WO2022017379A1 - 信号的收发方法、节点及网络侧设备 - Google Patents

信号的收发方法、节点及网络侧设备 Download PDF

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Publication number
WO2022017379A1
WO2022017379A1 PCT/CN2021/107355 CN2021107355W WO2022017379A1 WO 2022017379 A1 WO2022017379 A1 WO 2022017379A1 CN 2021107355 W CN2021107355 W CN 2021107355W WO 2022017379 A1 WO2022017379 A1 WO 2022017379A1
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WIPO (PCT)
Prior art keywords
information
wake
level
node
target
Prior art date
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PCT/CN2021/107355
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English (en)
French (fr)
Inventor
杨美英
王加庆
罗晨
郑方政
Original Assignee
大唐移动通信设备有限公司
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Application filed by 大唐移动通信设备有限公司 filed Critical 大唐移动通信设备有限公司
Priority to EP21845870.1A priority Critical patent/EP4185020A4/en
Priority to US18/005,962 priority patent/US20230232328A1/en
Publication of WO2022017379A1 publication Critical patent/WO2022017379A1/zh

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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
    • H04W52/0212Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave
    • H04W52/0216Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave using a pre-established activity schedule, e.g. traffic indication frame
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0001Arrangements for dividing the transmission path
    • H04L5/0014Three-dimensional division
    • H04L5/0023Time-frequency-space
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0044Arrangements for allocating sub-channels of the transmission path allocation of payload
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0078Timing of allocation
    • H04L5/008Timing of allocation once only, on installation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0091Signaling for the administration of the divided path
    • 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
    • H04W52/0212Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave
    • H04W52/0219Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave where the power saving management affects multiple terminals
    • 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
    • H04W52/0229Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a wanted signal
    • 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
    • H04W52/0235Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a power saving command
    • 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
    • H04W52/0261Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level
    • H04W52/0274Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by switching on or off the equipment or parts thereof
    • H04W52/028Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by switching on or off the equipment or parts thereof switching on or off only a part of the equipment circuit blocks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/28Discontinuous transmission [DTX]; Discontinuous reception [DRX]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • H04W68/005Transmission of information for alerting of incoming communication
    • 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

  • the present disclosure relates to the field of communication technologies, and in particular, to a method, a node, and a network side device for transmitting and receiving signals.
  • Communication devices such as terminals
  • Some ineffective power consumption so how to further reduce the power consumption of communication devices is still an important research direction.
  • Embodiments of the present disclosure provide a method for transmitting and receiving signals, a node, and a network-side device, so as to solve the problem that the power consumption of a communication device to implement a communication function is still relatively high.
  • an embodiment of the present disclosure provides a method for receiving a signal, which is applied to a node, including:
  • target information includes first information and/or second information
  • the wake-up information is obtained according to the target information, wherein the wake-up information obtained according to the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information.
  • the wake-up information obtained from the second information includes at least one of node-group-level wake-up information and node-level wake-up information;
  • the method further includes:
  • the determining whether PDSCH needs to be received according to the indication of the wake-up information includes:
  • the PDSCH scheduled by the DCI scrambled by P-RNTI needs to be received; otherwise, no need DCI-scheduled PDSCH scrambled by P-RNTI is received.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the monitoring parameters include at least one of CORESET resources, search space resources, PDCCH candidate resources, symbols of CORESET resources, and resource blocks of CORESET resources.
  • An embodiment of the present disclosure also provides a method for sending a signal, which is applied to a network side device, including:
  • the target information includes first information and/or second information
  • the wake-up information is sent through the target information, wherein the wake-up information sent through the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information, and the wake-up information sent through the first
  • the wake-up information sent by the second information includes at least one of node-group-level wake-up information and node-level wake-up information.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of system message update, early warning message and first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the target information is configured based on high-layer signaling, based on RRC signaling, based on dynamic signaling, configured based on a predetermined manner, or based on broadcast configuration.
  • An embodiment of the present disclosure further provides a node, including:
  • a first obtaining module configured to obtain target information, where the target information includes first information and/or second information;
  • a second obtaining module configured to obtain wake-up information according to the target information, wherein the wake-up information obtained according to the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information Item 1, the wake-up information obtained according to the second information includes at least one of node-group-level wake-up information and node-level wake-up information;
  • An action module configured to wake up or continue sleeping according to the indication of the wake-up information.
  • the node further includes:
  • a receiving module configured to determine whether PDSCH needs to be received according to the indication of the wake-up information.
  • the receiving module is configured to receive the P-RNTI if the wake-up information obtained according to the target information includes at least one of the node-level wake-up information and the node-level wake-up information. scrambled DCI-scheduled PDSCH; otherwise, no need to receive P-RNTI-scrambled DCI-scheduled PDSCH.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information are the same as the bit information.
  • the bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the monitoring parameters include at least one of CORESET resources, search space resources, PDCCH candidate resources, symbols of CORESET resources, and resource blocks of CORESET resources.
  • Embodiments of the present disclosure also provide a network side device, including:
  • a configuration module configured to configure target information, where the target information includes first information and/or second information
  • a sending module configured to send wake-up information through the target information, wherein the wake-up information sent through the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information , the wake-up information sent through the second information includes at least one of node-group-level wake-up information and node-level wake-up information.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the target information is configured based on high-layer signaling, based on RRC signaling, based on dynamic signaling, configured based on a predetermined manner, or based on broadcast configuration.
  • An embodiment of the present disclosure further provides a node, including: a transceiver, a memory, a processor, and a computer program stored on the memory and executable on the processor, and the processor implements the computer program when the processor executes the computer program.
  • target information includes first information and/or second information
  • the wake-up information is obtained according to the target information, wherein the wake-up information obtained according to the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information.
  • the wake-up information obtained from the second information includes at least one of node-group-level wake-up information and node-level wake-up information;
  • the processor also implements the following steps when executing the computer program:
  • the method further includes:
  • the processor also implements the following steps when executing the computer program:
  • the determining whether PDSCH needs to be received according to the indication of the wake-up information includes:
  • the PDSCH scheduled by the DCI scrambled by P-RNTI needs to be received; otherwise, no need DCI-scheduled PDSCH scrambled by P-RNTI is received.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the monitoring parameters include at least one of CORESET resources, search space resources, PDCCH candidate resources, symbols of CORESET resources, and resource blocks of CORESET resources.
  • An embodiment of the present disclosure further provides a network-side device, including: a transceiver, a memory, a processor, and a computer program stored in the memory and executable on the processor, where the processor executes the computer program
  • a network-side device including: a transceiver, a memory, a processor, and a computer program stored in the memory and executable on the processor, where the processor executes the computer program
  • the target information includes first information and/or second information
  • the wake-up information is sent through the target information, wherein the wake-up information sent through the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information, and the wake-up information sent through the first
  • the wake-up information sent by the second information includes at least one of node-group-level wake-up information and node-level wake-up information.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the target information is configured based on high-layer signaling, based on RRC signaling, based on dynamic signaling, configured based on a predetermined manner, or based on broadcast configuration.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • Embodiments of the present disclosure further provide a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, implements the steps in the method for receiving signals on the node side provided by the embodiments of the present disclosure, or When the computer program is executed by the processor, the steps in the method for sending a signal on the network side device side provided by the embodiments of the present disclosure are implemented.
  • the first information and/or the second information may be used to indicate different levels of wake-up information, so that the node (including the terminal) side can accurately know the level of the message to be received. If it is an area-level or cell-level message, all nodes under the area or cell need to be woken up. However, if it is a node-level or node-group-level message, only the indicated node needs to be woken up, and other nodes do not need to be woken up, thereby reducing the ineffective power consumption caused by unnecessary wake-up of the node. It can be applied to the wake-up indication of the monitoring of the Paging DCI in the RRC-Idle/Inactive state of the node.
  • the first information and/or the second information can be used to indicate different levels of wake-up information, so that the network side can separately indicate the different levels of wake-up information. If it is regional-level or cell-level wake-up information, Then you can only indicate on one resource, and all nodes (including terminals) monitor the resource, and there is no need to send regional or cell-level wake-up information for each node, which can greatly reduce the wake-up indication of the base station. Signaling overhead.
  • FIG. 1 is a schematic flowchart of a method for receiving a signal in an embodiment of the present disclosure
  • FIG. 2 is a schematic diagram of a wake-up indication when the first information is the first bit information and the second information is the second bit information in an embodiment of the disclosure;
  • FIG. 3 is another schematic diagram of a wake-up indication when the first information is the first bit information and the second information is the second bit information in an embodiment of the disclosure;
  • FIG. 4 is a schematic diagram of a wake-up indication when the first information is first sequence information and the second information is second sequence information in an embodiment of the present disclosure
  • FIG. 5 is a schematic diagram of a wake-up indication when the first information is information of a first time domain resource and the second information is information of a second time domain resource in an embodiment of the present disclosure
  • FIG. 6 is a schematic diagram of a wake-up indication when the first information is information of a first frequency domain resource and the second information is information of a second frequency domain resource in an embodiment of the present disclosure
  • FIG. 7 is a schematic diagram of a wake-up indication when the first information is information of a first airspace resource and the second information is information of a second airspace resource in an embodiment of the present disclosure
  • FIG. 8 is a schematic diagram of a wake-up indication when the first information is information configured by a first monitoring parameter and the second information is information configured by a second monitoring parameter in an embodiment of the present disclosure
  • FIG. 9 is a schematic flowchart of a method for sending a signal in an embodiment of the present disclosure.
  • FIG. 10 is a schematic structural diagram of a node in an embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram of a network side device in an embodiment of the disclosure.
  • FIG. 12 is a schematic structural diagram of a node in an embodiment of the present disclosure.
  • FIG. 13 is a schematic structural diagram of a network side device in an embodiment of the disclosure.
  • the related art defines the monitoring of paging (Paging) under RRC-Idle/Inactive (RRC: radio resource control, Radio resource control; Idle: idle state; Inactive: inactive state), which mainly includes the following information: system message update, Alert messages and paging messages.
  • RRC radio resource control
  • Idle idle state
  • Inactive inactive state
  • the UE calculates the paging frame (Paging Frame, PF) and the paging opportunity (Paging Occasion, PO) according to the parameter configuration.
  • the UE monitors the paging RNTI (Paging-RNTI, P-RNTI) scrambled downlink control information (Downlink Control Information, DCI), followed by demodulation and decoding to obtain the physical downlink shared channel (Physical Downlink Shared Channel, PDSCH) carrying the paging message, and PDSCH is demodulated and decoded Then, obtain the list information of UEs that need to receive the Paging message, query the list, and if the UE is in the list, obtain the Paging message carried by the PDSCH, otherwise, the UE does not obtain the paging message .
  • Paging-RNTI Paging-RNTI
  • DCI Downlink Control Information
  • the messages contained in paging are classified according to different categories, including the following parts:
  • Short message including system message update, early warning message and first message, the first message is used to instruct to stop monitoring PO;
  • RNTI Radio Network Tempory Identity
  • a DCI that does not require P-RNTI scrambled schedules its PDSCH information, such as short messages.
  • Cell-level messages short messages
  • terminal-level messages (hereinafter, node-level messages): paging messages.
  • the monitoring of the paging downlink control channel is scrambled by P-RNTI, which is shared by all UEs.
  • the base station configures the monitoring period, the number of Paging radio frames per period, And the number of POs in each paging radio frame.
  • the base station will send the P-RNTI plus at the PO moment.
  • the scrambled DCI is used for sending the paging of the UE. For the terminal, regardless of whether it has its own Paging, it needs to wake up to monitor the DCI scrambled by P-RNTI.
  • the DCI scrambled by P-RNTI will perform subsequent related operations, including PDCCH and PDSCH demodulation. Decoding until the UE finds that it is not recorded in the UE list information for sending the Paging message. Therefore, unnecessary power consumption of the terminal is caused.
  • the monitoring of DCI in the active period of the discontinuous reception (Discontinuous Reception, DRX) indicated by the wake-up signal in the RRC connected state is supported. Specifically: sending an energy-saving signal before the DRX activation period, and using the energy-saving signal to indicate whether the terminal is woken up in the subsequent DRX cycle.
  • WUS wake-Up Signal
  • the wake-up indication can be indicated by 1 bit in the DCI of the power saving signal, "1" means wake up; "0" means sleep.
  • the WUS triggers the drx-onDurationTimer to start running, so that the terminal enters the activation period and performs PDCCH monitoring. Since whether to wake up the subsequent DRX cycle is the most important function of sending the energy-saving signal outside the activation period, the energy-saving signal is also referred to as WUS-PDCCH for short.
  • the energy-saving signal is also referred to as WUS-PDCCH for short.
  • it also supports the sending of sequence-based wake-up signals, which are used to indicate whether the terminal needs to wake up for Paging DCI monitoring under each PO.
  • the initial sequence is generated by the cell ID, the subframe of the corresponding first PO and the position of the time slot, so that after the terminal receives the sequence of the wake-up signal, it can perform correlation matching to confirm whether the PO needs to wake up this time.
  • the generation of the wake-up sequence is based on the terminal group identification (UE-group-ID).
  • UE-group-ID terminal group identification
  • the indication for monitoring the DCI in the RRC connected state is PDCCH-based, and is used to indicate whether each terminal needs to wake up to monitor the PDCCH in the next DRX cycle.
  • the DCI monitoring of Paging it is sequence-based, and the sequence is generated. One is based on the cell ID and the subframe and time slot number of the first PO, which is used to indicate the wake-up of all terminals at the PO moment, and the other is based on the cell ID and the subframe and time slot number of the first PO.
  • a wake-up sequence is generated based on the UE-group-ID, which is used to indicate the monitoring of the DCI of the Paging of a certain terminal group.
  • the terminal in the area or the cell needs to receive the short message; if the P-RNTI scrambled DCI carries a short message -
  • the DCI scrambled by the RNTI carries paging, so only the terminal being paged needs to receive the Paging DCI.
  • the DCI does not need to schedule PDSCH; if the P-RNTI scrambled DCI carries a certain UE Or for paging of some UEs, the DCI needs to be followed by the scheduled PDSCH.
  • the above-mentioned PDCCH-based indication method or the sequence-based indication method it is impossible to distinguish whether there is scheduling data. For the terminal, if there is no scheduling data and only short messages, the UE still needs to open the PDSCH buffer, which brings invalid power consumption to the terminal.
  • the indication scheme based on the PDCCH-based wake-up signal in the RRC connected state, or based on If the indication scheme of the wake-up signal of the sequence is directly applied to the indication of the Paging DCI, it cannot distinguish the paging message of the terminal at the same time, whether all the terminals at the regional level or the cell level need to receive it, or only a certain The UE or some UEs need to receive, thus either causing useless monitoring power consumption of the terminal, or the resource overhead of the base station is relatively large, and it will also have a certain impact on the delay of the short message. 3. Based on 2, if it is directly applied to the indication of Paging DCI, it will also bring useless power consumption to the terminal.
  • the present disclosure provides a method for receiving a signal and a method for transmitting a signal, so as to solve the above-mentioned problem of invalid power consumption of the terminal due to the monitoring of invalid PDCCH and the buffering of useless PDSCH. , and the problem that the base station requires a large resource overhead due to the indication of the energy-saving signal.
  • Fig. 1 is a schematic flowchart of a method for receiving a signal provided by an embodiment of the present disclosure. The method is applied to a node and includes the following steps:
  • the node acquires target information, where the target information includes first information and/or second information;
  • the node obtains wake-up information according to the target information, wherein the wake-up information obtained according to the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information , the wake-up information obtained according to the second information includes at least one of node-group-level wake-up information and node-level wake-up information;
  • the node wakes up or continues to sleep according to the indication of the wake-up information.
  • the node may be a user terminal (User Equipment, UE), for example: a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer), a personal digital assistant (personal digital assistant, PDA) , Terminal-side devices such as Mobile Internet Device (MID) or Wearable Device.
  • UE User Equipment
  • UE User Equipment
  • Tablet Personal Computer Tablet Personal Computer
  • laptop computer laptop computer
  • PDA personal digital assistant
  • Terminal-side devices such as Mobile Internet Device (MID) or Wearable Device.
  • the node may also be a remote radio unit (Remote Radio Unit, RRU), a remote radio head (Remote Radio Head, RRH), or a transceiver point (Transmission Reception Point, TRP), or the like.
  • RRU Remote Radio Unit
  • RRH Remote Radio Head
  • TRP Transmission Reception Point
  • the node may be an idle state (Idle) or an inactive state (Inactive) node.
  • the wake-up information is used to instruct the node to wake up, for example, to instruct the node to wake up at a paging opportunity (Paging Occasion, PO) to receive a paging message.
  • the wake-up information includes at least one of the following categories: regional-level wake-up information, cell-level wake-up information, node group-level wake-up information, and node-level wake-up information.
  • the area-level wake-up information is used to indicate at least one cell-level wake-up information under the area.
  • the area-level wake-up can be used.
  • the information indicates that all nodes in the area need to receive the wake-up information, and wake up or sleep according to the wake-up information. If the node is woken up, the subsequent area-level information is received.
  • the cell-level wake-up information is used to indicate the wake-up information of at least one node or node group under the cell. When there is cell-level information to be sent and all nodes under the cell need to receive it, the cell-level wake-up information can be used.
  • the wake-up information indicates that all nodes in the cell need to receive the wake-up information, and wake up or sleep according to the wake-up information. If the node is woken up, it will receive subsequent cell-level information.
  • the wake-up information of the node grouping includes the wake-up information of at least one node.
  • the wake-up signal at the node group level can be used for indication. All nodes under the node grouping need to receive the wake-up information indication, and wake up or sleep according to the wake-up information indication, and if the node is woken up, receive subsequent node grouping-level information;
  • the wake-up information of the node is used to indicate the wake-up information of a node.
  • the node-level wake-up information can be used to indicate that the node needs to receive the wake-up information. , and wake up or sleep according to the indication of the wake-up information, and if the node is woken up, the subsequent node-level information is received.
  • the area-level information refers to information that all nodes under the area need to receive
  • the cell-level information refers to information that all nodes under the cell need to receive
  • the information at the node grouping level refers to information that all nodes under the node grouping need to receive
  • the node-level information refers to information that the node needs to receive.
  • the first information and/or the second information can be used to indicate different levels of wake-up information, so that the node (including the terminal) side can accurately know the level of the message to be received. If it is an area-level or cell-level message, all nodes under the area or cell need to be woken up. However, if it is a node-level or node-group-level message, only the indicated node needs to be woken up, and other nodes do not need to be woken up, thereby reducing the ineffective power consumption caused by unnecessary wake-up of the node.
  • the embodiment of the present disclosure can be applied to the wake-up indication of monitoring of Paging DCI in the RRC-Idle/Inactive state of the terminal.
  • the method further includes:
  • Whether it is necessary to receive a physical downlink shared channel (Physical Downlink Shared Channel, PDSCH) is determined according to the indication of the wake-up information.
