WO2022021070A1 - 传输资源的配置方法、装置、设备及介质 - Google Patents

传输资源的配置方法、装置、设备及介质 Download PDF

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Publication number
WO2022021070A1
WO2022021070A1 PCT/CN2020/105211 CN2020105211W WO2022021070A1 WO 2022021070 A1 WO2022021070 A1 WO 2022021070A1 CN 2020105211 W CN2020105211 W CN 2020105211W WO 2022021070 A1 WO2022021070 A1 WO 2022021070A1
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WIPO (PCT)
Prior art keywords
transmission resources
service
downlink transmission
resource
uplink transmission
Prior art date
Application number
PCT/CN2020/105211
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English (en)
French (fr)
Inventor
付喆
卢前溪
Original Assignee
Oppo广东移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Priority to PCT/CN2020/105211 priority Critical patent/WO2022021070A1/zh
Priority to CN202080104901.9A priority patent/CN116210316A/zh
Publication of WO2022021070A1 publication Critical patent/WO2022021070A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation

Definitions

  • the present application relates to the field of wireless communications, and in particular, to a method, apparatus, device, and medium for configuring transmission resources.
  • New Radio includes: Enhanced Mobile Broadband (eMBB), Ultra-reliable and Low Latency Communications (URLLC), Massive Machine Type Communication (massive Machine Type Communication, mMTC).
  • eMBB Enhanced Mobile Broadband
  • URLLC Ultra-reliable and Low Latency Communications
  • mMTC Massive Machine Type Communication
  • Embodiments of the present application provide a method, apparatus, device, and storage medium for configuring transmission resources.
  • the technical solution is as follows.
  • a method for configuring transmission resources is provided, which is applied to a network device, and the method includes:
  • the transmission resources are configured to the terminal according to the first information, where the first information includes the burst spread (burstspread) of the service.
  • a method for configuring transmission resources which is applied to a terminal, and the method includes:
  • Receive transmission resources configured by the network device according to first information, where the first information includes burst propagation of services.
  • an apparatus for configuring transmission resources comprising:
  • a sending module configured to configure transmission resources to the terminal according to first information, where the first information includes burst propagation of services.
  • an apparatus for configuring transmission resources comprising:
  • a receiving module configured to receive transmission resources configured by the network device according to first information, where the first information includes burst propagation of services.
  • a terminal comprising: a processor; a transceiver connected to the processor; a memory for storing executable instructions of the processor; wherein the processing
  • the processor is configured to load and execute the executable instructions to implement the method for configuring transmission resources as described in the above aspects.
  • a network device comprising: a processor; a transceiver connected to the processor; a memory for storing executable instructions of the processor; wherein the The processor is configured to load and execute the executable instructions to implement the method for configuring transmission resources as described in the above aspects.
  • a computer-readable storage medium is provided, and executable instructions are stored in the readable storage medium, and the executable instructions are loaded and executed by the processor to implement the above-mentioned aspects.
  • the configuration method of the transmission resources is provided.
  • a computer program product having executable instructions stored in the readable storage medium, the executable instructions being loaded and executed by the processor to implement the transmission according to the above aspect How to configure resources.
  • a chip is provided, the chip is configured to implement the method for configuring transmission resources as described in the above aspects.
  • transmission resources to the terminal By configuring transmission resources to the terminal according to the burst propagation, it is used to solve the impact of the burst propagation on the arrival time, and it can avoid that the arrival time of the service is later than the position of the transmission resource due to the burst propagation, which may cause the service to fail to be transmitted. This leads to problems such as service delay and other requirements that cannot be guaranteed.
  • FIG. 1 is a network architecture diagram of a communication system provided by an exemplary embodiment of the present application
  • FIG. 2 is a flowchart of a method for configuring transmission resources provided by an exemplary embodiment of the present application
  • FIG. 3 is a flowchart of a method for configuring transmission resources provided by an exemplary embodiment of the present application
  • FIG. 4 is a schematic diagram of switching of a feeder link provided by an exemplary embodiment of the present application.
  • FIG. 5 is a block diagram of an apparatus for configuring transmission resources provided by an exemplary embodiment of the present application.
  • FIG. 6 is a block diagram of an apparatus for configuring transmission resources provided by an exemplary embodiment of the present application.
  • FIG. 7 is a schematic structural diagram of a communication device provided by an exemplary embodiment of the present application.
  • FIG. 1 shows a schematic diagram of a system architecture provided by an embodiment of the present application.
  • the system architecture may include: a terminal device 10 and a network device 20 .
  • the number of terminal devices 10 is usually multiple, and one or more terminal devices 10 may be distributed in a cell managed by each network device 20 .
  • the terminal device 10 may include various handheld devices, in-vehicle devices, wearable devices, computing devices, or other processing devices connected to wireless modems with wireless communication functions, as well as various forms of user equipment (UE), mobile stations (Mobile Station, MS) and so on.
  • UE user equipment
  • MS Mobile Station
  • the network device 20 is a device deployed in an access network to provide a wireless communication function for the terminal device 10 .
  • the network device 20 may include various forms of macro base stations, micro base stations, relay stations, access points, and the like.
  • the names of devices with network device functions may vary, for example, in 5G NR systems, they are called gNodeBs or gNBs.
  • the name "network equipment” may change.
  • the above-mentioned apparatuses for providing a wireless communication function for the terminal device 10 are collectively referred to as network devices.
  • the "5G NR system" in the embodiments of the present disclosure may also be referred to as a 5G system or an NR system, but those skilled in the art can understand its meaning.
  • the technical solutions described in the embodiments of the present disclosure may be applicable to the 5G NR system, and may also be applicable to the subsequent evolution system of the 5G NR system.
  • FIG. 2 shows a flowchart of a method for configuring transmission resources provided by an embodiment of the present application.
  • FIG. 2 exemplifies the application of the method to the communication system shown in FIG. 1 .
  • the method includes:
  • Step 202 the network device configures transmission resources to the terminal according to first information, where the first information includes burst spread of the service;
  • the first information is reference information when configuring transmission resources to the terminal.
  • the first information includes at least burst propagation of services.
  • Burst propagation is the deviation range of the arrival time (arrivaltime) of services caused by jitter.
  • burst propagation can be understood as [arrival time-delta, arrival time+delta].
  • Burst propagation can be represented using a time range, or the difference between the upper limit and the lower limit of the time range.
  • the burst propagation of the service can be understood as at least one of the burst propagation of the QoS flow, the burst propagation of the PDUSession, the burst propagation of the network slice, and the burst propagation of the data packet.
  • the first information further includes at least one of the following information:
  • arrival time The arrival time of the business (arrivaltime);
  • the period of the business (periodicity);
  • the service direction (direction) of the service includes: uplink (Uplink) or downlink (Downlink).
  • the network device sends configuration information to the terminal according to the first information, where the configuration information is used to configure transmission resources to the terminal.
  • This transmission resource is used to address the impact of burst propagation on the arrival time.
  • the transmission resource is used to ensure that there are valid transmission resources for service transmission when the service arrives.
  • the time domain resource location of the transmission resource covers the offset caused by burst propagation to the arrival time; or, the time domain resource location of the transmission resource is determined based on a function of burst propagation and arrival time as inputs.
  • the above function includes: [arrival time - burst propagation/2, arrival time + burst propagation/2].
  • Step 204 the terminal receives the transmission resource configured by the network device according to the first information.
  • the terminal receives configuration information of the network device, where the configuration information is used to configure transmission resources, and the transmission resources are configured by the network device according to the first information.
  • the network device uses the downlink transmission resources to send or transmit downlink services to the terminal, and the terminal receives or transmits downlink services on the downlink transmission resources.
  • the terminal uses the uplink transmission resource to send or transmit the uplink service to the network device, and the network device receives or transmits the uplink service on the uplink transmission resource.
  • the method provided in this embodiment is used to solve the impact of the burst propagation on the arrival time by configuring transmission resources to the terminal according to the burst propagation, and can avoid the arrival time of the service caused by the burst propagation later than
  • the location of transmission resources may cause services to be unable to be transmitted, resulting in problems such as service delay and other requirements that cannot be guaranteed.
  • FIG. 3 shows a flowchart of a method for configuring transmission resources provided by another embodiment of the present application.
  • FIG. 3 illustrates that the method is applied to the communication system shown in FIG. 1 .
  • the method includes:
  • Step 302 the network device configures downlink transmission resources to the terminal according to first information, where the first information includes burst propagation of services;
  • the first information is reference information when configuring transmission resources to the terminal.
  • the first information includes at least burst propagation of services.
  • Burst propagation is the deviation range of the arrival time of traffic due to jitter.
