WO2023024896A1 - 一种信息传输方法、通信装置、芯片及其模组设备 - Google Patents

一种信息传输方法、通信装置、芯片及其模组设备 Download PDF

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Publication number
WO2023024896A1
WO2023024896A1 PCT/CN2022/111139 CN2022111139W WO2023024896A1 WO 2023024896 A1 WO2023024896 A1 WO 2023024896A1 CN 2022111139 W CN2022111139 W CN 2022111139W WO 2023024896 A1 WO2023024896 A1 WO 2023024896A1
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WIPO (PCT)
Prior art keywords
identification information
bits
wake
message
module
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PCT/CN2022/111139
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English (en)
French (fr)
Inventor
张向东
曹春燕
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北京紫光展锐通信技术有限公司
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Publication of WO2023024896A1 publication Critical patent/WO2023024896A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present application relates to the technical field of communication, and in particular to an information transmission method, a communication device, a chip and module equipment thereof.
  • the terminal device is in the process of deep sleep, and can monitor the wake-up message through the low power waking up radio (LP-WUR). After the wake-up message is monitored through the LP-WUR circuit, the main circuit of the terminal device is woken up, and the paging message is monitored through the main circuit to determine whether it is paged. In this manner, the standby power consumption of the terminal device can be effectively reduced.
  • LP-WUR low power waking up radio
  • the wake-up message is only used to wake up the main circuit, and how to use the wake-up message more effectively has become a hot research topic at present.
  • the present application discloses an information transmission method, a communication device, a chip and a module device thereof, which can use part or all of the terminal identification information carried in the wake-up message, so that the wake-up message can be used more effectively.
  • the present application provides an information transmission method, the method comprising: receiving a wake-up message, the wake-up message carrying first identification information, the first identification information being part or all of the above-mentioned terminal identification information; from the above-mentioned wake-up message , acquire the first identification information.
  • a first paging message is received, the first paging message carries second identification information, and the second identification information is part or all of the terminal identification information; from the above-mentioned first paging message, the Second identification information: determining terminal identification information according to the first identification information and the second identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; receiving configuration information, the configuration information is used to indicate that the first identification information is used to determine the value of the upper bit or the lower bit of the above-mentioned N bits value.
  • the above-mentioned wake-up message carries indication information; according to the indication information, the first identification information is determined.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • whether to be paged is determined according to the above terminal identification information.
  • the present application provides an information transmission method, the method comprising: acquiring first identification information, the first identification information being part or all of the terminal identification information; sending a wake-up message, the wake-up message carrying the above-mentioned first identification information.
  • a first paging message is sent, where the first paging message carries second identification information, and the second identification information is part or all of the terminal identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the value of the N bits is composed of the value of the N1 bits included in the first identification information and the N2 bits included in the second identification information The value is determined.
  • the above-mentioned terminal identification information occupies N bits; sending configuration information, the configuration information is used to indicate that the first identification information is used to determine the value of the high bit or the value of the low bit in the N bits value.
  • the wake-up message carries indication information; the indication information is used to determine the first identification information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the above-mentioned first paging message is a core network paging message; before the above-mentioned sending of the wake-up message, a second paging message from a network element of the core network is received, and the second paging message is used to instruct the above-mentioned terminal Identification information.
  • the present application provides a communication device, the communication device includes a unit for realizing the method in the above first aspect and any possible implementation thereof, or includes a unit for realizing the second aspect and its An element of a method in any one possible implementation.
  • the present application provides a communication device, the communication device includes a processor, and the processor is used to execute the method in the first aspect and any possible implementation thereof, or to implement the second aspect and methods in any of its possible implementations.
  • the present application provides a communication device, the communication device includes a processor and a memory, the memory is used to store computer-executable instructions; the processor is used to call program codes from the memory to execute the first aspect and any one of the above-mentioned aspects.
  • the present application provides a chip, the chip is used to receive a wake-up message, the wake-up message carries first identification information, and the first identification information is part or all of the above-mentioned terminal identification information; from the above-mentioned wake-up message , to obtain the first identification information.
  • the present application provides another chip, which is used to obtain first identification information, which is part or all of the terminal identification information; and send a wake-up message, where the wake-up message carries the first identification information.
  • the present application provides a module device, which includes a communication module, a power module, a storage module, and a chip module, wherein: the power module is used to provide power for the module device ; the storage module is used to store data and instructions; the communication module is used for internal communication of the module device, or for the module device to communicate with external devices; the chip module is used for: receiving wake-up messages, the The wake-up message carries first identification information, where the first identification information is part or all of the terminal identification information; and the first identification information is obtained from the wake-up message.
  • the present application provides another module device, which includes a communication module, a power module, a storage module, and a chip module, wherein: the power module is used to provide Electric energy; the storage module is used to store data and instructions; the communication module is used for internal communication of the module device, or for the module device to communicate with external devices; the chip module is used for: obtaining the first identification information, where the first identification information is part or all of the terminal identification information; sending a wake-up message, where the wake-up message carries the first identification information.
  • the power module is used to provide Electric energy
  • the storage module is used to store data and instructions
  • the communication module is used for internal communication of the module device, or for the module device to communicate with external devices
  • the chip module is used for: obtaining the first identification information, where the first identification information is part or all of the terminal identification information; sending a wake-up message, where the wake-up message carries the first identification information.
  • Fig. 1 is the schematic diagram of a kind of LP-WUR that the embodiment of the present application provides;
  • FIG. 2 is an architecture diagram of a communication system provided by an embodiment of the present application.
  • FIG. 3 is a flowchart of an information transmission method provided by an embodiment of the present application.
  • FIG. 4 is a flow chart of another information transmission method provided by the embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of a communication device provided by an embodiment of the present application.
  • FIG. 6 is a schematic structural diagram of another communication device provided by an embodiment of the present application.
  • FIG. 7 is a schematic structural diagram of another communication device provided by an embodiment of the present application.
  • FIG. 8 is a schematic structural diagram of a module device provided by an embodiment of the present application.
  • Figure 1 is a schematic diagram of LP-WUR. It can be seen from FIG. 1 that the circuit on the left is a circuit in a network device and is used to send a wake-up message; the circuit on the right is a circuit in a terminal device and is used to receive a wake-up message.
  • WuTx may be a sending end of WuC
  • WuRx may be a receiving end of WuC
  • WuC may be a wake-up message.
  • the circuit where WuRx is located may be LP-WUR.
  • WuRx can be started periodically and monitor WuC messages.
  • WuRx can also be turned on for a long time to continuously monitor WuC messages. After WuRx receives the WuC message, it can wake up the main circuit, that is, turn on the main circuit, and further monitor and receive paging messages through the main circuit.
  • the standby power consumption of the terminal device can be effectively reduced, and the standby time of the device can be delayed, thereby improving user experience.
  • FIG. 2 is an architecture diagram of a communication system provided by an embodiment of the present application.
  • the communication system may include a terminal device 201 and a network device 202 .
  • the terminal device 201 may be a terminal device receiving a wake-up message; the wake-up message may carry first identification information.
  • the terminal device 201 may also be a terminal device receiving the first paging message; the first paging message may carry the second identification information.
  • the network device 202 may be a network device corresponding to the serving cell where the terminal device 201 is located.
  • the network device 202 may send a wake-up message to all terminal devices in the serving cell, and the above-mentioned terminal device will determine whether to wake up its own main circuit after receiving the wake-up message.
  • the network device 202 may also send a first paging message to the terminal device whose main circuit is awakened, and the terminal device whose main circuit is awakened will judge whether it is paged after receiving the first paging message.
  • the terminal device 201 may receive the wake-up message, and determine whether to wake up its own main circuit according to the first identification information carried in the wake-up message. Wherein, there may be multiple terminal devices that need to wake up the main circuit, and the multiple terminal devices may include the above-mentioned terminal device 201 . It should be noted that the numbers of terminal devices and network devices in FIG. 2 are for example only, and do not limit the present application.
  • the terminal device is an entity on the user side for receiving or transmitting signals, such as a mobile phone.
  • the terminal device may also be called a terminal (terminal), user equipment (user equipment, UE), mobile station (mobile station, MS), mobile terminal (mobile terminal, MT), etc.
  • Terminal devices can be mobile phones, wearable devices, tablet computers (Pad), computers with wireless transceiver functions, virtual reality (virtual reality, VR) terminal devices, augmented reality (augmented reality, AR) terminal devices, industrial Wireless terminals in industrial control, wireless terminals in self-driving, wireless terminals in remote medical surgery, wireless terminals in smart grid, transportation security safety), wireless terminals in smart city, wireless terminals in smart home, in order to support enhanced Machine-Type communication (eMTC) and/or support universal Long term evolution (LTE) terminal equipment of mobile communication technology and so on.
  • eMTC Machine-Type communication
  • LTE universal Long term evolution
  • the embodiment of the present application does not limit the specific technology and specific device form adopted by the terminal device.
  • the network device 202 is an entity on the network side for transmitting or receiving signals.
  • the network device 202 may be an access network device, for example, the network device may be an evolved base station (evolved NodeB, eNB), a transmission point (transmission reception point, TRP), or a next generation base station (next generation NodeB, gNB) or other base stations in future mobile communication systems.
  • the network equipment may include indoor network equipment, such as Customer Premises Network (CPN) equipment, and the CPN equipment may include Premises Radio Access Station (PRAS) and Evolved Residential Gateway (Evolved Residential Gateway, eRG) ).
  • CPN Customer Premises Network
  • PRAS Premises Radio Access Station
  • Evolved Residential Gateway Evolved Residential Gateway
  • long term evolution long term evolution, LTE
  • 5th generation 5G mobile communication system
  • 5G new radio interface new radio, NR
  • the method in this embodiment of the present application is also applicable to various communication systems in the future, such as 6G systems or other communication networks.
  • FIG. 3 is a flowchart of an information transmission method provided by an embodiment of the present application.
  • the information transmission method may be realized by the above-mentioned terminal device and network device, or may be realized by a chip in the above-mentioned terminal device and a chip in the network device.
  • the information transmission method includes but is not limited to the following steps S301 to S302.
  • step S301 the network device sends a wake-up message, where the wake-up message carries first identification information, and the first identification information is part or all of the terminal identification information.
  • the terminal device receives the wake-up message from the network device.
  • the network device may send a wake-up message to the serving cell where the terminal device identified by the terminal identification information is located, so as to wake up the terminal device matching the first identification information in the wake-up message.
  • the terminal device in the serving cell may receive a wake-up message from the network device, and judge whether to wake up its own main circuit according to the first identification information carried in the wake-up message.
  • the wake-up message can be used to wake up the terminal device in the sleep state, so that the waken-up terminal device can turn on the main circuit, and further monitor the paging message through the main circuit.
  • the terminal device may be any terminal device in the serving cell, and the terminal device may receive the wake-up message to determine whether to wake up the main circuit.
  • the first identification information may be part or all of the terminal identification information. If the first identification information is part of the terminal identification information, the terminal device that receives the wake-up message at this time can determine whether it needs to wake up its own main circuit according to the first identification information carried in the wake-up message; after waking up the main circuit, you can Further monitor the paging message through the main circuit, and determine whether it is paged according to the paging message. If the first identification information is all of the terminal identification information, the terminal device that receives the wake-up message at this time can determine whether it is paged according to the first identification information.
  • the part where the first identification information is the terminal identification information is used as an example to describe the whole process in more detail, which does not limit the present application.
