WO2022198570A1 - 信号处理方法、设备及存储介质 - Google Patents

信号处理方法、设备及存储介质 Download PDF

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Publication number
WO2022198570A1
WO2022198570A1 PCT/CN2021/083018 CN2021083018W WO2022198570A1 WO 2022198570 A1 WO2022198570 A1 WO 2022198570A1 CN 2021083018 W CN2021083018 W CN 2021083018W WO 2022198570 A1 WO2022198570 A1 WO 2022198570A1
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WIPO (PCT)
Prior art keywords
time interval
terminal
pdsch
time
pdcch
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Application number
PCT/CN2021/083018
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English (en)
French (fr)
Inventor
黄钧蔚
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深圳传音控股股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 深圳传音控股股份有限公司 filed Critical 深圳传音控股股份有限公司
Priority to CN202180093860.2A priority Critical patent/CN116897584A/zh
Priority to PCT/CN2021/083018 priority patent/WO2022198570A1/zh
Publication of WO2022198570A1 publication Critical patent/WO2022198570A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling

Definitions

  • the embodiments of the present application relate to communication technologies, and in particular, to a signal processing method, device, and storage medium.
  • terminal equipment can switch between various working states to save power.
  • the terminal device wakes up at the paging time (Paging Occasion, PO) and monitors the Physical Downlink Control Channel (PDCCH) to see if there is a search corresponding to the terminal device. Paging Indication (PI). If so, further parse (Decode) the Physical Downlink Share Channel (PDCSH) to obtain the paging message (Paging Message).
  • Paging Occasion PO
  • Paging Indication PI
  • Decode the Physical Downlink Share Channel
  • PDCSH Physical Downlink Share Channel
  • the present application provides a signal processing method, device and storage medium to solve the above problem of high power consumption of terminal equipment.
  • an embodiment of the present application provides a signal processing method, which is applied to a network device, and the method includes:
  • a wake-up signal is sent, where the wake-up signal includes indication information for indicating the time interval.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the method further includes:
  • the PDSCH is transmitted after the time interval is delayed.
  • an embodiment of the present application provides a signal processing method, which is applied to a terminal device, and the method includes:
  • the wake-up signal includes indication information, and the indication information is used to indicate the time interval between monitoring the PDCCH and parsing the PDSCH;
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • parsing the PDSCH after monitoring the PDCCH according to the time interval includes:
  • the PDSCH is parsed with a delay of the time interval after monitoring the PDCCH.
  • an embodiment of the present application provides a signal processing method, which is applied to a terminal device, and the method includes:
  • the wake-up signal is monitored based on the information of the terminal group, and the wake-up signal is used to indicate the time interval between monitoring the PDCCH and parsing the PDSCH by the terminal group.
  • the obtaining terminal group information includes at least one of the following:
  • the terminal group to which it belongs is determined or calculated according to the type of the terminal device.
  • monitoring the wake-up signal based on the information of the terminal group including:
  • the wake-up signal is monitored according to the time-frequency resource information.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or,
  • the second numerical value indicates that the time interval is a preset time interval.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the method further includes:
  • parsing the PDSCH after monitoring the PDCCH according to the time interval includes:
  • the PDSCH is parsed with a delay of the time interval after monitoring the PDCCH.
  • an embodiment of the present application provides a signal processing method, which is applied to a network device, and the method includes:
  • a wake-up signal is sent based on the information of the terminal group, where the wake-up signal includes indication information for indicating the time interval.
  • the information for determining the terminal group includes at least one of the following:
  • the terminal group to which the terminal device belongs is determined or calculated according to the type of the terminal device.
  • sending a wake-up signal based on the information of the terminal group includes:
  • the wake-up signal is sent according to the time-frequency resource information.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or,
  • the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the method further includes:
  • the PDSCH is transmitted after the time interval is delayed.
  • an embodiment of the present application provides a signal processing apparatus, which is applied to a network device, and the signal processing apparatus includes:
  • a determination module used to determine the time interval between the terminal equipment monitoring the PDCCH and parsing the PDSCH
  • a sending module configured to send a wake-up signal, where the wake-up signal includes indication information for indicating the time interval.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the sending module is also used for:
  • the PDSCH is transmitted after the time interval is delayed.
  • an embodiment of the present application provides a signal processing apparatus, which is applied to a terminal device, and the signal processing apparatus includes:
  • a receiving module configured to receive a wake-up signal, where the wake-up signal includes indication information, and the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • a processing module configured to parse the PDSCH after monitoring the PDCCH according to the time interval.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • processing module is specifically used for:
  • the PDSCH is parsed with a delay of the time interval after monitoring the PDCCH.
  • an embodiment of the present application provides a signal processing apparatus, which is applied to a terminal device, and the signal processing apparatus includes:
  • the acquisition module is used to acquire the information of the terminal group
  • a monitoring module configured to monitor a wake-up signal based on the information of the terminal group, where the wake-up signal is used to instruct the terminal group to monitor the time interval between PDCCH and PDSCH parsing.
  • the obtaining module is specifically configured to execute at least one of the following:
  • the terminal group to which it belongs is determined or calculated according to the type of the terminal device.
  • the monitoring module is specifically used for:
  • the wake-up signal is monitored according to the time-frequency resource information.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or,
  • the second numerical value indicates that the time interval is a preset time interval.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the monitoring module is also used for:
  • the monitoring module parses the PDSCH after monitoring the PDCCH according to the time interval
  • the monitoring module is specifically used for:
  • the PDSCH is parsed with a delay of the time interval after monitoring the PDCCH.
  • an embodiment of the present application provides a signal processing apparatus, which is applied to a network device, and the signal processing apparatus includes:
  • an information determination module configured to determine the information of the terminal group and the time interval between monitoring the PDCCH and parsing the PDSCH by the terminal group;
  • a signal sending module configured to send a wake-up signal based on information of the terminal group, where the wake-up signal includes indication information for indicating the time interval.
  • the information determining module determines the information of the terminal group, it is specifically configured to perform at least one of the following:
  • the terminal group to which the terminal device belongs is determined or calculated according to the type of the terminal device.
  • the signal sending module is specifically used for:
  • the wake-up signal is sent according to the time-frequency resource information.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or,
  • the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the signal sending module is also used for:
  • the PDSCH is transmitted after the time interval is delayed.
  • an embodiment of the present application provides a communication device, including a processor and a memory;
  • the memory stores computer-executable instructions
  • the computer-executable instructions when executed by the processor, implement the method of any one of the first to fourth aspects.
  • the communication device of the ninth aspect may be a terminal device or a network device, or may be a chip of a terminal device or a chip of a network device.
  • embodiments of the present application provide a computer-readable storage medium, where computer-executable instructions are stored in the computer-readable storage medium, and when the computer-executable instructions are executed by a processor, are used to implement the first aspect to the sixth The method of any one of the four aspects.
  • an embodiment of the present application provides a program product, the program product includes a computer program, the computer program is stored in a readable storage medium, a processor can read the computer program from the readable storage medium, and the processor executes the computer program The method of any one of the first to fourth aspects is implemented.
  • the signal processing method, device, and storage medium provided by the embodiments of the present application by determining the time interval between the terminal device monitoring the PDCCH and parsing the PDSCH, and sending a wake-up signal, where the wake-up signal includes indication information for indicating the time interval, can be Enable the terminal device to start parsing the PDSCH at a suitable time.
  • the time interval is 0, it can ensure the continuity of the terminal device in the time of receiving information, and improve the speed of paging the terminal device.
  • the time interval is not 0, it can delay the parsing of the PDSCH. , save the power of the terminal device and prolong the battery life, so that the time for the terminal device to monitor the PDCCH and parse the PDSCH can be flexibly configured to meet the application requirements in different scenarios.
  • FIG. 1 is a schematic diagram of a hardware structure of a mobile terminal implementing various embodiments of the present application
  • FIG. 2 is an architecture diagram of a communication network system provided by an embodiment of the present application.
  • FIG. 3 is a schematic diagram of an application scenario provided by an embodiment of the present application.
  • FIG. 4 is a schematic flowchart of a signal processing method provided by an embodiment of the present application.
  • FIG. 5 is a schematic diagram of a time interval provided by an embodiment of the present application.
  • FIG. 6 is a schematic diagram of another time interval provided by an embodiment of the present application.
  • FIG. 7 is a schematic flowchart of another signal processing method provided by an embodiment of the present application.
  • FIG. 8 is a schematic flowchart of another signal processing method provided by an embodiment of the present application.
  • FIG. 9 is a schematic flowchart of still another signal processing method provided by an embodiment of the present application.
  • FIG. 10 is a schematic structural diagram of a signal processing apparatus provided by an embodiment of the present application.
  • FIG. 11 is a schematic structural diagram of another signal processing apparatus provided by an embodiment of the present application.
  • FIG. 12 is a schematic structural diagram of another signal processing apparatus provided by an embodiment of the present application.
  • FIG. 13 is a schematic structural diagram of still another signal processing apparatus provided by an embodiment of the present application.
  • FIG. 14 is a schematic structural diagram of a communication device according to an embodiment of the present application.
  • first, second, third, etc. may be used herein to describe various information, such information should not be limited by these terms. These terms are only used to distinguish the same type of information from each other.
  • first information may also be referred to as second information, and similarly, second information may also be referred to as first information, without departing from the scope of this document.
  • the word “if” as used herein can be interpreted as “at the time of” or “when” or “in response to determining”, depending on the context.
  • the singular forms "a,” “an,” and “the” are intended to include the plural forms as well, unless the context dictates otherwise.
  • A, B, C means “any of the following: A; B; C; A and B; A and C; B and C; A and B and C", for example, " A, B or C” or "A, B and/or C” means "any of the following: A; B; C; A and B; A and C; B and C; A and B and C". Exceptions to this definition arise only when combinations of elements, functions, steps, or operations are inherently mutually exclusive in some way.
  • step codes such as 201 and 202 are used for the purpose of expressing the corresponding content more clearly and briefly, and do not constitute a substantial limitation on the sequence. Those skilled in the art may 202 will be executed first and then 201, etc., but these should all fall within the protection scope of this application.
  • the apparatus may be implemented in various forms.
  • the devices described in this application may include devices such as cell phones, tablets, laptops, PDAs, Personal Digital Assistants (PDAs), Portable Media Players (PMPs), navigation devices, Mobile terminals such as wearable devices, smart bracelets, and pedometers, as well as stationary terminals such as digital TVs and desktop computers.
  • PDAs Personal Digital Assistants
  • PMPs Portable Media Players
  • Mobile terminals such as wearable devices, smart bracelets, and pedometers
  • stationary terminals such as digital TVs and desktop computers.
  • a mobile terminal will be used as an example, and those skilled in the art will understand that, in addition to elements specially used for mobile purposes, the configurations according to the embodiments of the present application can also be applied to stationary type terminals.
  • FIG. 1 is a schematic diagram of the hardware structure of a mobile terminal implementing various embodiments of the present application.
  • the mobile terminal 100 may include: an RF (Radio Frequency, radio frequency) unit 101, a WiFi module 102, an audio output unit 103, A/V (audio/video) input unit 104, sensor 105, display unit 106, user input unit 107, interface unit 108, memory 109, processor 110, and power supply 111 and other components.
  • RF Radio Frequency, radio frequency
  • the radio frequency unit 101 can be used for receiving and sending signals during sending and receiving of information or during a call.
  • the radio frequency unit 101 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
  • the radio frequency unit 101 can also communicate with the network and other devices through wireless communication.
  • the above-mentioned wireless communication can use any communication standard or protocol, including but not limited to GSM (Global System of Mobile communication, Global System for Mobile Communication), GPRS (General Packet Radio Service, General Packet Radio Service), CDMA2000 (Code Division Multiple Access 2000 , Code Division Multiple Access 2000), WCDMA (Wideband Code Division Multiple Access, Wideband Code Division Multiple Access), TD-SCDMA (Time Division-Synchronous Code Division Multiple Access, Time Division Synchronous Code Division Multiple Access), FDD-LTE (Frequency Division Duplexing-Long Term Evolution, frequency division duplexing long term evolution) and TDD-LTE (Time Division Duplexing-Long Term Evolution, time division duplexing long term evolution) and so on.
  • GSM Global System of Mobile communication, Global System for Mobile Communication
  • GPRS General Packet Radio Service
  • CDMA2000 Code Division Multiple Access 2000
  • Code Division Multiple Access 2000 Code Division Multiple Access 2000
  • WCDMA Wideband Code Division Multiple Access
  • TD-SCDMA Time Division-S
  • WiFi is a short-distance wireless transmission technology
  • the mobile terminal can help users to send and receive emails, browse web pages, access streaming media, etc. through the WiFi module 102, which provides users with wireless broadband Internet access.
  • FIG. 1 shows the WiFi module 102, it can be understood that it is not a necessary component of the mobile terminal, and can be completely omitted as required within the scope of not changing the essence of the invention.
  • the audio output unit 103 can store the data received by the radio frequency unit 101 or the WiFi module 102 or stored in the memory 109.
  • the audio data is converted into audio signal and output as sound.
  • the audio output unit 103 may also provide audio output related to a specific function performed by the mobile terminal 100 (eg, call signal reception sound, message reception sound, etc.).
  • the audio output unit 103 may include a speaker, a buzzer, and the like.
  • the A/V input unit 104 is used to receive audio or video signals.
  • the A/V input unit 104 may include a graphics processor (Graphics Processing Unit, GPU) 1041 and a microphone 1042, and the graphics processor 1041 responds to still pictures or images obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode.
  • the image data of the video is processed.
  • the processed image frames may be displayed on the display unit 106 .
  • the image frames processed by the graphics processor 1041 may be stored in the memory 109 (or other storage medium) or transmitted via the radio frequency unit 101 or the WiFi module 102 .
  • the microphone 1042 can receive sound (audio data) via the microphone 1042 in a telephone call mode, a recording mode, a voice recognition mode, etc.
  • the processed audio (voice) data can be converted into a format that can be transmitted to a mobile communication base station via the radio frequency unit 101 for output in the case of a telephone call mode.
  • the microphone 1042 may implement various types of noise cancellation (or suppression) algorithms to remove (or suppress) noise or interference generated in the process of receiving and transmitting audio signals.
  • the mobile terminal 100 also includes at least one sensor 105, such as a light sensor, a motion sensor, and other sensors.
  • the light sensor includes an ambient light sensor and a proximity sensor.
  • the ambient light sensor can adjust the brightness of the display panel 1061 according to the brightness of the ambient light, and the proximity sensor can turn off the display when the mobile terminal 100 is moved to the ear. Panel 1061 and/or backlight.
  • the accelerometer sensor can detect the magnitude of acceleration in all directions (usually three axes), and can detect the magnitude and direction of gravity when it is stationary.
  • the display unit 106 is used to display information input by the user or information provided to the user.
  • the display unit 106 may include a display panel 1061, and the display panel 1061 may be configured in the form of a Liquid Crystal Display (LCD), an Organic Light-Emitting Diode (OLED), or the like.
  • LCD Liquid Crystal Display
  • OLED Organic Light-Emitting Diode
  • the user input unit 107 may be used to receive input numerical or character information, and generate key signal input related to user settings and function control of the mobile terminal.
  • the user input unit 107 may include a touch panel 1071 and other input devices 1072 .
  • the touch panel 1071 also referred to as a touch screen, can collect the user's touch operations on or near it (such as the user's finger, stylus, etc., any suitable object or attachment on or near the touch panel 1071). operation), and drive the corresponding connection device according to the preset program.
  • the touch panel 1071 may include two parts, a touch detection device and a touch controller.
  • the touch detection device detects the touch orientation of the user, detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device and converts it into contact coordinates , and then send it to the processor 110, and can receive the command sent by the processor 110 and execute it.
  • the touch panel 1071 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the user input unit 107 may also include other input devices 1072 .
  • other input devices 1072 may include, but are not limited to, one or more of physical keyboards, function keys (such as volume control keys, switch keys, etc.), trackballs, mice, joysticks, etc., which are not specifically described here. limited.
  • the touch panel 1071 may cover the display panel 1061.
  • the touch panel 1071 detects a touch operation on or near it, it transmits it to the processor 110 to determine the type of the touch event, and then the processor 110 determines the type of the touch event according to the touch event.
  • the type provides corresponding visual output on the display panel 1061.
  • the touch panel 1071 and the display panel 1061 are used as two independent components to realize the input and output functions of the mobile terminal, but in some embodiments, the touch panel 1071 and the display panel 1061 may be integrated
  • the input and output functions of the mobile terminal are implemented, which is not specifically limited here.
  • the interface unit 108 serves as an interface through which at least one external device can be connected to the mobile terminal 100 .
  • external devices may include wired or wireless headset ports, external power (or battery charger) ports, wired or wireless data ports, memory card ports, ports for connecting devices with identification modules, audio input/output (I/O) ports, video I/O ports, headphone ports, and more.
  • the interface unit 108 may be used to receive input (eg, data information, power, etc.) from an external device and transmit the received input to one or more elements within the mobile terminal 100 or may be used between the mobile terminal 100 and the external Transfer data between devices.
  • the memory 109 may be used to store software programs as well as various data.
  • the memory 109 may mainly include a storage program area and a storage data area.
  • the storage program area may store an operating system, an application program required for at least one function (such as a sound playback function, an image playback function, etc.), etc.;
  • the storage data area may Stores data (such as audio data, phonebook, etc.) created according to the use of the mobile phone, and the like.
  • memory 109 may include high-speed random access memory, and may also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid-state storage device.
  • the processor 110 is the control center of the mobile terminal, uses various interfaces and lines to connect various parts of the entire mobile terminal, runs or executes the software programs and/or modules stored in the memory 109, and calls the data stored in the memory 109. , perform various functions of the mobile terminal and process data, so as to monitor the mobile terminal as a whole.
  • the processor 110 may include one or more processing units; preferably, the processor 110 may integrate an application processor and a modem processor.
  • the demodulation processor mainly handles wireless communication. It can be understood that, the above-mentioned modulation and demodulation processor may not be integrated into the processor 110 .
