WO2020211861A1 - Scheduling method for terminal device, terminal device, and base station - Google Patents

Scheduling method for terminal device, terminal device, and base station Download PDF

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Publication number
WO2020211861A1
WO2020211861A1 PCT/CN2020/085618 CN2020085618W WO2020211861A1 WO 2020211861 A1 WO2020211861 A1 WO 2020211861A1 CN 2020085618 W CN2020085618 W CN 2020085618W WO 2020211861 A1 WO2020211861 A1 WO 2020211861A1
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WO
WIPO (PCT)
Prior art keywords
terminal device
time domain
domain position
power saving
saving signal
Prior art date
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PCT/CN2020/085618
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French (fr)
Chinese (zh)
Inventor
薛祎凡
王键
姚楚婷
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Publication of WO2020211861A1 publication Critical patent/WO2020211861A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0225Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/08Testing, supervising or monitoring using real traffic
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/28Discontinuous transmission [DTX]; Discontinuous reception [DRX]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • This application relates to the field of communication technology, and in particular to a scheduling method of terminal equipment, terminal equipment and base stations.
  • the connected discontinuous reception (C-DRX) mechanism in the connected state refers to configuring the C-DRX cycle (C-DRX cycle) for the terminal device.
  • the C-DRX cycle is composed of "On Duration” and "Opportunity for DRX” .
  • the "On Duration” period is the activation period.
  • the terminal device monitors and receives the physical downlink control channel (PDCCH).
  • the "Opportunity for DRX” period is the sleep period.
  • the terminal device Do not receive PDCCH to reduce power consumption.
  • the synchronization signal block measurement time configuration (synchronisation signal block measurement time configuration, SMTC) sent from the base station determines the location to perform the measurement and turns on the receiving circuit to receive the reference signal.
  • SMTC synchronisation signal block measurement time configuration
  • the base station only schedules terminal equipment during the C-DRX active period according to the C-DRX mechanism.
  • the base station will not schedule the terminal equipment and the terminal equipment will turn off the receiving circuit To reduce power consumption.
  • the terminal device just needs to perform the same frequency measurement, the terminal device will turn on the receiving circuit to receive the reference signal, resulting in waste of power consumption.
  • the embodiment of the present application provides a method for scheduling a terminal device to reduce waste of power consumption of the terminal device.
  • the first aspect of the embodiments of the present application provides a method for scheduling a terminal device, including: first information sent by the terminal device to a base station, where the first information is used to indicate a time domain position measured by the terminal device; The first information determines a target time domain position, and the target time domain position is a time domain position scheduled by the base station that the terminal device can receive.
  • the terminal equipment is in the wake-up state when performing co-frequency measurement, and can monitor the PDCCH while receiving the reference signal.
  • the terminal device can determine the time domain position for measurement as required.
  • the terminal device sends the first information indicating the time domain position measured by the terminal device to the base station, and both the terminal device and the base station can be based on the One information determines the target time domain position that can be used to schedule terminal equipment. Since the terminal equipment will turn on the receiving circuit to generate power consumption when measuring the time domain position, if the base station schedules the terminal equipment at the target time domain position, it can make full use of the wake-up consumption of the terminal equipment during measurement. The electric energy reduces the waste of power consumption.
  • the terminal device determining the target time domain position according to the first information includes: the terminal device determining that the time domain position measured by the terminal device is the target time domain position.
  • the scheduling method of the terminal device provided by the embodiment of the present application can directly determine the time domain position measured by the terminal device as the target time domain position that can be scheduled, and provides a convenient method for determining the target time domain position.
  • the method further includes: the terminal device receives discontinuous reception C-DRX configuration information sent by the base station; and the terminal device determining the target time domain position according to the first information includes: The terminal device determines the target time domain location according to the C-DRX configuration information and the time domain location measured by the terminal device.
  • the terminal device can determine the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device. Since the terminal device may be in an awake state during the activation period of the C-DRX, The terminal device is also in the awake state at the measured time domain position, and determining the target time domain position based on the two together can improve the utilization rate of power consumption.
  • the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device includes: the terminal device according to the C-DRX configuration information It is determined that the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
  • the terminal device determines that the position where the activation period of C-DRX and the time domain position measured by the terminal device overlaps is the target time domain position, which can perform measurement and receive scheduling, thereby improving performance Consumption utilization.
  • the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device includes: the terminal device according to the C-DRX configuration information Determine the first C-DRX cycle and the second C-DRX cycle, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and the activation period of the second C-DRX cycle does not include the terminal device
  • the measured time domain position, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the terminal device determines that the activation period of the first C-DRX cycle is the target time domain position.
  • the terminal device determines that the first C-DRX cycle in which the active period includes the time domain position measured by the terminal device is the target time domain position, and the target time domain position can be measured and received Scheduling to improve the utilization of power consumption.
  • the method further includes: the terminal device receives a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor in the first C-DRX cycle Physical downlink control channel; when the terminal device determines that the activation period of the first C-DRX cycle is the target time domain position includes: the terminal device determines that the activation period of the first C-DRX cycle is the target time according to the power saving signal Domain location.
  • the terminal equipment can determine, according to the power saving signal sent by the base station, that the first C-DRX cycle including the time domain position measured by the terminal equipment during the activation period is the target time domain position.
  • the domain location can perform measurement and receive scheduling, which improves the utilization rate of power consumption.
  • the method further includes: the terminal device receives a power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power to the terminal device Saving signal and sending a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used for Indicate whether the terminal device monitors the physical downlink control channel in the second C-DRX cycle.
  • the terminal equipment can receive the power saving signal mode configured by the base station, and monitor the PDCCH by default during the activation period of the first C-DRX cycle including the time domain position measured by the terminal equipment. Perform measurement and receive scheduling to improve the utilization rate of power consumption.
  • the terminal device may not monitor the power saving signal to save power consumption.
  • the method further includes: the terminal device receives the second power saving signal sent by the base station; and the terminal device determines that the terminal device is in the second C-saving signal according to the second power saving signal.
  • the physical downlink control channel is monitored or not monitored during the DRX cycle.
  • the terminal device receives the second power saving signal sent by the base station, and determines whether to monitor or not monitor the physical downlink in the second C-DRX cycle according to an indication of the second power saving signal
  • the control channel increases the completeness of the solution implementation.
  • the method further includes: the terminal device receives measurement configuration information sent by the base station, the measurement configuration information indicating a time domain position that the terminal device can use for measurement; the terminal device According to the measurement configuration information, the time domain position for measurement is determined.
  • the terminal device receives the measurement configuration information sent by the base station, and can determine the time domain position for measurement according to the measurement configuration information, which increases the completeness of the implementation of the solution.
  • the method further includes: the terminal device receives the scheduling of the base station at the target time domain location.
  • the terminal device receives the scheduling of the base station at the target time domain position, which can make full use of the power consumption of the terminal device in the wake-up state during measurement, and reduce waste of power consumption of the terminal device.
  • a second aspect of the embodiments of the present application provides a method for scheduling a terminal device, including: a base station receives first information sent by the terminal device, the first information is used to indicate a time domain position measured by the terminal device; A piece of information determines a target time domain location, and the target time domain location is a time domain location that can be used to schedule the terminal device.
  • the terminal equipment is in the wake-up state when performing co-frequency measurement, and can monitor the PDCCH while receiving the reference signal.
  • the terminal device can determine the time-domain position for measurement as required.
  • the base station receives first information indicating the time-domain position measured by the terminal device, and based on the first information, determines the time domain position that can be used to schedule the terminal device. For the target time domain position, since the terminal device will turn on the receiving circuit to generate power consumption when measuring the time domain position, if the base station schedules the terminal device at the target time domain position, it can make full use of the power consumed when the terminal device is awakened during measurement and reduce waste of power consumption.
  • the method further includes: the base station determines the time domain position measured by the terminal device according to the first information.
  • the base station determining the target time domain position according to the first information includes: the base station determining that the time domain position measured by the terminal device is the target time domain position.
  • the scheduling method of the terminal device provided by the embodiment of the present application can directly determine the time domain position measured by the terminal device as the target time domain position that can be scheduled, and provides a convenient method for determining the target time domain position.
  • the method further includes: the base station sends discontinuous reception C-DRX configuration information to the terminal device; the base station determining the target time domain position according to the first information includes: the base station The target time domain position is determined according to the time domain position measured by the terminal device and the C-DRX configuration information.
  • the base station can determine the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal equipment. Since the terminal equipment may be in an awake state during the activation period of the C-DRX, the terminal The device is also in the awake state at the measured time domain position, and determining the target time domain position based on the two together can improve the utilization rate of power consumption.
  • the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information includes: the base station determining C according to the C-DRX configuration information -The position where the DRX activation period overlaps with the time domain position measured by the terminal device is the target time domain position.
  • the base station determines that the position where the C-DRX activation period overlaps with the time domain position measured by the terminal equipment is the target time domain position, and the target time domain position can be measured and received Scheduling to improve the utilization of power consumption.
  • the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information includes: the base station determining the first time domain position according to the C-DRX configuration information A C-DRX cycle and a second C-DRX cycle, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and the activation period of the second C-DRX cycle does not include the terminal device measurement Time domain position, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the base station determines the activation period of the first C-DRX cycle as the target time domain position.
  • the base station can determine that the first C-DRX cycle in which the active period includes the time domain position measured by the terminal equipment is the target time domain position, and the target time domain position can be measured and received Scheduling to improve the utilization of power consumption.
  • the method further includes: the base station sends a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor physical data in the first C-DRX cycle Downlink control channel.
  • the base station may determine, according to the power saving signal sent by the base station, that the first C-DRX cycle including the time domain position measured by the terminal device in the active period is the target time domain position.
  • the location can perform measurement and receive scheduling, improving the utilization rate of power consumption.
  • the method further includes: the base station configures a power saving signal mode for the terminal device, the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device Signal and send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate Whether the terminal device monitors the physical downlink control channel in the second C-DRX cycle.
  • the base station can send a power saving signal mode to the terminal equipment, and the terminal equipment monitors the PDCCH by default during the activation period of the first C-DRX cycle that includes the time domain position measured by the terminal equipment.
  • the measurement is performed and the scheduling is received, which improves the utilization rate of power consumption.
  • the terminal device may not monitor the power saving signal to save power consumption.
  • the method further includes: the base station sends the second power saving signal to the terminal device.
  • the base station may send the second power saving signal to the terminal equipment, and determine whether to monitor or not monitor the physical downlink in the second C-DRX cycle according to the indication of the second power saving signal
  • the control channel increases the completeness of the solution implementation.
  • the method further includes: the base station sends measurement configuration information to the terminal device, the measurement configuration information indicating a time domain location that the terminal device can use for measurement.
  • the base station can send measurement configuration information to the terminal equipment, and the terminal equipment can determine the time domain position for measurement according to the measurement configuration information, which increases the completeness of the implementation of the solution.
  • the method further includes: the base station schedules the terminal device at the target time domain location.
  • the base station can schedule the terminal device at the target time domain position, and can make full use of the power consumption of the terminal device in the wake-up state during measurement, thereby reducing waste of power consumption of the terminal device.
  • a third aspect of the embodiments of the present application provides a method for scheduling a terminal device, including: the terminal device receives a power saving signal mode sent by a base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device Signal and send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether to monitor the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate the second C-DRX cycle -Whether to monitor the physical downlink control channel in the DRX cycle, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the terminal device receives the second power saving signal according to the power saving signal mode .
  • the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device, and the activation period of the second C-DRX cycle does not include the terminal The time domain position measured by the terminal device of the device.
  • the terminal device receives the power saving signal mode sent by the base station.
  • the method further includes: the terminal device monitors the PDCCH in the active period of the first C-DRX cycle according to the power saving signal mode ,
  • the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device.
  • the method before the terminal device receives the power saving signal mode mode sent by the base station, the method further includes: the terminal device receives measurement configuration information sent by the base station, where the measurement configuration information is used for Indicates the time domain location of the terminal device that can be used for measurement.
  • the method before the terminal device receives the power saving signal mode sent by the base station, the method further includes: the terminal device sends first information to the base station, and the first information is used to indicate the The time domain position measured by the terminal device.
  • the fourth aspect of the embodiments of the present application provides a scheduling method for terminal equipment, including: a base station configures a power saving signal mode for the terminal equipment, the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal equipment And send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the physical downlink control channel is monitored in the first C-DRX cycle, and the second power saving signal is used to indicate the second C-DRX cycle. Whether to monitor the physical downlink control channel in the DRX cycle, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the base station sends the second power saving signal according to the power saving signal mode.
  • the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device, and the activation period of the second C-DRX cycle does not include the terminal The time domain position measured by the terminal device of the device.
  • the method further includes: the base station receives first information sent by the terminal device, and the first information is used to indicate the The time domain position measured by the terminal device of the terminal device; the base station configuring the power saving signal mode for the terminal device includes: the base station determines the power saving signal mode according to the first information.
  • the method before the base station receives the first information sent by the terminal device, the method further includes: the base station sends measurement configuration information to the terminal device, the measurement configuration information indicating the terminal device The time domain location available for measurement.
  • the fifth aspect of the embodiments of the present application provides a communication device, and the communication device may be a terminal device, or a part of the terminal device, or may be provided in the terminal device.
  • the communication device may include devices, units, or modules for executing the foregoing first aspect and various implementation manners of the first aspect.
  • the terminal device may include: a sending unit for sending first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device; a determining unit, It is used to determine a target time domain position according to the first information, where the target time domain position is a time domain position that the terminal device can receive scheduling of the base station.
  • the determining unit is specifically configured to determine that the time domain position measured by the terminal device is the target time domain position.
  • the terminal device further includes: a receiving unit, configured to receive discontinuous reception C-DRX configuration information sent by the base station; and the determining unit is specifically configured to: according to the C-DRX The configuration information and the time domain position measured by the terminal device determine the target time domain position.
  • the determining unit is specifically configured to: determine, according to the C-DRX configuration information, that the position where the C-DRX activation period overlaps the time domain position measured by the terminal device is the target Domain location.
  • the determining unit is specifically configured to determine the first C-DRX cycle and the second C-DRX cycle according to the C-DRX configuration information, and the value of the first C-DRX cycle
  • the activation period includes the time domain position measured by the terminal device, the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle is different from the second C-DRX cycle
  • the C-DRX cycle determine the active period of the first C-DRX cycle as the target time domain position.
  • the receiving unit is further configured to: receive a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor physical data in the first C-DRX cycle Downlink control channel; the determining unit is specifically configured to determine the active period of the first C-DRX cycle as the target time domain position according to the power saving signal.
  • the receiving unit is further configured to: receive a power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device. Signal and send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate Whether the terminal device monitors the physical downlink control channel in the second C-DRX cycle.
  • the receiving unit is further configured to: receive the second power saving signal sent by the base station; the determining unit is further configured to determine that the signal is in the first power saving signal according to the second power saving signal. 2. Monitoring or not monitoring the physical downlink control channel in the C-DRX cycle.
  • the receiving unit is further configured to: receive measurement configuration information sent by the base station, where the measurement configuration information indicates a time domain position of the terminal device that can be used for measurement; the determining unit is also It is used to determine the time domain location for measurement according to the measurement configuration information.
  • the receiving unit is further configured to receive the scheduling of the base station at the target time domain position.
  • the sixth aspect of the embodiments of the present application provides a communication device.
  • the communication device may be a base station, or a part of the base station, or may be set in the base station.
  • the communication device may include a device, unit, or module for executing the foregoing second aspect and various implementation manners of the second aspect.
  • the base station may include: a receiving unit configured to receive first information sent by a terminal device, the first information being used to indicate a time domain position measured by the terminal device; After determining the target time domain location according to the first information, the target time domain location is a time domain location that can be used to schedule the terminal device.
  • the target time domain position is a time domain position that can be used to schedule the terminal device.
  • the determining unit is further configured to determine the time domain position measured by the terminal device according to the first information.
  • the determining unit is specifically configured to determine that the time domain position measured by the terminal device is the target time domain position.
  • the base station further includes: a sending unit, configured to send discontinuous reception C-DRX configuration information to the terminal device; the determining unit is specifically configured to: according to the terminal device's measurement The time domain location and the C-DRX configuration information determine the target time domain location.
  • the determining unit is specifically configured to determine, according to the C-DRX configuration information, that the position where the C-DRX activation period overlaps with the time domain position measured by the terminal device is the target Domain location.
  • the determining unit is specifically configured to determine the first C-DRX cycle and the second C-DRX cycle according to the C-DRX configuration information, and the value of the first C-DRX cycle
  • the activation period includes the time domain position measured by the terminal device, the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle is different from the second C-DRX cycle
  • the C-DRX cycle determine the active period of the first C-DRX cycle as the target time domain position.
  • the sending unit is further configured to: send a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor physical data in the first C-DRX cycle Downlink control channel.
  • the base station further includes: a configuration unit configured to configure a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send a second signal to the terminal device.
  • a power saving signal and sending a second power saving signal to the terminal device the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle
  • the second power saving signal It is used to indicate whether the terminal device monitors the physical downlink control channel in the second C-DRX cycle.
  • the sending unit is further configured to send the second power saving signal to the terminal device.
  • the sending unit is further configured to send measurement configuration information to the terminal device, the measurement configuration information indicating a time domain location that the terminal device can use for measurement.
  • the base station further includes: a scheduling unit, configured to schedule the terminal device at the target time domain location.
  • a seventh aspect of the embodiments of the present application provides a communication device.
  • the communication device may be a terminal device, or a part of the terminal device, or may be set in the terminal device.
  • the communication device may include a device, unit or module for executing the foregoing third aspect and various implementation manners of the third aspect.
  • the terminal device may include: a receiving unit configured to receive a power saving signal mode sent by a base station, and the power saving signal mode is used to instruct the base station not to send the first signal to the terminal device.
  • the first power saving signal is used to indicate whether the physical downlink control channel is monitored in the first C-DRX cycle
  • the second power saving signal is used to indicate the first Whether the physical downlink control channel is monitored in the second C-DRX cycle, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles
  • the receiving unit is also used to receive according to the power saving signal mode The second power saving signal.
  • a power saving signal mode for receiving a power saving signal sent by a base station, where the power saving signal mode is used to instruct the base station not to send a first power saving signal to the terminal device and send a second power saving signal to the terminal device,
  • the first power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle
  • the second power saving signal is used to indicate whether to monitor a physical downlink control channel in the second C-DRX cycle Channel, a device in which the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles
  • a device for receiving the second power saving signal according to the power saving signal mode for receiving a power saving signal sent by a base station, where the power saving signal mode is used to instruct the base station not to send a first power saving signal to the terminal device and send a second power saving signal to the terminal device,
  • the first power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle
  • the second power saving signal
  • the receiving unit is further configured to: monitor the PDCCH during the active period of the first C-DRX cycle according to the power saving signal mode, where the active period of the first C-DRX cycle includes The time domain position measured by the terminal device of this terminal device.
  • the receiving unit is further configured to receive measurement configuration information sent by the base station, where the measurement configuration information is used to indicate a time domain location that the terminal device can use for measurement.
  • the terminal device further includes a sending unit, configured to send first information to the base station, where the first information is used to indicate a time domain position measured by the terminal device.
  • An eighth aspect of the embodiments of the present application provides a communication device.
  • the communication device may be a base station, or a part of the base station, or may be set in the base station.
  • the communication device may include a device, unit, or module for executing the foregoing second aspect and various implementation manners of the second aspect.
  • the base station may include: a configuration unit configured to configure a power saving signal mode for a terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device Signal and send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether to monitor the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate the second C-DRX cycle -Whether to monitor the physical downlink control channel in the DRX cycle, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the sending unit is configured to send the second power according to the power saving signal mode Save signals.
  • the power saving signal mode being used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device Signal
  • the first power saving signal is used to indicate whether the physical downlink control channel is monitored in the first C-DRX cycle
  • the second power saving signal is used to indicate whether the physical downlink control channel is monitored in the second C-DRX cycle
  • the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles
  • the method further includes: a receiving unit, configured to receive first information sent by the terminal device, the first information being used to indicate the time domain position measured by the terminal device of the terminal device ;
  • the configuration unit is specifically configured to determine the power saving signal mode according to the first information.
  • the sending unit is further configured to: send measurement configuration information to the terminal device, the measurement configuration information indicating a time domain location that the terminal device can use for measurement.
  • the ninth aspect of the embodiments of the present application provides a terminal device, including: a processor and a network interface; the network interface is used to send and receive data; the processor is used to execute the first aspect, the third aspect, and the implementation manners thereof method.
  • a tenth aspect of the embodiments of the present application provides a base station, including: a processor and a network interface; the network interface is used to send and receive data; the processor is used to execute the methods in the second aspect, the fourth aspect, and each implementation manner described above .
  • the eleventh aspect of the embodiments of the present application provides a computer program product.
  • the computer program product includes instructions. When the instructions run on a computer, the computer executes the first, second, third, and third aspects described above. Four aspects and the methods in each implementation.
  • the twelfth aspect of the embodiments of the present application provides a computer-readable storage medium that stores instructions. When the instructions are run on a computer, the first and second aspects of the foregoing embodiments of the present application are executed. The third and fourth aspects and the methods in their respective implementation modes.
  • the thirteenth aspect of the embodiments of the present application provides a chip system.
  • the chip system includes at least one processor and an interface circuit.
  • the interface circuit and the at least one processor are interconnected by wires, and the at least one processor executes the foregoing embodiments of the present application.
  • the first aspect, the second aspect, the third aspect and the fourth aspect and the methods in their respective implementation modes.
  • the chip system further includes a memory for storing necessary program instructions and data for the network device.
  • the chip system may be composed of chips, or may include chips and other discrete devices.
  • the fourteenth aspect of the present application provides a communication system, including: a terminal device and a base station; first information sent by the terminal device to the base station, the first information being used to indicate a time domain position measured by the terminal device; the terminal device The target time domain position is determined according to the first information, and the target time domain position is a time domain position scheduled by the base station that the terminal device can receive; the base station determines the target time domain position according to the first information.
  • the base station configures a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device, so
  • the first power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle
  • the second power saving signal is used to indicate whether to monitor a physical downlink control channel in the second C-DRX cycle
  • the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
  • the second power saving signal is sent according to the power saving signal mode;
  • the terminal device receives the power saving sent by the base station Signal mode; receiving the second power saving signal according to the power saving signal mode.
  • the terminal device determining the target time domain position according to the first information includes: the terminal device determining that the time domain position measured by the terminal device is the target time domain position.
  • the terminal device receives the discontinuous reception C-DRX configuration information sent by the base station; the terminal device determining the target time domain position according to the first information includes: the terminal device according to The C-DRX configuration information and the time domain position measured by the terminal device determine the target time domain position.
  • the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device includes: the terminal device configures according to the C-DRX The information determines that the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
  • the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device includes: the terminal device configures according to the C-DRX The information determines the first C-DRX cycle and the second C-DRX cycle, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and the activation period of the second C-DRX cycle does not include the terminal
  • the time domain position measured by the device, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the terminal device determines that the activation period of the first C-DRX cycle is the target time domain position .
  • the terminal device receives a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor the physical downlink control channel in the first C-DRX cycle
  • the terminal device determining the activation period of the first C-DRX cycle as the target time domain location includes: the terminal device determines the activation period of the first C-DRX cycle as the target time domain location according to the power saving signal.
  • the terminal device receives a power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to The terminal device sends a second power saving signal, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to instruct the terminal device Whether to monitor the physical downlink control channel in the second C-DRX cycle.
  • the terminal device receives the second power saving signal sent by the base station; the terminal device determines to monitor in the second C-DRX cycle according to the second power saving signal Or do not monitor the physical downlink control channel.
  • the terminal device receives measurement configuration information sent by the base station, and the measurement configuration information indicates a time domain position that the terminal device can use to perform measurement; the terminal device configures according to the measurement The information determines the time domain location at which the measurement is made.
  • the terminal device receives the scheduling of the base station at the target time domain location.
  • the method further includes: the base station determines the time domain position measured by the terminal device according to the first information.
  • the base station determining the target time domain position according to the first information includes: the base station determining that the time domain position measured by the terminal device is the target time domain position.
  • the base station sends discontinuous reception C-DRX configuration information to the terminal device; the base station determining the target time domain position according to the first information includes: the base station according to the terminal device The measured time domain position and the C-DRX configuration information determine the target time domain position.
  • the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information includes: the base station determines according to the C-DRX configuration information The position where the C-DRX activation period overlaps with the time domain position measured by the terminal device is the target time domain position.
  • the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information includes: the base station determines according to the C-DRX configuration information The first C-DRX cycle and the second C-DRX cycle, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and the activation period of the second C-DRX cycle does not include the terminal device measurement The first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the base station determines the activation period of the first C-DRX cycle as the target time domain location.
  • the base station sends a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor the physical downlink control channel in the first C-DRX cycle.
  • the base station configures a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to The terminal device sends a second power saving signal, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate that the terminal device is Whether to monitor the physical downlink control channel in the second C-DRX cycle.
  • the base station sends the second power saving signal to the terminal device.
  • the base station sends measurement configuration information to the terminal device, and the measurement configuration information indicates a time domain location that the terminal device can use for measurement.
