Wireless communication method, terminal device and network device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD
- Filing Date
- 2023-09-25
- Publication Date
- 2026-04-21
AI Technical Summary
In the case of poor cell signal quality, the terminal device may not be able to reside in the current cell, thereby unable to receive early warning signals.
New cell selection criteria are introduced, cell selection is performed according to early warning signals, and the reception function of early warning signals is activated or deactivated in the terminal device.
Ensure that the terminal equipment can still reside normally in the cell to receive early warning signals when the channel quality is poor, and improve the reliability and efficiency of the system.
Smart Images

Figure CN121909699A_ABST
Abstract
Description
Wireless communication method, terminal device, and network device Technical Field
[0001] The present application relates to the field of communication technology, and more specifically, to a wireless communication method, terminal equipment, and network equipment. Background Art
[0002] If the cell signal quality is poor, resulting in a paging failure of the terminal device, the network device may send an alert signal to the terminal device. However, in the case of poor cell signal quality, the terminal device may not be able to stay in the current cell, resulting in the terminal device being unable to monitor or receive the alert signal.
[0003] Summary of the Invention
[0004] The present application provides a wireless communication method, terminal device, and network device. The following describes in detail various aspects of the present application.
[0005] In a first aspect, a wireless communication method is provided, comprising: a first terminal device selects a cell according to a first criterion; wherein the first criterion corresponds to a warning signal.
[0006] In a second aspect, a wireless communication method is provided, including: a first terminal device activating or deactivating a function of receiving an early warning signal.
[0007] According to a third aspect, a wireless communication method is provided, comprising: a network device sends first configuration information to a first terminal device, wherein the first configuration information corresponds to an early warning signal.
[0008] In a fourth aspect, a terminal device is provided, which is a first terminal device, and includes: a processing module for selecting a cell according to a first criterion; wherein the first criterion corresponds to a warning signal.
[0009] In a fifth aspect, a terminal device is provided, which is a first terminal device, and includes: a processing module for activating or deactivating a function of receiving an early warning signal.
[0010] In a sixth aspect, a network device is provided, comprising: a communication module for sending first configuration information to a first terminal device, wherein the first configuration information corresponds to an early warning signal.
[0011] In a seventh aspect, a terminal device is provided, comprising a memory and a processor, wherein the memory is used to store a program, and the processor is used to call the program in the memory so that the terminal device executes the method described in the first aspect or the second aspect.
[0012] In an eighth aspect, a network device is provided, comprising a memory and a processor, wherein the memory is used to store a program, and the processor is used to call the program in the memory so that the network device executes the method described in the third aspect.
[0013] In a ninth aspect, a device is provided, comprising a processor for calling a program from a memory so that the device executes a method as described in any one of the first to third aspects.
[0014] In a tenth aspect, a chip is provided, comprising a processor for calling a program from a memory so that a device equipped with the chip executes a method as described in any one of the first to third aspects.
[0015] In an eleventh aspect, a computer-readable storage medium is provided, on which a program is stored, wherein the program enables a computer to execute the method as described in any one of the first to third aspects.
[0016] In a twelfth aspect, a computer program product is provided, comprising a program, wherein the program enables a computer to execute the method as described in any one of the first to third aspects.
[0017] In a thirteenth aspect, a computer program is provided, wherein the computer program enables a computer to execute the method as described in any one of the first to third aspects.
[0018] The embodiment of the present application introduces a new cell selection criterion for early warning signals, which helps terminal devices to remain in the cell normally to receive early warning signals even when the channel quality is poor. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] FIG1A is an example diagram of a communication scenario to which an embodiment of the present application can be applied.
[0020] FIG1B is an example diagram of another communication scenario to which embodiments of the present application may be applied.
[0021] FIG1C is an example diagram of another communication scenario to which the embodiments of the present application can be applied.
[0022] FIG2 is a flow chart of a wireless communication method provided in one embodiment of the present application.
[0023] FIG3 is a schematic flow chart of a wireless communication method provided in another embodiment of the present application.
[0024] FIG4 is a flow chart of a cell selection method provided in an embodiment of the present application.
[0025] FIG5 is a flowchart of a wireless communication method provided in another embodiment of the present application.
[0026] FIG6 is an example diagram of the early warning signal receiving state transition process provided in an embodiment of the present application.
[0027] FIG7 is a flowchart of a wireless communication method provided in another embodiment of the present application.
[0028] FIG8 is a schematic diagram of the structure of a terminal device provided in one embodiment of the present application.
[0029] FIG9 is a schematic structural diagram of a terminal device provided in another embodiment of the present application.
[0030] FIG10 is a schematic diagram of the structure of a network device provided in an embodiment of the present application.
[0031] FIG11 is a schematic structural diagram of a device to which an embodiment of the present application can be applied. DETAILED DESCRIPTION
[0032] Communication system architecture
[0033] The technical solutions of the embodiments of the present application can be applied to various communication systems, such as: global system of mobile communication (GSM) system, code division multiple access (CDMA) system, wideband code division multiple access (WCDMA) system, general packet radio service (GPRS), long term evolution (LTE) system, advanced long term evolution (LTE-A) system, new radio (NR) system, evolution system of NR system, LTE-based access to unlicensed spectrum (LTE-U) system, NR-based access to unlicensed spectrum (NR-U) system, non-terrestrial network (NTN) system, universal mobile telecommunication system (UMTS), wireless local area networks (WLAN), wireless fidelity (WLAN), etc. fidelity, WiFi), fifth-generation communication (5G) systems or other communication systems, such as future communication systems, such as sixth-generation mobile communication systems, and satellite communication systems.
[0034] Generally speaking, traditional communication systems support a limited number of connections and are easy to implement. However, with the development of communication technology, mobile communication systems will not only support traditional communications, but will also support, for example, device-to-device (D2D) communication, machine-to-machine (M2M) communication, machine-type communication (MTC), vehicle-to-vehicle (V2V) communication, or vehicle-to-everything (V2X) communication, and the embodiments of the present application can also be applied to these communication systems.
[0035] The communication system in the embodiment of the present application can be applied to a carrier aggregation (CA) scenario, a dual connectivity (DC) scenario, and a standalone (SA) networking scenario.
[0036] The communication system in the embodiment of the present application can be applied to an unlicensed spectrum, where the unlicensed spectrum can also be considered as a shared spectrum; or, the communication system in the embodiment of the present application can also be applied to an authorized spectrum, where the authorized spectrum can also be considered as a dedicated spectrum.
[0037] The embodiments of the present application can be applied to NTN systems as well as terrestrial networks (TN) systems. As an example and not a limitation, NTN systems include NR-based NTN systems and IoT-based NTN systems.