  • PDSCH Physical Downlink Shared Channel
  • the node only needs to receive the Physical Downlink Control Channel (PDCCH) after waking up, and does not need to open the PDSCH cache, which further reduces the power consumption of the node.
  • PDCCH Physical Downlink Control Channel
  • the node needs to receive the PDCCH first after waking up, and then obtain downlink control information (Downlink Control Information, DCI) from the received PDCCH. If the node is in an idle state ( Idle), then the DCI is the DCI scrambled by the Paging-Radio Network Tempory Identity (P-RNTI), and finally opens the PDSCH cache and receives the PDSCH according to the scheduling information in the DCI.
  • DCI Downlink Control Information
  • the determining whether PDSCH needs to be received according to the indication of the wake-up information includes:
  • the PDSCH scheduled by the DCI scrambled by P-RNTI needs to be received; otherwise, no need DCI-scheduled PDSCH scrambled by P-RNTI is received.
  • the wake-up information obtained according to the target information includes regional-level wake-up information and/or cell-level wake-up information, but does not include node-group-level wake-up information, nor does it include node-level wake-up information, then It may be determined that the node does not need to receive the P-RNTI scrambled DCI-scheduled PDSCH. Conversely, if the wake-up information obtained according to the target information includes node-level wake-up information and/or node-level wake-up information, it can be determined that the node needs to receive the PDSCH scheduled by the DCI scrambled by the P-RNTI.
  • the information at the regional level and the information at the cell level are the information of the DCI scheduling PDSCH that does not require P-RNTI scramble, while the information at the node group level and the information at the node level are the DCI scheduling PDSCH that requires P-RNTI scramble.
  • Information is the information at the regional level and the information at the cell level.
  • the node can obtain the level of the information to be received according to the level of the wake-up information indicated by the first information and/or the second information, so as to determine whether to receive the PDSCH scheduled by the DCI scrambled by the P-RNTI.
  • the node after the node wakes up, in addition to receiving the PDCCH and PDSCH as required, it can also receive other signals such as reference signals.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the first information may be of multiple types, such as at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information may also have multiple types, such as at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information and monitoring parameter configuration information.
  • the step of acquiring wake-up information according to the target information is specifically according to the The target information to receive the wake-up signal, and then decode to get the wake-up information.
  • the step of acquiring wake-up information according to the target information specifically includes interpreting the wake-up information according to the target information information.
  • the information of the time domain resource is configured as the first information, it is the information of the first time domain resource, and when it is configured as the second information, it is the information of the second time domain resource, and the first time domain resource and the second time domain resource At least one of them is used to indicate wake-up information; when the information of the frequency domain resource is configured as the first information, it is the information of the first frequency domain resource, and when it is configured as the second information, it is the information of the second frequency domain resource.
  • At least one of a frequency domain resource and a second frequency domain resource is used to indicate wake-up information; when the information of the airspace resource is configured as the first information, it is the information of the first airspace resource, and when it is configured as the second information, it is the second airspace Resource information, at least one of the first airspace resource and the second airspace resource is used to indicate wake-up information; when the bit information is configured as the first information, it is the first bit information, and when it is configured as the second information, it is The second bit information, at least one of the first bit information and the second bit information is used to indicate wake-up information; the sequence information is the first sequence information when configured as the first information, and is configured as the second information When the information is the second sequence information, at least one of the first sequence information and the second sequence information is used to indicate wake-up information; when the information configured by the monitoring parameters is configured as the first information, it is the information configured by the first monitoring parameters, When configured as the second information, it is the information configured by the second monitoring parameter, and at least one of the
  • the time domain resources include at least one of subframes, time slots and symbols.
  • the time domain resource may include one subframe, or may include multiple subframes.
  • time slots it may include one time slot, or may include multiple time slots.
  • time domain resource includes symbols, it may include one symbol or multiple symbols.
  • the frequency domain resources include carrier, partial bandwidth (BandWidth Partial, BWP), resource block group (Resource Block Group, RBG), resource block (Resource Block, RB), resource element group (Resource Element Group, REG) and resource elements At least one of (Resource Element, RE).
  • BWP resource block group
  • RBG resource block
  • RBG resource block
  • REG resource element group
  • REG resource elements At least one of (Resource Element, RE).
  • the spatial resource includes at least one of a Transceiver Point (TRP), an antenna port, an antenna, and a beam.
  • TRP Transceiver Point
  • the airspace resource includes TRP, it may include one TRP, or may include multiple TRPs.
  • the spatial resource includes an antenna port, it may include one antenna port, or may include multiple antenna ports.
  • the spatial resource includes an antenna, it may include one antenna, or may include multiple antennas.
  • the spatial resource includes beams, it may include one beam, or may include multiple beams.
  • the sequences indicated by the sequence information may be of the same sequence type, or may be of different sequence types.
  • the sequence may be the same root sequence of the same sequence type, or may be different root sequences of the same sequence type.
  • the sequence may be an initial configuration generated with different parameter configurations and/or parameter types.
  • the sequence type may be a gold sequence, a ZC sequence, a pseudo-random (PN) sequence, or a Harmad sequence.
  • the sequence may be an initial configuration generated with different parameter configurations and/or parameter types, and may be an initial sequence of initial configurations generated with different IDs, for example, it may be a cell ID, an area ID, a UE ID, a high-level configuration ID.
  • sequence information When the sequence information is configured as the first information, it is the first sequence information, and when it is configured as the second information, it is the second sequence information, and the sequence indicated by the first sequence information and the sequence indicated by the second sequence information may be the same.
  • the sequence type of or a different sequence type.
  • the sequence may be the same root sequence of the same sequence type, or may be different root sequences of the same sequence type.
  • the sequence may be an initial configuration generated with different parameter configurations and/or parameter types.
  • the monitoring parameter configuration includes at least one parameter configuration of wake-up information, and the monitoring parameter includes a core resource set (Core resource set, CORESET) resource, a search space resource, a PDCCH candidate (candidate) resource, a symbol of the CORESET resource, and a CORESET resource in the resource block. at least one.
  • the monitoring parameter includes CORESET resources, it may include one CORESET resource, or may include multiple CORESET resources.
  • search space resources it may include one search space resource, or may include multiple search space resources.
  • the monitoring parameter includes PDCCH candidate resources, it may include one PDCCH candidate resource, or may include multiple PDCCH candidate resources.
  • the monitoring parameter when the monitoring parameter includes the symbol of the CORESET resource, it may include one symbol of the CORESET resource, or may include multiple symbols of the CORESET resource.
  • the monitoring parameter when the monitoring parameter includes the resource block of the CORESET resource, it may include one resource block of the CORESET resource, or may include multiple resource blocks of the CORESET resource.
  • the search space resources include subframes, time slots, symbols, search space period configuration, search space duration, search space time domain symbol pattern (pattern), search space start position, monitoring position and search space type at least one of.
  • the search space resource includes subframes, it may include one subframe, or may include multiple subframes.
  • the search space resource includes time slots, it may include one time slot, or may include multiple time slots.
  • the search space resource includes symbols, it may include one symbol or multiple symbols.
  • the search space resource includes a search space period configuration, it may include one search space period configuration, or may include multiple search space period configurations.
  • the search space resource includes the search space duration, it may include one search space duration, or may include multiple search space durations.
  • the search space resource When the search space resource includes a pattern of search space and time domain symbols, it may include one pattern of search space and time domain symbols, or may include a plurality of patterns of search space and time domain symbols.
  • the search space resource When the search space resource includes the starting position of the search space, it may include the starting position of one search space, or may include the starting position of multiple search spaces.
  • the search space resource When the search space resource includes monitoring positions, it may include one monitoring position, or may include multiple monitoring positions.
  • the search space resource When the search space resource includes a search space type, it may include one search space type, or may include multiple search space types.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the type of short message includes at least one of system message update, early warning message and first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • SIB System Information Block
  • SIB2 SIB2, SIB3, SIB4, SIB5, SIB6, SIB7, and the like.
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the wake-up information carried by the first information indicates at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes regional level information
  • the type of information to be received includes cell-level information
  • the type of information that needs to be received includes node group-level information
  • the wake-up information carried by the second information indicates at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node group-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the system message includes at least one of all types of system messages.
  • the warning message includes at least one of Earthquake and Tsunami Warning System (ETWS) and Commercial Mobile Alert Service (CMAS).
  • EWS Earthquake and Tsunami Warning System
  • CMAS Commercial Mobile Alert Service
  • the wake-up information carried (or indicated) by various kinds of first information and/or second information is exemplified below.
  • bit information When the bit information is configured as the first information, it is the first bit information, and when it is configured as the second information, it is the second bit information, and at least one of the first bit information and the second bit information is used for Indicates wake-up information.
  • the wake-up information carried by the first bit of information indicates at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes regional level information
  • the type of information to be received includes cell-level information
  • the type of information that needs to be received includes node group-level information
  • the wake-up information carried by the second bit of information indicates at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node group-level information
  • the type of information that needs to be received includes node-level information
  • the first bit information includes at least N bits, where N is an integer not less than zero.
  • the wake-up information indicated by the first bit information is not Including wake-up information at the regional level; the wake-up information indicated by the first bit information does not include the wake-up information at the cell level; the wake-up information indicated by the first bit information does not include the wake-up information at the node group level; the node does not Need to wake up to receive information at the regional level; the node does not need to wake up to receive information at the cell level; the node does not need to wake up to receive information at the node group level;
  • the first bit information includes one bit, and the value of the one bit is 1, it means at least one of the following: the wake-up information indicated by the first bit information includes Wake-up information at the regional level; the wake-up information indicated by the first bit information includes the wake-up information at the cell level; the wake-up information indicated by the first bit information includes the wake-up information at the node group level; the node needs to wake up to perform the area The node needs to wake up to receive cell-level information; the node needs to wake up to receive node group-level information;
  • the wake-up information indicated by the first bit information includes regional-level wake-up information
  • the wake-up information indicated by the first bit information includes cell-level wake-up information
  • the wake-up information indicated by the first bit information includes node-group-level wake-up information
  • the wake-up information indicated by the first bit information includes wake-up information indicating the type of the short message
  • the wake-up information indicated by the first bit information includes wake-up information indicating the type of system message that needs to be updated
  • the wake-up information indicated by the first bit information includes wake-up information indicating whether the system message needs to be updated.
  • the second bit information includes at least M bits, where M is an integer not less than zero.
  • the second bit information includes zero bits, it means at least one of the following: the second bit information does not exist; the wake-up information indicated by the second bit information does not exist The wake-up information of the node group level indicated by the second bit information does not exist; the wake-up information of the node level indicated by the second bit information does not exist; the node does not need to wake up to receive the information of the node group level ; the node does not need to wake up to receive node-level information;
  • the wake-up information indicated by the second bit information is not Including the wake-up information at the node group level; the wake-up information indicated by the second bit information does not include the wake-up information at the node level; the node does not need to wake up to receive information at the node group level; the node does not need to wake up to perform node-level wake-up information the receipt of level information;
  • the second bit information includes one bit, and the value of the one bit is 1, it means at least one of the following: the wake-up information indicated by the second bit information includes a node group-level wake-up information; the wake-up information indicated by the second bit information includes node-level wake-up information; the node needs to wake up to receive node-level information; the node needs to wake up to receive node-level information ;
  • the wake-up information indicated by the second bit information includes node-group-level wake-up information
  • the wake-up information indicated by the second bit information includes node-level wake-up information
  • the wake-up information indicated by the second bit information includes wake-up information indicating the number of the node grouping that needs to be woken up;
  • the wake-up information indicated by the second bit information includes wake-up information indicating the number of the node that needs to be woken up;
  • the wake-up information indicated by the second bit information includes wake-up information indicating whether at least one node group needs to be woken up;
  • the wake-up information indicated by the second bit information includes wake-up information indicating whether at least one node needs to wake up.
  • FIG. 2 is a schematic diagram of a wake-up indication when the first information is the first bit information and the second information is the second bit information, wherein the first bit from the left represents the target cell/target area Whether there is a short message in it. If the bit value is "0", it means that there is no short message in the target cell/target area, and you do not need to wake up to receive short messages; if the bit value is "1", it means that the target cell/target area memory In the short message, you need to wake up to receive the short message.
  • the third bit from the left indicates whether there is a paging message in the target node group (specifically which node group is configured by the network side device).
  • bit value is "0”, it means that there is no paging in the target node group. If the value of this bit is "1”, it means that there is a paging message in the target node group and needs to wake up to receive a paging message.
  • FIG. 3 is another schematic diagram of a wake-up indication when the first information is the first bit information and the second information is the second bit information, wherein every two bits corresponds to a node group.
  • the first bit indicates whether there is a short message in the area/cell to which the corresponding node group belongs, and whether the node needs to wake up to receive a short message, and the latter bit indicates whether there is a paging message in the corresponding node group. Whether the node needs to wake up to receive paging messages.
  • sequence information When the sequence information is configured as first information, it is first sequence information, and when configured as second information, it is second sequence information, and at least one of the first sequence information and the second sequence information is used to indicate wake-up information.
  • the content indicated by the wake-up information carried by the first sequence information is the same as the above-mentioned first bit information, which is not repeated here, and the content of the wake-up information carried by the second sequence information is the same as the above-mentioned second bit information, which is not repeated here.
  • the first sequence information includes at least X sequences, where X is an integer not less than zero.
  • the first sequence information includes zero sequences, it means at least one of the following: the first sequence information does not exist; the wake-up information indicated by the first sequence information does not exist; the The area-level wake-up information indicated by the first sequence information does not exist; the cell-level wake-up information indicated by the first sequence information does not exist; the node group-level wake-up information indicated by the first sequence information does not exist; the node No need to wake up to receive information at the regional level; the node does not need to wake up to receive information at the cell level; the node does not need to wake up to receive information at the node group level;
  • the first sequence information includes a sequence
  • the wake-up information indicated by the first sequence information includes regional-level wake-up information
  • the wake-up information includes cell-level wake-up information
  • the wake-up information indicated by the first sequence information includes node-group-level wake-up information
  • the node needs to wake up to receive regional-level information
  • the node needs to wake up to perform cell-level information receiving
  • the node needs to wake up to receive node group-level information
  • the first sequence information includes more than one sequence, it means at least one of the following:
  • the wake-up information indicated by the first sequence information includes regional-level wake-up information
  • the wake-up information indicated by the first sequence information includes cell-level wake-up information
  • the wake-up information indicated by the first sequence information includes node-group-level wake-up information
  • the wake-up information indicated by the first sequence information includes wake-up information indicating the type of the short message
  • the wake-up information indicated by the first sequence information includes wake-up information indicating the type of system message that needs to be updated;
  • the wake-up information indicated by the first sequence information includes wake-up information indicating whether the system message needs to be updated.
  • the second sequence information includes at least Y sequences, where Y is an integer not less than zero.
  • the second sequence information includes zero sequences, it means at least one of the following: the second sequence information does not exist; the wake-up information indicated by the second sequence information does not exist; the The node group-level wake-up information indicated by the second sequence information does not exist; the node-level wake-up information indicated by the second sequence information does not exist; the node does not need to wake up to receive node group-level information; the node does not Need to wake up to receive node-level information;
  • the second sequence information includes a sequence
  • the wake-up information indicated by the second sequence information includes wake-up information at the node group level
  • the second sequence information indicates The wake-up information includes node-level wake-up information
  • the node needs to wake up to receive node group-level information
  • the node needs to wake up to receive node-level information
  • Y>1 that is, when the second sequence information includes more than one sequence, it means at least one of the following:
  • the wake-up information indicated by the second sequence includes node-group-level wake-up information
  • the wake-up information indicated by the second sequence includes node-level wake-up information
  • the wake-up information indicated by the second sequence information includes wake-up information indicating the number of the node group that needs to be woken up;
  • the wake-up information indicated by the second sequence information includes wake-up information indicating the number of the node that needs to be woken up;
  • the wake-up information indicated by the second sequence includes wake-up information indicating whether at least one node group needs to be woken up;
  • the wake-up information indicated by the second sequence includes wake-up information indicating whether at least one node needs to wake up.
  • FIG. 4 is a schematic diagram of a wake-up indication when the first information is first sequence information and the second information is second sequence information.
  • the first sequence indicates that the node needs to wake up the information of the receiving area level;
  • the second sequence indicates that the node group 1 needs to wake up the information of the receiving node group level;
  • the third sequence indicates that the node group 2 needs to wake up the information of the receiving node group level;
  • the fourth sequence indicates that node group 3 needs to wake up the receiving node group-level information;
  • the fifth sequence indicates that node group 4 needs to wake up the receiving node group-level information;
  • the sixth sequence indicates that node group 5 needs to wake up the receiving node group-level information ;
  • the seventh sequence indicates that node packet 6 needs to wake up to receive node packet-level information.
  • the information of the time domain resource is configured as the first information, it is the information of the first time domain resource, and when it is configured as the second information, it is the information of the second time domain resource. At least one of the information of the domain resource is used to indicate wake-up information.
  • the content of the wake-up information indication carried by the information of the first time domain resource is the same as the above-mentioned first bit information, which will not be repeated here, and the content of the wake-up information indication carried by the information of the second time domain resource is the same as the above-mentioned second bit information. It will not be repeated here.
  • the first time domain resource includes K time domain units, where K is an integer not less than zero.
  • the time domain unit may be at least one of a symbol, a slot, and a subframe.
  • the first time domain resource includes zero time domain units
  • the node needs to wake up to receive regional-level information
  • the node needs to wake up to receive cell-level information
  • the node needs to wake up to receive node group-level information
  • the wake-up information carried by the first time domain resource includes regional-level wake-up information
  • the wake-up information carried by the first time domain resource includes cell-level wake-up information
  • the wake-up information carried by the first time domain resource includes node-group-level wake-up information
  • the wake-up information carried by the first time domain resource includes wake-up information indicating the type of the short message
  • the wake-up information carried by the first time domain resource includes wake-up information indicating the type of system message that needs to be updated;
  • the wake-up information carried by the first time domain resource includes wake-up information indicating whether the system message needs to be updated.
  • the second time domain resource includes L time domain units, where L is an integer not less than zero.
  • the time domain unit may be at least one of a symbol, a slot, and a subframe.
  • the second time domain resource includes zero time domain units
  • the node needs to wake up to receive node group-level information
  • the node needs to wake up to receive node-level information
  • the wake-up information carried by the second time domain resource includes node-group-level wake-up information
  • the wake-up information carried by the second time domain resource includes node-level wake-up information
  • the wake-up information carried by the second time domain resource includes wake-up information indicating the number of the node group that needs to be woken up;
  • the wake-up information carried by the second time domain resource includes wake-up information indicating the number of the node that needs to be woken up;
  • the wake-up information carried by the second time domain resource includes wake-up information indicating whether at least one node group needs to be woken up;
  • the wake-up information carried by the second time domain resource includes wake-up information indicating whether at least one node needs to wake up.