  • the base station schedules the terminal device at the target time domain location.
  • a fifteenth aspect of the embodiments of the present application provides a communication system, including the terminal device of the foregoing fifth aspect or the seventh aspect, and the base station of the foregoing sixth aspect or the eighth aspect.
  • the terminal device sends first information indicating the time domain position measured by the terminal device to the base station, and both the terminal device and the base station can determine the target time that can be used to schedule the terminal device based on the first information. Domain location, since the terminal device will turn on the receiving circuit to generate power consumption during the measurement time domain location, if the base station schedules the terminal device at the target time domain location, it can make full use of the power consumed by the terminal device to wake up during measurement and reduce power waste.
  • Figure 1 is a schematic diagram of an embodiment of the C-DRX cycle
  • Figure 2 is a schematic diagram of an embodiment of SMTC windows
  • FIG. 3 is a schematic diagram of an embodiment of a method for scheduling a terminal device in an embodiment of the application
  • FIG. 4 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application.
  • FIG. 5 is a schematic diagram of interaction in an embodiment of a method for scheduling a terminal device in an embodiment of this application;
  • FIG. 6 is a schematic diagram of an embodiment of a time domain position measured by a terminal device in an embodiment of this application.
  • FIG. 7 is a schematic diagram of another embodiment of a time domain position measured by a terminal device in an embodiment of this application.
  • FIG. 8 is a schematic diagram of interaction in another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • FIG. 9 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application.
  • FIG. 10 is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • FIG. 11 is a schematic diagram of interaction in another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • FIG. 12 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application.
  • FIG. 13 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application.
  • FIG. 14 is a schematic diagram of an embodiment of a power saving signal transmission mode
  • 15 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application.
  • FIG. 16 is a schematic diagram of interaction in another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • FIG. 17 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application.
  • FIG. 18 is a schematic diagram of an embodiment of a terminal device in an embodiment of the application.
  • FIG. 19 is a schematic diagram of an embodiment of a base station in an embodiment of the application.
  • FIG. 20 is a schematic diagram of an embodiment of a terminal device in an embodiment of the application.
  • FIG. 21 is a schematic diagram of an embodiment of a base station in an embodiment of the application.
  • the embodiment of the present application provides a method for scheduling a terminal device to reduce waste of power consumption of the terminal device.
  • the scheduling method for terminal devices provided in the embodiments of the present application is applicable to a variety of wireless communication systems, such as fifth generation (5G) mobile communication systems or future mobile communication systems, which are not limited in this application.
  • 5G fifth generation
  • future mobile communication systems which are not limited in this application.
  • the base stations involved in the embodiments of the present application may include various devices that provide communication functions for terminals in a wireless access network, such as macro base stations, micro base stations, relay stations, or access points in various forms.
  • the names of base stations may be different.
  • they are called next generation NodeB (gNB) in future communication and mobile communication systems; in the long term evolution (long term evolution) , LTE) network, called evolved NodeB (evolved NodeB, eNodeB) is abbreviated as eNB; in addition, for the scenario where the eNB in LTE is connected to the 5th generation core network (5th generation core, 5GC), the eNB is also called ng-eNB, connected to 5GC via NG interface.
  • gNB next generation NodeB
  • LTE long term evolution
  • eNodeB evolved NodeB
  • eNB evolved NodeB
  • the eNB is also called ng-eNB, connected to 5GC via NG interface.
  • the embodiments of the present application do
  • the terminal equipment (UE) involved in the embodiments of this application may include various handheld devices with wireless communication functions, vehicle-mounted devices, wearable devices, computing devices or other processing devices connected to wireless modems, as well as various forms of mobile stations Or user equipment, etc.
  • the embodiment of the present application does not limit the specific technology and specific device form adopted by the terminal device.
  • C-DRX Connected discontinuous reception
  • the base station configures the C-DRX cycle (C-DRX cycle) for the terminal equipment.
  • the C-DRX cycle consists of two parts: “On Duration” and “Opportunity for DRX". Refer to Figure 1. It is a typical C-DRX cycle.
  • the "On Duration” period is the activation period.
  • the terminal device monitors and receives the physical downlink control channel (PDCCH); "Opportunity for DRX" period
  • the inner is the dormant period, and the terminal device does not receive the PDCCH to reduce power consumption.
  • PDCCH physical downlink control channel
  • the terminal device In the connected state, the terminal device will perform radio resource management (RRM) measurements according to the configuration information of the base station, including intra-frequency measurements. It should be noted that the measurement mentioned in the embodiments of the present application all refer to the same frequency measurement, which is referred to as the measurement below.
  • RRM radio resource management
  • the terminal device When the terminal device performs measurement, it needs to be in an awake state.
  • the terminal device turns on the receiving circuit and can monitor the PDCCH while receiving a reference signal (RS). That is, the terminal equipment can both perform measurement and receive base station scheduling, and there is no scheduling restriction.
  • RS reference signal
  • the terminal device measurement is performed at a specific location, and the base station indicates the time domain location that the terminal device can use to perform the measurement through the measurement configuration information.
  • the SMTC window indicates the position where the terminal device can perform measurement.
  • FIG. 2 is a schematic diagram of an embodiment of the SMTC window. SMTC windows are usually configured to appear periodically. The terminal device selects one or more of the SMTC windows for measurement according to actual needs.
  • the base station cannot obtain the specific time period during which the terminal device performs the measurement, when the terminal device performs the measurement, although the terminal device turns on the receiving circuit to receive the reference signal and is in an awake state, the base station does not schedule the terminal device. At this time, the power consumption of the terminal equipment will be wasted.
  • the embodiment of the present application provides a method for scheduling a terminal device to reduce waste of power consumption of the terminal device.
  • the technical solutions in the embodiments of the present application will be described clearly and completely in conjunction with the accompanying drawings in the embodiments of the present application.
  • the following The described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative work are within the protection scope of this application, and are described below in conjunction with specific embodiments.
  • FIG. 3 is a schematic diagram of an embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • the first information sent by the terminal device to the base station where the first information is used to indicate the time domain position measured by the terminal device.
  • the terminal equipment selects one or more from the SMTC window configured by the base station for measurement, and the first information may Indicates the time domain position of the one or more measurements.
  • the terminal device determines the target time domain location according to the first information.
  • the terminal device determines a target time domain position according to the first information, and the target time domain position is a time domain position scheduled by the base station that the terminal device can receive.
  • the terminal device may use all the time domain positions to be measured as the target time domain position, or may also select one or more of the measured time domain positions as the target according to a preset rule Time domain location.
  • the number of preset rules and target time domain positions is not limited here.
  • the terminal device may send first information indicating the time domain position measured by the terminal device to the base station, and determine according to the first information that the target time domain position scheduled by the base station can be received . Since the base station has acquired the time domain position measured by the terminal device, the base station and the terminal device can perform scheduling at the target time domain position determined according to the first information.
  • the terminal device When the terminal device is in the wake-up state when the receiving circuit is turned on during the measurement, it can avoid the waste of power consumption of the terminal device caused by the base station not being able to schedule the terminal device because the time domain position measured by the terminal device is not obtained.
  • FIG. 4 is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • the base station receives first information sent by a terminal device.
  • the base station receives the first information sent by the terminal device, where the first information is used to indicate the time domain position measured by the terminal device.
  • the time domain position measured by the terminal device indicated by the first information may be one or more, which is not limited here.
  • the terminal device selects one or more of the SMTC windows configured by the base station for measurement.
  • the base station determines the target time domain position according to the first information.
  • the base station determines a target time domain position according to the first information, and the target time domain position is a time domain position that can be used to schedule the terminal device.
  • the base station may use the time domain position measured by the terminal device as the target time domain position according to the first information.
  • the base station may select one or more of the measured time domain positions as the target according to a preset rule Time domain location. The number of preset rules and target time domain positions is not limited here.
  • the base station may receive first information indicating the time domain position measured by the terminal equipment sent by the terminal equipment, and determine the target time domain that can be used to schedule the terminal equipment according to the first information position. Since the base station has acquired the time domain position measured by the terminal device, the base station and the terminal device can perform scheduling at the target time domain position determined according to the first information. When the terminal device is in the wake-up state when the receiving circuit is turned on during the measurement, the base station can avoid the waste of power consumption of the terminal device caused by the inability to schedule the terminal device because the time domain position measured by the terminal device is not obtained.
  • FIG. 5 is a schematic diagram of interaction in an embodiment of a scheduling method of a terminal device in an embodiment of this application;
  • the base station sends an SMTC to a terminal device
  • the base station configures measurement configuration information for the terminal device, and the measurement configuration information may indicate the time domain position of the terminal device that can be used for measurement.
  • the measurement configuration information is SMTC information.
  • the SMTC window indicates the location where the terminal device can perform measurement. Refer to Figure 2.
  • the SMTC window is usually configured to appear periodically.
  • the terminal device can select one or more SMTC windows according to actual needs. Take measurements.
  • the terminal device determines the time domain position of the measurement
  • the terminal device receives the measurement configuration information sent by the base station, and the measurement configuration information indicates a time domain position that the terminal device can use for measurement. Specifically, the terminal device receives the SMTC information sent by the base station, and selects one or more of the locations that can be measured indicated by the SMTC window as the time domain location for measurement according to the measurement needs.
  • FIG. 6 is a schematic diagram of an embodiment of a time domain position measured by a terminal device in an embodiment of this application.
  • the terminal selects the positions of the first, second, fourth, fifth, and seventh windows in the SMTC window as the measured time domain position.
  • the terminal device sends the first information to the base station.
  • the terminal device sends first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device, that is, the measured time domain position determined by the terminal device in step 502.
  • the base station determines the target time domain position.
  • the base station may determine the target time domain position according to the first information, and the target time domain position is a time domain position that can be used to schedule the terminal device.
  • the base station may determine the target time domain position according to the first information, which is not limited here.
  • the terminal device determines that the time domain position measured by the terminal device is the target time domain position.
  • the time domain position measured by the terminal device is the position of the first, second, fourth, fifth and seventh windows in the SMTC window.
  • the positions of the first, second, fourth, fifth, and seventh SMTC windows are determined as the target time-domain positions, which are shown with shading in the figure.
  • the terminal may receive the C-DRX cycle configured by the base station, please refer to FIG. 7, which is a schematic diagram of another embodiment of the time domain position measured by the terminal device in the embodiment of this application, and introduces the existence of C in this embodiment -The method for determining the target time domain position during DRX cycle, as shown in Figure 7, the time domain position measured by the terminal device is the target time domain position.
  • the target time domain position can be C-DRX cycle
  • the time domain position of the first measurement corresponds to the activation period of cycle 1; it can also be the dormant period of C-DRX cycle, for example, the time domain position of the second measurement corresponds to the dormant period of cycle 1; further Yes, since the duration of the measurement may be different from the activation period in the C-DRX cycle, the target time domain position can cover the entire activation period of the C-DRX cycle, or it can only cover the part of the C-DRX cycle activation period, please Referring to Figure 7, the time domain position of the first measurement corresponds to the part of C-DRX cycle 1.
  • the terminal device determines the target time domain location
  • the terminal device determines a target time domain position according to the first information, and the target time domain position is a time domain position scheduled by the base station that the terminal device can receive.
  • the terminal device determines the target time domain position according to the first information, which is not limited here.
  • the terminal device determines that the time domain position measured by the terminal device is the target time domain position. Please refer to the method for the base station to determine the target time domain position in step 504, which will not be repeated here.
  • the base station schedules the terminal equipment at the target time domain position.
  • the base station schedules the terminal device at the determined target time domain location, and the terminal device can receive the scheduling of the base station at the target time domain location.
  • the base station may select a part of the target time domain location to schedule the terminal device, for example, determine whether to schedule the terminal device at the target time domain location according to whether there is data to be sent.
  • FIG. 8 is a schematic diagram of interaction in another embodiment of the scheduling method of terminal equipment in the embodiment of this application.
  • the base station sends SMTC to the terminal device.
  • Step 801 is similar to step 501 in the embodiment corresponding to FIG. 5 and will not be repeated here.
  • the base station sends discontinuous reception C-DRX configuration information to the terminal device;
  • the base station sends discontinuous reception C-DRX configuration information to the terminal device;
  • the C-DRX configuration information is information about the C-DRX cycle configured by the base station for the terminal device, including the duration of the activation period and the sleep period in the C-DRX cycle.
  • the terminal device can enter the wake-up state during the activation period and enter the sleep state during the sleep period according to the C-DRX configuration information.
  • the terminal device determines the time domain position of the measurement.
  • the terminal device receives the SMTC information sent by the base station, and selects one or more of the locations that can be measured indicated by the SMTC window as the time domain location for measurement according to the measurement needs.
  • the terminal device may select the position where the activation period of the SMTC window and the C-DRX cycle overlap.
  • the determination method and number of time domain positions measured by the terminal device are not limited here.
  • the terminal device sends the first information to the base station.
  • the terminal device sends first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device, that is, the measured time domain position determined by the terminal device in step 803.
  • the base station determines the target time domain position.
  • the base station determines the target time domain position according to the received first information.
  • the base station determines the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information. Domain location.
  • the base station determines, according to the C-DRX configuration information, a position where the activation period of the C-DRX and the time domain position measured by the terminal device overlaps as the target time domain position.
  • FIG. 9 is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • the first information indicates that the time domain position measured by the terminal device is the position of the first, second, fourth, and fifth SMTC windows, which are shown with shading in the figure.
  • the time domain positions of the first and fourth measurements overlap with the activation periods of cycle 1 (cycle 1) and cycle 3 of the C-DRX cycle respectively, and the time domain positions of the remaining measurements fall into the C-DRX cycle. Dormancy period. Therefore, the position where the activation period of cycle 1 and cycle 3 overlaps with the time domain position measured by the terminal device may be the target time domain position, which is shown by shading in FIG. 9.
  • FIG. 10 is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • the position where the C-DRX activation period overlaps with the time domain position measured by the terminal device can cover all or part of a C-DRX activation period.
  • the activation period of cycle 1 and the measured time domain position Overlap the entire activation period of cycle 1 is determined as the target time domain position, while the activation period of cycle 5 only partially overlaps with the measured time domain position. Therefore, the activation period of cycle 5 is only partially determined as the target time domain position, as shown in the figure Shown in the shaded part.
  • the terminal device determines the target time domain location.
  • the terminal device determines the target time domain location according to the C-DRX configuration information and the time domain location measured by the terminal device.
  • the terminal device determines, according to the C-DRX configuration information, the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position. Please refer to the method for the base station to determine the target time domain position in step 504, which will not be repeated here.
  • the base station schedules the terminal equipment at the target time domain position
  • Step 807 is similar to step 506 in the embodiment corresponding to FIG. 5, and will not be repeated here.
  • the target time domain position including the measured DRX activation period is indicated by transmitting a power saving signal.
  • FIG. 11 is a schematic diagram of interaction in another embodiment of the scheduling method of terminal equipment in the embodiment of this application.
  • the base station sends SMTC to the terminal device
  • the base station sends discontinuous reception C-DRX configuration information to the terminal device;
  • the terminal device determines the time domain position of the measurement
  • the terminal device sends the first information to the base station.
  • Steps 1101 to 1104 are similar to steps 801 to 804 in the embodiment corresponding to FIG. 8 and will not be repeated here.
  • the base station determines the target time domain position
  • the base station determines the target time domain position according to the first information.
  • the base station determines the first C-DRX cycle and the second C-DRX cycle according to the C-DRX configuration information.
  • the activation period of the DRX cycle includes the time domain position measured by the terminal device, the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, the first C-DRX cycle and the second C-DRX
  • the periods are different C-DRX periods; the base station determines that the active period of the first C-DRX period is the target time domain position.
  • the base station can determine that the activation period includes the first C-DRX period measured by the terminal device in the time domain, and the activation period does not include the second C-DRX period measured by the terminal device in the time domain.
  • the base station may set the activation period of the first C-DRX cycle as the target time domain position.
  • FIG. 12 is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • the first information indicates that the time domain position measured by the terminal device is the position of the first 1, 2, 4, 5, and 7 SMTC windows, which are shown with shading in the figure.
  • the activation periods of cycle 1, cycle 3, and cycle 5 of C-DRX cycle include the time domain positions of the first, fourth, and seventh measurement respectively, and the activation periods of the remaining C-DRX cycle do not include measurement Time domain position. Therefore, the activation periods of cycle 1, cycle 3, and cycle 5 can be determined as the target time domain position, which is shown by shading in FIG. 12.
  • FIG. 13 is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application.
  • the position where the C-DRX activation period overlaps with the time domain position measured by the terminal device can cover all or part of a C-DRX activation period. As shown in Figure 13, the entire activation period of cycle 1 and the measured time domain The positions overlap, and only part of the activation period of cycle 5 overlaps with the measured time domain position.
  • the activation periods of cycle 1 and cycle 5 can be determined as target time domain positions, as shown in the shaded part in the figure.
  • the base station sends a power saving signal to the terminal device.
  • the base station sends a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor the PDCCH in the first C-DRX cycle.
  • the power saving signal can also be a power saving channel when it is implemented, which is not limited here.
  • the base station may configure a power saving signal for the terminal device to indicate that the terminal device is in the sleep state or awake state in the next one or more C-DRX cycles.
  • the power saving signal can also indicate whether the terminal device performs channel state information (CSI) measurement, and the specific function of the power saving signal is not limited here.
  • the base station may send a power saving signal to the terminal device before each C-DRX cycle, or may send a power saving signal to the terminal device every preset number of C-DRX cycles, which is not limited here.
  • FIG. 14 is a schematic diagram of an embodiment of a power saving signal sending manner.
  • the power saving signal may be sent to the terminal device at the beginning of a C-DRX cycle or before a C-DRX cycle.
  • arrows are used to represent the base station sending a power saving signal to the terminal device.
  • the power saving signal sent before the first C-DRX cycle instructs the terminal device to monitor the PDCCH during the active period of the first C-DRX cycle, and the solid-line frame represents the terminal device monitoring PDCCH;
  • the power saving signal sent before two C-DRX cycles indicates that the terminal device does not monitor the PDCCH during the activation period of the first C-DRX cycle, and the solid line frame represents that the terminal device does not monitor the PDCCH.
  • the base station may send a power saving signal to the terminal equipment to instruct the terminal equipment to monitor in the first C-DRX cycle PDCCH.
  • the base station may also send a power saving signal to the terminal device to instruct the terminal device to monitor or not to monitor the PDCCH in the second C-DRX cycle.
  • FIG. 15 is a schematic diagram of another embodiment of the scheduling method of the terminal device in the embodiment of the application.
  • the base station transmits a power saving signal to the terminal device before each C-DRX cycle, due to cycle 1, cycle 3
  • the activation period of cycle 5 is determined as the target time domain position. Therefore, before cycle 1, cycle 3, and cycle 5, the function saving signal sent by the base station instructs the terminal device to monitor the PDCCH during the activation period of cycle 1, cycle 3, and cycle 5.
  • the base station can also send a power saving signal to the terminal device according to actual needs, such as whether there is data to be sent, etc.
  • the power saving signal may instruct the terminal device to monitor the PDCCH, for example, the terminal device monitors the PDCCH during the active period of cycle 2, or the power saving signal may also indicate the terminal device not to monitor the PDCCH, for example, the terminal device does not monitor the PDCCH during the active period of cycle 4 , Shown in the figure with a dashed frame.
  • the terminal device determines the target time domain location
  • the terminal device receives a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor the PDCCH in the first C-DRX cycle.
  • the terminal device may determine the activation period of the first C-DRX cycle as the target time domain position according to the power saving signal.
  • the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device.
  • the base station schedules terminal equipment at the target time domain position
  • Step 1108 is similar to step 506 in the embodiment corresponding to FIG. 5, and will not be repeated here.
  • the target time domain position including the measured DRX activation period is indicated by the power saving signal mode.
  • FIG. 16 is a schematic diagram of interaction in another embodiment of the scheduling method of terminal equipment in an embodiment of this application.
  • a base station sends an SMTC to a terminal device
  • the base station sends discontinuous reception C-DRX configuration information to the terminal device;
  • the terminal device determines the time domain position of the measurement
  • the terminal device sends the first information to the base station.
  • the base station determines the target time domain position
  • Steps 1601 to 1605 are similar to steps 1101 to 1105 in the embodiment corresponding to FIG. 11, and are not repeated here.
  • the base station sends a power saving signal mode to the terminal device.
  • the base station may send a power saving signal mode to the terminal device.
  • the base station configures a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and send the second power saving signal to the terminal device, the first power saving The signal is used to indicate whether the terminal device monitors the PDCCH in the first C-DRX cycle, and the second power saving signal is used to indicate whether the terminal device monitors the PDCCH in the second C-DRX cycle.
  • the base station sends the power saving signal mode to the terminal device, so that the terminal device can obtain the following information: the power saving signal is not monitored before the first C-DRX cycle, and the PDCCH is monitored during the active period of the first C-DRX cycle by default, Before the second C-DRX cycle, monitor the second power saving signal sent by the base station, and determine whether to monitor the PDCCH in the active period of the second C-DRX cycle according to the indication of the second power saving signal.
  • the base station determines that the activation periods of cycle 1 and cycle 5 are the target time domain positions. Therefore, the base station does not send to the terminal equipment a power saving signal indicating whether to monitor PDCCH during cycle 1 and cycle 5 And, before cycle 2, cycle 3, and cycle 4, the base station sends a power saving signal to the terminal device.
  • the power saving signal can instruct the terminal device to monitor the PDCCH, such as the activation of cycle 3
  • the terminal device monitors the PDCCH during the period; or, the power saving signal may also indicate that the terminal device does not monitor the PDCCH. For example, the terminal device does not monitor the PDCCH during the activation period of cycle 2 and cycle 4, as shown by a dashed box in the figure.
  • the base station sends a second power saving signal to the terminal device.
  • the base station sends a second power saving signal to the terminal device according to the appointment of the power saving signal mode, indicating whether the terminal device monitors the PDCCH in the second C-DRX cycle.
  • the terminal device receives the second power saving signal sent by the base station, and determines, according to the second power saving signal, whether to monitor or not monitor the PDCCH in the second C-DRX cycle.
  • the power saving signal may instruct the terminal device to monitor the PDCCH, for example, the terminal device monitors the PDCCH during the active period of cycle 3; or, the power saving signal may also instruct the terminal device not to monitor the PDCCH, such as the active period terminal equipment of cycle 2 and cycle 4. PDCCH is not monitored.
  • the terminal device determines the target time domain location
  • the terminal device determines the active period of the first C-DRX cycle as the target time domain position according to the indication of the power saving signal mode.
  • the terminal device may also determine the second C-DRX cycle in which the PDCCH needs to be monitored according to the received second power saving signal.
  • the base station schedules the terminal equipment at the target time domain position
  • the base station schedules the terminal device at the determined target time domain location, and the terminal device can receive the scheduling of the base station at the target time domain location.
  • the terminal device may also receive the base station scheduling in the second C-DRX cycle in which it is determined that the PDCCH needs to be monitored according to an indication of the received second power saving signal.
  • the base station may select a part of the target time domain location to schedule the terminal device, for example, determine whether to schedule the terminal device at the target time domain location according to whether there is data to be sent.
  • FIG. 18 is a schematic diagram of an embodiment of a terminal device in an embodiment of this application.
  • the sending unit 1801 is used to send first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device;
  • the determining unit 1802 is configured to determine a target time domain position according to the first information, where the target time domain position is a time domain position that the terminal device can receive scheduling by the base station.
  • the determining unit 1802 is specifically configured to determine that the time domain position measured by the terminal device is the target time domain position.
  • the terminal device also includes: a receiving unit 1803, configured to receive discontinuous reception C-DRX configuration information sent by the base station; the determining unit 1802 is specifically configured to: according to the C-DRX configuration information and the time domain position measured by the terminal device Determine the time domain location of the target.
  • the determining unit 1802 is specifically configured to determine, according to the C-DRX configuration information, the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
  • the determining unit 1802 is specifically configured to determine a first C-DRX cycle and a second C-DRX cycle according to the C-DRX configuration information, and the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, The activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; determine the first C-DRX cycle The active period of the DRX cycle is the target time domain position.
  • the receiving unit 1803 is further configured to: receive a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor the physical downlink control channel in the first C-DRX cycle; the determining unit 1802 is specifically configured to: The active period of the first C-DRX cycle is determined as the target time domain position according to the power saving signal.
  • the receiving unit 1803 is further configured to receive a power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device.
  • the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle
  • the second power saving signal is used to indicate that the terminal device is in the second C-DRX cycle Whether to monitor the physical downlink control channel.
  • the receiving unit 1803 is further configured to: receive the second power saving signal sent by the base station; the determining unit 1802 is also configured to determine, according to the second power saving signal, whether to monitor or not to monitor physical properties in the second C-DRX cycle Downlink control channel.
  • the receiving unit 1803 is further used for: receiving measurement configuration information sent by the base station, the measurement configuration information indicating the time domain position of the terminal device that can be used for measurement; the determining unit 1802 is also used for determining to perform the measurement according to the measurement configuration information Time domain position.
  • the receiving unit 1803 is further configured to receive the scheduling of the base station at the target time domain position.
