的技术。
基于D2D技术的以上特点和优势,相关技术已经提出使用蜂窝无线通信以及D2D技术来实现车联网应用的可能,支持通信的主要场景包括即时通信和车辆预警两个方面。
针对车辆预警,美国国家公路交通安全管理局的调查报告显示,80%的公路交通事故是由于驾驶员在事故发生前3秒内的疏忽造成的。戴姆勒-奔驰公司的一项实验表明,如果提前0.5秒示警驾驶员,可以避免60%的追尾事故;若驾驶员能提早1.5秒得到示警并采取措施,则可以避免90%的追尾撞车事故。基于通信的碰撞预警系统,通过利用先进的无线蜂窝通信技术,实现车与车、车与路侧基础设施间的实时信息交互,告知彼此目前的状态(包括车辆的位置、速度、加速度、行驶路径)及获知的道路环境信息,协作感知道路危险状况,及时提供多种碰撞预警信息,防止道路交通安全事故的发生,成为当前各国试图解决道路交通安全问题的一种新的思路。
车辆预警可能会包括碰撞预警、变道预警等,但这种场景下对时延的要求非常高,相关的D2D技术无法实现。
针对其它一些需要低时延传送的业务数据,相关技术没有针对发送业务数据设计专门的资源分配机制,按照相关的资源分配方式,发送低时延数据的时延无法满足实时需求。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本发明实施例提供了一种资源分配的方法和装置,以解决如何使用户设备可以快速地获得无线资源发送特定业务数据的技术问题。
本发明实施例提供了一种资源分配的方法,包括:
向用户设备UE发送用于发送特定业务数据的资源分配信息;
其中,所述资源分配信息包括如下信息中的至少一种:
半持续调度资源信息、预配置资源信息、发送资源池信息。
可选的,所述向用户设备UE发送资源分配信息包括:
通过广播消息或者无线资源控制RRC专有信令发送所述资源分配信息。
可选的,所述特定业务数据包括如下数据包的一种或多种:
对时延要求低于给定阈值的数据包;
资源类型为保证比特速率GBR的数据包;
资源类型为GBR且对时延要求低于给定阈值的数据包;
资源类型为紧急类型的数据包;
车联网业务类型数据包;
对时延要求低于给定阈值的车联网业务类型数据包;
资源类型为指示的业务类型的数据包;
资源类型为指示的车联网业务类型数据包。
可选的,所述方法还包括:
当特定业务数据包的资源类型为指示的业务类型时,向用户设备UE发送特定业务类型指示信息;当特定业务数据包的资源类型为指示的车联网业务类型时,向用户设备UE发送特定车联网业务类型指示信息;所述特定业务类型指示信息以及所述特定车辆网业务类型指示信息用于指示属于特定业务数据包的业务类型。
可选的,所述半持续调度资源信息包括如下信息中的一种或多种:
业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
可选的,所述预配置资源信息包括如下信息中的一种或多种:
资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。
可选的,所述发送资源池信息包括如下信息中的一种或多种:
业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
可选的,所述方法还包括:
接收所述UE上报的特定业务数据的资源申请信息。
可选的,所述接收所述UE上报的特定业务数据的资源申请信息的步骤,包括:
接收所述UE在满足激活资源预判条件时上报的特定业务数据的资源申请信息。
可选的,所述激活资源预判条件包括如下条件中的一种或多种:
相邻车距小于第一门限,移动速度大于第二门限,加速度大于第三门限,要换车道拐弯,进入热点区域;
其中,所述第一门限、第二门限和第三门限通过广播信令和/或无线资源控制RRC专有信令发送,或者由协议预配置。
可选的,所述方法还包括:
接收所述UE上报的特定业务数据的资源请求释放信息。
可选的,所述接收所述UE上报的特定业务数据的资源请求释放信息的步骤,包括:
接收所述UE在满足释放资源预判条件时上报的特定业务数据的资源请求释放信息。
可选的,所述释放资源预判条件包括如下条件中的一种或多种:
相邻车距大于第四门限,移动速度小于第五门限,加速度小于第六门限,离开热点区域;
其中,所述第四门限、第五门限和第六门限通过广播信令和/或无线资源控制RRC专有信令发送,或者由协议预配置。
可选的,所述方法还包括:
向UE发送状态转换的最短时间门限,所述最短时间门限用于指示所述UE激活发送特定业务数据的资源和释放发送特定业务数据的资源的最短时间间隔。
可选的,所述方法还包括:
接收所述UE上报的状态信息。
可选的,接收所述UE上报的状态信息包括:
接收所述UE通过无线资源控制RRC专有信令或者物理层上行控制信道上报的状态信息;
所述UE上报的状态信息包括如下信息中的至少一种:
地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
可选的,所述方法还包括:
在接收所述UE上报的状态信息的之前,
发送周期配置信息,用于指示UE上报所述状态信息的周期;和/或
发送状态变化阈值,用于指示UE当自身状态变化超过所述状态变化阈值时上报状态信息。
可选的,所述方法还包括:
激活或释放发送特定业务数据的资源。
可选的,
激活发送特定业务数据的预配置资源包括:
发送预配置资源激活信令,包括:
通过预配置资源网络标识加扰物理下行控制信道从而指示激活预配置资源;或者
通过半持续调度资源网络标识加扰物理下行控制信道激活半持续资源, 同时发送指示信息用于指示所述激活半持续资源用于预配置资源。
可选的,
释放发送特定业务数据的预配置资源包括:
发送预配置资源释放信令,包括:
通过预配置资源网络标识加扰物理下行控制信道,从而指示释放预配置资源;或者
通过半持续调度资源网络标识加扰物理下行控制信道释放半持续资源,同时发送指示信息用于指示所述释放半持续资源用于释放预配置资源。
可选的,
资源分配信息发送模块,设置为向用户设备UE发送用于发送特定业务数据的资源分配信息;
资源分配信息存储模块,设置为存储所述资源分配信息;
其中,所述资源分配信息包括如下信息中的至少一种:
半持续调度资源信息、预配置资源信息、发送资源池信息。
可选的,
所述资源分配信息发送模块是设置为通过如下方式实现向用户设备UE发送资源分配信息:
通过广播消息或者无线资源控制RRC专有信令向UE发送所述资源分配信息。
可选的,
所述半持续调度资源信息包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
可选的,
所述预配置资源信息包括如下信息中的一种或多种:资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。
可选的,
所述发送资源池信息包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
可选的,所述方法还包括:
资源申请信息接收模块,设置为接收所述UE上报的特定业务数据的资源申请信息。
可选的,
所述资源申请信息接收模块是设置为通过如下方式实现接收所述UE上报的特定业务数据的资源申请信息:
接收所述UE在满足激活资源预判条件时上报的特定业务数据的资源申请信息。
可选的,