  • the above terminal identification information occupies N bits, and the first identification information may include values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the numbers of the above N1 bits may be continuous or discontinuous.
  • the above-mentioned first identification information may include values of 3 bits in the 8 bits.
  • the numbers of the 3 bits may be number 1 to number 3, that is, the numbers of the 3 bits are continuous.
  • the numbers of the 3 bits may be number 1, number 3, and number 7, that is, the numbers of the 3 bits are discontinuous.
  • the N1 bits may be the first N1 high-order bits among the above-mentioned N bits.
  • the N1 bits may be the last N1 lower bits among the above N bits.
  • the above-mentioned high bits can correspond to a plurality of bits from left to right, and the numbers of the multiple bits are continuous, such as the above-mentioned first N1 high bits are N1 consecutive from left to right among the N bits bits.
  • the above-mentioned low bits may correspond to a plurality of bits from right to left, and the numbers of the multiple bits are continuous, such as the above-mentioned last N1 low bits are N1 bits that are continuous from right to left among the N bits bit.
  • high bit can also be called the left bit (left bit) or the front bit (front bit); similarly, the above-mentioned low bit (low bit) can also be called the right bit Bit (right bit) or back bit (back bit), does not constitute limitation to this application.
  • the above-mentioned terminal identification information occupies N bits; the above-mentioned network device may send configuration information to the terminal device, and the configuration information is used to indicate that the first identification information is used to determine the upper bit of the above-mentioned N bits bit value or the value of the lower bit.
  • the above-mentioned terminal device receives the configuration information from the network device. That is to say, based on the configuration information, the terminal device can determine whether the wake-up message carries the value of the upper bit or the lower bit among the aforementioned N bits.
  • the network device may configure the first identification information as the value of the first 4 high-order bits of the 8 bits.
  • the terminal device receives the configuration information, It may be determined that the first identification information carried in the wake-up message is the value of the first 4 high-order bits of the 8 bits.
  • the network device may also configure the first identification information as the value of the last 5 lower bits of the 8 bits, which is not limited in this application.
  • the network device can pre-configure the number of bits specifically carried in the first identification information, and whether the bit is a high bit or a low bit in the terminal identification information.
  • the terminal device can determine which bits in the terminal identification information the first identification information is based on the configuration information, so as to determine the value of the first identification information.
  • step S302 the terminal device acquires first identification information from the wake-up message.
  • the terminal device in the serving cell can obtain the first identification information from the wake-up message, so as to judge whether to wake up the main circuit according to the first identification information.
  • the wake-up message may explicitly carry the first identification information.
  • the explicit carrying means that the wake-up message includes the first identification information.
  • the terminal identification information occupies 8 bits, and the first identification information is the value of the upper 4 bits in the terminal identification information, that is, the above wake-up message can directly carry the upper 4 bits of the terminal identification information Bit value.
  • the first identification information can be sent to the terminal device at the same time when the network device sends the wake-up message, so that the terminal device can directly obtain the wake-up message when receiving the wake-up message.
  • First identification information is the value of the upper 4 bits in the terminal identification information.
  • the above wake-up message may implicitly carry terminal identification information.
  • the implicit carrying means that the above-mentioned wake-up message may carry indication information; the terminal device may determine the first identification information according to the indication information. Wherein, the indication information has a corresponding relationship with the first identification information. The terminal device may determine the first identification information according to the corresponding relationship and the indication information carried in the wake-up message.
  • the correspondence between the indication information and the first identification information may be preset, as agreed in a protocol.
  • the first identification information is the value of the first 4 bits of the terminal identification information
  • the corresponding relationship between the value of the first 4 bits and the indication information may be preset. It can be understood that the values of the first 4 bits can correspond to 16 permutations and combinations in total. Therefore, 16 pieces of indication information may be preset to correspond to the above 16 permutations and combinations respectively.
  • the first identification information may be in one-to-one correspondence with the foregoing indication information. That is to say, after receiving the wake-up message, the terminal device may determine the first identification information according to the indication information carried in the wake-up message.
  • the correspondence between the indication information and the first identification information may be determined through a message (such as a system message) sent by the network device.
  • the system message may carry the correspondence between the indication information and the first identification information.
  • the terminal device may obtain the correspondence between the indication information and the first identification information through the received system message, and thus determine the above-mentioned first identification information according to the correspondence.
  • the system message indicates that: the indication information 1 corresponds to the value of the first 5 bits of the terminal identification information, and the value of the first 5 bits is 00000; after receiving the system message, the terminal device can determine that The first identification information is the value of the first 5 bits of the terminal identification information, and the value of the first identification information is 00000.
  • the above indication information may be a sequence. That is to say, a sequence (such as called the first sequence) may be carried in the wake-up message. It can be understood that the above correspondence may specifically be a correspondence between a sequence and the first identification information.
  • the terminal device can determine the first identification information corresponding to the first sequence through the first sequence and the corresponding relationship between the sequence and the first identification information, and the first identification information corresponding to the first sequence is the first identification information.
  • the indication information may also include other forms of information, which is not limited in this application.
  • the terminal device can determine whether its own identification information matches the first identification information by receiving the wake-up message from the network device and obtaining the first identification information carried in the wake-up message, thereby determining whether to wake up the main circuit.
  • the first identification information is the value of the upper 4 bits in the terminal identification information, and the value of the upper 4 bits is 0001; that is, the terminal device in the serving cell can The value of the bit is judged whether the value of the upper 4 bits in its own identification information is 0001. If the value of the upper 4 bits of the self-identification information is 0001, the main circuit of the terminal device needs to be awakened; if the value of the upper 4 bits of the self-identification information is not 0001, the terminal device does not need to be awakened The main circuit.
  • the network device can send a wake-up message to the 10 terminal devices, and correspondingly, the 10 terminal devices can receive the wake-up message. If among the above-mentioned 10 terminal devices, there are 5 terminal devices whose identification information matches the first identification information; then the 5 terminal devices need to wake up their own main circuits.
  • the network device can send a wake-up message; correspondingly, the terminal device can obtain the first identification information from the wake-up message by receiving the wake-up message, so as to determine whether it needs to wake up the main circuit.
  • FIG. 4 is a flowchart of another information transmission method provided by an embodiment of the present application.
  • the information transmission method may be realized by the above-mentioned terminal device and network device, or may be realized by a chip in the above-mentioned terminal device and a chip in the network device.
  • the information transmission method includes but not limited to the following steps S401 to S405.
  • the network element of the core network may send a second paging message to the network device, where the second paging message may be used to indicate terminal identification information.
  • the foregoing network device may receive the second paging message from the network element of the core network.
  • the network element of the core network may send a second paging message to the network device corresponding to the serving cell of the terminal device identified by the terminal identification information, so as to inform the network device that the terminal served by the network device There is a terminal device whose identification information matches the above-mentioned terminal identification information in the device, that is, a paged terminal device.
  • the aforementioned core network element may be an access and mobility management function (AMF) or a mobility management entity (Mobility Management Entity, MME), etc., which is not limited in this application.
  • AMF access and mobility management function
  • MME mobility management entity
  • Step S402 the network device sends a wake-up message, where the wake-up message carries first identification information, and the first identification information is part or all of the terminal identification information.
  • the terminal device receives the wake-up message from the network device.
  • the network device may determine the terminal identification information; further, the network device may send a wake-up message in the serving cell of the terminal device, so that in the serving cell
  • the terminal device determines whether it needs to wake up its own main circuit; further, the terminal device whose main circuit is awakened can receive the first paging message through the main circuit to determine whether it is paged.
  • the meaning of the network device sending the wake-up message in the serving cell is to broadcast the wake-up message in the serving cell.
  • Radio Access Network Radio Access Network
  • CN Core Network
  • the main difference between RAN paging and CN paging is that the terminal identification information corresponding to the above two paging methods may be different.
  • the terminal identification information corresponding to CN paging may be 48 bits, and the terminal identification information corresponding to RAN paging may be 20 bits.
  • the embodiment of the present application may start from step S401. It can be understood that, for CN paging, the network device may send a wake-up message to the terminal device in the serving cell after receiving the second paging message from the network element of the core network.
  • this embodiment of the present application may start from step S402.
  • the first paging message may be an access network paging message, or may be a core network paging message.
  • the access network paging message is the paging message corresponding to the RAN paging
  • the core network paging message is the paging message corresponding to the CN paging.
  • the content carried in the first paging message and the foregoing second paging message may be different.
  • the formats of the first paging message and the second paging message may also be different.
  • the corresponding paging message when the network device initiates CN paging, the corresponding paging message may be a core network paging message; when the network device initiates RAN paging, the corresponding paging message may be an access network paging message. Since the terminal identification information corresponding to the CN paging and the RAN paging are different, the following two ways may be used to configure the first identification information and the second identification information corresponding to the CN paging and the RAN paging.
  • the first identification information of CN paging and RAN paging are configured with the same number of bits.
  • the first identification information corresponding to the two paging modes both carry M bits. It can be understood that, in the case that the first identification information corresponding to the two paging modes both carry M bits, the number of bits carried in the second identification information corresponding to the two paging modes may be the same or different.
  • the terminal identification information corresponding to CN paging is 48 bits
  • the terminal identification information corresponding to RAN paging is 20 bits
  • the first identification information corresponding to the above two paging methods both carry a value of 10 bits
  • the second identification information corresponding to CN paging may carry the remaining 38-bit value
  • the second identification information corresponding to RAN paging may carry the remaining 10-bit value.
  • Mode 2 Different bit numbers are configured for the first identification information of CN paging and RAN paging.
  • the first identification information of CN paging may carry M1 bit; the first identification information of RAN paging may carry M2 bit. It can be understood that, in the case that the first identification information corresponding to CN paging and RAN paging carries different bits, the number of bits carried by the second identification information corresponding to the two paging methods can be different, or can be Similarly, this application does not limit this.
  • the terminal identification information corresponding to CN paging is 48 bits, and the terminal identification information corresponding to RAN paging is 20 bits; if the first identification information corresponding to CN paging can carry a value of 38 bits, the RAN paging The first identification information corresponding to the call can carry a 10-bit value, the second identification information corresponding to the CN paging can carry the remaining 10-bit value, and the second identification information corresponding to the RAN paging can carry the remaining 10 bits value.
  • the number of bits carried in the second identification information is the same. It can be understood that this example is only for illustration and does not limit the present application.
  • Step S403 the terminal device acquires first identification information from the wake-up message.
  • step S402 and step S403 reference may be made to the relevant descriptions of step S301 and step S302 in the embodiment shown in FIG. 3 , which will not be repeated in this application.
  • step S404 the network device sends a first paging message, where the first paging message carries second identification information, and the second identification information is part or all of the terminal identification information.
  • the terminal device receives the first paging message from the network device.
  • the network device may send the first paging message in the serving cell.
  • the terminal device can receive the first paging message from the network device, so as to judge whether it is paged according to the second identification information carried in the first paging message.
  • the terminal device may obtain the second identification information by receiving the first paging message, so as to determine whether its own identification information matches the second identification information, that is, whether it is paged.
  • the above terminal identification information occupies N bits
  • the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the second identification information may include, excluding the values of the N1 bits included in the first identification information, the values of the remaining bits in the N bits.
  • the terminal identification information occupies 8 bits
  • the above-mentioned first identification information includes the value of 3 bits in the 8 bits
  • the second identification information may include the remaining 5 bits in the 8 bits value.
