WO2023169397A1 - 非连续接收drx参数配置方法、装置、终端及网络侧设备 - Google Patents
非连续接收drx参数配置方法、装置、终端及网络侧设备 Download PDFInfo
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- WO2023169397A1 WO2023169397A1 PCT/CN2023/080010 CN2023080010W WO2023169397A1 WO 2023169397 A1 WO2023169397 A1 WO 2023169397A1 CN 2023080010 W CN2023080010 W CN 2023080010W WO 2023169397 A1 WO2023169397 A1 WO 2023169397A1
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- Prior art keywords
- drx
- configuration information
- wus
- terminal
- starting position
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. Transmission Power Control [TPC] or power classes
- H04W52/02—Power saving arrangements
- H04W52/0209—Power saving arrangements in terminal devices
- H04W52/0261—Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. Transmission Power Control [TPC] or power classes
- H04W52/02—Power saving arrangements
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. Transmission Power Control [TPC] or power classes
- H04W52/02—Power saving arrangements
- H04W52/0209—Power saving arrangements in terminal devices
- H04W52/0212—Power saving arrangements in terminal devices managed by the network, e.g. network or access point is leader and terminal is follower
- H04W52/0216—Power saving arrangements in terminal devices managed by the network, e.g. network or access point is leader and terminal is follower using a pre-established activity schedule, e.g. traffic indication frame
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. Transmission Power Control [TPC] or power classes
- H04W52/02—Power saving arrangements
- H04W52/0209—Power saving arrangements in terminal devices
- H04W52/0225—Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal
- H04W52/0229—Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a wanted signal
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/20—Manipulation of established connections
- H04W76/28—Discontinuous transmission [DTX]; Discontinuous reception [DRX]
-
- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
- Y02D30/00—Reducing energy consumption in communication networks
- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
Definitions
- This application belongs to the field of communication technology, and specifically relates to a DRX parameter configuration method, device, terminal and network side equipment.
- low power wake up receiver allows the terminal to shut down or sleep the main communication module under certain circumstances.
- WUR low power wake up signal
- LP-WUS low power wake up signal
- terminals need to monitor low-power wake-up signals in real time to determine when to turn on the main communication module. This also results in the terminal needing to be in a listening state at all times, resulting in an increase in terminal power consumption. .
- Embodiments of the present application provide a DRX parameter configuration method, device, terminal and network-side equipment, which can solve the problem of high terminal power consumption in related technologies.
- the first aspect provides a DRX parameter configuration method, including:
- the terminal receives the DRX configuration information of the wake-up signal WUS;
- the terminal performs WUS monitoring within the duration of DRX based on the configuration information of the DRX;
- the configuration information of the DRX includes at least one of the following:
- the second aspect provides a DRX parameter configuration method, including:
- the network side device sends the WUS DRX configuration information to the terminal;
- the configuration information of the DRX includes at least one of the following:
- a DRX parameter configuration device including:
- the first receiving module is used to receive the DRX configuration information of the wake-up signal WUS;
- An execution module configured to perform WUS monitoring within the duration of DRX based on the configuration information of the DRX;
- the configuration information of the DRX includes at least one of the following:
- a DRX parameter configuration device including:
- the second sending module is used to send the DRX configuration information of WUS to the terminal;
- the configuration information of the DRX includes at least one of the following:
- a terminal in a fifth aspect, includes a processor and a memory.
- the memory stores programs or instructions that can be run on the processor.
- the program or instructions are executed by the processor, the following implementations are implemented: The steps of the DRX parameter configuration method described in one aspect.
- a terminal including a processor and a communication interface, wherein the communication interface is used to receive the DRX configuration information of the wake-up signal WUS; the processor is used to receive the DRX configuration information based on the DRX configuration information. Execute WUS monitoring within the duration;
- the configuration information of the DRX includes at least one of the following:
- a network side device in a seventh aspect, includes a processor and a memory.
- the memory stores programs or instructions that can be run on the processor.
- the program or instructions are executed by the processor.
- a network side device including a processor and a communication interface, wherein the communication interface is used to send the DRX configuration information of WUS to the terminal;
- the configuration information of the DRX includes at least one of the following:
- a ninth aspect provides a communication system, including: a terminal and a network side device.
- the terminal can be used to perform the steps of the DRX parameter configuration method described in the first aspect.
- the network side device can be used to perform the steps of the second aspect. The steps of the DRX parameter configuration method described in the aspect.
- a readable storage medium In a tenth aspect, a readable storage medium is provided. Programs or instructions are stored on the readable storage medium. When the programs or instructions are executed by a processor, the steps of the DRX parameter configuration method as described in the first aspect are implemented. Or implement the steps of the DRX parameter configuration method described in the second aspect.
- a chip in an eleventh aspect, includes a processor and a communication interface.
- the communication interface is coupled to the processor.
- the processor is used to run programs or instructions to implement the method described in the first aspect.
- DRX parameter configuration method or implement the DRX parameter configuration method as described in the second aspect.
- a computer program/program product is provided, the computer program/program product is stored in a storage medium, and the computer program/program product is executed by at least one processor to implement as described in the first aspect
- a thirteenth aspect provides a communication device configured to perform the steps of the method as described in the first aspect, or the steps of the method as described in the second aspect.
- the terminal performs monitoring of the wake-up signal within the duration of the DRX based on the DRX configuration information of the received wake-up signal. This eliminates the need for the terminal to be in a listening state at all times, effectively reducing terminal power consumption.
- Figure 1 is a block diagram of a wireless communication system applicable to the embodiment of the present application.
- Figure 2a is a schematic structural diagram of a terminal applicable to the embodiment of the present application.
- Figure 2b is a schematic diagram of a DRX cycle applicable to the embodiment of the present application.
- Figure 2c is a schematic diagram of the DRX cycle of a wake-up signal applicable to the embodiment of the present application
- Figure 3 is a flow chart of a DRX parameter configuration method provided by an embodiment of the present application.
- Figure 4a is one of the schematic diagrams for determining the DRX starting position of WUS provided by an embodiment of the present application
- Figure 4b is a second schematic diagram for determining the DRX starting position of WUS provided by an embodiment of the present application.
- Figure 4c is a schematic diagram of the working principle of a terminal applicable to the embodiment of the present application.
- Figure 4d is a third schematic diagram for determining the DRX starting position of WUS provided by the embodiment of the present application.
- Figure 4e is the fourth schematic diagram of determining the DRX starting position of WUS provided by the embodiment of the present application.
- Figure 4f is a fifth schematic diagram for determining the DRX starting position of WUS provided by an embodiment of the present application.
- Figure 5 is a flow chart of another DRX parameter configuration method provided by an embodiment of the present application.
- Figure 6 is a structural diagram of a DRX parameter configuration device provided by an embodiment of the present application.
- Figure 7 is a structural diagram of another DRX parameter configuration device provided by an embodiment of the present application.
- Figure 8 is a structural diagram of a communication device provided by an embodiment of the present application.
- Figure 9 is a structural diagram of a terminal provided by an embodiment of the present application.
- Figure 10 is a structural diagram of a network side device provided by an embodiment of the present application.
- first, second, etc. in the description and claims of this application are used to distinguish similar objects and are not used to describe a specific order or sequence. It is to be understood that the terms so used are interchangeable under appropriate circumstances so that the embodiments of the present application can be practiced in sequences other than those illustrated or described herein, and that "first" and “second” are distinguished objects It is usually one type, and the number of objects is not limited.
- the first object can be one or multiple.
- “and/or” in the description and claims indicates at least one of the connected objects, and the character “/" generally indicates that the related objects are in an "or” relationship.
- LTE Long Term Evolution
- LTE-Advanced, LTE-A Long Term Evolution
- LTE-A Long Term Evolution
- CDMA Code Division Multiple Access
- TDMA Time Division Multiple Access
- FDMA Frequency Division Multiple Access
- OFDMA Orthogonal Frequency Division Multiple Access
- SC-FDMA Single-carrier Frequency Division Multiple Access
- NR New Radio
- FIG. 1 shows a block diagram of a wireless communication system to which embodiments of the present application are applicable.
- the wireless communication system includes a terminal 11 and a network side device 12.
- the terminal 11 may be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer), or a notebook computer, a personal digital assistant (Personal Digital Assistant, PDA), a palmtop computer, a netbook, or a super mobile personal computer.
- Tablet Personal Computer Tablet Personal Computer
- laptop computer laptop computer
- PDA Personal Digital Assistant
- PDA Personal Digital Assistant
- UMPC ultra-mobile personal computer
- UMPC mobile Internet device
- MID mobile Internet Device
- AR augmented reality
- VR virtual reality
- robots wearable devices
- WUE Vehicle User Equipment
- PUE Pedestrian User Equipment
- Smart Home home equipment with wireless communication functions, such as refrigerators, TVs, washing machines or furniture, etc.
- Terminal-side devices such as game consoles, personal computers (PCs), teller machines or self-service machines
- wearable devices include: smart watches, smart bracelets, smart headphones, smart glasses, smart jewelry (smart bracelets, smart bracelets, smart bracelets, etc.) Rings, smart necklaces, smart anklets, smart anklets, etc.), smart wristbands, smart clothing, etc.
- the network side device 12 may include an access network device or a core network device, where the access network device may also be called a radio access network device, a radio access network (Radio Access Network, RAN), a radio access network function or a wireless access network unit.
- Access network equipment may include a base station, a Wireless Local Area Network (WLAN) access point or a WiFi node, etc.
- WLAN Wireless Local Area Network
- the base station may be called a Node B, an Evolved Node B (eNB), an access point, a base transceiver station ( Base Transceiver Station (BTS), radio base station, radio transceiver, Basic Service Set (BSS), Extended Service Set (ESS), home B-node, home evolved B-node, transmitting and receiving point ( Transmitting Receiving Point (TRP) or some other appropriate terminology in the field, as long as the same technical effect is achieved, the base station is not limited to specific technical terms. It should be noted that in the embodiment of this application, only in the NR system The base station is introduced as an example, and the specific type of base station is not limited.
- the 802.11ba designs a low-power wake-up receiver (LP-WUR).
- the 802.11 user consists of two parts: the main interface and the wake-up receiver.
- the main interface is used to send and receive wifi data
- the wake-up receiver is used to wake up the main interface. Before it is awakened, the main interface is closed and does not send or receive data.
- the wake-up receiver receives the wake-up signal sent by the 802.11 Wireless Access Point (AP).
- the wake-up signal can be an on-off keying (OOK) modulated signal, so that the wake-up receiver can use envelope detection.
- OOK on-off keying
- the Discontinuous Reception (DRX) cycle (cycle) consists of "On Duration” and "DRX Off”: During the "On Duration” time, the UE listens Target channel/signal, such as monitoring Low Power Wake Up Signal (LP-WUS); during the "DRX off” time, the UE does not monitor the target channel/signal number to save power consumption.
- Target channel/signal such as monitoring Low Power Wake Up Signal (LP-WUS)
- LP-WUS Low Power Wake Up Signal
- 802.11ba In order to further reduce the power consumption of the wake-up receiver, 802.11ba also adopts the method of discontinuous reception of wake-up signals.
- the user and AP determine the period and starting position of discontinuous reception of wake-up signals through the wake-up radio (Wake Up Radio, WUR) mode establishment process. , and the length of receiving time.
- WUR wake-up Radio
- the user receives the wake-up signal through the wake-up receiver during the duty cycle service period within each duty cycle, where the duty cycle period is related to the duty cycle.
- the length of the cycle service period is informed by the user to the AP by sending a wake-up radio mode element (WUR mode element).
- WUR mode element wake-up radio mode element
- the length of the duty cycle service period is less than or equal to the length of the duty cycle period, and the length of the duty cycle service period must be greater than or equal to the AP indication.
- the minimum wake-up time length When the AP replies to confirm the length of duty cycle period and duty cycle service period carried in the user's WUR mode element, the user uses them as the parameters of the user's non-continuous period.
- the starting position of the duty cycle service period that is, the starting point shown in Figure 2c, is indicated by the mode element sent by the AP, using a 64-bit timing synchronization function (Timing Synchronization) to indicate the starting position.
- Function, TSF TSF time, the time unit is microseconds.
- Figure 3 is a flow chart of a DRX parameter configuration method provided by an embodiment of the present application. The method is executed by a terminal. As shown in Figure 3, the method includes the following steps:
- Step 301 The terminal receives the DRX configuration information of WUS.
- the configuration information of the DRX includes at least one of the following:
- the terminal may receive the DRX configuration information of WUS sent by the network side device.
- the configuration information of the DRX includes at least one of configuration information of the starting position of the DRX, configuration information of the duration of the DRX, and configuration information of the period of the DRX.
- the configuration information of the DRX includes the configuration information of the starting position of the DRX,
- the configuration information of the starting position of the DRX may include a specific system frame, such as system frame No. 0, and the terminal can determine the starting position of the DRX of the wake-up signal based on the starting position of the system frame No.