  • FIG. 5 is a schematic diagram of a wake-up indication when the first information is information of a first time domain resource and the second information is information of a second time domain resource.
  • the information of the frequency domain resource is configured as the first information, it is the information of the first frequency domain resource, and when it is configured as the second information, it is the information of the second frequency domain resource. At least one of the information of the domain resource is used to indicate wake-up information.
  • the content of the wake-up information indication carried by the information of the first frequency domain resource is the same as the above-mentioned first bit information, which is not repeated here, and the content of the wake-up information indication carried by the information of the second frequency domain resource is the same as the above-mentioned second bit information, It will not be repeated here.
  • the first frequency domain resource includes S frequency domain units, where S is an integer not less than zero.
  • the frequency domain unit may be at least one of RE, RB, REG, RBG, BWP, and carrier.
  • the first frequency domain resource includes zero frequency domain units
  • the node needs to wake up to receive regional-level information
  • the node needs to wake up to receive cell-level information
  • the node needs to wake up to receive node group-level information
  • the wake-up information carried by the first frequency domain resource includes regional-level wake-up information
  • the wake-up information carried by the first frequency domain resource includes cell-level wake-up information
  • the wake-up information carried by the first frequency domain resource includes node-group-level wake-up information
  • the wake-up information carried by the first frequency domain resource includes wake-up information indicating the type of the short message
  • the wake-up information carried by the first frequency domain resource includes wake-up information indicating the type of system message that needs to be updated;
  • the wake-up information carried by the first frequency domain resource includes wake-up information indicating whether the system message needs to be updated.
  • the second frequency domain resource includes T frequency domain units, where T is an integer not less than zero.
  • the frequency domain unit may be at least one of RE, RB, REG, RBG, BWP, and carrier.
  • the second frequency domain resource includes zero frequency domain units
  • the node needs to wake up to receive node group-level information
  • the node needs to wake up to receive node-level information
  • the wake-up information carried by the second frequency domain resource includes node-group-level wake-up information
  • the wake-up information carried by the second frequency domain resource includes node-level wake-up information
  • the wake-up information carried by the second frequency domain resource includes wake-up information indicating the number of the node group that needs to be woken up;
  • the wake-up information carried by the second frequency domain resource includes wake-up information indicating the number of the node that needs to be woken up;
  • the wake-up information carried by the second frequency domain resource includes wake-up information indicating whether at least one node group needs to be woken up;
  • the wake-up information carried by the second frequency domain resource includes wake-up information indicating whether at least one node needs to wake up.
  • FIG. 6 is a schematic diagram of a wake-up indication when the first information is information of a first frequency domain resource and the second information is information of a second frequency domain resource.
  • the information of the airspace resource is configured as the first information, it is the information of the first airspace resource, and when it is configured as the second information, it is the information of the second airspace resource. At least one of them is used to indicate wake-up information.
  • the content of the wake-up information indication carried by the information of the first airspace resource is the same as the above-mentioned first bit information, which will not be repeated here, and the content of the wake-up information indication carried by the information of the second airspace resource is the same as the above-mentioned second bit information, here No longer.
  • the first airspace resource includes P airspace units, where P is an integer not less than zero.
  • the spatial unit may be at least one of TRP, antenna port, number of antennas, and beams.
  • the first airspace resource includes zero airspace units
  • the node needs to wake up to receive regional-level information
  • the node needs to wake up to receive cell-level information
  • the node needs to wake up to receive node group-level information
  • the wake-up information carried by the first airspace resource includes regional-level wake-up information
  • the wake-up information carried by the first airspace resource includes cell-level wake-up information
  • the wake-up information carried by the first airspace resource includes node-group-level wake-up information
  • the wake-up information carried by the first airspace resource includes wake-up information indicating the type of the short message
  • the wake-up information carried by the first airspace resource includes wake-up information indicating the type of system message that needs to be updated;
  • the wake-up information carried by the first airspace resource includes wake-up information indicating whether the system message needs to be updated.
  • the second airspace resource includes Q airspace units, where Q is an integer not less than zero.
  • the spatial unit may be at least one of TRP, antenna port, number of antennas, and beams.
  • the second airspace resource includes zero airspace units
  • the node needs to wake up to receive node group-level information
  • the node needs to wake up to receive node-level information
  • the wake-up information carried by the second airspace resource includes node-group-level wake-up information
  • the wake-up information carried by the second airspace resource includes node-level wake-up information
  • the wake-up information carried by the second airspace resource includes wake-up information indicating the number of the node group that needs to be woken up;
  • the wake-up information carried by the second airspace resource includes wake-up information indicating the number of the node that needs to be woken up;
  • the wake-up information carried by the second airspace resource includes wake-up information indicating whether at least one node group needs to be woken up;
  • the wake-up information carried by the second airspace resource includes wake-up information indicating whether at least one node needs to wake up.
  • FIG. 7 is a schematic diagram of a wake-up indication when the first information is information of the first airspace resource and the second information is the information of the second airspace resource.
  • the information of the monitoring parameter configuration When the information of the monitoring parameter configuration is configured as the first information, it is the information of the first monitoring parameter configuration, and when it is configured as the second information, it is the information of the second monitoring parameter configuration. At least one of the parameter-configured information is used to indicate wake-up information.
  • the content of the wake-up information indication carried by the information of the first monitoring parameter configuration is the same as the above-mentioned first bit information, which is not repeated here, and the content of the wake-up information indication carried by the information of the second monitoring parameter configuration is the same as the above-mentioned second bit information, It will not be repeated here.
  • the first monitoring parameter configuration includes C monitoring parameter configurations, where C is an integer not less than zero.
  • the first monitoring parameter configuration includes zero monitoring parameter configurations
  • the wake-up information does not exist; the node does not need to wake up to receive information at the regional level; the node does not need to wake up to receive information at the cell level; the node does not need to wake up to receive information at the node group level;
  • the node needs to wake up to receive regional-level information
  • the node needs to wake up to receive cell-level information
  • the node needs to wake up to receive node group-level information
  • the wake-up information carried by the first monitoring parameter configuration includes regional-level wake-up information
  • the wake-up information carried by the first monitoring parameter configuration includes cell-level wake-up information
  • the wake-up information carried by the first monitoring parameter configuration includes node-group-level wake-up information
  • the wake-up information carried in the first monitoring parameter configuration includes wake-up information indicating the type of the short message
  • the wake-up information carried in the first monitoring parameter configuration includes wake-up information indicating the type of system message that needs to be updated;
  • the wake-up information carried in the first monitoring parameter configuration includes wake-up information indicating whether the system message needs to be updated.
  • the second monitoring parameter configuration includes D monitoring parameter configurations, where D is an integer not less than zero.
  • the second monitoring parameter configuration includes zero monitoring parameter configurations
  • the node needs to wake up to receive node group-level information
  • the node needs to wake up to receive node-level information
  • the wake-up information carried by the second monitoring parameter configuration includes node-group-level wake-up information
  • the wake-up information carried by the second monitoring parameter configuration includes node-level wake-up information
  • the wake-up information carried by the second monitoring parameter configuration includes wake-up information indicating the number of the node grouping that needs to be woken up;
  • the wake-up information carried by the second monitoring parameter configuration includes wake-up information indicating the number of the node that needs to be woken up;
  • the wake-up information carried by the second monitoring parameter configuration includes wake-up information indicating whether at least one node group needs to be woken up;
  • the wake-up information carried by the second monitoring parameter configuration includes wake-up information indicating whether at least one node needs to wake up.
  • FIG. 8 is a schematic diagram of a wake-up indication when the first information is a first monitoring parameter configuration and the second information is a second monitoring parameter configuration.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the target information includes both first information and the second information, and the first information and the second information are of the same type, the first information and the second information in the target information are of the same type.
  • the second information is arranged alternately or sequentially.
  • the first information and the second information may indicate corresponding wake-up information in sequence, or the first information and the second information The information alternately indicates the corresponding wake-up information.
  • both the first information and the second information exist, and the resources (including time domain resources, frequency domain resources and/or space domain resources) indicated by the first information and resources indicated by the second information
  • the resources indicated by the first information and the resources indicated by the second information are arranged alternately or sequentially.
  • both the first information and the second information exist, and both the first information and the second information are indication bits, the bits indicated by the first information and the second information The indicated bits are arranged alternately or sequentially.
  • the target information may be configured by a network-side device, therefore, the first information and the second information are arranged alternately or sequentially, or may be configured by a network-side device, but not limited thereto.
  • the first information and the second information in the target information are both time domain resource information, and the first information and the second information are alternately arranged, the first information indicates The time domain resources indicated by the second information and the time domain resources indicated by the second information are alternately arranged;
  • the first information indicates two parts of time domain resources, namely the first time domain resources and the second time domain resources
  • the second information also indicates two parts of time domain resources, namely the third time domain resources and the fourth time domain resources Domain resources, in the order of time from front to back, the first time domain resources are ranked first, the third time domain resources are second, the second time domain resources are ranked after the third time domain resources, and the fourth time domain resources are ranked Last in line.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information indicates two parts of time domain resources, namely the first time domain resources and the second time domain resources
  • the second information also indicates two parts of time domain resources, namely the third time domain resources and the fourth time domain resources Domain resources, when sorted by time, the first time domain resources are ranked first, the second time domain resources are second, the third time domain resources are ranked after the second time domain resources, and the fourth time domain resources are ranked Last.
  • each part of the time domain resources includes at least one of a subframe, a time slot and a symbol, and the size of each part of the time domain resources may be the same or different.
  • the time domain resources in each part of the time domain resources may be continuous or discontinuous.
  • the first time domain resource indicated by the first information is the first time slot (slot #0), and the first time slot indicated by the second information is the first time slot (slot #0).
  • the three time domain resources are the second time slot (slot#1) and the third time slot (slot#2), and the second time domain resource indicated by the first information is the fourth time slot (slot#3) , the sixth time slot (slot#5) and the seventh time slot (slot#6), the fourth time domain resource indicated by the second information is the ninth time slot (slot#8).
  • the first time domain resource indicated by the first information is the first time slot (slot #0), and the second time resource indicated by the first information is the first time slot (slot #0).
  • the domain resources are the second time slot (slot#1) and the third time slot (slot#2), and the third time domain resources indicated by the second information are the fourth time slot (slot#3), the Six time slots (slot#5) and the seventh time slot (slot#6), the fourth time domain resource indicated by the second information is the ninth time slot (slot#8).
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • the first information indicates two parts of frequency domain resources, namely the first frequency domain resources and the second frequency domain resources
  • the second information also indicates two parts of frequency domain resources, namely the third frequency domain resources and the fourth frequency domain resources.
  • the first frequency domain resources are ranked first
  • the third frequency domain resources are second
  • the second frequency domain resources are ranked after the third frequency domain resources
  • the fourth frequency domain resources are ranked Last.
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • the first information indicates two parts of frequency domain resources, namely the first frequency domain resources and the second frequency domain resources
  • the second information also indicates two parts of frequency domain resources, namely the third frequency domain resources and the fourth frequency domain resources.
  • the first frequency domain resources are ranked first
  • the second frequency domain resources are second
  • the third frequency domain resources are ranked after the second frequency domain resources
  • the fourth frequency domain resources are ranked Last.
  • each part of the frequency domain resources includes at least one of carrier, BWP, RBG, RB, REG and RE, and the size of each part of the frequency domain resources may be the same or different.
  • the frequency domain resources in each part of the frequency domain resources may be continuous or discontinuous.
  • the first frequency domain resource indicated by the first information is the first carrier (Carrier#0), and the third The frequency domain resources are the second carrier (Carrier#1) and the third carrier (Carrier#2), and the second frequency domain resources indicated by the first information are the fourth carrier (Carrier#3), the sixth carrier The carrier (Carrier#5) and the seventh carrier (Carrier#6), and the fourth frequency domain resource indicated by the second information is the ninth carrier (Carrier#8).
  • the first frequency domain resource indicated by the first information is the first carrier (Carrier#0), and the second frequency domain resource indicated by the first information
  • the resources are the second carrier (Carrier#1) and the third carrier (Carrier#2)
  • the third frequency domain resources indicated by the second information are the fourth carrier (Carrier#3), the sixth carrier ( Carrier#5) and the seventh carrier (Carrier#6)
  • the fourth frequency domain resource indicated by the second information is the ninth carrier (Carrier#8).
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information indicates two parts of airspace resources, namely the first airspace resource and the second airspace resource
  • the second information also indicates two parts of airspace resources, namely the third airspace resource and the fourth airspace resource, according to the airspace resources
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information indicates two parts of airspace resources, namely the first airspace resource and the second airspace resource
  • the second information also indicates two parts of airspace resources, namely the third airspace resource and the fourth airspace resource, according to the airspace resources
  • each part of the airspace resource includes at least one of TRP, antenna port, antenna and beam, and the size of each part of the airspace resource may be the same or different.
  • the first airspace resource indicated by the first information is the first beam (Beam#0), and the third airspace indicated by the second information
  • the resources are the second beam (Beam#1) and the third beam (Beam#2)
  • the second spatial resources indicated by the first information are the fourth beam (Beam#3) and the sixth beam (Beam#2). #5) and the seventh beam (Beam#6)
  • the fourth spatial resource indicated by the second information is the ninth beam (Beam#8).
  • the first airspace resource indicated by the first information is the first beam (Beam#0)
  • the second airspace resource indicated by the first information is The second beam (Beam#1) and the third beam (Beam#2)
  • the third spatial resources indicated by the second information are the fourth beam (Beam#3) and the sixth beam (Beam#5) ) and the seventh beam (Beam#6)
  • the fourth spatial resource indicated by the second information is the ninth beam (Beam#8).
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information indicates two parts of bits, namely the first bit and the second bit
  • the second information also indicates two parts of bits, namely the third bit and the fourth bit, according to the bit position
  • the first bit is arranged first
  • the third bit is second
  • the second bit is arranged after the third bit
  • the fourth bit is arranged last.
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the first information indicates two parts of bits, namely the first bit and the second bit
  • the second information also indicates two parts of bits, namely the third bit and the fourth bit, according to the bit position
  • the first bit is arranged first
  • the second bit is second
  • the third bit is arranged after the second bit
  • the fourth bit is arranged last.
  • the number of bits in each part may be the same or different.
  • the first bit indicated by the first information is the first bit (Bit#0)
  • the third bit indicated by the second information is the first bit (Bit#0).
  • the bits are the second bit (Bit#1) and the third bit (Bit#2)
  • the second bit indicated by the first information is the fourth bit (Bit#3)
  • the fourth bit indicated by the second information is the ninth bit (Bit#8).
  • the first bit indicated by the first information is the first bit (Bit#0), and the second bit indicated by the first information is the first bit (Bit#0). are the second bit (Bit#1) and the third bit (Bit#2), and the third bit indicated by the second information is the fourth bit (Bit#3), the sixth bit bit (Bit#5) and the seventh bit (Bit#6), the fourth bit indicated by the second information is the ninth bit (Bit#8).
  • FIG. 9 is a flowchart of a method for sending a signal according to Embodiment 2 of the present disclosure. The method is applied to a network side device and includes the following steps:
  • the network-side device configures target information, where the target information includes first information and/or second information;
  • the network-side device sends wake-up information through the target information, where the wake-up information sent through the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information.
  • the wake-up information sent through the second information includes at least one of node-group-level wake-up information and node-level wake-up information.
  • the network-side device sends wake-up information according to the target information, wherein the wake-up information sent according to the first information includes regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information. At least one of the wake-up information sent according to the second information includes at least one of node-group-level wake-up information and node-level wake-up information.
  • the network-side equipment can be a base station, such as a macro station, LTE eNB, 5G NR NB, etc.; the network-side equipment can also be a small station, such as a low power node (LPN), pico, femto, etc.
  • a small station, or a network-side device can be an access point (AP);
  • a base station can also be a central unit (central unit, CU) and multiple transmission reception points (Transmission Reception Point, TRP) that it manages and controls. network node.
  • AP access point
  • a base station can also be a central unit (central unit, CU) and multiple transmission reception points (Transmission Reception Point, TRP) that it manages and controls.
  • TRP Transmission Reception Point
  • the first information and/or the second information can be used to indicate different levels of wake-up information, so that the network side can separately indicate the different levels of wake-up information. If it is regional-level or cell-level wake-up information, Then you can only indicate on one resource, and all nodes (including terminals) monitor the resource, and there is no need to send regional or cell-level wake-up information for each node, which can greatly reduce the wake-up indication of the base station. Signaling overhead.
  • the network-side device sends the wake-up information through the target information, if the purpose of the wake-up information is to wake up one node or multiple nodes, it also needs to send related signals, such as PDCCH, PDSCH and/or reference signals Wait.
  • related signals such as PDCCH, PDSCH and/or reference signals Wait.
  • the configuration of the first information and the configuration of the second information may be completely the same, partially the same or different.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the step of sending wake-up information according to the target information is specifically through the The resource indicated by the target information sends a wake-up signal.
  • the step of sending wake-up information according to the target information specifically includes sending a sequence indicated by the target information and/or or bit bit and/or monitoring parameter configuration, and using the sequence and/or bit bit and/or monitoring parameter configuration to indicate the wake-up information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the target information is configured based on high-layer signaling, based on RRC signaling, based on dynamic signaling, configured based on a predetermined manner, or based on broadcast configuration.
  • the configuration of the first information and/or the second information may be based on high-layer signaling, may be based on RRC signaling, may be based on dynamic signaling, or may be based on predefined Yes, it can also be broadcast-based.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the target information may be configured by the network side device, therefore, the first information and the second information are arranged alternately or sequentially, or may be configured by the network side device, but not limited thereto.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • this embodiment is an embodiment applied to a network side device corresponding to the above-mentioned embodiment of the signal receiving method applied to the node side.
  • FIG. 10 is a structural diagram of a node according to Embodiment 3 of the present disclosure. As shown in FIG. 10, a node 1000 includes:
  • a first obtaining module 1001 configured to obtain target information, where the target information includes first information and/or second information;
  • the second obtaining module 1002 is configured to obtain wake-up information according to the target information, wherein the wake-up information obtained according to the first information includes regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information. At least one item, the wake-up information obtained according to the second information includes at least one of node-group-level wake-up information and node-level wake-up information;
  • the action module 1003 is configured to wake up or continue sleeping according to the indication of the wake-up information.
  • the node 1000 further includes:
  • a receiving module configured to determine whether PDSCH needs to be received according to the indication of the wake-up information.
  • the receiving module is configured to receive the P-RNTI if the wake-up information obtained according to the target information includes at least one of the node-level wake-up information and the node-level wake-up information. scrambled DCI-scheduled PDSCH; otherwise, no need to receive P-RNTI-scrambled DCI-scheduled PDSCH.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the monitoring parameters include at least one of CORESET resources, search space resources, PDCCH candidate resources, symbols of CORESET resources, and resource blocks of CORESET resources.