  • the mobile terminal 100 may also include a power supply 111 (such as a battery) for supplying power to various components.
  • a power supply 111 (such as a battery) for supplying power to various components.
  • the power supply 111 may be logically connected to the processor 110 through a power management system, so as to manage charging, discharging, and power consumption management through the power management system and other functions.
  • the mobile terminal 100 may also include a Bluetooth module, etc., which will not be described herein again.
  • FIG. 2 is an architecture diagram of a communication network system provided by an embodiment of the application.
  • the communication network system is an LTE system of universal mobile communication technology.
  • 201 E-UTRAN (Evolved UMTS Terrestrial Radio Access Network, Evolved UMTS Terrestrial Radio Access Network) 202, EPC (Evolved Packet Core, Evolved Packet Core) 203 and the operator's IP service 204.
  • E-UTRAN Evolved UMTS Terrestrial Radio Access Network
  • EPC Evolved Packet Core, Evolved Packet Core
  • the UE 201 may be the above-mentioned terminal 100, which will not be repeated here.
  • E-UTRAN 202 includes eNodeB 2021 and other eNodeB 2022 and the like.
  • the eNodeB 2021 can be connected with other eNodeB 2022 through a backhaul (eg X2 interface), the eNodeB 2021 is connected to the EPC 203 , and the eNodeB 2021 can provide access from the UE 201 to the EPC 203 .
  • a backhaul eg X2 interface
  • EPC 203 may include MME (Mobility Management Entity, Mobility Management Entity) 2031, HSS (Home Subscriber Server, Home Subscriber Server) 2032, other MME 2033, SGW (Serving Gate Way, Serving Gateway) 2034, PGW (PDN Gate Way, packet data network gateway) 2035 and PCRF (Policy and Charging Rules Function, policy and charging functional entity) 2036 and so on.
  • MME 2031 is a control node that handles signaling between UE 201 and EPC 203, and provides bearer and connection management.
  • the HSS2032 is used to provide some registers to manage functions such as the home location register (not shown in the figure), and to store some user-specific information about service characteristics, data rates, etc.
  • PCRF2036 is the policy and charging control policy decision point of service data flow and IP bearer resources, it is the policy and charging execution function A unit (not shown) selects and provides available policy and charging control decisions.
  • the IP service 204 may include the Internet, an intranet, an IMS (IP Multimedia Subsystem, IP Multimedia Subsystem) or other IP services.
  • IMS IP Multimedia Subsystem, IP Multimedia Subsystem
  • FIG. 3 is a schematic diagram of an application scenario provided by an embodiment of the present application.
  • wireless communication can be performed between the network device 301 and the terminal device 302 to realize data transmission.
  • the terminal device 302 may be the mobile terminal in FIG. 1 or the UE in FIG. 2 ;
  • the network device 301 may be other devices other than the UE in FIG. 2 , such as a base station eNodeB.
  • NR refers to a new generation of wireless access network technology
  • future evolution networks such as the 5th Generation Mobile Communication (5G) system
  • WIFI Wireless Fidelity
  • LTE Long Term Evolution
  • the network architecture and service scenarios described in the embodiments of the present application are for the purpose of illustrating the technical solutions of the embodiments of the present application more clearly, and do not constitute a limitation on the technical solutions provided by the embodiments of the present application.
  • the evolution of the architecture and the emergence of new business scenarios, the technical solutions provided in the embodiments of the present application are also applicable to similar technical problems.
  • the terminal device 302 can switch between various working states.
  • the network device 301 may initiate paging to the terminal device 302 .
  • the terminal device 302 monitors the PDCCH, and judges whether there is a paging indication for itself through the PDCCH: if so, it further obtains the paging information through the PDCSH, and finally confirms whether the content of the paging information is identified with the terminal. (UE identity) match, if match, respond to the paging message, if not, ignore or discard the paging message.
  • the network device 301 may transmit the PDCCH and PDSCH in the same time slot (slot), and after the terminal device 302 monitors the PDCCH, additional processing time is required to determine the content of the PDCCH transmission, which may include a paging indication, which The paging indication is used to indicate whether there is paging information for the terminal device 302 on the PDSCH. Therefore, before determining the content of the PDCCH transmission, the terminal needs to turn on the parsing circuit of the PDSCH to ensure that the PDSCH is parsed normally, resulting in power consumption.
  • the network device 301 may transmit the PDCCH and PDSCH in different time slots, respectively. After receiving the PDCCH, the terminal device 302 has enough time to determine whether there is paging information for itself through the PDCCH, and the terminal device 302 does not need to analyze the PDSCH in the time slot that monitors the PDCCH, thus saving power.
  • the network device 301 can send a wake-up signal to the terminal device 302, and the wake-up signal can instruct the terminal device 302 to monitor the PDCCH and parse the PDSCH.
  • the terminal device 302 can turn on the parsing circuit of the PDSCH at an appropriate time according to the time interval indicated by the wake-up signal.
  • the terminal device 302 can parse the PDSCH after a certain period of time, which effectively saves the power of the terminal device 302 .
  • the terminal device 302 can start parsing the PDSCH earlier to improve processing efficiency.
  • FIG. 4 is a schematic flowchart of a signal processing method provided by an embodiment of the present application.
  • the execution body of the method in this embodiment may be a network device. As shown in Figure 4, the method may include:
  • Step 401 Determine the time interval between the terminal equipment monitoring the PDCCH and parsing the PDSCH.
  • the terminal equipment monitors the PDCCH, which may mean that the terminal equipment receives the PDCCH, for example, the terminal equipment receives information carried on the PDCCH, such as DCI.
  • the terminal equipment parses the PDSCH, which may refer to the terminal equipment receiving the PDSCH, for example, the terminal equipment parses data carried on the PDSCH, for example, paging information.
  • the time interval between monitoring the PDCCH and parsing the PDSCH may refer to the time interval between any moment of monitoring the PDCCH and any moment of parsing the PDSCH.
  • the time interval between monitoring the PDCCH and analyzing the PDSCH may include at least one of the following: the time interval between the time when the monitoring PDCCH ends and the time when the PDSCH is started to be analyzed; time interval between.
  • the time interval is the time interval between the time when the monitoring of the PDCCH ends and the time when the parsing of the PDSCH is started.
  • the terminal device may monitor the PDCCH first and then parse the PDSCH or not parse the PDSCH.
  • FIG. 5 is a schematic diagram of a time interval provided by an embodiment of the present application. Assuming that the time interval is t, the terminal device starts to monitor the PDCCH at time T 0 , and ends monitoring the PDCCH at time T 1 , then the terminal device needs to start parsing the PDSCH after the time interval t after time T 1 , that is, at T 1 Start parsing the PDSCH at time +t to ensure that the PDSCH is correctly parsed.
  • the time interval is the time interval between the time when PDCCH starts to be monitored and the time when PDSCH is started to be parsed. In this case, monitoring the PDCCH and parsing the PDSCH may overlap in time.
  • FIG. 6 is another schematic diagram of a time interval provided by an embodiment of the present application. Also assuming that the time interval is t, the terminal device starts to monitor the PDCCH at time T 0 , and ends monitoring the PDCCH at time T 1 , then the terminal device needs to start parsing the PDSCH after the time interval t after time T 0 , that is, at time T Start parsing the PDSCH at time 0 +t. When the time interval t is 0, the terminal device can monitor the PDCCH and parse the PDSCH at the same time, thereby improving the receiving efficiency.
  • the time interval includes the time interval between the time when the monitoring of the PDCCH ends and the time when it starts to analyze the PDSCH, and also includes the time interval between the time when the monitoring of the PDCCH starts and the time when the PDSCH begins to be analyzed.
  • the terminal device may Check the two time intervals and start parsing the PDSCH at the correct time. By indicating multiple time intervals, the terminal device can more accurately know when to start parsing the PDSCH, thereby improving the accuracy of the terminal device receiving the PDSCH.
  • the time interval may also be other types of time intervals, as long as the terminal device can know when to start parsing the PDSCH.
  • the time interval may be the time between the end of monitoring the PDCCH and the end of the monitoring of the PDSCH, or the time from the start of the monitoring of the PDSCH to the end of the monitoring of the PDSCH, and so on.
  • the terminal device may calculate the time to start parsing the PDSCH according to the time interval.
  • Step 402 Send a wake-up signal, where the wake-up signal includes indication information for indicating the time interval.
  • the wake-up signal can be sent to the terminal device, so that the terminal device can determine the time interval for monitoring the PDCCH and parsing the PDSCH according to the wake-up signal, and turn on the parsing circuit of the PDSCH at an appropriate time to implement the parsing of the PDSCH.
  • the wake-up signal may be a wake-up signal (Wake Up Signal, WUS), also known as a paging advance indication (Paging Early Indication, PEI), an early paging indication (Early Paging Indication, EPI), optionally, also It is any other type of signal with wake-up function.
  • WUS Wake Up Signal
  • PEI paging Advance indication
  • EPI Early paging indication
  • WUS Wake Up Signal
  • the wake-up signal may also be used to indicate whether the terminal device needs to wake up and monitor the PDCCH at the PO, thereby reducing the power consumption of the terminal device for monitoring the PDCCH at the PO.
  • monitoring the wake-up signal has lower power consumption than monitoring the PDCCH, and setting the indication information for indicating the time interval in the wake-up signal is compared to setting the indication information for indicating the time interval in other signals, The power of the terminal device can be further saved, and the time configuration can be more flexible.
  • the PDCCH may be used to indicate whether there is paging information sent to the terminal device. If the terminal equipment confirms that the PDCCH indicates that there is paging information sent to the terminal equipment, it parses the PDSCH according to the time interval to obtain paging information; if the terminal equipment confirms that the PDCCH indicates that the paging information is not sent to the terminal equipment For the paging information of the terminal device, after the time interval has elapsed, the PDSCH may not be parsed, so as to further realize power saving.
  • the wake-up signal includes indication information for indicating the time interval, so that the terminal device can be activated at a suitable time.
  • Time to start parsing PDSCH when the time interval is 0, it can ensure the continuity of terminal equipment in receiving information time, improve the speed of paging terminal equipment, when the time interval is not 0, can delay parsing PDSCH, saving the power of terminal equipment , prolong the battery life, so as to realize the flexible configuration of the time for the terminal device to monitor the PDCCH and parse the PDSCH to meet the application requirements in different scenarios.
  • the time interval may be at least one of the following: 0 or a time greater than 0; N time units, where N is an integer greater than or equal to 0.
  • the time interval may be represented by a time period, which may be 0 or a time greater than 0, for example, the time interval may be 1 second.
  • the time interval can be flexibly represented by a time period greater than or equal to 0.
  • the time interval may be represented by N time units, for example, may be 2 time units.
  • the time unit may be a time unit of any duration.
  • the time unit may be a symbol (symbol) or a time slot, and the symbol may be an orthogonal frequency division multiplexing (Orthogonal Frequency Division Multiplexing, OFDM) symbol.
  • OFDM Orthogonal Frequency Division Multiplexing
  • the time interval can also be represented by N time units and a time period greater than or equal to 0 at the same time, so that the terminal device can more accurately determine the time interval and thus receive the PDSCH more accurately.
  • the indication information may be the first numerical value or the second numerical value.
  • the corresponding time interval can be determined by the first value and the second value.
  • the first value may indicate that the time interval is 0, and/or the second value may indicate that the time interval is a preset time interval.
  • the first value and the second value may be set according to actual needs, for example, may be 0 and 1, respectively.
  • Table 1 shows an example of optional indication information.
  • Table 1 An example of optional indication information
  • the first value and the second value occupy 1 bit.
  • 1 bit can indicate whether the terminal device needs to delay receiving the PDSCH after the end of monitoring the PDCCH. For example, 0 means no delay is required, and 1 means delay by a preset time interval.
  • the time interval represents the time interval between the time when the monitoring of the PDCCH is started and the time when the PDSCH is started to be analyzed
  • one bit can indicate whether the terminal device needs to receive the PDCCH and the PDSCH at the same time. For example, 0 indicates that simultaneous reception is required, and 1 indicates that the PDSCH starts to be received after a preset time interval after the PDCCH is started to be received.
  • the preset time interval may be a fixed value, such as the time length of a protocol.
  • the preset time interval may be configured by radio resource control (Radio Resource Control, RRC) signaling.
  • RRC Radio Resource Control
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the at least one optional time interval may include any one or more of 0, 1 time unit, 2 time units, ..., n time units, where n is a positive integer.
  • the at least one optional time interval may include the following four items: 0, 1 time unit, 2 time units, and 3 time units.
  • the network device may select one or more of the above four time intervals.
  • the time interval and the indication information may be in a one-to-one correspondence, and after the selected time interval is determined, the corresponding indication information may be determined.
  • the time interval may be indicated in multiple bits, eg, in two bits.
  • Table 2 shows another optional indication information example.
  • time unit 10 2 time units 11 3 time units
  • the four indication information is in one-to-one correspondence with the four time intervals.
  • the network device needs to determine the time interval corresponding to the terminal device, it can select from 4 time intervals in the table. Assuming that the final selected time interval is 2 time units, the network device can send the corresponding indication information to the terminal device 10 , so that the terminal device can determine that the corresponding time interval is 2 time units by analyzing 10.
  • the terminal device determines that the corresponding time interval is 2 time units through analysis 10, it can pass the time after the monitoring of the PDCCH ends. 2 time units to start parsing the PDSCH.
  • the terminal device determines that the corresponding time interval is 2 time units through analysis 10, it can 2 time units to start parsing the PDSCH.
  • the delay time can be configured for the terminal device more flexibly to meet application requirements in different scenarios.
  • the indication information includes at least one indication bit, and each of the indication bits corresponds to at least one of the time intervals.
  • the indication bit is used to indicate whether to parse the PDSCH after delaying the corresponding time interval.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the third numerical value and the fourth numerical value can be set according to actual needs, for example, they can be 1 and 0 respectively.
  • the exact time point to start parsing the PDSCH can be determined.
  • Table 3 shows yet another optional indication information example.
  • the indication information includes 3 indication bits, and each indication bit corresponds to a time interval.
  • the time interval corresponding to the first indicator bit is 0, the time interval corresponding to the second indicator bit is 1 time unit, and the time interval corresponding to the third indicator bit is for 2 time units.
  • an indicator bit When an indicator bit is 1, it means that the PDSCH is parsed after a delay corresponding to a time interval, and when an indicator bit is 0, it means that the PDSCH is not parsed after a delay corresponding to a time interval.
  • the time interval represents the time interval between the time when the monitoring of the PDCCH ends and the time when the analysis of the PDSCH starts
  • the indicator bit is 001
  • the first indicator bit and the second indicator bit are both.
  • the third indicator bit is 1, indicating that the PDSCH is parsed when the interval time is 2 time units, that is, when monitoring the PDCCH ends And parse the PDSCH after 2 time units.
  • the indicator bit is 011
  • the first indicator bit is 0, indicating that the PDSCH is not parsed when the interval time is 0, and the second indicator bit and the third indicator bit are both 1, indicating that the interval time is 1 time unit
  • the PDSCH is parsed both at the time of monitoring the PDCCH and when it is 2 time units, that is, the PDSCH is parsed after the monitoring of the PDCCH ends and 1 time unit has elapsed, and the PDSCH needs to be parsed after the monitoring of the PDCCH ends and 2 time units have elapsed.
  • the time interval represents the time interval between the moment when the monitoring of the PDCCH is started and the moment when the analysis of the PDSCH is started
  • 001 may indicate that the analysis of the PDSCH is started after 2 time units after the monitoring of the PDCCH is started, and 011 It can be represented that the PDSCH needs to be parsed when 1 time unit elapses after starting to monitor the PDCCH, and the PDSCH needs to be parsed when 2 time units elapse after starting to monitor the PDCCH.
  • the terminal device can also determine the operation to be performed in the corresponding time interval according to the value of the indication bit.
  • each indicator bit corresponds to a time interval.
  • each of the indication bits can also be set to correspond to multiple time intervals. For example, it is often necessary to parse the PDSCH after an interval of 1 time unit and an interval of 2 time units at the same time. Then, a certain indicator bit can be set to correspond to the two time intervals of 1 time unit and 2 time units.
  • the indicator bit is 1, it is necessary to parse the PDSCH after monitoring the PDCCH for 1 time unit and 2 time units; and/or, when the indicator bit is 0, after monitoring the PDCCH, 1 time unit and The PDSCH is not parsed for both time units, thereby effectively saving the length of the transmitted information.
  • At least one indication bit can be set in the indication information, and each indication bit can correspond to at least one time interval to indicate whether to parse the PDSCH after delaying the time interval, so that the correspondence between the indication bit and the time interval relationship, you can quickly determine whether the PDSCH needs to be parsed at a certain time interval to determine the value of the corresponding indicator bit, or quickly determine whether the PDSCH needs to be parsed at the corresponding time interval through the indicator bit, effectively improving the time interval and the conversion efficiency of the indicator information. Especially suitable for scenarios where PDSCH may be parsed at multiple time intervals.
  • the terminal may store a strategy for determining the time interval through indication information, such as the above-mentioned Table 1, Table 2 or Table 3, or which time interval each indication bit represents in the scheme corresponding to Table 3, so that when the indication is received After the information is obtained, the corresponding time interval can be determined according to the indication information to ensure that the PDSCH is correctly parsed.
  • the time interval policy can be dynamically configured through RRC signaling.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information may be used to instruct the corresponding terminal device to use the time interval, or may be used to instruct the corresponding terminal device not to use the time interval, for example, keep silent (or referred to as sleep/sleep/ Sleep).
  • the terminal device can determine whether the terminal indication information in the wake-up signal is consistent with itself, and if it is consistent, the time interval indicated by the wake-up signal can be used, and/or, If they are inconsistent, it means that the time interval indicated by the wake-up signal has nothing to do with itself.
  • the terminal indication information may include: an identifier of a group, which is used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group use the time interval, and all terminal devices in the group use the time interval. Keep silent, some terminal devices in the group use the time interval, and some terminal devices in the group keep silent; and/or, the identifier of the terminal device is used to instruct the terminal device to use the time interval, or used to instruct the terminal device to remain silent.