  • burst propagation can be understood as [arrival time-delta, arrival time+delta].
  • Burst propagation can be represented using a time range, or the difference between the upper limit and the lower limit of the time range.
  • the burst propagation of services may be understood as at least one of: burst propagation of QoS flows, burst propagation of PDU sessions, burst propagation of network slices, and burst propagation of data packets.
  • the first information further includes at least one of the following information:
  • the service direction of the service includes: uplink or downlink.
  • the network device configures downlink transmission resources to the terminal according to the first information.
  • the downlink transmission resource is used to solve the impact of burst propagation on the arrival time.
  • the downlink transmission resources are used to ensure that when downlink services arrive, there are valid downlink transmission resources for service transmission.
  • the network device configures downlink transmission resources according to burst propagation and arrival time.
  • the time-domain resource location of the downlink transmission resource covers the offset caused by burst propagation to the arrival time; or, the time-domain resource location of the downlink transmission resource is determined based on a function of burst propagation and arrival time as inputs.
  • the network device configures downlink transmission resources according to burst propagation, arrival time and period.
  • the above function includes: [arrival time - burst propagation/2, arrival time + burst propagation/2].
  • the downlink transmission resources include at least one of the following:
  • the network device uses multiple SPSs to configure multiple downlink transmission resources for the terminal.
  • the positions of multiple downlink transmission resources configured by different SPSs in the time domain are consecutive.
  • the HARQ processes of multiple downlink transmission resources corresponding to multiple SPSs are the same.
  • the network device uses one SPS to configure multiple downlink transmission resources for the terminal.
  • the positions of the multiple repetitive transmission resources configured by the SPS are continuous in the time domain.
  • the HARQ processes of multiple repeated transmission resources are the same.
  • the network device uses one DG to configure multiple downlink transmission resources to the terminal.
  • the positions of the multiple repetitive transmission resources configured by the DG are consecutive in the time domain.
  • the HARQ processes of multiple repeated transmission resources are the same.
  • the network device sends multiple SPSs to the terminal, or sends SPSs with repeated configurations, or sends DLDGs with repeated configurations.
  • Step 304 the terminal receives the downlink transmission resource configured by the network device according to the first information.
  • the terminal receives configuration information of the network device, where the configuration information is used to configure downlink transmission resources, and the downlink transmission resources are configured by the network device according to the first information.
  • the terminal receives multiple SPSs configured by the network device, and determines multiple downlink transmission resources according to the multiple SPSs.
  • the positions of multiple downlink transmission resources configured by different SPSs are continuous in the time domain.
  • the hybrid automatic repeat request (Hybrid Automatic Repeat request, HARQ) process of multiple downlink transmission resources corresponding to multiple SPSs is the same.
  • the terminal receives one SPS configured by the network device, and determines multiple repetitive transmission resources according to the one SPS.
  • the positions of multiple repetitive transmission resources in the time domain are continuous.
  • the HARQ processes of multiple repeated transmission resources are the same.
  • the terminal receives one DG configured by the network device, and determines multiple repetitive transmission resources according to one DG.
  • the positions of the multiple repetitive transmission resources in the time domain are continuous.
  • the HARQ processes of multiple repeated transmission resources are the same.
  • Step 306 the network device uses downlink transmission resources to send or transmit services.
  • the network device uses downlink transmission resources to send or transmit downlink services to the terminal.
  • the network device When the first downlink transmission resource is used among the n downlink transmission resources in the first time period, the network device no longer uses other downlink transmission resources located after the first downlink transmission resource in the n downlink transmission resources.
  • the network device when a second downlink transmission resource exists in the n downlink transmission resources in the first time period and is used to transmit the service, the network device no longer uses other downlink transmission resources located after the second downlink transmission resource among the n downlink transmission resources transfer resources.
  • the network device no longer uses other downlink transmission resources located after the first downlink transmission resource or the second downlink transmission resource among the multiple downlink transmission resources.
  • the duration of the first time period is the period of the service.
  • the starting point of the first time period includes any one or at least one of the following times:
  • the arrival time of the service or, the arrival time-burst propagation/2; or, the first resource position in the multiple (or n) downlink transmission resources; or, the first resource position determined according to the arrival time and the burst propagation Resource location.
  • Step 308 the terminal uses downlink transmission resources to receive or transmit services.
  • the terminal uses downlink transmission resources to send or transmit downlink services to the terminal.
  • the terminal When the first downlink transmission resource is used among the n downlink transmission resources in the first time period, the terminal does not receive services on other downlink transmission resources located after the first downlink transmission resource in the n downlink transmission resources; or , when the terminal detects or receives services on the second downlink transmission resource of the n downlink transmission resources in the first time period, it does not receive services on other downlink transmission resources located after the second downlink transmission resource in the n downlink transmission resources business.
  • the duration of the first time period is the period of the service.
  • the starting point of the first time period includes any one or at least one of the following times:
  • the first resource position in multiple (or n) downlink transmission resources
  • the first resource location based on arrival time and burst propagation.
  • the terminal does not send or perform HARQACK on other downlink transmission resources
  • the network device does not receive or perform HARQACK on other downlink transmission resources.
  • the other downlink transmission resources are transmission resources located after the first downlink transmission resource or the second downlink transmission resource.
  • the method provided in this embodiment is used to solve the impact of the burst propagation on the arrival time by configuring transmission resources to the terminal according to the burst propagation, and can avoid the arrival time of the service caused by the burst propagation later than
  • the location of transmission resources may cause services to be unable to be transmitted, resulting in problems such as service delay and other requirements that cannot be guaranteed.
  • the terminal does not receive services on other downlink transmission resources located after the first downlink transmission resource or the second downlink transmission resource among the n downlink transmission resources, so that the monitoring and detection time of the terminal is reduced, so as to save time.
  • Electric target It not only avoids the terminal from receiving at unnecessary transmission resources (transmission resources that do not send data), but also performs HARQ feedback behavior processing on unnecessary locations.
  • FIG. 4 shows a flowchart of a method for configuring transmission resources provided by another embodiment of the present application.
  • FIG. 4 illustrates that the method is applied to the communication system shown in FIG. 1 .
  • the method includes:
  • Step 402 the network device configures uplink transmission resources to the terminal according to first information, where the first information includes burst propagation of services;
  • the first information is reference information when configuring transmission resources to the terminal.
  • the first information includes at least burst propagation of services.
  • Burst propagation is the deviation range of the arrival time of traffic due to jitter.
  • burst propagation can be understood as [arrival time-delta, arrival time+delta].
  • Burst propagation can be represented using a time range, or the difference between the upper limit and the lower limit of the time range.
  • the burst propagation of services can be understood as at least one of: burst propagation of QoS flows, burst propagation of PDU sessions, burst propagation of network slices, and burst propagation of data packets.
  • the first information further includes at least one of the following information:
  • the service direction of the service includes: uplink or downlink.
  • the network device sends configuration information to the terminal according to the first information, where the configuration information is used to configure uplink transmission resources.
  • the downlink transmission resource is used to solve the impact of burst propagation on the arrival time.
  • the uplink transmission resource is used to ensure that when the uplink service arrives, there is an effective uplink transmission resource for service transmission.
  • the network device configures uplink transmission resources according to burst propagation and arrival times.
  • the time-domain resource location of the downlink transmission resource covers the offset caused by burst propagation to the arrival time; or, the time-domain resource location of the downlink transmission resource is determined based on a function of burst propagation and arrival time as inputs.
  • the network device configures downlink transmission resources according to burst propagation, arrival time and period.
  • the above function includes: [arrival time - burst propagation/2, arrival time + burst propagation/2].
  • the uplink transmission resources include at least one of the following:
  • the network device uses multiple CGs to configure multiple uplink transmission resources for the terminal.
  • the positions of multiple uplink transmission resources configured by different CGs are continuous in the time domain.
  • the HARQ processes of multiple uplink transmission resources corresponding to multiple CGs are the same.
  • the network device uses one CG to configure multiple uplink transmission resources for the terminal.
  • the positions of the multiple repetitive transmission resources configured by the CG are consecutive in the time domain.
  • the HARQ processes of multiple repeated transmission resources are the same.
  • the network device uses one DG to configure multiple uplink transmission resources for the terminal.
  • the positions of the multiple repetitive transmission resources configured by the DG are continuous in the time domain.
  • the HARQ processes of multiple repeated transmission resources are the same.
  • the network device sends multiple CGs to the terminal, or, one CG with repeated configuration, or, ULDG with repeated configuration.
  • Step 404 the terminal receives the uplink transmission resource configured by the network device according to the first information.
  • the terminal receives multiple CGs configured by the network device, and determines multiple uplink transmission resources according to the multiple CGs.