  • FIG. 19 is a schematic diagram of an embodiment of a base station in an embodiment of this application.
  • the receiving unit 1901 is configured to receive first information sent by a terminal device, where the first information is used to indicate a time domain position measured by the terminal device;
  • the determining unit 1902 is configured to determine a target time domain location according to the first information, where the target time domain location is a time domain location that can be used to schedule the terminal device.
  • the determining unit 1902 is further configured to determine the time domain position measured by the terminal device according to the first information.
  • the determining unit 1902 is specifically configured to determine that the time domain position measured by the terminal device is the target time domain position.
  • the base station further includes: a sending unit 1903, configured to send discontinuous reception C-DRX configuration information to the terminal device;
  • the determining unit 1902 is specifically configured to determine the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information.
  • the determining unit 1902 is specifically configured to determine, according to the C-DRX configuration information, the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
  • the determining unit 1902 is specifically configured to determine the first C-DRX cycle and the second C-DRX cycle according to the C-DRX configuration information, and the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, The activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; determine the first C-DRX cycle The active period of the DRX cycle is the target time domain position.
  • the sending unit 1903 is further configured to send a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor the physical downlink control channel in the first C-DRX cycle.
  • the base station further includes: a configuration unit 1904, configured to configure a power saving signal mode for the terminal device, the power saving signal mode for instructing the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device
  • a configuration unit 1904 configured to configure a power saving signal mode for the terminal device, the power saving signal mode for instructing the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device
  • a power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle
  • the second power saving signal is used to indicate that the terminal device is in the second C-DRX cycle. Whether to monitor the physical downlink control channel in the DRX cycle.
  • the sending unit 1903 is further configured to send the second power saving signal to the terminal device.
  • the sending unit 1903 is further configured to send measurement configuration information to the terminal device, where the measurement configuration information indicates a time domain location that the terminal device can use for measurement.
  • the base station also includes: a scheduling unit 1905, configured to schedule the terminal device at the target time domain location.
  • FIG. 20 is a schematic diagram of another embodiment of a terminal device in an embodiment of this application.
  • the terminal device provided in this embodiment does not limit its specific device form.
  • the terminal device 2000 may have relatively large differences due to different configurations or performances, and may include one or more processors 2001 and a memory 2005, and the memory 2005 stores programs or data.
  • the memory 2005 may be volatile storage or non-volatile storage.
  • the processor 2001 may communicate with the memory 2005, and execute a series of instructions in the memory 2005 on the terminal device 2000. It can be understood that if the processor 2001 is an ASIC chip or the like that can store instructions, the memory 2005 may not exist.
  • the terminal device 2000 can also include one or more power supplies 2002; one or more wired or wireless network interfaces 2003, such as an Ethernet interface; one or more input and output interfaces 2004, which can be used to connect a monitor, a mouse, The keyboard, touch screen device or sensor device, etc., the input and output interface 2004 is an optional component, which may or may not exist, and is not limited here.
  • FIG. 21 is a schematic diagram of another embodiment of a base station in an embodiment of this application.
  • the base station provided in this embodiment does not limit its specific equipment form.
  • the base station 2100 may have relatively large differences due to different configurations or performances, and may include one or more processors 2101 and a memory 2105, and the memory 2105 stores programs or data.
  • the memory 2105 may be volatile storage or non-volatile storage.
  • the processor 2101 may communicate with the memory 2105, and execute a series of instructions in the memory 2105 on the base station 2100. It is understandable that if the processor 2101 is an ASIC chip or the like that can store instructions, the memory 2105 may not exist.
  • the base station 2100 may also include one or more power supplies 2102; one or more wired or wireless network interfaces 2103, such as an Ethernet interface; one or more input and output interfaces 2104, which can be used to connect a monitor, a mouse, and a keyboard For touch screen devices or sensing devices, etc., the input/output interface 2104 is an optional component, which may or may not exist, and is not limited here.
  • the disclosed system, device, and method may be implemented in other ways.
  • the device embodiments described above are only illustrative.
  • the division of the units is only a logical function division, and there may be other divisions in actual implementation, for example, multiple units or components can be combined or It can be integrated into another system, or some features can be ignored or not implemented.
  • the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical or other forms.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of the embodiments.
  • each unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated unit can be implemented in the form of hardware or software functional unit.
  • the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium.
  • the technical solution of this application essentially or the part that contributes to the existing technology or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium , Including several instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the method described in each embodiment of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (read-only memory, ROM), random access memory (random access memory, RAM), magnetic disk or optical disk and other media that can store program code .

Abstract

A scheduling method for a terminal device, which is used to reduce the power consumption waste of the terminal device. The method comprises: a terminal device sending first information to a base station, the first information being used to indicate a time domain position measured by the terminal device; according to the first information, the terminal device determining a target time domain position, the target time domain position being a time domain position at which the terminal device may receive scheduling by the base station.

Description

终端设备的调度方法、终端设备和基站Scheduling method of terminal equipment, terminal equipment and base station 技术领域Technical field
本申请涉及通信技术领域,特别涉及一种终端设备的调度方法、终端设备和基站。This application relates to the field of communication technology, and in particular to a scheduling method of terminal equipment, terminal equipment and base stations.
背景技术Background technique
由于数据流通常是突发性的,在没有数据传输的时候可以通过关闭终端设备的接收电路来降低功耗,从而提升电池使用时间。连接态下的非连续接收(connected discontinuous reception,C-DRX)机制是指为终端设备配置C-DRX循环(C-DRX cycle),C-DRX cycle由“On Duration”和“Opportunity for DRX”组成。请参阅图1,在“On Duration”时间段内为激活期,终端设备监测并接收物理下行控制信道(physical downlink control channel,PDCCH),在“Opportunity for DRX”时间段内为休眠期,终端设备不接收PDCCH以减少功耗。Since the data flow is usually bursty, when there is no data transmission, the power consumption can be reduced by turning off the receiving circuit of the terminal device, thereby increasing the battery life. The connected discontinuous reception (C-DRX) mechanism in the connected state refers to configuring the C-DRX cycle (C-DRX cycle) for the terminal device. The C-DRX cycle is composed of "On Duration" and "Opportunity for DRX" . Refer to Figure 1. The "On Duration" period is the activation period. The terminal device monitors and receives the physical downlink control channel (PDCCH). The "Opportunity for DRX" period is the sleep period. The terminal device Do not receive PDCCH to reduce power consumption.
终端设备进行同频(intra-frequency)测量时,从基站发送的同步信号块测量时间配置(synchronisation signal block measurement time configuration,SMTC)中确定进行测量的位置,开启接收电路以接收参考信号。When the terminal device performs intra-frequency measurement, the synchronization signal block measurement time configuration (synchronisation signal block measurement time configuration, SMTC) sent from the base station determines the location to perform the measurement and turns on the receiving circuit to receive the reference signal.
由于现有技术中,基站仅根据C-DRX机制,在C-DRX的激活期调度终端设备,当在终端设备处于C-DRX休眠期时,基站不会调度终端设备,终端设备将关闭接收电路以降低功耗。若在C-DRX休眠期,终端设备恰需进行同频测量,终端设备将为接收参考信号而开启接收电路,造成功耗浪费。In the prior art, the base station only schedules terminal equipment during the C-DRX active period according to the C-DRX mechanism. When the terminal equipment is in the C-DRX dormant period, the base station will not schedule the terminal equipment and the terminal equipment will turn off the receiving circuit To reduce power consumption. If during the C-DRX dormant period, the terminal device just needs to perform the same frequency measurement, the terminal device will turn on the receiving circuit to receive the reference signal, resulting in waste of power consumption.
发明内容Summary of the invention
本申请实施例提供了一种终端设备的调度方法,用于减少终端设备功耗浪费。The embodiment of the present application provides a method for scheduling a terminal device to reduce waste of power consumption of the terminal device.
本申请实施例第一方面提供了一种终端设备的调度方法,包括:终端设备向基站发送的第一信息,该第一信息用于指示该终端设备测量的时域位置;该终端设备根据该第一信息确定目标时域位置,该目标时域位置为该终端设备可接收该基站调度的时域位置。The first aspect of the embodiments of the present application provides a method for scheduling a terminal device, including: first information sent by the terminal device to a base station, where the first information is used to indicate a time domain position measured by the terminal device; The first information determines a target time domain position, and the target time domain position is a time domain position scheduled by the base station that the terminal device can receive.
终端设备进行同频测量时处于唤醒状态,可以在接收参考信号的同时监测PDCCH。终端设备可以根据需要确定进行测量的时域位置,本申请实施例提供的方法中,终端设备将指示该终端设备测量的时域位置的第一信息发送给基站,终端设备和基站都可以根据第一信息确定可用于调度终端设备的目标时域位置,由于终端设备在测量时域位置将打开接收电路产生功耗,若基站在目标时域位置调度终端设备则可以充分利用终端设备测量时唤醒消耗的电能,减少功耗浪费。The terminal equipment is in the wake-up state when performing co-frequency measurement, and can monitor the PDCCH while receiving the reference signal. The terminal device can determine the time domain position for measurement as required. In the method provided in the embodiment of the present application, the terminal device sends the first information indicating the time domain position measured by the terminal device to the base station, and both the terminal device and the base station can be based on the One information determines the target time domain position that can be used to schedule terminal equipment. Since the terminal equipment will turn on the receiving circuit to generate power consumption when measuring the time domain position, if the base station schedules the terminal equipment at the target time domain position, it can make full use of the wake-up consumption of the terminal equipment during measurement. The electric energy reduces the waste of power consumption.
在第一方面的一种可能的实现方式中,该终端设备根据该第一信息确定目标时域位置包括:该终端设备确定该终端设备测量的时域位置为该目标时域位置。In a possible implementation manner of the first aspect, the terminal device determining the target time domain position according to the first information includes: the terminal device determining that the time domain position measured by the terminal device is the target time domain position.
本申请实施例提供的终端设备的调度方法,可以直接将终端设备测量的时域位置确定为可进行调度的目标时域位置,提供了确定目标时域位置的一种简便的方法。The scheduling method of the terminal device provided by the embodiment of the present application can directly determine the time domain position measured by the terminal device as the target time domain position that can be scheduled, and provides a convenient method for determining the target time domain position.
在第一方面的一种可能的实现方式中,该方法还包括:该终端设备接收该基站发送的非连续接收C-DRX配置信息;该终端设备根据该第一信息确定目标时域位置包括:该终端设备根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置。In a possible implementation of the first aspect, the method further includes: the terminal device receives discontinuous reception C-DRX configuration information sent by the base station; and the terminal device determining the target time domain position according to the first information includes: The terminal device determines the target time domain location according to the C-DRX configuration information and the time domain location measured by the terminal device.
本申请实施例提供的终端设备的调度方法,终端设备可以根据C-DRX配置信息和该终端设备测量的时域位置确定目标时域位置,由于C-DRX的激活期终端设备可能处于唤醒状态,终端设备在测量的时域 位置也处于唤醒状态,根据二者共同确定目标时域位置可以提高功耗的利用率。According to the scheduling method of the terminal device provided by the embodiment of the present application, the terminal device can determine the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device. Since the terminal device may be in an awake state during the activation period of the C-DRX, The terminal device is also in the awake state at the measured time domain position, and determining the target time domain position based on the two together can improve the utilization rate of power consumption.
在第一方面的一种可能的实现方式中,该终端设备根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置包括:该终端设备根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。In a possible implementation manner of the first aspect, the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device includes: the terminal device according to the C-DRX configuration information It is determined that the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
本申请实施例提供的终端设备的调度方法,终端设备确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置,可以即进行测量又接收调度,提高功耗的利用率。In the scheduling method of the terminal device provided by the embodiment of the application, the terminal device determines that the position where the activation period of C-DRX and the time domain position measured by the terminal device overlaps is the target time domain position, which can perform measurement and receive scheduling, thereby improving performance Consumption utilization.
在第一方面的一种可能的实现方式中,该终端设备根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置包括:该终端设备根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;该终端设备确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation manner of the first aspect, the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device includes: the terminal device according to the C-DRX configuration information Determine the first C-DRX cycle and the second C-DRX cycle, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and the activation period of the second C-DRX cycle does not include the terminal device The measured time domain position, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the terminal device determines that the activation period of the first C-DRX cycle is the target time domain position.
本申请实施例提供的终端设备的调度方法,终端设备确定激活期包含该终端设备测量的时域位置的第一C-DRX周期为目标时域位置,在目标时域位置可以即进行测量又接收调度,提高功耗的利用率。In the method for scheduling a terminal device provided by the embodiment of the application, the terminal device determines that the first C-DRX cycle in which the active period includes the time domain position measured by the terminal device is the target time domain position, and the target time domain position can be measured and received Scheduling to improve the utilization of power consumption.
在第一方面的一种可能的实现方式中,该方法还包括:该终端设备接收该基站发送的功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测物理下行控制信道;该终端设备确定该第一C-DRX周期的激活期为该目标时域位置包括:该终端设备根据该功率节省信号确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation of the first aspect, the method further includes: the terminal device receives a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor in the first C-DRX cycle Physical downlink control channel; when the terminal device determines that the activation period of the first C-DRX cycle is the target time domain position includes: the terminal device determines that the activation period of the first C-DRX cycle is the target time according to the power saving signal Domain location.
本申请实施例提供的终端设备的调度方法,终端设备可以根据基站发送的功率节省信号确定激活期包含该终端设备测量的时域位置的第一C-DRX周期为目标时域位置,在目标时域位置可以即进行测量又接收调度,提高功耗的利用率。According to the method for scheduling terminal equipment provided by the embodiments of the present application, the terminal equipment can determine, according to the power saving signal sent by the base station, that the first C-DRX cycle including the time domain position measured by the terminal equipment during the activation period is the target time domain position. The domain location can perform measurement and receive scheduling, which improves the utilization rate of power consumption.
在第一方面的一种可能的实现方式中,该方法还包括:该终端设备接收该基站配置的功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测物理下行控制信道。In a possible implementation of the first aspect, the method further includes: the terminal device receives a power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power to the terminal device Saving signal and sending a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used for Indicate whether the terminal device monitors the physical downlink control channel in the second C-DRX cycle.
本申请实施例提供的终端设备的调度方法,终端设备可以收基站配置的功率节省信号模式,在包含该终端设备测量的时域位置的第一C-DRX周期的激活期默认监测PDCCH,可以即进行测量又接收调度,提高功耗的利用率。此外,在第一C-DRX周期前,终端设备可以不监测功率节省信号,节省功耗。In the scheduling method of terminal equipment provided by the embodiment of the application, the terminal equipment can receive the power saving signal mode configured by the base station, and monitor the PDCCH by default during the activation period of the first C-DRX cycle including the time domain position measured by the terminal equipment. Perform measurement and receive scheduling to improve the utilization rate of power consumption. In addition, before the first C-DRX cycle, the terminal device may not monitor the power saving signal to save power consumption.
在第一方面的一种可能的实现方式中,该方法还包括:该终端设备接收该基站发送的该第二功率节省信号;该终端设备根据该第二功率节省信号确定在该第二C-DRX周期中监测或不监测物理下行控制信道。In a possible implementation manner of the first aspect, the method further includes: the terminal device receives the second power saving signal sent by the base station; and the terminal device determines that the terminal device is in the second C-saving signal according to the second power saving signal. The physical downlink control channel is monitored or not monitored during the DRX cycle.
本申请实施例提供的终端设备的调度方法,终端设备接收该基站发送的该第二功率节省信号,根据第二功率节省信号的指示确定在该第二C-DRX周期中监测或不监测物理下行控制信道,增加了方案实现的完整性。In the method for scheduling a terminal device provided by an embodiment of the present application, the terminal device receives the second power saving signal sent by the base station, and determines whether to monitor or not monitor the physical downlink in the second C-DRX cycle according to an indication of the second power saving signal The control channel increases the completeness of the solution implementation.
在第一方面的一种可能的实现方式中,该方法还包括:该终端设备接收该基站发送的测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置;该终端设备根据该测量配置信息确定进行测量的时域位置。In a possible implementation of the first aspect, the method further includes: the terminal device receives measurement configuration information sent by the base station, the measurement configuration information indicating a time domain position that the terminal device can use for measurement; the terminal device According to the measurement configuration information, the time domain position for measurement is determined.
本申请实施例提供的终端设备的调度方法,终端设备接收该基站发送的测量配置信息,可以根据测量配置信息确定进行测量的时域位置,增加了方案实现的完整性。In the method for scheduling a terminal device provided by the embodiment of the present application, the terminal device receives the measurement configuration information sent by the base station, and can determine the time domain position for measurement according to the measurement configuration information, which increases the completeness of the implementation of the solution.
在第一方面的一种可能的实现方式中,该方法还包括:该终端设备在该目标时域位置接收该基站的 调度。In a possible implementation manner of the first aspect, the method further includes: the terminal device receives the scheduling of the base station at the target time domain location.
本申请实施例提供的终端设备的调度方法,终端设备在该目标时域位置接收该基站的调度,可以充分利用测量时终端设备唤醒状态的功耗,减少终端设备功耗浪费。In the method for scheduling a terminal device provided by the embodiment of the application, the terminal device receives the scheduling of the base station at the target time domain position, which can make full use of the power consumption of the terminal device in the wake-up state during measurement, and reduce waste of power consumption of the terminal device.
本申请实施例第二方面提供了一种终端设备的调度方法,包括:基站接收终端设备发送的第一信息,该第一信息用于指示该终端设备测量的时域位置;该基站根据该第一信息确定目标时域位置,该目标时域位置为可用于调度该终端设备的时域位置。A second aspect of the embodiments of the present application provides a method for scheduling a terminal device, including: a base station receives first information sent by the terminal device, the first information is used to indicate a time domain position measured by the terminal device; A piece of information determines a target time domain location, and the target time domain location is a time domain location that can be used to schedule the terminal device.
终端设备进行同频测量时处于唤醒状态,可以在接收参考信号的同时监测PDCCH。终端设备可以根据需要确定进行测量的时域位置,本申请实施例提供的方法中,基站接收指示该终端设备测量的时域位置的第一信息,并根据第一信息确定可用于调度终端设备的目标时域位置,由于终端设备在测量时域位置将打开接收电路产生功耗,若基站在目标时域位置调度终端设备则可以充分利用终端设备测量时唤醒消耗的电能,减少功耗浪费。The terminal equipment is in the wake-up state when performing co-frequency measurement, and can monitor the PDCCH while receiving the reference signal. The terminal device can determine the time-domain position for measurement as required. In the method provided in the embodiment of the present application, the base station receives first information indicating the time-domain position measured by the terminal device, and based on the first information, determines the time domain position that can be used to schedule the terminal device. For the target time domain position, since the terminal device will turn on the receiving circuit to generate power consumption when measuring the time domain position, if the base station schedules the terminal device at the target time domain position, it can make full use of the power consumed when the terminal device is awakened during measurement and reduce waste of power consumption.
在第二方面的一种可能的实现方式中,该基站接收终端设备发送的第一信息之后,该方法还包括:该基站根据该第一信息确定该终端设备测量的时域位置。In a possible implementation manner of the second aspect, after the base station receives the first information sent by the terminal device, the method further includes: the base station determines the time domain position measured by the terminal device according to the first information.
在第二方面的一种可能的实现方式中,该基站根据该第一信息确定目标时域位置包括:该基站确定该终端设备测量的时域位置为该目标时域位置。In a possible implementation manner of the second aspect, the base station determining the target time domain position according to the first information includes: the base station determining that the time domain position measured by the terminal device is the target time domain position.
本申请实施例提供的终端设备的调度方法,可以直接将终端设备测量的时域位置确定为可进行调度的目标时域位置,提供了确定目标时域位置的一种简便的方法。The scheduling method of the terminal device provided by the embodiment of the present application can directly determine the time domain position measured by the terminal device as the target time domain position that can be scheduled, and provides a convenient method for determining the target time domain position.
在第二方面的一种可能的实现方式中,该方法还包括:该基站向该终端设备发送非连续接收C-DRX配置信息;该基站根据该第一信息确定目标时域位置包括:该基站根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置。In a possible implementation manner of the second aspect, the method further includes: the base station sends discontinuous reception C-DRX configuration information to the terminal device; the base station determining the target time domain position according to the first information includes: the base station The target time domain position is determined according to the time domain position measured by the terminal device and the C-DRX configuration information.
本申请实施例提供的终端设备的调度方法,基站可以根据C-DRX配置信息和该终端设备测量的时域位置确定目标时域位置,由于C-DRX的激活期终端设备可能处于唤醒状态,终端设备在测量的时域位置也处于唤醒状态,根据二者共同确定目标时域位置可以提高功耗的利用率。In the method for scheduling terminal equipment provided by the embodiments of this application, the base station can determine the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal equipment. Since the terminal equipment may be in an awake state during the activation period of the C-DRX, the terminal The device is also in the awake state at the measured time domain position, and determining the target time domain position based on the two together can improve the utilization rate of power consumption.
在第二方面的一种可能的实现方式中,该基站根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置包括:该基站根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。In a possible implementation manner of the second aspect, the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information includes: the base station determining C according to the C-DRX configuration information -The position where the DRX activation period overlaps with the time domain position measured by the terminal device is the target time domain position.
本申请实施例提供的终端设备的调度方法,基站确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置,在目标时域位置可以即进行测量又接收调度,提高功耗的利用率。In the method for scheduling terminal equipment provided by the embodiments of the present application, the base station determines that the position where the C-DRX activation period overlaps with the time domain position measured by the terminal equipment is the target time domain position, and the target time domain position can be measured and received Scheduling to improve the utilization of power consumption.
在第二方面的一种可能的实现方式中,该基站根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置包括:该基站根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;该基站确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation manner of the second aspect, the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information includes: the base station determining the first time domain position according to the C-DRX configuration information A C-DRX cycle and a second C-DRX cycle, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and the activation period of the second C-DRX cycle does not include the terminal device measurement Time domain position, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the base station determines the activation period of the first C-DRX cycle as the target time domain position.
本申请实施例提供的终端设备的调度方法,基站可以确定激活期包含该终端设备测量的时域位置的第一C-DRX周期为目标时域位置,在目标时域位置可以即进行测量又接收调度,提高功耗的利用率。In the method for scheduling terminal equipment provided by the embodiments of the present application, the base station can determine that the first C-DRX cycle in which the active period includes the time domain position measured by the terminal equipment is the target time domain position, and the target time domain position can be measured and received Scheduling to improve the utilization of power consumption.
在第二方面的一种可能的实现方式中,该方法还包括:该基站向该终端设备发送功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测物理下行控制信道。In a possible implementation of the second aspect, the method further includes: the base station sends a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor physical data in the first C-DRX cycle Downlink control channel.
本申请实施例提供的终端设备的调度方法,基站可以根据基站发送的功率节省信号确定激活期包含该终端设备测量的时域位置的第一C-DRX周期为目标时域位置,在目标时域位置可以即进行测量又接收 调度,提高功耗的利用率。In the method for scheduling a terminal device provided by the embodiment of the present application, the base station may determine, according to the power saving signal sent by the base station, that the first C-DRX cycle including the time domain position measured by the terminal device in the active period is the target time domain position. The location can perform measurement and receive scheduling, improving the utilization rate of power consumption.
在第二方面的一种可能的实现方式中,该方法还包括:该基站为该终端设备配置功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测物理下行控制信道。In a possible implementation of the second aspect, the method further includes: the base station configures a power saving signal mode for the terminal device, the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device Signal and send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate Whether the terminal device monitors the physical downlink control channel in the second C-DRX cycle.
本申请实施例提供的终端设备的调度方法,基站可以向终端设备发送功率节省信号模式,终端设备在包含该终端设备测量的时域位置的第一C-DRX周期的激活期默认监测PDCCH,可以即进行测量又接收调度,提高功耗的利用率。此外,在第一C-DRX周期前,终端设备可以不监测功率节省信号,节省功耗。In the method for scheduling terminal equipment provided by the embodiments of the present application, the base station can send a power saving signal mode to the terminal equipment, and the terminal equipment monitors the PDCCH by default during the activation period of the first C-DRX cycle that includes the time domain position measured by the terminal equipment. The measurement is performed and the scheduling is received, which improves the utilization rate of power consumption. In addition, before the first C-DRX cycle, the terminal device may not monitor the power saving signal to save power consumption.
在第二方面的一种可能的实现方式中,该方法还包括:该基站向该终端设备发送该第二功率节省信号。In a possible implementation manner of the second aspect, the method further includes: the base station sends the second power saving signal to the terminal device.
本申请实施例提供的终端设备的调度方法,该基站可以向终端设备发送该第二功率节省信号,根据第二功率节省信号的指示确定在该第二C-DRX周期中监测或不监测物理下行控制信道,增加了方案实现的完整性。In the method for scheduling terminal equipment provided by the embodiments of the present application, the base station may send the second power saving signal to the terminal equipment, and determine whether to monitor or not monitor the physical downlink in the second C-DRX cycle according to the indication of the second power saving signal The control channel increases the completeness of the solution implementation.
在第二方面的一种可能的实现方式中,该方法还包括:该基站向该终端设备发送测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置。In a possible implementation manner of the second aspect, the method further includes: the base station sends measurement configuration information to the terminal device, the measurement configuration information indicating a time domain location that the terminal device can use for measurement.