- the DRX configuration information includes the configuration information of the DRX duration, where the DRX duration can be understood as the "On Duration" in the DRX cycle, that is, within the "On Duration” time, the terminal can monitor and receive Wake-up signal, and then the terminal can monitor and receive wake-up signal within a certain period of time (On Duration) based on the configuration information of the DRX duration; or, the DRX configuration information may also include the DRX
- the configuration information of the cycle of DRX may include the duration (On Duration) and the off time (DRX off); or the configuration information of the DRX may also include the configuration information of the starting position of the DRX and the DRX Configuration information of the period; or, the configuration information of the DRX may also include configuration information of the duration of the DRX and configuration information of the period of the DRX; etc.
- the specific content included in the DRX configuration information may also be in other possible ways, which will not be listed here.
- Step 302 The terminal performs WUS monitoring within the duration of DRX based on the DRX configuration information.
- the terminal after receiving the DRX configuration information of WUS based on the received WUS, the terminal can monitor the wake-up signal through discontinuous reception based on the DRX configuration information, or in other words, within the duration of DRX. Execute monitoring of wake-up signals within.
- the configuration information of the DRX includes the configuration information of the starting position of the DRX, and then the terminal determines the starting position of the DRX based on the configuration information of the starting position of the DRX. The terminal can also determine when to start executing the wake-up function. Signal monitoring does not require the terminal to be in a monitoring state at all times.
- the DRX configuration information includes the configuration information of the DRX duration, and the terminal can determine the DRX duration based on the DRX duration configuration information, and the terminal can also perform wake-up within the DRX duration.
- the wake-up signal does not need to be monitored during the non-DRX duration, thereby eliminating the need for the terminal to be in a monitoring state at all times.
- the configuration information of the DRX may also be other possible situations, which will not be described in detail here.
- the terminal performs monitoring of the wake-up signal within the duration of the DRX based on the DRX configuration information of the received wake-up signal. This eliminates the need for the terminal to be in a listening state at all times, effectively reducing the terminal power consumption.
- the configuration information of the starting position of the DRX includes at least one of the following determinations:
- the superframe is N system frames, N is an integer greater than or equal to 1;
- PDCCH physical downlink control channel
- the terminal may determine the starting position of the DRX of the WUS based on the starting position of the system frame, for example, determine the starting position of the system frame as WUS
- the starting position of the DRX of the WUS can also be determined based on the system frame and the preset time offset.
- the configuration information of the starting position of the DRX includes a superframe.
- the superframe is 1024 system frames, one system frame is 0.01 seconds, and the superframe is 10.24 seconds. Then the terminal can change 10.24 seconds.
- the corresponding position is determined as the starting position of the DRX of the WUS, or the starting position of the DRX of the WUS can also be determined based on the superframe and a preset time offset.
- the configuration information of the starting position of DRX includes the configuration information of eDRX for paging.
- the configuration information of paging eDRX may include the starting position of the eDRX cycle, and the terminal may set the starting position of the eDRX cycle.
- the starting position is determined as the starting position of the DRX of WUS.
- the paging eDRX configuration information may also be other possible situations, which will not be described again here.
- the configuration information of the starting position of DRX includes relevant parameters of the terminal C-DRX.
- the relevant parameters of the terminal C-DRX may be a long DRX cycle, and the terminal may determine the starting position of the long DRX cycle. It is the starting position of DRX of WUS.
- the relevant parameters of the terminal C-DRX may also be other possible situations, which will not be described again here.
- the configuration information of the starting position of the DRX includes relevant parameters of the PDCCH that the terminal needs to monitor.
- the relevant parameters of the PDCCH that the terminal needs to monitor are the time position of the search space where the PDCCH is located, then the terminal can be the location of the PDCCH. Determining the temporal position of the search space It is the starting position of DRX of WUS.
- the relevant parameters of the PDCCH that the terminal needs to monitor may also be other possible situations, which will not be described in detail here.
- the configuration information of the starting position of DRX may also include at least one of the above information or parameters, such as system frame and superframe, or eDRX configuration information including system frame and paging, etc. etc., this embodiment will not enumerate too much.
- the terminal when the configuration information of the DRX includes the configuration information of the starting position of the DRX, the terminal can determine the starting position of the DRX based on the configuration information of the starting position of the DRX, and then The terminal performs monitoring of WUS within the duration of DRX based on the starting position of the DRX, so as to prevent the terminal from being in the WUS monitoring state at all times and effectively reduce the terminal power consumption.
- the terminal performs WUS monitoring within the duration of DRX based on the DRX configuration information, including:
- the terminal determines the starting position of the DRX based on at least one of a specific system frame and a first time offset, and determines the starting position of the DRX based on the starting position of the DRX.
- the starting position performs WUS monitoring within the duration of DRX;
- the starting position of the first time offset is the starting position or the end position of the specific system frame.
- the specific system frame is system frame No. 0, and the terminal may use the starting position or the end position of the system frame No. 0 as the starting position of the DRX; or, the terminal may also use the system frame No. 0 as the starting position.
- the system frame and the first time offset are used to determine the starting position of DRX.
- the reference point of the first time offset can be the starting position or the end position of the system frame No. 0.
- the offset is The starting position of system frame No. 0 is the reference point.
- the terminal adds offset to the starting position of system frame No. 0 to determine the starting position of DRX. Based on this starting position, the terminal performs WUS processing within the duration of DRX. of monitoring.
- the system frame may include at least one of a specific system frame and a first time offset.
- the network side device may include at least one of a specific system frame and the first time offset.
- the item is carried in the configuration information of the DRX to indicate to the terminal, thereby enabling the terminal to determine the starting position of the DRX of the WUS based on at least one of the specific system frame and the first time offset to perform Monitoring of WUS saves terminal power consumption.
- the time unit of the first time offset includes at least one of the following: subframe, time slot, symbol, millisecond, system frame and superframe.
- the configuration information of the starting position of the DRX may also be eDRX configuration information including paging, and the eDRX configuration information includes at least one of the following:
- the starting position or the ending position of the superframe where the paging opportunity is located is located.
- the eDRX configuration information includes the starting position or the ending position of the eDRX cycle, and the terminal may determine the starting position or the ending position of the eDRX cycle as the starting position of the DRX; or, the eDRX
- the configuration information includes the starting position or the ending position of the PTW in the eDRX cycle, then the terminal may use the starting position or the ending position of the PTW in the eDRX cycle as the starting position of the DRX; or, the configuration of the eDRX
- the information includes a paging frame (PF) in the PTW, then the terminal can determine the starting position of the DRX based on the PF, for example, using the starting position of the PF as the starting position of the DRX; or , the eDRX configuration information includes the PO in the paging frame in the PTW, then the terminal may use the PO in the paging frame in the PTW as the starting position of the DRX; or, the eDRX configuration information includes If
- the eDRX configuration information may be configured by a network side device to the terminal.
- the terminal determines the starting position of DRX based on the eDRX configuration information, and then starts the DRX continuation based on the starting position of the DRX.
- Monitoring of WUS is performed within a certain period of time, eliminating the need for the terminal to be in the monitoring state of WUS at all times, effectively saving terminal power consumption.
- the terminal performs WUS monitoring within the duration of DRX based on the DRX configuration information, including:
- the terminal determines the first starting position of DRX based on the configuration information of eDRX, and determines the first starting position of DRX based on the first starting position. Perform WUS monitoring within the duration.
- the terminal may use the starting position of the eDRX cycle as the first starting position of DRX.
- the terminal can then determine when the duration of DRX begins, and the terminal performs WUS monitoring within the duration of DRX based on the first starting position, without the terminal being in a monitoring state at all times.
- the specific information content included in the eDRX configuration information may also be the other possible situations mentioned above, which will not be listed here.
- the method also includes:
- the terminal adjusts the first starting position of the DRX to a second starting position based on the second time offset, and performs WUS monitoring within the duration of the DRX based on the second starting position.
- the terminal can also adjust the first starting position of DRX to the third starting position based on the second time offset. Second starting position, and then the terminal performs WUS monitoring within the duration of DRX based on the second starting position.
- Reference point 1 is the starting position of the PTW within the eDRX cycle.
- the terminal determines this reference point 1 as the starting position of DRX for WUS monitoring (that is, the first starting position).
- Reference point 2 is At the end position of the PTW within the eDRX cycle, the terminal can adjust the starting position of the DRX monitored by the WUS to the reference point 2 (that is, the second starting position), or the terminal can also be based on the first starting position.
- the second starting position is determined by increasing the offset, and then the starting position of DRX is adjusted. In this way, the terminal can flexibly adjust the starting position of the DRX of WUS, making the terminal's monitoring of WUS more flexible.
- the time unit of the second time offset includes at least one of the following: the number of eDRX cycles, time slots, symbols, milliseconds, frames, and superframes.
- the configuration information of the starting position of the DRX may also include relevant parameters of the terminal C-DRX, and the relevant parameters of the terminal C-DRX include at least one of the following:
- the terminal may use the starting position of the DRX duration as the starting position of the DRX of the WUS; or, the terminal The relevant parameters of C-DRX include the long DRX cycle or the short DRX cycle, then the terminal may use the starting position of the long DRX cycle or the starting position of the short DRX cycle as the starting position of the DRX of the WUS to perform the processing of the WUS. of monitoring.
- the relevant parameters of the terminal C-DRX may also include at least one of the above items, which will not be listed too much here.
- the configuration information of the starting position of the DRX may also include relevant parameters of the PDCCH that the terminal needs to monitor, and the relevant parameters of the PDCCH that the terminal needs to monitor include at least one of the following:
- the period of the search space where the PDCCH is located is located.
- the terminal may determine the time position of the search space where the PDCCH is located as the starting position of WUS DRX; or, If the relevant parameters of the PDCCH that the terminal needs to monitor include the period of the search space where the PDCCH is located, the terminal may determine the starting position of the period of the search space where the PDCCH is located as the starting position of WUS DRX.
- the above-mentioned configuration information of the starting position of DRX can be configured by the network side device to the terminal, thereby enabling the terminal to be based on this information.
- different WUS types are associated with their own configuration information of the DRX.
- WUS types may be associated with different DRX configuration information
- different WUS types may be associated with the same DRX configuration information
- one WUS type may be associated with multiple Different DRX configuration information.
- WUS types include WUS type 1, WUS type 2, and WUS type 3.
- the three WUS types are associated with different DRX configuration information, or WUS type 1 and WUS type 2 can be associated with the same DRX configuration information.
- WUS Type 3 is associated with another type of DRX configuration information.
- the network side device and the terminal may pre-agree on the DRX configuration information associated with each type of WUS, thereby enabling the terminal to determine the corresponding DRX configuration information based on the WUS type, such as the origin of DRX for different types of WUS. Different start positions, different DRX cycles of different types of WUS, etc. This also allows the terminal to more flexibly monitor different types of WUS based on different DRX, improves the flexibility of terminal communication, and can also be more helpful. Save terminal power consumption.
- the WUS type is associated with at least one of the following: WUS sequence, WUS format, WUS frame structure, and frequency band occupied by WUS. That is to say, different WUS types may refer to different WUS sequences, or different WUS formats, or different WUS frame structures, or different frequency bands occupied by WUS, etc.
- the method may further include:
- the terminal determines, based on the WUS type, the configuration information of the DRX associated with the WUS type.
- the network side device may agree with the terminal in advance on the association between the WUS type and the respective associated DRX configuration information, or the network side device may send the association to the terminal in advance, and then the terminal can determine based on the WUS type. Based on the configuration information of the DRX associated with the WUS type, monitoring of the WUS is performed within the duration of the corresponding DRX based on the configuration information of the DRX associated with the WUS type. In this way, the terminal's flexibility in monitoring different types of WUS can be effectively improved.
- the DRX configuration information of the WUS includes the configuration information of at least one DRX of the WUS, and the quantity of the at least one DRX configuration information is related to the terminal capability of the terminal.
- the WUS DRX configuration information sent by the network side device to the terminal includes at least one DRX configuration information, and then the terminal can perform configuration information on the WUS within the duration of at least one DRX based on the at least one DRX configuration information. of monitoring.
- the terminal performs WUS monitoring within the duration of DRX based on the DRX configuration information, including:
- the terminal performs WUS monitoring within the duration of at least one DRX based on the configuration information of the at least one DRX.
- the terminal can Based on the starting positions of the two DRXs, monitoring of the WUS is performed within the duration of the DRXs starting at different times. In this way, the terminal can effectively utilize its terminal capabilities to monitor WUS within the duration of at least one DRX, making the terminal's monitoring of WUS more flexible.
- the terminal may also only receive one piece of DRX configuration information about WUS, that is, the terminal does not expect to receive more than one piece of DRX configuration information about WUS.
- the method further includes:
- the terminal sends auxiliary information to the network side device, where the auxiliary information includes the DRX configuration information of the WUS preferred by the terminal.
- the terminal can first send auxiliary information to the network side device, and report the DRX configuration of the WUS preferred by the terminal to the network side device through the auxiliary information, and then the network side device can perform targeted operations based on the received auxiliary information.
- the terminal is configured with its preferred WUS DRX configuration information, making the WUS DRX configuration more flexible.