[0038] The embodiments of the present application describe various embodiments in conjunction with network devices and terminal devices, where the terminal device may also be referred to as user equipment (UE), access terminal, user unit, user station, mobile station, mobile station (MS), mobile terminal (MT), remote station, remote terminal, mobile device, user terminal, terminal, wireless communication device, user agent or user device, etc.
[0039] In an embodiment of the present application, the terminal device may be a station (STATION, ST) in a WLAN, a cellular phone, a cordless phone, a session initiation protocol (SIP) phone, a wireless local loop (WLL) station, a personal digital assistant (PDA) device, a handheld device with wireless communication capabilities, a computing device or other processing device connected to a wireless modem, a vehicle-mounted device, a wearable device, a next-generation communication system such as a terminal device in an NR network, or a terminal device in a future-evolved public land mobile network (PLMN) network, etc.
[0040] In an embodiment of the present application, a terminal device may be a device that provides voice and / or data connectivity to a user and can be used to connect people, objects, and machines, such as a handheld device with wireless connection capabilities, an in-vehicle device, etc. The terminal device in the embodiment of the present application may be a mobile phone, a tablet computer, a laptop computer, a PDA, a mobile internet device (MID), a wearable device, a virtual reality (VR) device, an augmented reality (AR) device, a wireless terminal in industrial control, a wireless terminal in self-driving, a wireless terminal in remote medical surgery, a wireless terminal in a smart grid, a wireless terminal in transportation safety, a wireless terminal in a smart city, a wireless terminal in a smart home, etc. Optionally, the terminal device can be used to act as a base station. For example, the terminal device can act as a scheduling entity that provides sidelink signals between terminal devices in V2X or D2D, etc. For example, a cellular phone and a car communicate with each other using sidelink signals. Cellular phones and smart home devices communicate with each other without relaying the communication signal through a base station.
[0041] In an embodiment of the present application, the terminal device can be deployed on land, including indoors or outdoors, handheld, wearable or vehicle-mounted; it can also be deployed on the water surface (such as ships, etc.); it can also be deployed in the air (such as airplanes, balloons and satellites, etc.).
[0042] In the embodiments of the present application, the terminal device may be a mobile phone, a tablet computer, a computer with wireless transceiver function, a virtual reality (VR) terminal device, an augmented reality (AR) terminal device, a wireless terminal device in industrial control, a wireless terminal device in self-driving, a wireless terminal device in remote medical, a wireless terminal device in a smart grid, a wireless terminal device in transportation safety, a wireless terminal device in a smart city, or a wireless terminal device in a smart home, etc. The terminal device involved in the embodiments of the present application may also be referred to as a terminal, user equipment (UE), an access terminal device, a vehicle-mounted terminal, an industrial control terminal, a UE unit, a UE station, a mobile station, a mobile station, a remote station, a remote terminal device, a mobile device, a UE, a wireless communication device, a UE agent, or a UE device, etc. The terminal device may also be fixed or mobile.
[0043] As an example and not a limitation, in the embodiment of the present application, the terminal device may also be a wearable device. Wearable devices may also be called wearable smart devices, which are a general term for wearable devices that are intelligently designed and developed using wearable technology for daily wear, such as glasses, gloves, watches, clothing, and shoes. A wearable device is a portable device that is worn directly on the body or integrated into the user's clothes or accessories. Wearable devices are not only hardware devices, but also achieve powerful functions through software support, data interaction, and cloud interaction. Broadly speaking, wearable smart devices include those that are fully functional, large in size, and can achieve complete or partial functions without relying on smartphones, such as smart watches or smart glasses, as well as those that only focus on a certain type of application function and need to be used in conjunction with other devices such as smartphones, such as various smart bracelets and smart jewelry for vital sign monitoring.
[0044] The network device in the embodiments of the present application may be a device for communicating with a terminal device, and may also be referred to as an access network device or a radio access network device. For example, the network device may be a base station. The network device in the embodiments of the present application may refer to a radio access network (RAN) node (or device) that connects a terminal device to a wireless network. A base station may broadly cover various names as follows, or be replaced with the following names, such as: NodeB, evolved NodeB (eNB), next generation NodeB (gNB), relay station, access point, transmitting and receiving point (TRP), transmitting point (TP), master station MeNB, secondary station SeNB, multi-standard radio (MSR) node, home base station, network controller, access node, wireless node, access point (AP), transmission node, transceiver node, baseband unit (BBU), remote radio unit (RRU), active antenna unit (AAU), remote radio head (RRH), central unit (CU), distributed unit (DU), positioning node, etc. A base station may be a macro base station, a micro base station, a relay node, a donor node, or the like, or a combination thereof. The base station may also refer to a communication module, modem or chip provided in the aforementioned device or apparatus. The base station may also be a mobile switching center and a device-to-device D2D, vehicle-to-everything (V2X), machine-to-machine (M2M) communication device that performs the base station function, a network side device in a 6G network, a device that performs the base station function in a future communication system, etc. The base station may support networks with the same or different access technologies. The embodiments of the present application do not limit the specific technology and specific device form adopted by the network equipment.
[0045] Base stations can be fixed or mobile. For example, a helicopter or drone can be configured to act as a mobile base station, and one or more cells can move based on the location of the mobile base station. In other examples, a helicopter or drone can be configured to act as a device that communicates with another base station.
[0046] In some deployments, the network device in the embodiments of the present application may refer to a CU or a DU, or the network device may include a CU and a DU. The gNB may also include an AAU.
[0047] The network equipment and terminal devices can be deployed on land, including indoors or outdoors, handheld or vehicle-mounted; they can also be deployed on water; they can also be deployed in the air on aircraft, balloons, and satellites. The embodiments of this application do not limit the scenarios in which the network equipment and terminal devices are located.
[0048] As an example and not a limitation, in an embodiment of the present application, the network device may have a mobile feature, for example, the network device may be a mobile device. In some embodiments of the present application, the network device may be a satellite or a balloon station. For example, the satellite may be a low earth orbit (LEO) satellite, a medium earth orbit (MEO) satellite, a geostationary earth orbit (GEO) satellite, a high elliptical orbit (HEO) satellite, etc. In some embodiments of the present application, the network device may also be a base station set up in a location such as land or water.
[0049] In an embodiment of the present application, the network device can provide services for a cell, and the terminal device communicates with the network device through the transmission resources used by the cell (for example, frequency domain resources, or spectrum resources). The cell can be a cell corresponding to the network device (for example, a base station). The cell can belong to a macro base station or a base station corresponding to a small cell. The small cells here may include: metro cells, micro cells, pico cells, femto cells, etc. These small cells have the characteristics of small coverage and low transmission power, and are suitable for providing high-speed data transmission services.