本申请实施例提供的终端设备的调度方法,基站可以向终端设备发送测量配置信息,终端设备可以根据测量配置信息确定进行测量的时域位置,增加了方案实现的完整性。In the method for scheduling terminal equipment provided in the embodiments of the present application, the base station can send measurement configuration information to the terminal equipment, and the terminal equipment can determine the time domain position for measurement according to the measurement configuration information, which increases the completeness of the implementation of the solution.
在第二方面的一种可能的实现方式中,该方法还包括:该基站在该目标时域位置调度该终端设备。In a possible implementation manner of the second aspect, the method further includes: the base station schedules the terminal device at the target time domain location.
本申请实施例提供的终端设备的调度方法,基站可以在该目标时域位置调度终端设备,可以充分利用测量时终端设备唤醒状态的功耗,减少终端设备功耗浪费。In the method for scheduling a terminal device provided by the embodiment of the present application, the base station can schedule the terminal device at the target time domain position, and can make full use of the power consumption of the terminal device in the wake-up state during measurement, thereby reducing waste of power consumption of the terminal device.
本申请实施例第三方面提供了一种终端设备的调度方法,包括:终端设备接收基站发送的功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该第二C-DRX周期中是否监测物理下行控制信道,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;该终端设备根据该功率节省信号模式接收该第二功率节省信号。A third aspect of the embodiments of the present application provides a method for scheduling a terminal device, including: the terminal device receives a power saving signal mode sent by a base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device Signal and send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether to monitor the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate the second C-DRX cycle -Whether to monitor the physical downlink control channel in the DRX cycle, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the terminal device receives the second power saving signal according to the power saving signal mode .
在第三方面的一种可能的实现方式中,该第一C-DRX周期的激活期包含该终端设备的终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备的终端设备测量的时域位置。In a possible implementation manner of the third aspect, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device, and the activation period of the second C-DRX cycle does not include the terminal The time domain position measured by the terminal device of the device.
在第三方面的一种可能的实现方式中,该终端设备接收基站发送的功率节省信号模式该方法还包括:该终端设备根据该功率节省信号模式在第一C-DRX周期的激活期监测PDCCH,该第一C-DRX周期的激活期包含该终端设备的终端设备测量的时域位置。In a possible implementation manner of the third aspect, the terminal device receives the power saving signal mode sent by the base station. The method further includes: the terminal device monitors the PDCCH in the active period of the first C-DRX cycle according to the power saving signal mode , The activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device.
在第三方面的一种可能的实现方式中,该终端设备接收基站发送的功率节省信号模式模式之前,该方法还包括:该终端设备接收该基站发送的测量配置信息,该测量配置信息用于指示该终端设备可用于进行测量的时域位置。In a possible implementation manner of the third aspect, before the terminal device receives the power saving signal mode mode sent by the base station, the method further includes: the terminal device receives measurement configuration information sent by the base station, where the measurement configuration information is used for Indicates the time domain location of the terminal device that can be used for measurement.
在第三方面的一种可能的实现方式中,该终端设备接收基站发送的功率节省信号模式之前,该方法还包括:该终端设备向该基站发送第一信息,该第一信息用于指示该终端设备测量的时域位置。In a possible implementation of the third aspect, before the terminal device receives the power saving signal mode sent by the base station, the method further includes: the terminal device sends first information to the base station, and the first information is used to indicate the The time domain position measured by the terminal device.
本申请实施例第四方面提供了一种终端设备的调度方法,包括:基站为终端设备配置功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该第二C-DRX周期中是否监测物理下行控制信道,该第一C-DRX周期与该第 二C-DRX周期为不同的C-DRX周期;该基站根据该功率节省信号模式发送该第二功率节省信号。The fourth aspect of the embodiments of the present application provides a scheduling method for terminal equipment, including: a base station configures a power saving signal mode for the terminal equipment, the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal equipment And send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the physical downlink control channel is monitored in the first C-DRX cycle, and the second power saving signal is used to indicate the second C-DRX cycle. Whether to monitor the physical downlink control channel in the DRX cycle, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the base station sends the second power saving signal according to the power saving signal mode.
在第四方面的一种可能的实现方式中,该第一C-DRX周期的激活期包含该终端设备的终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备的终端设备测量的时域位置。In a possible implementation manner of the fourth aspect, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device, and the activation period of the second C-DRX cycle does not include the terminal The time domain position measured by the terminal device of the device.
在第四方面的一种可能的实现方式中,该基站为该终端设备配置功率节省信号模式之前,该方法还包括:该基站接收终端设备发送的第一信息,该第一信息用于指示该终端设备的终端设备测量的时域位置;基站为终端设备配置功率节省信号模式包括:该基站根据该第一信息确定该功率节省信号模式。In a possible implementation manner of the fourth aspect, before the base station configures the power saving signal mode for the terminal device, the method further includes: the base station receives first information sent by the terminal device, and the first information is used to indicate the The time domain position measured by the terminal device of the terminal device; the base station configuring the power saving signal mode for the terminal device includes: the base station determines the power saving signal mode according to the first information.
在第四方面的一种可能的实现方式中,该基站接收该终端设备发送的第一信息之前,该方法还包括:该基站向该终端设备发送测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置。In a possible implementation manner of the fourth aspect, before the base station receives the first information sent by the terminal device, the method further includes: the base station sends measurement configuration information to the terminal device, the measurement configuration information indicating the terminal device The time domain location available for measurement.
本申请实施例第五方面提供了一种通信装置,所述通信装置可以是终端设备,也可以是终端设备的一部分,或者也可以设置在所述终端设备中。所述通信装置可以包括用于执行前述第一方面及第一方面各种实现方式的装置、单元或模块。例如当所述通信装置为终端设备时,所述终端设备可以包括:发送单元,用于向基站发送的第一信息,该第一信息用于指示该终端设备测量的时域位置;确定单元,用于根据该第一信息确定目标时域位置,该目标时域位置为该终端设备可接收该基站调度的时域位置。或者可以包括:用于向基站发送的第一信息的装置,所述第一信息用于指示终端设备测量的时域位置;用于根据所述第一信息确定目标时域位置的装置,所述目标时域位置为所述终端设备可接收所述基站调度的时域位置。The fifth aspect of the embodiments of the present application provides a communication device, and the communication device may be a terminal device, or a part of the terminal device, or may be provided in the terminal device. The communication device may include devices, units, or modules for executing the foregoing first aspect and various implementation manners of the first aspect. For example, when the communication device is a terminal device, the terminal device may include: a sending unit for sending first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device; a determining unit, It is used to determine a target time domain position according to the first information, where the target time domain position is a time domain position that the terminal device can receive scheduling of the base station. Or it may include: means for sending first information to the base station, where the first information is used to indicate the time domain position measured by the terminal equipment; and means for determining the target time domain position according to the first information, the The target time domain position is a time domain position that the terminal device can receive scheduling by the base station.
在第五方面的一种可能的实现方式中,该确定单元具体用于:确定该终端设备测量的时域位置为该目标时域位置。In a possible implementation manner of the fifth aspect, the determining unit is specifically configured to determine that the time domain position measured by the terminal device is the target time domain position.
在第五方面的一种可能的实现方式中,该终端设备还包括:接收单元,用于接收该基站发送的非连续接收C-DRX配置信息;该确定单元具体用于:根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置。In a possible implementation manner of the fifth aspect, the terminal device further includes: a receiving unit, configured to receive discontinuous reception C-DRX configuration information sent by the base station; and the determining unit is specifically configured to: according to the C-DRX The configuration information and the time domain position measured by the terminal device determine the target time domain position.
在第五方面的一种可能的实现方式中,该确定单元具体用于:根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。In a possible implementation manner of the fifth aspect, the determining unit is specifically configured to: determine, according to the C-DRX configuration information, that the position where the C-DRX activation period overlaps the time domain position measured by the terminal device is the target Domain location.
在第五方面的一种可能的实现方式中,该确定单元具体用于:根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation manner of the fifth aspect, the determining unit is specifically configured to determine the first C-DRX cycle and the second C-DRX cycle according to the C-DRX configuration information, and the value of the first C-DRX cycle The activation period includes the time domain position measured by the terminal device, the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle is different from the second C-DRX cycle The C-DRX cycle; determine the active period of the first C-DRX cycle as the target time domain position.
在第五方面的一种可能的实现方式中,该接收单元还用于:接收该基站发送的功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测物理下行控制信道;该确定单元具体用于:根据该功率节省信号确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation manner of the fifth aspect, the receiving unit is further configured to: receive a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor physical data in the first C-DRX cycle Downlink control channel; the determining unit is specifically configured to determine the active period of the first C-DRX cycle as the target time domain position according to the power saving signal.
在第五方面的一种可能的实现方式中,该接收单元还用于:接收该基站配置的功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测物理下行控制信道。In a possible implementation of the fifth aspect, the receiving unit is further configured to: receive a power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device. Signal and send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate Whether the terminal device monitors the physical downlink control channel in the second C-DRX cycle.
在第五方面的一种可能的实现方式中,该接收单元还用于:接收该基站发送的该第二功率节省信号;该确定单元还用于,根据该第二功率节省信号确定在该第二C-DRX周期中监测或不监测物理下行控制信道。In a possible implementation manner of the fifth aspect, the receiving unit is further configured to: receive the second power saving signal sent by the base station; the determining unit is further configured to determine that the signal is in the first power saving signal according to the second power saving signal. 2. Monitoring or not monitoring the physical downlink control channel in the C-DRX cycle.
在第五方面的一种可能的实现方式中,该接收单元还用于:接收该基站发送的测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置;该确定单元还用于,根据该测量配置信息确定 进行测量的时域位置。In a possible implementation manner of the fifth aspect, the receiving unit is further configured to: receive measurement configuration information sent by the base station, where the measurement configuration information indicates a time domain position of the terminal device that can be used for measurement; the determining unit is also It is used to determine the time domain location for measurement according to the measurement configuration information.
在第五方面的一种可能的实现方式中,该接收单元还用于:在该目标时域位置接收该基站的调度。In a possible implementation manner of the fifth aspect, the receiving unit is further configured to receive the scheduling of the base station at the target time domain position.
本申请实施例第六方面提供了一种通信装置,所述通信装置可以是基站,也可以是基站的一部分,或者也可以设置在基站中。所述通信装置可以包括用于执行前述第二方面及第二方面各种实现方式的装置、单元或模块。例如当所述通信装置为基站时,所述基站可以包括:接收单元,用于接收终端设备发送的第一信息,该第一信息用于指示该终端设备测量的时域位置;确定单元,用于根据该第一信息确定目标时域位置,该目标时域位置为可用于调度该终端设备的时域位置。或者可以包括:用于接收终端设备发送的第一信息的装置,所述第一信息用于指示所述终端设备测量的时域位置;用于根据所述第一信息确定目标时域位置的装置,所述目标时域位置为可用于调度所述终端设备的时域位置。The sixth aspect of the embodiments of the present application provides a communication device. The communication device may be a base station, or a part of the base station, or may be set in the base station. The communication device may include a device, unit, or module for executing the foregoing second aspect and various implementation manners of the second aspect. For example, when the communication device is a base station, the base station may include: a receiving unit configured to receive first information sent by a terminal device, the first information being used to indicate a time domain position measured by the terminal device; After determining the target time domain location according to the first information, the target time domain location is a time domain location that can be used to schedule the terminal device. Or it may include: means for receiving first information sent by a terminal device, where the first information is used to indicate a time domain position measured by the terminal device; and means for determining a target time domain position according to the first information , The target time domain position is a time domain position that can be used to schedule the terminal device.
在第六方面的一种可能的实现方式中,该确定单元还用于:根据该第一信息确定该终端设备测量的时域位置。In a possible implementation manner of the sixth aspect, the determining unit is further configured to determine the time domain position measured by the terminal device according to the first information.
在第六方面的一种可能的实现方式中,该确定单元具体用于:确定该终端设备测量的时域位置为该目标时域位置。In a possible implementation manner of the sixth aspect, the determining unit is specifically configured to determine that the time domain position measured by the terminal device is the target time domain position.
在第六方面的一种可能的实现方式中,该基站还包括:发送单元,用于向该终端设备发送非连续接收C-DRX配置信息;该确定单元具体用于:根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置。In a possible implementation manner of the sixth aspect, the base station further includes: a sending unit, configured to send discontinuous reception C-DRX configuration information to the terminal device; the determining unit is specifically configured to: according to the terminal device's measurement The time domain location and the C-DRX configuration information determine the target time domain location.
在第六方面的一种可能的实现方式中,该确定单元具体用于:根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。In a possible implementation manner of the sixth aspect, the determining unit is specifically configured to determine, according to the C-DRX configuration information, that the position where the C-DRX activation period overlaps with the time domain position measured by the terminal device is the target Domain location.
在第六方面的一种可能的实现方式中,该确定单元具体用于:根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation manner of the sixth aspect, the determining unit is specifically configured to determine the first C-DRX cycle and the second C-DRX cycle according to the C-DRX configuration information, and the value of the first C-DRX cycle The activation period includes the time domain position measured by the terminal device, the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle is different from the second C-DRX cycle The C-DRX cycle; determine the active period of the first C-DRX cycle as the target time domain position.
在第六方面的一种可能的实现方式中,该发送单元还用于:向该终端设备发送功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测物理下行控制信道。In a possible implementation manner of the sixth aspect, the sending unit is further configured to: send a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor physical data in the first C-DRX cycle Downlink control channel.
在第六方面的一种可能的实现方式中,该基站还包括:配置单元,用于为该终端设备配置功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测物理下行控制信道。In a possible implementation manner of the sixth aspect, the base station further includes: a configuration unit configured to configure a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send a second signal to the terminal device. A power saving signal and sending a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, the second power saving signal It is used to indicate whether the terminal device monitors the physical downlink control channel in the second C-DRX cycle.
在第六方面的一种可能的实现方式中,该发送单元还用于:向该终端设备发送该第二功率节省信号。In a possible implementation manner of the sixth aspect, the sending unit is further configured to send the second power saving signal to the terminal device.
在第六方面的一种可能的实现方式中,该发送单元还用于:向该终端设备发送测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置。In a possible implementation manner of the sixth aspect, the sending unit is further configured to send measurement configuration information to the terminal device, the measurement configuration information indicating a time domain location that the terminal device can use for measurement.
在第六方面的一种可能的实现方式中,该基站还包括:调度单元,用于在该目标时域位置调度该终端设备。In a possible implementation manner of the sixth aspect, the base station further includes: a scheduling unit, configured to schedule the terminal device at the target time domain location.
本申请实施例第七方面提供了一种通信装置,所述通信装置可以是终端设备,也可以是终端设备的一部分,或者也可以设置在所述终端设备中。所述通信装置可以包括用于执行前述第三方面及第三方面各种实现方式的装置、单元或模块。例如当所述通信装置为终端设备时,所述终端设备可以包括:接收单元,用于接收基站发送的功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该第一 C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该第二C-DRX周期中是否监测物理下行控制信道,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;该接收单元还用于,根据该功率节省信号模式接收该第二功率节省信号。或者可以包括:用于接收基站发送的功率节省信号模式,所述功率节省信号模式用于指示基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述第二C-DRX周期中是否监测物理下行控制信道,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期的装置;用于根据所述功率节省信号模式接收所述第二功率节省信号的装置。A seventh aspect of the embodiments of the present application provides a communication device. The communication device may be a terminal device, or a part of the terminal device, or may be set in the terminal device. The communication device may include a device, unit or module for executing the foregoing third aspect and various implementation manners of the third aspect. For example, when the communication device is a terminal device, the terminal device may include: a receiving unit configured to receive a power saving signal mode sent by a base station, and the power saving signal mode is used to instruct the base station not to send the first signal to the terminal device. Power saving signal and sending a second power saving signal to the terminal device, the first power saving signal is used to indicate whether the physical downlink control channel is monitored in the first C-DRX cycle, and the second power saving signal is used to indicate the first Whether the physical downlink control channel is monitored in the second C-DRX cycle, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the receiving unit is also used to receive according to the power saving signal mode The second power saving signal. Or it may include: a power saving signal mode for receiving a power saving signal sent by a base station, where the power saving signal mode is used to instruct the base station not to send a first power saving signal to the terminal device and send a second power saving signal to the terminal device, The first power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate whether to monitor a physical downlink control channel in the second C-DRX cycle Channel, a device in which the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; and a device for receiving the second power saving signal according to the power saving signal mode.
在第七方面的一种可能的实现方式中,该接收单元还用于:根据该功率节省信号模式在第一C-DRX周期的激活期监测PDCCH,该第一C-DRX周期的激活期包含该终端设备的终端设备测量的时域位置。In a possible implementation of the seventh aspect, the receiving unit is further configured to: monitor the PDCCH during the active period of the first C-DRX cycle according to the power saving signal mode, where the active period of the first C-DRX cycle includes The time domain position measured by the terminal device of this terminal device.
在第七方面的一种可能的实现方式中,该接收单元还用于,接收该基站发送的测量配置信息,该测量配置信息用于指示该终端设备可用于进行测量的时域位置。In a possible implementation manner of the seventh aspect, the receiving unit is further configured to receive measurement configuration information sent by the base station, where the measurement configuration information is used to indicate a time domain location that the terminal device can use for measurement.
在第七方面的一种可能的实现方式中,该终端设备还包括,发送单元,用于向该基站发送第一信息,该第一信息用于指示该终端设备测量的时域位置。In a possible implementation manner of the seventh aspect, the terminal device further includes a sending unit, configured to send first information to the base station, where the first information is used to indicate a time domain position measured by the terminal device.
本申请实施例第八方面提供了一种通信装置,所述通信装置可以是基站,也可以是基站的一部分,或者也可以设置在基站中。所述通信装置可以包括用于执行前述第二方面及第二方面各种实现方式的装置、单元或模块。例如当所述通信装置为基站时,所述基站可以包括:配置单元,用于为终端设备配置功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该第二C-DRX周期中是否监测物理下行控制信道,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;发送单元,用于根据该功率节省信号模式发送该第二功率节省信号。或者可以包括:用于为终端设备配置功率节省信号模式的装置,所述功率节省信号模式用于指示基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述第二C-DRX周期中是否监测物理下行控制信道,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;用于根据所述功率节省信号模式发送所述第二功率节省信号的装置。An eighth aspect of the embodiments of the present application provides a communication device. The communication device may be a base station, or a part of the base station, or may be set in the base station. The communication device may include a device, unit, or module for executing the foregoing second aspect and various implementation manners of the second aspect. For example, when the communication device is a base station, the base station may include: a configuration unit configured to configure a power saving signal mode for a terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device Signal and send a second power saving signal to the terminal device, the first power saving signal is used to indicate whether to monitor the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate the second C-DRX cycle -Whether to monitor the physical downlink control channel in the DRX cycle, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the sending unit is configured to send the second power according to the power saving signal mode Save signals. Or it may include: means for configuring a power saving signal mode for a terminal device, the power saving signal mode being used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device Signal, the first power saving signal is used to indicate whether the physical downlink control channel is monitored in the first C-DRX cycle, and the second power saving signal is used to indicate whether the physical downlink control channel is monitored in the second C-DRX cycle For a downlink control channel, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; a device for sending the second power saving signal according to the power saving signal mode.
在第八方面的一种可能的实现方式中,该方法还包括:接收单元,用于接收终端设备发送的第一信息,该第一信息用于指示该终端设备的终端设备测量的时域位置;该配置单元具体用于根据该第一信息确定该功率节省信号模式。In a possible implementation manner of the eighth aspect, the method further includes: a receiving unit, configured to receive first information sent by the terminal device, the first information being used to indicate the time domain position measured by the terminal device of the terminal device ; The configuration unit is specifically configured to determine the power saving signal mode according to the first information.
在第八方面的一种可能的实现方式中,该发送单元还用于:向该终端设备发送测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置。In a possible implementation manner of the eighth aspect, the sending unit is further configured to: send measurement configuration information to the terminal device, the measurement configuration information indicating a time domain location that the terminal device can use for measurement.
本申请实施例第九方面提供了一种终端设备,包括:处理器和网络接口;该网络接口用于收发数据;该处理器用于执行上述第一方面、第三方面及其各实现方式中的方法。The ninth aspect of the embodiments of the present application provides a terminal device, including: a processor and a network interface; the network interface is used to send and receive data; the processor is used to execute the first aspect, the third aspect, and the implementation manners thereof method.
本申请实施例第十方面提供了一种基站,包括:处理器和网络接口;该网络接口用于收发数据;该处理器用于执行上述第二方面、第四方面及其各实现方式中的方法。A tenth aspect of the embodiments of the present application provides a base station, including: a processor and a network interface; the network interface is used to send and receive data; the processor is used to execute the methods in the second aspect, the fourth aspect, and each implementation manner described above .
本申请实施例第十一方面提供了一种计算机程序产品,该计算机程序产品包括指令,当该指令在计算机上运行时,使得该计算机执行上述第一方面、第二方面、第三方面和第四方面及其各实现方式中的方法。The eleventh aspect of the embodiments of the present application provides a computer program product. The computer program product includes instructions. When the instructions run on a computer, the computer executes the first, second, third, and third aspects described above. Four aspects and the methods in each implementation.
本申请实施例第十二方面提供了一种计算机可读储存介质,该计算机可读存储介质存储指令,当该 指令在计算机上运行时,执行前述本申请实施例第一方面、第二方面、第三方面和第四方面及其各实现方式中的方法。The twelfth aspect of the embodiments of the present application provides a computer-readable storage medium that stores instructions. When the instructions are run on a computer, the first and second aspects of the foregoing embodiments of the present application are executed. The third and fourth aspects and the methods in their respective implementation modes.
本申请实施例第十三方面提供了一芯片系统,该芯片系统包括至少一个处理器和接口电路,该接口电路和该至少一个处理器通过线路互联,该至少一个处理器执行前述本申请实施例第一方面、第二方面、第三方面和第四方面及其各实现方式中的方法。在一种可能的设计中,该芯片系统还包括存储器,该存储器,用于保存网络设备必要的程序指令和数据。该芯片系统,可以由芯片构成,也可以包括芯片和其他分立器件。The thirteenth aspect of the embodiments of the present application provides a chip system. The chip system includes at least one processor and an interface circuit. The interface circuit and the at least one processor are interconnected by wires, and the at least one processor executes the foregoing embodiments of the present application. The first aspect, the second aspect, the third aspect and the fourth aspect and the methods in their respective implementation modes. In a possible design, the chip system further includes a memory for storing necessary program instructions and data for the network device. The chip system may be composed of chips, or may include chips and other discrete devices.
本申请第十四方面提供了一种通信系统,包括:终端设备和基站;该终端设备向基站发送的第一信息,该第一信息用于指示该终端设备测量的时域位置;该终端设备根据该第一信息确定目标时域位置,该目标时域位置为该终端设备可接收该基站调度的时域位置;该基站根据该第一信息确定该目标时域位置。或者,基站为终端设备配置功率节省信号模式,所述功率节省信号模式用于指示所述基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述第二C-DRX周期中是否监测物理下行控制信道,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;根据所述功率节省信号模式发送所述第二功率节省信号;终端设备接收基站发送的功率节省信号模式;根据所述功率节省信号模式接收所述第二功率节省信号。The fourteenth aspect of the present application provides a communication system, including: a terminal device and a base station; first information sent by the terminal device to the base station, the first information being used to indicate a time domain position measured by the terminal device; the terminal device The target time domain position is determined according to the first information, and the target time domain position is a time domain position scheduled by the base station that the terminal device can receive; the base station determines the target time domain position according to the first information. Alternatively, the base station configures a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device, so The first power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate whether to monitor a physical downlink control channel in the second C-DRX cycle , The first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the second power saving signal is sent according to the power saving signal mode; the terminal device receives the power saving sent by the base station Signal mode; receiving the second power saving signal according to the power saving signal mode.
在第十四方面的一种可能的实现方式中,该终端设备根据该第一信息确定目标时域位置包括:该终端设备确定该终端设备测量的时域位置为该目标时域位置。In a possible implementation manner of the fourteenth aspect, the terminal device determining the target time domain position according to the first information includes: the terminal device determining that the time domain position measured by the terminal device is the target time domain position.
在第十四方面的一种可能的实现方式中,该终端设备接收该基站发送的非连续接收C-DRX配置信息;该终端设备根据该第一信息确定目标时域位置包括:该终端设备根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置。In a possible implementation manner of the fourteenth aspect, the terminal device receives the discontinuous reception C-DRX configuration information sent by the base station; the terminal device determining the target time domain position according to the first information includes: the terminal device according to The C-DRX configuration information and the time domain position measured by the terminal device determine the target time domain position.
在第十四方面的一种可能的实现方式中,该终端设备根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置包括:该终端设备根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。In a possible implementation manner of the fourteenth aspect, the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device includes: the terminal device configures according to the C-DRX The information determines that the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
在第十四方面的一种可能的实现方式中,该终端设备根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置包括:该终端设备根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;该终端设备确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation manner of the fourteenth aspect, the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device includes: the terminal device configures according to the C-DRX The information determines the first C-DRX cycle and the second C-DRX cycle, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and the activation period of the second C-DRX cycle does not include the terminal The time domain position measured by the device, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the terminal device determines that the activation period of the first C-DRX cycle is the target time domain position .