  • the numbers of the 3 bits of the first identification information are number 1 to number 3
  • the numbers of the 5 bits of the second identification information may be number 4 to number 8.
  • the numbers of the 3 bits of the first identification information are number 1, number 3 and number 7, then the numbers of the 5 bits of the second identification information can be number 2, number 4, number 5, number 6 and number 8.
  • the N2 bits are the last N2 lower bits among the above N bits.
  • the N2 bits are the first N2 high-order bits among the above N bits.
  • the above-mentioned last N2 lower bits are N2 consecutive bits from right to left among the N bits.
  • the above-mentioned first N2 high-order bits are N2 consecutive bits from left to right among the N bits.
  • the foregoing configuration information may also be used to indicate that the second identification information is used to determine a value of a high bit or a value of a low bit among the above N bits.
  • the configuration information may explicitly indicate or implicitly indicate that the second identification information is used to determine the value of a high bit or a value of a low bit among the above N bits.
  • the configuration information indicates that the first identification information is used to determine the value of the upper bit in the N bits, then it can be determined that the second identification information is used to determine the value of the lower bit in the above N bits. value.
  • the configuration information indicates that the first identification information is used to determine the value of the lower bit in the above N bits, then it may be determined that the second identification information is used to determine the value of the upper bit in the above N bits .
  • Step S405 the terminal device obtains the second identification information from the first paging message; and determines the terminal identification information according to the above-mentioned first identification information and the second identification information; optionally, the terminal device can further use the above-mentioned terminal identification information , to determine whether the terminal device is paged.
  • the terminal device can determine whether its own identification information matches the second identification information by receiving the first paging message from the network device and obtaining the second identification information carried in the first paging message, so as to judge its own Whether to be paged.
  • first paging message can also carry the second identification information explicitly or implicitly.
  • second identification information For the description of related content, please refer to the embodiment shown in Figure 3 above, and this application will not repeat it here.
  • N1 and N2 are positive integers
  • the above-mentioned first identification information may be a part of identification information
  • the above-mentioned second identification information may be another part of identification information. It can be understood that the first identification information and the second identification information may form complete identification information.
  • the terminal device may compare the complete terminal identification information with its own identification information to determine whether it is paged. Wherein, if the identification information of the self is consistent with the complete identification information (such as the same), it can be judged that the self is paged; .
  • the network device sends a wake-up message, correspondingly, after the terminal device receives the above-mentioned wake-up message, it can wake up the main circuit of the terminal device; secondly, the network device sends the first paging message, Correspondingly, after receiving the first paging message, the terminal device may obtain the second identification information, so as to determine whether it is paged.
  • FIG. 5 is a schematic structural diagram of a communication device provided in an embodiment of the present application.
  • the device may be the above-mentioned terminal device, or a device in the terminal device, or a device that can be matched with the terminal device.
  • the communication device shown in FIG. 5 may include a communication unit 501 , an acquisition unit 502 and a determination unit 503 .
  • the communication unit 501 is integrated with a receiving unit, a sending unit, and the like.
  • the communication unit 501 may also be called a transceiver unit.
  • the communication unit 501 may also be split into a receiving unit and a sending unit. Among them, the detailed description of each unit is as follows:
  • the communication unit 501 is configured to receive a wake-up message, the wake-up message carries first identification information, and the first identification information is part or all of the terminal identification information; the obtaining unit 502 is configured to obtain the first identification information from the above-mentioned wake-up message Identification information.
  • the above-mentioned communication unit 501 is further configured to receive a first paging message, where the first paging message carries second identification information, and the second identification information is part or all of the terminal identification information;
  • the unit 502 is further configured to acquire second identification information from the first paging message;
  • the determining unit 503 is configured to determine terminal identification information according to the first identification information and the second identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the above-mentioned communication unit 501 is further configured to receive configuration information, and the configuration information is used to indicate that the first identification information is used to determine the high The value of the bit or the value of the lower bit.
  • the determining unit 503 is further configured to determine the first identification information according to the indication information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the determining unit 503 is further configured to determine whether to be paged according to the terminal identification information.
  • each unit in the communication device shown in FIG. 5 can be separately or all combined into one or several other units to form, or one (some) units can be further divided into functional units.
  • the same operation can be realized without affecting the realization of the technical effects of the embodiments of the present application.
  • the above-mentioned units are divided based on logical functions.
  • the functions of one unit may also be realized by multiple units, or the functions of multiple units may be realized by one unit.
  • the communication device may also include other units.
  • these functions may also be assisted by other units, and may be implemented by cooperation of multiple units.
  • the aforementioned communication device may be, for example, a chip or a chip module.
  • each module included in the product may be a software module or a hardware module, or may be partly a software module and partly a hardware module.
  • each module contained therein may be realized by hardware such as a circuit, or at least some modules may be realized by a software program, and the software program runs inside the chip.
  • the remaining (if any) modules can be realized by means of hardware such as circuits; for each device or product applied to or integrated in a chip module, each module contained in it can be realized by means of hardware such as circuits , different modules can be located in the same component of the chip module (such as chips, circuit modules, etc.) or in different components, or at least some modules can be implemented in the form of software programs that run on the integrated processing of the chip module device, the remaining (if any) modules can be realized by means of hardware such as circuits; for each device or product applied to or integrated in the terminal, each module contained in it can be realized by means of hardware such as circuits, and different modules can be Located in the same component (for example, chip, circuit module, etc.) or different components in the terminal, or at least some of the modules can be implemented in the form of a software program, the software program runs on the processor integrated in the terminal, and the rest (if any) Some modules can be realized by hardware such as circuits.
  • FIG. 6 is a schematic structural diagram of a communication device provided by an embodiment of the present application.
  • the device may be the above-mentioned network device, or a device in the network device, or a device that can be matched with the network device.
  • the communication device may include an acquisition unit 601 and a communication unit 602 .
  • the communication unit 602 is integrated with a receiving unit, a sending unit, and the like.
  • the communication unit 602 may also be called a transceiver unit.
  • the communication unit 602 may also be split into a receiving unit and a sending unit. in:
  • the obtaining unit 601 is configured to obtain first identification information, where the first identification information is part or all of terminal identification information; the communication unit 602 is configured to send a wake-up message, where the wake-up message carries the first identification information.
  • the communication unit 602 is further configured to send a first paging message, where the first paging message carries second identification information, where the second identification information is part or all of the terminal identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the value of the N bits is composed of the value of the N1 bits included in the first identification information and the N2 bits included in the second identification information The value is determined.
  • the communication unit 602 is further configured to send configuration information, where the configuration information is used to indicate that the first identification information is used to determine a value of a high bit or a value of a low bit among the N bits.
  • the wake-up message carries indication information; the indication information is used to determine the first identification information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the communication unit 602 is further configured to receive a second paging message from a network element of the core network, where the second paging message is used to indicate terminal identification information.
  • each unit in the communication device shown in FIG. 6 can be separately or all combined into one or several other units to form, or one (some) units can be further divided into functional units.
  • the same operation can be realized without affecting the realization of the technical effects of the embodiments of the present application.
  • the above-mentioned units are divided based on logical functions.
  • the functions of one unit may also be realized by multiple units, or the functions of multiple units may be realized by one unit.
  • the communication device may also include other units.
  • these functions may also be assisted by other units, and may be implemented by multiple units in cooperation.
  • the aforementioned communication device may be, for example, a chip or a chip module.
  • each module included in the product may be a software module or a hardware module, or may be partly a software module and partly a hardware module.
  • each module contained therein may be realized by hardware such as a circuit, or at least some modules may be realized by a software program, and the software program runs inside the chip.
  • the remaining (if any) modules can be realized by means of hardware such as circuits; for each device or product applied to or integrated in a chip module, each module contained in it can be realized by means of hardware such as circuits , different modules can be located in the same component of the chip module (such as chips, circuit modules, etc.) or in different components, or at least some of the modules can be implemented in the form of software programs that run on the integrated processing of the chip module device, the remaining (if any) modules can be realized by means of hardware such as circuits; for each device or product applied to or integrated in the terminal, each module contained in it can be realized by means of hardware such as circuits, and different modules can be Located in the same component (for example, chip, circuit module, etc.) or different components in the terminal, or at least some of the modules can be implemented in the form of a software program, which runs on the processor integrated in the terminal, and the rest (if any) Some modules can be realized by hardware such as circuits.
  • FIG. 7 is a communication device 70 provided in an embodiment of the present application.
  • the communication device 70 may include a processor 701 and a transceiver 702 .
  • the communication device may further include a memory 703 .
  • the processor 701, the transceiver 702, and the memory 703 may be connected through a bus 704 or in other ways.
  • the bus is represented by a thick line in FIG. 7 , and the connection manners between other components are only for schematic illustration and are not limited thereto.
  • the bus can be divided into address bus, data bus, control bus and so on. For ease of representation, only one thick line is used in FIG. 7 , but it does not mean that there is only one bus or one type of bus.
  • the coupling in the embodiments of the present application is an indirect coupling or a communication connection between devices, units or modules, which may be in electrical, mechanical or other forms, and is used for information exchange between devices, units or modules.
  • the specific connection medium between the processor 701 and the memory 703 is not limited in this embodiment of the present application.
  • the memory 703 may include read-only memory and random-access memory, and provides instructions and data to the processor 701 .
  • a portion of memory 703 may also include non-volatile random access memory.
  • the processor 701 can be a central processing unit (Central Processing Unit, CPU), and the processor 701 can also be other general processors, digital signal processors (Digital Signal Processor, DSP), application specific integrated circuits (Application Specific Integrated Circuit, ASIC) ), Field-Programmable Gate Array (Field-Programmable Gate Array, FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
  • the general processor may be a microprocessor, and optionally, the processor 701 may also be any conventional processor. in:
  • the memory 703 is used for storing program instructions.
  • the processor 701 is configured to call the program instructions stored in the memory 703 for:
  • the wake-up message carries first identification information, the first identification information is part or all of the terminal identification information; the processor 701 is also used to obtain the first identification information from the wake-up message 1. Identification information.
  • the transceiver 702 is further configured to receive a first paging message, where the first paging message carries second identification information, and the second identification information is part or all of the terminal identification information; the above processing
  • the processor 701 is further configured to acquire second identification information from the first paging message; the processor 701 is further configured to determine terminal identification information according to the first identification information and the second identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the above-mentioned transceiver 702 is also configured to receive configuration information, and the configuration information is used to indicate that the first identification information is used to determine the high The value of the bit or the value of the lower bit.
  • the processor 701 is further configured to determine the first identification information according to the indication information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the processor 701 is further configured to determine whether to be paged according to the terminal identification information.
  • the foregoing communication device may also be used to implement the functions of the network device in the foregoing method embodiments.
  • the communication device may be a network device or a device for a network device.
  • the foregoing apparatus for a network device may be a chip system or a chip in the network device. Wherein, the system-on-a-chip may consist of chips, or may include chips and other discrete devices.
  • the communication device 70 may include a processor 701 and a transceiver 702 .
  • the communication device may further include a memory 703 . in:
  • the memory 703 is used for storing program instructions.
  • the processor 701 is configured to call the program instructions stored in the memory 703 for:
  • the transceiver 702 is configured to send a wake-up message, where the wake-up message carries the first identification information.
  • the transceiver 702 is further configured to send a first paging message, where the first paging message carries second identification information, where the second identification information is part or all of the terminal identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the value of the N bits is composed of the value of the N1 bits included in the first identification information and the N2 bits included in the second identification information The value is determined.