[0050] For example, Figure 1A is a schematic diagram of the architecture of a communication system provided in an embodiment of the present application. As shown in Figure 1A, the communication system 100 may include a network device 110, which may be a device that communicates with a terminal device 120 (or also referred to as a communication terminal or terminal). The network device 110 may provide communication coverage for a specific geographic area and may communicate with terminal devices located within the coverage area.
[0051] Figure 1A exemplarily shows a network device and two terminal devices. In some embodiments of the present application, the communication system 100 may include multiple network devices and each network device may include other number of terminal devices within its coverage area, which is not limited in the embodiments of the present application.
[0052] For example, FIG1B is a schematic diagram of the architecture of another communication system provided in an embodiment of the present application. Referring to FIG1B , a terminal device 1101 and a satellite 1102 are included, and wireless communication can be performed between the terminal device 1101 and the satellite 1102. The network formed between the terminal device 1101 and the satellite 1102 can also be referred to as an NTN. In the architecture of the communication system shown in FIG1B , the satellite 1102 can have the function of a base station, and the terminal device 1101 and the satellite 1102 can communicate directly. In the system architecture, the satellite 1102 can be referred to as a network device. In some embodiments of the present application, the communication system may include multiple network devices 1102, and each network device 1102 may include other numbers of terminal devices within its coverage area, which is not limited in the embodiments of the present application.
[0053] For example, FIG1C is a schematic diagram of the architecture of another communication system provided in an embodiment of the present application. Referring to FIG1C , it includes a terminal device 1201, a satellite 1202, and a base station 1203. Wireless communication can be performed between the terminal device 1201 and the satellite 1202, and communication can be performed between the satellite 1202 and the base station 1203. The network formed between the terminal device 1201, the satellite 1202, and the base station 1203 can also be referred to as an NTN. In the architecture of the communication system shown in FIG1C , the satellite 1202 may not have the function of a base station, and the communication between the terminal device 1201 and the base station 1203 needs to be transferred through the satellite 1202. In this system architecture, the base station 1203 can be referred to as a network device. In some embodiments of the present application, a plurality of network devices 1203 may be included in the communication system, and each network device 1203 may include other number of terminal devices within its coverage area, which is not limited in the embodiments of the present application.
[0054] It should be noted that Figures 1A-1C are only examples of the system to which this application is applicable. Of course, the method shown in the embodiment of this application can also be applied to other systems, such as 5G communication systems, LTE communication systems, etc., and the embodiment of this application does not make specific limitations on this.
[0055] In some embodiments of the present application, the wireless communication system shown in Figures 1A-1C may also include other network entities such as a mobility management entity (MME) and an access and mobility management function (AMF), but the embodiments of the present application are not limited to this.
[0056] It should be understood that in the embodiments of the present application, a device having a communication function in a network / system may be referred to as a communication device. Taking the communication system 100 shown in FIG1A as an example, the communication device may include a network device 110 and a terminal device 120 having a communication function. The network device 110 and the terminal device 120 may be the specific devices described above and will not be described in detail here. The communication device may also include other devices in the communication system 100, such as a network controller, a mobility management entity, and other network entities, which are not limited in the embodiments of the present application.
[0057] It should be understood that the "indication" mentioned in the embodiments of this application can be a direct indication, an indirect indication, or an indication of an association. For example, "A indicates B" can mean that A directly indicates B, for example, B can be obtained through A; it can also mean that A indirectly indicates B, for example, A indicates C, and B can be obtained through C; it can also mean that there is an association between A and B.
[0058] In the description of the embodiments of the present application, the term "corresponding" may indicate a direct or indirect correspondence between the two, or an association relationship between the two, or a relationship between indication and being indicated, configuration and being configured, etc.
[0059] The “configuration” in the embodiment of the present application may include configuration through at least one of system messages, radio resource control (RRC) signaling and media access control element (MAC CE).
[0060] In some embodiments of the present application, "predefined" or "preset" may be implemented by pre-storing corresponding codes, tables, or other methods that can be used to indicate relevant information in a device (e.g., a terminal device or a network device). This application does not limit the specific implementation method. For example, predefined may refer to information defined in a protocol.
[0061] In some embodiments of the present application, the "protocol" may refer to a standard protocol in the field of communications, for example, it may include an LTE protocol, an NR protocol, and related protocols used in future communication systems, and this application does not limit this.
[0062] RRC status of the terminal device
[0063] The RRC state of the terminal device may include an RRC idle state (RRC_IDLE), an RRC connected state (RRC_CONNECTED), and an RRC inactive state (RRC_INACTIVE).
[0064] If the terminal device is in the RRC Idle state, the terminal device's mobility can be managed based on the terminal device's cell selection / reselection. The terminal device receives paging initiated by the core network (CN), and the paging area is configured by the CN. If the terminal device is in the RRC Idle state, the network device neither establishes an RRC connection with the terminal device nor stores the terminal device's access stratum (AS) context.
[0065] If a terminal device is in the RRC connected state, an RRC connection is established between the network device and the terminal device, and the network device stores the terminal device's AS context. The network device knows the terminal device's location at the cell level. The network device controls the terminal device's mobility, and unicast data can be transmitted between the terminal device and the network device.
[0066] If the terminal device is in the RRC inactive state, its mobility is managed based on the terminal device's cell selection / reselection. Furthermore, a connection exists between the CN and the base station, and the terminal device's AS context exists on a base station. Paging can be triggered by the RAN, and the RAN-based paging area is managed by the RAN. The network equipment knows the terminal device's location at the RAN paging area level.
[0067] Paging mechanism
[0068] The main function of paging is to enable the network equipment to page the terminal device through a paging message when the terminal device is in the RRC idle state or the RRC inactive state, or to notify the terminal device of system message changes or earthquake tsunami / public warning information through a short message (applicable to all RRC states of the terminal device, including the RRC connected state).
[0069] The channels involved in paging include the physical downlink control channel (PDCCH), which is scrambled by the paging radio network temporary identity (P-RNTI), and the physical downlink shared channel (PDSCH), which is scheduled by the PDCCH. Paging messages are transmitted on the PDSCH. Short messages are carried on the PDCCH and are typically 8 bits long.