- the terminal mainly includes two modules.
- the first module can monitor paging messages and radio resource management (RRM) measurements according to the DRX cycle, and the second module monitors wake-up signals.
- RRM radio resource management
- the sending end network side equipment, such as a base station
- the second module determines whether it belongs to the local terminal through the identification information. If so, the first module is triggered to monitor the paging signal. , that is, the first module enters the working state from the sleep state, and at this time the second module enters the closed state from the working state.
- the first module of the UE first monitors the paging channel.
- system frame No. 0 SFN0
- the time offset (offset) configured by the protocol is offset at a certain time.
- the second module is triggered after the shift, that is, the start point of DRX is SFN0+offset; the second module starts to monitor the wake-up signal according to the DRX cycle, and the sender will send it in advance before sending the data.
- Wake-up signal after the second module monitors the wake-up signal at time t1, it analyzes whether the identification information belongs to the terminal. If so, the terminal triggers the first module, and the first module enters the working state to monitor the paging signal.
- the first module When the first module is configured with eDRX, the first module will monitor the paging message in the PTW window and look for the PO; after the PTW ends, it will enter a long sleep state. Due to the long duration of the eDRX sleep state, during If data arrives, it is easy to cause high data delay.
- the starting position of WUS DRX is associated with the PTW end time, and is turned on after a certain time offset (offset), that is, the starting position of DRX (start point) is the PTW end time + offset, and the terminal follows the DRX cycle Monitor the wake-up signal.
- offset time offset
- the starting position of WUS DRX can be related to the parameters of C-DRX in the terminal connected state.
- the starting position of DRX is related to the starting time of the terminal monitoring PDCCH onDurationTimer.
- the starting position of DRX is the starting position of PDCCH onDuration monitored by the terminal.
- Figure 5 is a flow chart of another DRX parameter configuration method provided by an embodiment of the present application. The method is executed by a network side device. As shown in Figure 5, the method includes the following steps:
- Step 501 The network side device sends the DRX configuration information of WUS to the terminal.
- the configuration information of the DRX includes at least one of the following:
- At least one of the configuration information of the starting position of DRX, the configuration information of the duration of DRX, and the configuration information of the period of DRX may be configured to the terminal through a network side device, Furthermore, the terminal can perform monitoring of the wake-up signal within the duration of DRX based on the above-mentioned DRX configuration information.
- the specific information content of the DRX configuration information may refer to the specific description in the embodiment on the terminal side, and will not be described in detail in this embodiment.
- the configuration information of the starting position of the DRX includes at least one of the following:
- the superframe is N system frames, N is an integer greater than or equal to 1;
- the configuration information of the starting position of the DRX includes a system frame
- the configuration information of the starting position of the DRX includes at least one of a specific system frame and a first time offset; wherein, The starting position of the first time offset is the starting position or the end position of the specific system frame.
- the time unit of the first time offset includes at least one of the following: subframe, time slot, symbol, millisecond, system frame and superframe.
- the eDRX configuration information includes at least one of the following:
- the starting position or the ending position of the superframe where the paging opportunity is located is located.
- the relevant parameters of the terminal C-DRX include at least one of the following:
- the relevant parameters of the PDCCH that the terminal needs to monitor include at least one of the following:
- the period of the search space where the PDCCH is located is located.
- different WUS types are associated with their own configuration information of the DRX.
- the WUS type is associated with at least one of the following: WUS sequence, WUS format, WUS frame structure, and frequency band occupied by WUS.
- the DRX configuration information of the WUS includes configuration information of at least one DRX of the WUS, and the quantity of the at least one DRX configuration information is related to the terminal capability of the terminal.
- the method further includes:
- the network side device receives the auxiliary information sent by the terminal, where the auxiliary information includes the DRX configuration information of the WUS preferred by the terminal.
- the terminal can first send auxiliary information to the network-side device, and then report the DRX configuration of the WUS preferred by the terminal to the network-side device through the auxiliary information, and then the network-side device can perform targeted configuration for the network-side device based on the received auxiliary information.
- the terminal configures its preferred WUS DRX configuration information, making the WUS DRX configuration more flexible.
- the execution subject of the DRX parameter configuration method provided by the embodiment of this application is the network side device.
- the relevant concepts and specific processes in the embodiment of this application may refer to the description in the above terminal side method embodiment. To avoid duplication, No further details will be given in this embodiment.
- the network side device can send the DRX configuration information of WUS to the terminal, thereby enabling the terminal to perform monitoring of WUS within the duration of DRX based on the DRX configuration information, without the terminal being in a monitoring state at all times. , effectively reducing terminal power consumption.
- the execution subject may be a DRX parameter configuration device.
- the DRX parameter configuration method performed by the DRX parameter configuration device is used as an example to illustrate the DRX parameter configuration device provided by the embodiment of the present application.
- FIG. 6 is a structural diagram of a DRX parameter configuration device provided by an embodiment of the present application.
- the DRX parameter configuration device 600 includes:
- the first receiving module 601 is used to receive the DRX configuration information of the wake-up signal WUS;
- Execution module 602 configured to perform WUS monitoring within the duration of DRX based on the configuration information of the DRX;
- the configuration information of the DRX includes at least one of the following:
- the configuration information of the starting position of the DRX includes at least one of the following determinations:
- the superframe is N system frames, N is an integer greater than or equal to 1;
- the device needs to monitor relevant parameters of the physical downlink control channel PDCCH.
- the execution module 602 is further configured to:
- the starting position of the first time offset is the starting position or the end position of the specific system frame.
- the time unit of the first time offset includes at least one of the following: subframe, time slot, symbol, millisecond, system frame and superframe.
- the eDRX configuration information includes at least one of the following:
- the starting position or the ending position of the superframe where the paging opportunity is located is located.
- the execution module 602 is further configured to:
- the first starting position of DRX is determined based on the configuration information of eDRX, and WUS monitoring is performed within the duration of DRX based on the first starting position.
- execution module 602 is also used to:
- the first starting position of the DRX is adjusted to the second starting position, and WUS monitoring is performed within the duration of the DRX based on the second starting position.
- the time unit of the second time offset includes at least one of the following: the number of eDRX cycles, time slots, symbols, milliseconds, frames, and superframes.
- the relevant parameters of the device C-DRX include at least one of the following:
- the relevant parameters of the PDCCH that the device needs to monitor include at least one of the following:
- the period of the search space where the PDCCH is located is located.
- different WUS types are associated with respective configuration information of the DRX.
- the device also includes:
- a determining module configured to determine, based on the WUS type, the configuration information of the DRX associated with the WUS type.
- the WUS type is associated with at least one of the following: WUS sequence, WUS format, WUS frame structure, and frequency band occupied by WUS.
- the DRX configuration information of the WUS includes configuration information of at least one DRX of the WUS, and the quantity of the at least one DRX configuration information is related to the capability of the device.
- execution module 602 is also used to:
- WUS monitoring is performed within the duration of the at least one DRX.
- the device also includes:
- the first sending module is configured to send auxiliary information to the network side device, where the auxiliary information includes the DRX configuration information of the WUS preferred by the terminal.
- the device performs monitoring of WUS within the duration of DRX based on the DRX configuration information of the received wake-up signal, without being in a monitoring state at all times, effectively reducing the power consumption of the device.
- the DRX parameter configuration device in the embodiment of the present application may be an electronic device, such as an electronic device with an operating system, or may be a component in the electronic device, such as an integrated circuit or chip.
- the electronic device may be a terminal or other devices other than the terminal.
- terminals may include but are not limited to the types of terminals 11 listed above, and other devices may be servers, network attached storage (Network Attached Storage, NAS), etc., which are not specifically limited in the embodiment of this application.
- the DRX parameter configuration device provided by the embodiment of the present application can implement each process implemented by the terminal in the method embodiment described in Figures 3 to 4f, and achieve the same technical effect. To avoid duplication, the details will not be described here.
- FIG. 7 is a structural diagram of another DRX parameter configuration device provided by an embodiment of the present application.
- the DRX parameter configuration device 700 includes:
- the second sending module 701 is used to send the DRX configuration information of WUS to the terminal;
- the configuration information of the DRX includes at least one of the following:
- the configuration information of the starting position of the DRX includes at least one of the following:
- the superframe is N system frames, N is an integer greater than or equal to 1;
- the configuration information of the starting position of the DRX includes a system frame
- the configuration information of the starting position of the DRX includes at least one of a specific system frame and a first time offset
- the starting position of the first time offset is the starting position or the end position of the specific system frame.
- the time unit of the first time offset includes at least one of the following: subframe, time slot, symbol, millisecond, system frame and superframe.
- the eDRX configuration information includes at least one of the following:
- the starting position or the ending position of the superframe where the paging opportunity is located is located.
- the relevant parameters of the terminal C-DRX include at least one of the following:
- the relevant parameters of the PDCCH that the terminal needs to monitor include at least one of the following:
- the period of the search space where the PDCCH is located is located.
- different WUS types are associated with respective configuration information of the DRX.
- the WUS type is associated with at least one of the following: WUS sequence, WUS format, WUS frame structure, and frequency band occupied by WUS.
- the DRX configuration information of the WUS includes configuration information of at least one DRX of the WUS, and the quantity of the at least one DRX configuration information is related to the terminal capability of the terminal.
- the device also includes:
- the second receiving module is configured to receive auxiliary information sent by the terminal, where the auxiliary information includes the DRX configuration information of the WUS preferred by the terminal.
- the device can send the DRX configuration information of WUS to the terminal, thereby enabling the terminal to perform monitoring of WUS within the duration of DRX based on the DRX configuration information, without the terminal being in a monitoring state at all times. Effectively reduces terminal power consumption.
- the DRX parameter configuration device provided by the embodiment of the present application can implement each process implemented by the network side device in the method embodiment described in Figure 5, and achieve the same technical effect. To avoid duplication, the details will not be described here.
- this embodiment of the present application also provides a communication device 800, which includes a processor 801 and a memory 802.
- the memory 802 stores programs or instructions that can be run on the processor 801, for example.
- the communication device 800 is a terminal, when the program or instruction is executed by the processor 801, each step of the DRX parameter configuration method embodiment described in Figure 3 is implemented, and the same technical effect can be achieved.
- the communication device 800 is a network-side device, when the program or instruction is executed by the processor 801, each step of the DRX parameter configuration method embodiment described in Figure 5 is implemented, and the same technical effect can be achieved. To avoid duplication, the steps are not included here. Again.
- An embodiment of the present application also provides a terminal, including a processor and a communication interface.
- the communication interface is used to receive the DRX configuration information of the wake-up signal WUS; the processor is used to execute the WUS within the duration of the DRX based on the DRX configuration information. of monitoring.
- This terminal embodiment corresponds to the above-mentioned terminal-side method embodiment, and each implementation process and implementation manner of the above-mentioned method embodiment can be applied to this In the terminal embodiment, the same technical effect can be achieved.
- FIG. 9 is a schematic diagram of the hardware structure of a terminal that implements an embodiment of the present application.
- the terminal 900 includes but is not limited to: a radio frequency unit 901, a network module 902, an audio output unit 903, an input unit 904, a sensor 905, a display unit 906, a user input unit 907, an interface unit 908, a memory 909, a processor 910, etc. At least some parts.
- the terminal 900 may also include a power supply (such as a battery) that supplies power to various components.
- the power supply may be logically connected to the processor 910 through a power management system, thereby managing charging, discharging, and power consumption through the power management system. Management and other functions.
- the terminal structure shown in FIG. 9 does not constitute a limitation on the terminal.
- the terminal may include more or fewer components than shown in the figure, or may combine certain components, or arrange different components, which will not be described again here.
- the input unit 904 may include a graphics processing unit (Graphics Processing Unit, GPU) 9041 and a microphone 9042.
- the graphics processor 9041 is responsible for the image capture device (GPU) in the video capture mode or the image capture mode. Process the image data of still pictures or videos obtained by cameras (such as cameras).
- the display unit 906 may include a display panel 9061, which may be configured in the form of a liquid crystal display, an organic light emitting diode, or the like.
- the user input unit 907 includes a touch panel 9071 and at least one of other input devices 9072 .
- Touch panel 9071 also known as touch screen.
- the touch panel 9071 may include two parts: a touch detection device and a touch controller.
- Other input devices 9072 may include but are not limited to physical keyboards, function keys (such as volume control keys, switch keys, etc.), trackballs, mice, and joysticks, which will not be described again here.
- the radio frequency unit 901 after receiving downlink data from the network side device, can transmit it to the processor 910 for processing; in addition, the radio frequency unit 901 can send uplink data to the network side device.
- the radio frequency unit 901 includes, but is not limited to, an antenna, an amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, etc.
- Memory 909 may be used to store software programs or instructions as well as various data.
- the memory 909 may mainly include a first storage area for storing programs or instructions and a second storage area for storing data, wherein the first storage area may store an operating system, an application program or instructions required for at least one function (such as a sound playback function, Image playback function, etc.) etc.
- memory 909 may include volatile memory or nonvolatile memory, or memory 909 may include both volatile and nonvolatile memory.