  • the transceiver 702 is further configured to send configuration information, where the configuration information is used to indicate that the first identification information is used to determine a value of a high bit or a value of a low bit among the N bits.
  • the wake-up message carries indication information; the indication information is used to determine the first identification information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the transceiver 702 is further configured to receive a second paging message from a network element of the core network, where the second paging message is used to indicate terminal identification information.
  • a general-purpose computing device such as a computer that includes processing elements such as a central processing unit (CPU), a random access storage medium (RAM), and a read-only storage medium (ROM) and storage elements.
  • CPU central processing unit
  • RAM random access storage medium
  • ROM read-only storage medium
  • a computer program (including program code) that executes the steps involved in the corresponding method as shown in FIG. 2 , and implements the method provided by the embodiment of the present application.
  • the computer program can be recorded on, for example, a computer-readable recording medium, loaded into the above-mentioned computing device via the computer-readable recording medium, and executed therein.
  • the problem-solving principle and beneficial effect of the communication device provided in the embodiment of the present application are similar to the problem-solving principle and beneficial effect of the communication device in the method embodiment of the present application. Please refer to the principle and beneficial effect of the implementation of the method. For the sake of brevity, no more details are given here.
  • the embodiment of the present application further provides a chip, which can execute the relevant steps of the terminal device in the foregoing method embodiments.
  • the chip is configured to: receive a wake-up message, the wake-up message carries first identification information, and the first identification information is part or all of the terminal identification information; obtain the first identification information from the wake-up message.
  • the above-mentioned chip is further configured to receive a first paging message, the first paging message carries second identification information, and the second identification information is part or all of the terminal identification information; the above-mentioned chip is also used to The second identification information is acquired from the first paging message; the chip is further configured to determine terminal identification information according to the first identification information and the second identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the above-mentioned chip is also used to receive configuration information, and the configuration information is used to indicate that the first identification information is used to determine the high-order bits among the above-mentioned N bits value or the value of the lower bit.
  • the above-mentioned chip is further configured to determine the first identification information according to the indication information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the above-mentioned chip is further configured to, according to the above-mentioned terminal identification information, determine whether to be paged.
  • the above-mentioned chip includes at least one processor, at least one first memory, and at least one second memory; wherein, the aforementioned at least one first memory and the aforementioned at least one processor are interconnected through lines, and the aforementioned first memory Instructions are stored; the aforementioned at least one second memory and the aforementioned at least one processor are interconnected through lines, and the aforementioned second memory stores data that needs to be stored in the aforementioned method embodiments.
  • the embodiment of the present application also provides another chip, which can execute the relevant steps of the network device in the foregoing method embodiments.
  • the chip is used to: acquire first identification information, which is part or all of the terminal identification information; and send a wake-up message, where the wake-up message carries the above-mentioned first identification information.
  • the above chip is further configured to send a first paging message, where the first paging message carries second identification information, where the second identification information is part or all of the terminal identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the value of the N bits is composed of the value of the N1 bits included in the first identification information and the N2 bits included in the second identification information The value is determined.
  • the above-mentioned chip is further configured to send configuration information, where the configuration information is used to indicate that the first identification information is used to determine a value of a high bit or a value of a low bit among the N bits.
  • the wake-up message carries indication information; the indication information is used to determine the first identification information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the above-mentioned chip is further configured to receive a second paging message from a network element of the core network, where the second paging message is used to indicate terminal identification information.
  • the above-mentioned chip includes at least one processor, at least one first memory, and at least one second memory; wherein, the aforementioned at least one first memory and the aforementioned at least one processor are interconnected through lines, and the aforementioned first memory Instructions are stored; the aforementioned at least one second memory and the aforementioned at least one processor are interconnected through lines, and the aforementioned second memory stores data that needs to be stored in the aforementioned method embodiments.
  • each module contained therein may be implemented by means of hardware such as circuits, or at least some of the modules may be implemented by means of software programs, which run on the internal integrated components of the chip.
  • the processor and the remaining (if any) modules can be realized by hardware such as circuits.
  • FIG. 8 is a schematic structural diagram of a module device provided by an embodiment of the present application.
  • the module device 80 can execute the relevant steps of the terminal device in the foregoing method embodiments, and the module device 80 includes: a communication module 801 , a power module 802 , a storage module 803 and a chip module 804 .
  • the above-mentioned power supply module 802 is used to provide electric energy for the module equipment;
  • the above-mentioned storage module 803 is used to store data and instructions;
  • the above-mentioned communication module 801 is used for internal communication of the module equipment, or for the module equipment to communicate with the outside The device communicates;
  • the above-mentioned chip module 804 is used for:
  • the wake-up message carries first identification information, where the first identification information is part or all of the terminal identification information; and acquire the first identification information from the wake-up message.