[0070] For terminal devices in the RRC idle state or the RRC inactive state, since there is no data communication between the terminal device and the network device, in order to save power, the terminal device can monitor the paging channel discontinuously, that is, adopt the paging discontinuous reception (DRX) mechanism. Under the paging DRX mechanism, the terminal device only needs to monitor paging during one paging occasion (PO) in each DRX cycle. PO can be understood as several PDCCH monitoring occasions. PO can include multiple time slots. In addition to PO, concepts related to paging also include paging frames (PF). PF is a radio frame (10ms). A PF can contain one or more POs; in other words, a PF can include the starting position of one or more POs.
[0071] The paging DRX cycle can be determined by both the common cycle in the system broadcast and the dedicated cycle configured in higher-layer signaling (such as non-access stratum (NAS) signaling). The terminal device can use the minimum of the two as the paging DRX cycle. From the perspective of the network device, a paging DRX cycle can include one or more POs. The location where the terminal device monitors the PO is related to the terminal device's identity (ID).
[0072] For example, the PF and PO of a terminal device in a paging DRX cycle are determined as follows:
[0073] The system frame number (SFN) of the PF is determined by the following formula: (SFN+PF_offset) mod T=(T div N)*(UE_ID mod N).
[0074] The index (i_s) of the PO within a PF can be determined by the following formula: i_s=floor(UE_ID / N) mod Ns.
[0075] In the above two formulas, T represents the DRX cycle for the terminal device to receive paging; the network device can broadcast a default DRX cycle. If the upper layer (such as the RRC layer) configures a terminal device-specific DRX cycle for the terminal device, the smaller value between the DRX cycle broadcast by the network device and the terminal device-specific DRX cycle configured by the upper layer can be used as the DRX cycle for the terminal device. If the upper layer does not configure a terminal device-specific DRX cycle for the terminal device, the DRX cycle broadcast by the network device can be used as the DRX cycle for the terminal device. N represents the number of PFs included in a DRX cycle. Ns represents the number of POs included in a PF. PF_offset can be used to determine a time domain offset of the PF. The UE_ID can be determined based on the following formula: 5G-S-TMSI mod 1024. Among them, 5G-S-TMSI represents the fifth generation system temporary mobile user identity (5gs-temporary mobile subscriber identity).
[0076] Cell selection for non-connected terminal devices
[0077] A terminal device in a non-connected state can monitor paging messages on the serving cell and perform radio resource management (RRM) measurements on the serving cell and other neighboring cells based on the configuration of the network equipment to support mobility operations such as cell selection / reselection. Cell selection includes initial cell selection and cell selection based on stored information.
[0078] If the terminal device is performing initial cell selection, it typically does not have prior frequency information stored by the network device. In this case, the terminal device's cell selection behavior may include the following: the terminal device scans the frequencies within the frequency band based on its capabilities to find a suitable cell; then, on each frequency, the terminal device searches for the cell with the strongest signal; once a suitable cell is found, the terminal device may camp on it.
[0079] If the terminal device performs cell selection based on stored information, the terminal device stores the frequency information of the network device during cell selection. Furthermore, the terminal device may also store previously detected cells or cell-related parameters. In this case, the terminal device's cell selection behavior may include the following: the terminal device performs cell selection based on the stored information, i.e., preferentially searches for cells for which relevant information is stored; upon finding a suitable cell, the terminal device may choose to reside on that cell; if no suitable cell is found, the terminal device initiates initial cell selection.
[0080] The terminal device can measure the reference signal received power (RSRP) and reference signal received quality (RSRQ) of the current cell, and determine whether the current cell meets the cell residence condition through the S criterion.
[0081] The definition of the S criterion can be: Srxlev>0 and Squal>0 are satisfied at the same time. rxlevmeas –(Q rxlevmin +Q rxlevminoffset )-P compensation -Q offsettemp ; Squal = Q qualmeas –(Q qualmin +Q qualminoffset )-Q offsettemp .
[0082] In the above formula, Srxlev represents the cell selection reception level value; Squal represents the cell selection quality value; Q rxlevmeas Indicates the RSRP measurement value of the terminal device in the cell; Q rxlevmeas Indicates the measured value of the RSRQ of the terminal device in the cell; Q rxlevmin Indicates the minimum RSRP required by the cell; Q qualmin Indicates the minimum RSRQ required by the cell; Q rxlevmin and Q qualmin Can be configured by network devices through broadcasting; compensation Indicates the power compensation caused by low power of terminal equipment; Q rxlevminoffset Represents Q rxlevmin The offset value of Q offsettemp Indicates a temporary offset value (which can be notified through system broadcast); Q qualminoffset Represents Q qualmin The offset value.
[0083] As mentioned earlier, some terminal devices (such as those in the unconnected state) need to monitor and receive paging messages on the serving cell in which they reside. In some cells (such as NTN cells), terminal devices in non-line-of-sight (NLOS) environments (for example, in a pocket, indoors, or under a tall building) experience poor channel quality and are unable to receive paging messages sent by network devices. Evaluation results provided by the 3rd Generation Partnership Project (3GPP) TR38.811 indicate that compared to line-of-sight (LOS) environments, terminal devices in NLOS environments experience an additional 18dB of penetration loss, potentially preventing them from receiving paging messages. To address this issue, 3GPP is discussing the introduction of an alert feature in communication systems. To support this feature, the communication system will introduce an alert signal, also known as an alert message. The design requirements for this alert signal ensure that the device can receive the alert signal sent by the network even in NLOS environments. In this way, for a terminal device in an NLOS environment, when the paging message is unreachable (for example, the network device sends a paging message to the terminal device but does not receive any response from the terminal device), the network device can first send an early warning signal to the terminal device. After receiving the early warning signal, the terminal device can move to a place with a better signal environment to receive the paging message.
[0084] Based on current cell selection criteria, a terminal device can only reside in a cell if its RSRP / RSRQ measured in that cell is above a certain threshold. For cells that support early warning features, how to ensure that a terminal device can still reside in the cell and receive early warning signals even when channel quality is poor is a challenge that needs to be addressed.
[0085] In response to the above problems, the embodiments of the present application are described in detail below.
[0086] Figure 2 is a schematic flow chart of a wireless communication method provided in an embodiment of the present application. The method of Figure 2 can be performed by a first terminal device. The first terminal device can be any of the types of terminal devices mentioned above. For example, the first terminal device can be a terminal device that supports the early warning signal reception function. In another example, the first terminal device can be a terminal device that supports the NTN function.
[0087] In some implementations, the first terminal device may be a terminal device in an RRC non-connected state. For example, the first terminal device may be in an RRC idle state. For another example, the first terminal device may be in an RRC inactive state.
[0088] 2 , in step S210 , the first terminal device selects a cell according to a first criterion. The first criterion corresponds to (or is associated with) an early warning signal.