- non-volatile memory can be read-only memory (Read-Only Memory, ROM), programmable memory, etc.
- Volatile memory can be random access memory (Random Access Memory, RAM), static random access memory (Static RAM, SRAM), dynamic random access memory (Dynamic RAM, DRAM), synchronous dynamic random access memory (Synchronous DRAM, SDRAM), double data rate synchronous dynamic random access memory (Double Data Rate SDRAM, DDRSDRAM), enhanced synchronous dynamic random access memory (Enhanced SDRAM, ESDRAM), synchronous link dynamic random access memory (Synch link DRAM) , SLDRAM) and direct memory bus random access memory (Direct Rambus RAM, DRRAM).
- Memory 909 in embodiments of the present application includes, but is not limited to, these and any other suitable types of memory.
- the processor 910 may include one or more processing units; optionally, the processor 910 integrates an application processor and a modem processor, where the application processor mainly handles operations related to the operating system, user interface, application programs, etc., Modem processors mainly process wireless communication signals, such as baseband processors. It can be understood that the above modem processor may not be integrated into the processor 910.
- the radio frequency unit 901 is used to receive the DRX configuration information of the wake-up signal WUS;
- the processor 910 is configured to perform WUS monitoring within the duration of the DRX based on the configuration information of the DRX;
- the configuration information of the DRX includes at least one of the following:
- the configuration information of the starting position of the DRX includes at least one of the following:
- the superframe is N system frames, N is an integer greater than or equal to 1;
- the processor 910 is further configured to:
- the starting position of the first time offset is the starting position or the end position of the specific system frame.
- the time unit of the first time offset includes at least one of the following: subframe, time slot, symbol, millisecond, system frame and superframe.
- the eDRX configuration information includes at least one of the following:
- the starting position or the ending position of the superframe where the paging opportunity is located is located.
- the processor 910 is further configured to:
- the first starting position of DRX is determined based on the configuration information of eDRX, and WUS monitoring is performed within the duration of DRX based on the first starting position.
- processor 910 is also used to:
- the first starting position of the DRX is adjusted to the second starting position, and WUS monitoring is performed within the duration of the DRX based on the second starting position.
- the time unit of the second time offset includes at least one of the following: the number of eDRX cycles, time slots, symbols, milliseconds, frames, and superframes.
- the relevant parameters of the terminal C-DRX include at least one of the following:
- the relevant parameters of the PDCCH that the terminal needs to monitor include at least one of the following:
- the period of the search space where the PDCCH is located is located.
- different WUS types are associated with respective configuration information of the DRX.
- processor 910 is also used to:
- the configuration information of the DRX associated with the WUS type is determined.
- the WUS type is associated with at least one of the following: WUS sequence, WUS format, WUS frame structure, and frequency band occupied by WUS.
- the DRX configuration information of the WUS includes configuration information of at least one DRX of the WUS, and the quantity of the at least one DRX configuration information is related to the terminal capability of the terminal.
- processor 910 is also used to:
- WUS monitoring is performed within the duration of the at least one DRX.
- the radio frequency unit 901 is also used to:
- auxiliary information includes the DRX configuration information of the WUS preferred by the terminal.
- the terminal performs monitoring of WUS within the duration of DRX based on the received DRX configuration information of WUS. This eliminates the need for the terminal to be in a monitoring state at all times, effectively reducing terminal power consumption.
- An embodiment of the present application also provides a network side device, including a processor and a communication interface.
- the communication interface is used to send the DRX configuration information of WUS to the terminal.
- This network-side device embodiment corresponds to the above-mentioned network-side device method embodiment.
- Each implementation process and implementation manner of the above-mentioned method embodiment can be applied to this network-side device embodiment, and can achieve the same technical effect.
- the embodiment of the present application also provides a network side device.
- the network side device 1000 includes: an antenna 101 , a radio frequency device 102 , a baseband device 103 , a processor 104 and a memory 105 .
- the antenna 101 is connected to the radio frequency device 102 .
- the radio frequency device 102 receives information through the antenna 101 and sends the received information to the baseband device 103 for processing.
- the baseband device 103 processes the information to be sent and sends it to the radio frequency device 102.
- the radio frequency device 102 processes the received information and then sends it out through the antenna 101.
- the method performed by the network side device in the above embodiment can be implemented in the baseband device 103, which includes a baseband processor.
- the baseband device 103 may include, for example, at least one baseband board on which a plurality of cores are disposed. As shown in FIG. 10 , one of the chips is, for example, a baseband processor, which is connected to the memory 105 through a bus interface to call the program in the memory 105 to perform the network device operations shown in the above method embodiment.
- the network side device may also include a network interface 106, which is, for example, a common public radio interface (CPRI).
- a network interface 106 which is, for example, a common public radio interface (CPRI).
- CPRI common public radio interface
- the network side device 1000 in this embodiment of the present invention also includes: instructions or programs stored in the memory 105 and executable on the processor 104.
- the processor 104 calls the instructions or programs in the memory 105 to execute each of the steps shown in Figure 7. The method of module execution and achieving the same technical effect will not be described in detail here to avoid duplication.
- Embodiments of the present application also provide a readable storage medium, with programs or instructions stored on the readable storage medium.
- program or instructions When the program or instructions are executed by a processor, each process of the method embodiment described in Figure 3 is implemented, or Each process of the method embodiment described in Figure 5 above can achieve the same technical effect. To avoid repetition, it will not be described again here.
- the processor is the processor in the terminal described in the above embodiment.