  • the aforementioned chip module 804 is further configured to receive a first paging message, where the first paging message carries second identification information, and the second identification information is part or all of the terminal identification information; the above The chip module 804 is further configured to acquire second identification information from the first paging message; the chip module 804 is further configured to determine terminal identification information according to the first identification information and the second identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the above-mentioned chip module 804 is also used to receive configuration information, and the configuration information is used to indicate that the first identification information is used to determine the The value of the high bit or the value of the low bit.
  • the chip module 804 is further configured to determine the first identification information according to the indication information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the aforementioned chip module 804 is further configured to determine whether to be paged according to the aforementioned terminal identification information.
  • FIG. 8 is a schematic structural diagram of a module device provided by an embodiment of the present application.
  • the module device 80 can execute the relevant steps of the network device in the aforementioned method embodiments, and the module device 80 includes: a communication module 801 , a power module 802 , a storage module 803 and a chip module 804 .
  • the above-mentioned power supply module 802 is used to provide electric energy for the module equipment;
  • the above-mentioned storage module 803 is used to store data and instructions;
  • the above-mentioned communication module 801 is used for internal communication of the module equipment, or for the module equipment to communicate with the outside The device communicates;
  • the above-mentioned chip module 804 is used for:
  • a wake-up message is sent, where the wake-up message carries first identification information.
  • the chip module 804 is further configured to send a first paging message, where the first paging message carries second identification information, and the second identification information is part or all of the terminal identification information.
  • the above terminal identification information occupies N bits, and the first identification information includes values of N1 bits among the N bits, where N1 is a non-negative integer.
  • the foregoing N1 bits are the first N1 high-order bits among the N bits.
  • the above terminal identification information occupies N bits, and the second identification information includes values of N2 bits among the N bits, where N2 is a non-negative integer.
  • the above N2 bits are the last N2 lower bits among the N bits.
  • the above-mentioned terminal identification information occupies N bits; the value of the N bits is composed of the value of the N1 bits included in the first identification information and the N2 bits included in the second identification information The value is determined.
  • the above-mentioned chip module 804 is also used to send configuration information, the configuration information is used to indicate that the first identification information is used to determine the value of the high bit or the value of the low bit in the N bits .
  • the wake-up message carries indication information; the indication information is used to determine the first identification information.
  • the above-mentioned first paging message is an access network paging message or a core network paging message.
  • the chip module 804 is further configured to receive a second paging message from a network element of the core network, where the second paging message is used to indicate terminal identification information.
  • each module contained therein may be realized by hardware such as a circuit, and different modules may be located in the same component of the chip module (such as a chip, a circuit module, etc.) or Among the different components, or at least some of the modules can be realized by means of a software program, the software program runs on the processor integrated in the chip module, and the remaining (if any) parts of the modules can be realized by means of hardware such as circuits.
  • the embodiment of the present application also provides a computer-readable storage medium.
  • One or more instructions are stored in the computer-readable storage medium, and the one or more instructions are suitable for being loaded by a processor and executing the method provided by the above method embodiment.
  • the embodiment of the present application also provides a computer program product including instructions, which, when run on a computer, causes the computer to execute the method provided by the above method embodiment.
  • the modules in the device in the embodiment of the present application can be combined, divided and deleted according to actual needs.

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Abstract

本申请公开了一种信息传输方法、通信装置、芯片及其模组设备。该方法包括:接收唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为终端标识信息的部分或者全部;从上述唤醒消息中,获取第一标识信息。通过实施本申请实施例提供的方法,可以通过唤醒消息携带终端标识信息中的部分或全部,从而能更有效地利用该唤醒消息。

Description

一种信息传输方法、通信装置、芯片及其模组设备 技术领域
本申请涉及通信技术领域,尤其涉及一种信息传输方法、通信装置、芯片及其模组设备。
背景技术
目前,终端设备处于深度睡眠的过程中,可通过低功耗唤醒电路(low power waking up radio,LP-WUR)监听唤醒消息。通过LP-WUR电路监听到唤醒消息后,再唤醒终端设备的主电路,并通过该主电路监听寻呼消息,从而确定是否被寻呼。采用这种方式,能够有效降低终端设备的待机功耗。
但是,该唤醒消息仅用于唤醒主电路,如何更加有效地利用该唤醒消息成为了目前研究的热点问题。
发明内容
本申请公开了一种信息传输方法、通信装置、芯片及其模组设备,可以通过唤醒消息携带的终端标识信息中的部分或全部,从而能更有效地利用该唤醒消息。
第一方面,本申请提供了一种信息传输方法,该方法包括:接收唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为上述终端标识信息的部分或者全部;从上述唤醒消息中,获取第一标识信息。
在一种实现方式中,接收第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部;从上述第一寻呼消息中,获取第二标识信息;根据第一标识信息与第二标识信息,确定终端标识信息。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述终端标识信息占用N个比特位;上述根据第一标识信息与第二标识信息,确定终端标识信息,包括:根据第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值,确定N个比特位的值;其中,N1、N2均为非负整数,N1+N2=N。
在一种实现方式中,上述终端标识信息占用N个比特位;接收配置信息,该配置信息用于指示第一标识信息用于确定上述N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述唤醒消息携带指示信息;根据该指示信息,确定第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,根据上述终端标识信息,确定是否被寻呼。
第二方面,本申请提供了一种信息传输方法,该方法包括:获取第一标识信息,该第一标识信息为终端标识信息的部分或者全部;发送唤醒消息,该唤醒消息携带上述第一标识信息。
在一种实现方式中,发送第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述终端标识信息占用N个比特位;该N个比特位的值由第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值确定。
在一种实现方式中,上述终端标识信息占用N个比特位;发送配置信息,该配置信息用于指示第一标识信息用于确定N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述唤醒消息携带指示信息;该指示信息用于确定上述第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述第一寻呼消息为核心网寻呼消息;上述发送唤醒消息之前,接收来自核心网网元的第二寻呼消息,该第二寻呼消息用于指示上述终端标识信息。
第三方面,本申请提供了一种通信装置,该通信装置包括用于实现上述第一方面及其任一种可能的实现方式中的方法的单元,或者,包括用于实现第二方面及其任一种可能的实现方式中的方法的单元。
第四方面,本申请提供了一种通信装置,该通信装置包括处理器,上述处理器用于执行上述第一方面及其任一种可能的实现方式中的方法,或者,用于实现第二方面及其任一种可能的实现方式中的方法。
第五方面,本申请提供了一种通信装置,该通信装置包括处理器和存储器,上述存储器用于存储计算机执行指令;上述处理器用于从上述存储器调用程序代码执行上述第一方面及其任一种可能的实现方式中的方法,或者,用于实现第二方面及其任一种可能的实现方式中的方法。
第六方面,本申请提供了一种芯片,该芯片用于,接收唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为上述终端标识信息的部分或者全部;从上述唤醒消息中,获取第一标识信息。
第七方面,本申请提供了另一种芯片,该芯片用于,获取第一标识信息,该第一标识信息为终端标识信息的部分或者全部;发送唤醒消息,该唤醒消息携带上述第一标识信息。