[0089] In some implementations, the warning signal can be associated with a paging failure of a terminal device. For example, the warning signal can issue a prompt or notification to the terminal device if a paging failure occurs. After receiving the warning signal, the user of the terminal device can move to an area with better signal quality to receive the paging message.
[0090] In some implementations, the first criterion corresponding to the warning signal may include: the first criterion corresponding to the reception of the warning signal; or, the first criterion is used to receive / detect the warning signal. Alternatively, the first criterion is a cell selection criterion introduced for terminal devices capable of receiving warning signals.
[0091] By introducing a new cell selection criterion, terminal equipment can still stay in the cell normally to receive early warning signals even when the channel quality is poor.
[0092] In some implementations, the first criterion includes a second criterion and / or a third criterion. The second criterion and the third criterion are respectively described in detail below with examples.
[0093] Second criterion:
[0094] The second criterion may be used by the terminal device to select a cell based on the signal reception power and / or signal reception quality of the cell, and the second criterion corresponds to the warning signal. For example, the second criterion may be referred to as the S' criterion.
[0095] In some implementations, the signal received power of a cell may refer to RSRP.
[0096] In some implementations, the signal reception quality of a cell may refer to RSRQ.
[0097] In some implementations, the second criterion may include: a measurement value of the signal reception power and / or signal reception quality of the terminal device in the current cell is higher than a threshold.
[0098] In some implementations, the second criterion is associated with one or more of the following: a cell selection reception level value (which can be represented by Srxlev); a cell selection quality value (which can be represented by Squal); a first parameter used to indicate a threshold of the cell selection reception level value and / or the cell selection quality value; and a second parameter used to determine the cell selection reception level value and / or the cell selection quality value.
[0099] In some implementations, the second criterion corresponding to the warning signal may include: a threshold and / or parameter associated with the second criterion corresponding to the warning signal.
[0100] In some implementations, the first parameter associated with the second criterion corresponds to the warning signal. For example, the first parameter associated with the first criterion can be determined based on configuration information of the warning signal.
[0101] In some implementations, the value of the first parameter is less than a threshold corresponding to the fourth criterion. The fourth criterion can be used for cell selection, and the fourth criterion is not associated with the warning signal. For example, the fourth criterion can be the S criterion for cell selection provided in the related art.
[0102] In some implementations, the value of the first parameter may be configured by the network device or be a predefined value. For example, the value of the first parameter may be less than 0, that is, the value of the first parameter may be a negative number.
[0103] As an example, the S criterion provided by the related art is Srxlev>0 and Squal>0. Unlike this S criterion, the second criterion provided in the embodiments of the present application can be defined as: Srxlev>rxlev_threshold1, Squal>qual_threshold2. Srxlev represents the cell selection reception level value, and Squal represents the cell selection quality value. Srxlev and Squal can be calculated using the same or similar parameters as the S criterion. The difference between the S criterion and the second criterion is that in the S criterion, the thresholds corresponding to Srxlev and Squal are 0, while the thresholds corresponding to the second criterion, rxlev_threshold1 and qual_threshold2, are negative numbers.
[0104] In some implementations, one or more of the second parameters associated with the second criterion corresponds to a warning signal.
[0105] In some implementations, the second parameter may include a third parameter, and the third parameter corresponds to the warning signal. The third parameter may be used to indicate the minimum requirements of the cell for signal reception power and / or signal reception quality. The third parameter may be, for example, Q rxlevmin1 and / or Q qualmin1 The third parameter may be configured by the network device, or the value of the third parameter may be a predefined value.
[0106] In some implementations, the value of the third parameter is less than the value corresponding to the cell's minimum requirement for signal received power and / or signal received quality in the fourth criterion. The fourth criterion refers to a cell selection criterion that is not associated with the warning signal. For example, the fourth criterion may be the S criterion for cell selection provided in the related art.
[0107] As an example, the second criterion may be defined as: Srxlev>0 and Squal>0; where:
[0108] Srxlev=Q rxlevmeas -(Q rxlevmin1 +Q rxlevminoffset )-P compensation -Q offsettemp ;
[0109] Squal=Q qualmeas -(Q qualmin1 +Q qualminoffset )-Q offsettemp .
[0110] In the above formula, Q rxlevmin1 Indicates the minimum requirement of the cell for signal receiving power, Q qualmin1 Indicates the minimum requirement for signal reception quality. rxlevmin1 and Q qualmin1 It can correspond to the third parameter mentioned above. rxlevmin1 and Q qualmin1 Q in the S criterion rxlevmin and Q qualmin Different. For example, Q rxlevmin1 rxlevmin , Q qualmin1 qualmin .Q rxlevmeas Indicates the RSRP measurement value of the terminal device in the cell; Q rxlevmeas Indicates the measured value of the RSRQ of the terminal device in the cell; P compensation Indicates the power compensation caused by low power of terminal equipment; Q rxlevminoffset Indicates Q rxlevmin The offset value of Q offsettemp Indicates a temporary offset value (which can be notified through system broadcast); Q qualminoffset Indicates Q qualmin The offset value.
[0111] In some implementations, the second parameter includes a fourth parameter, and the fourth parameter corresponds to the warning signal. The fourth parameter is used to indicate an offset value of the third parameter; the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality.
[0112] In some implementations, the value of the fourth parameter may be configured by the network device or may be a predefined value.
[0113] In some implementations, the cell selection reception level value (Srxlev) and / or the cell selection quality value (Squal) associated with the second criterion is determined based on a difference between a third parameter and a fourth parameter, and the value of the fourth parameter is greater than 0.
[0114] In some implementations, the cell selection reception level value (Srxlev) and / or the cell selection quality value (Squal) associated with the second criterion is determined based on the sum of the third parameter and a fourth parameter, and the value of the fourth parameter is less than 0.
[0115] As an example, the first criterion may be defined as: Srxlev>0 and Squal>0; where:
[0116] Srxlev=Q rxlevmeas -(Q rxlevmin -Qoffset rxlevmin +Q rxlevminoffset )-P compensation -Qoffset temp ;
[0117] Squal=Q qualmeas -(Q qualmin -Qoffset qualmin +Q qualminoffset )-Qoffset temp .
[0118] In the above formula, compared with the S criterion, Qoffset rxlevmin and Qoffset qualmin is a newly introduced parameter. Furthermore, Qoffset rxlevmin >0, Qoffset qualmin >0.
[0119] The second criterion is described in detail above, and the third criterion is described in detail below.
[0120] The third criterion may be used by the terminal device to select a cell based on its location. In other words, the third criterion is an evaluation criterion based on the location of the terminal device. For example, the third criterion may determine whether the terminal device is within the coverage of a cell (such as a satellite cell) based on the location of the terminal device.