  • the positions of multiple uplink transmission resources configured by different CGs in the time domain are consecutive.
  • the HARQ processes of multiple uplink transmission resources corresponding to multiple CGs are the same.
  • the terminal receives one CG configured by the network device, and determines multiple repetitive transmission resources according to one CG.
  • the positions of the multiple repetitive transmission resources in the time domain are consecutive.
  • the HARQ processes of multiple repeated transmission resources are the same.
  • the terminal receives one DG configured by the network device, and determines multiple repetitive transmission resources according to one DG.
  • the positions of the multiple repetitive transmission resources in the time domain are consecutive.
  • the HARQ processes of multiple repeated transmission resources are the same.
  • Step 406 the terminal sends or transmits the service by using the uplink transmission resource.
  • the terminal sends or transmits the uplink service to the network device by using the uplink transmission resources.
  • the terminal When the first uplink transmission resource is used among the n uplink transmission resources in the second time period, the terminal no longer uses other uplink transmission resources located after the first uplink transmission resource in the n uplink transmission resources; When the second uplink transmission resource is used to transmit the service among the n uplink transmission resources in the two time periods, other uplink transmission resources located after the second uplink transmission resource in the n uplink transmission resources are no longer used.
  • the duration of the second time period is the period of the service.
  • the starting point of the second time period includes any one or at least one of the following times:
  • the first resource location based on arrival time and burst propagation.
  • Step 408 the network device uses the uplink transmission resources to receive or transmit services.
  • the network device uses the uplink transmission resources to receive or transmit uplink services to the terminal.
  • the network device When the first uplink transmission resource is used among the n uplink transmission resources in the second time period, the network device does not receive services on other uplink transmission resources located after the first uplink transmission resource in the n uplink transmission resources; or, When the terminal detects or receives services on the second uplink transmission resource of the n uplink transmission resources in the second time period, it does not receive services on other uplink transmission resources located after the second uplink transmission resource in the n uplink transmission resources .
  • the UE may indicate to the network that it will no longer transmit on the first uplink transmission resource or the resource after the second uplink transmission resource.
  • the duration of the second time period is the period of the service.
  • the starting point of the second time period includes any one or at least one of the following times:
  • the first resource location based on arrival time and burst propagation.
  • the method provided in this embodiment is used to solve the impact of the burst propagation on the arrival time by configuring transmission resources to the terminal according to the burst propagation, and can avoid the arrival time of the service caused by the burst propagation later than
  • the location of transmission resources may cause services to be unable to be transmitted, resulting in problems such as service delay and other requirements that cannot be guaranteed.
  • the terminal does not receive services on other downlink transmission resources that are located after the first uplink transmission resource or the second uplink transmission resource among the n downlink transmission resources, thereby reducing the monitoring and detection market of the terminal, and avoiding the need for the terminal to receive services.
  • Transmission is performed on unnecessary transmission resources (transmission resources that do not send data) to achieve the goal of power saving.
  • FIG. 5 shows a block diagram of an apparatus for configuring transmission resources provided by an embodiment of the present application.
  • the apparatus can be implemented as a network device, or can be implemented as a part of a network device.
  • the device includes:
  • the sending module 520 is configured to configure transmission resources to the terminal according to first information, where the first information includes burst propagation of services.
  • the first information further includes at least one of the following information:
  • the sending module 520 is configured to configure the transmission resource according to the burst propagation and the arrival time; or, according to the burst propagation, the arrival time and The period configures the transmission resource.
  • the time domain resource position of the transmission resource covers the offset caused by the burst propagation to the arrival time
  • the time domain resource location of the transmission resource is determined based on the burst propagation and the arrival time as a function of the input.
  • the function includes:
  • the sending module 520 is configured to configure downlink transmission resources for the terminal according to the first information.
  • the downlink transmission resources include:
  • the HARQ processes of the multiple downlink transmission resources are the same.
  • the sending module 520 is configured to send or transmit the service by using the downlink transmission resource.
  • the sending module 520 is configured to no longer use the n downlink transmission resources when the first downlink transmission resource is used in the first time period other downlink transmission resources located after the first downlink transmission resource in the downlink transmission resources; or, among the n downlink transmission resources in the first time period, there is a second downlink transmission resource that is used for transmitting the service , other downlink transmission resources located after the second downlink transmission resource in the n downlink transmission resources are no longer used.
  • the duration of the first time period is the period of the service.
  • the starting point of the first time period includes:
  • a first resource location determined from the time of arrival and the burst propagation.
  • the receiving module 540 is configured to feed back HARQACK without receiving or without performing the HARQACK on the other downlink transmission resources.
  • the sending module 520 is configured to configure uplink transmission resources to the terminal according to the first information.
  • the uplink transmission resources include:
  • the HARQ processes of the multiple uplink transmission resources are the same.
  • the apparatus further includes:
  • the receiving module 540 is configured to receive or transmit the service on the uplink transmission resource.
  • the receiving module 540 is configured to not use the n uplink transmission resources when a third uplink transmission resource is used in the n uplink transmission resources in the second time period other uplink transmission resources located after the third uplink transmission resource in the second time period receive or transmit the service; or, the fourth uplink transmission resource is detected or received in the n uplink transmission resources in the second time period When the service is reached, the service is not received or transmitted on other uplink transmission resources located after the fourth uplink transmission resource in the n uplink transmission resources.
  • the duration of the second time period is the period of the service.
  • the starting point of the second time period includes:
  • a first resource location determined from the time of arrival and the burst propagation.
  • the apparatus provided in this embodiment can solve the impact of the burst propagation on the arrival time by configuring the transmission resources to the terminal according to the burst propagation, and can avoid the arrival time of the service caused by the burst propagation to be later than the arrival time.
  • the location of transmission resources may cause services to be unable to be transmitted, resulting in problems such as service delay and other requirements that cannot be guaranteed.
  • the terminal does not receive services on other downlink transmission resources located after the first downlink transmission resource or the second downlink transmission resource among the n downlink transmission resources, so as to reduce the monitoring and detection time of the terminal, so as to save time.
  • Electric target It not only avoids the terminal from receiving at unnecessary transmission resources (transmission resources that do not send data), but also performs HARQ feedback behavior processing on unnecessary locations.
  • FIG. 6 shows a block diagram of an apparatus for configuring transmission resources provided by an embodiment of the present application.
  • the apparatus may be implemented as a terminal, or may be implemented as a part of a terminal.
  • the device includes:
  • the receiving module 620 is configured to receive transmission resources configured by the network device according to first information, where the first information includes burst propagation of services.
  • the first information further includes at least one of the following information:
  • the transmission resource is configured by the network device according to the burst propagation and the arrival time; or, the transmission resource is configured by the network device according to the burst Propagation, the arrival time and the period are configured.
  • the time-domain resource location of the transmission resource covers the offset caused by the burst propagation to the arrival time; or, the time-domain resource location of the transmission resource is based on the The burst propagation and the arrival time are determined as a function of the input quantity.
  • the function includes:
  • the transmission resources are downlink transmission resources
  • the receiving module 620 is configured to receive or transmit the service on the downlink transmission resources.
  • the downlink transmission resources include:
  • the HARQ processes of the multiple downlink transmission resources are the same.
  • the receiving module 620 is configured to, when a first downlink transmission resource is used among the n downlink transmission resources in the first time period, not to transmit the n downlink transmission resources in the first time period. Receiving the service on other downlink transmission resources located after the first downlink transmission resource in the resource; or, detecting or receiving the service on the second downlink transmission resource of the n downlink transmission resources within the first time period When the service is reached, the service is not received on other downlink transmission resources located after the second downlink transmission resource among the n downlink transmission resources.
  • the duration of the first time period is the period of the service.
  • the starting point of the first time period includes:
  • the arrival time or, the arrival time - the burst propagation/2.
  • the apparatus further includes:
  • a sending module 640 configured to send or perform a HARQACK on the first downlink transmission resource, or send or perform a HARQACK on the second downlink transmission resource.
  • a sending module 640 configured to not send or not perform HARQACK on the other downlink transmission resources.
  • the transmission resources include uplink transmission resources
  • the method further includes:
  • the service is sent or transmitted on the uplink transmission resource.
  • the uplink transmission resources include:
  • the uplink dynamic grant configuration there are multiple uplink transmission resources configured by the uplink dynamic grant configuration that is repeatedly configured.
  • the HARQ processes of the multiple uplink transmission resources are the same.
  • the sending module 640 is configured to, when the first uplink transmission resource is used among the n uplink transmission resources in the second time period, is not used in the n uplink transmission resources other uplink transmission resources located after the first uplink transmission resource in the second time period are used to transmit the service; At the time of transmission, the service is not sent on other uplink transmission resources located after the second uplink transmission resource in the n uplink transmission resources.