- the readable storage medium includes computer readable storage media, such as computer read-only memory ROM, random access memory RAM, magnetic disk or optical disk, etc.
- An embodiment of the present application further provides a chip.
- the chip includes a processor and a communication interface.
- the communication interface is coupled to the processor.
- the processor is used to run programs or instructions to implement the method described in Figure 3.
- Each process of the example, or each process of implementing the method embodiment described in Figure 5 above, can achieve the same technical effect. To avoid duplication, it will not be described again here.
- chips mentioned in the embodiments of this application may also be called system-on-chip, system-on-a-chip, system-on-chip or system-on-chip, etc.
- Embodiments of the present application further provide a computer program/program product.
- the computer program/program product is stored in a storage medium.
- the computer program/program product is executed by at least one processor to implement the method described in Figure 3 above.
- Each process of the embodiment, or each process of implementing the above method embodiment described in Figure 5, can achieve the same technical effect. To avoid repetition, it will not be described again here.
- Embodiments of the present application also provide a communication system, including: a terminal and a network side device.
- the terminal can be used to perform the steps of the method described in Figure 3 as above.
- the network side device can be used to perform the steps of the method shown in Figure 5 above. Describe the steps of the method.
- the methods of the above embodiments can be implemented by means of software plus the necessary general hardware platform. Of course, it can also be implemented by hardware, but in many cases the former is better. implementation.
- the technical solution of the present application can be embodied in the form of a computer software product that is essentially or contributes to the existing technology.
- the computer software product is stored in a storage medium (such as ROM/RAM, disk , CD), including several instructions to cause a terminal (which can be a mobile phone, computer, server, air conditioner, or network device, etc.) to execute the methods described in various embodiments of this application.
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Abstract
本申请公开了一种DRX参数配置方法、装置、终端及网络侧设备,属于通信技术领域,本申请实施例的DRX参数配置方法包括:终端接收唤醒信号WUS的DRX的配置信息;所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听;其中,所述DRX的配置信息包括如下至少一项:所述DRX的起始位置的配置信息、所述DRX的持续时间的配置信息、所述DRX的周期的配置信息。
Description
相关申请的交叉引用
本申请主张在2022年03月11日在中国提交的中国专利申请No.202210238584.0的优先权,其全部内容通过引用包含于此。
本申请属于通信技术领域,具体涉及一种DRX参数配置方法、装置、终端及网络侧设备。
低功耗唤醒接收机(low power wake up receiver,LP-WUR)的引入,能够让终端在一定情况下关闭或睡眠主通信模块,当终端利用WUR接收到低功耗唤醒信号(low power wake up signal,LP-WUS)后再开启主通信模块,从而有效降低终端功耗。目前,在新空口(New Radio,NR)系统中,终端需要通过实时监听低功耗唤醒信号来确定何时开启主通信模块,这也就导致终端需要时刻处于监听状态,造成终端功耗的增加。
发明内容
本申请实施例提供一种DRX参数配置方法、装置、终端及网络侧设备,能够解决相关技术中终端功耗较高的问题。
第一方面,提供了一种DRX参数配置方法,包括:
终端接收唤醒信号WUS的DRX的配置信息;
所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
第二方面,提供了一种DRX参数配置方法,包括:
网络侧设备向终端发送WUS的DRX的配置信息;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
第三方面,提供了一种DRX参数配置装置,包括:
第一接收模块,用于接收唤醒信号WUS的DRX的配置信息;
执行模块,用于基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
第四方面,提供了一种DRX参数配置装置,包括:
第二发送模块,用于向终端发送WUS的DRX的配置信息;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
第五方面,提供了一种终端,该终端包括处理器和存储器,所述存储器存储可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如第一方面所述的DRX参数配置方法的步骤。
第六方面,提供了一种终端,包括处理器及通信接口,其中,所述通信接口用于接收唤醒信号WUS的DRX的配置信息;所述处理器用于基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
第七方面,提供了一种网络侧设备,该网络侧设备包括处理器和存储器,所述存储器存储可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如第二方面所述的DRX参数配置方法的步骤。
第八方面,提供了一种网络侧设备,包括处理器及通信接口,其中,所述通信接口用于向终端发送WUS的DRX的配置信息;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
第九方面,提供了一种通信系统,包括:终端及网络侧设备,所述终端可用于执行如第一方面所述的DRX参数配置方法的步骤,所述网络侧设备可用于执行如第二方面所述的DRX参数配置方法的步骤。
第十方面,提供了一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如第一方面所述的DRX参数配置方法的步骤,或者实现如第二方面所述的DRX参数配置方法的步骤。
第十一方面,提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如第一方面所述的DRX参数配置方法,或实现如第二方面所述的DRX参数配置方法。
第十二方面,提供了一种计算机程序/程序产品,所述计算机程序/程序产品被存储在存储介质中,所述计算机程序/程序产品被至少一个处理器执行以实现如第一方面所述的DRX参数配置方法,或者实现如第二方面所述的DRX参数配置方法。
第十三方面,提供了一种通信设备,被配置为执行以实现如第一方面所述的方法的步骤,或者实现如第二方面所述的方法的步骤。
在本申请实施例中,终端基于接收的唤醒信号的DRX的配置信息,在DRX的持续时间内来执行对唤醒信号的监听,无需终端时刻处于监听状态,有效降低了终端功耗。
图1是本申请实施例可应用的一种无线通信系统的框图;
图2a是本申请实施例可应用的一种终端结构示意图;
图2b是本申请实施例可应用的一种DRX周期示意图;
图2c是本申请实施例可应用的一种唤醒信号DRX周期示意图;
图3是本申请实施例提供的一种DRX参数配置方法的流程图;
图4a是本申请实施例提供的一种确定WUS的DRX起始位置的示意图之一;
图4b是本申请实施例提供的一种确定WUS的DRX起始位置的示意图之二;
图4c是本申请实施例可应用的一种终端的工作原理示意图;
图4d是本申请实施例提供的一种确定WUS的DRX起始位置的示意图之三;
图4e是本申请实施例提供的一种确定WUS的DRX起始位置的示意图之四;
图4f是本申请实施例提供的一种确定WUS的DRX起始位置的示意图之五;
图5是本申请实施例提供的另一种DRX参数配置方法的流程图;
图6是本申请实施例提供的一种DRX参数配置装置的结构图;
图7是本申请实施例提供的另一种DRX参数配置装置的结构图;
图8是本申请实施例提供的一种通信设备的结构图;
图9是本申请实施例提供的一种终端的结构图;
图10是本申请实施例提供的一种网络侧设备的结构图。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员所获得的所有其他实施
例,都属于本申请保护的范围。
本申请的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的术语在适当情况下可以互换,以便本申请的实施例能够以除了在这里图示或描述的那些以外的顺序实施,且“第一”、“第二”所区别的对象通常为一类,并不限定对象的个数,例如第一对象可以是一个,也可以是多个。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”一般表示前后关联对象是一种“或”的关系。
值得指出的是,本申请实施例所描述的技术不限于长期演进型(Long Term Evolution,LTE)/LTE的演进(LTE-Advanced,LTE-A)系统,还可用于其他无线通信系统,诸如码分多址(Code Division Multiple Access,CDMA)、时分多址(Time Division Multiple Access,TDMA)、频分多址(Frequency Division Multiple Access,FDMA)、正交频分多址(Orthogonal Frequency Division Multiple Access,OFDMA)、单载波频分多址(Single-carrier Frequency Division Multiple Access,SC-FDMA)和其他系统。本申请实施例中的术语“系统”和“网络”常被可互换地使用,所描述的技术既可用于以上提及的系统和无线电技术,也可用于其他系统和无线电技术。以下描述出于示例目的描述了新空口(New Radio,NR)系统,并且在以下大部分描述中使用NR术语,但是这些技术也可应用于NR系统应用以外的应用,如第6代(6th Generation,6G)通信系统。
图1示出本申请实施例可应用的一种无线通信系统的框图。无线通信系统包括终端11和网络侧设备12。其中,终端11可以是手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)或称为笔记本电脑、个人数字助理(Personal Digital Assistant,PDA)、掌上电脑、上网本、超级移动个人计算机(ultra-mobile personal computer,UMPC)、移动上网装置(Mobile Internet Device,MID)、增强现实(augmented reality,AR)/虚拟现实(virtual reality,VR)设备、机器人、可穿戴式设备(Wearable Device)、车载设备(Vehicle User Equipment,VUE)、行人终端(Pedestrian User Equipment,PUE)、智能家居(具有无线通信功能的家居设备,如冰箱、电视、洗衣机或者家具等)、
游戏机、个人计算机(personal computer,PC)、柜员机或者自助机等终端侧设备,可穿戴式设备包括:智能手表、智能手环、智能耳机、智能眼镜、智能首饰(智能手镯、智能手链、智能戒指、智能项链、智能脚镯、智能脚链等)、智能腕带、智能服装等。需要说明的是,在本申请实施例并不限定终端11的具体类型。网络侧设备12可以包括接入网设备或核心网设备,其中,接入网设备也可以称为无线接入网设备、无线接入网(Radio Access Network,RAN)、无线接入网功能或无线接入网单元。接入网设备可以包括基站、无线局域网(Wireless Local Area Network,WLAN)接入点或WiFi节点等,基站可被称为节点B、演进节点B(eNB)、接入点、基收发机站(Base Transceiver Station,BTS)、无线电基站、无线电收发机、基本服务集(Basic Service Set,BSS)、扩展服务集(Extended Service Set,ESS)、家用B节点、家用演进型B节点、发送接收点(Transmitting Receiving Point,TRP)或所述领域中其他某个合适的术语,只要达到相同的技术效果,所述基站不限于特定技术词汇,需要说明的是,在本申请实施例中仅以NR系统中的基站为例进行介绍,并不限定基站的具体类型。
为更好地理解,以下对本申请实施例可能涉及的相关概念进行解释说明。
(一)低功耗唤醒
802.11ba设计了一种低功耗唤醒接收机(LP-WUR),如图2a所示,802.11用户包含两个部分:主接口与唤醒接收机。主接口用来进行wifi数据发送和接收,唤醒接收机用来唤醒主接口,未被唤醒前,主接口处于关闭状态,不进行数据发送和接收。唤醒接收机接收802.11无线接入点(Wireless Access Point,AP)发送的唤醒信号,唤醒信号可以为通断键(on-off keying,OOK)调制信号,从而使得唤醒接收机可以采用包络检波的方式检测唤醒信号,可将功耗降低至几百微瓦量级,大大降低了802.11用户的功耗。
(二)低功耗唤醒信号DRX周期
如图2b所示,非连续接收(Discontinuous Reception,DRX)周期(cycle)由“持续时间(On Duration)”和“DRX断开(off)”组成:在“On Duration”的时间内,UE监听目标信道/信号,例如监听低功耗唤醒信号(Low Power Wake Up Signal,LP-WUS);在“DRX off”时间内,UE不监听目标信道/信
号,以节省功耗。