所述激活资源预判条件包括如下条件中的一种或多种:相邻车距小于第一门限,移动速度大于第二门限,加速度大于第三门限,要换车道拐弯,进入热点区域;
其中,所述第一门限、第二门限和第三门限通过广播信令和/或无线资源控制RRC专有信令发送,或者由协议预配置。
可选的,所述方法还包括:
资源请求释放信息接收模块,设置为接收所述UE上报的特定业务数据的资源请求释放信息。
可选的,
所述资源请求释放信息接收模块是设置为通过如下方式实现接收所述UE上报的特定业务数据的资源请求释放信息:
接收所述UE在满足释放资源预判条件时上报的特定业务数据的资源请求释放信息。
可选的,
所述释放资源预判条件包括如下条件中的一种或多种:相邻车距大于第 四门限,移动速度小于第五门限,加速度小于第六门限,离开热点区域;
其中,所述第四门限、第五门限和第六门限通过广播信令和/或RRC专有信令发送,或者由协议预配置。
可选的,所述方法还包括:
最短时间门限发送模块,设置为向UE发送状态转换的最短时间门限,所述最短时间门限用于指示所述UE激活发送特定业务数据的资源和释放发送特定业务数据的资源的最短时间间隔。
可选的,所述方法还包括:
状态信息接收模块,设置为接收所述UE上报的状态信息。
可选的,所述状态信息接收模块是设置为通过如下方式实现接收所述UE上报的状态信息:
接收所述UE通过RRC专有信令或者物理层上行控制信道上报的状态信息;
所述UE上报的状态信息包括如下信息中的至少一种:
地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
可选的,所述方法还包括:
周期配置信息发送模块,设置为指示UE上报所述状态信息的周期。
可选的,所述方法还包括:
状态变化阈值发送模块,设置为指示UE当自身状态变化超过所述状态变化阈值时上报状态信息。
本发明还提供了一种资源分配的方法,包括:
接收基站或路边单元发送的用于发送特定业务数据的资源分配信息;
根据所述资源分配信息发送特定业务数据;
其中,所述特定业务的资源分配信息包括如下信息中的至少一种:
半持续调度资源信息、预配置资源信息、发送资源池信息。
可选的,所述半持续调度资源信息包括如下信息中的一种或多种:
业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
可选的,
所述预配置资源信息包括如下信息中的一种或多种:
资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。
可选的,所述发送资源池信息包括如下信息中的一种或多种:
业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
可选的,所述方法还包括:
上报特定业务数据的资源申请信息。
可选的,所述上报特定业务数据的资源申请信息的步骤包括:
当满足激活资源预判条件时上报特定业务数据的资源申请信息。
可选的,所述方法还包括:
上报特定业务数据的资源请求释放信息。
可选的,所述上报特定业务数据的资源请求释放信息的步骤包括:
当满足释放资源预判条件时上报特定业务数据的资源请求释放信息。
可选的,所述方法还包括:
上报状态信息;
所述状态信息包括如下信息中的至少一种:
地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
可选的,所述上报状态信息,包括:
周期地上报所述状态信息,或者,当自身状态变化超过状态变化阈值时上报所述状态信息。
可选的,根据发送资源池信息发送特定业务数据的步骤包括:
开启定时器,当定时器超时后仍然没有获取资源分配,则从发送资源池中选择资源发送特定业务数据。
可选的,根据发送资源池信息发送特定业务数据的步骤包括:
在UE处于无线资源控制RRC空闲状态时,从资源池优先级最高的资源池中选择资源发送特定业务数据;或者:从业务类型对应为紧急类型的资源池中选择资源发送特定业务数据;或者:从所有资源池中选择一个时域上最近的资源发送特定业务数据。
本发明实施例还提供了一种资源分配的装置,包括:
资源分配信息接收模块,设置为接收基站或路边单元发送的用于发送特定业务数据的资源分配信息;
特定业务数据发送模块,设置为根据所述资源分配信息发送特定业务数据;
其中,所述特定业务的资源分配信息包括如下信息中的至少一种:
半持续调度资源信息、预配置资源信息、发送资源池信息。
可选的,所述半持续调度资源信息包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
可选的,所述预配置资源信息包括如下信息中的一种或多种:资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。
可选的,所述发送资源池信息包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
可选的,所述方法还包括:
激活资源模块,设置为上报特定业务数据的资源申请信息;
释放资源模块,设置为上报特定业务数据的资源请求释放信息。
可选的,所述激活资源模块是设置为当满足激活资源预判条件时上报特定业务数据的资源申请信息;
所述释放资源模块是设置为当满足释放资源预判条件时上报特定业务数据的资源请求释放信息。
可选的,所述方法还包括:
状态信息上报模块,设置为上报状态信息;
所述状态信息包括如下信息中的至少一种:
地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
可选的,所述状态信息上报模块是设置为周期地上报所述状态信息,或者,当自身状态变化超过状态变化阈值时上报所述状态信息。
可选的,
所述资源分配信息接收模块是设置为接收基站或路边单元发送的一个或多个发送资源池信息;
所述特定业务数据发送模块是设置为开启定时器,当定时器超时后仍然没有获取资源分配,则从发送资源池中选择资源发送特定业务数据。
可选的,所述特定业务数据发送模块是设置为在UE处于无线资源控制RRC空闲状态时,从资源池优先级最高的资源池中选择资源发送特定业务数据;或者:从业务类型对应为紧急类型的资源池中选择资源发送特定业务数据;或者:从所有资源池中选择一个时域上最近的资源发送特定业务数据。
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行上述的方法。
本发明实施例具有如下有益效果:
通过本发明实施例,用户设备可以快速的获得无线资源发送特定业务数据,相比于相关的技术,极大的降低了通信时延。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1是D2D系统发现/通信示意图;
图2是本发明实施例的应用于基站或路边单元的资源分配装置模块图;
图3是本发明实施例的应用于UE的资源分配装置模块图;
图4是本发明中实施例1示意图;
图5是本发明中实施例3示意图;
图6是本发明中实施例4示意图;
图7是本发明中实施例5示意图;
图8是本发明中实施例6示意图;
图9是本发明中实施例7示意图;
图10是本发明中实施例10示意图;
图11是本发明中实施例11的示意图。
本发明的实施方式
下文中将结合附图对本发明的实施例进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。