[0121] In some implementations, the third criterion is associated with one or more of: the location of the terminal device; the location of the cell ground reference point; the location of the satellite; the distance between the terminal device and the cell ground reference point; the distance between the terminal device and the satellite; the signal transmission time between the terminal device and the satellite; and the timing advance of the service link between the terminal device and the satellite.
[0122] For example, the third criterion includes: if the distance between the terminal device and a ground reference point of the current cell is less than or equal to a first threshold, then the terminal device satisfies the third criterion. The first threshold can be configured by the network device or a predefined value. The ground reference point can be, for example, the middle of the cell.
[0123] For another example, the third criterion includes: if the distance between the terminal device and the satellite corresponding to the current cell is less than or equal to a second threshold, then the terminal device meets the third criterion. The second threshold can be configured by the network device or can be a predefined value.
[0124] For another example, the third criterion includes: if the signal transmission time between the terminal device and the satellite corresponding to the current cell is less than or equal to a third threshold, then the terminal device meets the third criterion. The third threshold can be configured by the network device or a predefined value. The signal transmission time between the terminal device and the satellite corresponding to the current cell can refer to the one-way transmission time from the terminal device to the satellite or from the satellite to the terminal device, or it can also refer to the round-trip transmission time between the terminal device and the satellite.
[0125] For another example, the third criterion includes: if the timing advance of the serving link between the terminal device and the current cell is less than or equal to a fourth threshold, then the terminal device meets the third criterion. The fourth threshold can be configured by the network device or a predefined value. The serving link can refer to the link between the terminal device and a network device (such as a satellite).
[0126] The above describes in detail the cell selection criteria corresponding to the warning signal proposed in the embodiment of the present application. The following is a detailed example of how the terminal device selects a cell based on the first criterion.
[0127] In some implementations, if the second criterion is satisfied, the first terminal device determines that the current cell satisfies the residency condition or cell selection criterion. That is, if the second criterion is satisfied, the first terminal device can reside normally in the current cell.
[0128] Furthermore, in some implementations, in one or more of the following situations, if the second criterion is met, the first terminal device determines that the current cell meets the camping condition or the cell selection criterion:
[0129] Only the second criterion was introduced, not the third criterion;
[0130] The second and third criteria are introduced at the same time, but the network device is only configured with the second criterion;
[0131] The second criterion and the third criterion are introduced at the same time. The network device is configured with the second criterion and the third criterion at the same time, but the first terminal device does not support the third criterion or the first terminal device does not obtain its current location information.
[0132] In some implementations, if the third criterion is satisfied, the first terminal device determines that the current cell satisfies the residency condition or cell selection criterion. That is, if the third criterion is satisfied, the first terminal device can reside normally in the current cell.
[0133] Furthermore, in some implementations, in one or more of the following situations, if the third criterion is met, the first terminal device determines that the current cell meets the camping condition or the cell selection criterion:
[0134] Only the third criterion was introduced, not the second criterion;
[0135] The second and third criteria are introduced at the same time, but the network equipment is only configured with the third criterion;
[0136] The second criterion and the third criterion are introduced at the same time, and the network device is configured with the second criterion and the third criterion at the same time, but the first terminal device does not support the second criterion or the first terminal device does not measure the RSRP or RSRQ of the current cell.
[0137] In some implementations, if both the second criterion and the third criterion are satisfied, the first terminal device determines that the current cell satisfies the residency condition or cell selection criterion. That is, if both the second criterion and the third criterion are satisfied, the first terminal device can reside normally in the current cell.
[0138] In some implementations, if the second criterion is satisfied or the third criterion is satisfied, the first terminal device determines that the current cell meets the residency condition or the cell selection criterion. That is, if the second criterion is satisfied or the third criterion is satisfied, the first terminal device can reside normally in the current cell.
[0139] In some implementations, if the terminal device does not meet the S criterion in any cell and does not meet the second criterion and the third criterion mentioned above in all cells supporting the early warning function, the terminal device may enter any cell selection state.
[0140] In some implementations, as shown in FIG3 , the wireless communication method provided in an embodiment of the present application may further include step S310, whereby the first terminal device receives first configuration information sent by the network device. The first configuration information corresponds to the warning signal. In other words, the first configuration information is configuration information related to the warning signal. For example, the first configuration information is used to configure the warning signal. Step S310 may, for example, be performed before step S210.
[0141] In some implementations, the first configuration information may be sent by the network device via broadcasting. For example, the network device may broadcast cell information, where the cell information includes the first configuration information.
[0142] In some implementations, the first configuration information includes first information. The first information is used to indicate whether the current cell supports the transmission of the warning signal. In other words, the first information is used to indicate whether the current cell (or current base station) supports the function of transmitting the warning signal.
[0143] In some implementations, the first configuration information includes second information. The second information is used to configure time-frequency resources for the warning signal. In other words, the second information is used to configure the time-frequency resources for the first terminal device to monitor the warning signal.
[0144] In some implementations, the first configuration information includes third information. The third information indicates a threshold used to determine whether the first criterion is satisfied. As mentioned above, the first criterion includes the second criterion and / or the third criterion, and the second criterion and / or the third criterion can determine whether the terminal device satisfies the cell selection criterion based on the threshold. The threshold mentioned here can be configured by the third information.
[0145] In some implementations, before executing step S210, the first terminal device may first determine whether the current cell supports transmission of warning signals and / or whether the first terminal device has the ability to receive warning signals. As an example, if the current cell supports transmission of warning signals and the first terminal device has the ability to receive warning signals, then in addition to being based on the S criterion, the first terminal device may execute step S210.
[0146] The following describes the embodiments of the present application in more detail with reference to specific examples. It should be noted that the example of FIG. 4 is merely intended to help those skilled in the art understand the embodiments of the present application, and is not intended to limit the embodiments of the present application to the specific numerical values or specific scenarios illustrated. Those skilled in the art can obviously make various equivalent modifications or changes based on the example of FIG. 4 , and such modifications or changes also fall within the scope of the embodiments of the present application. The method of FIG. 4 can be executed by a terminal device, such as the first terminal device mentioned above.
[0147] 4 , in step S410 , the warning-related configuration information (corresponding to the first configuration information mentioned above) broadcast by the network device is received.
[0148] In step S420, it is determined whether the current cell satisfies the S criterion, or whether the current cell satisfies the second criterion and / or the third criterion mentioned above. If the current cell satisfies the S criterion, or if the current cell satisfies the second criterion and / or the third criterion mentioned above, step S430 is executed; otherwise, step S440 is executed.