为进一步降低唤醒接收机的功耗,802.11ba还采用唤醒信号非连续接收的方式,用户与AP通过唤醒无线电(Wake Up Radio,WUR)模式建立过程确定唤醒信号非连续接收的周期、起始位置、与接收时间长度。如图2c所示,用户在每个占空比(duty cycle)内的占空比服务周期(duty cycle service period)通过唤醒接收机接收唤醒信号,其中占空比周期(duty cycle period)与duty cycle service period的长度由用户通过发送唤醒无线电模式元素(WUR mode element)告知给AP,duty cycle service period的长度小于或等于duty cycle period的长度,且duty cycle service period的长度要大于或等于AP指示的最小醒来时间长度,当AP回复确认用户WUR mode element中所携带的duty cycle period与duty cycle service period的长度后,用户将它们作为该用户非连续周期的参数。另一方面,duty cycle service period的起始位置,即图2c中所示起始位置(start point),由AP发送的mode element所指示,采用64比特指示起始位置的定时同步功能(Timing Synchronization Function,TSF)时间,时间单位为微秒。
下面结合附图,通过一些实施例及其应用场景对本申请实施例提供的DRX参数配置方法进行详细地说明。
请参照图3,图3是本申请实施例提供的一种DRX参数配置方法的流程图,所述方法由终端执行。如图3所示,所述方法包括以下步骤:
步骤301、终端接收WUS的DRX的配置信息。
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
本申请实施例中,终端可以是接收网络侧设备发送的WUS的DRX的配置信息。
可选地,所述DRX的配置信息包括所述DRX的起始位置的配置信息、所述DRX的持续时间的配置信息和所述DRX的周期的配置信息中的至少一项。示例性地,所述DRX的配置信息包括所述DRX的起始位置的配置信息,
例如所述DRX的起始位置的配置信息可以是包括特定的系统帧,如0号系统帧,则终端能够以0号系统帧的起始位置确定为唤醒信号的DRX的起始位置;或者,所述DRX的配置信息包括DRX的持续时间的配置信息,其中DRX的持续时间可以是理解为DRX周期中的“On Duration”,也即在该“On Duration”的时间内,终端能够监听和接收唤醒信号,进而终端也就能够基于所述DRX的持续时间的配置信息来在确定的一段时长内(On Duration)监听和接收唤醒信号;或者,所述DRX的配置信息还可以是包括所述DRX的周期的配置信息,所述DRX的周期可以是包括持续时间(On Duration)和关闭时间(DRX off);或者,所述DRX的配置信息还可以是包括DRX的起始位置的配置信息和DRX的周期的配置信息;或者,所述DRX的配置信息还可以是包括DRX的持续时间的配置信息和DRX的周期的配置信息;等。所述DRX的配置信息包括的具体内容还可以是其他的可能方式,此处不做过多列举。
步骤302、终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听。
本申请实施例中,终端在基于接收到的WUS的DRX的配置信息后,也就能够基于所述DRX的配置信息,通过非连续接收的方式对唤醒信号执行监听,或者说在DRX的持续时间内执行对唤醒信号的监听。例如,所述DRX的配置信息包括DRX的起始位置的配置信息,进而终端基于所述DRX的起始位置的配置信息确定DRX的起始位置,终端也就能够确定在何时开始执行对唤醒信号的监听,无需终端时刻处于监听状态。又如,所述DRX的配置信息包括DRX的持续时间的配置信息,进而终端能够基于所述DRX的持续时间的配置信息确定DRX的持续时间,终端也就能够在DRX的持续时间内执行对唤醒信号的监听,在非DRX的持续时间可以不对唤醒信号进行监听,进而无需终端时刻处于监听状态。可选地,所述DRX的配置信息还可以是其他的可能情况,此处不做具体赘述。
本申请实施例中,终端基于接收的唤醒信号的DRX的配置信息,在DRX的持续时间内来执行对唤醒信号的监听,无需终端时刻处于监听状态,有效降低了终端功耗。
可选地,所述DRX的起始位置的配置信息包括如下至少一项确定:
系统帧;
超帧,所述超帧为N个系统帧,N为大于等于1的整数;
寻呼的增强非连续接收(extended Discontinuous Reception,eDRX)的配置信息;
终端连接态下的非连续接收(Connected mode DRX,C-DRX)的相关参数;
终端需要监听的物理下行控制信道(Physical downlink control channel,PDCCH)的相关参数。
例如,所述DRX的起始位置的配置信息包括系统帧,则终端可以是基于所述系统帧的起始位置来确定WUS的DRX的起始位置,例如将系统帧的起始位置确定为WUS的DRX的起始位置,或者也可以是基于系统帧与预设时间偏移来确定WUS的DRX的起始位置。
或者,所述DRX的起始位置的配置信息包括超帧,例如所述超帧为1024个系统帧,一个系统帧为0.01秒,所述超帧也即10.24秒,则终端可以是将10.24秒对应的位置确定为WUS的DRX的起始位置,或者也可以是基于超帧与预设时间偏移来确定WUS的DRX的起始位置。
或者,所述DRX的起始位置的配置信息包括寻呼(paging)的eDRX的配置信息,例如寻呼的eDRX的配置信息可以是包括eDRX周期的起始位置,则终端可以是将eDRX周期的起始位置确定为WUS的DRX的起始位置。可选地,所述寻呼的eDRX的配置信息还可以是其他的可能情况,此处不做赘述。
或者,所述DRX的起始位置的配置信息包括终端C-DRX的相关参数,例如所述终端C-DRX的相关参数可以是长DRX周期,则终端可以是将长DRX周期的起始位置确定为WUS的DRX的起始位置。可选地,所述终端C-DRX的相关参数还可以是其他的可能情况,此处不做赘述。
或者,所述DRX的起始位置的配置信息包括终端需要监听的PDCCH的相关参数,例如所述终端需要监听的PDCCH相关参数为PDCCH所在搜索空间的时间位置,则终端可以是将所述PDCCH所在搜索空间的时间位置确定
为WUS的DRX的起始位置。可选地,所述终端需要监听的PDCCH的相关参数还可以是其他的可能情况,此处不做赘述。
或者,所述DRX的起始位置的配置信息还可以是包括上述信息或者说参数中的至少一项,例如包括系统帧和超帧,或者是包括系统帧和寻呼的eDRX的配置信息,等等,本实施例不做过多列举。
本申请实施例中,在所述DRX的配置信息包括所述DRX的起始位置的配置信息的情况下,终端能够基于所述DRX的起始位置的配置信息来确定DRX的起始位置,进而终端基于所述DRX的起始位置在DRX的持续时间内执行对WUS的监听,以避免终端时刻处于WUS监听状态,有效降低了终端功耗。
可选地,所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听,包括:
在所述DRX的起始位置的配置信息包括系统帧的情况下,所述终端基于特定系统帧和第一时间偏移中的至少一项确定DRX的起始位置,并基于所述DRX的起始位置在DRX的持续时间内执行WUS的监听;
其中,所述第一时间偏移的起始位置为所述特定系统帧的起始位置或结束位置。
例如,所述特定系统帧为0号系统帧,所述终端可以是将所述0号系统帧的起始位置或结束位置作为所述DRX的起始位置;或者,终端也可以是基于0号系统帧和第一时间偏移来确定DRX的起始位置,该第一时间偏移(offset)的参考点可以是0号系统帧的起始位置或结束位置,如图4a所示,offset以0号系统帧的起始位置为参考点,则终端将0号系统帧的起始位置加上offset来确定为DRX的起始位置,终端基于该起始位置在DRX的持续时间内执行对WUS的监听。
本申请实施例中,所述系统帧可以是包括特定系统帧和第一时间偏移中的至少一项,例如网络侧设备可以是将特定系统帧及所述第一时间偏移中的至少一项携带在所述DRX的配置信息中以指示给终端,进而使得终端能够基于所述特定系统帧及所述第一时间偏移中的至少一项来确定WUS的DRX的起始位置,以执行对WUS的监听,节省终端功耗。
可选地,所述第一时间偏移的时间单位包括如下至少一项:子帧、时隙、符号、毫秒、系统帧及超帧。
本申请实施例中,所述DRX的起始位置的配置信息还可以是包括寻呼的eDRX的配置信息,所述eDRX的配置信息包括如下至少一项:
eDRX周期的起始位置或结束位置;
eDRX周期内寻呼时间窗口(Paging Time Window,PTW)的起始位置或结束位置;
PTW内的寻呼帧;
PTW内的寻呼帧内的寻呼时机(Paging Occasion,PO);
寻呼时机所在的超帧的起始位置或结束位置。
例如,所述eDRX的配置信息包括eDRX周期的起始位置或结束位置,进而终端可以是将所述eDRX周期的起始位置或结束位置确定为所述DRX的起始位置;或者,所述eDRX的配置信息包括eDRX周期内PTW的起始位置或结束位置,则终端可以是将所述eDRX周期内PTW的起始位置或结束位置作为所述DRX的起始位置;或者,所述eDRX的配置信息包括PTW内的寻呼帧(Paging Frame,PF),则终端可以是基于该PF来确定所述DRX的起始位置,例如将该PF的起始位置作为所述DRX的起始位置;或者,所述eDRX的配置信息包括PTW内的寻呼帧内的PO,则终端可以是将PTW内的寻呼帧内的PO作为所述DRX的起始位置;或者,所述eDRX的配置信息包括PO所在的超帧的起始位置或结束位置,则终端将所述PO所在的超帧的起始位置或结束位置确定为所述DRX的起始位置。可以理解地,所述eDRX的配置信息包括上述至少一项,所述eDRX的配置信息包括的具体内容还可以是其他的可能情况,此处不做过多列举。
需要说明地,所述eDRX的配置信息可以是网络侧设备配置给终端,终端基于所述eDRX的配置信息来确定DRX的起始位置,进而以基于所述DRX的起始位置开始在DRX的持续时间内执行对WUS的监听,无需终端时刻处于WUS的监听状态,有效节省终端功耗。
可选地,所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听,包括:
在所述DRX的起始位置的配置信息包括所述eDRX的配置信息的情况下,所述终端基于所述eDRX的配置信息确定DRX的第一起始位置,并基于所述第一起始位置在DRX的持续时间内执行WUS的监听。
本申请实施例中,若终端接收到的DRX的起始位置的配置信息包括eDRX的配置信息,例如eDRX周期的起始位置,终端可以是将所述eDRX周期的起始位置作为DRX的第一起始位置,进而终端能够确定DRX的持续时间从何时开始,终端基于该第一起始位置在DRX的持续时间内执行WUS的监听,无需终端时刻处于监听状态。当然,所述eDRX的配置信息包括的具体信息内容还可以是上述其他的可能情况,此处不再列举。
进一步地,所述方法还包括:
所述终端基于第二时间偏移,将所述DRX的第一起始位置调整为第二起始位置,并基于所述第二起始位置在DRX的持续时间内执行WUS的监听。
本申请实施例中,终端在基于上述eDRX的配置信息中的至少一项确定WUS的DRX的第一起始位置后,终端还可以基于第二时间偏移,将DRX的第一起始位置调整为第二起始位置,进而终端基于该第二起始位置在DRX的持续时间内执行WUS的监听。
例如,请参照图4b,参考点1为eDRX周期内PTW的起始位置,终端将该参考点1确定为对WUS监听的DRX的起始位置(也即第一起始位置),参考点2为eDRX周期内PTW的结束位置,终端可以是将对WUS监听的DRX的起始位置调整到该参考点2(也即第二起始位置),或者,终端也可以是在第一起始位置的基础上通过增加offset来确定第二起始位置,进而以对DRX的起始位置进行调整。这样,终端也就能够灵活调整WUS的DRX的起始位置,使得终端对于WUS的监听更加灵活。
可选地,所述第二时间偏移的时间单位包括如下至少一项:所述eDRX周期的数量、时隙、符号、毫秒、帧及超帧。
本申请实施例中,所述DRX的起始位置的配置信息还可以是包括终端C-DRX的相关参数,所述终端C-DRX的相关参数包括如下至少一项:
所述DRX的持续时间的起始位置;
长DRX周期;
短DRX周期。
例如,所述终端C-DRX的相关参数包括DRX的持续时间的起始位置,则终端可以是将所述DRX的持续时间的起始位置作为WUS的DRX的起始位置;或者,所述终端C-DRX的相关参数包括长DRX周期或短DRX周期,则终端可以是将所述长DRX周期的起始位置或短DRX周期的起始位置作为WUS的DRX的起始位置,以执行对WUS的监听。可选地,所述终端C-DRX的相关参数还可以是包括上述至少一项,此处不做过多列举。
可选地,所述DRX的起始位置的配置信息还可以是包括所述终端需要监听的PDCCH的相关参数,所述终端需要监听的PDCCH的相关参数包括如下至少一项:
所述PDCCH所在的搜索空间的时间位置;
所述PDCCH所在的搜索空间的周期。
例如,所述终端需要监听的PDCCH的相关参数包括所述PDCCH所在的搜索空间的时间位置,则终端可以是将所述PDCCH所在的搜索空间的时间位置确定为WUS DRX的起始位置;或者,所述终端需要监听的PDCCH的相关参数包括所述PDCCH所在的搜索空间的周期,则终端可以是将所述PDCCH所在的搜索空间的周期的起始位置确定为WUS DRX的起始位置。
需要说明地,上述DRX的起始位置的配置信息,如系统帧、超帧、寻呼的eDRX的配置信息等具体信息内容,可以是网络侧设备配置给终端,进而以使得终端能够基于这些信息内容来确定WUS DRX的起始位置,从而以在DRX的持续时间内执行对WUS的监听,节省终端功耗。
可选地,本申请实施例中,不同的WUS类型关联各自的所述DRX的配置信息。
需要说明地,在WUS类型为多个的情况下,可以是不同的WUS类型关联不同的DRX配置信息,也可以是不同的WUS类型关联相同的DRX配置信息,还可以是一个WUS类型关联多个不同的DRX配置信息。例如,WUS类型包括WUS类型1、WUS类型2和WUS类型3,这三个WUS类型各自关联的DRX的配置信息不同,或者可以是WUS类型1、WUS类型2关联相同的DRX的配置信息,WUS类型3关联另一种DRX的配置信息。
可选地,网络侧设备和终端可以是预先约定各类型WUS各自关联的DRX的配置信息,进而以使得终端能够基于WUS类型来确定对应的DRX的配置信息,如不同类型的WUS的DRX的起始位置不同、不同类型的WUS的DRX的周期不同等,这样也就使得终端能够更灵活地基于不同的DRX来实现对不同类型WUS的监听,提升终端通信的灵活性,也能更有助于节省终端功耗。
可选地,所述WUS类型与如下至少一项关联:WUS序列、WUS格式、WUS框架结构、WUS所占的频带。也就是说,不同的WUS类型可以是指不同的WUS序列,或者不同的WUS格式(format),或者不同的WUS框架结构,或者WUS所占的频带的不同,等等。
可选地,所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听之前,所述方法还可以包括:
所述终端基于WUS类型,确定与所述WUS类型关联的DRX的配置信息。
本申请实施例中,网络侧设备可以是预先和终端约定WUS类型与各自关联的DRX的配置信息的关联关系,或者网络侧设备将该关联关系预先发送给终端,进而终端能够基于WUS类型,确定与该WUS类型关联的DRX的配置信息,进而基于与该WUS类型关联的DRX的配置信息,在对应的DRX的持续时间内来执行对WUS的监听。这样,能够有效提升终端对于不同类型的WUS的监听的灵活性。
本申请实施例中,所述WUS的DRX的配置信息包括所述WUS的至少一个DRX的配置信息,所述至少一个DRX的配置信息的数量与所述终端的终端能力相关。例如,根据终端能力,网络侧设备向终端发送的WUS的DRX的配置信息中包括至少一个DRX的配置信息,进而终端能够基于至少一个DRX的配置信息,在至少一个DRX的持续时间内执行对WUS的监听。
可选地,所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听,包括:
所述终端基于所述至少一个DRX的配置信息,在至少一个DRX的持续时间内执行WUS的监听。
例如,所述至少一个DRX的配置信息包括两个DRX的配置信息,这两个DRX的配置信息均包括DRX的起始位置信息,且两个DRX的起始位置信息不同,则终端也就能够分别基于这两个DRX的起始位置,在不同时刻开始的DRX的持续时间内执行对WUS的监听。这样,也就使得终端能够有效利用其终端能力,在至少一个DRX的持续时间内执行对WUS的监听,使得终端对于WUS的监听更加灵活。
需要说明地,终端也可以是只接收WUS的一个DRX配置信息,也即终端不期望接收到多于一个关于WUS的DRX配置信息。
可选地,所述终端接收WUS的DRX的配置信息之前,所述方法还包括:
所述终端向网络侧设备发送辅助信息,所述辅助信息包括所述终端偏好的WUS的DRX的配置信息。