  • the specific indication meaning of the terminal indication information can be configured according to actual needs.
  • the content indicated by the terminal indication information is in conflict, for example, the information indicated by the identification of the group conflicts with the information indicated by the identification of the terminal device.
  • the conflict resolution method can be determined according to a preset rule, for example, the group instruction shall prevail, or the terminal device instruction shall prevail.
  • the terminal indication information may be set to include an identifier of a group to instruct all terminals in the group to keep silent, and an identifier of a terminal device to instruct the terminal device to use the time interval. If in a certain terminal indication information, the terminal device corresponding to the identifier of the terminal device belongs to the group corresponding to the identifier of the group, the identifier of the terminal device may be ignored based on the indication of the identifier of the group.
  • the terminal indication information may include: an identifier of a group, used to instruct all terminal devices in the group to use the time interval; and/or, an identifier of a terminal device, used to instruct the terminal The device uses the time interval.
  • the terminal indication information may include: an identifier of a group, used to instruct all terminal devices in the group to remain silent; and/or an identifier of a terminal device, used to instruct the terminal device to remain silent .
  • the terminal indication information may include: an identifier of a group, used to instruct some terminal devices in the group to use the time interval; and/or an identifier of a terminal device, used to instruct the terminal The device remains silent.
  • the terminal indication information may include: an identifier of a group, used to instruct some terminal devices in the group to keep silent; and/or an identifier of a terminal device, used to instruct the terminal device to use the said time interval.
  • any group may include multiple terminal devices, or only one terminal device.
  • the wake-up signal contains the group identifier
  • all terminal devices in the group can use the time indicated by the wake-up signal. interval, so as to indicate the terminal device through the group identifier, which is simple and fast, and effectively saves the length of the transmitted information.
  • the wake-up signal may directly include the identification of the terminal device, and the corresponding terminal device may use the time interval indicated by the wake-up signal to more accurately indicate the specific terminal device.
  • any group may include multiple terminal devices, or only one terminal device.
  • the wake-up signal contains the group identifier
  • all the terminal devices in the group remain silent, so that the group identifier can be passed through. Instructing the terminal equipment is simple and quick, and effectively saves the length of the transmitted information, so as to achieve the power saving effect.
  • the wake-up signal may directly include the identification of the terminal device, and the corresponding terminal device remains silent, so as to more accurately instruct the specific terminal device and achieve the power saving effect.
  • the wake-up signal may also include both the group identifier and the terminal device identifier, all the terminal devices in the group corresponding to the group identifier in the wake-up signal and the terminal device corresponding to the terminal device identifier, Both can use the time interval indicated by the wake-up signal, or both can be kept silent, so as to realize mixed indication of groups and single devices.
  • the wake-up signal may also include both the group identifier and the terminal device identifier, and all the terminal devices in the group corresponding to the group identifier in the wake-up signal except the terminal device corresponding to the terminal device identifier, Both can use the time interval indicated by the wake-up signal, so as to realize a mixed indication of a group and a single device or an indication manner similar to a subgroup.
  • the wake-up signal may also include both the group identifier and the terminal device identifier, and all the terminal devices in the group corresponding to the group identifier in the wake-up signal except the terminal device corresponding to the terminal device identifier, Silence allows for mixed indications of groups and individual devices or subgroup-like indications.
  • the terminal indication information when the terminal indication information only includes the identification of the group and does not include the identification of the terminal equipment, it may also instruct some terminal equipment to use the time interval or keep silent, for example, the group that meets the preset conditions.
  • the terminal device only uses the time interval or remains silent.
  • the preset condition may be set according to actual needs, for example, the power of the terminal device may be greater than a certain threshold, certain fields are preset in the terminal device, and the like.
  • terminals in different groups can monitor different PDCCH and/or PDSCH time-frequency resources, and can also introduce a new P-RNTI (Paging Radio Network Temporary Identifier, paging wireless network temporary identification) to distinguish different groups. terminal equipment, so as to efficiently implement paging of terminal equipment in a group manner.
  • P-RNTI Paging Radio Network Temporary Identifier, paging wireless network temporary identification
  • the wake-up signal may not include terminal indication information, and all terminals that receive the wake-up signal can use the time interval carried in the wake-up signal.
  • the network device may further: send the PDCCH; and/or, after sending the PDCCH, delay the time interval to send the PDSCH.
  • send the PDCCH and/or, after sending the PDCCH, delay the time interval to send the PDSCH.
  • the network device may send a wake-up signal first.
  • the wake-up signal may include indication information for indicating a time interval for monitoring the PDCCH and parsing the PDSCH.
  • the terminal device may determine the corresponding time interval according to the wake-up signal.
  • the wake-up signal may be downlink control information (Downlink Control Information, DCI), and may specifically follow DCI format 1_0 or DCI format 2_6 or define a new DCI, which is not limited in this embodiment of the present application.
  • DCI Downlink Control Information
  • the wake-up signal is configured by RRC signaling.
  • the time point at which the terminal device receives the wake-up signal can be configured by RRC signaling, so that the configuration of the wake-up signal can be implemented more flexibly, and smooth communication between the network device and the terminal device is guaranteed.
  • a wake-up signal may also be used to indicate whether the terminal device needs to monitor the PDCCH at the PO. If necessary, the terminal device needs to wake up before PO or PO and monitor PDCCH at PO.
  • the network device may send the PDCCH after sending the wake-up signal, and send the PDSCH after the time interval elapses after sending the PDCCH.
  • the terminal device judges whether there is paging information for itself according to the PDCCH. Specifically, judging whether there is paging information for oneself according to the PDCCH can be realized by detecting the P-RNTI carried by the PDCCH.
  • the PDCCH may include a paging indication
  • the paging indication may include cyclic redundancy check (Cyclic redundancy check, CRC) and P-RNTI scrambled (scrambled) information.
  • CRC Cyclic redundancy check
  • Scrambled P-RNTI scrambled
  • the terminal After the terminal monitors the PDCCH, if the PDCCH is scrambled by a certain P-RNTI, and the P-RNTI is consistent with the P-RNTI corresponding to the terminal device, it means that there is paging information for itself, then the terminal device can follow the wake-up signal.
  • the indicated time interval parses the PDSCH to receive paging information.
  • the network device may not send the PDCCH.
  • the network device may not send the PDCCH.
  • the network device may not send the PDSCH.
  • the specific transmission conditions of the PDCCH and PDSCH may be configured according to requirements, which are not limited in this embodiment of the present application.
  • the time interval for monitoring the PDCCH and parsing the PDSCH in different scenarios can also be designed according to actual needs.
  • the terminal device can start parsing the PDSCH immediately after monitoring the PDCCH, reducing the number of times the terminal device switches the circuit and improving the service life of the circuit. For example, no additional SSB (synchronization signal and PBCH block synchronization signal and PBCH block, where PBCH is the physical broadcasting channel, physical broadcasting channel) measurement is not required when the terminal device has a high SNR (signal noise ratio, signal-to-noise ratio) receiving scenario. It can parse the paging information to ensure the continuity of the terminal's time of receiving information under specific scenarios, and reduce the number of circuit switches.
  • SSB synchronization signal and PBCH block synchronization signal and PBCH block, where PBCH is the physical broadcasting channel, physical broadcasting channel
  • the terminal device may start parsing the PDSCH after a certain period of time after monitoring the PDCCH, or it may not parse the PDSCH when judging by the PDCCH that there is no paging information for itself. , so as to effectively save power and enjoy the benefits of cross-slot scheduling.
  • the time interval when there are many terminal devices to be paged by the network device, the time interval may be set to 0. For example, when all terminal devices or most of the terminal devices in a certain group need to receive paging information, the time interval corresponding to the group can be set to 0.
  • the terminal devices After all the terminal devices monitor the PDCCH, they directly start parsing the PDSCH. There is no need to spend extra time to determine whether the PDCCH indicates that there is paging information for them. Because in this scenario, most terminal devices need to receive paging information, so set the time An interval of 0 can quickly realize data transmission, ensure the continuity of terminal equipment in receiving information in a specific scenario, avoid frequent switching of circuits, and enable terminal equipment to respond to paging information as soon as possible.
  • the time interval can be set to a value greater than 0, allowing time for the terminal device to determine whether the PDCCH indicates that there is paging information for itself.
  • the PDSCH is further parsed after the time interval to obtain the paging information; if there is no paging information for oneself, the PDSCH may not be analyzed, thereby effectively saving power.
  • time intervals of different lengths can also be set for the terminal device.
  • Factors that can be considered when setting the time interval include, but are not limited to, the power saving scheme of the terminal device, the duration of processing the PDCCH, the current paging situation, and the like.
  • the time for the terminal to monitor the PDCCH and parse the PDSCH can be flexibly configured, and the monitoring of the PDCCH and the parsing of the PDSCH can be performed simultaneously, successively, or at intervals to meet application requirements in different scenarios.
  • FIG. 7 is a schematic flowchart of another signal processing method provided by an embodiment of the present application.
  • the execution subject of the method in this embodiment may be a terminal device. As shown in Figure 7, the illustrated method includes:
  • Step 701 Receive a wake-up signal, where the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH.
  • Step 702 Parse the PDSCH after monitoring the PDCCH according to the time interval.
  • the signal processing method provided in this embodiment receives a wake-up signal, where the wake-up signal includes indication information, and the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH, and parses the PDSCH after monitoring the PDCCH according to the time interval, It can make the terminal device start parsing the PDSCH at a suitable time. When the time interval is 0, it can ensure the continuity of the terminal device in the time of receiving information, and improve the speed of paging the terminal device. When the time interval is not 0, the parsing can be delayed. PDSCH saves the power of the terminal device and prolongs the battery life, so that the time for the terminal device to monitor the PDCCH and parse the PDSCH can be flexibly configured to meet the application requirements in different scenarios.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • parsing the PDSCH after monitoring the PDCCH according to the time interval includes:
  • the PDSCH is parsed with a delay of the time interval after monitoring the PDCCH.
  • FIG. 8 is a schematic flowchart of still another signal processing method provided by an embodiment of the present application.
  • the execution subject of the method in this embodiment may be a terminal device. As shown in Figure 8, the method may include:
  • Step 801 Acquire terminal group information.
  • the terminal group may be a terminal group to which the terminal device belongs.
  • the information of the terminal group may be any information that can indicate the terminal group, for example, an identifier of the terminal group and the like.
  • Step 802 Monitor a wake-up signal based on the information of the terminal group, where the wake-up signal is used to indicate the time interval between monitoring the PDCCH and parsing the PDSCH by the terminal group.
  • the wake-up signal may be sent by the network device based on terminal group information, and different terminal groups may correspond to the same or different wake-up signals.
  • a wake-up signal may be sent to some or all of the terminal groups within one cycle.
  • the terminal device can determine whether there is a wake-up signal sent to itself in the current cycle according to the terminal group to which it belongs.
  • time-frequency resources may be configured for each terminal group to monitor the wake-up signal.
  • the terminal device may determine time-frequency resource information for monitoring the wake-up signal based on the information of the terminal group, and monitor the wake-up signal according to the time-frequency resource information.
  • different terminal groups may correspond to the same or different time-frequency resource information, so that the terminal group can monitor the wake-up signal on the corresponding time-frequency resources, improve the control effect of the terminal equipment, and effectively save the time and cost of the terminal equipment. power.
  • the corresponding relationship between the terminal group and the time-frequency resource information may be acquired through RRC signaling, or a pre-configured corresponding relationship may be used.
  • terminal group A can be configured to monitor the wake-up signal at time T a
  • terminal group B can be configured to monitor the wake-up signal at time T b
  • terminal groups A and B can monitor the wake-up signal at time T a and T b respectively.
  • the contents of the wake-up signals monitored by the terminal group A and the terminal group B may be the same or different.
  • the T a moment and the T b moment may be the ps-Offset (Power Saving Offset, power saving offset) of the terminal group owner A and the terminal group B, respectively, and the ps-Offset may be configured via RRC. .
  • the wake-up signal may be used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH by the terminal group. That is, the time interval between monitoring the PDCCH and analyzing the PDSCH for different terminal groups may be the same or different.
  • the terminal device may determine the time interval for monitoring the PDCCH and parsing the PDSCH according to the wake-up signal, and turn on the parsing circuit of the PDSCH at an appropriate time to implement parsing of the PDSCH.
  • the terminal device first receives the wake-up signal, then determines a time interval according to the wake-up signal, and parses the PDSCH after monitoring the PDCCH through the time interval.
  • the terminal device determines the information of the terminal group, and monitors the wake-up signal based on the information of the terminal group. If the terminal group to which it belongs is the terminal group corresponding to the wake-up signal, it monitors the wake-up signal, Otherwise, no monitoring is performed, so that the monitoring of the wake-up signal is more targeted.
  • the information of the terminal group is acquired, and the wake-up signal is monitored based on the information of the terminal group, and the wake-up signal is used to indicate the time interval between monitoring the PDCCH and parsing the PDSCH by the terminal group, It can make the terminal device start parsing the PDSCH at a suitable time.
  • the time interval is 0, it can ensure the continuity of the terminal device in the time of receiving information, and improve the speed of paging the terminal device.
  • the parsing can be delayed.
  • PDSCH saves the power of the terminal device and prolongs the battery life, so as to flexibly configure the time for the terminal device to monitor the PDCCH and parse the PDSCH, and monitor the wake-up signal based on the information of the terminal group, which can further save the power of the terminal device and meet the needs of different scenarios. application requirements.
  • the acquiring terminal group information includes at least one of the following:
  • IMSI International Mobile Subscriber Identity
  • IMEI International Mobile Equipment Identity
  • the terminal group to which it belongs is determined or calculated according to the type of the terminal device.
  • the international mobile subscriber identity code corresponding to the terminal device may be processed according to a preset policy to determine the terminal group to which it belongs.
  • the terminal device belongs to the terminal group A
  • the international mobile subscriber identity code corresponding to the terminal device is an even number
  • the terminal device belongs to terminal group B.
  • the mapping relationship between the international mobile subscriber identity and the terminal group may be configured through a formula or a table, and the terminal group corresponding to the international mobile subscriber identity is calculated according to the mapping relationship.
  • the terminal group can be calculated according to the number of terminal groups planned by the base station according to the international mobile subscriber identity.
  • the base station is expected to divide three different terminal groups, so the international mobile subscriber identity can be modulo ( mod, modulo) calculation to determine the terminal group.
  • the belonging terminal group may also be determined or calculated according to the International Mobile Equipment Identity, or the belonging terminal group may be determined or calculated according to the 5G service temporary mobile user identity.
  • the specific determination or calculation method reference may be made to the method for determining or calculating the terminal group to which it belongs according to the International Mobile Subscriber Identity.
  • the terminal group to which the terminal device belongs can be determined or calculated by using the international mobile subscriber identity code, the international mobile equipment identity code, the 5G service temporary mobile subscriber identity and other identifiers, and the terminal group can be easily and quickly determined based on the terminal device's own identifier, improving the Determines the flexibility of terminal groups.
  • the belonging terminal group may also be determined or configured according to RRC signaling.
  • the RRC signaling may directly indicate the group to which the terminal device belongs, or the RRC signaling may include auxiliary information for configuring the terminal group to which it belongs, and the terminal device may configure the terminal group to which it belongs according to the auxiliary information in the RRC signaling, whereby, the configuration of terminal groups can be realized more flexibly, and smooth communication between network equipment and terminal equipment is ensured.
  • the terminal group to which it belongs may also be determined or calculated according to the type of the terminal device.
  • the type of the terminal device may include at least one of the following: a mobile terminal, an Internet of Things terminal (IOT equipment), a simple terminal (NR light equipment), and an industrial Internet of Things terminal (IIoT equipment).
  • Terminal devices can be divided into multiple terminal groups according to the types of terminal devices, and different types can correspond to different terminal groups.
  • the mobile terminal may be the terminal shown in FIG. 1
  • the IoT terminal may be a terminal applied to the Internet of Things, such as a smart home terminal, an Internet of Vehicles
  • the simple terminal may be a simplified version, a light
  • the industrial IoT terminal can be a terminal applied to the industrial IoT.
  • the types of terminal devices may not be limited to the above four methods, and more types of terminal devices may be expanded according to actual scenarios.
  • the terminal group to which they belong may be jointly determined or calculated according to at least two of the International Mobile Subscriber Identity, the International Mobile Equipment Identity, the 5G Service Temporary Mobile Subscriber Identity, RRC signaling, and the type of the terminal equipment.
  • a preset algorithm may be used to determine the terminal group to which the terminal belongs according to the International Mobile Subscriber Identity Code and the International Mobile Equipment Identity Code. For example, a terminal device with a singular IMS and an odd IMEI belongs to terminal group A; a terminal with a singular IMS and an even IMS belongs to the terminal group B; terminal equipment with an even number of IMS and an odd number of international mobile equipment identification numbers belong to terminal group C; terminal equipment with an even number of international mobile subscriber identification numbers and an even number of international mobile equipment identification numbers belong to the terminal group group D.
  • the terminal group to which it belongs may be determined according to the international mobile subscriber identity and RRC signaling. For example, first calculate the terminal group to which it belongs by using the International Mobile Subscriber Identity, and then verify the calculated terminal group based on the content of the RRC signaling.
  • the terminal device calculates the terminal group according to the International Mobile Subscriber Identity, and then determines the terminal group to which it finally belongs through the offset information configured by the RRC.
  • the terminal group can be divided more finely or accurately, and the efficiency and flexibility of monitoring the wake-up signal can be improved.
  • the time interval between monitoring the PDCCH and analyzing the PDSCH includes at least one of the following: the time interval between the time when the monitoring PDCCH ends and the time when the PDSCH is started to be analyzed; the time between the time when the monitoring of the PDCCH is started and the time when the PDSCH is started time interval.
  • the time interval is at least one of the following: 0 or a time greater than 0; N time units, where N is an integer greater than or equal to 0.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH; the indication information is a first value or a second value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the wake-up signal includes indication information, and the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH; the time interval is selected from at least one optional time interval; and/or the indication The information corresponds to the time interval one-to-one.