第八方面,本申请提供了一种模组设备,该模组设备包括通信模组、电源模组、存储模组以及芯片模组,其中:该电源模组用于为该模组设备提供电能;该存储模组用于存储 数据和指令;该通信模组用于进行模组设备内部通信,或者用于该模组设备与外部设备进行通信;该芯片模组用于:接收唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为上述终端标识信息的部分或者全部;从上述唤醒消息中,获取第一标识信息。
第九方面,本申请提供了另一种模组设备,该模组设备包括通信模组、电源模组、存储模组以及芯片模组,其中:该电源模组用于为该模组设备提供电能;该存储模组用于存储数据和指令;该通信模组用于进行模组设备内部通信,或者用于该模组设备与外部设备进行通信;该芯片模组用于:获取第一标识信息,该第一标识信息为终端标识信息的部分或者全部;发送唤醒消息,该唤醒消息携带上述第一标识信息。
附图说明
为了更清楚地说明本申请实施例技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的一种LP-WUR的示意图;
图2为本申请实施例提供的一种通信***的架构图;
图3为本申请实施例提供的一种信息传输方法的流程图;
图4为本申请实施例提供的另一种信息传输方法的流程图;
图5为本申请实施例提供的一种通信装置的结构示意图;
图6为本申请实施例提供的另一种通信装置的结构示意图;
图7为本申请实施例提供的又一种通信装置的结构示意图;
图8为本申请实施例提供的一种模组设备的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
为了便于理解,首先介绍本申请涉及的术语。
1、LP-WUR
请参见图1,图1为LP-WUR的示意图。由图1可知,左侧的电路为网络设备中的电路,用于发送唤醒消息;右侧的电路为终端设备中的电路,用于接收唤醒消息。其中,WuTx可以为WuC的发送端,WuRx可以为WuC的接收端,WuC可以为唤醒消息。需要说明的是,WuRx所在的电路可以为LP-WUR。
需要说明的是,WuRx可以周期性地启动,并监听WuC消息。可选的,WuRx也可以长期开启,以持续监听WuC消息。当WuRx接收到WuC消息后,可以唤醒主电路,即将主电路开启,并通过该主电路进一步进行寻呼消息的监听以及接收。
通过上述方式,可以有效降低终端设备的待机功耗,延迟设备的待机时长,从而提升用户体验。
请参见图2,图2为本申请实施例提供的一种通信***的架构图。如图2所示,通信***可以包括终端设备201和网络设备202。
其中,终端设备201可以为接收唤醒消息的终端设备;该唤醒消息中可以携带第一标识信息。可选的,终端设备201也可以为接收第一寻呼消息的终端设备;该第一寻呼消息中可以携带第二标识信息。
网络设备202可以为终端设备201所在的服务小区所对应的网络设备。可选的,网络设备202可以向该服务小区中的所有终端设备发送唤醒消息,上述终端设备接收到该唤醒消息后将判断是否需要唤醒自身主电路。可选的,网络设备202还可以向上述主电路被唤醒的终端设备发送第一寻呼消息,该主电路被唤醒的终端设备接收到该第一寻呼消息后将判断自己是否被寻呼。
可以理解的是,终端设备201可以接收到上述唤醒消息,并根据该唤醒消息所携带的第一标识信息,判断是否需要唤醒自身主电路。其中,需要唤醒主电路的终端设备的个数可以为多个,该多个终端设备中可以包括上述终端设备201。需要说明的是,图2中的终端设备和网络设备的个数仅用于举例,不对本申请造成限制。
其中,终端设备是用户侧的一种用于接收或发射信号的实体,如手机。终端设备也可以称为终端(terminal)、用户设备(user equipment,UE)、移动台(mobile station,MS)、移动终端(mobile terminal,MT)等。终端设备可以是手机(mobile phone)、穿戴式设备、平板电脑(Pad)、带无线收发功能的电脑、虚拟现实(virtual reality,VR)终端设备、增强现实(augmented reality,AR)终端设备、工业控制(industrial control)中的无线终端、无人驾驶(self-driving)中的无线终端、远程手术(remote medical surgery)中的无线终端、智能电网(smart grid)中的无线终端、运输安全(transportation safety)中的无线终端、智慧城市(smart city)中的无线终端、智慧家庭(smart home)中的无线终端、为支持增强型机器类型通信(enhanced Machine-Type communication,eMTC)和/或支持通用移动通信技术的长期演进(long term evolution,LTE)的终端设备等等。本申请的实施例对终端设备所采用的具体技术和具体设备形态不做限定。
网络设备202是网络侧的一种用于发射或接收信号的实体。该网络设备202可以为接入网设备,例如,该网络设备可以为演进型基站(evolved NodeB,eNB)、传输点(transmission reception point,TRP)、NR***中的下一代基站(next generation NodeB,gNB)或其他未来移动通信***中的基站等。该网络设备可以包括室内网络设备,例如用户驻地网络(Customer Premises Network,CPN)设备,该CPN设备可以包括驻地无线接入站(Premises Radio Access Station,PRAS)和演进家庭网关(Evolved Residential Gateway,eRG)。本申请的实施例对网络设备所采用的具体技术和具体设备形态不做限定。
需要说明的是,本申请实施例的技术方案可以应用于各种通信***。例如:长期演进(long term evolution,LTE)***、第五代(5th generation,5G)移动通信***、5G新空口(new radio,NR)***。可选的,本申请实施例的方法还适用于未来的各种通信***,例如6G***或者其他通信网络等。
请参阅图3,图3为本申请实施例提供的一种信息传输方法的流程图。该信息传输方法可以由上述终端设备和网络设备实现,或者可以由上述终端设备中的芯片和网络设备中的芯片实现。如图3所示,该信息传输方法包括但不限于如下步骤S301~步骤S302。
步骤S301,网络设备发送唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为终端标识信息的部分或者全部。相应的,终端设备接收来自网络设备的唤醒消息。
网络设备确定终端标识信息之后,可以向终端标识信息标识的终端设备所在的服务小区发送唤醒消息,以将与该唤醒消息中的第一标识信息相符合的终端设备唤醒。相应的,处于该服务小区中的终端设备,可以接收来自网络设备的唤醒消息,根据该唤醒消息携带的第一标识信息,判断是否需要唤醒自身的主电路。
其中,唤醒消息可以用于将处于睡眠状态下的终端设备唤醒,从而使得该被唤醒的终端设备可以开启主电路,并通过该主电路进一步监听寻呼消息。终端设备可以为该服务小区中的任意一个终端设备,该终端设备可以接收到上述唤醒消息,以判断是否需要唤醒主电路。
第一标识信息可以为终端标识信息的部分或者全部。若第一标识信息为终端标识信息的部分,则此时接收到唤醒消息的终端设备,可以根据该唤醒消息中携带的第一标识信息确定是否需要唤醒自身主电路;在唤醒主电路后,可以进一步通过主电路监听寻呼消息,并根据寻呼消息确定自身是否被寻呼。若第一标识信息为终端标识信息的全部,则此时接收到唤醒消息的终端设备,通过该第一标识信息可以确定自身是否被寻呼。
需要说明的是,下文以第一标识信息为终端标识信息的部分为例进行说明,以更详细地将整个过程进行描述,不对本申请造成限制。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息可以包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
需要说明的是,上述N1个比特位的编号可以为连续的,也可以为不连续的。例如,假设终端标识信息占用8个比特位,则上述第一标识信息可以包括该8个比特位中3个比特位的值。其中,该3个比特位的编号可以为编号1至编号3,即3个比特位的编号为连续的。可选的,该3个比特位的编号可以为编号1、编号3和编号7,即3个比特位的编号为不连续的。
在一种实现方式中,该N1个比特位可以为上述N个比特位中的前N1个高比特位。可选的,该N1个比特位可以为上述N个比特位中的后N1个低比特位。
其中,上述高比特位可以对应为从左向右的多个比特位,该多个比特位的编号连续,如上述前N1个高比特位为N个比特位中的从左向右连续的N1个比特位。上述低比特位可以对应为从右向左的多个比特位,该多个比特位的编号连续,如上述后N1个低比特位为N个比特位中的从右向左连续的N1个比特位。
需要说明的是,上述高比特位(high bit)也可以称为左比特位(left bit)或者前比特位(front bit);同理,上述低比特位(low bit)也可以称为右比特位(right bit)或者后比特位(back bit),并不对本申请构成限制。
在一种实现方式中,上述终端标识信息占用N个比特位;上述网络设备可以向终端设备发送配置信息,该配置信息用于指示第一标识信息用于确定上述N个比特位中的高比特位的值或低比特位的值。相应的,上述终端设备接收来自网络设备的配置信息。也就是说, 终端设备基于配置信息,可以确定唤醒消息中携带的是前述N个比特位中的高比特位还是低比特位的值。示例性的,假设终端标识信息占用8个比特位,网络设备可以配置第一标识信息为该8个比特位的前4个高比特位的值,相应的,终端设备通过接收到该配置信息,可以确定唤醒消息所携带的第一标识信息为该8个比特位的前4个高比特位的值。可选的,网络设备也可以配置第一标识信息为该8个比特位的后5个低比特位的值,本申请对此不作限制。
网络设备通过向终端设备发送配置信息,可以预先配置第一标识信息具体携带的比特位数,以及该比特位为终端标识信息中的高比特位还是低比特位。相应的,终端设备可以通过该配置信息,确定第一标识信息为终端标识信息中的哪些比特位,从而可以确定第一标识信息的值。
步骤S302,终端设备从上述唤醒消息中,获取第一标识信息。
在服务小区中的终端设备接收到上述唤醒消息后,可以从该唤醒消息中,获取到第一标识信息,从而可以根据该第一标识信息,判断是否需要唤醒主电路。
在一种实现方式中,上述唤醒消息中可以显式携带第一标识信息。该显式携带即为上述唤醒消息中包括该第一标识信息。示例性的,假设终端标识信息占用8个比特位,且第一标识信息为终端标识信息中的高4个比特位的值,即上述唤醒消息中可以直接携带该终端标识信息中的高4个比特位的值。通过在唤醒消息中直接携带该第一标识信息,可以在网络设备发送唤醒消息时,同时将上述第一标识信息发送给终端设备,以便于终端设备在接收到唤醒消息时,可以直接获取到该第一标识信息。
在另一种实现方式中,上述唤醒消息中可以隐式携带终端标识信息。该隐式携带即为上述唤醒消息中可以携带指示信息;终端设备可以根据该指示信息,确定第一标识信息。其中,指示信息与第一标识信息具有对应关系。终端设备根据该对应关系以及唤醒消息中携带的指示信息,可以确定第一标识信息。
在一种实现方式中,上述指示信息与第一标识信息的对应关系可以为预先设置的,如协议约定的。示例性的,假设第一标识信息为终端标识信息的前4个比特位的值,可以预先设置该前4个比特位的值与指示信息的对应关系。可以理解的是,该前4个比特位的值一共可以对应16种排列组合的情况。因此,可以预先设置16条指示信息,以分别对应上述16种排列组合的情况。例如,可以预先设置指示信息1对应上述4个比特位的值为0000的情况,指示信息2对应上述4个比特位的值为0001的情况,以此类推,指示信息16对应上述4个比特位的值为1111的情况。通过上述预先设置的方式,可以将第一标识信息与上述指示信息一一对应。也就是说,终端设备在接收到唤醒消息后,可以根据该唤醒消息携带的指示信息确定出第一标识信息。
在另一种实现方式中,上述指示信息与第一标识信息的对应关系可以通过网络设备发送的消息(如***消息)确定。具体的,***消息中可以携带该指示信息与第一标识信息的对应关系。此时,终端设备可以通过接收到的***消息,获取到指示信息与第一标识信息的对应关系,从而根据该对应关系,确定出上述第一标识信息。示例性的,假设***消息指示:指示信息1对应终端标识信息的前5个比特位的值,且该前5个比特位的值为00000;则终端设备接收到该***消息后,可以确定出第一标识信息为终端标识信息的前5个比特位 的值,且该第一标识信息的值为00000。
可选的,上述指示信息可以为序列。也就是说,在唤醒消息中可以携带一个序列(如称为第一序列)。可以理解的是,上述对应关系具体可以是序列与第一标识信息之间的对应关系。终端设备可以通过该第一序列以及序列与第一标识信息之间的对应关系,确定与该第一序列对应的第一标识信息,与该第一序列对应的第一标识信息即为第一标识信息。可选的,该指示信息还可以包括其他形式的信息,本申请对此不做限制。
终端设备可以通过接收来自网络设备的唤醒消息,并获取上述唤醒消息所携带的第一标识信息,来判断自身的标识信息是否与该第一标识信息相符合,从而判断是否需要唤醒主电路。
示例性的,假设第一标识信息为终端标识信息中的高4个比特位的值,且该高4个比特位的值为0001;即在服务小区中的终端设备可以根据该高4个比特位的值,判断是否与自身的标识信息中的高4个比特位的值是否为0001。若自身标识信息的高4个比特位的值为0001,则需要唤醒该终端设备的主电路;若该自身标识信息的高4个比特位的值不为0001,则不需要唤醒该终端设备的主电路。
示例性的,假设服务小区中一共有10个终端设备,即网络设备可以向上述10个终端设备发送唤醒消息,相应的,该10个终端设备可以接收到上述唤醒消息。若在上述10个终端设备中,存在5个终端设备的标识信息与第一标识信息相符合;则该5个终端设备需要唤醒自身主电路。
本申请实施例中,网络设备可以通过发送唤醒消息;相应的,终端设备可以通过接收该唤醒消息,以从该唤醒消息中获取第一标识信息,从而根据该第一标识信息,判断出是否需要唤醒主电路。
请参阅图4,图4为本申请实施例提供的另一种信息传输方法的流程图。该信息传输方法可以由上述终端设备和网络设备实现,或者可以由上述终端设备中的芯片和网络设备中的芯片实现。如图4所示,该信息传输方法包括但不限于如下步骤S401~步骤S405。
可选的,步骤S401,核心网网元可以向网络设备发送第二寻呼消息,该第二寻呼消息可以用于指示终端标识信息。相应的,上述网络设备可以接收来自核心网网元的第二寻呼消息。
具体的,核心网网元在确定终端标识信息后,可以向该终端标识信息标识的终端设备的服务小区对应的网络设备发送第二寻呼消息,以告知该网络设备,该网络设备服务的终端设备中存在标识信息与上述终端标识信息相符合的终端设备,即被寻呼的终端设备。
上述核心网网元可以为移动管理功能(access and mobility management function,AMF)或者移动性管理实体(Mobility Management Entity,MME)等,本申请对此不作限制。
步骤S402,网络设备发送唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为终端标识信息的部分或者全部。相应的,终端设备接收来自网络设备的唤醒消息。
可选的,网络设备在接收到来自核心网网元的第二寻呼消息后,可以确定终端标识信息;进一步的,网络设备可以在终端设备的服务小区中发送唤醒消息,以便该服务小区中的终端设备确定是否需要唤醒自身主电路;进一步的,主电路被唤醒的终端设备可以通过 该主电路接收第一寻呼消息,以确定自身是否被寻呼。其中,网络设备在服务小区中发送唤醒消息的含义为,在服务小区中广播该唤醒消息。
网络设备在服务小区发起寻呼的方式可以有两种,即接入网(Radio Access Network,RAN)寻呼和核心网(Core Network,CN)寻呼。其中,RAN寻呼与CN寻呼主要的区别在于,上述两种寻呼方式所对应的终端标识信息可以不同。例如,CN寻呼对应的终端标识信息可以为48比特,RAN寻呼对应的终端标识信息可以为20比特。
需要说明的是,在当前的寻呼为CN寻呼时,本申请实施例可以从步骤S401开始。可以理解的是,对于CN寻呼,网络设备可以在接收来自核心网网元的第二寻呼消息之后,再向该服务小区中的终端设备发送唤醒消息。可选的,在当前的寻呼为RAN寻呼时,本申请实施例可以从步骤S402开始。
在一种实现方式中,第一寻呼消息可以为接入网寻呼消息,或者可以为核心网寻呼消息。其中,接入网寻呼消息即为RAN寻呼对应的寻呼消息,核心网寻呼消息即为CN寻呼对应的寻呼消息。
在一种实现方式中,第一寻呼消息与上述第二寻呼消息所携带的内容可以不同。可选的,第一寻呼消息与上述第二寻呼消息的格式也可以不同。
可以理解的是,网络设备发起CN寻呼时,对应的寻呼消息可以为核心网寻呼消息;网络设备发起RAN寻呼时,对应的寻呼消息可以为接入网寻呼消息。由于CN寻呼和RAN寻呼所对应的终端标识信息不同,因此可以采用以下两种方式对CN寻呼和RAN寻呼对应的第一标识信息和第二标识信息进行配置。
方式一:CN寻呼和RAN寻呼的第一标识信息配置相同的比特位数。例如,两种寻呼方式所对应的第一标识信息中都携带M比特。可以理解的是,在两种寻呼方式所对应的第一标识信息都携带M比特的情况下,两种寻呼方式所对应的第二标识信息所携带的比特位数可以相同也可以不同。示例性的,若CN寻呼对应的终端标识信息为48比特,RAN寻呼对应的终端标识信息为20比特,且上述两种寻呼方式所对应的第一标识信息中均携带10比特的值;则CN寻呼所对应的第二标识信息可以携带其余38比特的值,RAN寻呼所对应的第二标识信息可以携带其余10比特的值。