  • the above-mentioned node 1000 in this embodiment may be a node of any implementation mode in the method embodiment in the embodiment of the present disclosure, and any implementation mode of the node in the method embodiment in the embodiment of the present disclosure may be used in this embodiment.
  • the above-mentioned node 1000 realizes and achieves the same beneficial effects, which will not be repeated here.
  • FIG. 11 is a structural diagram of a network-side device according to Embodiment 4 of the present disclosure. As shown in FIG. 11 , the network-side device 1100 includes:
  • a configuration module 1101 configured to configure target information, where the target information includes first information and/or second information;
  • a sending module 1102 configured to send wake-up information through the target information, wherein the wake-up information sent through the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information item, the wake-up information sent through the second information includes at least one of node-group-level wake-up information and node-level wake-up information.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the target information is configured based on high-layer signaling, based on RRC signaling, based on dynamic signaling, configured based on a predetermined manner, or based on broadcast configuration.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the above-mentioned network-side device 1100 in this embodiment may be a network-side device in any implementation manner of the method embodiments in the embodiments of the present disclosure, and any implementation of the network-side device in the method embodiments in the embodiments of the present disclosure It can be implemented by the above-mentioned network-side device 1100 in this embodiment, and achieve the same beneficial effect, which is not repeated here.
  • FIG. 12 is another structural diagram of a node provided by Embodiment 5 of the present disclosure.
  • the node includes: a transceiver 1210 , a memory 1220 , a processor 1200 , and storage on the memory 1220
  • a computer program that can be run on the processor 1200, wherein the processor 1200 implements the following steps when executing the computer program:
  • target information includes first information and/or second information
  • the wake-up information is obtained according to the target information, wherein the wake-up information obtained according to the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information.
  • the wake-up information obtained from the second information includes at least one of node-group-level wake-up information and node-level wake-up information;
  • the transceiver 1210 may be used to receive and transmit data under the control of the processor 1200 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by processor 1200 and various circuits of memory represented by memory 1220 linked together.
  • the bus architecture may also link together various other circuits, such as peripherals, voltage regulators, and power management circuits, which are well known in the art and therefore will not be described further herein.
  • the bus interface provides the interface.
  • Transceiver 1210 may be a number of elements, including a transmitter and a receiver, that provide a means for communicating with various other devices over a transmission medium.
  • the processor 1200 is responsible for managing the bus architecture and general processing, and the memory 1220 may store data used by the processor 1200 in performing operations.
  • the memory 1220 is not limited to only on the node, and the memory 1220 and the processor 1200 may be separated and located in different geographical locations.
  • processor 1200 may further implement the following steps when executing the computer program:
  • the method further includes:
  • processor 1200 may further implement the following steps when executing the computer program:
  • the determining whether PDSCH needs to be received according to the indication of the wake-up information includes:
  • the PDSCH scheduled by the DCI scrambled by P-RNTI needs to be received; otherwise, no need DCI-scheduled PDSCH scrambled by P-RNTI is received.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the monitoring parameters include at least one of CORESET resources, search space resources, PDCCH candidate resources, symbols of CORESET resources, and resource blocks of CORESET resources.
  • nodes in this embodiment may be nodes of any implementation mode in the method embodiments in the embodiments of the present disclosure, and any implementation mode of the nodes in the method embodiments in the embodiments of the present disclosure may be The implementation of the above nodes and the achievement of the same beneficial effects will not be repeated here.
  • FIG. 13 is another structural diagram of the network side device provided by Embodiment 6 of the present disclosure.
  • the network side device includes: a transceiver 1310 , a memory 1320 , a processor 1300 , and a A computer program on the memory 1320 and executable on the processor, wherein the processor implements the following steps when executing the computer program:
  • the target information includes first information and/or second information
  • the wake-up information is sent through the target information, wherein the wake-up information sent through the first information includes at least one of regional-level wake-up information, cell-level wake-up information, and node group-level wake-up information, and the wake-up information sent through the first
  • the wake-up information sent by the second information includes at least one of node-group-level wake-up information and node-level wake-up information.
  • the transceiver 1310 may be used to receive and transmit data under the control of the processor 1300 .
  • the bus architecture may include any number of interconnected buses and bridges, in particular one or more processors represented by processor 1300 and various circuits of memory represented by memory 1320 linked together.
  • the bus architecture may also link together various other circuits, such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be described further herein.
  • the bus interface provides the interface.
  • Transceiver 1310 may be a number of elements, including a transmitter and a receiver, that provide a means for communicating with various other devices over a transmission medium.
  • the processor 1300 is responsible for managing the bus architecture and general processing, and the memory 1320 may store data used by the processor 1300 in performing operations.
  • the memory 1320 is not limited to only on the network side device, and the memory 1320 and the processor 1300 may be separated and located in different geographical locations.
  • the first information includes at least one of time domain resource information, frequency domain resource information, air domain resource information, sequence information, bit information, and monitoring parameter configuration information;
  • the second information includes at least one of time domain resource information, frequency domain resource information, space domain resource information, sequence information, bit information, and monitoring parameter configuration information.
  • the regional-level wake-up information is used to indicate at least one of the following:
  • the type of information that needs to be received includes regional level information
  • the cell-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target cell need to wake up to receive cell-level information
  • the type of information to be received includes cell-level information
  • the node group-level wake-up information is used to indicate at least one of the following:
  • All nodes under the target node group need to wake up to receive information at the node group level;
  • the type of information that needs to be received includes node group-level information
  • the node-level wake-up information is used to indicate at least one of the following:
  • the target node needs to wake up to receive node-level information
  • the type of information that needs to be received includes node-level information
  • the regional-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the cell-level information includes at least one of broadcast messages, short messages, and other PDSCH information scheduled by DCI that does not require P-RNTI scrambling.
  • the node group-level information includes broadcast messages, short messages, paging messages, other information of PDSCH scheduled by DCI that requires P-RNTI scramble, and other PDSCH scheduled by DCI that does not require P-RNTI scramble. at least one of the information.
  • the node-level information includes at least one of a paging message and other information of PDSCH scheduled by DCI scrambled by P-RNTI.
  • the short message includes at least one of a system message update, an early warning message and a first message;
  • the first message is used to instruct the node to stop monitoring the PO.
  • the target information is configured based on high-layer signaling, based on RRC signaling, based on dynamic signaling, configured based on a predetermined manner, or based on broadcast configuration.
  • the first information and the second information in the target information are arranged alternately or sequentially.
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are alternately arranged, the first information The indicated time domain resources and the time domain resources indicated by the second information are alternately arranged;
  • the first information and the second information in the target information are both time domain resource information, and when the first information and the second information are arranged in sequence, all the time indicated by the first information is The domain resources are all ranked before or after the time domain resources indicated by the second information;
  • the first information and the second information in the target information are both frequency domain resource information, and when the first information and the second information are alternately arranged, the frequency domain indicated by the first information
  • the resources and the frequency domain resources indicated by the second information are alternately arranged;
  • Both the first information and the second information in the target information are information of frequency domain resources, and when the first information and the second information are arranged in order, all the frequencies indicated by the first information are The frequencies of the domain resources are all greater than or less than the frequency domain resources indicated by the second information;
  • Both the first information and the second information in the target information are information of airspace resources, and when the first information and the second information are alternately arranged, the airspace resources indicated by the first information and The airspace resources indicated by the second information are alternately arranged in numbers;
  • the first information and the second information in the target information are both airspace resource information, and when the first information and the second information are arranged in order, all airspace resources indicated by the first information
  • the numbers are all before or after the number of the airspace resources indicated by the second information
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are alternately arranged, the bits indicated by the first information and all The bits indicated by the second information are arranged alternately;
  • the first information and the second information in the target information are both bit information, and when the first information and the second information are arranged in order, all the bits indicated by the first information are all bits. before or after the bit indicated by the second information.