  • the wake-up signal includes indication information, and the indication information is used to indicate the time interval between monitoring the PDCCH and parsing the PDSCH; the indication information includes at least one indication bit, and each of the indication bits is associated with at least one of the time intervals. corresponding to the interval.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes: an identifier of a group, which is used to indicate any of the following: all terminal devices in the group use the time interval, and all terminal devices in the group keep silence, some terminal devices in the group use the time interval, and some terminal devices in the group remain silent; and/or the identifier of the terminal device is used to instruct the terminal device to use the time interval , or, used to instruct the terminal device to keep silent.
  • the group indicated by the terminal indication information may be the same as or different from the terminal group in step 801 .
  • the terminal device can first monitor the wake-up signal according to the information of the terminal group to which it belongs, and different terminal groups can monitor the same or different wake-up signals; after receiving the wake-up signal, it can determine whether to Use the time interval indicated by the wake-up signal.
  • the terminal group to which the terminal device belongs is A
  • a multi-level group configuration strategy can be implemented, so that the terminal equipment can be controlled more accurately and flexibly.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the method further includes: parsing the PDSCH after monitoring the PDCCH according to the time interval.
  • parsing the PDSCH after monitoring the PDCCH according to the time interval includes: if the PDCCH indicates that there is paging information sent to the terminal device, delaying the time interval after monitoring the PDCCH to parse the PDSCH.
  • FIG. 9 is a schematic flowchart of still another signal processing method provided by an embodiment of the present application.
  • the execution body of the method in this embodiment may be a network device. As shown in Figure 9, the method may include:
  • Step 901 Determine the information of the terminal group and the time interval between monitoring the PDCCH and parsing the PDSCH by the terminal group.
  • Step 902 Send a wake-up signal based on the information of the terminal group, where the wake-up signal includes indication information for indicating the time interval.
  • the network device may determine which terminal group or groups need to monitor the wake-up signal, and may also send the wake-up signal based on information of the terminal group that needs to monitor the wake-up signal. Different terminal groups may correspond to the same or different wake-up signals.
  • the process performed by the network device in this embodiment may correspond to the process performed by the terminal device in the embodiment shown in FIG. 8 , and the specific processing process and principle may refer to the foregoing embodiment, which will not be repeated here.
  • the wake-up signal includes indication information for indicating the time interval, which can enable the terminal device to start parsing the PDSCH at a suitable time, and when the time interval is 0, the continuity of the terminal device in receiving information time can be ensured, and the paging can be improved.
  • the speed of the terminal device when the time interval is not 0, can delay the parsing of the PDSCH, save the power of the terminal device, and prolong the battery life, so that the time for the terminal device to monitor the PDCCH and parse the PDSCH can be flexibly configured.
  • the information monitoring wake-up signal can further save the power of the terminal device and meet the application requirements in different scenarios.
  • the information for determining the terminal group includes at least one of the following: determining or calculating the terminal group to which the terminal device belongs according to the International Mobile Subscriber Identity; determining or calculating the terminal group to which the terminal device belongs according to the International Mobile Equipment Identity group; determine or calculate the terminal group to which the terminal device belongs according to the network configuration 5G service temporary mobile user identity; determine or configure the terminal group to which the terminal device belongs according to the network radio resource control signaling; determine or calculate according to the type of the terminal device The terminal group to which the terminal device belongs.
  • sending the wake-up signal based on the terminal group information includes: determining time-frequency resource information for sending the wake-up signal based on the terminal group information; and sending the wake-up signal according to the time-frequency resource information.
  • the time interval between monitoring the PDCCH and analyzing the PDSCH includes at least one of the following: the time interval between the time when the monitoring PDCCH ends and the time when the PDSCH is started to be analyzed; the time between the time when the monitoring of the PDCCH is started and the time when the PDSCH is started time interval.
  • the time interval is at least one of the following: 0 or a time greater than 0; N time units, where N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the corresponding time interval is delayed; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not delayed after the corresponding time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes: an identifier of a group, which is used to indicate any of the following: all terminal devices in the group use the time interval, and all terminal devices in the group keep silence, some terminal devices in the group use the time interval, and some terminal devices in the group remain silent; and/or the identifier of the terminal device is used to instruct the terminal device to use the time interval , or, used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the method further includes: sending the PDCCH; and/or, after sending the PDCCH, delaying the time interval to send the PDSCH.
  • FIG. 10 is a schematic structural diagram of a signal processing apparatus provided by an embodiment of the present application.
  • the signal processing apparatus can be applied to network equipment.
  • the signal processing apparatus may include:
  • a determination module 1001 configured to determine the time interval between the terminal equipment monitoring the PDCCH and parsing the PDSCH;
  • the sending module 1002 is configured to send a wake-up signal, where the wake-up signal includes indication information for indicating the time interval.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the sending module 1002 is further configured to:
  • the PDSCH is transmitted after the time interval is delayed.
  • the apparatus provided in this embodiment can be used to implement the technical solutions of the method embodiments shown in FIG. 4 to FIG. 6 , and the implementation principles and technical effects thereof are similar, and are not described again in this embodiment.
  • FIG. 11 is a schematic structural diagram of another signal processing apparatus provided by an embodiment of the present application.
  • the signal processing apparatus can be applied to terminal equipment.
  • the signal processing apparatus may include:
  • a receiving module 1101 configured to receive a wake-up signal, where the wake-up signal includes indication information, and the indication information is used to indicate the time interval between monitoring the PDCCH and parsing the PDSCH;
  • the processing module 1102 is configured to parse the PDSCH after monitoring the PDCCH according to the time interval.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • processing module 1102 is specifically configured to:
  • the PDSCH is parsed with a delay of the time interval after monitoring the PDCCH.
  • the apparatus provided in this embodiment can be used to execute the technical solution of the method embodiment shown in FIG. 7 , and the implementation principle and technical effect thereof are similar, which will not be repeated here in this embodiment.
  • FIG. 12 is a schematic structural diagram of still another signal processing apparatus provided by an embodiment of the present application.
  • the signal processing apparatus can be applied to terminal equipment.
  • the signal processing apparatus may include:
  • the monitoring module 1202 is configured to monitor a wake-up signal based on the information of the terminal group, where the wake-up signal is used to indicate the time interval between monitoring the PDCCH and parsing the PDSCH by the terminal group.
  • the obtaining module 1201 is specifically configured to execute at least one of the following:
  • the terminal group to which it belongs is determined or calculated according to the type of the terminal device.
  • the monitoring module 1202 is specifically used for:
  • the wake-up signal is monitored according to the time-frequency resource information.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or,
  • the second numerical value indicates that the time interval is a preset time interval.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the wake-up signal includes indication information, where the indication information is used to indicate a time interval between monitoring the PDCCH and parsing the PDSCH;
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the monitoring module 1202 is also used for:
  • the monitoring module 1202 parses the PDSCH after monitoring the PDCCH according to the time interval, it is specifically used for:
  • the PDSCH is parsed with a delay of the time interval after monitoring the PDCCH.
  • the apparatus provided in this embodiment can be used to execute the technical solution of the method embodiment shown in FIG. 8 , and the implementation principle and technical effect thereof are similar, and are not repeated here in this embodiment.
  • FIG. 13 is a schematic structural diagram of still another signal processing apparatus provided by an embodiment of the present application.
  • the signal processing apparatus can be applied to network equipment.
  • the signal processing apparatus may include:
  • an information determination module 1301, configured to determine the information of the terminal group and the time interval between monitoring the PDCCH and parsing the PDSCH by the terminal group;
  • the signal sending module 1302 is configured to send a wake-up signal based on the information of the terminal group, where the wake-up signal includes indication information for indicating the time interval.
  • the information determining module 1301 determines the information of the terminal group, it is specifically configured to perform at least one of the following:
  • the terminal group to which the terminal device belongs is determined or calculated according to the type of the terminal device.
  • the signal sending module 1302 is specifically configured to:
  • the wake-up signal is sent according to the time-frequency resource information.
  • the time interval between monitoring the PDCCH and parsing the PDSCH includes at least one of the following:
  • the time interval between the time to start monitoring the PDCCH and the time to start parsing the PDSCH is not limited.
  • the time interval is at least one of the following:
  • N is an integer greater than or equal to 0.
  • the indication information is a first numerical value or a second numerical value.
  • the first numerical value indicates that the time interval is 0; and/or,
  • the second numerical value indicates that the time interval is a preset time interval.
  • the time interval is selected from at least one optional time interval; and/or the indication information is in one-to-one correspondence with the time interval.
  • the indication information includes at least one indication bit, and each indication bit corresponds to at least one of the time intervals.
  • the indication bit is the third numerical value, it means that the PDSCH is parsed after the delay corresponding to the time interval; and/or, if the indication bit is the fourth numerical value, it means that the PDSCH is not parsed after the delay corresponding to the time interval. Parse PDSCH.
  • the wake-up signal further includes terminal indication information.
  • the terminal indication information includes:
  • the identifier of the group used to indicate any of the following: all terminal devices in the group use the time interval, all terminal devices in the group remain silent, and some terminal devices in the group using the time interval, some terminal devices in the group remain silent; and/or,
  • the identifier of the terminal device used to instruct the terminal device to use the time interval, or used to instruct the terminal device to keep silent.
  • the wake-up signal is DCI.
  • the wake-up signal is configured by RRC signaling.
  • the signal sending module 1302 is further configured to:
  • the PDSCH is transmitted after the time interval is delayed.
  • the apparatus provided in this embodiment can be used to execute the technical solution of the method embodiment shown in FIG. 9 , and the implementation principle and technical effect thereof are similar, and are not described again in this embodiment.
  • FIG. 14 is a schematic structural diagram of a communication device according to an embodiment of the present application.
  • the communication device described in this embodiment may be the terminal device (or a component usable for the terminal device) or the network device (or a component usable for the network device) mentioned in the foregoing method embodiments.
  • the communication device may be used to implement the method corresponding to the terminal device or the network device described in the foregoing method embodiments. For details, refer to the descriptions in the foregoing method embodiments.
  • the communication device in this embodiment includes: a processor 1401 and a memory 1402 ; optionally, the memory 1402 is used to store computer-executed instructions; when the computer-executed instructions are executed by the processor 1401
  • the signal processing method in any of the above embodiments is implemented. For details, refer to the relevant descriptions in the foregoing method embodiments.
  • the memory 1402 may be independent or integrated with the processor 1401 .
  • Embodiments of the present application further provide a computer-readable storage medium, where computer-executable instructions are stored in the computer-readable storage medium, and when the processor executes the computer-executable instructions, the above signal processing method is implemented.
  • the embodiments of the present application further provide a computer program product, the computer program product includes computer program code, when the computer program code is run on a computer, the computer is made to execute the method described in the various possible implementation manners above.
  • An embodiment of the present application further provides a chip, including a memory and a processor, where the memory is used to store a computer program, and the processor is used to call and run the computer program from the memory, so that a chip installed with the chip is
  • the communication device performs the method as described in the various possible embodiments above.
  • the disclosed apparatus and method may be implemented in other manners.
  • the device embodiments described above are only illustrative.
  • the division of the modules is only a logical function division. In actual implementation, there may be other division methods.
  • multiple modules may be combined or integrated. to 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 modules, and may be in electrical, mechanical or other forms.
  • the above-mentioned integrated modules implemented in the form of software functional modules may be stored in a computer-readable storage medium.
  • the above-mentioned software function modules are stored in a storage medium, and include several instructions to make a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor (processor) to execute the methods described in the various embodiments of the present application. some steps.
  • processor may be a central processing unit (Central Processing Unit, CPU), or other general-purpose processors, digital signal processors (Digital Signal Processor, referred to as: DSP), application specific integrated circuits (Application Specific Integrated Circuit, ASIC) etc.
  • a general purpose processor may be a microprocessor or the processor may be any conventional processor or the like. The steps of the method disclosed in conjunction with the invention can be directly embodied as executed by a hardware processor, or executed by a combination of hardware and software modules in the processor.
  • the memory may include high-speed RAM memory, and may also include non-volatile storage NVM, such as at least one magnetic disk memory, and may also be a U disk, a removable hard disk, a read-only memory, a magnetic disk or an optical disk, and the like.
  • NVM non-volatile storage
  • the bus may be an Industry Standard Architecture (ISA) bus, a Peripheral Component (PCI) bus, or an Extended Industry Standard Architecture (EISA) bus, or the like.
  • ISA Industry Standard Architecture
  • PCI Peripheral Component
  • EISA Extended Industry Standard Architecture
  • the bus can be divided into address bus, data bus, control bus and so on.
  • the buses in the drawings of the present application are not limited to only one bus or one type of bus.
  • the above-mentioned storage medium may be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read only memory (EEPROM), erasable Except programmable read only memory (EPROM), programmable read only memory (PROM), read only memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read only memory
  • EPROM erasable except programmable read only memory
  • PROM programmable read only memory
  • ROM read only memory
  • magnetic memory flash memory
  • flash memory magnetic disk or optical disk.
  • a storage medium can be any available medium that can be accessed by a general purpose or special purpose computer.