  • the duration of the second time period is the period of the service.
  • the starting point of the second time period includes:
  • the arrival time or, the arrival time - the burst propagation/2.
  • the apparatus provided in this embodiment can solve the impact of the burst propagation on the arrival time by configuring the transmission resources to the terminal according to the burst propagation, and can avoid the arrival time of the service caused by the burst propagation to be later than the arrival time.
  • the location of transmission resources may cause services to be unable to be transmitted, resulting in problems such as service delay and other requirements that cannot be guaranteed.
  • the apparatus provided in this embodiment also reduces the monitoring and detection market of the terminal by not receiving services on other downlink transmission resources located after the first uplink transmission resource or the second uplink transmission resource among the n downlink transmission resources, and avoids Transmission is performed on unnecessary transmission resources (transmission resources that do not send data) to achieve the goal of power saving.
  • FIG. 7 shows a schematic structural diagram of a communication device (network device or terminal) provided by an exemplary embodiment of the present application.
  • the communication device includes: a processor 101 , a receiver 102 , a transmitter 103 , a memory 104 and a bus 105 .
  • the processor 101 includes one or more processing cores, and the processor 101 executes various functional applications and information processing by running software programs and modules.
  • the receiver 102 and the transmitter 103 may be implemented as a communication component, which may be a communication chip.
  • the memory 104 is connected to the processor 101 through the bus 105 .
  • the memory 104 may be configured to store at least one instruction, and the processor 101 may be configured to execute the at least one instruction, so as to implement various steps in the foregoing method embodiments.
  • memory 104 may be implemented by any type or combination of volatile or non-volatile storage devices including, but not limited to, magnetic or optical disks, electrically erasable programmable Read Only Memory (Erasable Programmable Read Only Memory, EEPROM), Erasable Programmable Read Only Memory (EPROM), Static Random Access Memory (SRAM), Read Only Memory (Read -Only Memory, ROM), magnetic memory, flash memory, programmable read-only memory (Programmable Read-Only Memory, PROM).
  • volatile or non-volatile storage devices including, but not limited to, magnetic or optical disks, electrically erasable programmable Read Only Memory (Erasable Programmable Read Only Memory, EEPROM), Erasable Programmable Read Only Memory (EPROM), Static Random Access Memory (SRAM), Read Only Memory (Read -Only Memory, ROM), magnetic memory, flash memory, programmable read-only memory (Programmable Read-Only Memory, PROM).
  • a computer-readable storage medium stores at least one instruction, at least one piece of program, code set or instruction set, the at least one instruction, the At least one section of program, the code set or the instruction set is loaded and executed by the processor to implement the method for configuring transmission resources provided by the above-mentioned various method embodiments and executed by a terminal device or a network device.

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Abstract

本申请公开了一种传输资源的配置方法、装置、设备及存储介质,涉及通信领域,所述方法包括:网络设备根据第一信息向终端配置传输资源,所述第一信息包括业务的突发传播。本申请通过根据突发传播向终端配置传输资源,用于解决突发传播对到达时间所带来的影响,能够避免突发传播导致业务的到达时间晚于传输资源的位置,可能会造成业务不能传输,导致业务时延等需求不能保证的问题。

Description

传输资源的配置方法、装置、设备及介质 技术领域
本申请涉及无线通信领域,特别涉及一种传输资源的配置方法、装置、设备及介质。
背景技术
新空口(NewRadio,NR)的主要应用场景包括:增强移动超宽带(Enhanced Mobile Broadband,eMBB)、低时延高可靠通信(Ultra-reliable and Low Latency Communications,URLLC)、大规模机器类通信(massive Machine Type Communication,mMTC)。
在NR中,业务的数据到达时间存在一定的偏差,如果业务的到达时间晚于传输资源的位置,可能会造成业务不能传输,导致业务时延等需求不能保证。
发明内容
本申请实施例提供了一种传输资源的配置方法、装置、设备及存储介质。所述技术方案如下。
根据本申请的一个方面,提供了一种传输资源的配置方法,应用于网络设备,所述方法包括:
根据第一信息向终端配置传输资源,所述第一信息包括业务的突发传播(burstspread)。
根据本申请的一个方面,提供了一种传输资源的配置方法,应用于终端,所述方法包括:
接收网络设备根据第一信息配置的传输资源,所述第一信息包括业务的突发传播。
根据本申请的一个方面,提供了一种传输资源的配置装置,所述装置包括:
发送模块,用于根据第一信息向终端配置传输资源,所述第一信息包括业务的突发传播。
根据本申请的一个方面,提供了一种传输资源的配置装置,所述装置包括:
接收模块,用于接收网络设备根据第一信息配置的传输资源,所述第一信息包括业务的突发传播。
根据本申请的一个方面,提供了一种终端,所述终端包括:处理器;与所述处理器相连的收发器;用于存储所述处理器的可执行指令的存储器;其中,所述处理器被配置为加载并执行所述可执行指令以实现如上述方面所述的传输资源的配置方法。
根据本申请的一个方面,提供了一种网络设备,所述网络设备包括:处理器;与所述处理器相连的收发器;用于存储所述处理器的可执行指令的存储器;其中,所述处理器被配置为加载并执行所述可执行指令以实现如上述方面所述的传输资源的配置方法。
根据本申请的一个方面,提供了一种计算机可读存储介质,所述可读存储介质中存储有可执行指令,所述可执行指令由所述处理器加载并执行以实现如上述方面所述的传输资源的配置方法。
根据本申请的一个方面,提供了一种计算机程序产品,所述可读存储介质中存储有可执行指令,所述可执行指令由所述处理器加载并执行以实现如上述 方面所述的传输资源的配置方法。
根据本申请的一个方面,提供了一种芯片,所述芯片用于执行以实现如上述方面所述的传输资源的配置方法。
本申请实施例提供的技术方案至少包括如下有益效果:
通过根据突发传播向终端配置传输资源,用于解决突发传播对到达时间所带来的影响,能够避免突发传播导致业务的到达时间晚于传输资源的位置,可能会造成业务不能传输,导致业务时延等需求不能保证的问题。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请一个示例性实施例提供的通信系统的网络架构图;
图2是本申请一个示例性实施例提供的传输资源的配置方法的流程图;
图3是本申请一个示例性实施例提供的传输资源的配置方法的流程图;
图4是本申请一个示例性实施例提供的馈线链路的切换示意图;
图5是本申请一个示例性实施例提供的传输资源的配置装置的框图;
图6是本申请一个示例性实施例提供的传输资源的配置装置的框图;
图7是本申请一个示例性实施例提供的通信设备的结构示意图。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合附图对本申请实施方式作进一步地详细描述。
图1示出了本申请一个实施例提供的系统架构的示意图。该系统架构可以包括:终端设备10和网络设备20。
终端设备10的数量通常为多个,每一个网络设备20所管理的小区内可以分布一个或多个终端设备10。终端设备10可以包括各种具有无线通信功能的手持设备、车载设备、可穿戴设备、计算设备或连接到无线调制解调器的其它处理设备,以及各种形式的用户设备(User Equipment,UE),移动台(Mobile Station,MS)等等。为方便描述,本申请实施例中,上面提到的设备统称为终端设备。
网络设备20是一种部署在接入网中用以为终端设备10提供无线通信功能的装置。网络设备20可以包括各种形式的宏基站,微基站,中继站,接入点等等。在使用不同的无线接入技术的系统中,具备网络设备功能的设备的名称可能会有所不同,例如在5G NR系统中,称为gNodeB或者gNB。随着通信技术的演进,“网络设备”这一名称可能会变化。为方便描述,本申请实施例中,上述为终端设备10提供无线通信功能的装置统称为网络设备。
本公开实施例中的“5G NR系统”也可以称为5G系统或者NR系统,但本领域技术人员可以理解其含义。本公开实施例描述的技术方案可以适用于5G NR系统,也可以适用于5G NR系统后续的演进系统。
图2示出了本申请一个实施例提供的传输资源的配置方法的流程图。图2以该方法应用于图1所示的通信系统来举例说明。该方法包括:
步骤202,网络设备根据第一信息向终端配置传输资源,第一信息包括业务的突发传播(burstspread);
第一信息是用于向终端配置传输资源时的参考信息。在本实施例中,第一信息至少包括业务的突发传播。
突发传播是由于抖动(jitter)导致业务的到达时间(arrivaltime)的偏差范围。示意性的,突发传播可理解为[到达时间-delta,到达时间+delta]。突发传播可使用时间范围来表示,也可以使用时间范围中的上限减去下限的差值来表示。
业务包括:业务质量(Quality–of-Service,QoS)流、协议数据单元会话(Protocol Data Unit Session,PDUSession)、网络切片、数据包等。因此,业务的突发传播可理解为:QoS流的突发传播、PDUSession的突发传播、网络切片的突发传播、数据包的突发传播中的至少一种。
在一个示例中,第一信息还包括如下信息中的至少一种:
业务的到达时间(arrivaltime);
业务的周期(periodicity);
业务的业务方向(direction);比如业务方向包括:上行(Uplink)或下行(Downlink)。
业务的抖动(jitter);
业务的存活期(survivial time);
业务的数据量;
业务的类型;
业务的优先级。
网络设备根据第一信息向终端发送配置信息,该配置信息用于向终端配置传输资源。该传输资源用于解决突发传播对到达时间所带来的影响。该传输资源用于保证业务到达时,存在有效的传输资源进行业务传输。示意性的,传输资源的时域资源位置覆盖突发传播对到达时间导致的偏移;或,传输资源的时域资源位置是基于突发传播和到达时间为输入的函数确定的。
在一个示例中,上述函数包括:[到达时间-突发传播/2,到达时间+突发传播/2]。
步骤204,终端接收网络设备根据第一信息配置的传输资源。
终端接收网络设备的配置信息,该配置信息用于配置传输资源,该传输资源是网络设备根据第一信息配置的。
当传输资源是下行传输资源时,网络设备使用该下行传输资源向终端发送或传输下行业务,终端在该下行传输资源上接收或传输下行业务。
当传输资源是上行传输资源时,终端使用该上行传输资源向网络设备发送或传输上行业务,网络设备在该上行传输资源上接收或传输上行业务。
综上所述,本实施例提供的方法,通过根据突发传播向终端配置传输资源,用于解决突发传播对到达时间所带来的影响,能够避免突发传播导致业务的到达时间晚于传输资源的位置,可能会造成业务不能传输,导致业务时延等需求 不能保证的问题。
下行场景:
图3示出了本申请另一个实施例提供的传输资源的配置方法的流程图。图3以该方法应用于图1所示的通信系统来举例说明。该方法包括:
步骤302,网络设备根据第一信息向终端配置下行传输资源,第一信息包括业务的突发传播;
第一信息是用于向终端配置传输资源时的参考信息。在本实施例中,第一信息至少包括业务的突发传播。
突发传播是由于抖动导致业务的到达时间的偏差范围。示意性的,突发传播可理解为[到达时间-delta,到达时间+delta]。突发传播可使用时间范围来表示,也可以使用时间范围中的上限减去下限的差值来表示。
业务的突发传播可理解为:QoS流的突发传播、PDU会话的突发传播、网络切片的突发传播、数据包的突发传播中的至少一种。
在一个示例中,第一信息还包括如下信息中的至少一种:
业务的到达时间;
业务的周期;
业务的业务方向;比如业务方向包括:上行或下行。
业务的抖动;
业务的存活期;
业务的数据量;
业务的类型;
业务的优先级。
网络设备根据第一信息向终端配置下行传输资源。该下行传输资源用于解决突发传播对到达时间所带来的影响。该下行传输资源用于保证下行业务到达时,存在有效的下行传输资源进行业务传输。
在一个示例中,网络设备根据突发传播和到达时间配置下行传输资源。示意性的,下行传输资源的时域资源位置覆盖突发传播对到达时间导致的偏移;或,下行传输资源的时域资源位置是基于突发传播和到达时间为输入的函数确定的。在另一个示例中,网络设备根据突发传播、到达时间和周期配置下行传输资源。
在一个示例中,上述函数包括:[到达时间-突发传播/2,到达时间+突发传播/2]。
可选的,下行传输资源包括如下至少一种:
1、多个半静态调度(Semi-Persistent Scheduling,SPS)对应的多个下行传输资源;
网络设备使用多个SPS向终端配置多个下行传输资源。可选的,不同SPS所配置的多个下行传输资源在时域上的位置是连续的。可选地,多个SPS对应的多个下行传输资源的HARQ进程相同。
2、具有重复(repetition)配置的SPS对应的多个下行传输资源;
网络设备使用一个SPS向终端配置多个下行传输资源。可选的,该SPS所 配置的多个重复传输资源在时域上的位置是连续的。可选地,多个重复传输资源的HARQ进程相同。
3、具有重复配置的下行动态授权(DownLinkDynamic Grant,DLDG)对应的多个下行传输资源。
网络设备使用一个DG向终端配置多个下行传输资源。可选的,该DG所配置的多个重复传输资源在时域上的位置是连续的。可选地,多个重复传输资源的HARQ进程相同。
也即,网络设备向终端发送多个SPS,或,发送具有重复配置的SPS,或,发送具有重复配置的DLDG。
步骤304,终端接收网络设备根据第一信息配置的下行传输资源。
终端接收网络设备的配置信息,该配置信息用于配置下行传输资源,该下行传输资源是网络设备根据第一信息配置的。
在一个示例中,终端接收网络设备配置的多个SPS,根据多个SPS确定多个下行传输资源。不同SPS所配置的多个下行传输资源在时域上的位置是连续的。可选地,多个SPS对应的多个下行传输资源的混合自动重传请求(Hybrid Automatic Repeat request,HARQ)进程相同。