  • the above-mentioned network-side device in this embodiment may be a network-side device in any implementation manner in the method embodiment in the embodiment of the present disclosure, and any implementation in the network-side device in the method embodiment in the present disclosure may be in any implementation manner It is implemented by the above-mentioned network-side device in this embodiment, and achieves the same beneficial effects, which will not be repeated here.
  • Embodiments of the present disclosure also provide a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, implements the steps in the method for receiving signals on the node side provided by the embodiments of the present disclosure, or the When the program is executed by the processor, the steps in the method for sending signals on the network side device side provided by the embodiments of the present disclosure are implemented.
  • the disclosed method and apparatus may be implemented in other manners.
  • the apparatus embodiments described above are only illustrative.
  • the division of the units is only a logical function division. In actual implementation, there may be other division methods.
  • multiple units or components may be combined or Can be integrated into another system, or some features can be ignored, or not implemented.
  • the shown or discussed mutual coupling or direct coupling or communication connection may be through some interfaces, indirect coupling or communication connection of devices or units, and may be in electrical, mechanical or other forms.
  • each functional unit in each embodiment of the present disclosure may be integrated into one processing unit, or each unit may be physically included individually, or two or more units may be integrated into one unit.
  • the above-mentioned integrated unit may be implemented in the form of hardware, or may be implemented in the form of hardware plus software functional units.
  • the above-mentioned integrated units implemented in the form of software functional units can be stored in a computer-readable storage medium.
  • the above-mentioned software functional unit is stored in a storage medium, and includes several instructions to cause a computer device (which may be a personal computer, a server, or a network device, etc.) to execute part of the method for processing information data blocks described in various embodiments of the present disclosure step.
  • the aforementioned storage medium includes: 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 codes .
  • Each module, unit, sub-unit or sub-module may be one or more integrated circuits configured to implement the above method, for example: one or more specific integrated circuits (Application Specific Integrated Circuit, ASIC), or, one or more Microprocessor (digital signal processor, DSP), or, one or more Field Programmable Gate Array (Field Programmable Gate Array, FPGA), etc.
  • ASIC Application Specific Integrated Circuit
  • DSP digital signal processor
  • FPGA Field Programmable Gate Array
  • the processing element may be a general-purpose processor, such as a central processing unit (Central Processing Unit, CPU) or other processors that can call program codes.
  • CPU central processing unit
  • these modules can be integrated together and implemented in the form of a system-on-a-chip (SOC).
  • SOC system-on-a-chip

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Abstract

提供一种信号的收发方法、节点及网络侧设备,其中,信号的接收方法包括:获取目标信息,所述目标信息包括第一信息和/或第二信息;根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;根据所述唤醒信息的指示进行唤醒或继续睡眠。

Description

信号的收发方法、节点及网络侧设备
相关申请的交叉引用
本申请主张在2020年7月20日在中国提交的中国专利申请号No.202010701859.0的优先权,其全部内容通过引用包含于此。
技术领域
本公开涉及通信技术领域,尤其涉及一种信号的收发方法、节点及网络侧设备。
背景技术
通信设备(例如终端)仍然存在一些无效的功耗,因此如何进一步降低通信设备的功耗,仍然是一个重要的研究方向。
发明内容
本公开实施例提供一种信号的收发方法、节点及网络侧设备,以解决通信设备实现通信功能的功耗仍然较高的问题。
为了达到上述目的,本公开实施例提供一种信号的接收方法,应用于节点,包括:
获取目标信息,所述目标信息包括第一信息和/或第二信息;
根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
根据所述唤醒信息的指示进行唤醒或继续睡眠。
可选的,所述根据所述目标信息获取唤醒信息之后,还包括:
根据所述唤醒信息的指示确定是否需要接收PDSCH。
可选的,所述根据所述唤醒信息的指示确定是否需要接收PDSCH,包括:
若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收P-RNTI加扰的DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺 序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
可选的,所述监测参数包括CORESET资源、搜索空间资源、PDCCH候选资源、CORESET资源的符号和CORESET资源的资源块中的至少一项。
本公开实施例还提供一种信号的发送方法,应用于网络侧设备,包括:
配置目标信息,所述目标信息包括第一信息和/或第二信息;
通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少 一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
可选的,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
本公开实施例还提供一种节点,包括:
第一获取模块,用于获取目标信息,所述目标信息包括第一信息和/或第二信息;
第二获取模块,用于根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
动作模块,用于根据所述唤醒信息的指示进行唤醒或继续睡眠。
可选的,所述节点还包括:
接收模块,用于根据所述唤醒信息的指示确定是否需要接收PDSCH。
可选的,所述接收模块,用于若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收P-RNTI加扰的DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
可选的,所述监测参数包括CORESET资源、搜索空间资源、PDCCH候 选资源、CORESET资源的符号和CORESET资源的资源块中的至少一项。
本公开实施例还提供一种网络侧设备,包括:
配置模块,用于配置目标信息,所述目标信息包括第一信息和/或第二信息;
发送模块,用于通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所 述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
可选的,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
本公开实施例还提供一种节点,包括:收发机、存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序,所述处理器执行所述计算机程序时实现如下步骤:
获取目标信息,所述目标信息包括第一信息和/或第二信息;
根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
根据所述唤醒信息的指示进行唤醒或继续睡眠。
可选的,所述处理器执行所述计算机程序时还实现如下步骤:
所述根据所述目标信息获取唤醒信息之后,还包括:
根据所述唤醒信息的指示确定是否需要接收PDSCH。
可选的,所述处理器执行所述计算机程序时还实现如下步骤:
所述根据所述唤醒信息的指示确定是否需要接收PDSCH,包括:
若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收P-RNTI加扰的DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
可选的,所述监测参数包括CORESET资源、搜索空间资源、PDCCH候选资源、CORESET资源的符号和CORESET资源的资源块中的至少一项。
本公开实施例还提供一种网络侧设备,包括:收发机、存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序,所述处理器执行所述计算机程序时实现如下步骤:
配置目标信息,所述目标信息包括第一信息和/或第二信息;
通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
本公开实施例还提供一种计算机可读存储介质,其上存储有计算机程序,所述计算机程序被处理器执行时实现本公开实施例提供的节点侧的信号的接收方法中的步骤,或者所述计算机程序被处理器执行时实现本公开实施例提供的网络侧设备侧的信号的发送方法中的步骤。
本公开实施例中,可以利用第一信息和/或第二信息,指示不同级别的唤醒信息,从而节点(包括终端)侧,可以精准地知道需要接收的消息的级别。如果是区域级或小区级的消息,则该区域或小区下的所有节点都需要被唤醒。但如果是节点级或节点分组级的消息,则仅仅指示的节点需要被唤醒,其他的节点不需要被唤醒,从而可以降低节点的不必要的唤醒而带来的无效的功耗。可以适用于节点RRC-Idle/Inactive状态下的Paging DCI的监测的唤醒指示。
本公开实施例中,可以利用第一信息和/或第二信息,指示不同级别的唤醒信息,从而网络侧可以将不同级别的唤醒信息分开指示,如果为区域级的或小区级的唤醒信息,则可以仅仅在一个资源上指示,所有的节点(包括终端)都去监测该资源,不需要针对每个节点都发一遍区域级的或小区级的唤醒信息,从而可以大大降低基站的唤醒指示的信令的开销。
附图说明
图1为本公开实施例中的信号的接收方法的流程示意图;
图2为本公开实施例中的第一信息为第一比特位信息、第二信息为第二比特位信息时的唤醒指示示意图;
图3为本公开实施例中的第一信息为第一比特位信息、第二信息为第二比特位信息时的唤醒指示另一示意图;
图4为本公开实施例中的第一信息为第一序列信息、第二信息为第二序列信息时的唤醒指示示意图;
图5为本公开实施例中的第一信息为第一时域资源的信息、第二信息为第二时域资源的信息时的唤醒指示示意图;
图6为本公开实施例中的第一信息为第一频域资源的信息、第二信息为第二频域资源的信息时的唤醒指示示意图;
图7为本公开实施例中的第一信息为第一空域资源的信息、第二信息为第二空域资源的信息时的唤醒指示示意图;
图8为本公开实施例中的第一信息为第一监测参数配置的信息、第二信息为第二监测参数配置的信息时的唤醒指示示意图;
图9为本公开实施例中的信号的发送方法的流程示意图;
图10为本公开实施例中的节点的结构示意图;
图11为本公开实施例中的网络侧设备的结构示意图;
图12为本公开实施例中的节点的结构示意图;
图13为本公开实施例中的网络侧设备的结构示意图。
具体实施方式
为使本公开要解决的技术问题、技术方案和优点更加清楚,下面将结合附图及具体实施例进行详细描述。
相关技术定义了RRC-Idle/Inactive(RRC:无线资源控制,Radio resource control;Idle:空闲态;Inactive:非激活态)下的寻呼(Paging)的监测,主要包括以下信息:系统消息更新、预警消息和寻呼消息。UE根据参数配置,计算出寻呼帧(Paging Frame,PF)和寻呼机会(Paging Occasion,PO),在PO时刻,UE在Paging搜索空间(Search space,SS)监测寻呼RNTI(Paging-RNTI,P-RNTI)加扰的下行链路控制信息(Downlink Control Information,DCI),随后进行解调解码,获取承载paging消息的物理下行共享信道(Physical Downlink Shared Channel,PDSCH),对PDSCH进行解调解码后,获取用于记录需要接收Paging消息的UE列表信息,查询所述列表,如果所述UE在所述列表中,则获取PDSCH承载的Paging消息,否则,所述UE不去获取所述paging消息。
其中,paging中包含的消息,按照不同分类,包括以下部分:
1.从消息类型上分为:
短消息(Short message),包括系统消息更新、预警消息和第一消息,所述第一消息用于指示停止监测PO;
寻呼消息。
2.从调度无线网络临时标识(Radio Network Tempory Identity,RNTI)上分为:
需要P-RNTI加扰的DCI调度其PDSCH的信息,例如寻呼消息;
不需要P-RNTI加扰的DCI调度其PDSCH的信息,例如短消息。
3.从消息作用域上分为:
区域级的消息:其他系统消息;
小区级的消息:短消息;
终端级的消息(下文为节点级的消息):寻呼消息。
paging的下行控制信道(Physical downlink control channel,PDCCH)的监测,通过P-RNTI加扰,P-RNTI是所有UE共用的,基站通过配置监测的周期、每个周期的Paging无线帧的个数、以及每个paging无线帧中的PO的个数,在同一个PO时刻,可能存在多个UE都需要监听paging,只要有一个UE有paging消息,则基站会在所述PO时刻发送P-RNTI加扰的DCI,用于所述UE的paging的发送。对于终端而言,不管是否有自己的Paging,都需要醒来进行P-RNTI加扰的DCI的监听,一旦监测到P-RNTI加扰的DCI,则进行后续相关操作,包括PDCCH,PDSCH解调解码,直到所述UE发现不在记录发送Paging消息的UE列表信息中。从而造成了终端的没有必要的功耗。
针对终端的paging的PDCCH的监测,曾经讨论过是否需要采用信号进行PO时刻的终端是否需要唤醒的指示(换句话来说,曾经讨论过是否需要采用信号来指示终端是否需要在PO时刻唤醒),即,当有终端在PO时刻有paging时,才会进行唤醒以进行PO时刻的Paging DCI的监测;否则,继续睡眠,不去进行PO时刻的DCI的监测。从而,对于不需要唤醒接收DCI的终端,避免了无效的PO时刻的Paging DCI的监听,从而降低了终端的不必要的功耗。但是,针对终端的Paging DCI监测的唤醒信号的具体实现细节,尚未明确。
在终端节能课题中,支持RRC连接态下的唤醒信号指示的不连续接收(Discontinuous Reception,DRX)的激活期的DCI的监测。具体的:在DRX激活期之前发送节能信号,通过节能信号指示终端在后续DRX周期是否被唤醒。当终端检测到唤醒信号(Wake-Up Signal,WUS),则唤醒接收机进入激活期进行PDCCH监听;否则,终端在后续DRX周期继续睡眠,节省能耗。唤醒指示在节能信号的DCI中可以用1比特指示,“1”表示被唤醒;“0”表示睡眠。WUS触发drx-onDurationTimer开始运行,从而终端进入激活期并执行PDCCH监听。由于是否唤醒后续DRX周期是激活期外发送节能信号的最主要功能,所以该节能信号又被简称为WUS-PDCCH。除此之外,还支持基于序列的唤醒信号的发送,唤醒信号,用于指示每个PO下,终端是否需要醒来进行Paging DCI的监测。初始序列,由小区(cell)ID、对应的第一个PO的子帧和时隙的位置生成,从而终端接收到唤醒信号的序列之后,可以进行 相关匹配,确认本次PO是否需要醒来进行Paging DCI的监测。或者唤醒序列的产生是基于终端分组标识(UE-group-ID)。但是,以上方式,如果直接借鉴到Paging DCI的监测,可能存在以下问题:
对于RRC连接态下的DCI的监测的指示,是基于PDCCH-based,用于指示每个终端,在接下来的一个DRX周期,是否需要唤醒进行PDCCH的监测。对于Paging的DCI监测而言,是基于序列的,序列的产生,一种是基于cell ID以及第一个PO的子帧和时隙号,用来指示该PO时刻的所有的终端的唤醒,另一种唤醒序列的产生是基于UE-group-ID,用来指示某个终端分组的Paging的DCI的监测。
而对于Paging的DCI的监测,按照前面所述,如果P-RNTI加扰的DCI携带的是短消息,则所述区域或是所述小区下的终端,都需要进行短消息的接收;如果P-RNTI加扰的DCI携带的是寻呼,则仅被寻呼的终端有必要进行Paging DCI的接收。不管采用基于上述PDCCH-based,还是基于序列的,都不能同时区分所述终端的寻呼消息,到底是区域级的或小区级的所有的终端都需要接收的,还是仅某个UE或部分UE需要接收的。如果仅仅指示区域或小区下所有的终端都需要接收,那么对于没有被寻呼的UE,则仍然需要被唤醒进行Paging的DCI的监测和接收,从而造成了功率的浪费。另外的,如果仅仅指示被寻呼的UE,则对于区域级别的或是小区级别的短消息,则需要指示的UE的数量较大,对基站的资源的开销较大。
另外,对于Paging的DCI的监测,按照前面所述,如果P-RNTI加扰的DCI携带的是短消息,则该DCI不需要调度PDSCH;如果P-RNTI加扰的DCI携带的是某个UE或者某些UE的寻呼,则该DCI之后需要跟随调度的PDSCH。同样的,不管采用基于上述PDCCH-based的指示方式,还是基于序列的指示方式,都不能区分出是否有调度数据。对于终端而言,如果没有调度数据,仅有短消息,则UE仍然需要打开PDSCH缓存,从而给终端带来了无效的功耗。
综上所述可知,一、针对Paging DCI的监测的指示,尚未有明确的具体实现方案;二、基于节能课题下,RRC连接态时的基于PDCCH-based的唤醒信号的指示方案,或是基于序列的唤醒信号的指示方案,如果直接应用于Paging DCI的指示,都不能同时区分所述终端的寻呼消息,到底是区域级的或小区级的所有的终端都需要接收的,还是仅某个UE或部分UE需要接收的,从而,要么造成终端的无用的监测的功耗,要么对基站的资源的开销较大,也会对短消息的时延产生一定的影响。三、基于二,如果直接应用于Paging DCI的指示,则于终端而言,也会带来无用的功耗。
因此,本公开提供了一种信号的接收方法和一种信号的发送方法,用以解决上述终端由于无效的PDCCH的监测,无用的PDSCH的缓存,而带来的终端的无效的功耗的问题,以及由于节能信号的指示需要基站较大的资源开销的问题。
请参见图1,图1是本公开实施例提供的一种信号的接收方法的流程示 意图,所述方法应用于节点,包括以下步骤:
101、所述节点获取目标信息,所述目标信息包括第一信息和/或第二信息;
102、所述节点根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
103、所述节点根据所述唤醒信息的指示进行唤醒或继续睡眠。
需要说明的是,所述节点可以是用户终端(User Equipment,UE),例如:手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)、个人数字助理(personal digital assistant,PDA)、移动上网装置(Mobile Internet Device,MID)或可穿戴式设备(Wearable Device)等终端侧设备。
所述节点也可以是射频拉远单元(Remote Radio Unit,RRU)、射频拉远头(Remote Radio Head,RRH)或收发点(Transmission Reception Point,TRP)等。在本公开实施例中并不限定节点的具体类型。
另外,所述节点可以是空闲态(Idle)或非激活态(Inactive)的节点。
还需要说明的是,所述唤醒信息,用于指示节点的唤醒,例如指示节点在寻呼机会(Paging Occasion,PO)唤醒,以接收寻呼消息。所述唤醒信息包括以下分类中的至少一项:区域级的唤醒信息、小区级的唤醒信息、节点分组级的唤醒信息和节点级的唤醒信息。
其中,所述区域级的唤醒信息,用于指示区域下至少一个小区级的唤醒信息,当有区域级的信息发送,需要该区域下的所有的节点进行接收时,则可以采用区域级的唤醒信息进行指示,该区域下的全部节点都需要接收所述唤醒信息,并根据唤醒信息的指示进行唤醒或睡眠,如果节点被唤醒,则进行后续的区域级的信息的接收。
所述小区级的唤醒信息,用于指示小区下的至少一个节点或节点分组的唤醒信息,当有小区级的信息发送,需要该小区下的所有的节点进行接收时,则可以采用小区级的唤醒信息进行指示,所述小区下的全部节点都需要接收所述唤醒信息,并根据唤醒信息的指示进行唤醒或是睡眠,如果节点被唤醒,则进行后续的小区级的信息的接收。
所述节点分组的唤醒信息,包括至少一个节点的唤醒信息,当有节点分组级的信息发送,需要该节点分组下的所有节点进行接收时,则可以采用节点分组级的唤醒信号进行指示,该节点分组下的全部节点都需要接收所述唤醒信息指示,并根据唤醒信息的指示进行唤醒或睡眠,如果节点被唤醒,则进行后续的节点分组级的信息的接收;
所述节点的唤醒信息,用于指示一个节点的唤醒信息,当有节点级的信息发送,需要该节点进行接收时,则可以采用节点级的唤醒信息进行指示,该节点需要接收所述唤醒信息,并根据唤醒信息的指示进行唤醒或是睡眠,如果节点被唤醒,则进行后续的节点级的信息的接收。
所述区域级的信息,是指所述区域下的全部节点均需要接收的信息;
所述小区级的信息,是指所述小区下的全部节点均需要接收的信息;
所述节点分组级的信息,是指所述节点分组下的全部节点均需要接收的信息;
所述节点级的信息,是指所述节点需要接收的信息。
本公开实施例,可以利用第一信息和/或第二信息,指示不同级别的唤醒信息,从而节点(包括终端)侧,可以精准地知道需要接收的消息的级别。如果是区域级或小区级的消息,则该区域或小区下的所有节点都需要被唤醒。但如果是节点级或节点分组级的消息,则仅仅指示的节点需要被唤醒,其他的节点不需要被唤醒,从而可以降低节点的不必要的唤醒而带来的无效的功耗。
本公开实施例可以适用于终端RRC-Idle/Inactive状态下的Paging DCI的监测的唤醒指示。
下面举例说明上述信号的接收方法。
可选的,所述根据所述目标信息获取唤醒信息之后,还包括:
根据所述唤醒信息的指示确定是否需要接收物理下行共享信道(Physical Downlink Shared Channel,PDSCH)。
具体而言,如果根据所述唤醒信息确定不需要接收PDSCH,那么所述节点醒来以后只需要接收物理下行控制信道(Physical Downlink Control Channel,PDCCH),不需要打开PDSCH缓存,进一步降低节点功耗。