方式二:CN寻呼和RAN寻呼的第一标识信息配置不同的比特位数。例如,CN寻呼的第一标识信息中可以携带M1比特;RAN寻呼的第一标识信息中可以携带M2比特。可以理解的是,在CN寻呼和RAN寻呼所对应的第一标识信息携带不同比特的情况下,两种寻呼方式所对应的第二标识信息所携带的比特位数可以不同,也可以相同,本申请对此不作限制。示例性的,假设CN寻呼对应的终端标识信息为48比特,RAN寻呼对应的终端标识信息为20比特;若CN寻呼所对应的第一标识信息中可以携带38比特的值,RAN寻呼所对应的第一标识信息中可以携带10比特的值,则CN寻呼所对应的第二标识信息可以携带其余10比特的值,RAN寻呼所对应的第二标识信息可以携带其余10比特的值。在该示例中,对于CN寻呼和RAN寻呼,第二标识信息所携带的比特位数相同。可以理解的是,该示例仅用于举例,不对本申请造成限制。
步骤S403,终端设备从上述唤醒消息中,获取第一标识信息。
具体的,步骤S402和步骤S403可参见前述图3所示的实施例中的步骤S301和步骤S302 的相关描述,本申请在此不再赘述。
步骤S404,网络设备发送第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部。相应的,终端设备接收来自网络设备的第一寻呼消息。
网络设备发送唤醒消息后,网络设备可以在服务小区中发送第一寻呼消息。相应的,终端设备的主电路被唤醒后,该终端设备可以接收来自网络设备的第一寻呼消息,从而可以根据该第一寻呼消息所携带的第二标识信息,判断是否被寻呼。
需要说明的是,由于标识信息与第一标识信息相符合的终端设备可以为多个,即主电路被唤醒的终端设备可以为多个,因此,上述终端设备可以为多个主电路被唤醒的终端设备中的任意一个终端设备。该终端设备可以通过接收第一寻呼消息,以获取第二标识信息,从而判断自身的标识信息是否与第二标识信息相符合,即是否被寻呼。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。可以理解的是,第二标识信息可以包括,除去上述第一标识信息所包括的N1个比特位的值,该N个比特位中其余比特位的值。例如,假设终端标识信息占用8个比特位,且上述第一标识信息包括该8个比特位中3个比特位的值,则第二标识信息可以包括该8个比特位中其余5个比特位的值。其中,若第一标识信息的3个比特位的编号为编号1至编号3,则第二标识信息的5个比特位的编号可以为编号4至编号8。可选的,若第一标识信息的3个比特位的编号为编号1、编号3和编号7,则第二标识信息的5个比特位的编号可以为编号2、编号4、编号5、编号6和编号8。
在一种实现方式中,该N2个比特位为上述N个比特位中的后N2个低比特位。可选的,该N2个比特位为上述N个比特位中的前N2个高比特位。其中,上述后N2个低比特位为N个比特位中的从右向左连续的N2个比特位。可选的,上述前N2个高比特位为N个比特位中的从左向右连续的N2个比特位。
可选的,前述配置信息还可以用于指示第二标识信息用于确定上述N个比特位中的高比特位的值或低比特位的值。可选的,配置信息可以显式指示或隐式指示第二标识信息用于确定上述N个比特位中的高比特位的值还是低比特位的值。配置信息的相关内容可参见图3所示实施例中的详细描述,本申请在此不再赘述。可以理解的是,若配置信息指示了第一标识信息用于确定N个比特位中的高比特位的值,那么可以确定第二标识信息用于确定上述N个比特位中的低比特位的值。又如,若配置信息指示了第一标识信息用于确定上述N个比特位中的低比特位的值,则可以确定第二标识信息用于确定上述N个比特位中的高比特位的值。
步骤S405,终端设备从第一寻呼消息中,获取第二标识信息;并根据上述第一标识信息与第二标识信息,确定终端标识信息;可选的,终端设备进一步可以根据上述终端标识信息,确定该终端设备是否被寻呼。
终端设备可以通过接收来自网络设备的第一寻呼消息,并获取上述第一寻呼消息所携带的第二标识信息,来判断自身的标识信息是否与该第二标识信息相符合,从而判断自己是否被寻呼。
需要说明的是,第一寻呼消息中同样可以显式携带或者隐式携带第二标识信息,相关 内容的描述可参见前述图3所示的实施例,本申请在此不再赘述。
在一种实现方式中,上述终端标识信息占用N个比特位;终端设备根据上述第一标识信息与上述第二标识信息,确定终端标识信息的方式可以为:终端设备根据第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值,确定上述N个比特位的值;其中,N1、N2均为非负整数,N1+N2=N。在N1、N2均为正整数的情况下,也就是说,上述第一标识信息可以为一部分标识信息,上述第二标识信息可以为另一部分标识信息。可以理解的是,第一标识信息和第二标识信息可以组成完整标识信息。
可选的,上述第一标识信息也可以为完整的终端标识信息,即N=N1;可选的,上述第二标识信息也可以为完整的终端标识信息,即N=N2,本申请对此不作限制。
需要说明的是,在确定出完整的终端标识信息后,终端设备可以将该完整的终端标识信息,与自身的标识信息进行比对,以判断自己是否被寻呼。其中,若自身的标识信息与完整标识信息相符合(如相同),则可以判断自己被寻呼;若自身的标识信息与完整标识信息不符合(如不同),则可以判断自己未被寻呼。
通过本申请实施例提供的方法,首先,网络设备通过发送唤醒消息,相应的,终端设备接收到上述唤醒消息后,可以将终端设备的主电路唤醒;其次,网络设备发送第一寻呼消息,相应的,终端设备接收到该第一寻呼消息后,可以获取到第二标识信息,从而判断是否被寻呼。
请参阅图5,图5为本申请实施例提供的一种通信装置的结构示意图。该装置可以是上述终端设备,也可以是终端设备中的装置,或者是能够和终端设备匹配使用的装置。图5所示的通信装置可以包括通信单元501、获取单元502和确定单元503。通信单元501集成有接收单元和发送单元等。通信单元501也可以称为收发单元。或者,也可将通信单元501拆分为接收单元和发送单元。其中,各个单元的详细描述如下:
该通信单元501,用于接收唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为终端标识信息的部分或者全部;该获取单元502,用于从上述唤醒消息中,获取第一标识信息。
在一种实现方式中,上述通信单元501,还用于接收第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部;上述获取单元502,还用于从上述第一寻呼消息中,获取第二标识信息;该确定单元503,用于根据第一标识信息与第二标识信息,确定终端标识信息。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述确定单元503,还用于根据第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值,确定N个比特位的值;其中,N1、N2均 为非负整数,N1+N2=N。
在一种实现方式中,上述终端标识信息占用N个比特位;上述通信单元501还用于,接收配置信息,该配置信息用于指示第一标识信息用于确定上述N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述确定单元503,还用于根据该指示信息,确定第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述确定单元503,还用于根据上述终端标识信息,确定是否被寻呼。
根据本申请的实施例,图5所示的通信装置中的各个单元可以分别或全部合并为一个或若干个另外的单元来构成,或者其中的某个(些)单元还可以再拆分为功能上更小的多个单元来构成,这可以实现同样的操作,而不影响本申请的实施例的技术效果的实现。上述单元是基于逻辑功能划分的,在实际应用中,一个单元的功能也可以由多个单元来实现,或者多个单元的功能由一个单元实现。在本申请的其他实施例中,通信装置也可以包括其他单元,在实际应用中,这些功能也可以由其他单元协助实现,并且可以由多个单元协作实现。
上述通信装置例如可以是:芯片、或者芯片模组。关于上述实施例中描述的各个装置、产品包含的各个模块,其可以是软件模块,也可以是硬件模块,或者也可以部分是软件模块,部分是硬件模块。例如,对于应用于或集成于芯片的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于芯片内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现;对于应用于或集成于芯片模组的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,不同的模块可以位于芯片模组的同一组件(例如芯片、电路模块等)或者不同组件中,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于芯片模组内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现;对于应用于或集成于终端的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,不同的模块可以位于终端内同一组件(例如,芯片、电路模块等)或者不同组件中,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于终端内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现。
本申请实施例和前述方法的实施例基于同一构思,其带来的技术效果也相同,具体原理请参照前述实施例的描述,在此不赘述。
请参阅图6,图6为本申请实施例提供的一种通信装置的结构示意图。该装置可以是上述网络设备,也可以是网络设备中的装置,或者是能够和网络设备匹配使用的装置。该通信装置可以包括获取单元601和通信单元602。通信单元602集成有接收单元和发送单元等。通信单元602也可以称为收发单元。或者,也可将通信单元602拆分为接收单元和发送单元。其中:
该获取单元601,用于获取第一标识信息,该第一标识信息为终端标识信息的部分或者全部;该通信单元602,用于发送唤醒消息,该唤醒消息携带第一标识信息。
在一种实现方式中,上述通信单元602,还用于发送第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述终端标识信息占用N个比特位;该N个比特位的值由第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值确定。
在一种实现方式中,上述通信单元602,还用于发送配置信息,该配置信息用于指示第一标识信息用于确定N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述唤醒消息携带指示信息;该指示信息用于确定上述第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述通信单元602,还用于接收来自核心网网元的第二寻呼消息,该第二寻呼消息用于指示终端标识信息。
根据本申请的实施例,图6所示的通信装置中的各个单元可以分别或全部合并为一个或若干个另外的单元来构成,或者其中的某个(些)单元还可以再拆分为功能上更小的多个单元来构成,这可以实现同样的操作,而不影响本申请的实施例的技术效果的实现。上述单元是基于逻辑功能划分的,在实际应用中,一个单元的功能也可以由多个单元来实现,或者多个单元的功能由一个单元实现。在本申请的其他实施例中,通信装置也可以包括其他单元,在实际应用中,这些功能也可以由其他单元协助实现,并且可以由多个单元协作实现。
上述通信装置例如可以是:芯片、或者芯片模组。关于上述实施例中描述的各个装置、产品包含的各个模块,其可以是软件模块,也可以是硬件模块,或者也可以部分是软件模块,部分是硬件模块。例如,对于应用于或集成于芯片的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于芯片内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现;对于应用于或集成于芯片模组的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,不同的模块可以位于芯片模组的同一组件(例如芯片、电路模块等)或者不同组件中,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于芯片模组内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现;对于应用于或集成于终端的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,不同的模块可以位于终端内同一组件(例如,芯片、电路模块等)或者不同组件中,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于终端内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现。
本申请实施例和前述方法的实施例基于同一构思,其带来的技术效果也相同,具体原 理请参照前述实施例的描述,在此不赘述。
请参阅图7,图7为本申请实施例提供的一种通信装置70。如图7所示,该通信装置70可以包括处理器701和收发器702。可选的,该通信装置还可以包括存储器703。其中,处理器701、收发器702和存储器703可以通过总线704或其他方式连接。总线在图7中以粗线表示,其它部件之间的连接方式,仅是进行示意性说明,并不引以为限。总线可以分为地址总线、数据总线、控制总线等。为便于表示,图7中仅用一条粗线表示,但并不表示仅有一根总线或一种类型的总线。
本申请实施例中的耦合是装置、单元或模块之间的间接耦合或通信连接,可以是电性,机械或其它的形式,用于装置、单元或模块之间的信息交互。本申请实施例中不限定上述处理器701和存储器703之间的具体连接介质。
存储器703可以包括只读存储器和随机存取存储器,并向处理器701提供指令和数据。存储器703的一部分还可以包括非易失性随机存取存储器。
处理器701可以是中央处理单元(Central Processing Unit,CPU),该处理器701还可以是其他通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器,可选的,该处理器701也可以是任何常规的处理器等。其中:
存储器703,用于存储程序指令。
处理器701,用于调用存储器703中存储的程序指令,以用于:
调用收发器702,用于接收唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为终端标识信息的部分或者全部;上述处理器701,还用于从上述唤醒消息中,获取第一标识信息。
在一种实现方式中,上述收发器702,还用于接收第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部;上述处理器701,还用于从上述第一寻呼消息中,获取第二标识信息;上述处理器701,还用于根据第一标识信息与第二标识信息,确定终端标识信息。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述处理器701,还用于根据第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值,确定N个比特位的值;其中,N1、N2均为非负整数,N1+N2=N。
在一种实现方式中,上述终端标识信息占用N个比特位;上述收发器702,还用于接收 配置信息,该配置信息用于指示第一标识信息用于确定上述N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述处理器701,还用于根据该指示信息,确定第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述处理器701,还用于根据上述终端标识信息,确定是否被寻呼。
上述通信装置还可以用于实现上述方法实施例中网络设备的功能。该通信装置可以是网络设备或用于网络设备的装置。上述用于网络设备的装置可以为网络设备内的芯片***或芯片。其中,芯片***可以由芯片构成,也可以包含芯片和其他分立器件。该通信装置70可以包括处理器701和收发器702。可选的,该通信装置还可以包括存储器703。其中:
存储器703,用于存储程序指令。
处理器701,用于调用存储器703中存储的程序指令,以用于:
获取第一标识信息,该第一标识信息为终端标识信息的部分或者全部;收发器702,用于发送唤醒消息,该唤醒消息携带第一标识信息。
在一种实现方式中,上述收发器702,还用于发送第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述终端标识信息占用N个比特位;该N个比特位的值由第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值确定。