在本发明实施例中,通过向UE发送用于发送特定业务数据的资源分配信息,使UE可以迅速使用所分配的资源发送特定业务数据,保证了特定业务通信的及时性。
在本发明实施例中,基站或路边单元(RoadSide Unit,RSU)向用户设备发送用于发送特定业务数据的资源分配信息,以使所述UE按照所述资源 分配信息发送特定业务数据;
其中,所述资源分配信息包括如下信息中的至少一种:
半持续调度资源信息、预配置资源信息、发送资源池信息。
当UE获得资源分配后,才能使用该资源传输数据。基站或路边单元通过向UE发送资源分配信息为UE分配资源。本实施例中,基站或路边单元向UE发送用于发送特定业务数据的资源分配信息,这样,UE就可以使用为其分配的发送特定业务数据的资源发送特定业务数据。
特定业务是指紧急业务,安全信息类业务,高可靠性业务等要求低时延的业务。
UE包括多种用户设备,例如手机,车辆,机器等。
所述特定业务数据可以包括如下数据包的一种或多种:
对时延要求低于给定阈值的数据包;
资源类型为保证比特速率(Guranteed Bit Rate,GBR)的数据包;
资源类型为GBR且对时延要求低于给定阈值的数据包;
资源类型为紧急类型的数据包;
车联网业务类型数据包;
对时延要求低于给定阈值的车联网业务类型数据包;
资源类型为指示的业务类型的数据包;
资源类型为指示的车联网业务类型数据包。
可以通过广播消息或者无线资源控制(Radio Resource Control,RRC)专有信令向UE发送所述资源分配信息。
可选的,当特定业务数据包的资源类型为指示的业务类型时,向用户设备UE发送特定业务类型指示信息;当特定业务数据包的资源类型为指示的车联网业务类型时,向用户设备UE发送特定车联网业务类型指示信息;所述特定业务类型指示信息以及所述特定车辆网业务类型指示信息用于指示属于特定业务数据包的业务类型。
其中,半持续调度资源信息和预配置资源信息均可以是资源池的信息或 指定资源的信息。
资源池是指:多个资源的集合。当为资源池的信息时,UE可以从资源池中选择部分或全部资源发送特定业务数据。当为指定资源的信息时,UE可以使用该指定资源发送特定业务数据。相关资源分配技术中,比较常用的是动态调度技术,即当UE需要发送数据时,向基站发送调度分配资源的请求,基站根据调度请求为其分配动态调度资源,动态调度资源的特征在于该资源只在指示的子帧有效,且仅仅一次有效,另外,相关技术中还定义了一种半持续调度资源(也称为半静态调度资源)的方式,与动态调度的区别在于,基站为UE分配半持续调度资源后,UE可以周期的使用该资源发送数据包,半持续调度配置信息通常包括:资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、半持续调度标识信息。
根据本发明的一个实施例,对相关半持续调度方式进行改进,所述半持续调度配置信息还可以包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
其中,业务类型指示信息用于指示业务的类型为普通业务还是特定业务;
特定业务类型包括车联网业务类型。可选地,车联网业务类型包括车车通信(V2V,Vehicle-to-Vehicle Communications),车网通信(V2I,Vehicle-to-Infrastructure Communications),车人通信(V2P,Vehicle-to-Pedestrian Communications)。
UE可以根据业务类型的指示判断所述半持续调度的资源是否可以用于发送特定业务数据。那么,当UE需要发送特定业务时,可以使用业务类型配置为特定业务的半持续调度资源发送特定业务。
资源池优先级指示信息用于指示资源的优先级,高优先级的资源用于发送特定业务数据。当UE需要发送特定业务时,可以使用资源池优先级配置为高优先级的半持续调度资源发送特定业务。
定时器超时阈值用于指示半持续调度资源分配的超时时间,当UE有特定业务数据需要发送时,可开启定时器,优先采用动态调度的方式申请资源, 但当定时器超过阈值后仍然没有获取动态调度的资源分配,则UE可以使用所述半持续调度资源发送特定业务数据。
在本发明实施例中,还包括,采用预配置资源的方式为UE分配资源,即在UE还没有数据需要发送之前,基站就预先为其分配资源,所述预配置资源信息可以包括如下信息中的一种或多种:资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。通过上述信息,指示了预配置资源的频率资源块,时间子帧,发送功率大小以及该资源池的标识。
相关技术中,基站会发送发送资源池信息给UE,所述发送资源池信息通常包括:资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息。
在本发明实施例中,所述发送资源池信息还可以包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。其中,业务类型指示信息用于指示业务的类型为普通业务还是特定业务。UE可以根据业务类型的指示判断所述发送资源池是否可以用于发送特定业务数据。
资源池优先级指示信息用于指示资源的优先级,高优先级的资源用于发送特定业务数据。通过优先级的区分,可以避免低优先的业务抢占高优先级业务的资源。
定时器超时阈值用于指示超时时间,当UE有特定业务数据需要发送时,可开启定时器,当定时器超过阈值后仍然没有获取动态调度的资源分配,则UE可以从发送资源池中选择资源发送特定业务数据。
可选的,基站或路边单元接收所述UE上报的特定业务数据的资源申请信息,所述UE上报的特定业务数据的资源请求释放信息。
在一个实施例中,当UE在满足激活资源预判条件时上报特定业务数据的资源申请信息,以激活用于发送特定业务数据的资源;当UE在满足释放 资源预判条件时上报特定业务数据的资源请求释放信息,以释放用于发送特定业务数据的资源。
其中,所述资源申请信息可以是:半持续调度资源激活请求、预配置资源激活请求。所述资源请求释放信息可以是:半持续调度资源释放请求、预配置资源释放请求。
其中,所述激活资源预判条件包括如下条件中的一种或多种:相邻车距小于第一门限,移动速度大于第二门限,加速度大于第三门限,要换车道拐弯,进入热点区域;所述第一门限、第二门限和第三门限通过广播信令和/或RRC专有信令发送,或者由协议预配置。
所述释放资源预判条件包括如下条件中的一种或多种:相邻车距大于第四门限,移动速度小于第五门限,加速度小于第六门限,离开热点区域;所述第四门限、第五门限和第六门限通过广播信令和/或RRC专有信令发送,或者由协议预配置。
为避免UE频繁激活、释放资源,基站或路边单元可以向UE发送状态转换的最短时间门限,用于指示所述UE激活发送特定业务数据的资源和释放发送特定业务数据的资源的最短时间间隔。
可选地,基站或路边单元接收所述UE上报的状态信息,可根据接收到的状态信息判断是否激活/释放用于发送特定业务数据的资源。
可通过RRC专有信令或者物理层上行控制信道接收UE上报的状态信息;所述UE上报的状态信息包括如下信息中的至少一种:
地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