如果根据所述唤醒信息确定需要接收PDSCH,那么所述节点醒来以后需要先接收PDCCH,然后从接收到的PDCCH中获取下行控制信息(Downlink Control Information,DCI),若所述节点是空闲态(Idle)的节点,那么该DCI是寻呼无线网络临时标识(Paging-Radio Network Tempory Identity,P-RNTI)加扰的DCI,最后打开PDSCH缓存、根据该DCI中的调度信息去接收所述PDSCH。
可选的,所述根据所述唤醒信息的指示确定是否需要接收PDSCH,包括:
若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收P-RNTI加扰的DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
具体来说,如果根据所述目标信息获取到的唤醒信息包括区域级的唤醒信息和/或小区级的唤醒信息,不包括节点分组级的唤醒信息,也不包括节点级的唤醒信息,那么就可以确定所述节点不需要接收P-RNTI加扰的DCI调度的PDSCH。反之,如果根据所述目标信息获取到的唤醒信息包括节点分组级的唤醒信息和/或节点级的唤醒信息,那么就可以确定所述节点需要接收P-RNTI加扰的DCI调度的PDSCH。这是因为,区域级的信息和小区级的信息是不需要P-RNTI加扰的DCI调度PDSCH的信息,而节点分组级的信息和节点级的信息是需要P-RNTI加扰的DCI调度PDSCH的信息。
也就是说,节点可以根据第一信息和/或第二信息指示的唤醒信息的级别, 即可获取需要接收的信息的级别,从而可以确定是否需要接收P-RNTI加扰的DCI调度的PDSCH。
当然,所述节点唤醒以后除了接收PDCCH和根据需要接收PDSCH外,还可以接收参考信号等其他信号。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
也就是说,第一信息可以有多种类型,例如时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;第二信息也可以有多种类型,例如时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
具体的,当所述第一信息包括时域资源的信息、频域资源的信息和空域资源的信息中的至少一项时,所述根据所述目标信息获取唤醒信息的步骤具体是根据所述目标信息去接收唤醒信号,然后解码得到唤醒信息。当所述第一信息包括序列信息、比特位信息和监测参数配置的信息中的至少一项时,所述根据所述目标信息获取唤醒信息的步骤具体包括根据所述目标信息解读出所述唤醒信息。
所述时域资源的信息配置为第一信息时为第一时域资源的信息,配置为第二信息时为第二时域资源的信息,所述第一时域资源和第二时域资源中的至少一个用于指示唤醒信息;所述频域资源的信息配置为第一信息时为第一频域资源的信息,配置为第二信息时为第二频域资源的信息,所述第一频域资源和第二频域资源中的至少一个用于指示唤醒信息;所述空域资源的信息配置为第一信息时为第一空域资源的信息,配置为第二信息时为第二空域资源的信息,所述第一空域资源和第二空域资源中的至少一个用于指示唤醒信息;所述比特位信息配置为第一信息时为第一比特位信息,配置为第二信息时为第二比特位信息,所述第一比特位信息和第二比特位信息中的至少一个用于指示唤醒信息;所述序列信息配置为第一信息时为第一序列信息,配置为第二信息时为第二序列信息,所述第一序列信息和第二序列信息中的至少一个用于指示唤醒信息;所述监测参数配置的信息配置为第一信息时为第一监测参数配置的信息,配置为第二信息时为第二监测参数配置的信息,所述第一监测参数配置的信息,第二监测配置的信息中的至少一个用于指示唤醒信息。
其中,所述时域资源包括子帧、时隙和符号中的至少之一项。在所述时域资源包括子帧时,可以包括一个子帧,也可以包括多个子帧。当所述时域资源包括时隙时,可以包括一个时隙,也可以包括多个时隙。当所述时域资源包括符号时,可以包括一个符号,也可以包括多个符号。
所述频域资源包括载波、部分带宽(BandWidth Partial,BWP)、资源块 组(Resource Block Group,RBG)、资源块(Resource Block,RB)、资源单元组(Resource Element Group,REG)和资源单元(Resource Element,RE)中的至少一项。在所述频域资源包括载波时,可以包括一个载波,也可以包括多个载波。在所述频域资源包括BWP时,可以包括一个BWP,也可以包括多个BWP。在所述频域资源包括RBG时,可以包括一个RBG,也可以包括多个RBG。在所述频域资源包括RB时,可以包括一个RB,也可以包括多个RB。在所述频域资源包括REG时,可以包括一个REG,也可以包括多个REG。在所述频域资源包括RE时,可以包括一个RE,也可以包括多个RE。
所述空域资源包括收发点(TRP)、天线端口、天线和波束中的至少之一项。在所述空域资源包括TRP时,可以包括一个TRP,也可以包括多个TRP。当所述空域资源包括天线端口时,可以包括一个天线端口,也可以包括多个天线端口。当所述空域资源包括天线时,可以包括一个天线,也可以包括多个天线。当所述空域资源包括波束时,可以包括一个波束,也可以包括多个波束。
所述序列信息指示的序列可以相同的序列类型,也可以是不同的序列类型。所述序列可以是同一个序列类型的相同的根序列,也可以是同一个序列类型的不同的根序列。所述序列可以是用不同的参数配置和/或参数类型生成的初始配置。例如,所述序列类型,可以是gold序列,可以是ZC序列,可以是伪随机(PN)序列,可以是哈德码(harmad)序列。所述序列可以是用不同的参数配置和/或参数类型生成的初始配置,可以是用不同的ID生成的初始配置的初始序列,例如,可以是小区ID,区域ID,UE ID,高层配置的ID。
所述序列信息配置为第一信息时为第一序列信息,配置为第二信息时为第二序列信息,所述第一序列信息指示的序列与所述第二序列信息指示的序列,可以相同的序列类型,也可以是不同的序列类型。所述序列可以是同一个序列类型的相同的根序列,也可以是同一个序列类型的不同的根序列。所述序列可以是用不同的参数配置和/或参数类型生成的初始配置。
监测参数配置包括至少一个唤醒信息的参数配置,监测参数包括核心资源集(Core resource set,CORESET)资源、搜索空间资源、PDCCH候选(candidate)资源、CORESET资源的符号和CORESET资源的资源块中的至少一项。监测参数包括CORESET资源时,可以包括一个CORESET资源,也可以包括多个CORESET资源。监测参数包括搜索空间资源时,可以包括一个搜索空间资源,也可以包括多个搜索空间资源。监测参数包括PDCCH候选资源时,可以包括一个PDCCH候选资源,也可以包括多个PDCCH候选资源。监测参数包括CORESET资源的符号时,可以包括CORESET资源的一个符号,也可以包括CORESET资源的多个符号。监测参数包括CORESET资源的资源块时,可以包括CORESET资源的一个资源块,也可以包括CORESET资源的多个资源块。
其中,所述搜索空间资源包括子帧、时隙、符号、搜索空间周期配置、 搜索空间持续时间、搜索空间时域符号的图样(pattern)、搜索空间的起始位置、监测位置和搜索空间类型中的至少一项。搜索空间资源包括子帧时,可以包括一个子帧,也可以包括多个子帧。搜索空间资源包括时隙时,可以包括一个时隙,也可以包括多个时隙。搜索空间资源包括符号时,可以包括一个符号,也可以包括多个符号。搜索空间资源包括搜索空间周期配置时,可以包括一个搜索空间周期配置,也可以包括多个搜索空间周期配置。搜索空间资源包括搜索空间持续时间时,可以包括一个搜索空间持续时间,也可以包括多个搜索空间持续时间。搜索空间资源包括搜索空间时域符号的图样时,可以包括一个搜索空间时域符号的图样,也可以包括多个搜索空间时域符号的图样。搜索空间资源包括搜索空间的起始位置时,可以包括一个搜索空间的起始位置,也可以包括多个搜索空间的起始位置。搜索空间资源包括监测位置时,可以包括一个监测位置,也可以包括多个监测位置。搜索空间资源包括搜索空间类型时,可以包括一个搜索空间类型,也可以包括多个搜索空间类型。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
其中,短消息的类型包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
系统消息的类型包括系统信息块(System Information Block,SIB)1、SIB2、SIB3、SIB4、SIB5、SIB6、SIB7等。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
也就是说,第一信息携带的唤醒信息指示以下至少之一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括区域级的信息;
需要接收的信息的类型包括小区级的信息;
需要接收的信息的类型包括节点分组级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
第二信息携带的唤醒信息指示以下至少之一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点分组的编号;
需要唤醒的节点的编号;
至少一个节点分组是否需要唤醒;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
具体的,系统消息包括所有类型系统消息中的至少一种。预警消息包括地震和海啸预警系统(Earthquake and Tsunami Warning System,ETWS)和商业移动警报服务(Commercial Mobile Alert Service,CMAS)中的至少一项。
下面举例说明各种第一信息和/或第二信息携带(或者说指示)的唤醒信息。
所述比特位信息配置为第一信息时为第一比特位信息,配置为第二信息时为第二比特位信息,所述第一比特位信息和第二比特位信息中的至少一个用于指示唤醒信息。
第一比特位信息携带的唤醒信息指示以下至少之一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括区域级的信息;
需要接收的信息的类型包括小区级的信息;
需要接收的信息的类型包括节点分组级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
第二比特位信息携带的唤醒信息指示以下至少之一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点分组的编号;
需要唤醒的节点的编号;
至少一个节点分组是否需要唤醒;
至少一个节点是否需要唤醒。
具体的,第一比特位信息包括至少N个bit位,所述N为不小于零的整数。
当N=0时,即所述第一比特位信息包括零个比特位时,则表示以下至少之一项:所述第一比特位信息不存在;所述第一比特位信息指示的唤醒信息不存在;所述第一比特位信息指示的区域级的唤醒信息不存在;所述第一比特位信息指示的小区级的唤醒信息不存在;所述第一比特位信息指示的节点分组级的唤醒信息不存在;所述节点不需要唤醒进行区域级的信息的接收;所述节点不需要唤醒进行小区级的信息的接收;所述节点不需要唤醒进行节点分组级的信息的接收;
当N=1时,即所述第一比特位信息包括一个比特位,且所述一个比特位取值为0,则表示以下至少之一项:所述第一比特位信息指示的唤醒信息不包括区域级的唤醒信息;所述第一比特位信息指示的唤醒信息不包括小区级的唤醒信息;所述第一比特位信息指示的唤醒信息不包括节点分组级的唤醒信息;所述节点不需要唤醒进行区域级的信息的接收;所述节点不需要唤醒进行小区级的信息的接收;所述节点不需要唤醒进行节点分组级的信息的接收;
当N=1时,即所述第一比特位信息包括一个比特位,且所述一个比特位取值为1,则表示以下至少之一项:所述第一比特位信息指示的唤醒信息包括区域级的唤醒信息;所述第一比特位信息指示的唤醒信息包括小区级的唤醒信息;所述第一比特位信息指示的唤醒信息包括节点分组级的唤醒信息;所述节点需要唤醒进行区域级的信息的接收;所述节点需要唤醒进行小区级的信息的接收;所述节点需要唤醒进行节点分组级的信息的接收;
当N>1时,即所述第一比特位信息包括一个以上比特位时,则表示以下至少之一项:
所述第一比特位信息指示的唤醒信息包括区域级的唤醒信息;
所述第一比特位信息指示的唤醒信息包括小区级的唤醒信息;
所述第一比特位信息指示的唤醒信息包括节点分组级的唤醒信息;
所述第一比特位信息指示的唤醒信息包括指示短消息的类型的唤醒信息;
所述第一比特位信息指示的唤醒信息包括指示需要更新的系统消息的类 型的唤醒信息;
所述第一比特位信息指示的唤醒信息包括指示系统消息是否需要更新的唤醒信息。
其中,“0”表示对应bit位的系统消息不需要更新,“1”表示对应bit位的系统消息需要更新。
具体的,第二比特位信息包括至少M个bit位,所述M为不小于零的整数。
当M=0,即所述第二比特位信息包括零个比特位,则表示以下至少之一项:所述第二比特位信息不存在;所述第二比特位信息指示的唤醒信息不存在;所述第二比特位信息指示的节点分组级的唤醒信息不存在;所述第二比特位信息指示的节点级的唤醒信息不存在;所述节点不需要唤醒进行节点分组级的信息的接收;所述节点不需要唤醒进行节点级的信息的接收;
当M=1时,即所述第二比特位信息包括一个比特位,且所述一个比特位取值为0,则表示以下至少之一项:所述第二比特位信息指示的唤醒信息不包括节点分组级的唤醒信息;所述第二比特位信息指示的唤醒信息不包括节点级的唤醒信息;所述节点不需要唤醒进行节点分组级的信息的接收;所述节点不需要唤醒进行节点级的信息的接收;
当M=1,即所述第二比特位信息包括一个比特位,且所述一个比特位取值为1,则表示以下至少之一项:所述第二比特位信息指示的唤醒信息包括节点分组级的唤醒信息;所述第二比特位信息指示的唤醒信息包括节点级的唤醒信息;所述节点需要唤醒进行节点分组级的信息的接收;所述节点需要唤醒进行节点级的信息的接收;
当M>1,即所述第二比特位信息包括一个以上比特位时,则表示以下至少之一项:
所述第二比特位信息指示的唤醒信息包括节点分组级的唤醒信息;
所述第二比特位信息指示的唤醒信息包括节点级的唤醒信息;
所述第二比特位信息指示的唤醒信息包括指示需要唤醒的节点分组的编号的唤醒信息;
所述第二比特位信息指示的唤醒信息包括指示需要唤醒的节点的编号的唤醒信息;
所述第二比特位信息指示的唤醒信息包括指示至少一个节点分组是否需要唤醒的唤醒信息;
所述第二比特位信息指示的唤醒信息包括指示至少一个节点是否需要唤醒的唤醒信息。
其中,“0”表示对应节点分组或节点不需要唤醒,“1”表示对应节点分组或节点需要唤醒。
请参阅图2,图2是第一信息为第一比特位信息、第二信息为第二比特位信息时的唤醒指示示意图,其中左起第一个比特位(bit)表示目标小区/目标区域内是否存在短消息。如果该比特位取值为“0”,则表示目标小区/目标区 域内不存在短消息,不需要唤醒接收短消息;如果该比特位取值为“1”,则表示目标小区/目标区域内存在短消息,需要唤醒接收短消息。左起第三个比特位表示目标节点分组(具体哪个节点分组由网络侧设备配置)内是否存在寻呼消息,如果该比特位取值为“0”,则表示目标节点分组内不存在寻呼消息,不需要唤醒接收寻呼消息;如果该比特位取值为“1”,则表示目标节点分组内存在寻呼消息,需要唤醒接收寻呼消息。
请参阅图3,图3是另一种第一信息为第一比特位信息、第二信息为第二比特位信息时的唤醒指示示意图,其中每两个比特位对应一个节点分组。每两个比特位中,前面的比特位表示对应节点分组所属的区域/小区是否存在短消息,节点是否需要唤醒接收短消息,后面的比特位表示对应节点分组是否存在寻呼消息,分组下的节点是否需要唤醒接收寻呼消息。
所述序列信息配置为第一信息时为第一序列信息,配置为第二信息时为第二序列信息,所述第一序列信息和第二序列信息中的至少一个用于指示唤醒信息。
第一序列信息携带的唤醒信息指示的内容同上述第一比特位信息,此处不再赘述,第二序列信息携带的唤醒信息指示的内容同上述第二比特位信息,此处不再赘述。
具体的,第一序列信息包括至少X个序列,所述X为不小于零的整数。
当X=0时,即所述第一序列信息包括零个序列,则表示以下至少之一项:所述第一序列信息不存在;所述第一序列信息指示的唤醒信息不存在;所述第一序列信息指示的区域级的唤醒信息不存在;所述第一序列信息指示的小区级的唤醒信息不存在;所述第一序列信息指示的节点分组级的唤醒信息不存在;所述节点不需要唤醒进行区域级的信息的接收;所述节点不需要唤醒进行小区级的信息的接收;所述节点不需要唤醒进行节点分组级的信息的接收;
当X=1时,即所述第一序列信息包括一个序列,则表示以下至少之一项:所述第一序列信息指示的唤醒信息包括区域级的唤醒信息;所述第一序列信息指示的唤醒信息包括小区级的唤醒信息;所述第一序列信息指示的唤醒信息包括节点分组级的唤醒信息;所述节点需要唤醒进行区域级的信息的接收;所述节点需要唤醒进行小区级的信息的接收;所述节点需要唤醒进行节点分组级的信息的接收;
当X>1,即所述第一序列信息包括一个以上序列时,则表示以下至少之一项:
所述第一序列信息指示的唤醒信息包括区域级的唤醒信息;
所述第一序列信息指示的唤醒信息包括小区级的唤醒信息;
所述第一序列信息指示的唤醒信息包括节点分组级的唤醒信息;
所述第一序列信息指示的唤醒信息包括指示短消息的类型的唤醒信息;
所述第一序列信息指示的唤醒信息包括指示需要更新的系统消息的类型的唤醒信息;
所述第一序列信息指示的唤醒信息包括指示系统消息是否需要更新的唤醒信息。
具体的,第二序列信息包括至少Y个序列,所述Y为不小于零的整数。
当Y=0时,即所述第二序列信息包括零个序列,则表示以下至少之一项:所述第二序列信息不存在;所述第二序列信息指示的唤醒信息不存在;所述第二序列信息指示的节点分组级的唤醒信息不存在;所述第二序列信息指示的节点级的唤醒信息不存在;所述节点不需要唤醒进行节点分组级的信息的接收;所述节点不需要唤醒进行节点级的信息的接收;
当Y=1时,即所述第二序列信息包括一个序列,则表示以下至少之一项:所述第二序列信息指示的唤醒信息包括节点分组级的唤醒信息;所述第二序列信息指示的唤醒信息包括节点级的唤醒信息;所述节点需要唤醒进行节点分组级的信息的接收;所述节点需要唤醒进行节点级的信息的接收;
当Y>1时,即所述第二序列信息包括一个以上序列时,则表示以下至少之一项:
所述第二序列指示的唤醒信息包括节点分组级的唤醒信息;
所述第二序列指示的唤醒信息包括节点级的唤醒信息;
所述第二序列信息指示的唤醒信息包括指示需要唤醒的节点分组的编号的唤醒信息;
所述第二序列信息指示的唤醒信息包括指示需要唤醒的节点的编号的唤醒信息;
所述第二序列指示的唤醒信息包括指示至少一个节点分组是否需要唤醒的唤醒信息;
所述第二序列指示的唤醒信息包括指示至少一个节点是否需要唤醒的唤醒信息。
请参阅图4,图4是一种第一信息为第一序列信息、第二信息为第二序列信息时的唤醒指示示意图。其中,第一个序列表示节点需要唤醒接收区域级的信息;第二个序列表示节点分组1需要唤醒接收节点分组级的信息;第三个序列表示节点分组2需要唤醒接收节点分组级的信息;第四个序列表示节点分组3需要唤醒接收节点分组级的信息;第五个序列表示节点分组4需要唤醒接收节点分组级的信息;第六个序列表示节点分组5需要唤醒接收节点分组级的信息;第七个序列表示节点分组6需要唤醒接收节点分组级的信息。
所述时域资源的信息配置为第一信息时为第一时域资源的信息,配置为第二信息时为第二时域资源的信息,所述第一时域资源的信息和第二时域资源的信息中的至少一个用于指示唤醒信息。
第一时域资源的信息携带的唤醒信息指示的内容同上述第一比特位信息,此处不再赘述,第二时域资源的信息携带的唤醒信息指示的内容同上述第二比特位信息,此处不再赘述。
具体的,第一时域资源包括K个时域单元,所述K为不小于零的整数。 所述时域单元可以是符号、时隙和子帧中的至少一项。
当K=0时,即所述第一时域资源包括零个时域单元,则表示以下至少之一项:所述第一时域资源不存在;所述第一时域资源携带的唤醒信息不存在;所述第一时域资源携带的区域级的唤醒信息不存在;所述第一时域资源携带的小区级的唤醒信息不存在;所述第一时域资源携带的节点分组级的唤醒信息不存在;所述节点不需要唤醒进行区域级的信息的接收;所述节点不需要唤醒进行小区级的信息的接收;所述节点不需要唤醒进行节点分组级的信息的接收;
当K>0时,即所述第一时域资源包括一个或一个以上时域单元时,则表示以下至少之一项:
所述节点需要唤醒进行区域级的信息的接收;
所述节点需要唤醒进行小区级的信息的接收;
所述节点需要唤醒进行节点分组级的信息的接收;
所述第一时域资源携带的唤醒信息包括区域级的唤醒信息;
所述第一时域资源携带的唤醒信息包括小区级的唤醒信息;
所述第一时域资源携带的唤醒信息包括节点分组级的唤醒信息;
所述第一时域资源携带的唤醒信息包括指示短消息的类型的唤醒信息;
所述第一时域资源携带的唤醒信息包括指示需要更新的系统消息的类型的唤醒信息;
所述第一时域资源携带的唤醒信息包括指示系统消息是否需要更新的唤醒信息。
具体的,第二时域资源包括L个时域单元,所述L为不小于零的整数。所述时域单元可以是符号、时隙和子帧中的至少一项。
当L=0时,即所述第二时域资源包括零个时域单元,则表示以下至少之一项:所述第二时域资源不存在;所述第二时域资源携带的唤醒信息不存在;所述第二时域资源携带的节点分组级的唤醒信息不存在;所述第二时域资源携带的节点级的唤醒信息不存在;所述节点不需要唤醒进行节点分组级的信息的接收;所述节点不需要唤醒进行节点级的信息的接收;
当L>0时,即所述第二时域资源包括一个或一个以上时域单元时,则表示以下至少之一项:
所述节点需要唤醒进行节点分组级的信息的接收;
所述节点需要唤醒进行节点级的信息的接收;
所述第二时域资源携带的唤醒信息包括节点分组级的唤醒信息;
所述第二时域资源携带的唤醒信息包括节点级的唤醒信息;
所述第二时域资源携带的唤醒信息包括指示需要唤醒的节点分组的编号的唤醒信息;
所述第二时域资源携带的唤醒信息包括指示需要唤醒的节点的编号的唤醒信息;
所述第二时域资源携带的唤醒信息包括指示至少一个节点分组是否需要 唤醒的唤醒信息;
所述第二时域资源携带的唤醒信息包括指示至少一个节点是否需要唤醒的唤醒信息。
请参阅图5,图5是一种第一信息为第一时域资源的信息、第二信息为第二时域资源信息时的唤醒指示示意图。
所述频域资源的信息配置为第一信息时为第一频域资源的信息,配置为第二信息时为第二频域资源的信息,所述第一频域资源的信息和第二频域资源的信息中的至少一个用于指示唤醒信息。
第一频域资源的信息携带的唤醒信息指示的内容同上述第一比特位信息,此处不再赘述,第二频域资源的信息携带的唤醒信息指示的内容同上述第二比特位信息,此处不再赘述。
具体的,第一频域资源包括S个频域单元,所述S为不小于零的整数。所述频域单元可以是RE、RB、REG、RBG、BWP和载波中的至少一项。
当S=0时,即所述第一频域资源包括零个频域单元,则表示以下至少之一项:所述第一频域资源不存在;所述第一频域资源携带的唤醒信息不存在;所述第一频域资源携带的区域级的唤醒信息不存在;所述第一频域资源携带的小区级的唤醒信息不存在;所述第一频域资源携带的节点分组级的唤醒信息不存在;所述节点不需要唤醒进行区域级的信息的接收;所述节点不需要唤醒进行小区级的信息的接收;所述节点不需要唤醒进行节点分组级的信息的接收;
当S>0时,即所述第一频域资源包括一个或一个以上频域单元时,则表示以下至少之一项:
所述节点需要唤醒进行区域级的信息的接收;
所述节点需要唤醒进行小区级的信息的接收;
所述节点需要唤醒进行节点分组级的信息的接收;
所述第一频域资源携带的唤醒信息包括区域级的唤醒信息;
所述第一频域资源携带的唤醒信息包括小区级的唤醒信息;
所述第一频域资源携带的唤醒信息包括节点分组级的唤醒信息;
所述第一频域资源携带的唤醒信息包括指示短消息的类型的唤醒信息;
所述第一频域资源携带的唤醒信息包括指示需要更新的系统消息的类型的唤醒信息;
所述第一频域资源携带的唤醒信息包括指示系统消息是否需要更新的唤醒信息。
具体的,第二频域资源包括T个频域单元,所述T为不小于零的整数。所述频域单元可以是RE、RB、REG、RBG、BWP和载波中的至少一项。
当T=0时,即所述第二频域资源包括零个频域单元,则表示以下至少之一项:所述第二频域资源不存在;所述第二频域资源携带的唤醒信息不存在;所述第二频域资源携带的节点分组级的唤醒信息不存在;所述第二频域资源携带的节点级的唤醒信息不存在;所述节点不需要唤醒进行节点分组级的信 息的接收;所述节点不需要唤醒进行节点级的信息的接收;
当T>0时,即所述第二频域资源包括一个或一个以上频域单元时,则表示以下至少之一项:
所述节点需要唤醒进行节点分组级的信息的接收;
所述节点需要唤醒进行节点级的信息的接收;
所述第二频域资源携带的唤醒信息包括节点分组级的唤醒信息;
所述第二频域资源携带的唤醒信息包括节点级的唤醒信息;
所述第二频域资源携带的唤醒信息包括指示需要唤醒的节点分组的编号的唤醒信息;
所述第二频域资源携带的唤醒信息包括指示需要唤醒的节点的编号的唤醒信息;
所述第二频域资源携带的唤醒信息包括指示至少一个节点分组是否需要唤醒的唤醒信息;
所述第二频域资源携带的唤醒信息包括指示至少一个节点是否需要唤醒的唤醒信息。
请参阅图6,图6是一种第一信息为第一频域资源的信息、第二信息为第二频域资源信息时的唤醒指示示意图。
所述空域资源的信息配置为第一信息时为第一空域资源的信息,配置为第二信息时为第二空域资源的信息,所述第一空域资源的信息和第二空域资源的信息中的至少一个用于指示唤醒信息。
第一空域资源的信息携带的唤醒信息指示的内容同上述第一比特位信息,此处不再赘述,第二空域资源的信息携带的唤醒信息指示的内容同上述第二比特位信息,此处不再赘述。
具体的,第一空域资源包括P个空域单元,所述P为不小于零的整数。所述空域单元可以是TRP、天线端口、天线根数和波束中的至少一项。
当P=0时,即所述第一空域资源包括零个空域单元,则表示以下至少之一项:所述第一空域资源不存在;所述第一空域资源携带的唤醒信息不存在;所述第一空域资源携带的区域级的唤醒信息不存在;所述第一空域资源携带的小区级的唤醒信息不存在;所述第一空域资源携带的节点分组级的唤醒信息不存在;所述节点不需要唤醒进行区域级的信息的接收;所述节点不需要唤醒进行小区级的信息的接收;所述节点不需要唤醒进行节点分组级的信息的接收;
当P>0时,即所述第一空域资源包括一个或一个以上空域单元时,则表示以下至少之一项:
所述节点需要唤醒进行区域级的信息的接收;
所述节点需要唤醒进行小区级的信息的接收;
所述节点需要唤醒进行节点分组级的信息的接收;
所述第一空域资源携带的唤醒信息包括区域级的唤醒信息;
所述第一空域资源携带的唤醒信息包括小区级的唤醒信息;
所述第一空域资源携带的唤醒信息包括节点分组级的唤醒信息;
所述第一空域资源携带的唤醒信息包括指示短消息的类型的唤醒信息;
所述第一空域资源携带的唤醒信息包括指示需要更新的系统消息的类型的唤醒信息;
所述第一空域资源携带的唤醒信息包括指示系统消息是否需要更新的唤醒信息。
具体的,第二空域资源包括Q个空域单元,所述Q为不小于零的整数。所述空域单元可以是TRP、天线端口、天线根数和波束中的至少一项。
当Q=0时,即所述第二空域资源包括零个空域单元,则表示以下至少之一项:所述第二空域资源不存在;所述第二空域资源携带的唤醒信息不存在;所述第二空域资源携带的节点分组级的唤醒信息不存在;所述第二空域资源携带的节点级的唤醒信息不存在;所述节点不需要唤醒进行节点分组级的信息的接收;所述节点不需要唤醒进行节点级的信息的接收;
当Q>0时,即所述第二空域资源包括一个或一个以上空域单元时,则表示以下至少之一项:
所述节点需要唤醒进行节点分组级的信息的接收;
所述节点需要唤醒进行节点级的信息的接收;
所述第二空域资源携带的唤醒信息包括节点分组级的唤醒信息;
所述第二空域资源携带的唤醒信息包括节点级的唤醒信息;
所述第二空域资源携带的唤醒信息包括指示需要唤醒的节点分组的编号的唤醒信息;
所述第二空域资源携带的唤醒信息包括指示需要唤醒的节点的编号的唤醒信息;
所述第二空域资源携带的唤醒信息包括指示至少一个节点分组是否需要唤醒的唤醒信息;