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Abstract

本申请提供一种信号处理方法、设备及存储介质。该方法包括:确定终端设备监听PDCCH与解析PDSCH的时间间隔;发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。本申请实施例提供的信号处理方法、设备及存储介质,可以使终端设备在合适的时间开始解析PDSCH,在时间间隔为0时可以确保终端设备在接收信息时间上的连续性,提高寻呼终端设备的速度,在时间间隔不为0时,可以延迟解析PDSCH,节约终端设备的电量,延长电池寿命,从而可以实现弹性配置终端设备监听PDCCH和解析PDSCH的时间,满足不同场景下的应用需求。

Description

信号处理方法、设备及存储介质 技术领域
本申请实施例涉及通信技术,尤其涉及一种信号处理方法、设备及存储介质。
背景技术
在5G新空口(New Radio,NR)中,终端设备可以在多种工作状态之间进行切换,以达到省电的目的。
在闲置态(RRC_IDLE)以及非激活态(RRC_INACTIVE)下,终端设备在寻呼时刻(Paging Occasion,PO)唤醒并监听物理下行控制信道(Physical Downlink Control Channel,PDCCH)是否有与终端设备对应的寻呼指示(Paging Indication,PI)。如果有,则进一步解析(Decode)物理下行共享信道(Physical Downlink Share Channel,PDCSH)以获取寻呼信息(Paging Message)。
然而,监听PDCCH和解析PDSCH均需要耗费难以忽略的电量。因此,如何让终端设备在保证正常被寻呼的情况下减少耗电成为亟待解决的问题。
前面的叙述在于提供一般的背景信息,并不一定构成现有技术。
发明内容
本申请提供一种信号处理方法、设备及存储介质,以解决上述终端设备耗电量较大的问题。
第一方面,本申请实施例提供一种信号处理方法,应用于网络设备,所述方法包括:
确定终端设备监听PDCCH与解析PDSCH的时间间隔;
发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述方法还包括:
发送PDCCH;和/或,
在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
第二方面,本申请实施例提供一种信号处理方法,应用于终端设备,所述方法包括:
接收唤醒信号,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
根据所述时间间隔在监听PDCCH后解析PDSCH。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,根据所述时间间隔在监听PDCCH后解析PDSCH,包括:
若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
第三方面,本申请实施例提供一种信号处理方法,应用于终端设备,所述方法包括:
获取终端群组的信息;
基于所述终端群组的信息监听唤醒信号,所述唤醒信号用于指示所述终端群组监听 PDCCH与解析PDSCH的时间间隔。
可选地,所述获取终端群组的信息包含以下至少一种:
根据国际移动用户识别码确定或计算所属终端群组;
根据国际移动设备识别码确定或计算所属终端群组;
根据网路配置5G服务临时移动用户标识确定或计算所属终端群组;
根据网路无线资源控制信令确定或配置所属终端群组;
根据终端设备的类型确定或计算所属终端群组。
可选地,基于所述终端群组的信息监听唤醒信号,包括:
基于所述终端群组的信息确定监听唤醒信号的时频资源信息;
根据所述时频资源信息监听唤醒信号。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,
所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述方法还包括:
根据所述时间间隔在监听PDCCH后解析PDSCH。
可选地,根据所述时间间隔在监听PDCCH后解析PDSCH,包括:
若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
第四方面,本申请实施例提供一种信号处理方法,应用于网络设备,所述方法包括:
确定终端群组的信息以及所述终端群组监听PDCCH与解析PDSCH的时间间隔;
基于所述终端群组的信息发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
可选地,所述确定终端群组的信息包括以下至少一种:
根据国际移动用户识别码确定或计算终端设备所属的终端群组;
根据国际移动设备识别码确定或计算终端设备所属的终端群组;
根据网路配置5G服务临时移动用户标识确定或计算终端设备所属的终端群组;
根据网路无线资源控制信令确定或配置终端设备所属的终端群组;
根据终端设备的类型确定或计算终端设备所属的终端群组。
可选地,基于所述终端群组的信息发送唤醒信号,包括:
基于终端群组的信息确定发送唤醒信号的时频资源信息;
根据所述时频资源信息发送所述唤醒信号。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,
所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述方法还包括:
发送PDCCH;和/或,
在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
第五方面,本申请实施例提供一种信号处理装置,应用于网络设备,所述信号处理装置包括:
确定模块,用于确定终端设备监听PDCCH与解析PDSCH的时间间隔;
发送模块,用于发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述发送模块还用于:
发送PDCCH;和/或,
在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
第六方面,本申请实施例提供一种信号处理装置,应用于终端设备,所述信号处理装置包括:
接收模块,用于接收唤醒信号,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
处理模块,用于根据所述时间间隔在监听PDCCH后解析PDSCH。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相 对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述处理模块具体用于:
若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
第七方面,本申请实施例提供一种信号处理装置,应用于终端设备,所述信号处理装置包括:
获取模块,用于获取终端群组的信息;
监听模块,用于基于所述终端群组的信息监听唤醒信号,所述唤醒信号用于指示所述终端群组监听PDCCH与解析PDSCH的时间间隔。
可选地,所述获取模块具体用于执行以下至少一种:
根据国际移动用户识别码确定或计算所属终端群组;
根据国际移动设备识别码确定或计算所属终端群组;
根据网路配置5G服务临时移动用户标识确定或计算所属终端群组;
根据网路无线资源控制信令确定或配置所属终端群组;
根据终端设备的类型确定或计算所属终端群组。
可选地,所述监听模块具体用于:
基于所述终端群组的信息确定监听唤醒信号的时频资源信息;
根据所述时频资源信息监听唤醒信号。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,
所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述监听模块还用于:
根据所述时间间隔在监听PDCCH后解析PDSCH。
可选地,所述监听模块在根据所述时间间隔在监听PDCCH后解析PDSCH时,具体用于:
若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
第八方面,本申请实施例提供一种信号处理装置,应用于网络设备,所述信号处理装置包括:
信息确定模块,用于确定终端群组的信息以及所述终端群组监听PDCCH与解析PDSCH的时间间隔;
信号发送模块,用于基于所述终端群组的信息发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
可选地,所述信息确定模块在确定终端群组的信息时,具体用于执行以下至少一种:
根据国际移动用户识别码确定或计算终端设备所属的终端群组;
根据国际移动设备识别码确定或计算终端设备所属的终端群组;
根据网路配置5G服务临时移动用户标识确定或计算终端设备所属的终端群组;
根据网路无线资源控制信令确定或配置终端设备所属的终端群组;
根据终端设备的类型确定或计算终端设备所属的终端群组。
可选地,所述信号发送模块具体用于:
基于终端群组的信息确定发送唤醒信号的时频资源信息;
根据所述时频资源信息发送所述唤醒信号。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,
所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述信号发送模块还用于:
发送PDCCH;和/或,
在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
第九方面,本申请实施例提供一种通信设备,包括处理器和存储器;
所述存储器存储计算机执行指令;
所述计算机执行指令被所述处理器执行时实现第一方面至第四方面任一项所述的方法。
需说明的是,第九方面的通信设备可以是终端设备或网络设备,也可以是终端设备的芯片或网络设备的芯片。
第十方面,本申请实施例提供一种计算机可读存储介质,所述计算机可读存储介质中存储有计算机执行指令,当所述计算机执行指令被处理器执行时用于实现第一方面至第四方面任一项所述的方法。
第十一方面,本申请实施例提供一种程序产品,程序产品包括计算机程序,计算机程序存储在可读存储介质中,处理器可以从可读存储介质中读取计算机程序,处理器执行计算机程序实现如第一方面至第四方面任一项所述的方法。
本申请实施例提供的信号处理方法、设备及存储介质,通过确定终端设备监听PDCCH与解析PDSCH的时间间隔,并发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息,可以使终端设备在合适的时间开始解析PDSCH,在时间间隔为0时可以确保终端设备在接收信息时间上的连续性,提高寻呼终端设备的速度,在时间间隔不为0时,可以延迟解析PDSCH,节约终端设备的电量,延长电池寿命,从而可以实现弹性配置终端设备监听PDCCH和解析PDSCH的时间,满足不同场景下的应用需求。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本申请的实施例,并与说明书一起用于解释本申请的原理。为了更清楚地说明本申请实施例的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,对于本领域普通技术人员而言,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为实现本申请各个实施例的一种移动终端的硬件结构示意图;
图2为本申请实施例提供的一种通信网络系统架构图;
图3为本申请实施例提供的一种应用场景示意图;
图4为本申请实施例提供的一种信号处理方法的流程示意图;
图5为本申请实施例提供的一种时间间隔示意图;
图6为本申请实施例提供的另一种时间间隔示意图;
图7为本申请实施例提供的另一种信号处理方法的流程示意图;
图8为本申请实施例提供的又一种信号处理方法的流程示意图;
图9为本申请实施例提供的再一种信号处理方法的流程示意图;
图10为本申请实施例提供的一种信号处理装置的结构示意图;
图11为本申请实施例提供的另一种信号处理装置的结构示意图;
图12为本申请实施例提供的又一种信号处理装置的结构示意图;
图13为本申请实施例提供的再一种信号处理装置的结构示意图;
图14为本申请实施例提供的一种通信设备的结构示意图。
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。通过上述附图,已示出本申请明确的实施例,后文中将有更详细的描述。这些附图和文字描述并不是为了通过任何方式限制本申请构思的范围,而是通过参考特定实施例为本领域技术人员说明本申请的概念。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本申请相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本申请的一些方面相一致的装置和方法的例子。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素,可选地,本申请不同实施例中具有同样命名的部件、特征、要素可能具有相同含义,也可能具有不同含义,其具体含义需以其在该具体实施例中的解释或者进一步结合该具体实施例中上下文进行确定。
应当理解,尽管在本文可能采用术语第一、第二、第三等来描述各种信息,但这些信息不应限于这些术语。这些术语仅用来将同一类型的信息彼此区分开。例如,在不脱离本文范围的情况下,第一信息也可以被称为第二信息,类似地,第二信息也可以被称为第一信息。取决于语境,如在此所使用的词语"如果"可以被解释成为"在……时"或"当……时"或"响应于确定"。再者,如同在本文中所使用的,单数形式“一”、“一个”和“该”旨在也包括复数形式,除非上下文中有相反的指示。应当进一步理解,术语“包含”、“包括”表明存在所述的特征、步骤、操作、元件、组件、项目、种类、和/或组,但不排除一个或多个其他特征、步骤、操作、元件、组件、项目、种类、和/或组的存在、出现或添加。本申请使用的术语“或”、“和/或”、“包括以下至少一个”等可被解释为包括性的,或意味着任一个或任何组合。例如,“包括以下至少一个:A、B、C”意味着“以下任一个:A;B;C;A和B;A和C;B和C;A和B和C”,再如,“A、B或C”或者“A、B和/或C”意味着“以下任一个:A;B;C;A和B;A和C;B和C;A和B和C”。仅当元件、功能、步骤或操作的组合在某些方式下内在地互相排斥时,才会出现该定义的例外。
应该理解的是,虽然本申请实施例中的流程图中的各个步骤按照箭头的指示依次显示,但是这些步骤并不是必然按照箭头指示的顺序依次执行。除非本文中有明确的说明,这些步骤的执行并没有严格的顺序限制,其可以以其他的顺序执行。而且,图中的至少一部分步骤可以包括多个子步骤或者多个阶段,这些子步骤或者阶段并不必然是在同一时刻执行完成,而是可以在不同的时刻执行,其执行顺序也不必然是依次进行,而是可以与其他步骤或者其他步骤的子步骤或者阶段的至少一部分轮流或者交替地执行。
需要说明的是,在本文中,采用了诸如201、202等步骤代号,其目的是为了更清楚简要地表述相应内容,不构成顺序上的实质性限制,本领域技术人员在具体实施时,可能会先执行202后执行201等,但这些均应在本申请的保护范围之内。
应当理解,此处所描述的具体实施例仅仅用以解释本申请,并不用于限定本申请。
在后续的描述中,使用用于表示元件的诸如“模块”、“部件”或者“单元”的后缀仅为了有利于本申请的说明,其本身没有特定的意义。因此,“模块”、“部件”或者“单元”可以混合地使用。
设备可以以各种形式来实施。例如,本申请中描述的设备可以包括诸如手机、平板电脑、笔记本电脑、掌上电脑、个人数字助理(Personal Digital Assistant,PDA)、便捷式媒体播放器(Portable Media Player,PMP)、导航装置、可穿戴设备、智能手环、计步器等移动终端,以及诸如数字TV、台式计算机等固定终端。
后续描述中将以移动终端为例进行说明,本领域技术人员将理解的是,除了特别用于移动目的的元件之外,根据本申请的实施方式的构造也能够应用于固定类型的终端。
请参阅图1,图1为实现本申请各个实施例的一种移动终端的硬件结构示意图,该移动终端100可以包括:RF(Radio Frequency,射频)单元101、WiFi模块102、音频输出单元103、A/V(音频/视频)输入单元104、传感器105、显示单元106、用户输入单元107、接口单元108、存储器109、处理器110、以及电源111等部件。本领域技术人员可以理解,图1中示出的移动终端结构并不构成对移动终端的限定,移动终端可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
下面结合图1对移动终端的各个部件进行具体的介绍:
射频单元101可用于收发信息或通话过程中,信号的接收和发送,可选地,将基站的下行信息接收后,给处理器110处理;另外,将上行的数据发送给基站。通常,射频单元101包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器、双工器等。可选地,射频单元101还可以通过无线通信与网络和其他设备通信。上述无线通信可以使用任一通信标准或协议,包括但不限于GSM(Global System of Mobile communication,全球移动通讯系统)、GPRS(General Packet Radio Service,通用分组无线服务)、CDMA2000(Code Division Multiple Access 2000,码分多址2000)、WCDMA(Wideband Code Division Multiple Access,宽带码分多址)、TD-SCDMA(Time Division-Synchronous Code Division Multiple Access,时分同步码分多址)、FDD-LTE(Frequency Division Duplexing-Long Term Evolution,频分双工长期演进)和TDD-LTE(Time Division Duplexing-Long Term Evolution,分时双工长期演进)等。
WiFi属于短距离无线传输技术,移动终端通过WiFi模块102可以帮助用户收发电子邮件、浏览网页和访问流式媒体等,它为用户提供了无线的宽带互联网访问。虽然图1示出了WiFi模块102,但是可以理解的是,其并不属于移动终端的必须构成,完全可以根据需要在不改变发明的本质的范围内而省略。
音频输出单元103可以在移动终端100处于呼叫信号接收模式、通话模式、记录模式、语音识别模式、广播接收模式等等模式下时,将射频单元101或WiFi模块102接收的或 者在存储器109中存储的音频数据转换成音频信号并且输出为声音。而且,音频输出单元103还可以提供与移动终端100执行的特定功能相关的音频输出(例如,呼叫信号接收声音、消息接收声音等等)。音频输出单元103可以包括扬声器、蜂鸣器等等。
A/V输入单元104用于接收音频或视频信号。A/V输入单元104可以包括图形处理器(Graphics Processing Unit,GPU)1041和麦克风1042,图形处理器1041对在视频捕获模式或图像捕获模式中由图像捕获装置(如摄像头)获得的静态图片或视频的图像数据进行处理。处理后的图像帧可以显示在显示单元106上。经图形处理器1041处理后的图像帧可以存储在存储器109(或其它存储介质)中或者经由射频单元101或WiFi模块102进行发送。麦克风1042可以在电话通话模式、记录模式、语音识别模式等等运行模式中经由麦克风1042接收声音(音频数据),并且能够将这样的声音处理为音频数据。处理后的音频(语音)数据可以在电话通话模式的情况下转换为可经由射频单元101发送到移动通信基站的格式输出。麦克风1042可以实施各种类型的噪声消除(或抑制)算法以消除(或抑制)在接收和发送音频信号的过程中产生的噪声或者干扰。
移动终端100还包括至少一种传感器105,比如光传感器、运动传感器以及其他传感器。可选地,光传感器包括环境光传感器及接近传感器,可选地,环境光传感器可根据环境光线的明暗来调节显示面板1061的亮度,接近传感器可在移动终端100移动到耳边时,关闭显示面板1061和/或背光。作为运动传感器的一种,加速计传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别手机姿态的应用(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等;至于手机还可配置的指纹传感器、压力传感器、虹膜传感器、分子传感器、陀螺仪、气压计、湿度计、温度计、红外线传感器等其他传感器,在此不再赘述。
显示单元106用于显示由用户输入的信息或提供给用户的信息。显示单元106可包括显示面板1061,可以采用液晶显示器(Liquid Crystal Display,LCD)、有机发光二极管(Organic Light-Emitting Diode,OLED)等形式来配置显示面板1061。
用户输入单元107可用于接收输入的数字或字符信息,以及产生与移动终端的用户设置以及功能控制有关的键信号输入。可选地,用户输入单元107可包括触控面板1071以及其他输入设备1072。触控面板1071,也称为触摸屏,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触控面板1071上或在触控面板1071附近的操作),并根据预先设定的程式驱动相应的连接装置。触控面板1071可包括触摸检测装置和触摸控制器两个部分。可选地,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器110,并能接收处理器110发来的命令并加以执行。可选地,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触控面板1071。除了触控面板1071,用户输入单元107还可以包括其他输入设备1072。可选地,其他输入设备1072可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆等中的一种或多种,具体此处不做限定。
可选地,触控面板1071可覆盖显示面板1061,当触控面板1071检测到在其上或附近的触摸操作后,传送给处理器110以确定触摸事件的类型,随后处理器110根据触摸事件的类型在显示面板1061上提供相应的视觉输出。虽然在图1中,触控面板1071与显示面板1061是作为两个独立的部件来实现移动终端的输入和输出功能,但是在某些实施例中,可以将触控面板1071与显示面板1061集成而实现移动终端的输入和输出功能,具体此处不做限定。