其中,地理位置信息中包含UE当前所在的地理位置的信息,可以是地理位置坐标等形式。
速度指示信息中包含UE当前速度的信息。
加速度指示信息中包含UE当前加速度的信息。
相对速度指示信息中包含UE当前相对某一指定参照物的速度的信息。
相对距离指示信息中包含UE当前相对某一指定参照物的距离的信息。
速度等级信息中包含UE当前速度的等级信息。
加速度等级信息中包含UE当前加速度的等级信息。
相对速度等级信息中包含UE当前相对某一指定参照物的速度的等级信息。
相对距离等级信息中包含UE当前相对某一指定参照物的距离的等级信息。
为避免UE频繁上报状态信息,可向发送周期配置信息,用于指示UE上报所述状态信息的周期;和/或发送状态变化阈值,用于指示UE当自身状态变化超过所述状态变化阈值时上报状态信息。
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行上述的方法。
相应地,本发明实施例的资源分配的装置,应用于基站或路边单元,如图2所示包括:
资源分配信息发送模块,设置为向用户设备UE发送用于发送特定业务数据的资源分配信息;
资源分配信息存储模块,设置为存储所述资源分配信息;
其中,所述资源分配信息包括如下信息中的至少一种:
半持续调度资源信息、预配置资源信息、发送资源池信息。
可选地,所述资源分配信息发送模块通过广播消息或者RRC专有信令向UE发送所述资源分配信息。
该装置还可包括下述模块:
资源申请信息接收模块,设置为接收所述UE上报的特定业务数据的资源申请信息。
可选的,所述资源申请信息接收模块,是设置为接收所述UE在满足激 活资源预判条件时上报的特定业务数据的资源申请信息。
资源请求释放信息接收模块,设置为接收所述UE上报的特定业务数据的资源请求释放信息。
可选的,所述资源请求释放信息接收模块,是设置为接收所述UE在满足释放资源预判条件时上报的特定业务数据的资源请求释放信息。
最短时间门限发送模块,设置为向UE发送状态转换的最短时间门限,以指示所述UE激活发送特定业务数据的资源和释放发送特定业务数据的资源的最短时间间隔。
状态信息接收模块,设置为接收所述UE上报的状态信息。
可选的,所述状态信息接收模块,是设置为接收所述UE通过RRC专有信令或者物理层上行控制信道上报的状态信息。
周期配置信息发送模块,设置为指示UE上报所述状态信息的周期。
状态变化阈值发送模块,设置为指示UE当自身状态变化超过所述状态变化阈值时上报状态信息。
本发明实施例的资源分配的方法,应用于用户设备UE,包括:
接收基站或路边单元发送的用于发送特定业务数据的资源分配信息;
根据所述资源分配信息发送特定业务数据;
其中,所述特定业务的资源分配信息包括如下信息中的至少一种:
半持续调度资源信息、预配置资源信息、发送资源池信息。
在一个实施例中,该方法还包括:上报特定业务数据的资源申请信息。
可选地,所述上报特定业务数据的资源申请信息的步骤包括:
当满足激活资源预判条件时上报特定业务数据的资源申请信息。
在一个实施例中,该方法还包括:上报特定业务数据的资源请求释放信息。
可选地,所述上报特定业务数据的资源请求释放信息的步骤包括:
当满足释放资源预判条件时上报特定业务数据的资源请求释放信息。
在一个实施例中,该方法还包括:上报状态信息;
所述状态信息包括如下信息中的至少一种:
地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
可选地,周期地上报所述状态信息,或者,当自身状态变化超过状态变化阈值时上报所述状态信息。
可选地,根据发送资源池信息发送特定业务数据的步骤包括:
开启定时器,当定时器超时后仍然没有获取资源分配,则从发送资源池中选择资源发送特定业务数据。
可选地,根据发送资源池信息发送特定业务数据的步骤包括:
在UE处于RRC空闲状态时,从资源池优先级最高的资源池中选择资源发送特定业务数据;或者:从业务类型对应为紧急类型的资源池中选择资源发送特定业务数据;或者:从所有资源池中选择一个时域上最近的资源发送特定业务数据。
本发明实施例的资源分配的装置,应用于UE,如图3所示,可包括:
资源分配信息接收模块,设置为接收基站或路边单元发送的用于发送特定业务数据的资源分配信息;
特定业务数据发送模块,设置为根据所述资源分配信息发送特定业务数据;
其中,所述特定业务的资源分配信息包括如下信息中的至少一种:
半持续调度资源信息、预配置资源信息、发送资源池信息。
该装置还可包括如下模块:
激活资源模块,设置为上报特定业务数据的资源申请信息。
可选的,所述激活资源模块,是设置为当满足激活资源预判条件时上报特定业务数据的资源申请信息。
释放资源模块,设置为上报特定业务数据的资源请求释放信息。
可选的,所述释放资源模块,是设置为当满足释放资源预判条件时上报特定业务数据的资源请求释放信息。
状态信息上报模块,设置为上报状态信息;
所述状态信息包括如下信息中的至少一种:
地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
所述状态信息上报模块可周期地上报所述状态信息,或者,当自身状态变化超过状态变化阈值时上报所述状态信息。
可选地,所述资源分配信息接收模块,是设置为接收基站或路边单元发送的一个或多个发送资源池信息;所述特定业务数据发送模块,是设置为开启定时器,当定时器超时后仍然没有获取资源分配,则从发送资源池中选择资源发送特定业务数据。
可选地,所述特定业务数据发送模块,是设置为在UE处于RRC空闲状态时,从资源池优先级最高的资源池中选择资源发送特定业务数据;或者:从业务类型对应为紧急类型的资源池中选择资源发送特定业务数据;或者:从所有资源池中选择一个时域上最近的资源发送特定业务数据。
以下通过实施例给出具体可能的实现低时延通信方法及相关的信令流程。
实施例1
基站通过广播消息或者RRC专有信令发送半持续调度资源信息,所述半持续调度资源信息包括如下信息中的一种或多种:业务类型指示信息;资源周期;资源子帧偏置;资源频域指示;资源频域配置索引;资源时域指示;资源时域配置索引;发射功率参数配置信息;资源池优先级指示信息;半持续调度标识信息(C-RNTI);定时器超时阈值。
基站通过广播消息或者RRC专有信令发送移动速度的进入门限和退出门限,车距的进入门限和退出门限,另外,为了防止频繁激活以及释放半持 续调度资源,可选地,基站还会发送激活释放状态转换的最短时间门限,即UE发起激活/释放资源池请求后,在所述时间门限内,不可再发起释放/激活资源池请求。
可选地:参见示意图4,
激活流程:
当UE满足预判条件时,则上报半持续调度资源激活请求,其中,预判条件包括:
相邻车距小于进入门限,移动速度大于进入门限,要换车道拐弯,进入热点区域等。其中,移动速度的门限,车距的门限可以由基站下发或者协议预配置。
基站接收UE上报的半持续调度资源激活请求后,发送响应激活信息。
UE接收激活信息后,激活半持续调度资源,当UE有特定业务数据到达需要发送时,可以使用半持续调度的资源向其它UE发送特定业务数据。
可选地,UE发起激活请求前,需要判断定时器是否超时,距离UE上一次发起释放资源请求的时间大于激活释放状态转换的最短时间门限时,才可发起激活请求。
释放流程:
如果UE已经激活了半持续调度资源,当UE满足预判条件时,则上报半持续调度资源释放请求,其中,预判条件包括但不限与:
相邻车距大于退出门限,移动速度小于退出门限,离开热点区域等。其中,移动速度的门限,车距的门限可以由基站下发或者协议预配置。
基站接收UE上报的半持续调度资源释放请求后,发送响应半持续调度资源释放信息。
UE接收释放信息后,释放半持续调度资源。
可选地,UE发起释放请求前,需要判断定时器是否超时,距离UE上一次发起激活资源请求的时间大于激活释放状态转换的最短时间门限时,才可发起释放请求。
本实施例中,当UE满足预判条件时,可以预先申请分配资源,那么当有特定业务数据需要发送时,则不需要再次进行资源申请流程,使用预先分配的资源向其它UE发送特定业务数据,有效地降低了时延。
实施例2
基站通过广播消息或者RRC专有信令发送半持续调度资源信息,所述半持续调度资源信息包括如下信息中的一种或多种:业务类型指示信息;资源周期;资源子帧偏置;资源频域指示;资源频域配置索引;资源时域指示;资源时域配置索引;发射功率参数配置信息;资源池优先级指示信息;半持续调度标识信息(C-RNTI);定时器超时阈值。
如果基站激活了UE的半持续调度资源池用于发送蜂窝数据或者D2D数据,当UE有特定业务数据到达且需要发送时,则UE直接使用半持续调度的资源向其它UE发送特定业务数据。
如果在该资源位置上同时需要发送蜂窝数据,则蜂窝数据因为优先级较低被丢弃,后续进行重传处理。
本实施例中,基站通过半持续调度资源的方式为UE分配资源,那么当UE有特定业务数据需要发送时,则不需要进行资源申请流程,使用半持续调度分配的资源向其它UE发送特定业务数据,有效地降低了时延。
实施例3
参见示意图5
基站通过广播消息或者RRC专有信令发送半持续调度资源信息,所述半持续调度资源信息包括以下至少一种:资源周期;资源子帧偏置;资源频域指示;资源频域配置索引;资源时域指示;资源时域配置索引;发射功率参数配置信息;资源池优先级指示信息;半持续调度标识信息(C-RNTI);定时器超时阈值。所述半持续调度资源为包括多个资源的集合,相当于一个资源池。
基站发送周期配置信息,所述周期用于指示UE上报所述状态信息的周 期;
UE周期的上报状态信息;
可选地,UE通过RRC专有信令或者物理层上行控制信道上报状态信息。
其中,状态信息包括以下一种或者多种:地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
基站根据UE上报的状态信息确定并发送激活半持续调度资源池的指示信令。
UE接收激活信令后,激活半持续调度资源,当UE有特定业务数据到达需要发送时,可以使用半持续调度的资源发送向其它UE特定业务数据。
释放流程:
如果UE已经激活了半持续调度资源,基站根据UE上报的状态信息确定并发送释放半持续调度资源池的指示信令。
UE接收释放信息后,释放半持续调度资源。
本实施例中,基站根据UE上报的状态情况预先为UE分配并激活资源,当UE有特定业务数据需要发送时,可以优先使用基站分配的半持续调度资源向其它UE发送特定业务数据,有效地降低了时延。
实施例4
参见示意图6
本实施例与实施例3的区别在于:
基站发送状态变化阈值,用于指示UE当其状态变化超过所述阈值时上报状态信息;
其中,状态信息包括以下一种或者多种:地理位置信息、速度指示信 息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
当UE的状态信息变化超过所述阈值时,UE上报状态信息;
可选地,UE通过RRC专有信令或者物理层上行控制信道上报的状态信息。
可选地,基站在UE上报状态信息之前,发送时间门限;
当UE发送状态信息后,开启定时器,UE连续两次上报状态信息的时间间隔大于所述时间门限。
本实施例中,当UE的状态信息变化超过所述阈值时,UE上报状态信息,避免UE的状态发生大幅度波动时频繁的上报状态信息从而节省不必要的空口开销。
实施例5
参见示意图7
基站通过广播消息或者RRC专有信令发送预配置资源信息,所述预配置资源信息包括以下至少一种:资源周期;资源子帧偏置;资源频域指示;资源频域配置索引;资源时域指示;资源时域配置索引;发射功率参数配置信息;资源池优先级指示信息;预配置资源标识信息(C-RNTI);定时器超时阈值。所述预配置资源为包括多个资源的集合,相当于一个资源池。
基站发送周期配置信息,所述周期用于指示UE上报状态信息的周期;
UE周期的上报状态信息;
可选地,UE通过RRC专有信令或者物理层上行控制信道上报的状态信息。
其中,状态信息包括以下一种或者多种:地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或 多种参数的变化量指示信息。
基站根据UE上报的状态信息确定并发送激活预配置调度资源池的指示信令(即预配置资源激活信令)。
可选地,发送预配置资源激活信令包括:通过预配置资源网络标识加扰物理下行控制信道从而指示激活预配置资源;或者:通过半持续调度(Semi-persistent schedule,简称SPS)网络标识(Cell Radio Network Temporary Identifier,简称C-RNTI)加扰物理下行控制信道激活半持续资源,同时发送指示信息,所述指示信息用于指示激活蜂窝半持续调度资源还是激活预配置资源。
如果发送的指示信息指示激活预配置资源,UE接收激活信令后,激活预配置调度资源,当UE有特定业务数据到达需要发送时,可以使用预配置的资源向其它UE发送特定业务数据。当UE无特定业务数据需要发送时,可以用于发送其他D2D业务的数据。
释放流程:
如果UE已经激活了预配置资源,基站根据UE上报的状态信息确定并发送释放预配置资源池的指示信令(即预配置资源释放信令)。
可选地,发送预配置资源释放信令包括:通过预配置资源网络标识加扰物理下行控制信道,从而指示释放预配置资源;或者:通过半持续调度(Semi-persistent schedule,简称SPS)网络标识(Cell Radio Network Temporary Identifier,简称C-RNTI)加扰物理下行控制信道释放半持续资源,同时发送指示信息,所述指示信息指示释放蜂窝半持续资源还是释放预配置资源。
如果发送的指示信息指示释放预配置资源,UE接收到释放信令后,释放预配置资源。
需要说明的是,本实施例中的预配置资源与实施例1中的半持续调度资源不同,预配置资源用于发送D2D数据,基站可以分别通过RRC专有信令发送半持续资源和预配置资源。
本实施例中,基站根据UE上报的状态情况预先为UE分配并激活资源, 当UE有特定业务数据需要发送时,可以优先使用基站分配的半持续调度资源向其它UE发送特定业务数据,有效地降低了时延。
实施例6
参见示意图8,本实施例与实施例5的区别在于:
基站发送状态变化阈值,用于指示UE当其状态变化超过所述阈值时上报状态信息;
其中,状态信息包括以下一种或者多种:地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
当UE的状态信息变化超过所述阈值时,UE上报状态信息;
可选的地,基站在UE上报状态信息之前,发送时间门限;
当UE发送状态信息后,开启定时器,UE连续两次上报状态信息的时间间隔大于所述时间门限。
实施例7