所述第二空域资源携带的唤醒信息包括指示至少一个节点是否需要唤醒的唤醒信息。
请参阅图7,图7是一种第一信息为第一空域资源的信息、第二信息为第二空域资源信息时的唤醒指示示意图。
所述监测参数配置的信息配置为第一信息时为第一监测参数配置的信息,配置为第二信息时为第二监测参数配置的信息,所述第一监测参数配置的信息和第二监测参数配置的信息中的至少一个用于指示唤醒信息。
第一监测参数配置的信息携带的唤醒信息指示的内容同上述第一比特位信息,此处不再赘述,第二监测参数配置的信息携带的唤醒信息指示的内容同上述第二比特位信息,此处不再赘述。
具体的,第一监测参数配置包括C个监测参数配置,所述C为不小于零的整数。
当C=0时,即所述第一监测参数配置包括零个监测参数配置,则表示以下至少之一项:所述第一监测参数配置不存在;所述第一监测参数配置携带 的唤醒信息不存在;所述第一监测参数配置携带的区域级的唤醒信息不存在;所述第一监测参数配置携带的小区级的唤醒信息不存在;所述第一监测参数配置携带的节点分组级的唤醒信息不存在;所述节点不需要唤醒进行区域级的信息的接收;所述节点不需要唤醒进行小区级的信息的接收;所述节点不需要唤醒进行节点分组级的信息的接收;
当C>0时,即所述第一监测参数配置包括一个或一个以上监测参数配置时,则表示以下至少之一项:
所述节点需要唤醒进行区域级的信息的接收;
所述节点需要唤醒进行小区级的信息的接收;
所述节点需要唤醒进行节点分组级的信息的接收;
所述第一监测参数配置携带的唤醒信息包括区域级的唤醒信息;
所述第一监测参数配置携带的唤醒信息包括小区级的唤醒信息;
所述第一监测参数配置携带的唤醒信息包括节点分组级的唤醒信息;
所述第一监测参数配置携带的唤醒信息包括指示短消息的类型的唤醒信息;
所述第一监测参数配置携带的唤醒信息包括指示需要更新的系统消息的类型的唤醒信息;
所述第一监测参数配置携带的唤醒信息包括指示系统消息是否需要更新的唤醒信息。
具体的,第二监测参数配置包括D个监测参数配置,所述D为不小于零的整数。
当D=0时,即所述第二监测参数配置包括零个监测参数配置,则表示以下至少之一项:所述第二监测参数配置不存在;所述第二监测参数配置携带的唤醒信息不存在;所述第二监测参数配置携带的节点分组级的唤醒信息不存在;所述第二监测参数配置携带的节点级的唤醒信息不存在;所述节点不需要唤醒进行节点分组级的信息的接收;所述节点不需要唤醒进行节点分组级的信息的接收;
当D>0时,即所述第二监测参数配置包括一个或一个以上监测参数配置时,则表示以下至少之一项:
所述节点需要唤醒进行节点分组级的信息的接收;
所述节点需要唤醒进行节点级的信息的接收;
所述第二监测参数配置携带的唤醒信息包括节点分组级的唤醒信息;
所述第二监测参数配置携带的唤醒信息包括节点级的唤醒信息;
所述第二监测参数配置携带的唤醒信息包括指示需要唤醒的节点分组的编号的唤醒信息;
所述第二监测参数配置携带的唤醒信息包括指示需要唤醒的节点的编号的唤醒信息;
所述第二监测参数配置携带的唤醒信息包括指示至少一个节点分组是否需要唤醒的唤醒信息;
所述第二监测参数配置携带的唤醒信息包括指示至少一个节点是否需要唤醒的唤醒信息。
请参阅图8,图8是一种第一信息为第一监测参数配置、第二信息为第二监测参数配置时的唤醒指示示意图。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
具体来说,当所述目标信息同时包括第一信息和所述第二信息,且所述第一信息和所述第二信息的类型相同时,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
换句话来说,所述第一信息和所述第二信息都存在时,所述第一信息和所述第二信息可以按照顺序指示相应的唤醒信息,或者第一信息和所述第二信息交替指示相应的唤醒信息。
或者说,所述第一信息和所述第二信息都存在,且所述第一信息指示的资源(包括时域资源、频域资源和/或空域资源)和所述第二信息指示的资源的类型相同时,所述第一信息指示的资源和所述第二信息指示的资源交替排列或顺序排列。或者,所述第一信息和所述第二信息都存在,且所述第一信息和所述第二信息都是指示比特位时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列或顺序排列。
其中,所述目标信息可以是由网络侧设备配置,因此,所述第一信息和所述第二信息是交替排列或是顺序排列,也可以是由网络侧设备配置,但不限于此。
进一步的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
举例来说,第一信息指示了两部分时域资源,即第一时域资源和第二时域资源,第二信息也指示了两部分时域资源,即第三时域资源和第四时域资源,从时间从前往后的顺序来说,第一时域资源排在最前面,第三时域资源其次,第二时域资源排在第三时域资源的后面,第四时域资源排在最后面。
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
举例来说,第一信息指示了两部分时域资源,即第一时域资源和第二时域资源,第二信息也指示了两部分时域资源,即第三时域资源和第四时域资源,按照时间从前往后排序时,第一时域资源排在最前面,第二时域资源其次,第三时域资源排在第二时域资源的后面,第四时域资源排在最后面。
其中,每一部分时域资源包括子帧、时隙和符号中的至少之一项,且各部分时域资源的大小可以相同,也可以不同。各部分时域资源内的时域资源可以连续也可以不连续。
关于所述第一信息和所述第二信息交替排列,又例如,所述第一信息指 示的第一时域资源为第一个时隙(slot#0),所述第二信息指示的第三时域资源为第二个时隙(slot#1)和第三个时隙(slot#2),所述第一信息指示的第二时域资源为第四个时隙(slot#3)、第六个时隙(slot#5)和第七个时隙(slot#6),所述第二信息指示的第四时域资源为第九个时隙(slot#8)。
关于所述第一信息和所述第二信息顺序排列,又例如,第一信息指示的第一时域资源为第一个时隙(slot#0),所述第一信息指示的第二时域资源为第二个时隙(slot#1)和第三个时隙(slot#2),所述第二信息指示的第三时域资源为第四个时隙(slot#3)、第六个时隙(slot#5)和第七个时隙(slot#6),所述第二信息指示的第四时域资源为第九个时隙(slot#8)。
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
举例来说,第一信息指示了两部分频域资源,即第一频域资源和第二频域资源,第二信息也指示了两部分频域资源,即第三频域资源和第四频域资源,按照频率从小往大排序时,第一频域资源排在最前面,第三频域资源其次,第二频域资源排在第三频域资源的后面,第四频域资源排在最后面。
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
举例来说,第一信息指示了两部分频域资源,即第一频域资源和第二频域资源,第二信息也指示了两部分频域资源,即第三频域资源和第四频域资源,按照频率从小往大排序时,第一频域资源排在最前面,第二频域资源其次,第三频域资源排在第二频域资源的后面,第四频域资源排在最后面。
其中,每一部分频域资源包括载波、BWP、RBG、RB、REG和RE中的至少一项,且各部分频域资源的大小可以相同,也可以不同。各部分频域资源内的频域资源可以连续也可以不连续。
关于所述第一信息和所述第二信息交替排列,又例如,所述第一信息指示的第一频域资源为第一个载波(Carrier#0),所述第二信息指示的第三频域资源为第二个载波(Carrier#1)和第三个载波(Carrier#2),所述第一信息指示的第二频域资源为第四个载波(Carrier#3)、第六个载波(Carrier#5)和第七个载波(Carrier#6),所述第二信息指示的第四频域资源为第九个载波(Carrier#8)。
关于所述第一信息和所述第二信息顺序排列,又例如,第一信息指示的第一频域资源为第一个载波(Carrier#0),所述第一信息指示的第二频域资源为第二个载波(Carrier#1)和第三个载波(Carrier#2),所述第二信息指示的第三频域资源为第四个载波(Carrier#3)、第六个载波(Carrier#5)和第七个载波(Carrier#6),所述第二信息指示的第四频域资源为第九个载波(Carrier#8)。
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息, 且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
举例来说,第一信息指示了两部分空域资源,即第一空域资源和第二空域资源,第二信息也指示了两部分空域资源,即第三空域资源和第四空域资源,按照空域资源编号从小往大排序时,第一空域资源排在最前面,第三空域资源其次,第二空域资源排在第三空域资源的后面,第四空域资源排在最后面。
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
举例来说,第一信息指示了两部分空域资源,即第一空域资源和第二空域资源,第二信息也指示了两部分空域资源,即第三空域资源和第四空域资源,按照空域资源编号从小往大排序时,第一空域资源排在最前面,第二空域资源其次,第三空域资源排在第二空域资源的后面,第四空域资源排在最后面。
其中,每一部分空域资源包括TRP、天线端口、天线和波束中的至少之一项,且各部分空域资源的大小可以相同,也可以不同。
关于所述第一信息和所述第二信息交替排列,又例如,所述第一信息指示的第一空域资源为第一个波束(Beam#0),所述第二信息指示的第三空域资源为第二个波束(Beam#1)和第三个波束(Beam#2),所述第一信息指示的第二空域资源为第四个波束(Beam#3)、第六个波束(Beam#5)和第七个波束(Beam#6),所述第二信息指示的第四空域资源为第九个波束(Beam#8)。
关于所述第一信息和所述第二信息顺序排列,又例如,第一信息指示的第一空域资源为第一个波束(Beam#0),所述第一信息指示的第二空域资源为第二个波束(Beam#1)和第三个波束(Beam#2),所述第二信息指示的第三空域资源为第四个波束(Beam#3)、第六个波束(Beam#5)和第七个波束(Beam#6),所述第二信息指示的第四空域资源为第九个波束(Beam#8)。
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
举例来说,第一信息指示了两部分比特位,即第一比特位和第二比特位,第二信息也指示了两部分比特位,即第三比特位和第四比特位,按照比特位从前往后排序时,第一比特位排在最前面,第三比特位其次,第二比特位排在第三比特位的后面,第四比特位排在最后面。
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
举例来说,第一信息指示了两部分比特位,即第一比特位和第二比特位,第二信息也指示了两部分比特位,即第三比特位和第四比特位,按照比特位 从前往后排序时,第一比特位排在最前面,第二比特位其次,第三比特位排在第二比特位的后面,第四比特位排在最后面。
其中,各部分比特位的个数可以相同也可以不同。
关于所述第一信息和所述第二信息交替排列,又例如,所述第一信息指示的第一比特位为第一个比特位(Bit#0),所述第二信息指示的第三比特位为第二个比特位(Bit#1)和第三个比特位(Bit#2),所述第一信息指示的第二比特位为第四个比特位(Bit#3)、第六个比特位(Bit#5)和第七个比特位(Bit#6),所述第二信息指示的第四比特位为第九个比特位(Bit#8)。
关于所述第一信息和所述第二信息顺序排列,又例如,第一信息指示的第一比特位为第一个比特位(Bit#0),所述第一信息指示的第二比特位为第二个比特位(Bit#1)和第三个比特位(Bit#2),所述第二信息指示的第三比特位为第四个比特位(Bit#3)、第六个比特位(Bit#5)和第七个比特位(Bit#6),所述第二信息指示的第四比特位为第九个比特位(Bit#8)。
请参见图9,图9是本公开实施例二提供的一种信号的发送方法的流程图,所述方法应用于网络侧设备,包括以下步骤:
901、所述网络侧设备配置目标信息,所述目标信息包括第一信息和/或第二信息;
902、所述网络侧设备通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
换句话说,所述网络侧设备根据所述目标信息发送唤醒信息,其中,根据所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
需要说明的是,网络侧设备可以是基站,例如:宏站、LTE eNB、5G NR NB等;网络侧设备也可以是小站,如低功率节点(low power node,LPN)、pico、femto等小站,或者网络侧设备可以接入点(access point,AP);基站也可以是中央单元(central unit,CU)与其管理是和控制的多个传输接收点(Transmission Reception Point,TRP)共同组成的网络节点。需要说明的是,在本公开实施例中并不限定网络侧设备的具体类型。
本公开实施例中,可以利用第一信息和/或第二信息,指示不同级别的唤醒信息,从而网络侧可以将不同级别的唤醒信息分开指示,如果为区域级的或小区级的唤醒信息,则可以仅仅在一个资源上指示,所有的节点(包括终端)都去监测该资源,不需要针对每个节点都发一遍区域级的或小区级的唤醒信息,从而可以大大降低基站的唤醒指示的信令的开销。
下面举例说明上述信号的发送方法。
首先,所述网络侧设备在通过所述目标信息发送唤醒信息之后,如果该唤醒信息的目的是唤醒一个节点或多个节点,那么还需要发送相关的信号, 例如PDCCH、PDSCH和/或参考信号等。
其中,所述第一信息的配置和所述第二信息的配置可以完全相同、部分相同或不同。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
具体的,当所述第一信息包括时域资源的信息、频域资源的信息和空域资源的信息中的至少一项时,所述根据所述目标信息发送唤醒信息的步骤具体是通过所述目标信息指示的资源发送唤醒信号。当所述第一信息包括序列信息、比特位信息和监测参数配置的信息中的至少一项时,所述根据所述目标信息发送唤醒信息的步骤具体包括发送所述目标信息指示的序列和/或比特位和/或监测参数配置,并利用所述序列和/或比特位和/或监测参数配置指示所述唤醒信息。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
也就是说,所述第一信息和/或所述第二信息的配置,可以是基于高层信令的,可以是基于RRC信令的,可以是基于动态信令的,也可以是基于预定义的,还可以是基于广播的。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
具体的,所述目标信息可以是由网络侧设备配置,因此,所述第一信息和所述第二信息是交替排列或是顺序排列,也可以是由网络侧设备配置,但不限于此。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
需要说明的是,本实施例作为与上述应用于节点侧的信号的接收方法的实施例对应的应用于网络侧设备的实施方式,其具体的实施方式可以参见上述实施例的相关说明,为了避免重复说明,本实施例不再赘述,且还可以达到相同有益效果。
请参见图10,图10是本公开实施例三提供的一种节点的结构图,如图10所示,节点1000,包括:
第一获取模块1001,用于获取目标信息,所述目标信息包括第一信息和/或第二信息;
第二获取模块1002,用于根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
动作模块1003,用于根据所述唤醒信息的指示进行唤醒或继续睡眠。
可选的,所述节点1000还包括:
接收模块,用于根据所述唤醒信息的指示确定是否需要接收PDSCH。
可选的,所述接收模块,用于若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收P-RNTI加扰的DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺 序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
可选的,所述监测参数包括CORESET资源、搜索空间资源、PDCCH候选资源、CORESET资源的符号和CORESET资源的资源块中的至少一项。
需要说明的是,本实施例中上述节点1000可以是本公开实施例中方法实施例中任意实施方式的节点,本公开实施例中方法实施例中节点的任意实施方式都可以被本实施例中的上述节点1000所实现,以及达到相同的有益效果,此处不再赘述。
请参见图11,图11是本公开实施例四提供的一种网络侧设备的结构图,如图11所示,网络侧设备1100包括:
配置模块1101,用于配置目标信息,所述目标信息包括第一信息和/或第二信息;
发送模块1102,用于通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其 他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
需要说明的是,本实施例中上述网络侧设备1100可以是本公开实施例中方法实施例中任意实施方式的网络侧设备,本公开实施例中方法实施例中网络侧设备的任意实施方式都可以被本实施例中的上述网络侧设备1100所实现,以及达到相同的有益效果,此处不再赘述。
请参见图12,图12是本公开实施例五提供的节点的另一结构图,如图12所示,该节点包括:收发机1210、存储器1220、处理器1200及存储在所述存储器1220上并可在所述处理器1200上运行的计算机程序,其中,所述处理器1200执行所述计算机程序时实现如下步骤:
获取目标信息,所述目标信息包括第一信息和/或第二信息;
根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
根据所述唤醒信息的指示进行唤醒或继续睡眠。
其中,收发机1210,可以用于在处理器1200的控制下接收和发送数据。
在图12中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器1200代表的一个或多个处理器和存储器1220代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机1210可以是多个元件,即包括发送机和接收机,提供用于在传输介质上与各种其他装置通信的单元。
处理器1200负责管理总线架构和通常的处理,存储器1220可以存储处理器1200在执行操作时所使用的数据。
需要说明的是,存储器1220并不限定只在节点上,可以将存储器1220和处理器1200分离处于不同的地理位置。
可选的,所述处理器1200执行所述计算机程序时还可实现如下步骤:
所述根据所述目标信息获取唤醒信息之后,还包括:
根据所述唤醒信息的指示确定是否需要接收PDSCH。
可选的,所述处理器1200执行所述计算机程序时还可实现如下步骤:
所述根据所述唤醒信息的指示确定是否需要接收PDSCH,包括:
若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收P-RNTI加扰的DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源 的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
可选的,所述监测参数包括CORESET资源、搜索空间资源、PDCCH候选资源、CORESET资源的符号和CORESET资源的资源块中的至少一项。
需要说明的是,本实施例中上述节点可以是本公开实施例中方法实施例中任意实施方式的节点,本公开实施例中方法实施例中节点的任意实施方式都可以被本实施例中的上述节点所实现,以及达到相同的有益效果,此处不再赘述。
请参见图13,图13是本公开实施例六提供的网络侧设备的另一结构图,如图13所示,该网络侧设备包括:收发机1310、存储器1320、处理器1300及存储在所述存储器1320上并可在所述处理器上运行的计算机程序,其中,所述处理器执行所述计算机程序时实现如下步骤:
配置目标信息,所述目标信息包括第一信息和/或第二信息;
通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
其中,收发机1310,可以用于在处理器1300的控制下接收和发送数据。
在图13中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器1300代表的一个或多个处理器和存储器1320代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机1310可以是多个元件,即包括发送机和接收机,提供用于在传输介质上与各种其他装置通信的单元。
处理器1300负责管理总线架构和通常的处理,存储器1320可以存储处理器1300在执行操作时所使用的数据。
需要说明的是,存储器1320并不限定只在网络侧设备上,可以将存储器1320和处理器1300分离处于不同的地理位置。
可选的,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
可选的,所述区域级的唤醒信息用于指示以下至少一项:
区域级的信息是否存在;
目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
目标区域下的所有节点需要唤醒进行区域级的信息的接收;
需要接收的信息的类型包括区域级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述小区级的唤醒信息用于指示以下至少一项:
小区级的信息是否存在;
目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
目标小区下的所有节点需要唤醒进行小区级的信息的接收;
需要接收的信息的类型包括小区级的信息;
短消息的类型;
需要更新的系统消息的类型;
系统消息是否需要更新。
可选的,所述节点分组级的唤醒信息用于指示以下至少一项:
节点分组级的信息是否存在;
目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
需要接收的信息的类型包括节点分组级的信息;
需要唤醒的节点分组的编号;
至少一个节点分组是否需要唤醒。
可选的,所述节点级的唤醒信息用于指示以下至少一项:
节点级的信息是否存在;
目标节点是否需要唤醒进行节点级的信息的接收;
目标节点需要唤醒进行节点级的信息的接收;
需要接收的信息的类型包括节点级的信息;
需要唤醒的节点的编号;
至少一个节点是否需要唤醒。
可选的,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
可选的,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
其中,所述第一消息用于指示所述节点停止监测PO。
可选的,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
可选的,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
可选的,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
需要说明的是,本实施例中上述网络侧设备可以是本公开实施例中方法实施例中任意实施方式的网络侧设备,本公开实施例中方法实施例中网络侧设备的任意实施方式都可以被本实施例中的上述网络侧设备所实现,以及达到相同的有益效果,此处不再赘述。
本公开实施例还提供一种计算机可读存储介质,其上存储有计算机程序,所述计算机程序被处理器执行时实现本公开实施例提供的节点侧的信号的接收方法中的步骤,或者该程序被处理器执行时实现本公开实施例提供的网络侧设备侧的信号的发送方法中的步骤。
在本申请所提供的几个实施例中,应该理解到,所揭露方法和装置,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。
另外,在本公开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包括,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,也可以采用硬件加软件功能单元的形式实现。
上述以软件功能单元的形式实现的集成的单元,可以存储在一个计算机可读取存储介质中。上述软件功能单元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)执行本公开各个实施例所述信息数据块的处理方法的部分步骤。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。
各个模块、单元、子单元或子模块可以是被配置成实施以上方法的一个或多个集成电路,例如:一个或多个特定集成电路(Application Specific Integrated Circuit,ASIC),或,一个或多个微处理器(digital signal processor,DSP),或,一个或者多个现场可编程门阵列(Field Programmable Gate Array,FPGA)等。再如,当以上某个模块通过处理元件调度程序代码的形式实现时,该处理元件可以是通用处理器,例如中央处理器(Central Processing Unit,CPU)或其它可以调用程序代码的处理器。再如,这些模块可以集成在一起, 以片上系统(system-on-a-chip,SOC)的形式实现。
以上所述是本公开的可选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本公开所述原理的前提下,还可以作出若干改进和润饰,这些改进和润饰也应视为本公开的保护范围。

Claims (77)

  1. 一种信号的接收方法,应用于节点,包括:
    获取目标信息,所述目标信息包括第一信息和/或第二信息;
    根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
    根据所述唤醒信息的指示进行唤醒或继续睡眠。
  2. 根据权利要求1所述的方法,其中,所述根据所述目标信息获取唤醒信息之后,所述方法还包括:
    根据所述唤醒信息的指示确定是否需要接收物理下行共享信道PDSCH。
  3. 根据权利要求2所述的方法,其中,所述根据所述唤醒信息的指示确定是否需要接收PDSCH,包括:
    若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收寻呼-无线网络临时标识P-RNTI加扰的下行控制信息DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
  4. 如权利要求1所述的方法,其中,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
    所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
  5. 根据权利要求1所述的方法,其中,所述区域级的唤醒信息用于指示以下至少一项:
    区域级的信息是否存在;
    目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
    目标区域下的所有节点需要唤醒进行区域级的信息的接收;