在一种实现方式中,上述收发器702,还用于发送配置信息,该配置信息用于指示第一标识信息用于确定N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述唤醒消息携带指示信息;该指示信息用于确定上述第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述收发器702,还用于接收来自核心网网元的第二寻呼消息,该第二寻呼消息用于指示终端标识信息。
在本申请实施例中,可以通过在包括中央处理单元(CPU)、随机存取存储介质(RAM)、只读存储介质(ROM)等处理元件和存储元件的例如计算机的通用计算装置上运行能够执行如图2中所示的相应方法所涉及的各步骤的计算机程序(包括程序代码),以及来实现本申请实施例所提供的方法。计算机程序可以记载于例如计算机可读记录介质上,并通过计算机可读记录介质装载于上述计算装置中,并在其中运行。
基于同一发明构思,本申请实施例中提供的通信装置解决问题的原理与有益效果与本申请方法实施例中通信装置解决问题的原理和有益效果相似,可以参见方法的实施的原理和有益效果,为简洁描述,在这里不再赘述。
本申请实施例还提供一种芯片,该芯片可以执行前述方法实施例中终端设备的相关步骤。该芯片用于:接收唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为终端标识信息的部分或者全部;从上述唤醒消息中,获取第一标识信息。
在一种实现方式中,上述芯片还用于,接收第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部;上述芯片还用于,从上述第一寻呼消息中,获取第二标识信息;上述芯片还用于,根据第一标识信息与第二标识信息,确定终端标识信息。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述芯片还用于,根据第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值,确定N个比特位的值;其中,N1、N2均为非负整数,N1+N2=N。
在一种实现方式中,上述终端标识信息占用N个比特位;上述芯片还用于,接收配置信息,该配置信息用于指示第一标识信息用于确定上述N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述芯片还用于,根据该指示信息,确定第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述芯片还用于,根据上述终端标识信息,确定是否被寻呼。
在一种实现方式中,上述芯片包括至少一个处理器、至少一个第一存储器和至少一个第二存储器;其中,前述至少一个第一存储器和前述至少一个处理器通过线路互联,前述第一存储器中存储有指令;前述至少一个第二存储器和前述至少一个处理器通过线路互联,前述第二存储器中存储前述方法实施例中需要存储的数据。
本申请实施例还提供另一种芯片,该芯片可以执行前述方法实施例中网络设备的相关步骤。该芯片用于:获取第一标识信息,该第一标识信息为终端标识信息的部分或者全部;发送唤醒消息,该唤醒消息携带上述第一标识信息。
在一种实现方式中,上述芯片还用于,发送第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述终端标识信息占用N个比特位;该N个比特位的值由第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值确定。
在一种实现方式中,上述芯片还用于,发送配置信息,该配置信息用于指示第一标识信息用于确定N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述唤醒消息携带指示信息;该指示信息用于确定上述第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述芯片还用于,接收来自核心网网元的第二寻呼消息,该第二寻呼消息用于指示终端标识信息。
在一种实现方式中,上述芯片包括至少一个处理器、至少一个第一存储器和至少一个第二存储器;其中,前述至少一个第一存储器和前述至少一个处理器通过线路互联,前述第一存储器中存储有指令;前述至少一个第二存储器和前述至少一个处理器通过线路互联,前述第二存储器中存储前述方法实施例中需要存储的数据。
对于应用于或集成于芯片的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于芯片内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现。
请参阅图8,图8为本申请实施例提供的一种模组设备的结构示意图。该模组设备80可以执行前述方法实施例中终端设备的相关步骤,该模组设备80包括:通信模组801、电源模组802、存储模组803以及芯片模组804。
其中,上述电源模组802用于为模组设备提供电能;上述存储模组803用于存储数据和指令;上述通信模组801用于进行模组设备内部通信,或者用于模组设备与外部设备进行通信;上述芯片模组804用于:
接收唤醒消息,该唤醒消息携带第一标识信息,该第一标识信息为终端标识信息的部分或者全部;从上述唤醒消息中,获取第一标识信息。
在一种实现方式中,上述芯片模组804,还用于接收第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部;上述芯片模组804,还用于从上述第一寻呼消息中,获取第二标识信息;上述芯片模组804,还用于根据第一标识信息与第二标识信息,确定终端标识信息。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述芯片模组804,还用于根据第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值,确定N个比特位的值;其中,N1、N2均为非负整数,N1+N2=N。
在一种实现方式中,上述终端标识信息占用N个比特位;上述芯片模组804,还用于接收配置信息,该配置信息用于指示第一标识信息用于确定上述N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述芯片模组804,还用于根据该指示信息,确定第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述芯片模组804,还用于根据上述终端标识信息,确定是否被寻呼。
请参阅图8,图8为本申请实施例提供的一种模组设备的结构示意图。该模组设备80可以执行前述方法实施例中网络设备的相关步骤,该模组设备80包括:通信模组801、电源模组802、存储模组803以及芯片模组804。
其中,上述电源模组802用于为模组设备提供电能;上述存储模组803用于存储数据和指令;上述通信模组801用于进行模组设备内部通信,或者用于模组设备与外部设备进行通信;上述芯片模组804用于:
获取第一标识信息,该第一标识信息为终端标识信息的部分或者全部;
发送唤醒消息,该唤醒消息携带第一标识信息。
在一种实现方式中,上述芯片模组804,还用于发送第一寻呼消息,该第一寻呼消息携带第二标识信息,该第二标识信息为终端标识信息的部分或者全部。
在一种实现方式中,上述终端标识信息占用N个比特位,第一标识信息包括该N个比特位中N1个比特位的值,其中,N1为非负整数。
在一种实现方式中,上述N1个比特位为N个比特位中的前N1个高比特位。
在一种实现方式中,上述终端标识信息占用N个比特位,第二标识信息包括该N个比特位中N2个比特位的值,其中,N2为非负整数。
在一种实现方式中,上述N2个比特位为N个比特位中的后N2个低比特位。
在一种实现方式中,上述终端标识信息占用N个比特位;该N个比特位的值由第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值确定。
在一种实现方式中,上述芯片模组804,还用于发送配置信息,该配置信息用于指示第一标识信息用于确定N个比特位中的高比特位的值或低比特位的值。
在一种实现方式中,上述唤醒消息携带指示信息;该指示信息用于确定上述第一标识信息。
在一种实现方式中,上述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
在一种实现方式中,上述芯片模组804,还用于接收来自核心网网元的第二寻呼消息,该第二寻呼消息用于指示终端标识信息。
对于应用于或集成于芯片模组的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,不同的模块可以位于芯片模组的同一组件(例如芯片、电路模块等)或者不同组件中,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于芯片模组内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现。
本申请实施例还提供一种计算机可读存储介质,计算机可读存储介质中存储有一条或 多条指令,一条或多条指令适于由处理器加载并执行上述方法实施例所提供的方法。
本申请实施例还提供一种包含指令的计算机程序产品,当其在计算机上运行时,使得计算机执行上述方法实施例所提供的方法。
需要说明的是,对于前述的各个方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本申请并不受所描述的动作顺序的限制,因为依据本申请,某一些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本申请所必须的。
本申请实施例方法中的步骤可以根据实际需要进行顺序调整、合并和删减。
本申请实施例装置中的模块可以根据实际需要进行合并、划分和删减。
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储介质中,可读存储介质可以包括:闪存盘、只读存储器(Read-Only Memory,ROM)、随机存取器(Random Access Memory,RAM)、磁盘或光盘等。
以上所揭露的仅为本申请一种较佳实施例而已,仅仅是本发明一部分实施例,当然不能以此来限定本申请之权利范围。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。

Claims (29)

  1. 一种信息传输方法,其特征在于,所述方法包括:
    接收唤醒消息,所述唤醒消息携带第一标识信息,所述第一标识信息为终端标识信息的部分或者全部;
    从所述唤醒消息中,获取所述第一标识信息。
  2. 如权利要求1所述的方法,其特征在于,所述方法还包括:
    接收第一寻呼消息,所述第一寻呼消息携带第二标识信息,所述第二标识信息为所述终端标识信息的部分或者全部;
    从所述第一寻呼消息中,获取所述第二标识信息;
    根据所述第一标识信息与所述第二标识信息,确定所述终端标识信息。
  3. 根据权利要求1所述的方法,其特征在于,所述终端标识信息占用N个比特位,所述第一标识信息包括所述N个比特位中N1个比特位的值,其中,N1为非负整数。
  4. 根据权利要求3所述的方法,其特征在于,所述N1个比特位为所述N个比特位中的前N1个高比特位。
  5. 根据权利要求2所述的方法,其特征在于,所述终端标识信息占用N个比特位,所述第二标识信息包括所述N个比特位中N2个比特位的值,其中,N2为非负整数。
  6. 根据权利要求5所述的方法,其特征在于,所述N2个比特位为所述N个比特位中的后N2个低比特位。
  7. 根据权利要求2-6中任一项所述的方法,其特征在于,所述终端标识信息占用N个比特位;所述根据所述第一标识信息与所述第二标识信息,确定所述终端标识信息,包括:
    根据所述第一标识信息所包括的N1个比特位的值与所述第二标识信息所包括的N2个比特位的值,确定所述N个比特位的值;其中,N1、N2均为非负整数,N1+N2=N。
  8. 根据权利要求1-6中任一项所述的方法,其特征在于,所述终端标识信息占用N个比特位;所述方法还包括:
    接收配置信息,所述配置信息用于指示所述第一标识信息用于确定所述N个比特位中的高比特位的值或低比特位的值。
  9. 根据权利要求1-6中任一项所述的方法,其特征在于,所述唤醒消息携带指示信息;所述方法还包括:
    根据所述指示信息,确定所述第一标识信息。
  10. 根据权利要求2-6中任一项所述的方法,其特征在于,所述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
  11. 根据权利要求1-6中任一项所述的方法,其特征在于,所述方法还包括:
    根据所述终端标识信息,确定是否被寻呼。
  12. 一种信息传输方法,其特征在于,所述方法包括:
    获取第一标识信息,所述第一标识信息为终端标识信息的部分或者全部;
    发送唤醒消息,所述唤醒消息携带所述第一标识信息。
  13. 根据权利要求12所述的方法,其特征在于,所述方法还包括:
    发送第一寻呼消息,所述第一寻呼消息携带第二标识信息,所述第二标识信息为所述终端标识信息的部分或者全部。
  14. 根据权利要求12所述的方法,其特征在于,所述终端标识信息占用N个比特位,所述第一标识信息包括所述N个比特位中N1个比特位的值,其中,N1为非负整数。
  15. 根据权利要求14所述的方法,其特征在于,所述N1个比特位为所述N个比特位中的前N1个高比特位。
  16. 根据权利要求13所述的方法,其特征在于,所述终端标识信息占用N个比特位,所述第二标识信息包括所述N个比特位中N2个比特位的值,其中,N2为非负整数。
  17. 根据权利要求16所述的方法,其特征在于,所述N2个比特位为所述N个比特位中的后N2个低比特位。
  18. 根据权利要求12-17中任一项所述的方法,其特征在于,所述终端标识信息占用N个比特位;所述N个比特位的值由所述第一标识信息所包括的N1个比特位的值与第二标识信息所包括的N2个比特位的值确定。
  19. 根据权利要求12-17中任一项所述的方法,其特征在于,所述终端标识信息占用N个比特位;所述方法还包括:
    发送配置信息,所述配置信息用于指示所述第一标识信息用于确定所述N个比特位中的高比特位的值或低比特位的值。
  20. 根据权利要求12-17中任一项所述的方法,其特征在于,所述唤醒消息携带指示信息;所述指示信息用于确定所述第一标识信息。
  21. 根据权利要求13-17中任一项所述的方法,其特征在于,所述第一寻呼消息为接入网寻呼消息或者核心网寻呼消息。
  22. 根据权利要求21所述的方法,其特征在于,所述第一寻呼消息为核心网寻呼消息;所述发送唤醒消息之前,所述方法还包括:
    接收来自核心网网元的第二寻呼消息,所述第二寻呼消息用于指示所述终端标识信息。
  23. 一种通信装置,其特征在于,包括用于执行如权利要求1~22中任一项所述的方法的单元。
  24. 一种通信装置,其特征在于,包括处理器;
    所述处理器,用于执行如权利要求1~22中任一项所述的方法。
  25. 根据权利要求24所述的通信装置,其特征在于,所述通信装置还包括存储器:
    所述存储器,用于存储计算机程序;
    所述处理器,具体用于从所述存储器中调用所述计算机程序,执行如权利要求1~22中任一项所述的方法。
  26. 一种芯片,其特征在于,
    所述芯片,用于接收唤醒消息,所述唤醒消息携带第一标识信息,所述第一标识信息为终端标识信息的部分或者全部;
    从所述唤醒消息中,获取所述第一标识信息。
  27. 一种芯片,其特征在于,
    所述芯片,用于获取第一标识信息,所述第一标识信息为终端标识信息的部分或者全部;
    发送唤醒消息,所述唤醒消息携带所述第一标识信息。
  28. 一种模组设备,其特征在于,所述模组设备包括通信模组、电源模组、存储模组以及芯片模组,其中:
    所述电源模组用于为所述模组设备提供电能;
    所述存储模组用于存储数据和指令;
    所述通信模组用于进行模组设备内部通信,或者用于所述模组设备与外部设备进行通信;
    所述芯片模组用于:
    接收唤醒消息,所述唤醒消息携带第一标识信息,所述第一标识信息为终端标识信息 的部分或者全部;
    从所述唤醒消息中,获取所述第一标识信息。
  29. 一种模组设备,其特征在于,所述模组设备包括通信模组、电源模组、存储模组以及芯片模组,其中:
    所述电源模组用于为所述模组设备提供电能;
    所述存储模组用于存储数据和指令;
    所述通信模组用于进行模组设备内部通信,或者用于所述模组设备与外部设备进行通信;
    所述芯片模组用于:
    获取第一标识信息,所述第一标识信息为终端标识信息的部分或者全部;
    发送唤醒消息,所述唤醒消息携带所述第一标识信息。
PCT/CN2022/111139 2021-08-25 2022-08-09 一种信息传输方法、通信装置、芯片及其模组设备 WO2023024896A1 (zh)

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