在第十四方面的一种可能的实现方式中,该终端设备接收该基站发送的功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测物理下行控制信道;该终端设备确定该第一C-DRX周期的激活期为该目标时域位置包括:该终端设备根据该功率节省信号确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation manner of the fourteenth aspect, the terminal device receives a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor the physical downlink control channel in the first C-DRX cycle The terminal device determining the activation period of the first C-DRX cycle as the target time domain location includes: the terminal device determines the activation period of the first C-DRX cycle as the target time domain location according to the power saving signal.
在第十四方面的一种可能的实现方式中,该终端设备接收该基站配置的功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测物理下行控制信道。In a possible implementation of the fourteenth aspect, the terminal device receives a power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to The terminal device sends a second power saving signal, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to instruct the terminal device Whether to monitor the physical downlink control channel in the second C-DRX cycle.
在第十四方面的一种可能的实现方式中,该终端设备接收该基站发送的该第二功率节省信号;该终端设备根据该第二功率节省信号确定在该第二C-DRX周期中监测或不监测物理下行控制信道。In a possible implementation of the fourteenth aspect, the terminal device receives the second power saving signal sent by the base station; the terminal device determines to monitor in the second C-DRX cycle according to the second power saving signal Or do not monitor the physical downlink control channel.
在第十四方面的一种可能的实现方式中,该终端设备接收该基站发送的测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置;该终端设备根据该测量配置信息确定进行测量的时域位置。In a possible implementation manner of the fourteenth aspect, the terminal device receives measurement configuration information sent by the base station, and the measurement configuration information indicates a time domain position that the terminal device can use to perform measurement; the terminal device configures according to the measurement The information determines the time domain location at which the measurement is made.
在第十四方面的一种可能的实现方式中,该终端设备在该目标时域位置接收该基站的调度。In a possible implementation manner of the fourteenth aspect, the terminal device receives the scheduling of the base station at the target time domain location.
在第十四方面的一种可能的实现方式中,该基站接收终端设备发送的第一信息之后,该方法还包括:该基站根据该第一信息确定该终端设备测量的时域位置。In a possible implementation manner of the fourteenth aspect, after the base station receives the first information sent by the terminal device, the method further includes: the base station determines the time domain position measured by the terminal device according to the first information.
在第十四方面的一种可能的实现方式中,该基站根据该第一信息确定目标时域位置包括:该基站确定该终端设备测量的时域位置为该目标时域位置。In a possible implementation manner of the fourteenth aspect, the base station determining the target time domain position according to the first information includes: the base station determining that the time domain position measured by the terminal device is the target time domain position.
在第十四方面的一种可能的实现方式中,该基站向该终端设备发送非连续接收C-DRX配置信息;该基站根据该第一信息确定目标时域位置包括:该基站根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置。In a possible implementation manner of the fourteenth aspect, the base station sends discontinuous reception C-DRX configuration information to the terminal device; the base station determining the target time domain position according to the first information includes: the base station according to the terminal device The measured time domain position and the C-DRX configuration information determine the target time domain position.
在第十四方面的一种可能的实现方式中,该基站根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置包括:该基站根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。In a possible implementation of the fourteenth aspect, the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information includes: the base station determines according to the C-DRX configuration information The position where the C-DRX activation period overlaps with the time domain position measured by the terminal device is the target time domain position.
在第十四方面的一种可能的实现方式中,该基站根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置包括:该基站根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;该基站确定该第一C-DRX周期的激活期为该目标时域位置。In a possible implementation of the fourteenth aspect, the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information includes: the base station determines according to the C-DRX configuration information The first C-DRX cycle and the second C-DRX cycle, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and the activation period of the second C-DRX cycle does not include the terminal device measurement The first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; the base station determines the activation period of the first C-DRX cycle as the target time domain location.
在第十四方面的一种可能的实现方式中,该基站向该终端设备发送功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测物理下行控制信道。In a possible implementation of the fourteenth aspect, the base station sends a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor the physical downlink control channel in the first C-DRX cycle.
在第十四方面的一种可能的实现方式中,该基站为该终端设备配置功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测物理下行控制信道。In a possible implementation of the fourteenth aspect, the base station configures a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to The terminal device sends a second power saving signal, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate that the terminal device is Whether to monitor the physical downlink control channel in the second C-DRX cycle.
在第十四方面的一种可能的实现方式中,该基站向该终端设备发送该第二功率节省信号。In a possible implementation manner of the fourteenth aspect, the base station sends the second power saving signal to the terminal device.
在第十四方面的一种可能的实现方式中,该基站向该终端设备发送测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置。In a possible implementation manner of the fourteenth aspect, the base station sends measurement configuration information to the terminal device, and the measurement configuration information indicates a time domain location that the terminal device can use for measurement.
在第十四方面的一种可能的实现方式中,该基站在该目标时域位置调度该终端设备。In a possible implementation manner of the fourteenth aspect, the base station schedules the terminal device at the target time domain location.
本申请实施例第十五方面提供了一种通信系统,包括前述第五方面或第七方面的终端设备,以及前述第六方面或第八方面的基站。A fifteenth aspect of the embodiments of the present application provides a communication system, including the terminal device of the foregoing fifth aspect or the seventh aspect, and the base station of the foregoing sixth aspect or the eighth aspect.
从以上技术方案可以看出,本申请实施例具有以下优点:It can be seen from the above technical solutions that the embodiments of the present application have the following advantages:
本申请实施例提供的终端设备的调度方法,终端设备指示该终端设备测量的时域位置的第一信息发送给基站,终端设备和基站都可以根据第一信息确定可用于调度终端设备的目标时域位置,由于终端设备在测量时域位置将打开接收电路产生功耗,若基站在目标时域位置调度终端设备则可以充分利用终端设备测量时唤醒消耗的电能,减少功耗浪费。In the method for scheduling a terminal device provided by the embodiment of the present application, the terminal device sends first information indicating the time domain position measured by the terminal device to the base station, and both the terminal device and the base station can determine the target time that can be used to schedule the terminal device based on the first information. Domain location, since the terminal device will turn on the receiving circuit to generate power consumption during the measurement time domain location, if the base station schedules the terminal device at the target time domain location, it can make full use of the power consumed by the terminal device to wake up during measurement and reduce power waste.
附图说明Description of the drawings
图1为C-DRX cycle的一个实施例示意图;Figure 1 is a schematic diagram of an embodiment of the C-DRX cycle;
图2为SMTC windows的一个实施例示意图;Figure 2 is a schematic diagram of an embodiment of SMTC windows;
图3为本申请实施例中终端设备的调度方法的一个实施例示意图;FIG. 3 is a schematic diagram of an embodiment of a method for scheduling a terminal device in an embodiment of the application;
图4为本申请实施例中终端设备的调度方法的另一个实施例示意图;FIG. 4 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application;
图5为本申请实施例中终端设备的调度方法的一个实施例交互示意图;FIG. 5 is a schematic diagram of interaction in an embodiment of a method for scheduling a terminal device in an embodiment of this application;
图6为本申请实施例中终端设备测量的时域位置的一个实施例示意图;FIG. 6 is a schematic diagram of an embodiment of a time domain position measured by a terminal device in an embodiment of this application;
图7为本申请实施例中终端设备测量的时域位置的另一个实施例示意图;FIG. 7 is a schematic diagram of another embodiment of a time domain position measured by a terminal device in an embodiment of this application;
图8为本申请实施例中终端设备的调度方法的另一个实施例交互示意图;FIG. 8 is a schematic diagram of interaction in another embodiment of a scheduling method of a terminal device in an embodiment of this application;
图9为本申请实施例中终端设备的调度方法的另一个实施例示意图;FIG. 9 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application;
图10为本申请实施例中终端设备的调度方法的另一个实施例示意图;FIG. 10 is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application;
图11为本申请实施例中终端设备的调度方法的另一个实施例交互示意图;FIG. 11 is a schematic diagram of interaction in another embodiment of a scheduling method of a terminal device in an embodiment of this application;
图12为本申请实施例中终端设备的调度方法的另一个实施例示意图;FIG. 12 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application;
图13为本申请实施例中终端设备的调度方法的另一个实施例示意图;FIG. 13 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application;
图14为功率节省信号发送方式的一个实施例示意图;FIG. 14 is a schematic diagram of an embodiment of a power saving signal transmission mode;
图15为本申请实施例中终端设备的调度方法的另一个实施例示意图;15 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application;
图16为本申请实施例中终端设备的调度方法的另一个实施例交互示意图;FIG. 16 is a schematic diagram of interaction in another embodiment of a scheduling method of a terminal device in an embodiment of this application;
图17为本申请实施例中终端设备的调度方法的另一个实施例示意图;FIG. 17 is a schematic diagram of another embodiment of a method for scheduling a terminal device in an embodiment of this application;
图18为本申请实施例中终端设备的一个实施例示意图;FIG. 18 is a schematic diagram of an embodiment of a terminal device in an embodiment of the application;
图19为本申请实施例中基站的一个实施例示意图;FIG. 19 is a schematic diagram of an embodiment of a base station in an embodiment of the application;
图20为本申请实施例中终端设备的一个实施例示意图;FIG. 20 is a schematic diagram of an embodiment of a terminal device in an embodiment of the application;
图21为本申请实施例中基站的一个实施例示意图。FIG. 21 is a schematic diagram of an embodiment of a base station in an embodiment of the application.
具体实施方式detailed description
本申请实施例提供了一种终端设备的调度方法,用于减少终端设备功耗浪费。The embodiment of the present application provides a method for scheduling a terminal device to reduce waste of power consumption of the terminal device.
本申请实施例提供的终端设备的调度方法适用于多种无线通信系统,例如可应用于第五代(5th generation,5G)移动通信系统或未来的移动通信系统,本申请对此不作限定。The scheduling method for terminal devices provided in the embodiments of the present application is applicable to a variety of wireless communication systems, such as fifth generation (5G) mobile communication systems or future mobile communication systems, which are not limited in this application.
本申请实施例所涉及的基站可以包括各种在无线接入网中为终端提供通信功能的装置,例如可以各种形式的宏基站、微基站、中继站或接入点等等。在采用不同的无线接入技术的系统中,基站的名称可能会有所不同,例如在未来通信移动通信系统中称为下一代节点B(next generation NodeB,gNB);在长期演进(long term evolution,LTE)网络中,称为演进的节点B(evolved NodeB,eNodeB)简称eNB;此外,对于LTE中的eNB连接到第5代核心网(5th generation core,5GC)的场景下,eNB也称为ng-eNB,经由NG接口连接到5GC。本申请的实施例对基站所采用的具体技术和具体设备形态不做限定。The base stations involved in the embodiments of the present application may include various devices that provide communication functions for terminals in a wireless access network, such as macro base stations, micro base stations, relay stations, or access points in various forms. In systems that use different wireless access technologies, the names of base stations may be different. For example, they are called next generation NodeB (gNB) in future communication and mobile communication systems; in the long term evolution (long term evolution) , LTE) network, called evolved NodeB (evolved NodeB, eNodeB) is abbreviated as eNB; in addition, for the scenario where the eNB in LTE is connected to the 5th generation core network (5th generation core, 5GC), the eNB is also called ng-eNB, connected to 5GC via NG interface. The embodiments of the present application do not limit the specific technology and specific device form adopted by the base station.
本申请实施例所涉及的终端设备(UE),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,以及各种形式移动台或用户设备等。本申请的实施例对终端设备所采用的具体技术和具体设备形态不做限定。The terminal equipment (UE) involved in the embodiments of this application may include various handheld devices with wireless communication functions, vehicle-mounted devices, wearable devices, computing devices or other processing devices connected to wireless modems, as well as various forms of mobile stations Or user equipment, etc. The embodiment of the present application does not limit the specific technology and specific device form adopted by the terminal device.
为了便于理解本申请实施例提供的终端设备的调度方法,首先对C-DRX机制和终端设备的同频测量进行简要介绍:In order to facilitate the understanding of the terminal equipment scheduling method provided in the embodiments of this application, first, the C-DRX mechanism and the co-frequency measurement of the terminal equipment are briefly introduced:
由于数据流通常是突发性的,在没有数据传输的时候通过关闭终端设备的接收电路可以降低功耗,从而提升电池使用时间。连接态下的非连续接收(connected discontinuous reception,C-DRX)是一种在保证数据能有效传输的条件下,节省终端设备电量的机制。Since the data flow is usually bursty, power consumption can be reduced by turning off the receiving circuit of the terminal device when there is no data transmission, thereby increasing the battery life. Connected discontinuous reception (C-DRX) in the connected state is a mechanism to save the power of the terminal device under the condition that the data can be effectively transmitted.
C-DRX机制中,基站为终端设备配置C-DRX循环(C-DRX cycle),C-DRX cycle由“On Duration”和“Opportunity for DRX”两部分组成。请参阅图1,为一个典型的C-DRX周期,“On Duration”时 间段内为激活期,终端设备监测并接收物理下行控制信道(physical downlink control channel,PDCCH);“Opportunity for DRX”时间段内为休眠期,终端设备不接收PDCCH以减少功耗。In the C-DRX mechanism, the base station configures the C-DRX cycle (C-DRX cycle) for the terminal equipment. The C-DRX cycle consists of two parts: "On Duration" and "Opportunity for DRX". Refer to Figure 1. It is a typical C-DRX cycle. The "On Duration" period is the activation period. The terminal device monitors and receives the physical downlink control channel (PDCCH); "Opportunity for DRX" period The inner is the dormant period, and the terminal device does not receive the PDCCH to reduce power consumption.
在连接态下,终端设备会根据基站的配置信息进行无线资源管理(radio resource management,RRM)测量,其中包括同频测量。需要说明的是,本申请实施例中提及的测量均指同频测量,下面简称测量。终端设备进行测量时,需处于唤醒状态,终端设备打开接收电路,可以在接收参考信号(reference signal,RS)的同时监测PDCCH。即终端设备可以既做测量又接收基站调度,不存在调度限制。In the connected state, the terminal device will perform radio resource management (RRM) measurements according to the configuration information of the base station, including intra-frequency measurements. It should be noted that the measurement mentioned in the embodiments of the present application all refer to the same frequency measurement, which is referred to as the measurement below. When the terminal device performs measurement, it needs to be in an awake state. The terminal device turns on the receiving circuit and can monitor the PDCCH while receiving a reference signal (RS). That is, the terminal equipment can both perform measurement and receive base station scheduling, and there is no scheduling restriction.
终端设备测量是在特定的位置进行的,基站通过测量配置信息,指示该终端设备可用于进行测量的时域位置。具体的,SMTC窗口(SMTC window)指示终端设备可以进行测量的位置。请参阅图2,SMTC window的一个实施例示意图。SMTC window通常配置为周期性出现。终端设备根据实际需要从SMTC window中选择一个或多个进行测量。The terminal device measurement is performed at a specific location, and the base station indicates the time domain location that the terminal device can use to perform the measurement through the measurement configuration information. Specifically, the SMTC window (SMTC window) indicates the position where the terminal device can perform measurement. Please refer to FIG. 2, which is a schematic diagram of an embodiment of the SMTC window. SMTC windows are usually configured to appear periodically. The terminal device selects one or more of the SMTC windows for measurement according to actual needs.
由于基站无法获取终端设备进行测量的具体时间段,因此,当终端设备进行测量时,虽然终端设备为接收参考信号而开启接收电路处于唤醒状态,基站却并不会调度终端设备。此时,将造成终端设备功耗浪费。Since the base station cannot obtain the specific time period during which the terminal device performs the measurement, when the terminal device performs the measurement, although the terminal device turns on the receiving circuit to receive the reference signal and is in an awake state, the base station does not schedule the terminal device. At this time, the power consumption of the terminal equipment will be wasted.
本申请实施例提供了一种终端设备的调度方法,用于减少终端设备的功耗浪费。为使得本申请的发明目的、特征、优点能够更加的明显和易懂,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,下面所描述的实施例仅仅是本申请一部分实施例,而非全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围,下面结合具体实施例进行介绍。The embodiment of the present application provides a method for scheduling a terminal device to reduce waste of power consumption of the terminal device. In order to make the purposes, features, and advantages of the present application more obvious and understandable, the technical solutions in the embodiments of the present application will be described clearly and completely in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the following The described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative work are within the protection scope of this application, and are described below in conjunction with specific embodiments.
请参阅图3,为本申请实施例中终端设备的调度方法的一个实施例示意图;Please refer to FIG. 3, which is a schematic diagram of an embodiment of a scheduling method of a terminal device in an embodiment of this application;
301、终端设备向基站发送的第一信息;301. First information sent by a terminal device to a base station;
终端设备向基站发送的第一信息,该第一信息用于指示该终端设备测量的时域位置。终端设备进行同频测量的时域位置可以有一个或多个,此处不做限定,可选地,终端设备从基站配置的SMTC window中选取一个或多个用于测量,该第一信息可以指示该一个或多个测量的时域位置。The first information sent by the terminal device to the base station, where the first information is used to indicate the time domain position measured by the terminal device. There may be one or more time-domain positions for the terminal equipment to perform co-frequency measurement, which is not limited here. Optionally, the terminal equipment selects one or more from the SMTC window configured by the base station for measurement, and the first information may Indicates the time domain position of the one or more measurements.
302、该终端设备根据该第一信息确定目标时域位置;302. The terminal device determines the target time domain location according to the first information.
该终端设备根据该第一信息确定目标时域位置,该目标时域位置为该终端设备可接收该基站调度的时域位置。可选地,终端设备根据该第一信息,可以将进行测量的时域位置均作为目标时域位置,或者,也可以根据预置的规则从测量的时域位置中选取一个或多个作为目标时域位置。此处对于预置的规则和目标时域位置的数量不做限定。The terminal device determines a target time domain position according to the first information, and the target time domain position is a time domain position scheduled by the base station that the terminal device can receive. Optionally, according to the first information, the terminal device may use all the time domain positions to be measured as the target time domain position, or may also select one or more of the measured time domain positions as the target according to a preset rule Time domain location. The number of preset rules and target time domain positions is not limited here.
本申请实施例提供的终端设备的调度方法中,终端设备可以将指示终端设备测量的时域位置的第一信息发送给基站,并根据该第一信息确定可接收该基站调度的目标时域位置。由于基站获取了终端设备测量的时域位置,基站和终端设备可以在根据第一信息确定的目标时域位置进行调度。当终端设备进行测量时开启接收电路处于唤醒状态时,可以避免基站因未获取终端设备测量的时域位置无法调度终端设备造成的终端设备的功耗浪费。In the scheduling method of the terminal device provided by the embodiment of the present application, the terminal device may send first information indicating the time domain position measured by the terminal device to the base station, and determine according to the first information that the target time domain position scheduled by the base station can be received . Since the base station has acquired the time domain position measured by the terminal device, the base station and the terminal device can perform scheduling at the target time domain position determined according to the first information. When the terminal device is in the wake-up state when the receiving circuit is turned on during the measurement, it can avoid the waste of power consumption of the terminal device caused by the base station not being able to schedule the terminal device because the time domain position measured by the terminal device is not obtained.
请参阅图4,为本申请实施例中终端设备的调度方法的另一个实施例示意图;Please refer to FIG. 4, which is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application;
401、基站接收终端设备发送的第一信息;401. The base station receives first information sent by a terminal device.
基站接收终端设备发送的第一信息,该第一信息用于指示该终端设备测量的时域位置。第一信息指示的终端设备测量的时域位置可以有一个或多个,此处不做限定,可选地,终端设备从基站配置的SMTC window中选取一个或多个用于测量。The base station receives the first information sent by the terminal device, where the first information is used to indicate the time domain position measured by the terminal device. The time domain position measured by the terminal device indicated by the first information may be one or more, which is not limited here. Optionally, the terminal device selects one or more of the SMTC windows configured by the base station for measurement.
402、基站根据该第一信息确定目标时域位置;402. The base station determines the target time domain position according to the first information.
该基站根据该第一信息确定目标时域位置,该目标时域位置为可用于调度该终端设备的时域位置。可选地,基站根据该第一信息,可以将终端设备测量的时域位置作为目标时域位置,可选地,基站根据预置的规则从测量的时域位置中选取一个或多个作为目标时域位置。此处对于预置的规则和目标时域位置的数量不做限定。The base station determines a target time domain position according to the first information, and the target time domain position is a time domain position that can be used to schedule the terminal device. Optionally, the base station may use the time domain position measured by the terminal device as the target time domain position according to the first information. Optionally, the base station may select one or more of the measured time domain positions as the target according to a preset rule Time domain location. The number of preset rules and target time domain positions is not limited here.
本申请实施例提供的终端设备的调度方法中,基站可以接收终端设备发送的指示终端设备测量的时域位置的第一信息,并根据该第一信息确定可用于调度该终端设备的目标时域位置。由于基站获取了终端设备测量的时域位置,基站和终端设备可以在根据第一信息确定的目标时域位置进行调度。当终端设备进行测量时开启接收电路处于唤醒状态时,基站可以避免却因未获取终端设备测量的时域位置无法调度终端设备造成的终端设备的功耗浪费。In the method for scheduling terminal equipment provided in the embodiments of the present application, the base station may receive first information indicating the time domain position measured by the terminal equipment sent by the terminal equipment, and determine the target time domain that can be used to schedule the terminal equipment according to the first information position. Since the base station has acquired the time domain position measured by the terminal device, the base station and the terminal device can perform scheduling at the target time domain position determined according to the first information. When the terminal device is in the wake-up state when the receiving circuit is turned on during the measurement, the base station can avoid the waste of power consumption of the terminal device caused by the inability to schedule the terminal device because the time domain position measured by the terminal device is not obtained.
本申请实施例中,确定目标时域位置的实现方式有多种,下面分别进行介绍。In the embodiments of the present application, there are multiple implementation manners for determining the target time domain position, which are respectively introduced below.
一、确定终端设备测量的时域位置为目标时域位置。1. Determine the time domain position measured by the terminal device as the target time domain position.
请参阅图5,为本申请实施例中终端设备的调度方法的一个实施例交互示意图;Please refer to FIG. 5, which is a schematic diagram of interaction in an embodiment of a scheduling method of a terminal device in an embodiment of this application;
501、基站向终端设备发送SMTC;501. The base station sends an SMTC to a terminal device;
基站为终端设备配置测量配置信息,测量配置信息可指示该终端设备可用于进行测量的时域位置。具体的,测量配置信息为SMTC信息,通过SMTC window指示终端设备可以进行测量的位置,请参阅图2,SMTC window通常配置为周期性出现,可以终端设备根据实际需要从SMTC window中选择一个或多个进行测量。The base station configures measurement configuration information for the terminal device, and the measurement configuration information may indicate the time domain position of the terminal device that can be used for measurement. Specifically, the measurement configuration information is SMTC information. The SMTC window indicates the location where the terminal device can perform measurement. Refer to Figure 2. The SMTC window is usually configured to appear periodically. The terminal device can select one or more SMTC windows according to actual needs. Take measurements.
502、终端设备确定测量的时域位置;502. The terminal device determines the time domain position of the measurement;
该终端设备接收该基站发送的测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置。具体的,终端设备接收基站发送的SMTC信息,从SMTC window指示的可以进行测量的位置中根据测量需要选择一个或多个作为进行测量的时域位置。The terminal device receives the measurement configuration information sent by the base station, and the measurement configuration information indicates a time domain position that the terminal device can use for measurement. Specifically, the terminal device receives the SMTC information sent by the base station, and selects one or more of the locations that can be measured indicated by the SMTC window as the time domain location for measurement according to the measurement needs.
示例性的,请参阅图6,为本申请实施例中终端设备测量的时域位置的一个实施例示意图。终端选择SMTC window中的第1、2、4、5和7个window的位置为测量的时域位置。Exemplarily, please refer to FIG. 6, which is a schematic diagram of an embodiment of a time domain position measured by a terminal device in an embodiment of this application. The terminal selects the positions of the first, second, fourth, fifth, and seventh windows in the SMTC window as the measured time domain position.
503、终端设备向基站发送第一信息;503. The terminal device sends the first information to the base station.
终端设备向基站发送第一信息,该第一信息用于指示该终端设备测量的时域位置,即步骤502中终端设备确定的测量的时域位置。The terminal device sends first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device, that is, the measured time domain position determined by the terminal device in step 502.
504、基站确定目标时域位置;504. The base station determines the target time domain position.
基站接收第一信息后,可以根据该第一信息确定目标时域位置,该目标时域位置为可用于调度该终端设备的时域位置。基站根据第一信息确定目标时域位置的方式有多种,此处不做限定。可选地,该终端设备确定该终端设备测量的时域位置为该目标时域位置。After receiving the first information, the base station may determine the target time domain position according to the first information, and the target time domain position is a time domain position that can be used to schedule the terminal device. There are many ways for the base station to determine the target time domain position according to the first information, which is not limited here. Optionally, the terminal device determines that the time domain position measured by the terminal device is the target time domain position.