    需要接收的信息的类型包括区域级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  6. 根据权利要求1所述的方法,其中,所述小区级的唤醒信息用于指示以下至少一项:
    小区级的信息是否存在;
    目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
    目标小区下的所有节点需要唤醒进行小区级的信息的接收;
    需要接收的信息的类型包括小区级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  7. 根据权利要求1所述的方法,其中,所述节点分组级的唤醒信息用于指示以下至少一项:
    节点分组级的信息是否存在;
    目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
    目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
    需要接收的信息的类型包括节点分组级的信息;
    需要唤醒的节点分组的编号;
    至少一个节点分组是否需要唤醒。
  8. 根据权利要求1所述的方法,其中,所述节点级的唤醒信息用于指示以下至少一项:
    节点级的信息是否存在;
    目标节点是否需要唤醒进行节点级的信息的接收;
    目标节点需要唤醒进行节点级的信息的接收;
    需要接收的信息的类型包括节点级的信息;
    需要唤醒的节点的编号;
    至少一个节点是否需要唤醒。
  9. 根据权利要求5所述的方法,其中,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  10. 根据权利要求6所述的方法,其中,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  11. 根据权利要求7所述的方法,其中,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  12. 根据权利要求8所述的方法,其中,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  13. 根据权利要求9或10或11所述的方法,其中,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
    其中,所述第一消息用于指示所述节点停止监测PO。
  14. 根据权利要求4所述的方法,其中,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
  15. 根据权利要求14所述的方法,其中,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息, 且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
    所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
    所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
    所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
  16. 根据权利要求4所述的方法,其中,所述监测参数包括CORESET资源、搜索空间资源、PDCCH候选资源、CORESET资源的符号和CORESET资源的资源块中的至少一项。
  17. 一种信号的发送方法,应用于网络侧设备,包括:
    配置目标信息,所述目标信息包括第一信息和/或第二信息;
    通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
  18. 根据权利要求17所述的方法,其中,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
    所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
  19. 根据权利要求17所述的方法,其中,所述区域级的唤醒信息用于指示以下至少一项:
    区域级的信息是否存在;
    目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
    目标区域下的所有节点需要唤醒进行区域级的信息的接收;
    需要接收的信息的类型包括区域级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  20. 根据权利要求17所述的方法,其中,所述小区级的唤醒信息用于指示以下至少一项:
    小区级的信息是否存在;
    目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
    目标小区下的所有节点需要唤醒进行小区级的信息的接收;
    需要接收的信息的类型包括小区级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  21. 根据权利要求17所述的方法,其中,所述节点分组级的唤醒信息用于指示以下至少一项:
    节点分组级的信息是否存在;
    目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
    目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
    需要接收的信息的类型包括节点分组级的信息;
    需要唤醒的节点分组的编号;
    至少一个节点分组是否需要唤醒。
  22. 根据权利要求17所述的方法,其中,所述节点级的唤醒信息用于指示以下至少一项:
    节点级的信息是否存在;
    目标节点是否需要唤醒进行节点级的信息的接收;
    目标节点需要唤醒进行节点级的信息的接收;
    需要接收的信息的类型包括节点级的信息;
    需要唤醒的节点的编号;
    至少一个节点是否需要唤醒。
  23. 根据权利要求19所述的方法,其中,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  24. 根据权利要求20所述的方法,其中,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  25. 根据权利要求21所述的方法,其中,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  26. 根据权利要求22所述的方法,其中,所述节点级的信息包括寻呼消 息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  27. 根据权利要求23或24或25所述的方法,其中,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
    其中,所述第一消息用于指示所述节点停止监测PO。
  28. 根据权利要求17所述的方法,其中,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
  29. 根据权利要求17所述的方法,其中,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
  30. 一种节点,包括:
    第一获取模块,用于获取目标信息,所述目标信息包括第一信息和/或第二信息;
    第二获取模块,用于根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
    动作模块,用于根据所述唤醒信息的指示进行唤醒或继续睡眠。
  31. 根据权利要求30所述的节点,还包括:
    接收模块,用于根据所述唤醒信息的指示确定是否需要接收PDSCH。
  32. 根据权利要求31所述的节点,其中,所述接收模块,用于若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收P-RNTI加扰的DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
  33. 如权利要求30所述的节点,其中,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
    所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项。
  34. 根据权利要求30所述的节点,其中,所述区域级的唤醒信息用于指示以下至少一项:
    区域级的信息是否存在;
    目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
    目标区域下的所有节点需要唤醒进行区域级的信息的接收;
    需要接收的信息的类型包括区域级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  35. 根据权利要求30所述的节点,其中,所述小区级的唤醒信息用于指示以下至少一项:
    小区级的信息是否存在;
    目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
    目标小区下的所有节点需要唤醒进行小区级的信息的接收;
    需要接收的信息的类型包括小区级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  36. 根据权利要求30所述的节点,其中,所述节点分组级的唤醒信息用于指示以下至少一项:
    节点分组级的信息是否存在;
    目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
    目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
    需要接收的信息的类型包括节点分组级的信息;
    需要唤醒的节点分组的编号;
    至少一个节点分组是否需要唤醒。
  37. 根据权利要求30所述的节点,其中,所述节点级的唤醒信息用于指示以下至少一项:
    节点级的信息是否存在;
    目标节点是否需要唤醒进行节点级的信息的接收;
    目标节点需要唤醒进行节点级的信息的接收;
    需要接收的信息的类型包括节点级的信息;
    需要唤醒的节点的编号;
    至少一个节点是否需要唤醒。
  38. 根据权利要求34所述的节点,其中,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  39. 根据权利要求35所述的节点,其中,所述小区级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  40. 根据权利要求36所述的节点,其中,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  41. 根据权利要求37所述的节点,其中,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  42. 根据权利要求38或39或40所述的节点,其中,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
    其中,所述第一消息用于指示所述节点停止监测PO。
  43. 根据权利要求33所述的节点,其中,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
  44. 根据权利要求43所述的节点,其中,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
    所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
    所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
    所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
  45. 根据权利要求33所述的节点,其中,所述监测参数包括CORESET资源、搜索空间资源、PDCCH候选资源、CORESET资源的符号和CORESET资源的资源块中的至少一项。
  46. 一种网络侧设备,包括:
    配置模块,用于配置目标信息,所述目标信息包括第一信息和/或第二信息;
    发送模块,用于通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
  47. 根据权利要求46所述的网络侧设备,其中,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
    所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、 序列信息、比特位信息和监测参数配置的信息中的至少一项。
  48. 根据权利要求46所述的网络侧设备,其中,所述区域级的唤醒信息用于指示以下至少一项:
    区域级的信息是否存在;
    目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
    目标区域下的所有节点需要唤醒进行区域级的信息的接收;
    需要接收的信息的类型包括区域级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  49. 根据权利要求46所述的网络侧设备,其中,所述小区级的唤醒信息用于指示以下至少一项:
    小区级的信息是否存在;
    目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
    目标小区下的所有节点需要唤醒进行小区级的信息的接收;
    需要接收的信息的类型包括小区级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  50. 根据权利要求46所述的网络侧设备,其中,所述节点分组级的唤醒信息用于指示以下至少一项:
    节点分组级的信息是否存在;
    目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
    目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
    需要接收的信息的类型包括节点分组级的信息;
    需要唤醒的节点分组的编号;
    至少一个节点分组是否需要唤醒。
  51. 根据权利要求46所述的网络侧设备,其中,所述节点级的唤醒信息用于指示以下至少一项:
    节点级的信息是否存在;
    目标节点是否需要唤醒进行节点级的信息的接收;
    目标节点需要唤醒进行节点级的信息的接收;
    需要接收的信息的类型包括节点级的信息;
    需要唤醒的节点的编号;
    至少一个节点是否需要唤醒。
  52. 根据权利要求48所述的网络侧设备,其中,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  53. 根据权利要求49所述的网络侧设备,其中,所述小区级的信息包括 广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  54. 根据权利要求50所述的网络侧设备,其中,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  55. 根据权利要求51所述的网络侧设备,其中,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  56. 根据权利要求52或53或54所述的网络侧设备,其中,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
    其中,所述第一消息用于指示所述节点停止监测PO。
  57. 根据权利要求46所述的网络侧设备,其中,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
  58. 根据权利要求46所述的网络侧设备,其中,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
  59. 一种节点,包括:收发机、存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序,其中,所述处理器执行所述计算机程序时实现如下步骤:
    获取目标信息,所述目标信息包括第一信息和/或第二信息;
    根据所述目标信息获取唤醒信息,其中,根据所述第一信息获取的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,根据所述第二信息获取的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项;
    根据所述唤醒信息的指示进行唤醒或继续睡眠。
  60. 根据权利要求59所述的节点,其中,所述处理器执行所述计算机程序时还实现如下步骤:
    所述根据所述目标信息获取唤醒信息之后,还包括:
    根据所述唤醒信息的指示确定是否需要接收PDSCH。
  61. 根据权利要求60所述的节点,其中,所述处理器执行所述计算机程序时还实现如下步骤:
    所述根据所述唤醒信息的指示确定是否需要接收PDSCH,包括:
    若根据所述目标信息获取的唤醒信息包括所述节点分组级的唤醒信息和所述节点级的唤醒信息中的至少一项,则需要接收P-RNTI加扰的DCI调度的PDSCH;否则不需要接收P-RNTI加扰的DCI调度的PDSCH。
  62. 如权利要求59所述的节点,其中,所述第一信息包括时域资源的信息、频域资源的信息、空域资源的信息、序列信息、比特位信息和监测参数配置的信息中的至少一项;
    所述第二信息包括时域资源的信息、频域资源的信息、空域资源的信息、 序列信息、比特位信息和监测参数配置的信息中的至少一项。
  63. 根据权利要求59所述的节点,其中,所述区域级的唤醒信息用于指示以下至少一项:
    区域级的信息是否存在;
    目标区域下的所有节点是否需要唤醒进行区域级的信息的接收;
    目标区域下的所有节点需要唤醒进行区域级的信息的接收;
    需要接收的信息的类型包括区域级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  64. 根据权利要求59所述的节点,其中,所述小区级的唤醒信息用于指示以下至少一项:
    小区级的信息是否存在;
    目标小区下的所有节点是否需要唤醒进行小区级的信息的接收;
    目标小区下的所有节点需要唤醒进行小区级的信息的接收;
    需要接收的信息的类型包括小区级的信息;
    短消息的类型;
    需要更新的系统消息的类型;
    系统消息是否需要更新。
  65. 根据权利要求59所述的节点,其中,所述节点分组级的唤醒信息用于指示以下至少一项:
    节点分组级的信息是否存在;
    目标节点分组下的所有节点是否需要唤醒进行节点分组级的信息的接收;
    目标节点分组下的所有节点需要唤醒进行节点分组级的信息的接收;
    需要接收的信息的类型包括节点分组级的信息;
    需要唤醒的节点分组的编号;
    至少一个节点分组是否需要唤醒。
  66. 根据权利要求59所述的节点,其中,所述节点级的唤醒信息用于指示以下至少一项:
    节点级的信息是否存在;
    目标节点是否需要唤醒进行节点级的信息的接收;
    目标节点需要唤醒进行节点级的信息的接收;
    需要接收的信息的类型包括节点级的信息;
    需要唤醒的节点的编号;
    至少一个节点是否需要唤醒。
  67. 根据权利要求63所述的节点,其中,所述区域级的信息包括广播消息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  68. 根据权利要求64所述的节点,其中,所述小区级的信息包括广播消 息、短消息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  69. 根据权利要求65所述的节点,其中,所述节点分组级的信息包括广播消息、短消息、寻呼消息、其他需要P-RNTI加扰的DCI调度的PDSCH的信息和其他不需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  70. 根据权利要求66所述的节点,其中,所述节点级的信息包括寻呼消息和其他需要P-RNTI加扰的DCI调度的PDSCH的信息中的至少一项。
  71. 根据权利要求67或68或69所述的节点,其中,所述短消息包括系统消息更新、预警消息和第一消息中的至少一项;
    其中,所述第一消息用于指示所述节点停止监测PO。
  72. 根据权利要求62所述的节点,其中,所述目标信息中的所述第一信息和所述第二信息交替排列或顺序排列。
  73. 根据权利要求72所述的节点,其中,所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的时域资源和所述第二信息指示的时域资源交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为时域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部时域资源在时间上均排在所述第二信息指示的时域资源之前或之后;
    所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的频域资源和所述第二信息指示的频域资源交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为频域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部频域资源的频率均大于或小于所述第二信息指示的频域资源;
    所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的空域资源和所述第二信息指示的空域资源从编号上交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为空域资源的信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部空域资源的编号均在所述第二信息指示的空域资源的编号之前或之后;
    所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息交替排列时,所述第一信息指示的比特位和所述第二信息指示的比特位交替排列;
    所述目标信息中的所述第一信息和所述第二信息均为比特位信息,且所述第一信息和所述第二信息顺序排列时,所述第一信息指示的全部比特位均在所述第二信息指示的比特位之前或之后。
  74. 根据权利要求62所述的节点,其中,所述监测参数包括CORESET资源、搜索空间资源、PDCCH候选资源、CORESET资源的符号和CORESET 资源的资源块中的至少一项。
  75. 一种网络侧设备,包括:收发机、存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序,其中,所述处理器执行所述计算机程序时实现如下步骤:
    配置目标信息,所述目标信息包括第一信息和/或第二信息;
    通过所述目标信息发送唤醒信息,其中,通过所述第一信息发送的唤醒信息包括区域级的唤醒信息、小区级的唤醒信息和节点分组级的唤醒信息中的至少一项,通过所述第二信息发送的唤醒信息包括节点分组级的唤醒信息和节点级的唤醒信息中的至少一项。
  76. 根据权利要求75所述的网络侧设备,其中,所述目标信息是基于高层信令配置、基于RRC信令配置、基于动态信令配置、基于预先规定的方式配置或基于广播配置。
  77. 一种计算机可读存储介质,其上存储有计算机程序,其中,所述计算机程序被处理器执行时实现如权利要求1至16中任一项所述的信号的接收方法中的步骤,或者所述计算机程序被处理器执行时实现如权利要求17至29中任一项所述的信号的发送方法中的步骤。
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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109936868A (zh) * 2017-12-15 2019-06-25 中国移动通信有限公司研究院 一种寻呼方法、终端及基站
CN110475320A (zh) * 2018-05-11 2019-11-19 华为技术有限公司 传输寻呼消息的方法和装置
CN110536386A (zh) * 2019-08-09 2019-12-03 中兴通讯股份有限公司 唤醒信号的传输方法、装置和存储介质
WO2020089515A1 (en) * 2018-11-01 2020-05-07 Nokia Technologies Oy Method for grouping ues for wake-up signal assignment based on broadcast parameters

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11297674B2 (en) * 2018-02-14 2022-04-05 Samsung Electronics Co., Ltd. Method and apparatus for power savings at a user equipment
CN110536379A (zh) * 2018-08-10 2019-12-03 中兴通讯股份有限公司 唤醒信号发送方法、检测方法、相关装置及存储介质
CN110933752B (zh) * 2018-09-20 2022-05-06 华为技术有限公司 通信方法与设备
CN110972236B (zh) * 2018-09-27 2022-04-08 大唐移动通信设备有限公司 一种节能信号传输方法、终端和网络侧设备

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109936868A (zh) * 2017-12-15 2019-06-25 中国移动通信有限公司研究院 一种寻呼方法、终端及基站
CN110475320A (zh) * 2018-05-11 2019-11-19 华为技术有限公司 传输寻呼消息的方法和装置
WO2020089515A1 (en) * 2018-11-01 2020-05-07 Nokia Technologies Oy Method for grouping ues for wake-up signal assignment based on broadcast parameters
CN110536386A (zh) * 2019-08-09 2019-12-03 中兴通讯股份有限公司 唤醒信号的传输方法、装置和存储介质

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP4185020A4 *

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