本申请实施例中,终端可以是先向网络侧设备发送辅助信息,将终端偏好的WUS的DRX配置通过辅助信息上报给网络侧设备,进而网络侧设备能够根据接收到的辅助信息,有针对性地为终端配置其偏好的WUS的DRX的配置信息,使得对于WUS的DRX的配置更加灵活。
为更好地理解本申请实施例提供的技术方案,以下通过几个具体的实施例进行举例说明。
实施例一
请参照图4c,终端主要包括两个模块,第一模块可以按照DRX周期监听寻呼消息和无线资源管理(Radio resource management,RRM)测量,第二模块监听唤醒信号。当有下行数据到达时,发送端(网络侧设备,例如基站)会发送唤醒信号,第二模块监听到唤醒信号后通过标识信息判断是否属于本终端,若是则触发第一模块,监听寻呼信号,即第一模块从睡眠态进入工作态,此时第二模块从工作态进入关闭状态。
实施例二
请参照图4d,结合实施例一,UE的第一模块先监听寻呼信道,当监听到0号系统帧(SFN0)时,通过协议配置的时间偏移量(offset),在一定的时间偏移后触发第二模块,也即DRX的起始位置(start point)为SFN0+offset;第二模块开始按照DRX周期监听唤醒信号,发送端在发送数据前会提前发送
唤醒信号,第二模块在t1时刻监听到唤醒信号后,解析标识信息是否属于本终端,如是则终端触发第一模块,第一模块进入工作态监听寻呼信号。
实施例三
请参照图4e,当第一模块配置了eDRX后,第一模块会在PTW窗内监听寻呼消息,寻找PO;PTW结束后会进入长时间的睡眠态,由于eDRX睡眠态持续时间长,期间若有数据到达则容易造成数据高时延。图4e中WUS DRX的起始位置关联了PTW结束时刻,并在一定的时间偏移(offset)后开启,也即DRX的起始位置(start point)为PTW结束时刻+offset,终端按照DRX周期监听唤醒信号,唤醒信号在第二模块的on duration期间到达时,终端触发第一模块监听寻呼消息。
实施例四
请参照图4f,终端处于连接态时,WUS DRX的起始位置可以与终端连接态下的C-DRX的参数相关,例如,DRX的起始位置与终端监听PDCCH onDurationTimer的起始时间相关,图4f中,DRX的起始位置(start point)为终端监听的PDCCH onDuration的起始位置。
请参照图5,图5是本申请实施例提供的另一种DRX参数配置方法的流程图,所述方法由网络侧设备执行。如图5所示,所述方法包括以下步骤:
步骤501、网络侧设备向终端发送WUS的DRX的配置信息。
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
本申请实施例中,所述DRX的起始位置的配置信息、所述DRX的持续时间的配置信息和所述DRX的周期的配置信息中的至少一项可以是通过网络侧设备配置给终端,进而终端能够基于上述DRX的配置信息,在DRX的持续时间内执行对唤醒信号的监听。所述DRX的配置信息的具体信息内容可以是参照终端侧实施例中的具体描述,本实施例不做过多赘述。
可选地,所述DRX的起始位置的配置信息包括如下至少一项:
系统帧;
超帧,所述超帧为N个系统帧,N为大于等于1的整数;
寻呼的增强非连续接收eDRX的配置信息;
终端连接态下的非连续接收C-DRX的相关参数;
终端需要监听的PDCCH的相关参数。
可选地,在所述DRX的起始位置的配置信息包括系统帧的情况下,所述DRX的起始位置的配置信息包括特定系统帧和第一时间偏移中的至少一项;其中,所述第一时间偏移的起始位置为所述特定系统帧的起始位置或结束位置。
可选地,所述第一时间偏移的时间单位包括如下至少一项:子帧、时隙、符号、毫秒、系统帧及超帧。
本申请实施例中,所述eDRX的配置信息包括如下至少一项:
eDRX周期的起始位置或结束位置;
eDRX周期内PTW的起始位置或结束位置;
PTW内的寻呼帧;
PTW内的寻呼帧内的寻呼时机;
寻呼时机所在的超帧的起始位置或结束位置。
可选地,所述终端C-DRX的相关参数包括如下至少一项:
所述DRX的持续时间的起始位置;
长DRX周期;
短DRX周期。
可选地,所述终端需要监听的PDCCH的相关参数包括如下至少一项:
所述PDCCH所在的搜索空间的时间位置;
所述PDCCH所在的搜索空间的周期。
本申请实施例中,不同的WUS类型关联各自的所述DRX的配置信息。
可选地,所述WUS类型与如下至少一项关联:WUS序列、WUS格式、WUS框架结构、WUS所占的频带。
可选地,所述WUS的DRX的配置信息包括所述WUS的至少一个DRX的配置信息,所述至少一个DRX的配置信息的数量与所述终端的终端能力相关。
可选地,所述网络侧设备向终端发送WUS的DRX的配置信息之前,所述方法还包括:
所述网络侧设备接收所述终端发送的辅助信息,所述辅助信息包括所述终端偏好的WUS的DRX的配置信息。
也就是说,终端可以是先向网络侧设备发送辅助信息,将终端偏好的WUS的DRX配置通过辅助信息上报给网络侧设备,进而网络侧设备能够根据接收到的辅助信息,有针对性地为终端配置其偏好的WUS的DRX的配置信息,使得对于WUS的DRX的配置更加灵活。
需要说明地,本申请实施例提供的DRX参数配置方法的执行主体为网络侧设备,本申请实施例中的相关概念及具体流程可以是参照上述终端侧方法实施例中的描述,为避免重复,本实施例不再赘述。
本申请实施例中,网络侧设备能够向终端发送WUS的DRX的配置信息,进而使得终端能够基于所述DRX的配置信息,在DRX的持续时间内执行对WUS的监听,无需终端时刻处于监听状态,有效降低了终端功耗。
本申请实施例提供的DRX参数配置方法,执行主体可以为DRX参数配置装置。本申请实施例中以DRX参数配置装置执行DRX参数配置方法为例,说明本申请实施例提供的DRX参数配置装置。
请参照图6,图6是本申请实施例提供的一种DRX参数配置装置的结构图。如图6所示,所述DRX参数配置装置600包括:
第一接收模块601,用于接收唤醒信号WUS的DRX的配置信息;
执行模块602,用于基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
可选地,所述DRX的起始位置的配置信息包括如下至少一项确定:
系统帧;
超帧,所述超帧为N个系统帧,N为大于等于1的整数;
寻呼的增强非连续接收eDRX的配置信息;
所述装置连接态下的非连续接收C-DRX的相关参数;
所述装置需要监听的物理下行控制信道PDCCH的相关参数。
可选地,在所述DRX的起始位置的配置信息包括系统帧的情况下,,所述执行模块602还用于:
基于特定系统帧和第一时间偏移中的至少一项确定DRX的起始位置,并基于所述DRX的起始位置在DRX的持续时间内执行WUS的监听;
其中,所述第一时间偏移的起始位置为所述特定系统帧的起始位置或结束位置。
可选地,所述第一时间偏移的时间单位包括如下至少一项:子帧、时隙、符号、毫秒、系统帧及超帧。
可选地,所述eDRX的配置信息包括如下至少一项:
eDRX周期的起始位置或结束位置;
eDRX周期内寻呼时间窗口PTW的起始位置或结束位置;
PTW内的寻呼帧;
PTW内的寻呼帧内的寻呼时机;
寻呼时机所在的超帧的起始位置或结束位置。
可选地,在所述DRX的起始位置的配置信息包括所述eDRX的配置信息的情况下,,所述执行模块602还用于:
基于所述eDRX的配置信息确定DRX的第一起始位置,并基于所述第一起始位置在DRX的持续时间内执行WUS的监听。
可选地,所述执行模块602还用于:
基于第二时间偏移,将所述DRX的第一起始位置调整为第二起始位置,并基于所述第二起始位置在DRX的持续时间内执行WUS的监听。
可选地,所述第二时间偏移的时间单位包括如下至少一项:所述eDRX周期的数量、时隙、符号、毫秒、帧及超帧。
可选地,所述装置C-DRX的相关参数包括如下至少一项:
所述DRX的持续时间的起始位置;
长DRX周期;
短DRX周期。
可选地,所述装置需要监听的PDCCH的相关参数包括如下至少一项:
所述PDCCH所在的搜索空间的时间位置;
所述PDCCH所在的搜索空间的周期。
可选地,不同的WUS类型关联各自的所述DRX的配置信息。
可选地,所述装置还包括:
确定模块,用于基于WUS类型,确定与所述WUS类型关联的DRX的配置信息。
可选地,所述WUS类型与如下至少一项关联:WUS序列、WUS格式、WUS框架结构、WUS所占的频带。
可选地,所述WUS的DRX的配置信息包括所述WUS的至少一个DRX的配置信息,所述至少一个DRX的配置信息的数量与所述装置的能力相关。
可选地,所述执行模块602还用于:
基于所述至少一个DRX的配置信息,在至少一个DRX的持续时间内执行WUS的监听。
可选地,所述装置还包括:
第一发送模块,用于向网络侧设备发送辅助信息,所述辅助信息包括所述终端偏好的WUS的DRX的配置信息。
本申请实施例中,所述装置基于接收的唤醒信号的DRX的配置信息,在DRX的持续时间内执行对WUS的监听,无需时刻处于监听状态,有效降低了装置的功耗。
本申请实施例中的DRX参数配置装置可以是电子设备,例如具有操作系统的电子设备,也可以是电子设备中的部件,例如集成电路或芯片。该电子设备可以是终端,也可以为除终端之外的其他设备。示例性的,终端可以包括但不限于上述所列举的终端11的类型,其他设备可以为服务器、网络附属存储器(Network Attached Storage,NAS)等,本申请实施例不作具体限定。
本申请实施例提供的DRX参数配置装置能够实现图3至图4f所述方法实施例中终端实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
请参照图7,图7是本申请实施例提供的另一种DRX参数配置装置的结构图。如图7所示,所述DRX参数配置装置700包括:
第二发送模块701,用于向终端发送WUS的DRX的配置信息;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
可选地,所述DRX的起始位置的配置信息包括如下至少一项:
系统帧;
超帧,所述超帧为N个系统帧,N为大于等于1的整数;
寻呼的增强非连续接收eDRX的配置信息;
终端连接态下的非连续接收C-DRX的相关参数;
终端需要监听的物理下行控制信道PDCCH的相关参数。
可选地,在所述DRX的起始位置的配置信息包括系统帧的情况下,所述DRX的起始位置的配置信息包括特定系统帧和第一时间偏移中的至少一项;
其中,所述第一时间偏移的起始位置为所述特定系统帧的起始位置或结束位置。
可选地,所述第一时间偏移的时间单位包括如下至少一项:子帧、时隙、符号、毫秒、系统帧及超帧。
可选地,所述eDRX的配置信息包括如下至少一项:
eDRX周期的起始位置或结束位置;
eDRX周期内寻呼时间窗口PTW的起始位置或结束位置;
PTW内的寻呼帧;
PTW内的寻呼帧内的寻呼时机;
寻呼时机所在的超帧的起始位置或结束位置。
可选地,所述终端C-DRX的相关参数包括如下至少一项:
所述DRX的持续时间的起始位置;
长DRX周期;
短DRX周期。
可选地,所述终端需要监听的PDCCH的相关参数包括如下至少一项:
所述PDCCH所在的搜索空间的时间位置;
所述PDCCH所在的搜索空间的周期。
可选地,不同的WUS类型关联各自的所述DRX的配置信息。
可选地,所述WUS类型与如下至少一项关联:WUS序列、WUS格式、WUS框架结构、WUS所占的频带。
可选地,所述WUS的DRX的配置信息包括所述WUS的至少一个DRX的配置信息,所述至少一个DRX的配置信息的数量与所述终端的终端能力相关。
可选地,所述装置还包括:
第二接收模块,用于接收所述终端发送的辅助信息,所述辅助信息包括所述终端偏好的WUS的DRX的配置信息。
本申请实施例中,所述装置能够向终端发送WUS的DRX的配置信息,进而使得终端能够基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听,无需终端时刻处于监听状态,有效降低了终端功耗。
本申请实施例提供的DRX参数配置装置能够实现图5所述方法实施例中网络侧设备实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
可选的,如图8所示,本申请实施例还提供一种通信设备800,包括处理器801和存储器802,存储器802上存储有可在所述处理器801上运行的程序或指令,例如,该通信设备800为终端时,该程序或指令被处理器801执行时实现上述图3所述DRX参数配置方法实施例的各个步骤,且能达到相同的技术效果。该通信设备800为网络侧设备时,该程序或指令被处理器801执行时实现上述图5所述DRX参数配置方法实施例的各个步骤,且能达到相同的技术效果,为避免重复,这里不再赘述。
本申请实施例还提供一种终端,包括处理器和通信接口,通信接口用于接收唤醒信号WUS的DRX的配置信息;处理器用于基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听。该终端实施例与上述终端侧方法实施例对应,上述方法实施例的各个实施过程和实现方式均可适用于该
终端实施例中,且能达到相同的技术效果。具体地,图9为实现本申请实施例的一种终端的硬件结构示意图。
该终端900包括但不限于:射频单元901、网络模块902、音频输出单元903、输入单元904、传感器905、显示单元906、用户输入单元907、接口单元908、存储器909以及处理器910等中的至少部分部件。
本领域技术人员可以理解,终端900还可以包括给各个部件供电的电源(比如电池),电源可以通过电源管理系统与处理器910逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。图9中示出的终端结构并不构成对终端的限定,终端可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置,在此不再赘述。
应理解的是,本申请实施例中,输入单元904可以包括图形处理单元(Graphics Processing Unit,GPU)9041和麦克风9042,图形处理器9041对在视频捕获模式或图像捕获模式中由图像捕获装置(如摄像头)获得的静态图片或视频的图像数据进行处理。显示单元906可包括显示面板9061,可以采用液晶显示器、有机发光二极管等形式来配置显示面板9061。用户输入单元907包括触控面板9071以及其他输入设备9072中的至少一种。触控面板9071,也称为触摸屏。触控面板9071可包括触摸检测装置和触摸控制器两个部分。其他输入设备9072可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆,在此不再赘述。
本申请实施例中,射频单元901接收来自网络侧设备的下行数据后,可以传输给处理器910进行处理;另外,射频单元901可以向网络侧设备发送上行数据。通常,射频单元901包括但不限于天线、放大器、收发信机、耦合器、低噪声放大器、双工器等。
存储器909可用于存储软件程序或指令以及各种数据。存储器909可主要包括存储程序或指令的第一存储区和存储数据的第二存储区,其中,第一存储区可存储操作系统、至少一个功能所需的应用程序或指令(比如声音播放功能、图像播放功能等)等。此外,存储器909可以包括易失性存储器或非易失性存储器,或者,存储器909可以包括易失性和非易失性存储器两者。其中,非易失性存储器可以是只读存储器(Read-Only Memory,ROM)、可编
程只读存储器(Programmable ROM,PROM)、可擦除可编程只读存储器(Erasable PROM,EPROM)、电可擦除可编程只读存储器(Electrically EPROM,EEPROM)或闪存。易失性存储器可以是随机存取存储器(Random Access Memory,RAM),静态随机存取存储器(Static RAM,SRAM)、动态随机存取存储器(Dynamic RAM,DRAM)、同步动态随机存取存储器(Synchronous DRAM,SDRAM)、双倍数据速率同步动态随机存取存储器(Double Data Rate SDRAM,DDRSDRAM)、增强型同步动态随机存取存储器(Enhanced SDRAM,ESDRAM)、同步连接动态随机存取存储器(Synch link DRAM,SLDRAM)和直接内存总线随机存取存储器(Direct Rambus RAM,DRRAM)。本申请实施例中的存储器909包括但不限于这些和任意其它适合类型的存储器。
处理器910可包括一个或多个处理单元;可选的,处理器910集成应用处理器和调制解调处理器,其中,应用处理器主要处理涉及操作系统、用户界面和应用程序等的操作,调制解调处理器主要处理无线通信信号,如基带处理器。可以理解的是,上述调制解调处理器也可以不集成到处理器910中。
其中,射频单元901,用于接收唤醒信号WUS的DRX的配置信息;
处理器910,用于基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听;
其中,所述DRX的配置信息包括如下至少一项:
所述DRX的起始位置的配置信息;
所述DRX的持续时间的配置信息;
所述DRX的周期的配置信息。
可选地,所述DRX的起始位置的配置信息包括如下至少一项:
系统帧;
超帧,所述超帧为N个系统帧,N为大于等于1的整数;
寻呼的增强非连续接收eDRX的配置信息;
终端连接态下的非连续接收C-DRX的相关参数;
终端需要监听的物理下行控制信道PDCCH的相关参数。
可选地,在所述DRX的起始位置的配置信息包括系统帧的情况下,所述处理器910还用于:
基于特定系统帧和第一时间偏移中的至少一项确定DRX的起始位置,并基于所述DRX的起始位置在DRX的持续时间内执行WUS的监听;
其中,所述第一时间偏移的起始位置为所述特定系统帧的起始位置或结束位置。
可选地,所述第一时间偏移的时间单位包括如下至少一项:子帧、时隙、符号、毫秒、系统帧及超帧。
可选地,所述eDRX的配置信息包括如下至少一项:
eDRX周期的起始位置或结束位置;
eDRX周期内寻呼时间窗口PTW的起始位置或结束位置;
PTW内的寻呼帧;
PTW内的寻呼帧内的寻呼时机;
寻呼时机所在的超帧的起始位置或结束位置。
可选地,在所述DRX的起始位置的配置信息包括所述eDRX的配置信息的情况下,所述处理器910还用于:
基于所述eDRX的配置信息确定DRX的第一起始位置,并基于所述第一起始位置在DRX的持续时间内执行WUS的监听。
可选地,所述处理器910还用于:
基于第二时间偏移,将所述DRX的第一起始位置调整为第二起始位置,并基于所述第二起始位置在DRX的持续时间内执行WUS的监听。
可选地,所述第二时间偏移的时间单位包括如下至少一项:所述eDRX周期的数量、时隙、符号、毫秒、帧及超帧。
可选地,所述终端C-DRX的相关参数包括如下至少一项:
所述DRX的持续时间的起始位置;
长DRX周期;
短DRX周期。
可选地,所述终端需要监听的PDCCH的相关参数包括如下至少一项:
所述PDCCH所在的搜索空间的时间位置;
所述PDCCH所在的搜索空间的周期。
可选地,不同的WUS类型关联各自的所述DRX的配置信息。
可选地,所述处理器910还用于:
基于WUS类型,确定与所述WUS类型关联的DRX的配置信息。
可选地,所述WUS类型与如下至少一项关联:WUS序列、WUS格式、WUS框架结构、WUS所占的频带。
可选地,所述WUS的DRX的配置信息包括所述WUS的至少一个DRX的配置信息,所述至少一个DRX的配置信息的数量与所述终端的终端能力相关。
可选地,所述处理器910还用于:
基于所述至少一个DRX的配置信息,在至少一个DRX的持续时间内执行WUS的监听。
可选地,所述射频单元901还用于:
向网络侧设备发送辅助信息,所述辅助信息包括所述终端偏好的WUS的DRX的配置信息。
本申请实施例中,终端基于接收的WUS的DRX的配置信息,在DRX的持续时间内执行对WUS的监听,无需终端时刻处于监听状态,有效降低了终端功耗。
本申请实施例还提供一种网络侧设备,包括处理器和通信接口,通信接口用于向终端发送WUS的DRX的配置信息。该网络侧设备实施例与上述网络侧设备方法实施例对应,上述方法实施例的各个实施过程和实现方式均可适用于该网络侧设备实施例中,且能达到相同的技术效果。
具体地,本申请实施例还提供了一种网络侧设备。如图10所示,该网络侧设备1000包括:天线101、射频装置102、基带装置103、处理器104和存储器105。天线101与射频装置102连接。在上行方向上,射频装置102通过天线101接收信息,将接收的信息发送给基带装置103进行处理。在下行方向上,基带装置103对要发送的信息进行处理,并发送给射频装置102,射频装置102对收到的信息进行处理后经过天线101发送出去。
以上实施例中网络侧设备执行的方法可以在基带装置103中实现,该基带装置103包括基带处理器。
基带装置103例如可以包括至少一个基带板,该基带板上设置有多个芯
片,如图10所示,其中一个芯片例如为基带处理器,通过总线接口与存储器105连接,以调用存储器105中的程序,执行以上方法实施例中所示的网络设备操作。
该网络侧设备还可以包括网络接口106,该接口例如为通用公共无线接口(common public radio interface,CPRI)。
具体地,本发明实施例的网络侧设备1000还包括:存储在存储器105上并可在处理器104上运行的指令或程序,处理器104调用存储器105中的指令或程序执行图7所示各模块执行的方法,并达到相同的技术效果,为避免重复,故不在此赘述。
本申请实施例还提供一种可读存储介质,所述可读存储介质上存储有程序或指令,该程序或指令被处理器执行时实现上述图3所述方法实施例的各个过程,或者实现上述图5所述方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
其中,所述处理器为上述实施例中所述的终端中的处理器。所述可读存储介质,包括计算机可读存储介质,如计算机只读存储器ROM、随机存取存储器RAM、磁碟或者光盘等。
本申请实施例另提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现上述图3所述方法实施例的各个过程,或者实现上述图5所述方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
应理解,本申请实施例提到的芯片还可以称为系统级芯片,系统芯片,芯片系统或片上系统芯片等。
本申请实施例另提供了一种计算机程序/程序产品,所述计算机程序/程序产品被存储在存储介质中,所述计算机程序/程序产品被至少一个处理器执行以实现上述图3所述方法实施例的各个过程,或者实现上述图5所述方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
本申请实施例还提供了一种通信系统,包括:终端及网络侧设备,所述终端可用于执行如上所述的图3所述方法的步骤,所述网络侧设备可用于执行如上图5所述方法的步骤。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。此外,需要指出的是,本申请实施方式中的方法和装置的范围不限按示出或讨论的顺序来执行功能,还可包括根据所涉及的功能按基本同时的方式或按相反的顺序来执行功能,例如,可以按不同于所描述的次序来执行所描述的方法,并且还可以添加、省去、或组合各种步骤。另外,参照某些示例所描述的特征可在其他示例中被组合。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以计算机软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本申请各个实施例所述的方法。
上面结合附图对本申请的实施例进行了描述,但是本申请并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本申请的启示下,在不脱离本申请宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本申请的保护之内。
Claims (32)
- 一种非连续接收DRX参数配置方法,包括:终端接收唤醒信号WUS的DRX的配置信息;所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听;其中,所述DRX的配置信息包括如下至少一项:所述DRX的起始位置的配置信息;所述DRX的持续时间的配置信息;所述DRX的周期的配置信息。
- 根据权利要求1所述的方法,其中,所述DRX的起始位置的配置信息包括如下至少一项:系统帧;超帧,所述超帧为N个系统帧,N为大于等于1的整数;寻呼的增强非连续接收eDRX的配置信息;终端连接态下的非连续接收C-DRX的相关参数;终端需要监听的物理下行控制信道PDCCH的相关参数。
- 根据权利要求2所述的方法,其中,所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听,包括:在所述DRX的起始位置的配置信息包括系统帧的情况下,所述终端基于特定系统帧和第一时间偏移中的至少一项确定DRX的起始位置,并基于所述DRX的起始位置在DRX的持续时间内执行WUS的监听;其中,所述第一时间偏移的起始位置为所述特定系统帧的起始位置或结束位置。
- 根据权利要求2所述的方法,其中,所述eDRX的配置信息包括如下至少一项:eDRX周期的起始位置或结束位置;eDRX周期内寻呼时间窗口PTW的起始位置或结束位置;PTW内的寻呼帧;PTW内的寻呼帧内的寻呼时机;寻呼时机所在的超帧的起始位置或结束位置。
- 根据权利要求4所述的方法,其中,所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听,包括:在所述DRX的起始位置的配置信息包括所述eDRX的配置信息的情况下,所述终端基于所述eDRX的配置信息确定DRX的第一起始位置,并基于所述第一起始位置执行在DRX的持续时间内执行WUS的监听。
- 根据权利要求5所述的方法,其中,所述方法还包括:所述终端基于第二时间偏移,将所述DRX的第一起始位置调整为第二起始位置,并基于所述第二起始位置在DRX的持续时间内执行WUS的监听。
- 根据权利要求2所述的方法,其中,所述终端需要监听的PDCCH的相关参数包括如下至少一项:所述PDCCH所在的搜索空间的时间位置;所述PDCCH所在的搜索空间的周期。
- 根据权利要求1所述的方法,其中,不同的WUS类型关联各自的所述DRX的配置信息。
- 根据权利要求8所述的方法,其中,所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听之前,所述方法还包括:所述终端基于WUS类型,确定与所述WUS类型关联的DRX的配置信息。
- 根据权利要求8所述的方法,其中,所述WUS类型与如下至少一项关联:WUS序列、WUS格式、WUS框架结构、WUS所占的频带。
- 根据权利要求1-10中任一项所述的方法,其中,所述WUS的DRX的配置信息包括所述WUS的至少一个DRX的配置信息,所述至少一个DRX的配置信息的数量与所述终端的终端能力相关。
- 根据权利要求11所述的方法,其中,所述终端基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听,包括:所述终端基于所述至少一个DRX的配置信息,在至少一个DRX的持续时间内执行WUS的监听。
- 根据权利要求1-10中任一项所述的方法,其中,所述终端接收WUS 的DRX的配置信息之前,所述方法还包括:所述终端向网络侧设备发送辅助信息,所述辅助信息包括所述终端偏好的WUS的DRX的配置信息。
- 一种DRX参数配置方法,包括:网络侧设备向终端发送WUS的DRX的配置信息;其中,所述DRX的配置信息包括如下至少一项:所述DRX的起始位置的配置信息;所述DRX的持续时间的配置信息;所述DRX的周期的配置信息。
- 根据权利要求14所述的方法,其中,所述DRX的起始位置的配置信息包括如下至少一项:系统帧;超帧,所述超帧为N个系统帧,N为大于等于1的整数;寻呼的增强非连续接收eDRX的配置信息;终端连接态下的非连续接收C-DRX的相关参数;终端需要监听的物理下行控制信道PDCCH的相关参数。
- 根据权利要求14所述的方法,其中,在所述DRX的起始位置的配置信息包括系统帧的情况下,所述DRX的起始位置的配置信息包括特定系统帧和第一时间偏移中的至少一项;其中,所述第一时间偏移的起始位置为所述特定系统帧的起始位置或结束位置。
- 根据权利要求15所述的方法,其中,所述eDRX的配置信息包括如下至少一项:eDRX周期的起始位置或结束位置;eDRX周期内寻呼时间窗口PTW的起始位置或结束位置;PTW内的寻呼帧;PTW内的寻呼帧内的寻呼时机;寻呼时机所在的超帧的起始位置或结束位置。
- 根据权利要求15所述的方法,其中,所述终端需要监听的PDCCH的 相关参数包括如下至少一项:所述PDCCH所在的搜索空间的时间位置;所述PDCCH所在的搜索空间的周期。
- 根据权利要求14所述的方法,其中,不同的WUS类型关联各自的所述DRX的配置信息。
- 根据权利要求19所述的方法,其中,所述WUS类型与如下至少一项关联:WUS序列、WUS格式、WUS框架结构、WUS所占的频带。
- 根据权利要求14-20中任一项所述的方法,其中,所述WUS的DRX的配置信息包括所述WUS的至少一个DRX的配置信息,所述至少一个DRX的配置信息的数量与所述终端的终端能力相关。
- 根据权利要求14-20中任一项所述的方法,其中,所述网络侧设备向终端发送WUS的DRX的配置信息之前,所述方法还包括:所述网络侧设备接收所述终端发送的辅助信息,所述辅助信息包括所述终端偏好的WUS的DRX的配置信息。
- 一种DRX参数配置装置,包括:第一接收模块,用于接收唤醒信号WUS的DRX的配置信息;执行模块,用于基于所述DRX的配置信息,在DRX的持续时间内执行WUS的监听;其中,所述DRX的配置信息包括如下至少一项:所述DRX的起始位置的配置信息;所述DRX的持续时间的配置信息;所述DRX的周期的配置信息。
- 根据权利要求23所述的装置,其中,所述DRX的起始位置的配置信息包括如下至少一项:系统帧;超帧,所述超帧为N个系统帧,N为大于等于1的整数;寻呼的增强非连续接收eDRX的配置信息;所述装置连接态下的非连续接收C-DRX的相关参数;所述装置需要监听的物理下行控制信道PDCCH的相关参数。
- 根据权利要求24所述的装置,其中,在所述DRX的起始位置的配置信息包括系统帧的情况下,所述执行模块还用于:基于特定系统帧和第一时间偏移中的至少一项确定DRX的起始位置,并基于所述DRX的起始位置在DRX的持续时间内执行WUS的监听;其中,所述第一时间偏移的起始位置为所述特定系统帧的起始位置或结束位置。
- 根据权利要求23-25中任一项所述的装置,其中,还包括:第一发送模块,用于向网络侧设备发送辅助信息,所述辅助信息包括终端偏好的WUS的DRX的配置信息。
- 一种DRX参数配置装置,包括:第二发送模块,用于向终端发送WUS的DRX的配置信息;其中,所述DRX的配置信息包括如下至少一项:所述DRX的起始位置的配置信息;所述DRX的持续时间的配置信息;所述DRX的周期的配置信息。
- 根据权利要求27所述的装置,其中,所述DRX的起始位置的配置信息包括如下至少一项:系统帧;超帧,所述超帧为N个系统帧,N为大于等于1的整数;寻呼的增强非连续接收eDRX的配置信息;终端连接态下的非连续接收C-DRX的相关参数;终端需要监听的物理下行控制信道PDCCH的相关参数。
- 根据权利要求27-28中任一项所述的装置,其中,还包括:第二接收模块,用于接收所述终端发送的辅助信息,所述辅助信息包括所述终端偏好的WUS的DRX的配置信息。
- 一种终端,包括处理器和存储器,其中,所述存储器存储可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1-13中任一项所述的DRX参数配置方法的步骤。
- 一种网络侧设备,包括处理器和存储器,其中,所述存储器存储可在 所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求14-22中任一项所述的DRX参数配置方法的步骤。
- 一种可读存储介质,所述可读存储介质上存储程序或指令,其中,所述程序或指令被处理器执行时实现如权利要求1-13中任一项所述的DRX参数配置方法的步骤,或者实现如权利要求14-22中任一项所述的DRX参数配置方法的步骤。
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| WO2025166646A1 (zh) * | 2024-02-07 | 2025-08-14 | 富士通株式会社 | 信息接收和发送方法、装置及通信系统 |
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| CN120021310A (zh) * | 2023-11-17 | 2025-05-20 | 华为技术有限公司 | 一种通信方法及通信装置 |
| CN118020353A (zh) * | 2024-01-04 | 2024-05-10 | 北京小米移动软件有限公司 | 发送接收配置信息的方法、终端、装置、系统及存储介质 |
| WO2025175582A1 (zh) * | 2024-02-23 | 2025-08-28 | 北京小米移动软件有限公司 | 监听唤醒信号的方法、终端、网络设备、系统及介质 |
| CN121357646A (zh) * | 2024-07-08 | 2026-01-16 | 荣耀终端股份有限公司 | 通信方法、装置、存储介质、芯片系统及通信系统 |
| CN121665350A (zh) * | 2024-09-12 | 2026-03-13 | 维沃移动通信有限公司 | 信息传输方法、装置、终端及网络侧设备 |
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