示例性的,请参阅图6,终端设备测量的时域位置为SMTC window中的第1、2、4、5和7个window的位置。将该第1、2、4、5和7个SMTC window的位置确定为目标时域位置,在图中用阴影示出。Exemplarily, referring to FIG. 6, the time domain position measured by the terminal device is the position of the first, second, fourth, fifth and seventh windows in the SMTC window. The positions of the first, second, fourth, fifth, and seventh SMTC windows are determined as the target time-domain positions, which are shown with shading in the figure.
由于在实际应用中,终端可能接收基站配置的C-DRX cycle,请参阅图7,为本申请实施例中终端设备测量的时域位置的另一个实施例示意图,介绍了本实施例中存在C-DRX cycle时目标时域位置的确定方法,由图7可知,终端设备测量的时域位置即为目标时域位置,对应于C-DRX cycle时,该目标时域位置可以是C-DRX cycle中的激活期,例如第1个测量的时域位置对应cycle 1的激活期;也可以是C-DRX cycle中的休眠期,例如第2个测量的时域位置对应cycle 1的休眠期;进一步的,由于测量持续的时长与C-DRX cycle中的激活期时长可能不相同,目标时域位置可以覆盖整个C-DRX cycle的激活期,也可以只覆盖C-DRX cycle激活期的部分,请参考图7中,第1个测量的时域位置对应在 C-DRX cycle 1的部分。Since in practical applications, the terminal may receive the C-DRX cycle configured by the base station, please refer to FIG. 7, which is a schematic diagram of another embodiment of the time domain position measured by the terminal device in the embodiment of this application, and introduces the existence of C in this embodiment -The method for determining the target time domain position during DRX cycle, as shown in Figure 7, the time domain position measured by the terminal device is the target time domain position. When corresponding to the C-DRX cycle, the target time domain position can be C-DRX cycle For example, the time domain position of the first measurement corresponds to the activation period of cycle 1; it can also be the dormant period of C-DRX cycle, for example, the time domain position of the second measurement corresponds to the dormant period of cycle 1; further Yes, since the duration of the measurement may be different from the activation period in the C-DRX cycle, the target time domain position can cover the entire activation period of the C-DRX cycle, or it can only cover the part of the C-DRX cycle activation period, please Referring to Figure 7, the time domain position of the first measurement corresponds to the part of C-DRX cycle 1.
505、终端设备确定目标时域位置;505. The terminal device determines the target time domain location;
该终端设备根据该第一信息确定目标时域位置,该目标时域位置为该终端设备可接收该基站调度的时域位置。终端设备根据第一信息确定目标时域位置的方式有多种,此处不做限定。可选地,该终端设备确定该终端设备测量的时域位置为该目标时域位置。请参考步骤504中基站确定目标时域位置的方法,此处不再赘述。The terminal device determines a target time domain position according to the first information, and the target time domain position is a time domain position scheduled by the base station that the terminal device can receive. There are many ways for the terminal device to determine the target time domain position according to the first information, which is not limited here. Optionally, the terminal device determines that the time domain position measured by the terminal device is the target time domain position. Please refer to the method for the base station to determine the target time domain position in step 504, which will not be repeated here.
506、基站在目标时域位置调度终端设备;506. The base station schedules the terminal equipment at the target time domain position.
基站在确定的目标时域位置调度终端设备,同时终端设备可在该目标时域位置接收该基站的调度。The base station schedules the terminal device at the determined target time domain location, and the terminal device can receive the scheduling of the base station at the target time domain location.
需要说明的是,本步骤为可选步骤,可以执行,也可以不执行,此处不做限定。It should be noted that this step is optional and can be executed or not, and it is not limited here.
可选地,基站可以在目标时域位置中选取部分位置调度终端设备,例如根据是否存在待发送的数据确定是否在目标时域位置进行调度。Optionally, the base station may select a part of the target time domain location to schedule the terminal device, for example, determine whether to schedule the terminal device at the target time domain location according to whether there is data to be sent.
二、确定终端设备测量的时域位置与DRX激活期的重叠位置为目标时域位置。2. Determine the overlap position between the time domain position measured by the terminal device and the DRX activation period as the target time domain position.
请参阅图8,为本申请实施例中终端设备的调度方法的另一个实施例交互示意图;Please refer to FIG. 8, which is a schematic diagram of interaction in another embodiment of the scheduling method of terminal equipment in the embodiment of this application;
801、基站向终端设备发送SMTC;801. The base station sends SMTC to the terminal device.
步骤801与图5对应的实施例中步骤501类似,此处不再赘述。Step 801 is similar to step 501 in the embodiment corresponding to FIG. 5 and will not be repeated here.
802、基站向终端设备发送非连续接收C-DRX配置信息;802. The base station sends discontinuous reception C-DRX configuration information to the terminal device;
该基站向该终端设备发送非连续接收C-DRX配置信息;C-DRX配置信息是基站为终端设备配置的C-DRX cycle的信息,包括C-DRX cycle中激活期和休眠期的时长等。终端设备可以根据C-DRX配置信息在激活期进入唤醒状态,在休眠期进入睡眠状态。The base station sends discontinuous reception C-DRX configuration information to the terminal device; the C-DRX configuration information is information about the C-DRX cycle configured by the base station for the terminal device, including the duration of the activation period and the sleep period in the C-DRX cycle. The terminal device can enter the wake-up state during the activation period and enter the sleep state during the sleep period according to the C-DRX configuration information.
803、终端设备确定测量的时域位置;803. The terminal device determines the time domain position of the measurement.
该终端设备接收基站发送的SMTC信息,从SMTC window指示的可以进行测量的位置中根据测量需要选择一个或多个作为进行测量的时域位置。可选的,终端设备在确定测量的时域位置时,可以选取SMTC window与C-DRX cycle中激活期重叠的位置。终端设备测量的时域位置的确定方式和数量此处不做限定。The terminal device receives the SMTC information sent by the base station, and selects one or more of the locations that can be measured indicated by the SMTC window as the time domain location for measurement according to the measurement needs. Optionally, when determining the time domain position of the measurement, the terminal device may select the position where the activation period of the SMTC window and the C-DRX cycle overlap. The determination method and number of time domain positions measured by the terminal device are not limited here.
804、终端设备向基站发送第一信息;804. The terminal device sends the first information to the base station.
终端设备向基站发送第一信息,该第一信息用于指示该终端设备测量的时域位置,即步骤803中终端设备确定的测量的时域位置。The terminal device sends first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device, that is, the measured time domain position determined by the terminal device in step 803.
805、基站确定目标时域位置;805. The base station determines the target time domain position.
该基站根据接收的该第一信息确定目标时域位置的方式有多种,可选地,本实施例中该基站根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置。There are many ways for the base station to determine the target time domain position according to the received first information. Optionally, in this embodiment, the base station determines the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information. Domain location.
可选地,该基站根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。Optionally, the base station determines, according to the C-DRX configuration information, a position where the activation period of the C-DRX and the time domain position measured by the terminal device overlaps as the target time domain position.
下面举例进行介绍:The following examples are introduced:
请参阅图9,为本申请实施例中终端设备的调度方法的另一个实施例示意图;Please refer to FIG. 9, which is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application;
第一信息指示该终端设备测量的时域位置为第1、2、4、5个SMTC window的位置,在图中用阴影示出。其中,第1个和第4个测量的时域位置分别与C-DRX cycle的周期1(cycle 1)和cycle 3的激活期部分重叠,其余测量的时域位置则落入C-DRX cycle的休眠期。因此,可以将cycle 1、cycle 3的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置,图9中用阴影示出。The first information indicates that the time domain position measured by the terminal device is the position of the first, second, fourth, and fifth SMTC windows, which are shown with shading in the figure. Among them, the time domain positions of the first and fourth measurements overlap with the activation periods of cycle 1 (cycle 1) and cycle 3 of the C-DRX cycle respectively, and the time domain positions of the remaining measurements fall into the C-DRX cycle. Dormancy period. Therefore, the position where the activation period of cycle 1 and cycle 3 overlaps with the time domain position measured by the terminal device may be the target time domain position, which is shown by shading in FIG. 9.
请参阅图10,为本申请实施例中终端设备的调度方法的另一个实施例示意图;Please refer to FIG. 10, which is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application;
由于C-DRX cycle的激活期时长与SMTC window的时长可以相同,也可以不相同。C-DRX的激活期与该终端设备测量的时域位置重叠的位置,可以覆盖一个C-DRX的激活期的全部或者部分,如图10所示,cycle 1的激活期与测量的时域位置重叠,整个cycle 1的激活期都被确定为目标时域位置,而cycle5的激活期与测量的时域位置只有部分重叠,因此,cycle 5的激活期只有部分确定为目标时域位置,如图中阴影部分所示。Because the duration of the activation period of the C-DRX cycle and the duration of the SMTC window can be the same or different. The position where the C-DRX activation period overlaps with the time domain position measured by the terminal device can cover all or part of a C-DRX activation period. As shown in Figure 10, the activation period of cycle 1 and the measured time domain position Overlap, the entire activation period of cycle 1 is determined as the target time domain position, while the activation period of cycle 5 only partially overlaps with the measured time domain position. Therefore, the activation period of cycle 5 is only partially determined as the target time domain position, as shown in the figure Shown in the shaded part.
806、终端设备确定目标时域位置;806. The terminal device determines the target time domain location.
该终端设备根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置。可选地,该终端设备根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。请参考步骤504中基站确定目标时域位置的方法,此处不再赘述。The terminal device determines the target time domain location according to the C-DRX configuration information and the time domain location measured by the terminal device. Optionally, the terminal device determines, according to the C-DRX configuration information, the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position. Please refer to the method for the base station to determine the target time domain position in step 504, which will not be repeated here.
807、基站在目标时域位置调度终端设备;807. The base station schedules the terminal equipment at the target time domain position;
步骤807与图5对应的实施例中步骤506类似,此处不再赘述。Step 807 is similar to step 506 in the embodiment corresponding to FIG. 5, and will not be repeated here.
三、包含测量的DRX激活期的为目标时域位置,并通过发功率节省信号进行指示。3. The target time domain position including the measured DRX activation period is indicated by transmitting a power saving signal.
请参阅图11,为本申请实施例中终端设备的调度方法的另一个实施例交互示意图;Refer to FIG. 11, which is a schematic diagram of interaction in another embodiment of the scheduling method of terminal equipment in the embodiment of this application;
1101、基站向终端设备发送SMTC;1101. The base station sends SMTC to the terminal device;
1102、基站向终端设备发送非连续接收C-DRX配置信息;1102. The base station sends discontinuous reception C-DRX configuration information to the terminal device;
1103、终端设备确定测量的时域位置;1103. The terminal device determines the time domain position of the measurement;
1104、终端设备向基站发送第一信息;1104. The terminal device sends the first information to the base station.
步骤1101至1104与图8对应的实施例中步骤801至804类似,此处不再赘述。Steps 1101 to 1104 are similar to steps 801 to 804 in the embodiment corresponding to FIG. 8 and will not be repeated here.
1105、基站确定目标时域位置;1105. The base station determines the target time domain position;
基站根据第一信息确定目标时域位置的方式有多种,本实施例中,该基站根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;该基站确定该第一C-DRX周期的激活期为该目标时域位置。There are many ways for the base station to determine the target time domain position according to the first information. In this embodiment, the base station determines the first C-DRX cycle and the second C-DRX cycle according to the C-DRX configuration information. The activation period of the DRX cycle includes the time domain position measured by the terminal device, the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, the first C-DRX cycle and the second C-DRX The periods are different C-DRX periods; the base station determines that the active period of the first C-DRX period is the target time domain position.
基站根据终端发送的第一信息,可以确定激活期包含该终端设备测量的时域位置的第一C-DRX周期,和激活期不包含该终端设备测量的时域位置的第二C-DRX周期,基站可以将第一C-DRX周期的激活期为该目标时域位置。According to the first information sent by the terminal, the base station can determine that the activation period includes the first C-DRX period measured by the terminal device in the time domain, and the activation period does not include the second C-DRX period measured by the terminal device in the time domain. , The base station may set the activation period of the first C-DRX cycle as the target time domain position.
下面举例进行介绍:The following examples are introduced:
请参阅图12,为本申请实施例中终端设备的调度方法的另一个实施例示意图;Please refer to FIG. 12, which is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application;
第一信息指示该终端设备测量的时域位置为第1、2、4、5、7个SMTC window的位置,在图中用阴影示出。其中,C-DRX cycle的cycle 1、cycle 3、cycle 5的激活期分别包含了第1个、第4个、第7个测量的时域位置,其余C-DRX cycle的激活期则不包含测量的时域位置。因此,可以将cycle 1、cycle 3、cycle 5的激活期确定为该目标时域位置,图12中用阴影示出。The first information indicates that the time domain position measured by the terminal device is the position of the first 1, 2, 4, 5, and 7 SMTC windows, which are shown with shading in the figure. Among them, the activation periods of cycle 1, cycle 3, and cycle 5 of C-DRX cycle include the time domain positions of the first, fourth, and seventh measurement respectively, and the activation periods of the remaining C-DRX cycle do not include measurement Time domain position. Therefore, the activation periods of cycle 1, cycle 3, and cycle 5 can be determined as the target time domain position, which is shown by shading in FIG. 12.
请参阅图13,为本申请实施例中终端设备的调度方法的另一个实施例示意图;Please refer to FIG. 13, which is a schematic diagram of another embodiment of a scheduling method of a terminal device in an embodiment of this application;
由于C-DRX cycle的激活期时长与SMTC window的时长可以相同,也可以不相同。C-DRX的激活期与该终端设备测量的时域位置重叠的位置,可以覆盖一个C-DRX的激活期的全部或者部分,如图13所示,cycle 1的整个激活期与测量的时域位置重叠,而cycle5只有部分激活期与测量的时域位置重叠,本实施例中,cycle 1和cycle 5的激活期可以确定为目标时域位置,如图中阴影部分所示。Because the duration of the activation period of the C-DRX cycle and the duration of the SMTC window can be the same or different. The position where the C-DRX activation period overlaps with the time domain position measured by the terminal device can cover all or part of a C-DRX activation period. As shown in Figure 13, the entire activation period of cycle 1 and the measured time domain The positions overlap, and only part of the activation period of cycle 5 overlaps with the measured time domain position. In this embodiment, the activation periods of cycle 1 and cycle 5 can be determined as target time domain positions, as shown in the shaded part in the figure.
1106、基站向终端设备发送功率节省信号;1106. The base station sends a power saving signal to the terminal device.
该基站向该终端设备发送功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期 中监测PDCCH。功率节省信号在实现时也可以是功率节省信道,此处不做限定。基站可以为终端设备配置功率节省信号,以指示终端设备在接下来的一个或多个C-DRX周期中处于睡眠状态或唤醒状态。此外,功率节省信号还可以指示终端设备是否进行信道状态信息(channel state information,CSI)测量,此处对于功率节省信号的具体功能不做限定。基站可以在每个C-DRX周期前向终端设备发送功率节省信号,也可以每隔预设数量的C-DRX周期向终端设备发送功率节省信号,此处不做限定。The base station sends a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor the PDCCH in the first C-DRX cycle. The power saving signal can also be a power saving channel when it is implemented, which is not limited here. The base station may configure a power saving signal for the terminal device to indicate that the terminal device is in the sleep state or awake state in the next one or more C-DRX cycles. In addition, the power saving signal can also indicate whether the terminal device performs channel state information (CSI) measurement, and the specific function of the power saving signal is not limited here. The base station may send a power saving signal to the terminal device before each C-DRX cycle, or may send a power saving signal to the terminal device every preset number of C-DRX cycles, which is not limited here.
示例性的,图14为功率节省信号发送方式的一个实施例示意图,功率节省信号可以是在一个C-DRX周期的开始时刻,或者在一个C-DRX周期前发送给终端设备。本实施例及以下实施例对应的图中用箭头代表基站向终端设备发送功率节省信号。如图14所示,在第一个C-DRX周期前发送的功率节省信号指示该终端设备在该第一C-DRX周期的激活期中监测PDCCH,用实线框代表终端设备监测PDCCH;在第二个C-DRX周期前发送的功率节省信号指示该终端设备在该第一C-DRX周期的激活期中不监测PDCCH,用实线框代表终端设备不监测PDCCH。Exemplarily, FIG. 14 is a schematic diagram of an embodiment of a power saving signal sending manner. The power saving signal may be sent to the terminal device at the beginning of a C-DRX cycle or before a C-DRX cycle. In the figure corresponding to this embodiment and the following embodiments, arrows are used to represent the base station sending a power saving signal to the terminal device. As shown in Figure 14, the power saving signal sent before the first C-DRX cycle instructs the terminal device to monitor the PDCCH during the active period of the first C-DRX cycle, and the solid-line frame represents the terminal device monitoring PDCCH; The power saving signal sent before two C-DRX cycles indicates that the terminal device does not monitor the PDCCH during the activation period of the first C-DRX cycle, and the solid line frame represents that the terminal device does not monitor the PDCCH.
具体的,在本实施例中,基站确定目标时域位置为第一C-DRX周期的激活期之后,可以通过向终端设备发送功率节省信号指示该终端设备在该第一C-DRX周期中监测PDCCH。可选地,基站还可以向终端设备发送功率节省信号指示该终端设备在该第二C-DRX周期中监测或不监测PDCCH。Specifically, in this embodiment, after the base station determines that the target time domain position is the active period of the first C-DRX cycle, it may send a power saving signal to the terminal equipment to instruct the terminal equipment to monitor in the first C-DRX cycle PDCCH. Optionally, the base station may also send a power saving signal to the terminal device to instruct the terminal device to monitor or not to monitor the PDCCH in the second C-DRX cycle.
示例性的,请参阅图15,为本申请实施例中终端设备的调度方法的另一个实施例示意图,基站在每个C-DRX周期前向终端设备发送功率节省信号,由于cycle 1、cycle 3、cycle 5的激活期确定为该目标时域位置,因此,在cycle 1、cycle 3、cycle 5之前,基站发送的功能节省信号指示终端设备在cycle 1、cycle 3和cycle 5的激活期监测PDCCH,图中用实线框示出。此外,在激活期不包含测量的时域位置的C-DRX周期,即cycle 2和cycle 4之前,基站也可以向终端设备发送功率节省信号,根据实际需要,例如是否存在待发送的数据等情况,该功率节省信号可以指示该终端设备监测PDCCH,例如cycle 2的激活期终端设备监测PDCCH;或者,该功率节省信号也可以指示该终端设备不监测PDCCH,例如cycle4的激活期终端设备不监测PDCCH,图中用虚线框示出。Exemplarily, please refer to FIG. 15, which is a schematic diagram of another embodiment of the scheduling method of the terminal device in the embodiment of the application. The base station transmits a power saving signal to the terminal device before each C-DRX cycle, due to cycle 1, cycle 3 The activation period of cycle 5 is determined as the target time domain position. Therefore, before cycle 1, cycle 3, and cycle 5, the function saving signal sent by the base station instructs the terminal device to monitor the PDCCH during the activation period of cycle 1, cycle 3, and cycle 5. , Shown in the figure with a solid frame. In addition, before the active period does not include the C-DRX cycle of the measured time domain position, that is, cycle 2 and cycle 4, the base station can also send a power saving signal to the terminal device according to actual needs, such as whether there is data to be sent, etc. The power saving signal may instruct the terminal device to monitor the PDCCH, for example, the terminal device monitors the PDCCH during the active period of cycle 2, or the power saving signal may also indicate the terminal device not to monitor the PDCCH, for example, the terminal device does not monitor the PDCCH during the active period of cycle 4 , Shown in the figure with a dashed frame.
1107、终端设备确定目标时域位置;1107. The terminal device determines the target time domain location;
该终端设备接收该基站发送的功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测PDCCH。该终端设备可以根据该功率节省信号确定该第一C-DRX周期的激活期为该目标时域位置。该第一C-DRX周期的激活期包含该终端设备测量的时域位置。The terminal device receives a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor the PDCCH in the first C-DRX cycle. The terminal device may determine the activation period of the first C-DRX cycle as the target time domain position according to the power saving signal. The activation period of the first C-DRX cycle includes the time domain position measured by the terminal device.
1108、基站在目标时域位置调度终端设备;1108. The base station schedules terminal equipment at the target time domain position;
步骤1108与图5对应的实施例中步骤506类似,此处不再赘述。Step 1108 is similar to step 506 in the embodiment corresponding to FIG. 5, and will not be repeated here.
四、包含测量的DRX激活期的为目标时域位置,并通过发功率节省信号模式进行指示。Fourth, the target time domain position including the measured DRX activation period is indicated by the power saving signal mode.
请参阅图16,为本申请实施例中终端设备的调度方法的另一个实施例交互示意图;Refer to FIG. 16, which is a schematic diagram of interaction in another embodiment of the scheduling method of terminal equipment in an embodiment of this application;
1601、基站向终端设备发送SMTC;1601. A base station sends an SMTC to a terminal device;
1602、基站向终端设备发送非连续接收C-DRX配置信息;1602. The base station sends discontinuous reception C-DRX configuration information to the terminal device;
1603、终端设备确定测量的时域位置;1603. The terminal device determines the time domain position of the measurement;
1604、终端设备向基站发送第一信息;1604. The terminal device sends the first information to the base station.
1605、基站确定目标时域位置;1605. The base station determines the target time domain position;
步骤1601至1605与图11对应的实施例中步骤1101至步骤1105类似,此处不再赘述。Steps 1601 to 1605 are similar to steps 1101 to 1105 in the embodiment corresponding to FIG. 11, and are not repeated here.
1606、基站向终端设备发送功率节省信号模式;1606. The base station sends a power saving signal mode to the terminal device.
基站确定激活期包含该终端设备测量的时域位置的第一C-DRX周期的激活期为目标时域位置后,可以向终端设备发送功率节省信号模式。After determining that the activation period of the first C-DRX cycle including the time domain position measured by the terminal device is the target time domain position, the base station may send a power saving signal mode to the terminal device.
该基站为该终端设备配置功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测PDCCH,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测PDCCH。The base station configures a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and send the second power saving signal to the terminal device, the first power saving The signal is used to indicate whether the terminal device monitors the PDCCH in the first C-DRX cycle, and the second power saving signal is used to indicate whether the terminal device monitors the PDCCH in the second C-DRX cycle.
可选地,基站向终端设备发送功率节省信号模式,可以使得终端设备获取以下信息:在第一C-DRX周期之前不监测功率节省信号,默认在第一C-DRX周期的激活期监测PDCCH,而在第二C-DRX周期之前监测基站发送的第二功率节省信号,并根据该第二功率节省信号的指示确定是否在第二C-DRX周期的激活期监测PDCCH。Optionally, the base station sends the power saving signal mode to the terminal device, so that the terminal device can obtain the following information: the power saving signal is not monitored before the first C-DRX cycle, and the PDCCH is monitored during the active period of the first C-DRX cycle by default, Before the second C-DRX cycle, monitor the second power saving signal sent by the base station, and determine whether to monitor the PDCCH in the active period of the second C-DRX cycle according to the indication of the second power saving signal.
示例性的,请参阅图17,基站确定cycle 1和cycle 5的激活期为该目标时域位置,因此,基站在之前不向终端设备发送指示在cycle 1和cycle 5是否监测PDCCH的功率节省信号,并且,在cycle 2、cycle3和cycle 4之前,基站向终端设备发送功率节省信号,根据是否存在待发送的数据等实际情况,该功率节省信号可以指示该终端设备监测PDCCH,例如cycle 3的激活期终端设备监测PDCCH;或者,该功率节省信号也可以指示该终端设备不监测PDCCH,例如cycle 2和cycle 4的激活期终端设备不监测PDCCH,图中用虚线框示出。Exemplarily, please refer to Figure 17. The base station determines that the activation periods of cycle 1 and cycle 5 are the target time domain positions. Therefore, the base station does not send to the terminal equipment a power saving signal indicating whether to monitor PDCCH during cycle 1 and cycle 5 And, before cycle 2, cycle 3, and cycle 4, the base station sends a power saving signal to the terminal device. According to actual conditions such as whether there is data to be sent, the power saving signal can instruct the terminal device to monitor the PDCCH, such as the activation of cycle 3 The terminal device monitors the PDCCH during the period; or, the power saving signal may also indicate that the terminal device does not monitor the PDCCH. For example, the terminal device does not monitor the PDCCH during the activation period of cycle 2 and cycle 4, as shown by a dashed box in the figure.
1607、基站向终端设备发送第二功率节省信号;1607. The base station sends a second power saving signal to the terminal device.
基站根据功率节省信号模式的约定向终端设备发送第二功率节省信号,指示该终端设备在该第二C-DRX周期中是否监测PDCCH。The base station sends a second power saving signal to the terminal device according to the appointment of the power saving signal mode, indicating whether the terminal device monitors the PDCCH in the second C-DRX cycle.