参见示意图9,基站发送周期配置信息,所述周期用于指示UE上报所述状态信息的周期;
UE周期的上报状态信息;
可选地,UE通过RRC专有信令或者物理层上行控制信道上报状态信息。
其中,状态信息包括以下一种或者多种:地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
基站根据UE上报的状态信息确定并发送预配置资源信息。可选地,基 站通过广播消息或者RRC专有信令发送预配置资源信息,所述预配置资源信息包括以下至少一种:资源周期;资源子帧偏置;资源频域指示;资源频域配置索引;资源时域指示;资源时域配置索引;发射功率参数配置信息;资源池优先级指示信息;预配置资源标识信息(C-RNTI);定时器超时阈值。
UE接收到预配置资源信息后,激活预配置资源,当UE有特定业务数据到达需要发送时,可以使用预配置资源向其它UE发送特定业务数据。当UE无特定业务数据需要发送时,可以用于发送其他D2D业务的数据。
当UE检测到上行失步或者进入RRC空闲状态后,则释放预配置资源池资源。
本实施例中,基站根据UE上报的状态情况预先为UE分配资源,当UE有特定业务数据需要发送时,可以优先使用基站分配的半持续调度资源向其它UE发送特定业务数据,有效地降低了时延。
实施例8
基站通过广播消息或者RRC专有信令发送一个或者多个发送资源池信息,所述发送资源池信息包括以下至少一种:资源周期;资源子帧偏置;资源频域指示;资源频域配置索引;资源时域指示;资源时域配置索引;发射功率参数配置信息;业务类型指示信息;资源池优先级指示信息,定时器超时阈值。
具备D2D功能的UE处于RRC连接态时,UE接收基站发送的一个或者多个发送资源池信息,确定特定业务数据的发送资源池。当有特定业务类型的数据包到达时,开启定时器,向基站发起资源分配请求,当定时器超时后仍然没有获取数据资源分配,则从所述发送资源池中选择资源向其它UE发送数据。
其中,UE从所述发送资源池中选择资源发送数据包括:从资源池优先级最高的资源池中选择资源发送数据;或者:从业务类型对应为紧急类型的资源池中选择资源发送数据;或者:从所有资源池中选择一个时域上最近的 资源发送数据;或者,从异常资源池中选择资源发送数据。
本实施例中,当UE有特定业务数据需要发送时,如果在定时器超时后仍然没有获得资源分配,则从发送资源池中选择资源向其它UE发送特定业务数据,避免长时间等待资源分配或者再次进行资源申请的流程,有效的降低了时延。
实施例9
基站通过广播消息或者RRC专有信令发送一个或者多个发送资源池信息,所述发送资源池信息包括以下至少一种:资源周期;资源子帧偏置;资源频域指示;资源频域配置索引;资源时域指示;资源时域配置索引;发射功率参数配置信息;资源池优先级指示信息,定时器超时阈值。
具备D2D功能的UE处于RRC空闲态时,UE接收一个或者多个发送资源池信息,从资源池优先级最高的资源池中选择资源发送数据;或者:从业务类型对应为紧急类型的资源池中选择资源发送数据;或者:从所有资源池中选择一个时域上最近的资源发送数据;或者,从异常资源池中选择资源发送数据。
本实施例中,当UE有特定业务数据需要发送时,可以优先使用发送资源池中的资源向其它UE发送特定业务数据,有效地降低了时延。
实施例10
参见示意图10,在本实施例中,路边单元(RoadSide Unit,RSU)代替基站来实现全部或者部分资源分配的功能。
在前面所述的各个实施例中,基站执行的操作可以全部换成RSU来实现。或者,基站和RSU共同实现资源分配。例如,基站接收UE上报的状态信息后,确定UE的接入RSU,然后由RSU为其分配资源。
可选地,见示意图10:
基站接收UE上报的状态信息,其中,状态信息包括以下一种或者多种:地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、 相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
基站根据UE上报的状态信息,确定为其服务的RSU,并将UE的资源分配指示信息发给RSU。其中,UE的资源分配指示信息包括以下一种或者多种:UE的标识C-RNTI信息;UE所需资源大小指示信息;小区标识。
RSU根据指示信息为UE分配资源。将资源分配信息发送给UE。
本实施例中,当UE有特定业务数据需要发送时,可以使用RSU分配的资源向其它UE发送特定业务数据,有效地降低了时延。
实施例11
参见示意图11,与实施例11的区别在于,RSU将资源分配信息发给基站,由基站将接收到的资源分配信息发给UE。
本实施例中,当UE有特定业务数据需要发送时,可以使用RSU分配的资源向其它UE发送特定业务数据,有效地降低了时延。
需要说明的是,虽然本发明实施例主要是针对D2D技术提出了改进方案,但是针对采用其它对等实体进行通信的技术领域,比如M2M(Machine to Machine,机器与机器)系统,本发明实施例也同样适用。
以上内容是结合具体的实施方式对本发明所作的进一步详细说明,不能认定本发明的具体实施只局限于这些说明。
本领域普通技术人员可以理解上述实施例的全部或部分步骤可以使用计算机程序流程来实现,所述计算机程序可以存储于一计算机可读存储介质中,所述计算机程序在相应的硬件平台上(如系统、设备、装置、器件等)执行,在执行时,包括方法实施例的步骤之一或其组合。
可选地,上述实施例的全部或部分步骤也可以使用集成电路来实现,这些步骤可以被分别制作成一个个集成电路模块,或者将它们中的多个模块或 步骤制作成单个集成电路模块来实现。
上述实施例中的各装置/功能模块/功能单元可以采用通用的计算装置来实现,它们可以集中在单个的计算装置上,也可以分布在多个计算装置所组成的网络上。
上述实施例中的各装置/功能模块/功能单元以软件功能模块的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。上述提到的计算机可读取存储介质可以是只读存储器,磁盘或光盘等。
工业实用性
上述技术方案中,用户设备可以快速的获得无线资源发送特定业务数据,相比于相关的技术,极大的降低了通信时延。

Claims (60)

  1. 一种资源分配的方法,包括:
    向用户设备UE发送用于发送特定业务数据的资源分配信息;
    其中,所述资源分配信息包括如下信息中的至少一种:
    半持续调度资源信息、预配置资源信息、发送资源池信息。
  2. 如权利要求1所述的方法,其中,所述向用户设备UE发送资源分配信息包括:
    通过广播消息或者无线资源控制RRC专有信令发送所述资源分配信息。
  3. 如权利要求1所述的方法,其中,
    所述特定业务数据包括如下数据包的一种或多种:
    对时延要求低于给定阈值的数据包;
    资源类型为保证比特速率GBR的数据包;
    资源类型为GBR且对时延要求低于给定阈值的数据包;
    资源类型为紧急类型的数据包;
    车联网业务类型数据包;
    对时延要求低于给定阈值的车联网业务类型数据包;
    资源类型为指示的业务类型的数据包;
    资源类型为指示的车联网业务类型数据包。
  4. 如权利要求3所述的方法,还包括:
    当特定业务数据包的资源类型为指示的业务类型时,向用户设备UE发送特定业务类型指示信息;当特定业务数据包的资源类型为指示的车联网业务类型时,向用户设备UE发送特定车联网业务类型指示信息;所述特定业务类型指示信息以及所述特定车辆网业务类型指示信息用于指示属于特定业务数据包的业务类型。
  5. 如权利要求1所述的方法,其中,
    所述半持续调度资源信息包括如下信息中的一种或多种:
    业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
  6. 如权利要求1所述的方法,其中,所述预配置资源信息包括如下信息中的一种或多种:
    资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。
  7. 如权利要求1所述的方法,其中,所述发送资源池信息包括如下信息中的一种或多种:
    业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
  8. 如权利要求1所述的方法,还包括:
    接收所述UE上报的特定业务数据的资源申请信息。
  9. 如权利要求8所述的方法,其中,
    所述接收所述UE上报的特定业务数据的资源申请信息的步骤,包括:
    接收所述UE在满足激活资源预判条件时上报的特定业务数据的资源申请信息。
  10. 如权利要求9所述的方法,其中,
    所述激活资源预判条件包括如下条件中的一种或多种:
    相邻车距小于第一门限,移动速度大于第二门限,加速度大于第三门限,要换车道拐弯,进入热点区域;
    其中,所述第一门限、第二门限和第三门限通过广播信令和/或无线资源控制RRC专有信令发送,或者由协议预配置。
  11. 如权利要求8所述的方法,还包括:
    接收所述UE上报的特定业务数据的资源请求释放信息。
  12. 如权利要求11所述的方法,其中,
    所述接收所述UE上报的特定业务数据的资源请求释放信息的步骤,包括:
    接收所述UE在满足释放资源预判条件时上报的特定业务数据的资源请求释放信息。
  13. 如权利要求12所述的方法,其中,
    所述释放资源预判条件包括如下条件中的一种或多种:
    相邻车距大于第四门限,移动速度小于第五门限,加速度小于第六门限,离开热点区域;
    其中,所述第四门限、第五门限和第六门限通过广播信令和/或无线资源控制RRC专有信令发送,或者由协议预配置。
  14. 如权利要求11所述的方法,还包括:
    向UE发送状态转换的最短时间门限,所述最短时间门限用于指示所述UE激活发送特定业务数据的资源和释放发送特定业务数据的资源的最短时间间隔。
  15. 如权利要求1所述的方法,还包括:
    接收所述UE上报的状态信息。
  16. 如权利要求15所述的方法,其中,接收所述UE上报的状态信息包括:
    接收所述UE通过无线资源控制RRC专有信令或者物理层上行控制信道上报的状态信息;
    所述UE上报的状态信息包括如下信息中的至少一种:
    地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
  17. 如权利要求15或16所述的方法,还包括:
    在接收所述UE上报的状态信息的之前,发送周期配置信息,用于指示UE上报所述状态信息的周期;和/或
    发送状态变化阈值,用于指示UE当自身状态变化超过所述状态变化阈值时上报状态信息。
  18. 如权利要求1或15或16所述的方法,还包括:
    激活或释放发送特定业务数据的资源。
  19. 如权利要求18所述的方法,其中,
    激活发送特定业务数据的预配置资源包括:
    发送预配置资源激活信令,包括:
    通过预配置资源网络标识加扰物理下行控制信道从而指示激活预配置资源;或者
    通过半持续调度资源网络标识加扰物理下行控制信道激活半持续资源,同时发送指示信息用于指示所述激活半持续资源用于预配置资源。
  20. 如权利要求18所述的方法,其中,
    释放发送特定业务数据的预配置资源包括:
    发送预配置资源释放信令,包括:
    通过预配置资源网络标识加扰物理下行控制信道,从而指示释放预配置资源;或者
    通过半持续调度资源网络标识加扰物理下行控制信道释放半持续资源,同时发送指示信息用于指示所述释放半持续资源用于释放预配置资源。
  21. 一种资源分配的装置,包括:
    资源分配信息发送模块,设置为向用户设备UE发送用于发送特定业务数据的资源分配信息;
    资源分配信息存储模块,设置为存储所述资源分配信息;
    其中,所述资源分配信息包括如下信息中的至少一种:
    半持续调度资源信息、预配置资源信息、发送资源池信息。
  22. 如权利要求21所述的装置,其中,
    所述资源分配信息发送模块是设置为通过如下方式实现向用户设备UE发送资源分配信息:
    通过广播消息或者无线资源控制RRC专有信令向UE发送所述资源分配 信息。
  23. 如权利要求21所述的装置,其中,
    所述半持续调度资源信息包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
  24. 如权利要求21所述的装置,其中,
    所述预配置资源信息包括如下信息中的一种或多种:资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。
  25. 如权利要求21所述的装置,其中,
    所述发送资源池信息包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
  26. 如权利要求21所述的装置,还包括:
    资源申请信息接收模块,设置为接收所述UE上报的特定业务数据的资源申请信息。
  27. 如权利要求26所述的装置,其中,
    所述资源申请信息接收模块是设置为通过如下方式实现接收所述UE上报的特定业务数据的资源申请信息:
    接收所述UE在满足激活资源预判条件时上报的特定业务数据的资源申请信息。
  28. 如权利要求27所述的装置,其中,
    所述激活资源预判条件包括如下条件中的一种或多种:相邻车距小于第一门限,移动速度大于第二门限,加速度大于第三门限,要换车道拐弯,进入热点区域;
    其中,所述第一门限、第二门限和第三门限通过广播信令和/或无线资源控制RRC专有信令发送,或者由协议预配置。
  29. 如权利要求27所述的装置,还包括:
    资源请求释放信息接收模块,设置为接收所述UE上报的特定业务数据的资源请求释放信息。
  30. 如权利要求29所述的装置,其中,
    所述资源请求释放信息接收模块是设置为通过如下方式实现接收所述UE上报的特定业务数据的资源请求释放信息:
    接收所述UE在满足释放资源预判条件时上报的特定业务数据的资源请求释放信息。
  31. 如权利要求30所述的装置,其中,
    所述释放资源预判条件包括如下条件中的一种或多种:相邻车距大于第四门限,移动速度小于第五门限,加速度小于第六门限,离开热点区域;
    其中,所述第四门限、第五门限和第六门限通过广播信令和/或RRC专有信令发送,或者由协议预配置。
  32. 如权利要求29所述的装置,还包括:
    最短时间门限发送模块,设置为向UE发送状态转换的最短时间门限,所述最短时间门限用于指示所述UE激活发送特定业务数据的资源和释放发送特定业务数据的资源的最短时间间隔。
  33. 如权利要求21所述的装置,还包括:
    状态信息接收模块,设置为接收所述UE上报的状态信息。
  34. 如权利要求33所述的装置,其中,
    所述状态信息接收模块是设置为通过如下方式实现接收所述UE上报的状态信息:
    接收所述UE通过RRC专有信令或者物理层上行控制信道上报的状态信息;
    所述UE上报的状态信息包括如下信息中的至少一种:
    地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
  35. 如权利要求33或34所述的装置,还包括:
    周期配置信息发送模块,设置为指示UE上报所述状态信息的周期。
  36. 如权利要求33或34所述的装置,还包括:
    状态变化阈值发送模块,设置为指示UE当自身状态变化超过所述状态变化阈值时上报状态信息。
  37. 一种资源分配的方法,包括:
    接收基站或路边单元发送的用于发送特定业务数据的资源分配信息;
    根据所述资源分配信息发送特定业务数据;
    其中,所述特定业务的资源分配信息包括如下信息中的至少一种:
    半持续调度资源信息、预配置资源信息、发送资源池信息。
  38. 如权利要求37所述的方法,其中,
    所述半持续调度资源信息包括如下信息中的一种或多种:
    业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
  39. 如权利要求37所述的方法,其中,
    所述预配置资源信息包括如下信息中的一种或多种:
    资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。
  40. 如权利要求37所述的方法,其中,
    所述发送资源池信息包括如下信息中的一种或多种:
    业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
  41. 如权利要求37所述的方法,还包括:
    上报特定业务数据的资源申请信息。
  42. 如权利要求41所述的方法,其中,
    所述上报特定业务数据的资源申请信息的步骤包括:
    当满足激活资源预判条件时上报特定业务数据的资源申请信息。
  43. 如权利要求41所述的方法,还包括:
    上报特定业务数据的资源请求释放信息。
  44. 如权利要求43所述的方法,其中,
    所述上报特定业务数据的资源请求释放信息的步骤包括:
    当满足释放资源预判条件时上报特定业务数据的资源请求释放信息。
  45. 如权利要求37所述的方法,还包括:
    上报状态信息;
    所述状态信息包括如下信息中的至少一种:
    地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
  46. 如权利要求45所述的方法,其中,所述上报状态信息,包括:
    周期地上报所述状态信息,或者,当自身状态变化超过状态变化阈值时上报所述状态信息。
  47. 如权利要求40所述的方法,其中,
    根据发送资源池信息发送特定业务数据的步骤包括:
    开启定时器,当定时器超时后仍然没有获取资源分配,则从发送资源池中选择资源发送特定业务数据。
  48. 如权利要求40所述的方法,其中,
    根据发送资源池信息发送特定业务数据的步骤包括:
    在UE处于无线资源控制RRC空闲状态时,从资源池优先级最高的资源池中选择资源发送特定业务数据;或者:从业务类型对应为紧急类型的资源池中选择资源发送特定业务数据;或者:从所有资源池中选择一个时域上最近的资源发送特定业务数据。
  49. 一种资源分配的装置,包括:
    资源分配信息接收模块,设置为接收基站或路边单元发送的用于发送特 定业务数据的资源分配信息;
    特定业务数据发送模块,设置为根据所述资源分配信息发送特定业务数据;
    其中,所述特定业务的资源分配信息包括如下信息中的至少一种:
    半持续调度资源信息、预配置资源信息、发送资源池信息。
  50. 如权利要求49所述的装置,其中,
    所述半持续调度资源信息包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
  51. 如权利要求49所述的装置,其中,
    所述预配置资源信息包括如下信息中的一种或多种:资源周期、资源子帧偏置、资源频域指示、资源频域配置索引、资源时域指示、资源时域配置索引、发射功率参数配置信息、资源池优先级指示信息、预配置资源标识信息、定时器超时阈值。
  52. 如权利要求49所述的装置,其中,
    所述发送资源池信息包括如下信息中的一种或多种:业务类型指示信息、资源池优先级指示信息、定时器超时阈值。
  53. 如权利要求49所述的装置,还包括:
    激活资源模块,设置为上报特定业务数据的资源申请信息;
    释放资源模块,设置为上报特定业务数据的资源请求释放信息。
  54. 如权利要求53所述的装置,其中,
    所述激活资源模块是设置为当满足激活资源预判条件时上报特定业务数据的资源申请信息;
    所述释放资源模块是设置为当满足释放资源预判条件时上报特定业务数据的资源请求释放信息。
  55. 如权利要求49所述的装置,还包括:
    状态信息上报模块,设置为上报状态信息;
    所述状态信息包括如下信息中的至少一种:
    地理位置信息、速度指示信息、加速度指示信息、相对速度指示信息、相对距离指示信息、速度等级信息、加速度等级信息、相对速度等级信息、相对距离等级信息、上述一种或多种参数的变化量指示信息。
  56. 如权利要求55所述的装置,其中,
    所述状态信息上报模块是设置为周期地上报所述状态信息,或者,当自身状态变化超过状态变化阈值时上报所述状态信息。
  57. 如权利要求52所述的装置,其中,
    所述资源分配信息接收模块是设置为接收基站或路边单元发送的一个或多个发送资源池信息;
    所述特定业务数据发送模块是设置为开启定时器,当定时器超时后仍然没有获取资源分配,则从发送资源池中选择资源发送特定业务数据。
  58. 如权利要求52所述的装置,其中,
    所述特定业务数据发送模块是设置为在UE处于无线资源控制RRC空闲状态时,从资源池优先级最高的资源池中选择资源发送特定业务数据;或者:从业务类型对应为紧急类型的资源池中选择资源发送特定业务数据;或者:从所有资源池中选择一个时域上最近的资源发送特定业务数据。
  59. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求1~20中任一项所述的方法。
  60. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求37~48中任一项所述的方法。
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