接口单元108用作至少一个外部装置与移动终端100连接可以通过的接口。例如,外部装置可以包括有线或无线头戴式耳机端口、外部电源(或电池充电器)端口、有线或无线 数据端口、存储卡端口、用于连接具有识别模块的装置的端口、音频输入/输出(I/O)端口、视频I/O端口、耳机端口等等。接口单元108可以用于接收来自外部装置的输入(例如,数据信息、电力等等)并且将接收到的输入传输到移动终端100内的一个或多个元件或者可以用于在移动终端100和外部装置之间传输数据。
存储器109可用于存储软件程序以及各种数据。存储器109可主要包括存储程序区和存储数据区,可选地,存储程序区可存储操作系统、至少一个功能所需的应用程序(比如声音播放功能、图像播放功能等)等;存储数据区可存储根据手机的使用所创建的数据(比如音频数据、电话本等)等。可选地,存储器109可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
处理器110是移动终端的控制中心,利用各种接口和线路连接整个移动终端的各个部分,通过运行或执行存储在存储器109内的软件程序和/或模块,以及调用存储在存储器109内的数据,执行移动终端的各种功能和处理数据,从而对移动终端进行整体监控。处理器110可包括一个或多个处理单元;优选的,处理器110可集成应用处理器和调制解调处理器,可选地,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器110中。
移动终端100还可以包括给各个部件供电的电源111(比如电池),优选的,电源111可以通过电源管理系统与处理器110逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。
尽管图1未示出,移动终端100还可以包括蓝牙模块等,在此不再赘述。
为了便于理解本申请实施例,下面对本申请的移动终端所基于的通信网络系统进行描述。
请参阅图2,图2为本申请实施例提供的一种通信网络系统架构图,该通信网络系统为通用移动通信技术的LTE系统,该LTE系统包括依次通讯连接的UE(User Equipment,用户设备)201,E-UTRAN(Evolved UMTS Terrestrial Radio Access Network,演进式UMTS陆地无线接入网)202,EPC(Evolved Packet Core,演进式分组核心网)203和运营商的IP业务204。
可选地,UE201可以是上述终端100,此处不再赘述。
E-UTRAN202包括eNodeB2021和其它eNodeB2022等。可选地,eNodeB2021可以通过回程(backhaul)(例如X2接口)与其它eNodeB2022连接,eNodeB2021连接到EPC203,eNodeB2021可以提供UE201到EPC203的接入。
EPC203可以包括MME(Mobility Management Entity,移动性管理实体)2031,HSS(Home Subscriber Server,归属用户服务器)2032,其它MME2033,SGW(Serving Gate Way,服务网关)2034,PGW(PDN Gate Way,分组数据网络网关)2035和PCRF(Policy and Charging Rules Function,政策和资费功能实体)2036等。可选地,MME2031是处理UE201和EPC203之间信令的控制节点,提供承载和连接管理。HSS2032用于提供一些寄存器来管理诸如归属位置寄存器(图中未示)之类的功能,并且保存有一些有关服务特征、数据速率等用户专用的信息。所有用户数据都可以通过SGW2034进行发送,PGW2035可以提供UE 201的IP地址分配以及其它功能,PCRF2036是业务数据流和IP承载资源的策略与计费控制策略决策点,它为策略与计费执行功能单元(图中未示)选择及提供可用的策略和计费控制决策。
IP业务204可以包括因特网、内联网、IMS(IP Multimedia Subsystem,IP多媒体子系统)或其它IP业务等。
虽然上述以LTE系统为例进行了介绍,但本领域技术人员应当知晓,本申请不仅仅适用于LTE系统,也可以适用于其他无线通信系统,例如GSM、CDMA2000、WCDMA、TD-SCDMA以及未来新的网络系统等,此处不做限定。
基于上述移动终端硬件结构以及通信网络系统,提出本申请各个实施例。
首先对本申请一种适用的应用场景进行介绍。
图3为本申请实施例提供的一种应用场景示意图。请参见图3,网络设备301和终端设备302之间可以进行无线通信,从而实现数据传输。可选地,终端设备302可以是图1中的移动终端或图2中的UE;网络设备301可以是图2中除UE以外的其它设备例如基站eNodeB。
本申请实施例的技术方案可应用于NR通信技术中,NR是指新一代无线接入网络技术,可以应用在未来演进网络,如第五代移动通信(the 5th Generation Mobile Communication,5G)系统中。本申请实施例中的方案还可以应用于无线保真(Wireless Fidelity,WIFI)和长期演进(Long Term Evolution,LTE)等其他无线通信网络中,相应的名称也可以用其他无线通信网络中的对应功能的名称进行替代。
本申请实施例描述的网络架构以及业务场景是为了更加清楚的说明本申请实施例的技术方案,并不构成对于本申请实施例提供的技术方案的限定,本领域普通技术人员可知,随着网络架构的演变和新业务场景的出现,本申请实施例提供的技术方案对于类似的技术问题,同样适用。
在5G通信中,终端设备302可以在多种工作状态之间进行切换。在终端设备302处于闲置态或非激活态时,网络设备301可以向终端设备302发起寻呼。可选地,终端设备302监听PDCCH,并通过PDCCH判断是否有给自己的寻呼指示:如果有,则进一步通过PDCSH获取所述寻呼信息,最后确认所述寻呼信息的内容是否与终端识别(UE identity)吻合,如吻合则响应该寻呼信息,如不吻合则忽略或丢弃此寻呼信息。
在一些实现中,网络设备301可以在同一时隙(slot)内发送PDCCH和PDSCH,终端设备302监听到PDCCH后,需要额外的处理时间确定PDCCH传输的内容,这些内容可能包含寻呼指示,该寻呼指示用于表示在PDSCH上是否有给终端设备302的寻呼信息。因此在确定PDCCH传输的内容之前,终端需要打开PDSCH的解析电路,保证PDSCH被正常解析,造成耗电。
在另一些实现中,网络设备301可以在不同的时隙内分别发送PDCCH和PDSCH。终端设备302在接收到PDCCH后,有足够的时间通过PDCCH确定是否有给自己的寻呼信息,终端设备302不需要在监听PDCCH的那一时隙解析PDSCH,因此能够省电。
为了更加灵活地实现通信并节约终端设备302的耗电,本申请提供一种信号处理方法,网络设备301可以向终端设备302发送唤醒信号,所述唤醒信号可以指示终端设备302监听PDCCH与解析PDSCH的时间间隔,终端设备302可以根据所述唤醒信号指示的时间间隔,在合适的时间打开PDSCH的解析电路。
当PDCCH与PDSCH之间需要间隔一定时间时,终端设备302可以在一定时间后再解析PDSCH,有效节约终端设备302的电量。当PDCCH与PDSCH之间不需要间隔一定时间时,终端设备302可以较早地开始解析PDSCH,提高处理效率。
下面以具体的实施例对本申请实施例的技术方案以及本申请的技术方案如何解决上述技术问题进行详细说明。下面这几个具体的实施例可以相互结合,对于相同或相似的概念或过程可能在某些实施例中不再赘述。下面将结合附图,对本申请实施例的实施例进行描述。
图4为本申请实施例提供的一种信号处理方法的流程示意图。本实施例中方法的执行 主体可以为网络设备。如图4所示,该方法可以包括:
步骤401、确定终端设备监听PDCCH与解析PDSCH的时间间隔。
可选地,终端设备监听PDCCH,可以是指终端设备接收PDCCH,如终端设备接收PDCCH上所携带的信息,例如DCI。终端设备解析PDSCH,可以是指终端设备接收PDSCH,如终端设备解析PDSCH上携带的数据,例如,寻呼信息。
所述监听PDCCH与解析PDSCH的时间间隔,可以是指监听PDCCH的任一时刻与解析PDSCH的任一时刻之间的时间间隔。
可选地,所述监听PDCCH与解析PDSCH的时间间隔可以包括以下至少一种:监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
在一个示例中,所述时间间隔为监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔。在这种情况下,终端设备可以先监听PDCCH再解析PDSCH或不解析PDSCH。
图5为本申请实施例提供的一种时间间隔示意图。假设所述时间间隔为t,终端设备在T 0时刻开始监听到PDCCH,在T 1时刻监听PDCCH结束,那么终端设备需要在T 1时刻之后,经过时间间隔t开始解析PDSCH,即,在T 1+t时刻开始解析PDSCH,保证PDSCH被正确地解析。
在另一示例中,所述时间间隔为开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。在这种情况下,监听PDCCH和解析PDSCH可能会有时间上的重叠。
图6为本申请实施例提供的另一种时间间隔示意图。同样假设所述时间间隔为t,终端设备在T 0时刻开始监听到PDCCH,在T 1时刻监听PDCCH结束,那么终端设备需要在T 0时刻之后,经过时间间隔t开始解析PDSCH,即,在T 0+t时刻开始解析PDSCH。在所述时间间隔t为0时,终端设备可以同时监听PDCCH和解析PDSCH,提高接收效率。
在又一示例中,所述时间间隔包括监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔,还包括开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔,终端设备可以对两个时间间隔进行核对,并在正确的时间开始解析PDSCH。通过指示多个时间间隔,使得终端设备可以更加准确地获知何时开始解析PDSCH,提高终端设备接收PDSCH的准确率。
可选地,所述时间间隔还可以是其它类型的时间间隔,只要能够使终端设备知道应该何时开始解析PDSCH即可。例如,所述时间间隔可以是监听PDCCH结束与监听PDSCH结束的时间,或者,开始监听PDSCH到监听PDSCH结束的时间等等。终端设备在了解PDCCH和PDSCH的持续时长后,可以根据所述时间间隔计算开始解析PDSCH的时刻。
步骤402、发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
可选地,所述唤醒信号可以发送给终端设备,使得终端设备可以根据所述唤醒信号确定监听PDCCH和解析PDSCH的时间间隔,并在合适的时间打开PDSCH的解析电路,实现对PDSCH的解析。
所述唤醒信号可以是唤醒信号(Wake Up Signal,WUS),也被称为寻呼提前指示(Paging Early Indication,PEI),提前寻呼指示(Early Paging Indication,EPI),可选地,也可以是其它任意类型的具有唤醒功能的信号。
可选地,所述唤醒信号还可以用于指示终端设备是否需要于PO唤醒并监听PDCCH,从而降低终端设备于PO监听PDCCH的功耗。并且,监听唤醒信号比监听PDCCH具有更小的功耗,在唤醒信号中设置用于指示所述时间间隔的指示信息,相比于在其它信号中设置用于指示所述时间间隔的指示信息,可以进一步节约终端设备的电量,对于时间配置也可以更为弹性。
可选地,所述PDCCH可以用于指示是否有发送给终端设备的寻呼信息。若终端设备确认所述PDCCH指示有发送给所述终端设备的寻呼信息,则根据所述时间间隔,解析PDSCH以得到寻呼信息;若所述终端设备确认所述PDCCH指示没有发送给所述终端设备的寻呼信息,则在经过所述时间间隔后,可以不解析PDSCH,以进一步实现省电。
本实施例提供的信号处理方法,通过确定终端设备监听PDCCH与解析PDSCH的时间间隔,并发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息,可以使终端设备在合适的时间开始解析PDSCH,在时间间隔为0时可以确保终端设备在接收信息时间上的连续性,提高寻呼终端设备的速度,在时间间隔不为0时,可以延迟解析PDSCH,节约终端设备的电量,延长电池寿命,从而可以实现弹性配置终端设备监听PDCCH和解析PDSCH的时间,满足不同场景下的应用需求。
下面结合上述实施例提供的技术方案,对如何配置时间间隔的指示信息进行进一步说明。
可选地,所述时间间隔可以为以下至少一种:0或大于0的时间;N个时间单位,N为大于或等于0的整数。
一个示例中,所述时间间隔可以通过时间段来表示,具体可以为0或大于0的时间,例如,所述时间间隔可以为1秒。通过大于或等于0的时间段可以灵活地表示时间间隔。
另一示例中,所述时间间隔可以通过N个时间单位来表示,例如,可以为2个时间单位。可选地,所述时间单位可以为任意时长的时间单位。可选地,所述时间单位可以为符号(symbol)或是时隙,所述符号可以为正交频分复用(Orthogonal Frequency Division Multiplexing,OFDM)符号。通过时间单位可以更加正规、简便地表示时间间隔。
可选地,也可以同时通过N个时间单位以及大于等于0的时间段来表示时间间隔,从而使终端设备能够更加准确地确定所述时间间隔,从而更加精准地接收PDSCH。
在确定所述时间间隔后,如何通过指示信息向终端通知所述时间间隔有多种实现方法。
在一种可选的实现方式中,所述指示信息可以为第一数值或第二数值。通过第一数值和第二数值可以确定对应的时间间隔。
可选地,所述第一数值可以表示所述时间间隔为0,和/或,所述第二数值可以表示所述时间间隔为预设时间间隔。所述第一数值和所述第二数值可以根据实际需要来设置,例如,可以分别为0和1。对应的,表1示出了一种可选的指示信息示例。
表1一种可选的指示信息示例
指示信息 时间间隔
0 0
1 预设时间间隔
所述第一数值和所述第二数值占用1个比特(bit)。在所述时间间隔表示监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔的情况下,以1个比特即可表示终端设备是否需要在监听PDCCH结束后延迟接收PDSCH。例如,0表示不需要延迟,1表示延迟预设时间间隔。
在所述时间间隔表示开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔的情况下,以1个比特即可表示终端设备是否需要同时接收PDCCH和PDSCH。例如,0表示需要同时接收,1表示在开始接收PDCCH后经过预设时间间隔再开始接收PDSCH。
可选地,所述预设时间间隔可以为一固定值,例如协议的时间长度。或者,所述预设时间间隔可以由无线资源控制(Radio Resource Control,RRC)信令配置。
通过上述实现方式,可以仅通过一位数据来区分是否需要延迟解析PDSCH,能够有效节约传输的信息长度,减少终端设备的负担。
在另一种可选的实现方式中,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述至少一个可选的时间间隔可以包括0、1个时间单位、2个时间单位、……、n个时间单位中的任意一项或多项,其中n为正整数。
以所述n=3为例,所述至少一个可选的时间间隔可以包括如下四项:0、1个时间单位、2个时间单位、3个时间单位。网络设备在向终端指示时间间隔时,可以从上述四个时间间隔中任选一个或多个。时间间隔与指示信息可以为一一对应关系,在确定所选择的时间间隔后,可以确定对应的指示信息。
可选地,可以以多个比特来指示时间间隔,例如以两个比特。对应的,表2示出了另一种可选的指示信息示例。
表2另一种可选的指示信息示例
指示信息 时间间隔
00 0
01 1个时间单位
10 2个时间单位
11 3个时间单位
如表2所示,四个指示信息与四个时间间隔一一对应。当网络设备需要确定终端设备对应的时间间隔时,可以从表中的4个时间间隔中选择,假设最终选择的时间间隔为2个时间单位,那么网络设备可以向终端设备发送对应的指示信息10,从而使终端设备可以通过解析10来确定对应的时间间隔为2个时间单位。
在所述时间间隔表示监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔的情况下,终端设备通过解析10确定对应的时间间隔为2个时间单位后,可以在监听PDCCH结束后经过2个时间单位再开始解析PDSCH。
在所述时间间隔表示开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔的情况下,终端设备通过解析10确定对应的时间间隔为2个时间单位后,可以在开始监听PDCCH后经过2个时间单位再开始解析PDSCH。
通过上述实现方式,不仅可以指示出是否需要延迟,还可以指示出需要延迟的具体时间,能够更加灵活地为终端设备配置延迟时间,满足不同场景下的应用需求。
在另一种可选的实现方式中,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。所述指示位用于表示是否在延迟对应的时间间隔后解析PDSCH。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。所述第三数值和第四数值可以根据实际需要来设置,例如可以分别为1和0。
根据指示信息中的至少一指示位,可以确定开始解析PDSCH的确切时间点。对应的,表3示出了又一种可选的指示信息示例。
表3又一种可选的指示信息示例
指示信息 解析的确切时间点
001 监听PDCCH后的2个时间单位
010 监听PDCCH后的1个时间单位
011 监听PDCCH后的第1与第2个时间单位
100 不需要延迟
101 不需要延迟以及监听PDCCH后的2个时间单位
110 不需要延迟以及监听PDCCH后的1个时间单位
111 不需要延迟以及监听PDCCH后的1个时间单位和2个时间单位
按照表3所示的方案,指示信息包括3个指示位,每一所述指示位与一个时间间隔相对应。一种实施方式中,按照由高到低的顺序,第一个指示位对应的时间间隔为0,第二个指示位对应的时间间隔为1个时间单位,第三个指示位对应的时间间隔为2个时间单位。
当某一指示位为1时,表示在延迟对应的时间间隔后解析PDSCH,当某一指示位为0时,表示在延迟对应的时间间隔后不解析PDSCH。
举例来说,在所述时间间隔表示监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔的情况下,当指示位为001时,第一个指示位和第二个指示位均为0,表示在间隔时间为0时以及在间隔时间为1个时间单位时不解析PDSCH,第三个指示位为1,表示在间隔时间为2个时间单位时解析PDSCH,即,在监听PDCCH结束并经过2个时间单位后解析PDSCH。
当指示位为011时,第一个指示位为0,表示在间隔时间为0时不解析PDSCH,第二个指示位和第三个指示位均为1,表示在间隔时间为1个时间单位时以及为2个时间单位时均解析PDSCH,即,在监听PDCCH结束并经过1个时间单位后解析PDSCH,在监听PDCCH结束并经过2个时间单位后也需要解析PDSCH。
基于类似的原理,在所述时间间隔表示开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔的情况下,001可以表示在开始监听PDCCH后经过2个时间单位再开始解析PDSCH,011可以表示在开始监听PDCCH后经过1个时间单位时需要解析PDSCH,在开始监听PDCCH后经过2个时间单位时也需要解析PDSCH。
可选地,也可以仅在所述指示位为第三数值时,表示在延迟对应的时间间隔后解析PDSCH,所述指示位为其它数值时不表示具体意义;或者,也可以仅所述指示位为第四数值时,表示在延迟对应的时间间隔后不解析PDSCH,所述指示位为其它数值时不表示具体意义。这两种情况下,终端设备也可以根据所述指示位的数值来确定在对应的时间间隔需要进行的操作。
以上提供了每一指示位对应一个时间间隔的具体实现方案。在此基础上,也可以设置每一所述指示位与多个时间间隔相对应。例如,经常需要同时在间隔1个时间单位后和间隔2个时间单位后解析PDSCH,那么,可以设置某一指示位对应于1个时间单位、2个时间单位这两个时间间隔。当该指示位为1时,需要在监听PDCCH后经过1个时间单位和2个时间单位时均解析PDSCH;和/或,当该指示位为0时,在监听PDCCH后经过1个时间单位和2个时间单位时均不解析PDSCH,从而有效节约传输的信息的长度。
通过上述实现方式,可以在指示信息中设置至少一指示位,每一指示位可以对应于至少一时间间隔,以指示是否在延迟所述时间间隔后解析PDSCH,从而通过指示位和时间 间隔的对应关系,可以快速通过某一时间间隔处是否需要解析PDSCH来确定对应的指示位的值,或者,快速通过指示位确定相应时间间隔处是否需要解析PDSCH,有效提高时间间隔和指示信息的转换效率,尤其适用于可能会在多个时间间隔处解析PDSCH的场景。
以上提供了几种方案来说明如何配置时间间隔的指示信息。可选地,终端可以保存有通过指示信息确定时间间隔的策略,例如上述的表1、表2或表3,或者表3对应的方案中每一指示位代表哪些时间间隔,从而在接收到指示信息后,可以根据指示信息确定对应的时间间隔,保证PDSCH被正确解析。在一些实现中,所述时间间隔策略可以通过RRC信令动态配置。
在上述各实施例提供的技术方案的基础上,可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息可以用于指示对应的终端设备使用所述时间间隔,也可以用于指示对应的终端设备不使用所述时间间隔,例如保持静默(或称为休眠/睡眠/Sleep)。
可选地,终端设备接收到所述唤醒信号后,可以判断所述唤醒信号中的终端指示信息是否与自身相一致,若一致,说明可以使用所述唤醒信号指示的时间间隔,和/或,若不一致,说明唤醒信号指示的时间间隔与自身无关。
可选地,所述终端指示信息可以包括:群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可以根据实际需要来配置终端指示信息的具体指示涵义,可选地,在所述终端指示信息指示的内容有冲突时,例如,群组的标识指示的信息与终端设备的标识指示的信息有冲突时,可以根据预设的规则确定冲突解决办法,例如,以群组指示为准,或者,以终端设备指示为准。