[0149] In step S430, it is selected to camp in the current cell (at this time the terminal device may be in a camped normally state).
[0150] In step S440, if the terminal device determines that the S criterion is not met in any cell, and the terminal device does not meet the second criterion and / or the third criterion in any cell supporting the early warning signal transmission function, step S450 is executed; otherwise, step S460 is executed.
[0151] In step S450, the process enters into any cell selection state.
[0152] In step S460, the terminal device selects a cell that satisfies the S criterion or the second criterion and / or the third criterion (at this time, the terminal device may be in a camped normally state).
[0153] For terminal devices capable of receiving early warning signals, if they can normally receive paging messages, they do not need to receive early warning signals. Therefore, it is necessary to introduce an activation / deactivation mechanism for early warning signal reception. The following, combined with Figure 5, describes this activation / deactivation mechanism in detail.
[0154] Figure 5 is a schematic flow chart of a wireless communication method provided in an embodiment of the present application. The method of Figure 5 can be performed by a first terminal device. The first terminal device can be any of the types of terminal devices mentioned above. For example, the first terminal device can be a terminal device that supports receiving early warning signals. In another example, the first terminal device can be a terminal device that supports NTN functionality.
[0155] In some implementations, the first terminal device may be a terminal device in an RRC non-connected state. For example, the first terminal device may be a terminal device in an RRC idle state. For another example, the first terminal device may be a terminal device in an RRC inactive state.
[0156] 5 , in step S510 , the first terminal device activates or deactivates a function of receiving an early warning signal.
[0157] In some implementations, activation or deactivation of the early warning signal reception function is determined based on a first condition. The first condition is associated with one or more of the following information: signal reception power of a cell; signal reception quality of the cell; detection results of a first channel, where the first channel is used to schedule paging information for the first terminal device; and reception results of a second channel, where the second channel is used to carry paging information for the first terminal device.
[0158] In some implementations, the signal reception power of a cell may refer to RSRP. The signal reception quality of a cell may refer to RSRQ. That is, the first terminal device may determine whether to activate or deactivate the warning signal reception function based on RSRP / RSRQ.
[0159] In some implementations, the first channel is a PDCCH used to schedule paging information for the first terminal device. The second channel is a PDSCH used to carry paging information for the first terminal device. In other words, the first terminal device can determine whether to activate or deactivate the warning signal reception function based on the detection / reception of the PDCCH / PDSCH.
[0160] The embodiments of this application introduce an activation / deactivation mechanism for warning signal reception based on channel quality or paging reception. This allows terminal devices to receive warning signals in poor signal conditions, while omitting them in good conditions. This solution not only saves system resources but also reduces the increase in terminal device power consumption caused by unnecessary warning signal reception.
[0161] In some implementations, the first condition includes: if the signal reception power and / or signal reception quality (such as RSRP and / or RSRQ) of the cell is lower than or equal to a first threshold, the first terminal device activates a warning signal reception function. That is, if the signal reception power and / or signal reception quality of the cell is lower than or equal to the first threshold, the first terminal device receives the warning signal.
[0162] In some implementations, referring to FIG6 , the first condition includes: if the signal reception power and / or signal reception quality (such as RSRP and / or RSRQ) of the cell is higher than or equal to a first threshold, the first terminal device deactivates the early warning signal reception function. In other words, if the signal reception power and / or signal reception quality of the cell is lower than or equal to the first threshold, the first terminal device does not receive the early warning signal.
[0163] In some implementations, the first threshold may be configured by the network device or may be a predefined value.
[0164] In some implementations, the first condition includes: if the signal reception power and / or signal reception quality (such as RSRP and / or RSRQ) of the cell is lower than or equal to the second threshold within a first time period (i.e., a duration), the first terminal device activates the early warning signal reception function.
[0165] In some implementations, the first condition includes: if the signal reception power and / or signal reception quality (such as RSRP and / or RSRQ) of the cell is higher than or equal to a second threshold within a first time period (i.e., a duration), the first terminal device deactivates the early warning signal reception function.
[0166] In some implementations, the second threshold may be configured by the network device or may be a predefined value.
[0167] In some implementations, the duration of the first time period may be configured by the network device or may be a predefined value.
[0168] In some implementations, the first condition includes: if the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality (such as RSRP and / or RSRQ) of the cell is lower than or equal to a third threshold, the first terminal device activates the warning signal receiving function.
[0169] In some implementations, the third threshold may be configured by the network device or may be a predefined value.
[0170] In some implementations, the first condition includes: if the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality (such as RSRP and / or RSRQ) of the cell is higher than or equal to a fourth threshold, the first terminal device deactivates the warning signal receiving function.
[0171] In some implementations, the fourth threshold may be configured by the network device or may be a predefined value. Further, in some implementations, the third threshold is less than or equal to the fourth threshold.
[0172] In some implementations, the first condition includes: if the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality (such as RSRP and / or RSRQ) of the cell is lower than or equal to the third threshold within a second time period (i.e., a duration), the first terminal device activates the warning signal receiving function.
[0173] In some implementations, the third threshold may be configured by the network device or may be a predefined value.
[0174] In some implementations, the duration of the second time period may be configured by the network device or may be a predefined value.
[0175] In some implementations, the first condition includes: if the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality (such as RSRP and / or RSRQ) of the cell is higher than or equal to the fourth threshold within the second time period, the first terminal device deactivates the warning signal receiving function.
[0176] In some implementations, the fourth threshold may be configured by the network device or may be a predefined value. Further, in some implementations, the third threshold is less than or equal to the fourth threshold.
[0177] In some implementations, the duration of the second time period may be configured by the network device or may be a predefined value.
[0178] In some implementations, the first condition includes: if the first terminal device fails to detect the first channel (such as PDCCH, used to schedule paging information of the first terminal device), the first terminal device activates a function of receiving the early warning signal.
[0179] In some implementations, the first condition includes: if the first terminal device fails to detect a first channel (e.g., a PDCCH, used to schedule paging information for the first terminal device) for N1 consecutive times, then the first terminal device activates a warning signal reception function; where N1 is a positive integer greater than 1. The value of N1 can be configured by the network device or can be a predefined value.
[0180] In some implementations, the first condition includes: if the first terminal device fails to receive the second channel (such as PDSCH, used to carry paging information of the first terminal device), the first terminal device activates the early warning signal reception function.
[0181] In some implementations, the first condition includes: if the first terminal device fails to receive a second channel (e.g., a PDSCH, used to carry paging information of the first terminal device) for N2 consecutive times, then the first terminal device activates a warning signal reception function; wherein N2 is a positive integer greater than 1. The value of N2 can be configured by the network device or can be a predefined value.