在一个示例中,终端接收网络设备配置的一个SPS,根据一个SPS确定多个重复传输资源。多个重复传输资源在时域上的位置是连续的。可选地,多个重复传输资源的HARQ进程相同。
在一个示例中,终端接收网络设备配置的一个DG,根据一个DG确定多个重复传输资源。该多个重复传输资源在时域上的位置是连续的。可选地,多个重复传输资源的HARQ进程相同。
步骤306,网络设备使用下行传输资源发送或传输业务。
网络设备使用下行传输资源向终端发送或传输下行业务。
网络设备在第一时间段内的n个下行传输资源中存在第一下行传输资源被使用时,不再使用n个下行传输资源中位于第一下行传输资源之后的其它下行传输资源。
或者,网络设备在第一时间段内的n个下行传输资源中存在第二下行传输资源被用于传输该业务时,不再使用n个下行传输资源中位于第二下行传输资源之后的其它下行传输资源。
可选地,网络设备不再使用多个下行传输资源中位于第一下行传输资源或第二下行传输资源之后的其它下行传输资源。
可选地,第一时间段的时长为业务的周期。
可选地,第一时间段的起点包括如下时间中的任意一个或至少一个:
业务的到达时间;或,到达时间-突发传播/2;或,多个(或n个)下行传输资源中的第一个资源位置;或,根据到达时间和突发传播确定的第一个资源位置。
步骤308,终端使用下行传输资源接收或传输业务。
终端使用下行传输资源向终端发送或传输下行业务。
终端在第一时间段内的n个下行传输资源中存在第一下行传输资源被使用时,不在n个下行传输资源中位于第一下行传输资源之后的其它下行传输资源上接收业务;或者,终端在第一时间段内的n个下行传输资源的第二下行传输资源上检测到或接收到业务时,不在n个下行传输资源中位于第二下行传输资源之后的其它下行传输资源上接收业务。
可选地,第一时间段的时长为所述业务的周期。
可选地,第一时间段的起点包括如下时间中的任意一个或至少一个:
业务的到达时间;
或,到达时间-突发传播/2;
或,多个(或n个)下行传输资源中的第一个资源位置;
或,根据到达时间和突发传播确定的第一个资源位置。
可选地,终端不发送或不进行其它下行传输资源上的HARQACK,网络设备不接收或不进行其它下行传输资源上的HARQACK。其它下行传输资源是位于第一下行传输资源或第二下行传输资源之后的传输资源。
综上所述,本实施例提供的方法,通过根据突发传播向终端配置传输资源,用于解决突发传播对到达时间所带来的影响,能够避免突发传播导致业务的到达时间晚于传输资源的位置,可能会造成业务不能传输,导致业务时延等需求不能保证的问题。
本实施例提供的方法,还通过终端不在n个下行传输资源中位于第一下行传输资源或第二下行传输资源之后的其它下行传输资源上接收业务,减少终端的监听和检测时长,达到省电的目标。不仅避免了终端在不必要的传输资源(不会发送数据的传输资源)进行接收,以及对不必要的位置进行HARQ反馈的行为处理。
上行场景:
图4示出了本申请另一个实施例提供的传输资源的配置方法的流程图。图4以该方法应用于图1所示的通信系统来举例说明。该方法包括:
步骤402,网络设备根据第一信息向终端配置上行传输资源,第一信息包括业务的突发传播;
第一信息是用于向终端配置传输资源时的参考信息。在本实施例中,第一信息至少包括业务的突发传播。
突发传播是由于抖动导致业务的到达时间的偏差范围。示意性的,突发传播可理解为[到达时间-delta,到达时间+delta]。突发传播可使用时间范围来表示,也可以使用时间范围中的上限减去下限的差值来表示。
业务的突发传播可理解为:QoS流的突发传播、PDU会话的突发传播、网络切片的突发传播、数据包的突发传播中的至少一种。
在一个示例中,第一信息还包括如下信息中的至少一种:
业务的到达时间;
业务的周期;
业务的业务方向;比如业务方向包括:上行或下行。
业务的抖动;
业务的存活期;
业务的数据量;
业务的类型;
业务的优先级。
网络设备根据第一信息向终端发送配置信息,该配置信息用于配置上行传 输资源。该下行传输资源用于解决突发传播对到达时间所带来的影响。该上行传输资源用于保证上行业务到达时,存在有效的上行传输资源进行业务传输。
在一个示例中,网络设备根据突发传播和到达时间配置上行传输资源。示意性的,下行传输资源的时域资源位置覆盖突发传播对到达时间导致的偏移;或,下行传输资源的时域资源位置是基于突发传播和到达时间为输入的函数确定的。在另一个示例中,网络设备根据突发传播、到达时间和周期配置下行传输资源。
在一个示例中,上述函数包括:[到达时间-突发传播/2,到达时间+突发传播/2]。
可选的,上行传输资源包括如下至少一种:
1、多个配置授权(ConfiguredGrant,CG)对应的多个上行传输资源;
网络设备使用多个CG向终端配置多个上行传输资源。不同CG所配置的多个上行传输资源在时域上的位置是连续的。可选地,多个CG对应的多个上行传输资源的HARQ进程相同。
2、具有重复(repetition)配置的CG对应的多个上行传输资源;
网络设备使用一个CG向终端配置多个上行传输资源。该CG所配置的多个重复传输资源在时域上的位置是连续的。可选地,多个重复传输资源的HARQ进程相同。
3、具有重复配置的上行动态授权(UpLink Dynamic Grant,ULDG)对应的多个上行传输资源。
网络设备使用一个DG向终端配置多个上行传输资源。该DG所配置的多个重复传输资源在时域上的位置是连续的。可选地,多个重复传输资源的HARQ进程相同。
也即,网络设备向终端发送多个CG,或,具有重复配置的一个CG,或,具有重复配置的ULDG。
步骤404,终端接收网络设备根据第一信息配置的上行传输资源。
在一个示例中,终端接收网络设备配置的多个CG,根据多个CG确定多个上行传输资源。可选的,不同CG所配置的多个上行传输资源在时域上的位置是连续的。可选地,多个CG对应的多个上行传输资源的HARQ进程相同。
在一个示例中,终端接收网络设备配置的一个CG,根据一个CG确定多个重复传输资源。可选的,多个重复传输资源在时域上的位置是连续的。可选地,多个重复传输资源的HARQ进程相同。
在一个示例中,终端接收网络设备配置的一个DG,根据一个DG确定多个重复传输资源。可选的,该多个重复传输资源在时域上的位置是连续的。可选地,多个重复传输资源的HARQ进程相同。
步骤406,终端使用上行传输资源发送或传输业务。
终端使用上行传输资源向网络设备发送或传输上行业务。
终端在第二时间段内的n个上行传输资源中存在第一上行传输资源被使用时,不再使用n个上行传输资源中位于第一上行传输资源之后的其它上行传输资源;或者,在第二时间段内的n个上行传输资源中存在第二上行传输资源被用于传输该业务时,不再使用n个上行传输资源中位于第二上行传输资源之后的其它上行传输资源。
可选地,第二时间段的时长为业务的周期。
可选地,第二时间段的起点包括如下时间中的任意一个或至少一个:
业务的到达时间;
或,到达时间-突发传播/2;
或,多个(或n个)上行传输资源中的第一个资源位置;
或,根据到达时间和突发传播确定的第一个资源位置。
步骤408,网络设备使用上行传输资源接收或传输业务。
网络设备使用上行传输资源向终端接收或传输上行业务。
网络设备在第二时间段内的n个上行传输资源中存在第一上行传输资源被使用时,不在n个上行传输资源中位于第一上行传输资源之后的其它上行传输资源上接收业务;或者,终端在第二时间段内的n个上行传输资源的第二上行传输资源上检测到或接收到业务时,不在n个上行传输资源中位于第二上行传输资源之后的其它上行传输资源上接收业务。
可选的,UE可以向网络指示不再在第一上行传输资源或第二上行传输资源之后的资源上进行传输。
可选地,第二时间段的时长为所述业务的周期。
可选地,第二时间段的起点包括如下时间中的任意一个或至少一个:
业务的到达时间;
或,到达时间-突发传播/2;
或,多个(或n个)上行传输资源中的第一个资源位置;
或,根据到达时间和突发传播确定的第一个资源位置。
综上所述,本实施例提供的方法,通过根据突发传播向终端配置传输资源,用于解决突发传播对到达时间所带来的影响,能够避免突发传播导致业务的到达时间晚于传输资源的位置,可能会造成业务不能传输,导致业务时延等需求不能保证的问题。
本实施例提供的方法,还通过终端不在n个下行传输资源中位于第一上行传输资源或第二上行传输资源之后的其它下行传输资源上接收业务,减少终端的监听和检测市场,避免了终端在不必要的传输资源(不会发送数据的传输资源)进行发送,达到省电的目标。
图5示出了本申请一个实施例提供的传输资源的配置装置的框图。该装置可实现成为网络设备,或,实现成为网络设备中的一部分。所述装置包括:
发送模块520,用于根据第一信息向终端配置传输资源,所述第一信息包括业务的突发传播。
在本实施例的一种可能实现中,所述第一信息还包括如下信息中的至少一种:
所述业务的到达时间arrivaltime;
所述业务的周期periodicity;
所述业务的业务方向direction;
所述业务的抖动jitter;
所述业务的存活期survivial time。
在本实施例的一种可能实现中,所述发送模块520,用于根据所述突发传播和所述到达时间配置所述传输资源;或,根据所述突发传播、所述到达时间和所述周期配置所述传输资源。
在本实施例的一种可能实现中,所述传输资源的时域资源位置覆盖所述突发传播对所述到达时间导致的偏移;
或,
所述传输资源的时域资源位置是基于所述突发传播和所述到达时间为输入的函数确定的。
在本实施例的一种可能实现中,所述函数包括:
[所述到达时间-所述突发传播/2,所述到达时间+所述突发传播/2]。
在本实施例的一种可能实现中,所述发送模块520,用于根据所述第一信息向所述终端配置下行传输资源。
在本实施例的一种可能实现中,所述下行传输资源包括:
多个半静态调度SPS对应的多个下行传输资源;
或,具有重复配置的SPS对应的多个下行传输资源;
或,具有重复配置的下行动态授权对应的多个下行传输资源。