举例来说,可以设置终端指示信息包括群组的标识,用于指示该群组内所有终端都保持静默,还包括终端设备的标识,用于指示该终端设备使用所述时间间隔。若在某一终端指示信息中,终端设备的标识对应的终端设备属于群组的标识对应的群组,则可以以群组的标识的指示为准,忽略所述终端设备的标识。
下面给出一些可选的配置示例。
可选地,所述终端指示信息可以包括:群组的标识,用于指示所述群组内的所有终端设备使用所述时间间隔;和/或,终端设备的标识,用于指示所述终端设备使用所述时间间隔。
可选地,所述终端指示信息可以包括:群组的标识,用于指示所述群组内的所有终端设备保持静默;和/或,终端设备的标识,用于指示所述终端设备保持静默。
可选地,所述终端指示信息可以包括:群组的标识,用于指示所述群组内的部分终端设备使用所述时间间隔;和/或,终端设备的标识,用于指示所述终端设备保持静默。
可选地,所述终端指示信息可以包括:群组的标识,用于指示所述群组内的部分终端设备保持静默;和/或,终端设备的标识,用于指示所述终端设备使用所述时间间隔。
可选地,任一群组可以包括多个终端设备,也可以仅包括一个终端设备,当唤醒信号中包含群组的标识时,该群组内的所有终端设备都可以使用所述唤醒信号指示的时间间隔,从而通过群组的标识对终端设备进行指示,简单快捷,且有效节约传输的信息的长度。
或者,所述唤醒信号中可以直接包含终端设备的标识,相应的终端设备可以使用所述唤醒信号指示的时间间隔,从而更加精准地对特定的终端设备进行指示。
可选地,任一群组可以包括多个终端设备,也可以仅包括一个终端设备,当唤醒信号中包含群组的标识时,该群组内的所有终端设备都保持静默,从而通过群组的标识对终端设备进行指示,简单快捷,且有效节约传输的信息的长度,达到省电功效。
或者,所述唤醒信号中可以直接包含终端设备的标识,相应的终端设备保持静默,从而更加精准地对特定的终端设备进行指示,达到省电功效。
可选地,所述唤醒信号也可以既包含群组的标识,又包含终端设备的标识,唤醒信号中群组的标识对应的群组内的所有终端设备以及终端设备的标识对应的终端设备,均可以使用所述唤醒信号指示的时间间隔,或者均保持静默,从而实现群组和单个设备的混合指示。
可选地,所述唤醒信号也可以既包含群组的标识,又包含终端设备的标识,唤醒信号中群组的标识对应的群组内的所有终端设备除了终端设备的标识对应的终端设备,均可以使用所述唤醒信号指示的时间间隔,从而实现群组和单个设备的混合指示或是类似子群组的指示方式。
可选地,所述唤醒信号也可以既包含群组的标识,又包含终端设备的标识,唤醒信号中群组的标识对应的群组内的所有终端设备除了终端设备的标识对应的终端设备,保持静默,从而实现群组和单个设备的混合指示或是类似子群组的指示方式。
可选地,在所述终端指示信息仅包括群组的标识、不包括终端设备的标识时,也可以指示部分终端设备使用所述时间间隔或者保持静默,例如,群组内满足预设条件的终端设备才使用所述时间间隔或者保持静默。所述预设条件可以根据实际需要来设置,例如可以为终端设备的电量大于某一阈值、终端设备内预置有某些字段等等。
可选地,不同群组的终端可以监听不同的PDCCH和/或PDSCH时频资源,也可以引入新的P-RNTI(Paging Radio Network Temporary Identifier,寻呼无线网路临时识别)来区别不同群组的终端设备,从而高效实现以群组方式寻呼终端设备。
可以理解的是,所述唤醒信号也可以不包含终端指示信息,接收到所述唤醒信号的所有终端都可以使用所述唤醒信号中携带的时间间隔。
在上述各实施例提供的技术方案的基础上,可选地,网络设备还可以:发送PDCCH;和/或,在发送PDCCH后,延迟所述时间间隔,发送PDSCH。下面给出一种具体实现过程的示例。
在实际应用中,网络设备可以先发送唤醒信号。所述唤醒信号可以包含指示信息,用于指示监听PDCCH和解析PDSCH的时间间隔。终端设备可以根据所述唤醒信号确定对应的时间间隔。
可选地,所述唤醒信号可以为下行控制信息(Downlink Control Information,DCI),具体可以沿用DCI format 1_0或是DCI format 2_6或是定义新的DCI,本申请实施例对此不作限制。通过DCI可以快速实现唤醒信号的传输,提高传输效率和准确率。
可选地,所述唤醒信号由RRC信令配置。具体来说,终端设备接收唤醒信号的时间点可以由RRC信令配置,从而更加灵活地实现唤醒信号的配置,保障网络设备和终端设备的顺利通信。
可选地,还可以通过唤醒信号指示终端设备是否需要于PO监听PDCCH。若需要,则终端设备需要在PO或PO之前唤醒并于PO监听PDCCH。
可选地,网络设备可以在发送唤醒信号后,发送PDCCH,在发送PDCCH后经过所述时间间隔,发送PDSCH。终端设备根据PDCCH判断是否有给自己的寻呼信息。具体来说,根据PDCCH判断是否有给自己的寻呼信息,可以通过检测PDCCH携带的P-RNTI来实现。
可选地,PDCCH可以包含寻呼指示,所述寻呼指示可以包含循环冗余检测(Cyclic redundancy check,CRC)与P-RNTI加扰(scrambled)后的信息。
终端在监听PDCCH后,若PDCCH是通过某一P-RNTI加扰的,该P-RNTI与终端设备对应的P-RNTI一致,则说明有给自己的寻呼信息,那么终端设备可以依据唤醒信号指示的时间间隔解析PDSCH以接收寻呼信息。
在上述实现方案中,在一个寻呼周期内发送PDCCH和PDSCH并不一定是必须的。例如,若在某一寻呼周期内终端设备不需要监听PDCCH,则网络设备可以不发送PDCCH。又例如,若在某一寻呼周期内没有给终端设备的寻呼信息,则网络设备可以不发送PDSCH。在实际应用中可以根据需求来配置PDCCH和PDSCH的具体发送情况,本申请实施例对此不作限制。
在上述实施例提供的技术方案的基础上,可选地,还可以根据实际需要来设计不同场景下监听PDCCH和解析PDSCH的时间间隔。
当指示监听PDCCH结束与开始解析PDSCH的时间间隔为0时,终端设备可以在监听PDCCH后立刻开始解析PDSCH,减少终端设备开关电路的次数,提升电路使用寿命。例如,在终端设备有高SNR(signal noise ratio,信噪比)接收场景下不需要额外的SSB(synchronization signal and PBCH block同步信号和PBCH块,其中PBCH为physical broadcasting channel,物理广播信道)测量即可解析寻呼信息,确保终端在特定场景下在接收信息时间上的连续性,减少电路开关次数。
当指示监听PDCCH结束与开始解析PDSCH的时间间隔大于0时,终端设备可以在监听PDCCH后,经过一定的时间再开始解析PDSCH,或者,在通过PDCCH判断没有给自己的寻呼信息时不解析PDSCH,从而有效实现省电,享受跨时隙调度(cross-slot scheduling)带来的好处。
一个示例中,当网络设备要寻呼的终端设备较多时,可以将所述时间间隔设置为0。例如,当某一群组中所有的终端设备或者大部分终端设备都要接收寻呼信息,则可以设置该群组对应的时间间隔为0。
所有的终端设备监听PDCCH后,直接开始解析PDSCH,不需要额外花时间判断PDCCH是否指示了有给自己的寻呼信息,因为这种场景下大部分终端设备都需要接收寻呼信息,因此设置时间间隔为0能够快速实现数据传输,确保终端设备在特定场景下在接收信息时间上的连续性,避免电路频繁开关,并且可以使终端设备尽快响应寻呼信息。
另一示例中,当网络设备要寻呼的终端设备较少时,可以将所述时间间隔设置为大于0的数值,给终端设备留出时间来判断PDCCH是否指示了有给自己的寻呼信息。
若有给自己的寻呼信息,则进一步在时间间隔后解析PDSCH以获取寻呼信息;若没有给自己的寻呼信息,则可以不解析PDSCH,从而有效实现省电。
可选地,还可以为终端设备设置不同长度的时间间隔。设置时间间隔时可以考虑的因素包括但不限于:终端设备的省电方案、处理PDCCH的时长、当前寻呼情况等等。
通过上述方案,可以弹性配置终端监听PDCCH和解析PDSCH的时间,监听PDCCH与解析PDSCH可以同时进行,可以依次连续进行,也可以间隔一段时间,满足不同场景下的应用需求。
图7为本申请实施例提供的另一种信号处理方法的流程示意图。本实施例中方法的执行主体可以为终端设备。如图7所示,所示方法包括:
步骤701、接收唤醒信号,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔。
步骤702、根据所述时间间隔在监听PDCCH后解析PDSCH。
本实施例中方法的具体实现原理和过程可以参见前述实施例,此处不再赘述。
本实施例提供的信号处理方法,接收唤醒信号,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔,并根据所述时间间隔在监听PDCCH后解析PDSCH,可以使终端设备在合适的时间开始解析PDSCH,在时间间隔为0时可以确保终端设备在接收信息时间上的连续性,提高寻呼终端设备的速度,在时间间隔不为0时,可以延迟解析PDSCH,节约终端设备的电量,延长电池寿命,从而可以实现弹性配置终端设备监听PDCCH和解析PDSCH的时间,满足不同场景下的应用需求。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,根据所述时间间隔在监听PDCCH后解析PDSCH,包括:
若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
本实施例提供的方法具体实现原理和技术效果与前述各实施例类似,本实施例此处不再赘述。
图8为本申请实施例提供的又一种信号处理方法的流程示意图。本实施例中方法的执行主体可以为终端设备。如图8所示,该方法可以包括:
步骤801、获取终端群组的信息。
可选地,所述终端群组可以是所述终端设备所属的终端群组。所述终端群组的信息可以为能够指示终端群组的任意信息,例如,终端群组的标识等。
步骤802、基于所述终端群组的信息监听唤醒信号,所述唤醒信号用于指示所述终端群组监听PDCCH与解析PDSCH的时间间隔。
可选地,所述唤醒信号可以是网络设备基于终端群组的信息发送的,不同的终端群组可以对应相同或不同的唤醒信号。
在一种可选的实现方式中,一个周期内可以向部分或全部终端群组发送唤醒信号。终端设备可以根据自身所属的终端群组确定当前周期内是否有发送给自身的唤醒信号,若有,则在预设的时频资源上监听寻呼信号,反之则不监听唤醒信号。
在另一种可选的实现方式中,可以为各个终端群组配置时频资源以监听唤醒信号。可选地,终端设备可以基于所述终端群组的信息确定监听唤醒信号的时频资源信息,并根据所述时频资源信息监听唤醒信号。
可选地,不同的终端群组可以对应于相同或不同的时频资源信息,从而终端群组可以在对应的时频资源上监听唤醒信号,提升对终端设备的控制效果,有效节约终端设备的电量。可选地,终端群组与时频资源信息的对应关系,可以通过RRC信令获取,或者,可以采用预先配置好的对应关系。
举例来说,可以配置终端群组A在T a时刻监听唤醒信号,配置终端群组B在T b时刻监听唤醒信号,则终端群组A和B可以分别于T a和T b时刻监听唤醒信号,且终端群组A和终端群组B监听到的唤醒信号的内容可以相同,也可以不同。
可选地,所述T a时刻与T b时刻可以分别是终端群主A与终端群组B的ps-Offset(Power Saving Offset,省电偏移量),所述ps-Offset可以经由RRC配置。
可选地,所述唤醒信号可以用于指示所述终端群组监听PDCCH与解析PDSCH的时间间隔。即,不同的终端群组监听PDCCH与解析PDSCH的时间间隔可以相同,也可以不同。
终端设备可以根据所述唤醒信号确定监听PDCCH和解析PDSCH的时间间隔,并在合适的时间打开PDSCH的解析电路,实现对PDSCH的解析。
在图4所示实施例中,终端设备先接收唤醒信号,然后根据唤醒信号确定时间间隔,在监听PDCCH后经过所述时间间隔解析PDSCH。在图8所示实施例中,终端设备确定终端群组的信息,并基于终端群组的信息监听唤醒信号,如果自身所属的终端群组是唤醒信号对应的终端群组,则监听唤醒信号,反之则不监听,从而更加有针对性地实现唤醒信号的监听。
监听到唤醒信号后的具体处理流程和原理可以参见前述实施例,此处不再赘述。
本实施例提供的信号处理方法,通过获取终端群组的信息,基于所述终端群组的信息监听唤醒信号,所述唤醒信号用于指示所述终端群组监听PDCCH与解析PDSCH的时间间隔,可以使终端设备在合适的时间开始解析PDSCH,在时间间隔为0时可以确保终端设备在接收信息时间上的连续性,提高寻呼终端设备的速度,在时间间隔不为0时,可以延迟解析PDSCH,节约终端设备的电量,延长电池寿命,从而可以实现弹性配置终端设备监听PDCCH和解析PDSCH的时间,并且,基于终端群组的信息监听唤醒信号可以进一步节约终端设备的电量,满足不同场景下的应用需求。
在上述实施例提供的技术方案的基础上,可选地,所述获取终端群组的信息包含以下至少一种:
根据国际移动用户识别码(International Mobile Subscriber Identity,IMSI)确定或计算所属终端群组;
根据国际移动设备识别码(International Mobile Equipment Identity,IMEI)确定或计算所属终端群组;
根据网路配置5G服务临时移动用户标识(5G S-Temporary Mobile Subscriber Identity,5G-S-TMSI)确定或计算所属终端群组;
根据网路无线资源控制信令确定或配置所属终端群组;
根据终端设备的类型确定或计算所属终端群组。
可选地,在根据国际移动用户识别码确定或计算所属终端群组时,可以按照预设的策略对终端设备对应的国际移动用户识别码进行处理,以确定所属的终端群组。
一个示例中,当所述终端设备对应的国际移动用户识别码为单数时,确定所述终端设备属于终端群组A,当所述终端设备对应的国际移动用户识别码为双数时,确定所述终端设备属于终端群组B。
另一示例中,可以通过公式或表格配置国际移动用户识别码与终端群组的映射关系,根据该映射关系计算国际移动用户识别码对应的终端群组。
又一示例中,可以根据国际移动用户识别码依据基站对终端群组规划的数量计算终端群组,例如,该基站预计划分三个不同终端群组,因此可以对国际移动用户识别码取模(mod,modulo)计算,确定所述终端群组。
可选地,也可以根据国际移动设备识别码确定或计算所属终端群组,或者,根据5G服务临时移动用户标识确定或计算所属终端群组。具体的确定或计算方式可以参考根据国际移动用户识别码确定或计算所属终端群组的方式。
通过国际移动用户识别码、国际移动设备识别码、5G服务临时移动用户标识等标识来确定或计算终端设备所属的终端群组,能够基于终端设备的自身标识简单、快捷地确定终端群组,提升确定终端群组的灵活性。
可选地,也可以根据RRC信令确定或配置所属终端群组。例如,RRC信令可以直接指示终端设备所属的群组,或者,RRC信令可以包含用于配置所属终端群组的辅助信息,终端设备可以根据RRC信令中的辅助信息配置所属终端群组,从而更加灵活地实现终端群组的配置,保障网络设备和终端设备的顺利通信。
可选地,也可以根据终端设备的类型确定或计算所属终端群组。所述终端设备的类型可以包括以下至少一种:移动终端、物联网终端(IOT equipment)、简易型终端(NR light equipment)、工业物联终端(IIOT equipment)。通过终端设备的类型可以将终端设备分为多个终端群组,不同的类型可以对应不同的终端群组。
可选地,所述移动终端可以是如图1所示的终端,所述物联网终端可以是应用于物联网的终端例如智能家庭终端、车联网,所述简易型终端可以是简化版、轻量版的5G NR终端、穿戴装置,所述工业物联终端可以是应用于工业物联网的终端。当然,终端设备的类型也可以不仅限于以上四种方式,可以根据实际场景需要扩展更多类型的终端设备。
通过将不同类型的终端设备分到不同的终端群组,能够实现分别向不同的终端群组发送唤醒信号,满足不同场景下的业务需求以及唤醒不同类型终端设备的需要。
可选地,还可以根据国际移动用户识别码、国际移动设备识别码、5G服务临时移动用户标识、RRC信令、终端设备的类型中的至少两项来共同确定或计算所属终端群组。
一个示例中,可以根据国际移动用户识别码、国际移动设备识别码,利用预设的算法确定所属终端群组。例如,国际移动用户识别码为单数、国际移动设备识别码也为单数的终端设备属于终端群组A;国际移动用户识别码为单数、国际移动设备识别码为双数的终端设备属于终端群组B;国际移动用户识别码为双数、国际移动设备识别码为单数的终端设备属于终端群组C;国际移动用户识别码为双数、国际移动设备识别码也为双数的终端设备属于终端群组D。
另一示例中,可以根据国际移动用户识别码和RRC信令确定所属终端群组。例如,先通过国际移动用户识别码计算所属的终端群组,再基于RRC信令的内容对计算得到的 终端群组进行验证,若一致,则基于终端群组的信息监听唤醒信号,和/或,若不一致,则采用预设策略进行后续处理,例如默认属于某一终端群组,或者不监听寻呼信号;或者可以基于国际移动用户识别码和RRC信令中的辅助信息共同计算所属终端群组,例如终端设备依据国际移动用户识别码计算终端群组再经由RRC配置的偏移信息确定最终所属终端群组。
通过上述的多项信息共同确定或计算终端设备所属的群组信息,可以更加精细或者准确地对终端群组进行划分,提高监听唤醒信号的效率和灵活性。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:0或大于0的时间;N个时间单位,N为大于或等于0的整数。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,终端指示信息指示的群组,与步骤801中的终端群组可以相同,也可以不同。
可选地,终端设备可以先根据所属终端群组的信息监听唤醒信号,不同的终端群组可以监听相同或不同的唤醒信号;在接收到唤醒信号后,可以根据唤醒信号指示的群组确定是否使用所述唤醒信号指示的时间间隔。
举例来说,终端设备所属的终端群组为A,则可以监听终端群组A对应的唤醒信号,假设所述唤醒信号指示群组A1使用所述时间间隔、群组A2保持静默,其中A1和A2均为A的子群组,则终端设备可以根据自身所属的子群组确定是否使用所述唤醒信号指示的时间间隔。
通过根据终端群组的信息监听唤醒信号,并在唤醒信号中进一步对群组的操作作出指示,可以实现多层次的群组配置策略,从而更加精准与灵活地对终端设备进行控制。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述方法还包括:根据所述时间间隔在监听PDCCH后解析PDSCH。
可选地,根据所述时间间隔在监听PDCCH后解析PDSCH,包括:若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
本实施例中方法的原理、过程和效果可以参见前述实施例,此处不再赘述。
图9为本申请实施例提供的再一种信号处理方法的流程示意图。本实施例中方法的执行主体可以为网络设备。如图9所示,该方法可以包括:
步骤901、确定终端群组的信息以及所述终端群组监听PDCCH与解析PDSCH的时间间隔。
步骤902、基于所述终端群组的信息发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
可选地,所述网络设备可以确定哪个或哪些终端群组需要监听唤醒信号,还可以基于需要监听唤醒信号的终端群组的信息发送唤醒信号。不同的终端群组可以对应相同或不同的唤醒信号。
本实施例中网络设备执行的流程可以与图8所示实施例中终端设备执行的流程对应,具体处理流程和原理可以参见前述实施例,此处不再赘述。
本实施例提供的信号处理方法,通过确定用于监听唤醒信号的终端群组的信息以及所述终端群组监听PDCCH与解析PDSCH的时间间隔,并基于所述终端群组的信息发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息,可以使终端设备在合适的时间开始解析PDSCH,在时间间隔为0时可以确保终端设备在接收信息时间上的连续性,提高寻呼终端设备的速度,在时间间隔不为0时,可以延迟解析PDSCH,节约终端设备的电量,延长电池寿命,从而可以实现弹性配置终端设备监听PDCCH和解析PDSCH的时间,并且,基于终端群组的信息监听唤醒信号可以进一步节约终端设备的电量,满足不同场景下的应用需求。
可选地,所述确定终端群组的信息包括以下至少一种:根据国际移动用户识别码确定或计算终端设备所属的终端群组;根据国际移动设备识别码确定或计算终端设备所属的终端群组;根据网路配置5G服务临时移动用户标识确定或计算终端设备所属的终端群组;根据网路无线资源控制信令确定或配置终端设备所属的终端群组;根据终端设备的类型确定或计算终端设备所属的终端群组。
可选地,基于所述终端群组的信息发送唤醒信号,包括:基于终端群组的信息确定发送唤醒信号的时频资源信息;根据所述时频资源信息发送所述唤醒信号。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:0或大于0的时间;N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH; 和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述方法还包括:发送PDCCH;和/或,在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
本实施例中方法的原理、过程和效果可以参见前述实施例,此处不再赘述。
图10为本申请实施例提供的一种信号处理装置的结构示意图。所述信号处理装置可以应用于网络设备。如图10所示,所述信号处理装置可以包括:
确定模块1001,用于确定终端设备监听PDCCH与解析PDSCH的时间间隔;
发送模块1002,用于发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述发送模块1002还用于:
发送PDCCH;和/或,
在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
本实施例提供的装置,可用于执行图4至图6所示方法实施例的技术方案,其实现原理和技术效果类似,本实施例此处不再赘述。
图11为本申请实施例提供的另一种信号处理装置的结构示意图。所述信号处理装置可以应用于终端设备。如图11所示,所述信号处理装置可以包括:
接收模块1101,用于接收唤醒信号,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
处理模块1102,用于根据所述时间间隔在监听PDCCH后解析PDSCH。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述处理模块1102具体用于:
若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
本实施例提供的装置,可用于执行图7所示方法实施例的技术方案,其实现原理和技术效果类似,本实施例此处不再赘述。
图12为本申请实施例提供的又一种信号处理装置的结构示意图。所述信号处理装置可以应用于终端设备。如图12所示,所述信号处理装置可以包括:
获取模块1201,用于获取终端群组的信息;
监听模块1202,用于基于所述终端群组的信息监听唤醒信号,所述唤醒信号用于指示所述终端群组监听PDCCH与解析PDSCH的时间间隔。
可选地,所述获取模块1201具体用于执行以下至少一种:
根据国际移动用户识别码确定或计算所属终端群组;
根据国际移动设备识别码确定或计算所属终端群组;
根据网路配置5G服务临时移动用户标识确定或计算所属终端群组;
根据网路无线资源控制信令确定或配置所属终端群组;
根据终端设备的类型确定或计算所属终端群组。
可选地,所述监听模块1202具体用于:
基于所述终端群组的信息确定监听唤醒信号的时频资源信息;
根据所述时频资源信息监听唤醒信号。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,
所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述监听模块1202还用于:
根据所述时间间隔在监听PDCCH后解析PDSCH。
可选地,所述监听模块1202在根据所述时间间隔在监听PDCCH后解析PDSCH时,具体用于:
若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
本实施例提供的装置,可用于执行图8所示方法实施例的技术方案,其实现原理 和技术效果类似,本实施例此处不再赘述。
图13为本申请实施例提供的再一种信号处理装置的结构示意图。所述信号处理装置可以应用于网络设备。如图13所示,所述信号处理装置可以包括:
信息确定模块1301,用于确定终端群组的信息以及所述终端群组监听PDCCH与解析PDSCH的时间间隔;
信号发送模块1302,用于基于所述终端群组的信息发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
可选地,所述信息确定模块1301在确定终端群组的信息时,具体用于执行以下至少一种:
根据国际移动用户识别码确定或计算终端设备所属的终端群组;
根据国际移动设备识别码确定或计算终端设备所属的终端群组;
根据网路配置5G服务临时移动用户标识确定或计算终端设备所属的终端群组;
根据网路无线资源控制信令确定或配置终端设备所属的终端群组;
根据终端设备的类型确定或计算终端设备所属的终端群组。
可选地,所述信号发送模块1302具体用于:
基于终端群组的信息确定发送唤醒信号的时频资源信息;
根据所述时频资源信息发送所述唤醒信号。
可选地,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
可选地,所述时间间隔为以下至少一种:
0或大于0的时间;
N个时间单位,N为大于或等于0的整数。
可选地,所述指示信息为第一数值或第二数值。
可选地,所述第一数值表示所述时间间隔为0;和/或,
所述第二数值表示所述时间间隔为预设时间间隔。
可选地,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
可选地,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
可选地,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
可选地,所述唤醒信号还包括终端指示信息。
可选地,所述终端指示信息包括:
群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
可选地,所述唤醒信号为DCI。
可选地,所述唤醒信号由RRC信令配置。
可选地,所述信号发送模块1302还用于:
发送PDCCH;和/或,
在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
本实施例提供的装置,可用于执行图9所示方法实施例的技术方案,其实现原理和技术效果类似,本实施例此处不再赘述。
图14为本申请实施例提供的一种通信设备的结构示意图。本实施例所述的通信设备可以是前述方法实施例中提到的终端设备(或者可用于终端设备的部件)或者网络设备(或者可用于网络设备的部件)。通信设备可用于实现上述方法实施例中描述的对应于终端设备或者网络设备的方法,具体参见上述方法实施例中的说明。
如图14所示,本实施例的通信设备包括:处理器1401以及存储器1402;可选地,所述存储器1402,用于存储计算机执行指令;所述计算机执行指令被所述处理器1401执行时实现上述任一实施例中的信号处理方法。具体可以参见前述方法实施例中的相关描述。
可选地,存储器1402既可以是独立的,也可以跟处理器1401集成在一起。
本申请实施例提供的通信设备的功能和效果可以参见前述实施例,此处不再赘述。
本申请实施例还提供一种计算机可读存储介质,所述计算机可读存储介质中存储有计算机执行指令,当处理器执行所述计算机执行指令时,实现如上所述的信号处理方法。
本申请实施例还提供一种计算机程序产品,所述计算机程序产品包括计算机程序代码,当所述计算机程序代码在计算机上运行时,使得计算机执行如上各种可能的实施方式中所述的方法。
本申请实施例还提供一种芯片,包括存储器和处理器,所述存储器用于存储计算机程序,所述处理器用于从所述存储器中调用并运行所述计算机程序,使得安装有所述芯片的通信设备执行如上各种可能的实施方式中所述的方法。
在本申请所提供的几个实施例中,应该理解到,所揭露的设备和方法,可以通过其它的方式实现。例如,以上所描述的设备实施例仅仅是示意性的,例如,所述模块的划分,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,例如多个模块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,装置或模块的间接耦合或通信连接,可以是电性,机械或其它的形式。
上述以软件功能模块的形式实现的集成的模块,可以存储在一个计算机可读取存储介质中。上述软件功能模块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)或处理器(processor)执行本申请各个实施例所述方法的部分步骤。
应理解,上述处理器可以是中央处理单元(Central Processing Unit,CPU),还可以是其他通用处理器、数字信号处理器(Digital Signal Processor,简称:DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。结合发明所公开的方法的步骤可以直接体现为硬件处理器执行完成,或者用处理器中的硬件及软件模块组合执行完成。
存储器可能包含高速RAM存储器,也可能还包括非易失性存储NVM,例如至少一个磁盘存储器,还可以为U盘、移动硬盘、只读存储器、磁盘或光盘等。
总线可以是工业标准体系结构(Industry Standard Architecture,ISA)总线、外部设备互连(Peripheral Component,PCI)总线或扩展工业标准体系结构(Extended Industry Standard Architecture,EISA)总线等。总线可以分为地址总线、数据总线、控制总线等。为便于表示,本申请附图中的总线并不限定仅有一根总线或一种类型的总线。
上述存储介质可以是由任何类型的易失性或非易失性存储设备或者它们的组合实现,如静态随机存取存储器(SRAM),电可擦除可编程只读存储器(EEPROM),可擦除可 编程只读存储器(EPROM),可编程只读存储器(PROM),只读存储器(ROM),磁存储器,快闪存储器,磁盘或光盘。存储介质可以是通用或专用计算机能够存取的任何可用介质。
上述本申请实施例序号仅仅为了描述,不代表实施例的优劣。
在本申请中,对于相同或相似的术语概念、技术方案和/或应用场景描述,一般只在第一次出现时进行详细描述,后面再重复出现时,为了简洁,一般未再重复阐述,在理解本申请技术方案等内容时,对于在后未详细描述的相同或相似的术语概念、技术方案和/或应用场景描述等,可以参考其之前的相关详细描述。
在本申请中,对各个实施例的描述都各有侧重,某个实施例中没有详述或记载的部分,可以参见其它实施例的相关描述。
本申请技术方案的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本申请记载的范围。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在如上的一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,被控终端,或者网络设备等)执行本申请每个实施例的方法。
以上仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (59)

  1. 一种信号处理方法,其特征在于,应用于网络设备,所述方法包括:
    确定终端设备监听PDCCH与解析PDSCH的时间间隔;
    发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
  2. 根据权利要求1所述的方法,其特征在于,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
    监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
    开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
  3. 根据权利要求1所述的方法,其特征在于,所述时间间隔为以下至少一种:
    0或大于0的时间;
    N个时间单位,N为大于或等于0的整数。
  4. 根据权利要求1至3中任一项所述的方法,其特征在于,所述指示信息为第一数值或第二数值。
  5. 根据权利要求4所述的方法,其特征在于,
    所述第一数值表示所述时间间隔为0;和/或,
    所述第二数值表示所述时间间隔为预设时间间隔。
  6. 根据权利要求1至3中任一项所述的方法,其特征在于,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
  7. 根据权利要求1至3中任一项所述的方法,其特征在于,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
  8. 根据权利要求7所述的方法,其特征在于,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
  9. 根据权利要求1至3中任一项所述的方法,其特征在于,所述唤醒信号还包括终端指示信息。
  10. 根据权利要求9所述的方法,其特征在于,所述终端指示信息包括:
    群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
    终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
  11. 根据权利要求1至3中任一项所述的方法,其特征在于,所述唤醒信号为DCI。
  12. 根据权利要求11所述的方法,其特征在于,所述唤醒信号由RRC信令配置。
  13. 根据权利要求1至3中任一项所述的方法,其特征在于,还包括:
    发送PDCCH;和/或,
    在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
  14. 一种信号处理方法,其特征在于,应用于终端设备,所述方法包括:
    接收唤醒信号,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
    根据所述时间间隔在监听PDCCH后解析PDSCH。
  15. 根据权利要求14所述的方法,其特征在于,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
    监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
    开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
  16. 根据权利要求14所述的方法,其特征在于,所述时间间隔为以下至少一种:
    0或大于0的时间;
    N个时间单位,N为大于或等于0的整数。
  17. 根据权利要求14至16中任一项所述的方法,其特征在于,所述指示信息为第一数值或第二数值。
  18. 根据权利要求17所述的方法,其特征在于,
    所述第一数值表示所述时间间隔为0;和/或,
    所述第二数值表示所述时间间隔为预设时间间隔。
  19. 根据权利要求14至16中任一项所述的方法,其特征在于,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
  20. 根据权利要求14至16中任一项所述的方法,其特征在于,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
  21. 根据权利要求20所述的方法,其特征在于,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
  22. 根据权利要求14至16中任一项所述的方法,其特征在于,所述唤醒信号还包括终端指示信息。
  23. 根据权利要求22所述的方法,其特征在于,所述终端指示信息包括:
    群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
    终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
  24. 根据权利要求14至16中任一项所述的方法,其特征在于,所述唤醒信号为DCI。
  25. 根据权利要求24所述的方法,其特征在于,所述唤醒信号由RRC信令配置。
  26. 根据权利要求14至16中任一项所述的方法,其特征在于,根据所述时间间隔在监听PDCCH后解析PDSCH,包括:
    若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
  27. 一种信号处理方法,其特征在于,应用于终端设备,所述方法包括:
    获取终端群组的信息;
    基于所述终端群组的信息监听唤醒信号,所述唤醒信号用于指示所述终端群组监听PDCCH与解析PDSCH的时间间隔。
  28. 根据权利要求27所述的方法,其特征在于,所述获取终端群组的信息包含以下至少一种:
    根据国际移动用户识别码确定或计算所属终端群组;
    根据国际移动设备识别码确定或计算所属终端群组;
    根据网路配置5G服务临时移动用户标识确定或计算所属终端群组;
    根据网路无线资源控制信令确定或配置所属终端群组;
    根据终端设备的类型确定或计算所属终端群组。
  29. 根据权利要求27所述的方法,其特征在于,基于所述终端群组的信息监听唤醒信号,包括:
    基于所述终端群组的信息确定监听唤醒信号的时频资源信息;
    根据所述时频资源信息监听唤醒信号。
  30. 根据权利要求27所述的方法,其特征在于,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
    监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
    开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
  31. 根据权利要求27所述的方法,其特征在于,所述时间间隔为以下至少一种:
    0或大于0的时间;
    N个时间单位,N为大于或等于0的整数。
  32. 根据权利要求27至31中任一项所述的方法,其特征在于,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
    所述指示信息为第一数值或第二数值。
  33. 根据权利要求32所述的方法,其特征在于,
    所述第一数值表示所述时间间隔为0;和/或,
    所述第二数值表示所述时间间隔为预设时间间隔。
  34. 根据权利要求27至31中任一项所述的方法,其特征在于,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
    所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
  35. 根据权利要求27至31中任一项所述的方法,其特征在于,所述唤醒信号包括指示信息,所述指示信息用于指示监听PDCCH与解析PDSCH的时间间隔;
    所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
  36. 根据权利要求35所述的方法,其特征在于,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
  37. 根据权利要求27至31中任一项所述的方法,其特征在于,所述唤醒信号还包括终端指示信息。
  38. 根据权利要求37所述的方法,其特征在于,所述终端指示信息包括:
    群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所述群组内的部分终端设备保持静默;和/或,
    终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
  39. 根据权利要求27至31中任一项所述的方法,其特征在于,所述唤醒信号为DCI。
  40. 根据权利要求39所述的方法,其特征在于,所述唤醒信号由RRC信令配置。
  41. 根据权利要求27至31中任一项所述的方法,其特征在于,还包括:
    根据所述时间间隔在监听PDCCH后解析PDSCH。
  42. 根据权利要求41所述的方法,其特征在于,根据所述时间间隔在监听PDCCH后解析PDSCH,包括:
    若所述PDCCH指示有发送给所述终端设备的寻呼信息,则在监听PDCCH后延迟所述时间间隔,解析PDSCH。
  43. 一种信号处理方法,其特征在于,应用于网络设备,所述方法包括:
    确定终端群组的信息以及所述终端群组监听PDCCH与解析PDSCH的时间间隔;
    基于所述终端群组的信息发送唤醒信号,所述唤醒信号包括用于指示所述时间间隔的指示信息。
  44. 根据权利要求43所述的方法,其特征在于,所述确定终端群组的信息包括以下 至少一种:
    根据国际移动用户识别码确定或计算终端设备所属的终端群组;
    根据国际移动设备识别码确定或计算终端设备所属的终端群组;
    根据网路配置5G服务临时移动用户标识确定或计算终端设备所属的终端群组;
    根据网路无线资源控制信令确定或配置终端设备所属的终端群组;
    根据终端设备的类型确定或计算终端设备所属的终端群组。
  45. 根据权利要求43所述的方法,其特征在于,基于所述终端群组的信息发送唤醒信号,包括:
    基于终端群组的信息确定发送唤醒信号的时频资源信息;
    根据所述时频资源信息发送所述唤醒信号。
  46. 根据权利要求43所述的方法,其特征在于,所述监听PDCCH与解析PDSCH的时间间隔包括以下至少一种:
    监听PDCCH结束的时刻与开始解析PDSCH的时刻之间的时间间隔;
    开始监听PDCCH的时刻与开始解析PDSCH的时刻之间的时间间隔。
  47. 根据权利要求43所述的方法,其特征在于,所述时间间隔为以下至少一种:
    0或大于0的时间;
    N个时间单位,N为大于或等于0的整数。
  48. 根据权利要求43至47中任一项所述的方法,其特征在于,所述指示信息为第一数值或第二数值。
  49. 根据权利要求48所述的方法,其特征在于,
    所述第一数值表示所述时间间隔为0;和/或,
    所述第二数值表示所述时间间隔为预设时间间隔。
  50. 根据权利要求43至47中任一项所述的方法,其特征在于,所述时间间隔从至少一个可选的时间间隔中选择;和/或,所述指示信息与所述时间间隔一一对应。
  51. 根据权利要求43至47中任一项所述的方法,其特征在于,所述指示信息包括至少一指示位,每一所述指示位与至少一所述时间间隔相对应。
  52. 根据权利要求51所述的方法,其特征在于,若所述指示位为第三数值,则表示在延迟对应的时间间隔后解析PDSCH;和/或,若所述指示位为第四数值,则表示在延迟对应的时间间隔后不解析PDSCH。
  53. 根据权利要求43至47中任一项所述的方法,其特征在于,所述唤醒信号还包括终端指示信息。
  54. 根据权利要求53所述的方法,其特征在于,所述终端指示信息包括:
    群组的标识,用于指示下述任意一项:所述群组内的所有终端设备使用所述时间间隔,所述群组内的所有终端设备保持静默,所述群组内的部分终端设备使用所述时间间隔,所 述群组内的部分终端设备保持静默;和/或,
    终端设备的标识,用于指示所述终端设备使用所述时间间隔,或者,用于指示所述终端设备保持静默。
  55. 根据权利要求43至47中任一项所述的方法,其特征在于,所述唤醒信号为DCI。
  56. 根据权利要求55所述的方法,其特征在于,所述唤醒信号由RRC信令配置。
  57. 根据权利要求43至47中任一项所述的方法,其特征在于,还包括:
    发送PDCCH;和/或,
    在发送PDCCH后,延迟所述时间间隔,发送PDSCH。
  58. 一种通信设备,其特征在于,包括:处理器和存储器;
    所述存储器存储计算机执行指令;
    所述计算机执行指令被所述处理器执行时实现如权利要求1至57中任一项所述的方法。
  59. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质中存储有计算机执行指令,当所述计算机执行指令被处理器执行时用于实现如权利要求1至57中任一项所述的方法。
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