该终端设备接收该基站发送的该第二功率节省信号,根据该第二功率节省信号确定在该第二C-DRX周期中监测或不监测PDCCH。该功率节省信号可以指示该终端设备监测PDCCH,例如cycle 3的激活期终端设备监测PDCCH;或者,该功率节省信号也可以指示该终端设备不监测PDCCH,例如cycle 2和cycle 4的激活期终端设备不监测PDCCH。The terminal device receives the second power saving signal sent by the base station, and determines, according to the second power saving signal, whether to monitor or not monitor the PDCCH in the second C-DRX cycle. The power saving signal may instruct the terminal device to monitor the PDCCH, for example, the terminal device monitors the PDCCH during the active period of cycle 3; or, the power saving signal may also instruct the terminal device not to monitor the PDCCH, such as the active period terminal equipment of cycle 2 and cycle 4. PDCCH is not monitored.
1608、终端设备确定目标时域位置;1608. The terminal device determines the target time domain location;
终端设备根据功率节省信号模式的指示,确定第一C-DRX周期的激活期为目标时域位置。可选地,终端设备还可以根据接收的第二功率节省信号确定需要监测PDCCH的第二C-DRX周期。The terminal device determines the active period of the first C-DRX cycle as the target time domain position according to the indication of the power saving signal mode. Optionally, the terminal device may also determine the second C-DRX cycle in which the PDCCH needs to be monitored according to the received second power saving signal.
1609、基站在目标时域位置调度终端设备;1609. The base station schedules the terminal equipment at the target time domain position;
基站在确定的目标时域位置调度终端设备,同时终端设备可在该目标时域位置接收该基站的调度。可选地,终端设备还可以根据接收的第二功率节省信号的指示,在确定需要监测PDCCH的第二C-DRX周期接收基站调度。The base station schedules the terminal device at the determined target time domain location, and the terminal device can receive the scheduling of the base station at the target time domain location. Optionally, the terminal device may also receive the base station scheduling in the second C-DRX cycle in which it is determined that the PDCCH needs to be monitored according to an indication of the received second power saving signal.
需要说明的是,本步骤为可选步骤,可以执行,也可以不执行,此处不做限定。It should be noted that this step is optional and can be executed or not, and it is not limited here.
可选地,基站可以在目标时域位置中选取部分位置调度终端设备,例如根据是否存在待发送的数据确定是否在目标时域位置进行调度。Optionally, the base station may select a part of the target time domain location to schedule the terminal device, for example, determine whether to schedule the terminal device at the target time domain location according to whether there is data to be sent.
上面介绍了本申请实施例中终端设备的调度方法,下面对实施该方法的终端设备和基站分别进行介绍。The above describes the scheduling method of the terminal device in the embodiment of the present application, and the terminal device and the base station implementing the method are respectively introduced below.
请参阅图18,为本申请实施例中终端设备的一个实施例示意图;Please refer to FIG. 18, which is a schematic diagram of an embodiment of a terminal device in an embodiment of this application;
本申请实施例提供的终端设备包括:The terminal device provided by the embodiment of the present application includes:
发送单元1801,用于向基站发送的第一信息,该第一信息用于指示该终端设备测量的时域位置;The sending unit 1801 is used to send first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device;
确定单元1802,用于根据该第一信息确定目标时域位置,该目标时域位置为该终端设备可接收该基站调度的时域位置。The determining unit 1802 is configured to determine a target time domain position according to the first information, where the target time domain position is a time domain position that the terminal device can receive scheduling by the base station.
该确定单元1802具体用于:确定该终端设备测量的时域位置为该目标时域位置。The determining unit 1802 is specifically configured to determine that the time domain position measured by the terminal device is the target time domain position.
该终端设备还包括:接收单元1803,用于接收该基站发送的非连续接收C-DRX配置信息;该确定单元1802具体用于:根据该C-DRX配置信息和该终端设备测量的时域位置确定该目标时域位置。The terminal device also includes: a receiving unit 1803, configured to receive discontinuous reception C-DRX configuration information sent by the base station; the determining unit 1802 is specifically configured to: according to the C-DRX configuration information and the time domain position measured by the terminal device Determine the time domain location of the target.
该确定单元1802具体用于:根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。The determining unit 1802 is specifically configured to determine, according to the C-DRX configuration information, the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
该确定单元1802具体用于:根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;确定该第一C-DRX周期的激活期为该目标时域位置。The determining unit 1802 is specifically configured to determine a first C-DRX cycle and a second C-DRX cycle according to the C-DRX configuration information, and the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, The activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; determine the first C-DRX cycle The active period of the DRX cycle is the target time domain position.
该接收单元1803还用于:接收该基站发送的功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测物理下行控制信道;该确定单元1802具体用于:根据该功率节省信号确定该第一C-DRX周期的激活期为该目标时域位置。The receiving unit 1803 is further configured to: receive a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor the physical downlink control channel in the first C-DRX cycle; the determining unit 1802 is specifically configured to: The active period of the first C-DRX cycle is determined as the target time domain position according to the power saving signal.
该接收单元1803还用于:接收该基站配置的功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测物理下行控制信道。The receiving unit 1803 is further configured to receive a power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device The first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate that the terminal device is in the second C-DRX cycle Whether to monitor the physical downlink control channel.
该接收单元1803还用于:接收该基站发送的该第二功率节省信号;该确定单元1802还用于,根据该第二功率节省信号确定在该第二C-DRX周期中监测或不监测物理下行控制信道。The receiving unit 1803 is further configured to: receive the second power saving signal sent by the base station; the determining unit 1802 is also configured to determine, according to the second power saving signal, whether to monitor or not to monitor physical properties in the second C-DRX cycle Downlink control channel.
该接收单元1803还用于:接收该基站发送的测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置;该确定单元1802还用于,根据该测量配置信息确定进行测量的时域位置。The receiving unit 1803 is further used for: receiving measurement configuration information sent by the base station, the measurement configuration information indicating the time domain position of the terminal device that can be used for measurement; the determining unit 1802 is also used for determining to perform the measurement according to the measurement configuration information Time domain position.
该接收单元1803还用于:在该目标时域位置接收该基站的调度。The receiving unit 1803 is further configured to receive the scheduling of the base station at the target time domain position.
请参阅图19,为本申请实施例中基站的一个实施例示意图;Please refer to FIG. 19, which is a schematic diagram of an embodiment of a base station in an embodiment of this application;
本申请实施例提供的基站,包括:The base station provided by the embodiment of the present application includes:
接收单元1901,用于接收终端设备发送的第一信息,该第一信息用于指示该终端设备测量的时域位置;The receiving unit 1901 is configured to receive first information sent by a terminal device, where the first information is used to indicate a time domain position measured by the terminal device;
确定单元1902,用于根据该第一信息确定目标时域位置,该目标时域位置为可用于调度该终端设备的时域位置。The determining unit 1902 is configured to determine a target time domain location according to the first information, where the target time domain location is a time domain location that can be used to schedule the terminal device.
该确定单元1902还用于:根据该第一信息确定该终端设备测量的时域位置。The determining unit 1902 is further configured to determine the time domain position measured by the terminal device according to the first information.
该确定单元1902具体用于:确定该终端设备测量的时域位置为该目标时域位置。The determining unit 1902 is specifically configured to determine that the time domain position measured by the terminal device is the target time domain position.
该基站还包括:发送单元1903,用于向该终端设备发送非连续接收C-DRX配置信息;The base station further includes: a sending unit 1903, configured to send discontinuous reception C-DRX configuration information to the terminal device;
该确定单元1902具体用于:根据该终端设备测量的时域位置与该C-DRX配置信息确定该目标时域位置。The determining unit 1902 is specifically configured to determine the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information.
该确定单元1902具体用于:根据该C-DRX配置信息确定C-DRX的激活期与该终端设备测量的时域位置重叠的位置为该目标时域位置。The determining unit 1902 is specifically configured to determine, according to the C-DRX configuration information, the position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
该确定单元1902具体用于:根据该C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,该第一C-DRX周期的激活期包含该终端设备测量的时域位置,该第二C-DRX周期的激活期不包含该终端设备测量的时域位置,该第一C-DRX周期与该第二C-DRX周期为不同的C-DRX周期;确定该第一C-DRX周期的激活期为该目标时域位置。The determining unit 1902 is specifically configured to determine the first C-DRX cycle and the second C-DRX cycle according to the C-DRX configuration information, and the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, The activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; determine the first C-DRX cycle The active period of the DRX cycle is the target time domain position.
该发送单元1903还用于:向该终端设备发送功率节省信号,该功率节省信号用于指示该终端设备在该第一C-DRX周期中监测物理下行控制信道。The sending unit 1903 is further configured to send a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor the physical downlink control channel in the first C-DRX cycle.
该基站还包括:配置单元1904,用于为该终端设备配置功率节省信号模式,该功率节省信号模式用于指示该基站不向该终端设备发送第一功率节省信号且向该终端设备发送第二功率节省信号,该第一功率节省信号用于指示该终端设备在该第一C-DRX周期中是否监测物理下行控制信道,该第二功率节省信号用于指示该终端设备在该第二C-DRX周期中是否监测物理下行控制信道。The base station further includes: a configuration unit 1904, configured to configure a power saving signal mode for the terminal device, the power saving signal mode for instructing the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device A power saving signal, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate that the terminal device is in the second C-DRX cycle. Whether to monitor the physical downlink control channel in the DRX cycle.
该发送单元1903还用于:向该终端设备发送该第二功率节省信号。The sending unit 1903 is further configured to send the second power saving signal to the terminal device.
该发送单元1903还用于:向该终端设备发送测量配置信息,该测量配置信息指示该终端设备可用于进行测量的时域位置。The sending unit 1903 is further configured to send measurement configuration information to the terminal device, where the measurement configuration information indicates a time domain location that the terminal device can use for measurement.
该基站还包括:调度单元1905,用于在该目标时域位置调度该终端设备。The base station also includes: a scheduling unit 1905, configured to schedule the terminal device at the target time domain location.
请参阅图20,为本申请实施例中一种终端设备的另一个实施例示意图。本实施例提供的终端设备对其具体设备形态不做限定。Please refer to FIG. 20, which is a schematic diagram of another embodiment of a terminal device in an embodiment of this application. The terminal device provided in this embodiment does not limit its specific device form.
该终端设备2000可因配置或性能不同而产生比较大的差异,可以包括一个或一个以上处理器2001和存储器2005,该存储器2005中存储有程序或数据。The terminal device 2000 may have relatively large differences due to different configurations or performances, and may include one or more processors 2001 and a memory 2005, and the memory 2005 stores programs or data.
其中,存储器2005可以是易失性存储或非易失性存储。处理器2001可以与存储器2005通信,在终端设备2000上执行存储器2005中的一系列指令。可以理解的是,若处理器2001为可储存指令的ASIC芯片等,则存储器2005可以不存在。Among them, the memory 2005 may be volatile storage or non-volatile storage. The processor 2001 may communicate with the memory 2005, and execute a series of instructions in the memory 2005 on the terminal device 2000. It can be understood that if the processor 2001 is an ASIC chip or the like that can store instructions, the memory 2005 may not exist.
终端设备2000还可以包括一个或一个以上电源2002;一个或一个以上有线或无线网络接口2003,例如以太网接口;一个或一个以上输入输出接口2004,输入输出接口2004可以用于连接显示器、鼠标、键盘、触摸屏设备或传感设备等,输入输出接口2004为可选部件,可以存在也可以不存在,此处不做限定。The terminal device 2000 can also include one or more power supplies 2002; one or more wired or wireless network interfaces 2003, such as an Ethernet interface; one or more input and output interfaces 2004, which can be used to connect a monitor, a mouse, The keyboard, touch screen device or sensor device, etc., the input and output interface 2004 is an optional component, which may or may not exist, and is not limited here.
本实施例中终端设备2000中的处理器2001所执行的流程可以参考前述方法实施例中描述的方法流程,此处不加赘述。For the process executed by the processor 2001 in the terminal device 2000 in this embodiment, reference may be made to the method process described in the foregoing method embodiment, and details are not repeated here.
请参阅图21,为本申请实施例中一种基站的另一个实施例示意图。本实施例提供的基站,对其具体设备形态不做限定。Please refer to FIG. 21, which is a schematic diagram of another embodiment of a base station in an embodiment of this application. The base station provided in this embodiment does not limit its specific equipment form.
该基站2100可因配置或性能不同而产生比较大的差异,可以包括一个或一个以上处理器2101和存储器2105,该存储器2105中存储有程序或数据。The base station 2100 may have relatively large differences due to different configurations or performances, and may include one or more processors 2101 and a memory 2105, and the memory 2105 stores programs or data.
其中,存储器2105可以是易失性存储或非易失性存储。处理器2101可以与存储器2105通信,在基站2100上执行存储器2105中的一系列指令。可以理解的是,若处理器2101为可储存指令的ASIC芯片等,则存储器2105可以不存在。Among them, the memory 2105 may be volatile storage or non-volatile storage. The processor 2101 may communicate with the memory 2105, and execute a series of instructions in the memory 2105 on the base station 2100. It is understandable that if the processor 2101 is an ASIC chip or the like that can store instructions, the memory 2105 may not exist.
基站2100还可以包括一个或一个以上电源2102;一个或一个以上有线或无线网络接口2103,例如以太网接口;一个或一个以上输入输出接口2104,输入输出接口2104可以用于连接显示器、鼠标、键盘、触摸屏设备或传感设备等,输入输出接口2104为可选部件,可以存在也可以不存在,此处不做限定。The base station 2100 may also include one or more power supplies 2102; one or more wired or wireless network interfaces 2103, such as an Ethernet interface; one or more input and output interfaces 2104, which can be used to connect a monitor, a mouse, and a keyboard For touch screen devices or sensing devices, etc., the input/output interface 2104 is an optional component, which may or may not exist, and is not limited here.
本实施例中基站2100中的处理器2101所执行的流程可以参考前述方法实施例中描述的方法流程,此处不加赘述。For the process executed by the processor 2101 in the base station 2100 in this embodiment, reference may be made to the method process described in the foregoing method embodiment, and details are not described herein.
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。Those skilled in the art can clearly understand that, for the convenience and conciseness of description, the specific working process of the above-described system, device, and unit can refer to the corresponding process in the foregoing method embodiment, which will not be repeated here.
在本申请所提供的几个实施例中,应该理解到,所揭露的系统,装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统, 或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。In the several embodiments provided in this application, it should be understood that the disclosed system, device, and method may be implemented in other ways. For example, the device embodiments described above are only illustrative. For example, the division of the units is only a logical function division, and there may be other divisions in actual implementation, for example, multiple units or components can be combined or It can be integrated into another system, or some features can be ignored or not implemented. In addition, the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical or other forms.
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。The units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of the embodiments.
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。In addition, the functional units in each embodiment of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units may be integrated into one unit. The above-mentioned integrated unit can be implemented in the form of hardware or software functional unit.
所述集成的单元如果以软件功能单元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。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(read-only memory,ROM)、随机存取存储器(random access memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium. Based on this understanding, the technical solution of this application essentially or the part that contributes to the existing technology or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium , Including several instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the method described in each embodiment of the present application. The aforementioned storage media include: U disk, mobile hard disk, read-only memory (read-only memory, ROM), random access memory (random access memory, RAM), magnetic disk or optical disk and other media that can store program code .
以上所述,以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。As mentioned above, the above embodiments are only used to illustrate the technical solutions of the present application, not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, a person of ordinary skill in the art should understand that: The technical solutions recorded in the embodiments are modified, or some of the technical features are equivalently replaced; these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims (68)

  1. 一种终端设备的调度方法,其特征在于,包括:A scheduling method for terminal equipment, characterized in that it comprises:
    终端设备向基站发送的第一信息,所述第一信息用于指示所述终端设备测量的时域位置;First information sent by the terminal device to the base station, where the first information is used to indicate the time domain position measured by the terminal device;
    所述终端设备根据所述第一信息确定目标时域位置,所述目标时域位置为所述终端设备可接收所述基站调度的时域位置。The terminal device determines a target time domain position according to the first information, and the target time domain position is a time domain position that the terminal device can receive scheduling by the base station.
  2. 根据权利要求1所述的方法,其特征在于,所述终端设备根据所述第一信息确定目标时域位置包括:The method according to claim 1, wherein the terminal device determining the target time domain position according to the first information comprises:
    所述终端设备确定所述终端设备测量的时域位置为所述目标时域位置。The terminal device determines that the time domain position measured by the terminal device is the target time domain position.
  3. 根据权利要求1所述的方法,其特征在于,所述方法还包括:The method of claim 1, wherein the method further comprises:
    所述终端设备接收所述基站发送的非连续接收C-DRX配置信息;Receiving, by the terminal device, discontinuous reception C-DRX configuration information sent by the base station;
    所述终端设备根据所述第一信息确定目标时域位置包括:The terminal device determining the target time domain location according to the first information includes:
    所述终端设备根据所述C-DRX配置信息和所述终端设备测量的时域位置确定所述目标时域位置。The terminal device determines the target time domain location according to the C-DRX configuration information and the time domain location measured by the terminal device.
  4. 根据权利要求3所述的方法,其特征在于,所述终端设备根据所述C-DRX配置信息和所述终端设备测量的时域位置确定所述目标时域位置包括:The method according to claim 3, wherein the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device comprises:
    所述终端设备根据所述C-DRX配置信息确定C-DRX的激活期与所述终端设备测量的时域位置重叠的位置为所述目标时域位置。The terminal device determines, according to the C-DRX configuration information, a position where the activation period of the C-DRX and the time domain position measured by the terminal device overlaps as the target time domain position.
  5. 根据权利要求3所述的方法,其特征在于,所述终端设备根据所述C-DRX配置信息和所述终端设备测量的时域位置确定所述目标时域位置包括:The method according to claim 3, wherein the terminal device determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device comprises:
    所述终端设备根据所述C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,所述第一C-DRX周期的激活期包含所述终端设备测量的时域位置,所述第二C-DRX周期的激活期不包含所述终端设备测量的时域位置,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;The terminal device determines a first C-DRX cycle and a second C-DRX cycle according to the C-DRX configuration information, and the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, so The activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
    所述终端设备确定所述第一C-DRX周期的激活期为所述目标时域位置。The terminal device determines that the activation period of the first C-DRX cycle is the target time domain position.
  6. 根据权利要求5所述的方法,其特征在于,所述方法还包括:The method of claim 5, wherein the method further comprises:
    所述终端设备接收所述基站发送的功率节省信号,所述功率节省信号用于指示所述终端设备在所述第一C-DRX周期中监测物理下行控制信道;Receiving, by the terminal device, a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal device to monitor a physical downlink control channel in the first C-DRX cycle;
    所述终端设备确定所述第一C-DRX周期的激活期为所述目标时域位置包括:The determining, by the terminal device, that the activation period of the first C-DRX cycle is the target time domain position includes:
    所述终端设备根据所述功率节省信号确定所述第一C-DRX周期的激活期为所述目标时域位置。The terminal device determines, according to the power saving signal, the activation period of the first C-DRX cycle as the target time domain position.
  7. 根据权利要求5所述的方法,其特征在于,所述方法还包括:The method of claim 5, wherein the method further comprises:
    所述终端设备接收所述基站配置的功率节省信号模式,所述功率节省信号模式用于指示所述基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述终端设备在所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述终端设备在所述第二C-DRX周期中是否监测物理下行控制信道。The terminal device receives the power saving signal mode configured by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device Signal, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate that the terminal device is in the Whether to monitor the physical downlink control channel in the second C-DRX cycle.
  8. 根据权利要求7所述的方法,其特征在于,所述方法还包括:The method according to claim 7, wherein the method further comprises:
    所述终端设备接收所述基站发送的所述第二功率节省信号;Receiving, by the terminal device, the second power saving signal sent by the base station;
    所述终端设备根据所述第二功率节省信号确定在所述第二C-DRX周期中监测或不监测物理下行控制信道。The terminal device determines whether to monitor or not to monitor a physical downlink control channel in the second C-DRX cycle according to the second power saving signal.
  9. 根据权利要求1至8中任一项所述的方法,其特征在于,所述方法还包括:The method according to any one of claims 1 to 8, wherein the method further comprises:
    所述终端设备接收所述基站发送的测量配置信息,所述测量配置信息指示所述终端设备可用 于进行测量的时域位置;Receiving, by the terminal device, measurement configuration information sent by the base station, where the measurement configuration information indicates a time domain position at which the terminal device can be used for measurement;
    所述终端设备根据所述测量配置信息确定进行测量的时域位置。The terminal device determines the time domain position for measurement according to the measurement configuration information.
  10. 根据权利要求1至9中任一项所述的方法,其特征在于,所述方法还包括:The method according to any one of claims 1 to 9, wherein the method further comprises:
    所述终端设备在所述目标时域位置接收所述基站的调度。The terminal device receives the scheduling of the base station at the target time domain location.
  11. 一种终端设备的调度方法,其特征在于,包括:A scheduling method for terminal equipment, characterized in that it comprises:
    基站接收终端设备发送的第一信息,所述第一信息用于指示所述终端设备测量的时域位置;The base station receives the first information sent by the terminal device, where the first information is used to indicate the time domain position measured by the terminal device;
    所述基站根据所述第一信息确定目标时域位置,所述目标时域位置为可用于调度所述终端设备的时域位置。The base station determines a target time domain position according to the first information, and the target time domain position is a time domain position that can be used to schedule the terminal device.
  12. 根据权利要求11所述的方法,其特征在于,所述基站接收终端设备发送的第一信息之后,所述方法还包括:The method according to claim 11, wherein after the base station receives the first information sent by the terminal device, the method further comprises:
    所述基站根据所述第一信息确定所述终端设备测量的时域位置。The base station determines the time domain position measured by the terminal device according to the first information.
  13. 根据权利要求11或12所述的方法,其特征在于,所述基站根据所述第一信息确定目标时域位置包括:The method according to claim 11 or 12, wherein the base station determining the target time domain position according to the first information comprises:
    所述基站确定所述终端设备测量的时域位置为所述目标时域位置。The base station determines that the time domain position measured by the terminal device is the target time domain position.
  14. 根据权利要求11或12所述的方法,其特征在于,所述方法还包括:The method according to claim 11 or 12, wherein the method further comprises:
    所述基站向所述终端设备发送非连续接收C-DRX配置信息;Sending, by the base station, discontinuous reception C-DRX configuration information to the terminal device;
    所述基站根据所述第一信息确定目标时域位置包括:The base station determining the target time domain position according to the first information includes:
    所述基站根据所述终端设备测量的时域位置与所述C-DRX配置信息确定所述目标时域位置。The base station determines the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information.
  15. 根据权利要求14所述的方法,其特征在于,所述基站根据所述终端设备测量的时域位置与所述C-DRX配置信息确定所述目标时域位置包括:The method according to claim 14, wherein the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information comprises:
    所述基站根据所述C-DRX配置信息确定C-DRX的激活期与所述终端设备测量的时域位置重叠的位置为所述目标时域位置。The base station determines, according to the C-DRX configuration information, a position where the activation period of the C-DRX and the time domain position measured by the terminal device overlaps as the target time domain position.
  16. 根据权利要求14所述的方法,其特征在于,所述基站根据所述终端设备测量的时域位置与所述C-DRX配置信息确定所述目标时域位置包括:The method according to claim 14, wherein the base station determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information comprises:
    所述基站根据所述C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期,所述第一C-DRX周期的激活期包含所述终端设备测量的时域位置,所述第二C-DRX周期的激活期不包含所述终端设备测量的时域位置,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;The base station determines a first C-DRX cycle and a second C-DRX cycle according to the C-DRX configuration information, and the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, and The activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
    所述基站确定所述第一C-DRX周期的激活期为所述目标时域位置。The base station determines that the activation period of the first C-DRX cycle is the target time domain position.
  17. 根据权利要求16所述的方法,其特征在于,所述方法还包括:The method of claim 16, wherein the method further comprises:
    所述基站向所述终端设备发送功率节省信号,所述功率节省信号用于指示所述终端设备在所述第一C-DRX周期中监测物理下行控制信道。The base station sends a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor a physical downlink control channel in the first C-DRX cycle.
  18. 根据权利要求16所述的方法,其特征在于,所述方法还包括:The method of claim 16, wherein the method further comprises:
    所述基站为所述终端设备配置功率节省信号模式,所述功率节省信号模式用于指示所述基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述终端设备在所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述终端设备在所述第二C-DRX周期中是否监测物理下行控制信道。The base station configures a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send a first power saving signal to the terminal device and to send a second power saving signal to the terminal device , The first power saving signal is used to indicate whether the terminal device monitors a physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate that the terminal device is in the first C-DRX cycle. 2. Whether to monitor the physical downlink control channel in the C-DRX cycle.
  19. 根据权利要求18所述的方法,其特征在于,所述方法还包括:The method of claim 18, wherein the method further comprises:
    所述基站向所述终端设备发送所述第二功率节省信号。The base station sends the second power saving signal to the terminal device.
  20. 根据权利要求11至19中任一项所述的方法,其特征在于,所述方法还包括:The method according to any one of claims 11 to 19, wherein the method further comprises:
    所述基站向所述终端设备发送测量配置信息,所述测量配置信息指示所述终端设备可用于进行测量的时域位置。The base station sends measurement configuration information to the terminal device, where the measurement configuration information indicates a time domain position that the terminal device can use for measurement.