在本实施例的一种可能实现中,所述多个下行传输资源的混合自动重传请求HARQ进程相同。
在本实施例的一种可能实现中,所述发送模块520,用于使用所述下行传输资源发送或传输所述业务。
在本实施例的一种可能实现中,所述发送模块520,用于在第一时间段内的n个下行传输资源中存在第一下行传输资源被使用时,不再使用所述n个下行传输资源中位于所述第一下行传输资源之后的其它下行传输资源;或,在所述第一时间段内的n个下行传输资源中存在第二下行传输资源被用于传输所述业务时,不再使用所述n个下行传输资源中位于所述第二下行传输资源之后的其它下行传输资源。
在本实施例的一种可能实现中,所述第一时间段的时长为所述业务的周期。
在本实施例的一种可能实现中,所述第一时间段的起点包括:
所述到达时间;
或,
所述到达时间-所述突发传播/2;
或,
所述多个下行资源中的第一个资源位置;
或,
根据所述到达时间和所述突发传播确定的第一个资源位置。
在本实施例的一种可能实现中,接收模块540,用于不接收或不进行所述其它下行传输资源上的混合自动重传请求反馈HARQACK。
在本实施例的一种可能实现中,所述发送模块520,用于根据所述第一信息向所述终端配置上行传输资源。
在本实施例的一种可能实现中,所述上行传输资源包括:
多个配置授权(Configured Grant,CG)对应的多个上行传输资源;
或,具有重复配置的CG对应的多个上行传输资源;
或,具有重复配置的上行动态授权对应的多个上行传输资源。
在本实施例的一种可能实现中,所述多个上行传输资源的混合自动重传请求HARQ进程相同。
在本实施例的一种可能实现中,所述装置还包括:
所述接收模块540,用于在所述上行传输资源上接收或传输所述业务。
在本实施例的一种可能实现中,所述接收模块540,用于在第二时间段内的 n个上行传输资源中存在第三上行传输资源被使用时,不在所述n个上行传输资源中位于所述第三上行传输资源之后的其它上行传输资源接收或传输所述业务;或,在所述第二时间段内的n个上行传输资源中存在第四上行传输资源上检测到或接收到所述业务时,不在所述n个上行传输资源中位于所述第四上行传输资源之后的其它上行传输资源接收或传输所述业务。
在本实施例的一种可能实现中,所述第二时间段的时长为所述业务的周期。
在本实施例的一种可能实现中,所述第二时间段的起点包括:
所述到达时间;
或,所述到达时间-所述突发传播/2,
或,
所述多个上行资源中的第一个资源位置,
或,
根据所述到达时间和所述突发传播确定的第一个资源位置。
综上所述,本实施例提供的装置,通过根据突发传播向终端配置传输资源,用于解决突发传播对到达时间所带来的影响,能够避免突发传播导致业务的到达时间晚于传输资源的位置,可能会造成业务不能传输,导致业务时延等需求不能保证的问题。
本实施例提供的装置,还通过终端不在n个下行传输资源中位于第一下行传输资源或第二下行传输资源之后的其它下行传输资源上接收业务,减少终端的监听和检测时长,达到省电的目标。不仅避免了终端在不必要的传输资源(不会发送数据的传输资源)进行接收,以及对不必要的位置进行HARQ反馈的行为处理。
图6示出了本申请一个实施例提供的传输资源的配置装置的框图。该装置可实现成为终端,或,实现成为终端中的一部分。所述装置包括:
接收模块620,用于接收网络设备根据第一信息配置的传输资源,所述第一信息包括业务的突发传播。
在本实施例的一种可能实现中,所述第一信息还包括如下信息中的至少一种:
所述业务的到达时间;
所述业务的周期;
所述业务的业务方向;
所述业务的抖动;
所述业务的存活期。
在本实施例的一种可能实现中,所述传输资源是所述网络设备根据所述突发传播和所述到达时间配置的;或,所述传输资源是所述网络设备根据所述突发传播、所述到达时间和所述周期配置的。
在本实施例的一种可能实现中,所述传输资源的时域资源位置覆盖所述突发传播对所述到达时间导致的偏移;或,所述传输资源的时域资源位置是基于所述突发传播和所述到达时间为输入量的函数确定的。
在本实施例的一种可能实现中,所述函数包括:
[所述到达时间-所述突发传播/2,所述到达时间+所述突发传播/2]。
在本实施例的一种可能实现中,所述传输资源为下行传输资源,所述接收 模块620,用于在所述下行传输资源上接收或传输所述业务。
在本实施例的一种可能实现中,所述下行传输资源包括:
多个半静态调度SPS配置的多个下行传输资源;
或,具有重复配置的SPS配置的多个下行传输资源;
或,具有重复配置的下行动态授权配置的多个下行传输资源。
在本实施例的一种可能实现中,所述多个下行传输资源的混合自动重传请求HARQ进程相同。
在本实施例的一种可能实现中,所述接收模块620,用于在第一时间段内的n个下行传输资源中存在第一下行传输资源被使用时,不在所述n个下行传输资源中位于所述第一下行传输资源之后的其它下行传输资源上接收所述业务;或,在所述第一时间段内的n个下行传输资源的第二下行传输资源上检测到或接收到所述业务时,不在所述n个下行传输资源中位于所述第二下行传输资源之后的其它下行传输资源上接收所述业务。
在本实施例的一种可能实现中,所述第一时间段的时长为所述业务的周期。
在本实施例的一种可能实现中,所述第一时间段的起点包括:
所述到达时间;或,所述到达时间-所述突发传播/2。
在本实施例的一种可能实现中,所述装置还包括:
发送模块640,用于发送或进行所述第一下行传输资源上的HARQACK,或,发送或进行所述第二下行传输资源上的HARQACK。
发送模块640,用于不发送或不进行所述其它下行传输资源上的HARQACK。
在本实施例的一种可能实现中,所述传输资源包括上行传输资源,所述方法还包括:
在所述上行传输资源上发送或传输所述业务。
在本实施例的一种可能实现中,所述上行传输资源包括:
多个CG配置的多个上行传输资源;
或,具有重复配置的CG配置的多个上行传输资源;
或,具有重复配置的上行动态授权配置的多个上行传输资源。
在本实施例的一种可能实现中,所述多个上行传输资源的HARQ进程相同。
在本实施例的一种可能实现中,所述发送模块640,用于在第二时间段内的n个上行传输资源中存在第一上行传输资源被使用时,不在所述n个上行传输资源中位于所述第一上行传输资源之后的其它上行传输资源发送所述业务;或,在所述第二时间段内的n个上行传输资源中存在第二上行传输资源被用于传输所述业务时,不在所述n个上行传输资源中位于所述第二上行传输资源之后的其它上行传输资源发送所述业务。
在本实施例的一种可能实现中,所述第二时间段的时长为所述业务的周期。
在本实施例的一种可能实现中,所述第二时间段的起点包括:
所述到达时间;或,所述到达时间-所述突发传播/2。
综上所述,本实施例提供的装置,通过根据突发传播向终端配置传输资源,用于解决突发传播对到达时间所带来的影响,能够避免突发传播导致业务的到达时间晚于传输资源的位置,可能会造成业务不能传输,导致业务时延等需求不能保证的问题。
本实施例提供的装置,还通过终端不在n个下行传输资源中位于第一上行传输资源或第二上行传输资源之后的其它下行传输资源上接收业务,减少终端的监听和检测市场,避免了终端在不必要的传输资源(不会发送数据的传输资 源)进行发送,达到省电的目标。
图7示出了本申请一个示例性实施例提供的通信设备(网络设备或终端)的结构示意图,该通信设备包括:处理器101、接收器102、发射器103、存储器104和总线105。
处理器101包括一个或者一个以上处理核心,处理器101通过运行软件程序以及模块,从而执行各种功能应用以及信息处理。
接收器102和发射器103可以实现为一个通信组件,该通信组件可以是一块通信芯片。
存储器104通过总线105与处理器101相连。
存储器104可用于存储至少一个指令,处理器101用于执行该至少一个指令,以实现上述方法实施例中的各个步骤。
此外,存储器104可以由任何类型的易失性或非易失性存储设备或者它们的组合实现,易失性或非易失性存储设备包括但不限于:磁盘或光盘,电可擦除可编程只读存储器(Erasable Programmable Read Only Memory,EEPROM),可擦除可编程只读存储器(Erasable Programmable Read Only Memory,EPROM),静态随时存取存储器(Static Random Access Memory,SRAM),只读存储器(Read-Only Memory,ROM),磁存储器,快闪存储器,可编程只读存储器(Programmable Read-Only Memory,PROM)。
在示例性实施例中,还提供了一种计算机可读存储介质,所述计算机可读存储介质中存储有至少一条指令、至少一段程序、代码集或指令集,所述至少一条指令、所述至少一段程序、所述代码集或指令集由所述处理器加载并执行以实现上述各个方法实施例提供的由终端设备或网络设备执行的传输资源的配置方法。
本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器,磁盘或光盘等。
以上所述仅为本申请的可选实施例,并不用以限制本申请,凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (43)

  1. 一种传输资源的配置方法,其特征在于,所述方法包括:
    根据第一信息向终端配置传输资源,所述第一信息包括业务的突发传播burstspread。
  2. 根据权利要求1所述的方法,其特征在于,所述第一信息还包括如下信息中的至少一种:
    所述业务的到达时间arrivaltime;
    所述业务的周期periodicity;
    所述业务的业务方向direction;
    所述业务的抖动jitter;
    所述业务的存活期survivial time。
  3. 根据权利要求1所述的方法,其特征在于,所述根据所述第一信息向所述终端配置传输资源,包括:
    根据所述突发传播和所述到达时间配置所述传输资源;
    或,
    根据所述突发传播、所述到达时间和所述周期配置所述传输资源。
  4. 根据权利要求3所述的方法,其特征在于,
    所述传输资源的时域资源位置覆盖所述突发传播对所述到达时间导致的偏移;
    或,
    所述传输资源的时域资源位置是基于所述突发传播和所述到达时间为输入的函数确定的。
  5. 根据权利要求4所述的方法,其特征在于,所述函数包括:
    [所述到达时间-所述突发传播/2,所述到达时间+所述突发传播/2]。
  6. 根据权利要求1至5任一所述的方法,其特征在于,所述根据第一信息向终端配置传输资源,包括:
    根据所述第一信息向所述终端配置下行传输资源。
  7. 根据权利要求6所述的方法,其特征在于,所述下行传输资源包括:
    多个半静态调度SPS对应的多个下行传输资源;
    或,具有重复配置的SPS对应的多个下行传输资源;
    或,具有重复配置的下行动态授权对应的多个下行传输资源。
  8. 根据权利要求7所述的方法,其特征在于,所述多个下行传输资源的混合自动重传请求HARQ进程相同。
  9. 根据权利要求7所述的方法,其特征在于,所述方法还包括:
    使用所述下行传输资源发送或传输所述业务。
  10. 根据权利要求7所述的方法,其特征在于,所述方法还包括:
    在第一时间段内的n个下行传输资源中存在第一下行传输资源被使用时,不再使用所述n个下行传输资源中位于所述第一下行传输资源之后的其它下行传输资源;
    或,
    在所述第一时间段内的n个下行传输资源中存在第二下行传输资源被用于传输所述业务时,不再使用所述n个下行传输资源中位于所述第二下行传输资源之后的其它下行传输资源。
  11. 根据权利要求10所述的方法,其特征在于,所述第一时间段的时长为所述业务的周期。
  12. 根据权利要求10所述的方法,其特征在于,所述第一时间段的起点包括:
    所述到达时间;
    或,
    所述到达时间-所述突发传播/2;
    或,
    所述多个下行资源中的第一个资源位置;
    或,
    根据所述到达时间和所述突发传播确定的第一个资源位置。
  13. 根据权利要求10所述的方法,其特征在于,所述方法还包括:
    不接收或不进行所述其它下行传输资源上的混合自动重传请求反馈HARQACK。
  14. 根据权利要求1至5任一所述的方法,其特征在于,所述根据第一信息向终端配置传输资源,包括:
    根据所述第一信息向所述终端配置上行传输资源。
  15. 根据权利要求14所述的方法,其特征在于,所述上行传输资源包括:
    多个配置授权CG对应的多个上行传输资源;
    或,具有重复配置的CG对应的多个上行传输资源;
    或,具有重复配置的上行动态授权对应的多个上行传输资源。
  16. 根据权利要求15所述的方法,其特征在于,所述多个上行传输资源的混合自动重传请求HARQ进程相同。
  17. 根据权利要求14所述的方法,其特征在于,所述方法还包括:
    在所述上行传输资源上接收或传输所述业务。
  18. 根据权利要求17所述的方法,其特征在于,所述在所述上行传输资源 上接收或传输所述业务,包括:
    在第二时间段内的n个上行传输资源中存在第一上行传输资源被使用时,不在所述n个上行传输资源中位于所述第一上行传输资源之后的其它上行传输资源接收或传输所述业务;
    或,
    在所述第二时间段内的n个上行传输资源中存在第二上行传输资源上检测到或接收到所述业务时,不在所述n个上行传输资源中位于所述第二上行传输资源之后的其它上行传输资源接收或传输所述业务。
  19. 根据权利要求18所述的方法,其特征在于,所述第二时间段的时长为所述业务的周期。
  20. 根据权利要求18所述的方法,其特征在于,所述第二时间段的起点包括:
    所述到达时间;
    或,所述到达时间-所述突发传播/2,
    或,
    所述多个上行资源中的第一个资源位置,
    或,
    根据所述到达时间和所述突发传播确定的第一个资源位置。
  21. 一种传输资源的配置方法,其特征在于,所述方法包括:
    接收网络设备根据第一信息配置的传输资源,所述第一信息包括业务的突发传播burstspread。
  22. 根据权利要求21所述的方法,其特征在于,所述第一信息还包括如下信息中的至少一种:
    所述业务的到达时间arrivaltime;
    所述业务的周期periodicity;
    所述业务的业务方向direction;
    所述业务的抖动jitter;
    所述业务的存活期survivial time。
  23. 根据权利要求21所述的方法,其特征在于,
    所述传输资源是所述网络设备根据所述突发传播和所述到达时间配置的;
    或,
    所述传输资源是所述网络设备根据所述突发传播、所述到达时间和所述周期配置的。
  24. 根据权利要求23所述的方法,其特征在于,
    所述传输资源的时域资源位置覆盖所述突发传播对所述到达时间导致的偏移;
    或,
    所述传输资源的时域资源位置是基于所述突发传播和所述到达时间为输入 量的函数确定的。
  25. 根据权利要求24所述的方法,其特征在于,所述函数包括:
    [所述到达时间-所述突发传播/2,所述到达时间+所述突发传播/2]。
  26. 根据权利要求21至25任一所述的方法,其特征在于,所述传输资源为下行传输资源,所述方法还包括:
    在所述下行传输资源上接收或传输所述业务。
  27. 根据权利要求26所述的方法,其特征在于,所述下行传输资源包括:
    多个半静态调度SPS配置的多个下行传输资源;
    或,具有重复配置的SPS配置的多个下行传输资源;
    或,具有重复配置的下行动态授权配置的多个下行传输资源。
  28. 根据权利要求27所述的方法,其特征在于,所述多个下行传输资源的混合自动重传请求HARQ进程相同。
  29. 根据权利要求28所述的方法,其特征在于,所述方法还包括:
    在第一时间段内的n个下行传输资源中存在第一下行传输资源被使用时,不在所述n个下行传输资源中位于所述第一下行传输资源之后的其它下行传输资源上接收所述业务;
    或,
    在所述第一时间段内的n个下行传输资源的第二下行传输资源上检测到或接收到所述业务时,不在所述n个下行传输资源中位于所述第二下行传输资源之后的其它下行传输资源上接收所述业务。
  30. 根据权利要求29所述的方法,其特征在于,所述第一时间段的时长为所述业务的周期。
  31. 根据权利要求29所述的方法,其特征在于,所述第一时间段的起点包括:
    所述到达时间;
    或,
    所述到达时间-所述突发传播/2。
  32. 根据权利要求29所述的方法,其特征在于,所述方法还包括:
    不发送或不进行所述其它下行传输资源上的混合自动重传请求反馈HARQACK。
  33. 根据权利要求21至25任一所述的方法,其特征在于,所述传输资源包括上行传输资源,所述方法还包括:
    在所述上行传输资源上发送或传输所述业务。
  34. 根据权利要求32所述的方法,其特征在于,所述上行传输资源包括:
    多个配置授权CG配置的多个上行传输资源;
    或,具有重复配置的CG配置的多个上行传输资源;
    或,具有重复配置的上行动态授权配置的多个上行传输资源。
  35. 根据权利要求34所述的方法,其特征在于,所述多个上行传输资源的HARQ进程相同。
  36. 根据权利要求35所述的方法,其特征在于,所述方法还包括:
    在第二时间段内的n个上行传输资源中存在第一上行传输资源被使用时,不在所述n个上行传输资源中位于所述第一上行传输资源之后的其它上行传输资源发送所述业务;
    或,
    在所述第二时间段内的n个上行传输资源中存在第二上行传输资源被用于传输所述业务时,不在所述n个上行传输资源中位于所述第二上行传输资源之后的其它上行传输资源发送所述业务。
  37. 根据权利要求36所述的方法,其特征在于,所述第二时间段的时长为所述业务的周期。
  38. 根据权利要求36所述的方法,其特征在于,所述第二时间段的起点包括:
    所述到达时间;
    或,
    所述到达时间-所述突发传播/2。
  39. 一种传输资源的配置装置,其特征在于,所述装置包括:
    发送模块,用于根据第一信息向终端配置传输资源,所述第一信息包括业务的突发传播burstspread。
  40. 一种传输资源的配置装置,其特征在于,所述装置包括:
    接收模块,用于接收网络设备根据第一信息配置的传输资源,所述第一信息包括业务的突发传播burstspread。
  41. 一种终端,其特征在于,所述终端包括:
    处理器;
    与所述处理器相连的收发器;
    用于存储所述处理器的可执行指令的存储器;
    其中,所述处理器被配置为加载并执行所述可执行指令以实现如权利要求21至38中任一所述的传输资源的配置方法。
  42. 一种网络设备,其特征在于,所述网络设备包括:
    处理器;
    与所述处理器相连的收发器;
    用于存储所述处理器的可执行指令的存储器;
    其中,所述处理器被配置为加载并执行所述可执行指令以实现如权利要求1至20任一所述的传输资源的配置方法。
  43. 一种计算机可读存储介质,其特征在于,所述可读存储介质中存储有可执行指令,所述可执行指令由所述处理器加载并执行以实现如权利要求1至38中任一所述的传输资源的配置方法。
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