  21. 根据权利要求11至20中任一项所述的方法,其特征在于,所述方法还包括:The method according to any one of claims 11 to 20, wherein the method further comprises:
    所述基站在所述目标时域位置调度所述终端设备。The base station schedules the terminal device at the target time domain location.
  22. 一种终端设备的调度方法,其特征在于,包括:A scheduling method for terminal equipment, characterized in that it comprises:
    终端设备接收基站发送的功率节省信号模式,所述功率节省信号模式用于指示所述基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述第二C-DRX周期中是否监测物理下行控制信道,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;The terminal device receives the power saving signal mode sent by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and send the second power saving signal to the terminal device, the The first power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate whether to monitor a physical downlink control channel in the second C-DRX cycle, The first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
    所述终端设备根据所述功率节省信号模式接收所述第二功率节省信号。The terminal device receives the second power saving signal according to the power saving signal mode.
  23. 根据权利要求22所述的方法,其特征在于,The method of claim 22, wherein:
    所述第一C-DRX周期的激活期包含所述终端设备的终端设备测量的时域位置,所述第二C-DRX周期的激活期不包含所述终端设备的终端设备测量的时域位置。The activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device, and the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device of the terminal device .
  24. 根据权利要求22或23所述的方法,其特征在于,还包括:The method according to claim 22 or 23, further comprising:
    所述终端设备根据所述功率节省信号模式在第一C-DRX周期的激活期监测PDCCH,所述第一C-DRX周期的激活期包含所述终端设备的终端设备测量的时域位置。The terminal device monitors the PDCCH in the active period of the first C-DRX cycle according to the power saving signal mode, and the active period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device.
  25. 根据权利要求22至24中任一项所述的方法,其特征在于,在所述终端设备接收基站发送的功率节省信号模式模式之前,还包括:The method according to any one of claims 22 to 24, wherein before the terminal device receives the power saving signal mode mode sent by the base station, the method further comprises:
    所述终端设备接收所述基站发送的测量配置信息,所述测量配置信息用于指示所述终端设备可用于进行测量的时域位置。The terminal device receives measurement configuration information sent by the base station, where the measurement configuration information is used to indicate a time domain location that the terminal device can use for measurement.
  26. 根据权利要求22至25中任一项所述的方法,其特征在于,在所述终端设备接收基站发送的功率节省信号模式之前,还包括:The method according to any one of claims 22 to 25, wherein before the terminal device receives the power saving signal mode sent by the base station, the method further comprises:
    所述终端设备向所述基站发送第一信息,所述第一信息用于指示所述终端设备测量的时域位置。The terminal device sends first information to the base station, where the first information is used to indicate the time domain position measured by the terminal device.
  27. 一种终端设备的调度方法,其特征在于,包括:A scheduling method for terminal equipment, characterized in that it comprises:
    基站为终端设备配置功率节省信号模式,所述功率节省信号模式用于指示所述基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述第二C-DRX周期中是否监测物理下行控制信道,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;The base station configures a power saving signal mode for the terminal device, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device. A power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate whether to monitor a physical downlink control channel in the second C-DRX cycle, so The first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
    所述基站根据所述功率节省信号模式发送所述第二功率节省信号。The base station transmits the second power saving signal according to the power saving signal mode.
  28. 根据权利要求27所述的方法,其特征在于,The method of claim 27, wherein:
    所述第一C-DRX周期的激活期包含所述终端设备的终端设备测量的时域位置,所述第二C-DRX周期的激活期不包含所述终端设备的终端设备测量的时域位置。The activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device, and the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device of the terminal device .
  29. 根据权利要求27或28所述的方法,其特征在于,在基站为所述终端设备配置功率节省 信号模式之前,还包括:The method according to claim 27 or 28, wherein before the base station configures the power saving signal mode for the terminal device, the method further comprises:
    所述基站接收终端设备发送的第一信息,所述第一信息用于指示所述终端设备的终端设备测量的时域位置;The base station receives first information sent by a terminal device, where the first information is used to indicate a time domain position measured by the terminal device of the terminal device;
    基站为终端设备配置功率节省信号模式包括:所述基站根据所述第一信息确定所述功率节省信号模式。The base station configuring the power saving signal mode for the terminal device includes: the base station determining the power saving signal mode according to the first information.
  30. 根据权利要求27至29中任一项所述的方法,其特征在于,在基站接收所述终端设备发送的第一信息之前,还包括:The method according to any one of claims 27 to 29, wherein before the base station receives the first information sent by the terminal device, the method further comprises:
    所述基站向所述终端设备发送测量配置信息,所述测量配置信息指示所述终端设备可用于进行测量的时域位置。The base station sends measurement configuration information to the terminal device, where the measurement configuration information indicates a time domain position that the terminal device can use for measurement.
  31. 一种通信装置,其特征在于,包括:A communication device, characterized by comprising:
    用于向基站发送的第一信息的装置,所述第一信息用于指示终端设备测量的时域位置;An apparatus for sending first information to a base station, where the first information is used to indicate a time domain position measured by a terminal device;
    用于根据所述第一信息确定目标时域位置的装置,所述目标时域位置为所述终端设备可接收所述基站调度的时域位置。An apparatus for determining a target time domain position according to the first information, where the target time domain position is a time domain position scheduled by the base station that the terminal device can receive.
  32. 根据权利要求31所述的通信装置,其特征在于,用于根据所述第一信息确定目标时域位置的装置包括:The communication device according to claim 31, wherein the means for determining the target time domain position according to the first information comprises:
    用于确定所述终端设备测量的时域位置为所述目标时域位置的装置。Means for determining that the time domain position measured by the terminal device is the target time domain position.
  33. 根据权利要求31所述的通信装置,其特征在于,还包括:The communication device according to claim 31, further comprising:
    用于接收所述基站发送的非连续接收C-DRX配置信息的装置;A device for receiving discontinuous reception of C-DRX configuration information sent by the base station;
    用于根据所述第一信息确定目标时域位置的装置包括:The device for determining a target time domain position according to the first information includes:
    用于根据所述C-DRX配置信息和所述终端设备测量的时域位置确定所述目标时域位置的装置。Means for determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device.
  34. 根据权利要求33所述的通信装置,其特征在于,用于根据所述C-DRX配置信息和所述终端设备测量的时域位置确定所述目标时域位置的装置包括:The communication device according to claim 33, wherein the means for determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device comprises:
    用于根据所述C-DRX配置信息确定C-DRX的激活期与所述终端设备测量的时域位置重叠的位置为所述目标时域位置的装置。An apparatus for determining, according to the C-DRX configuration information, a position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
  35. 根据权利要求33所述的通信装置,其特征在于,用于根据所述C-DRX配置信息和所述终端设备测量的时域位置确定所述目标时域位置的装置包括:The communication device according to claim 33, wherein the means for determining the target time domain position according to the C-DRX configuration information and the time domain position measured by the terminal device comprises:
    用于根据所述C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期的装置,所述第一C-DRX周期的激活期包含所述终端设备测量的时域位置,所述第二C-DRX周期的激活期不包含所述终端设备测量的时域位置,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;An apparatus for determining a first C-DRX cycle and a second C-DRX cycle according to the C-DRX configuration information, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, so The activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
    用于确定所述第一C-DRX周期的激活期为所述目标时域位置的装置。Means for determining that the activation period of the first C-DRX cycle is the target time domain position.
  36. 根据权利要求35所述的通信装置,其特征在于,还包括:The communication device according to claim 35, further comprising:
    用于接收所述基站发送的功率节省信号的装置,所述功率节省信号用于指示所述终端设备在所述第一C-DRX周期中监测物理下行控制信道;An apparatus for receiving a power saving signal sent by the base station, where the power saving signal is used to instruct the terminal equipment to monitor a physical downlink control channel in the first C-DRX cycle;
    用于确定所述第一C-DRX周期的激活期为所述目标时域位置的装置包括:The means for determining that the activation period of the first C-DRX cycle is the target time domain position includes:
    用于根据所述功率节省信号确定所述第一C-DRX周期的激活期为所述目标时域位置的装置。Means for determining, according to the power saving signal, the activation period of the first C-DRX cycle as the target time domain position.
  37. 根据权利要求35所述的通信装置,其特征在于,还包括:The communication device according to claim 35, further comprising:
    用于接收所述基站配置的功率节省信号模式的装置,所述功率节省信号模式用于指示所述基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一 功率节省信号用于指示所述终端设备在所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述终端设备在所述第二C-DRX周期中是否监测物理下行控制信道。An apparatus for receiving a power saving signal mode configured by the base station, where the power saving signal mode is used to instruct the base station not to send a first power saving signal to the terminal device and to send a second power saving signal to the terminal device Signal, the first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate that the terminal device is in the Whether to monitor the physical downlink control channel in the second C-DRX cycle.
  38. 根据权利要求37所述的通信装置,其特征在于,还包括:The communication device according to claim 37, further comprising:
    用于接收所述基站发送的所述第二功率节省信号的装置;A device for receiving the second power saving signal sent by the base station;
    用于根据所述第二功率节省信号确定在所述第二C-DRX周期中监测或不监测物理下行控制信道的装置。A device for determining whether to monitor or not monitor a physical downlink control channel in the second C-DRX cycle according to the second power saving signal.
  39. 根据权利要求31至38中任一项所述的通信装置,其特征在于,还包括:The communication device according to any one of claims 31 to 38, further comprising:
    用于接收所述基站发送的测量配置信息的装置,所述测量配置信息指示所述终端设备可用于进行测量的时域位置;An apparatus for receiving measurement configuration information sent by the base station, where the measurement configuration information indicates a time domain position that the terminal device can use for measurement;
    用于根据所述测量配置信息确定进行测量的时域位置的装置。A device for determining the time domain position for measurement according to the measurement configuration information.
  40. 根据权利要求31至39中任一项所述的通信装置,其特征在于,还包括:The communication device according to any one of claims 31 to 39, further comprising:
    用于在所述目标时域位置接收所述基站的调度的装置。Means for receiving the scheduling of the base station at the target time domain position.
  41. 一种通信装置,其特征在于,包括:A communication device, characterized by comprising:
    用于接收终端设备发送的第一信息的装置,所述第一信息用于指示所述终端设备测量的时域位置;An apparatus for receiving first information sent by a terminal device, where the first information is used to indicate a time domain position measured by the terminal device;
    用于根据所述第一信息确定目标时域位置的装置,所述目标时域位置为可用于调度所述终端设备的时域位置。An apparatus for determining a target time domain position according to the first information, where the target time domain position is a time domain position that can be used to schedule the terminal device.
  42. 根据权利要求41所述的通信装置,其特征在于,还包括:The communication device according to claim 41, further comprising:
    用于在接收终端设备发送的第一信息之后,根据所述第一信息确定所述终端设备测量的时域位置的装置。A device for determining the time domain position measured by the terminal device according to the first information after receiving the first information sent by the terminal device.
  43. 根据权利要求41或42所述的通信装置,其特征在于,用于根据所述第一信息确定目标时域位置的装置包括:The communication device according to claim 41 or 42, wherein the device for determining the target time domain position according to the first information comprises:
    用于确定所述终端设备测量的时域位置为所述目标时域位置的装置。Means for determining that the time domain position measured by the terminal device is the target time domain position.
  44. 根据权利要求41或42所述的通信装置,其特征在于,还包括:The communication device according to claim 41 or 42, further comprising:
    用于向所述终端设备发送非连续接收C-DRX配置信息的装置;A device for sending discontinuous reception of C-DRX configuration information to the terminal device;
    用于根据所述第一信息确定目标时域位置包括的装置:Means included for determining the target time domain position according to the first information:
    用于根据所述终端设备测量的时域位置与所述C-DRX配置信息确定所述目标时域位置的装置。Means for determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information.
  45. 根据权利要求44所述的通信装置,其特征在于,用于根据所述终端设备测量的时域位置与所述C-DRX配置信息确定所述目标时域位置的装置包括:The communication device according to claim 44, wherein the means for determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information comprises:
    用于根据所述C-DRX配置信息确定C-DRX的激活期与所述终端设备测量的时域位置重叠的位置为所述目标时域位置的装置。An apparatus for determining, according to the C-DRX configuration information, a position where the activation period of the C-DRX and the time domain position measured by the terminal device overlap is the target time domain position.
  46. 根据权利要求44所述的通信装置,其特征在于,用于根据所述终端设备测量的时域位置与所述C-DRX配置信息确定所述目标时域位置的装置包括:The communication device according to claim 44, wherein the means for determining the target time domain position according to the time domain position measured by the terminal device and the C-DRX configuration information comprises:
    用于根据所述C-DRX配置信息确定第一C-DRX周期和第二C-DRX周期的装置,所述第一C-DRX周期的激活期包含所述终端设备测量的时域位置,所述第二C-DRX周期的激活期不包含所述终端设备测量的时域位置,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;An apparatus for determining a first C-DRX cycle and a second C-DRX cycle according to the C-DRX configuration information, the activation period of the first C-DRX cycle includes the time domain position measured by the terminal device, so The activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device, and the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
    用于确定所述第一C-DRX周期的激活期为所述目标时域位置的装置。Means for determining that the activation period of the first C-DRX cycle is the target time domain position.
  47. 根据权利要求46所述的通信装置,其特征在于,还包括:The communication device according to claim 46, further comprising:
    用于向所述终端设备发送功率节省信号的装置,所述功率节省信号用于指示所述终端设备在所述第一C-DRX周期中监测物理下行控制信道。An apparatus for sending a power saving signal to the terminal device, where the power saving signal is used to instruct the terminal device to monitor a physical downlink control channel in the first C-DRX cycle.
  48. 根据权利要求46所述的通信装置,其特征在于,还包括:The communication device according to claim 46, further comprising:
    用于为所述终端设备配置功率节省信号模式的装置,所述功率节省信号模式用于指示基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述终端设备在所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述终端设备在所述第二C-DRX周期中是否监测物理下行控制信道。An apparatus for configuring a power saving signal mode for the terminal device, where the power saving signal mode is used to instruct the base station not to send a first power saving signal to the terminal device and to send a second power saving signal to the terminal device, The first power saving signal is used to indicate whether the terminal device monitors the physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate that the terminal device is in the second Whether to monitor the physical downlink control channel in the C-DRX cycle.
  49. 根据权利要求48所述的通信装置,其特征在于,还包括:The communication device according to claim 48, further comprising:
    用于向所述终端设备发送所述第二功率节省信号的装置。Means for sending the second power saving signal to the terminal device.
  50. 根据权利要求41至49中任一项所述的通信装置,其特征在于,还包括:The communication device according to any one of claims 41 to 49, further comprising:
    用于向所述终端设备发送测量配置信息的装置,所述测量配置信息指示所述终端设备可用于进行测量的时域位置。An apparatus for sending measurement configuration information to the terminal device, where the measurement configuration information indicates a time domain location that the terminal device can use for measurement.
  51. 根据权利要求41至50中任一项所述的通信装置,其特征在于,还包括:The communication device according to any one of claims 41 to 50, further comprising:
    用于在所述目标时域位置调度所述终端设备的装置。An apparatus for scheduling the terminal equipment at the target time domain location.
  52. 一种通信装置,其特征在于,包括:A communication device, characterized by comprising:
    用于接收基站发送的功率节省信号模式,所述功率节省信号模式用于指示基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述第二C-DRX周期中是否监测物理下行控制信道,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期的装置;It is used to receive the power saving signal mode sent by the base station, and the power saving signal mode is used to instruct the base station not to send the first power saving signal to the terminal device and to send the second power saving signal to the terminal device. The power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate whether to monitor a physical downlink control channel in the second C-DRX cycle, and the A device in which the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
    用于根据所述功率节省信号模式接收所述第二功率节省信号的装置。Means for receiving the second power saving signal according to the power saving signal mode.
  53. 根据权利要求52所述的通信装置,其特征在于,The communication device according to claim 52, wherein:
    所述第一C-DRX周期的激活期包含所述终端设备的终端设备测量的时域位置,所述第二C-DRX周期的激活期不包含所述终端设备的终端设备测量的时域位置。The activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device, and the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device of the terminal device .
  54. 根据权利要求52或53所述的通信装置,其特征在于,还包括:The communication device according to claim 52 or 53, further comprising:
    用于根据所述功率节省信号模式在第一C-DRX周期的激活期监测PDCCH的装置,所述第一C-DRX周期的激活期包含所述终端设备的终端设备测量的时域位置。An apparatus for monitoring a PDCCH in an active period of a first C-DRX cycle according to the power saving signal mode, where the active period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device.
  55. 根据权利要求52至54中任一项所述的通信装置,其特征在于,还包括:The communication device according to any one of claims 52 to 54, further comprising:
    用于在接收基站发送的功率节省信号模式之前,接收所述基站发送的测量配置信息的装置,所述测量配置信息用于指示所述终端设备可用于进行测量的时域位置。A device for receiving measurement configuration information sent by the base station before receiving the power saving signal mode sent by the base station, where the measurement configuration information is used to indicate a time domain location that the terminal device can use for measurement.
  56. 根据权利要求52至55中任一项所述的通信装置,其特征在于,还包括:The communication device according to any one of claims 52 to 55, further comprising:
    用于接收基站发送的功率节省信号模式之前,向所述基站发送第一信息的装置,所述第一信息用于指示所述终端设备测量的时域位置。A device for sending first information to the base station before receiving the power saving signal mode sent by the base station, where the first information is used to indicate the time domain position measured by the terminal device.
  57. 一种通信装置,其特征在于,包括:A communication device, characterized by comprising:
    用于为终端设备配置功率节省信号模式的装置,所述功率节省信号模式用于指示基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指 示所述第二C-DRX周期中是否监测物理下行控制信道,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;An apparatus for configuring a power saving signal mode for a terminal device, where the power saving signal mode is used to instruct the base station not to send a first power saving signal to the terminal device and to send a second power saving signal to the terminal device, the The first power saving signal is used to indicate whether to monitor a physical downlink control channel in the first C-DRX cycle, and the second power saving signal is used to indicate whether to monitor a physical downlink control channel in the second C-DRX cycle, The first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles;
    用于根据所述功率节省信号模式发送所述第二功率节省信号的装置。Means for sending the second power saving signal according to the power saving signal mode.
  58. 根据权利要求57所述的通信装置,其特征在于,The communication device according to claim 57, wherein:
    所述第一C-DRX周期的激活期包含所述终端设备的终端设备测量的时域位置,所述第二C-DRX周期的激活期不包含所述终端设备的终端设备测量的时域位置。The activation period of the first C-DRX cycle includes the time domain position measured by the terminal device of the terminal device, and the activation period of the second C-DRX cycle does not include the time domain position measured by the terminal device of the terminal device .
  59. 根据权利要求57或58所述的通信装置,其特征在于,还包括:The communication device according to claim 57 or 58, further comprising:
    用于在为所述终端设备配置功率节省信号模式之前,接收终端设备发送的第一信息的装置,所述第一信息用于指示所述终端设备的终端设备测量的时域位置;A device for receiving first information sent by a terminal device before configuring a power saving signal mode for the terminal device, where the first information is used to indicate a time domain position measured by the terminal device of the terminal device;
    用于为终端设备配置功率节省信号模式的装置包括:用于根据所述第一信息确定所述功率节省信号模式的装置。The means for configuring a power saving signal mode for a terminal device includes: means for determining the power saving signal mode according to the first information.
  60. 根据权利要求57至59中任一项所述的通信装置,其特征在于,还包括:The communication device according to any one of claims 57 to 59, further comprising:
    用于在接收所述终端设备发送的第一信息之前,向所述终端设备发送测量配置信息的装置,所述测量配置信息指示所述终端设备可用于进行测量的时域位置。A device for sending measurement configuration information to the terminal device before receiving the first information sent by the terminal device, where the measurement configuration information indicates a time domain location that the terminal device can use for measurement.
  61. 一种终端设备,其特征在于,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其特征在于,所述处理器执行所述程序时,实现如权利要求1至10中任一项所述的方法,或实现如权利要求22至26中任一项所述的方法。A terminal device, characterized in that it comprises a memory, a processor, and a computer program stored in the memory and running on the processor, wherein the processor executes the program to implement 10, or implement the method according to any one of claims 22 to 26.
  62. 一种网络设备,其特征在于,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其特征在于,所述处理器执行所述程序时,实现如权利要求11至21中任一项所述的方法,或实现如权利要求27至30中任一项所述的方法。A network device, characterized in that it comprises a memory, a processor, and a computer program stored on the memory and running on the processor, wherein the processor executes the program to implement 21, or implement the method according to any one of claims 27 to 30.
  63. 一种装置,其特征在于,所述装置包括处理器,所述处理器用于与存储器耦合,并读取存储器中的指令并根据所述指令执行如权利要求1至10中任一项所述的方法,或根据所述指令执行如权利要求22至26中任一项所述的方法,或根据所述指令执行如权利要求11至21中任一项所述的方法,或根据所述指令执行如权利要求27至30中任一项所述的方法。A device, characterized in that the device comprises a processor, the processor is configured to be coupled with a memory, and read instructions in the memory and execute according to the instructions according to any one of claims 1 to 10 Method, or execute the method according to any one of claims 22 to 26 according to the instruction, or execute the method according to any one of claims 11 to 21 according to the instruction, or execute according to the instruction The method of any one of claims 27 to 30.
  64. 一种计算机可读存储介质,其特征在于,包括指令,当其在计算机上运行时,使得计算机执行如权利要求1至10中任一项所述的方法,或执行如权利要求11至21中任一项所述的方法,或执行如权利要求22至26中任一项所述的方法,或执行如权利要求27至30中任一项所述的方法。A computer-readable storage medium, characterized by comprising instructions, which when run on a computer, cause the computer to execute the method as claimed in any one of claims 1 to 10, or execute as claimed in claims 11 to 21 The method of any one of the methods described in any one of claims 22 to 26, or the method of any one of claims 27 to 30 is performed.
  65. 一种计算机程序产品,其特征在于,当其在计算机上运行时,使得计算机执行如权利要求1至10中任一项所述的方法,或使得计算机执行如权利要求11至21中任一项所述的方法,或使得计算机执行如权利要求22至26中任一项所述的方法,或使得计算机执行如权利要求27至30中任一项所述的方法。A computer program product, characterized in that, when it runs on a computer, it causes the computer to execute the method according to any one of claims 1 to 10, or causes the computer to execute any one of claims 11 to 21 The method, or causes the computer to execute the method according to any one of claims 22 to 26, or causes the computer to execute the method according to any one of claims 27 to 30.
  66. 一种芯片,其特征在于,与存储器相连或者包括存储器,用于读取并执行所述存储器中存储的软件程序,以实现如权利要求1至10中任一项所述的方法,或以实现如权利要求11至21中任一项所述的方法,或以实现如权利要求22至26中任一项所述的方法,或以实现如权利要求27至30中任一项所述的方法。A chip, characterized in that it is connected to a memory or includes a memory, and is used to read and execute a software program stored in the memory to implement the method according to any one of claims 1 to 10, or to implement The method according to any one of claims 11 to 21, or to implement the method according to any one of claims 22 to 26, or to implement the method according to any one of claims 27 to 30 .
  67. 一种通信系统,其特征在于,包括:基站与终端设备;A communication system, characterized by comprising: a base station and terminal equipment;
    所述终端设备,用于向基站发送的第一信息,所述第一信息用于指示所述终端设备测量的时 域位置;根据所述第一信息确定目标时域位置;The terminal device is used to send first information to a base station, where the first information is used to indicate a time domain position measured by the terminal device; determine a target time domain position according to the first information;
    所述基站,用于接收终端设备发送的第一信息;根据所述第一信息确定目标时域位置,所述目标时域位置为可用于调度所述终端设备的时域位置。The base station is configured to receive first information sent by a terminal device; determine a target time domain position according to the first information, and the target time domain position is a time domain position that can be used to schedule the terminal device.
  68. 一种通信系统,其特征在于,包括:基站与终端设备;A communication system, characterized by comprising: a base station and terminal equipment;
    所述基站,用于为终端设备配置功率节省信号模式,所述功率节省信号模式用于指示所述基站不向所述终端设备发送第一功率节省信号且向所述终端设备发送第二功率节省信号,所述第一功率节省信号用于指示所述第一C-DRX周期中是否监测物理下行控制信道,所述第二功率节省信号用于指示所述第二C-DRX周期中是否监测物理下行控制信道,所述第一C-DRX周期与所述第二C-DRX周期为不同的C-DRX周期;根据所述功率节省信号模式发送所述第二功率节省信号;The base station is configured to configure a power saving signal mode for a terminal device, and the power saving signal mode is used to instruct the base station not to send a first power saving signal to the terminal device and send a second power saving signal to the terminal device Signal, the first power saving signal is used to indicate whether the physical downlink control channel is monitored in the first C-DRX cycle, and the second power saving signal is used to indicate whether the physical downlink control channel is monitored in the second C-DRX cycle For a downlink control channel, the first C-DRX cycle and the second C-DRX cycle are different C-DRX cycles; sending the second power saving signal according to the power saving signal mode;
    所述终端设备,用于接收基站发送的功率节省信号模式;根据所述功率节省信号模式接收所述第二功率节省信号。The terminal device is configured to receive a power saving signal mode sent by a base station; and receive the second power saving signal according to the power saving signal mode.
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