[0182] In some implementations, the first condition includes: if the first terminal device fails to continuously detect the first channel (e.g., PDSCH, used to carry paging information of the first terminal device) within a third time period, then the first terminal device activates the early warning signal reception function. The duration of the third time period can be configured by the network device or can be a predefined value.
[0183] In some implementations, the first condition includes: if the first terminal device fails to continuously receive the second channel (e.g., PDSCH, used to carry paging information of the first terminal device) within a fourth time period, then the first terminal device activates the early warning signal reception function. The duration of the fourth time period can be configured by the network device or can be a predefined value.
[0184] In some implementations, the first condition includes: if the first terminal device fails to detect the first channel (such as PDCCH, used to schedule paging information of the first terminal device) for a number of times greater than or equal to N3 within the fifth time period, the first terminal device activates the early warning signal receiving function; wherein N3 is a positive integer greater than or equal to 1.
[0185] In some implementations, the value of N3 may be configured by the network device or may be a predefined value.
[0186] In some implementations, the duration of the fifth time period may be configured by the network device or may be a predefined value.
[0187] In some implementations, the first condition includes: if the first terminal device fails to receive the second channel a number of times within the sixth time period is greater than or equal to N4, the first terminal device activates the early warning signal receiving function; where N4 is a positive integer greater than or equal to 1.
[0188] In some implementations, the value of N4 may be configured by the network device or may be a predefined value.
[0189] In some implementations, the length of the sixth time period may be configured by the network device or may be a predefined value.
[0190] In some implementations, the first condition includes: if the first terminal device successfully detects the first channel (such as PDCCH, used to schedule paging information of the first terminal device), the first terminal device deactivates the early warning signal receiving function.
[0191] In some implementations, the first condition includes: if the first terminal device successfully detects the first channel N5 times in a row, the first terminal device deactivates the early warning signal receiving function, where N5 is a positive integer greater than 1.
[0192] In some implementations, the value of N5 may be configured by the network device or may be a predefined value.
[0193] In some implementations, the first condition includes: if the first terminal device successfully receives the second channel (such as PDSCH, used to carry paging information of the first terminal device), the first terminal device deactivates the early warning signal reception function.
[0194] In some implementations, the first condition includes: if the first terminal device successfully receives the second channel (such as PDSCH, used to carry the paging information of the first terminal device) for N6 consecutive times, the first terminal device deactivates the early warning signal receiving function, where N6 is a positive integer greater than 1.
[0195] In some implementations, the value of N6 may be configured by the network device or may be a predefined value.
[0196] In some implementations, the first condition includes: if the first terminal device successfully detects the first channel (such as PDCCH, used to schedule paging information of the first terminal device) continuously within the seventh time period, the first terminal device deactivates the early warning signal receiving function.
[0197] In some implementations, the duration of the seventh time period may be configured by the network device or may be a predefined value.
[0198] In some implementations, the first condition includes: if the first terminal device successfully continues to receive the second channel within an eighth time period, the first terminal device deactivates the early warning signal receiving function.
[0199] In some implementations, the duration of the eighth time period may be configured by the network device or may be a predefined value.
[0200] In some implementations, the first condition includes: if the first terminal device successfully detects the first channel a number of times within the ninth time period is greater than or equal to N7, the first terminal device deactivates the early warning signal receiving function, where N7 is a positive integer greater than or equal to 1.
[0201] In some implementations, the value of N7 may be configured by the network device or may be a predefined value.
[0202] In some implementations, the duration of the ninth time period may be configured by the network device or may be a predefined value.
[0203] In some implementations, the first condition includes: if the number of times the first terminal device successfully receives the second channel within the tenth time period is equal to or greater than N8, the first terminal device deactivates the early warning signal receiving function, where N8 is a positive integer greater than or equal to 1.
[0204] In some implementations, the value of N8 may be configured by the network device or may be a predefined value.
[0205] In some implementations, the duration of the tenth time period may be configured by the network device or may be a predefined value.
[0206] In some implementations, as shown in FIG7 , the wireless communication method provided in an embodiment of the present application may further include step S710, in which a first terminal device receives first configuration information sent by a network device. The first configuration information corresponds to a warning signal. In other words, the first configuration information is configuration information related to the warning signal. For example, the first configuration information is used to configure the warning signal. Step S710 may be performed before step S510.
[0207] In some implementations, the first configuration information may be sent by the network device via broadcasting. For example, the network device may broadcast cell information, where the cell information includes the first configuration information.
[0208] In some implementations, the first configuration information includes first information. The first information is used to indicate whether the current cell supports the transmission of the warning signal. In other words, the first information is used to indicate whether the current cell (or current base station) supports the function of transmitting the warning signal.
[0209] In some implementations, the first configuration information includes second information. The second information is used to configure time-frequency resources for the warning signal. In other words, the second information is used to configure the time-frequency resources for the first terminal device to monitor the warning signal.
[0210] In some implementations, the first configuration information includes fourth information. The fourth information indicates a threshold for activating or deactivating the early warning signal receiving function. The threshold may include, for example, one or more of the first to fourth thresholds mentioned above.
[0211] In some implementations, before executing step S510, the first terminal device may first determine whether the current cell supports transmission of the warning signal and / or the first terminal device may determine whether it has the ability to receive the warning signal. As an example, if the current cell supports transmission of the warning signal and the first terminal device has the ability to receive the warning signal, the terminal device executes step S510.
[0212] It should be noted that the warning signal mentioned in any of the above embodiments may also be referred to as or replaced by a warning message.
[0213] It should also be noted that the warning signal (or warning message) mentioned in any of the above embodiments can be received through monitoring. Therefore, the reception of the warning signal mentioned in any of the above embodiments can also be referred to as or replaced by the monitoring of the warning signal (or warning message). Accordingly, the function of receiving the warning signal (or warning message) can be referred to as or replaced by the function of monitoring the warning signal.
[0214] It should also be noted that the foregoing is illustrative of the introduction of new cell selection criteria (i.e., the first criteria mentioned above) and / or activation / deactivation functions for early warning signals. However, the embodiments of the present application can also be extended to other signals. Therefore, in some implementations, the early warning signal mentioned above can be replaced by a first type of signal. The first type of signal can be a warning signal or other similar signals that appear subsequently in the communication system.
[0215] It should also be noted that the aforementioned first criterion corresponding to the warning signal may refer to the association between the first criterion and the reception of the warning signal. Alternatively, the first criterion is used to receive the warning signal.
[0216] It should also be noted that the cell mentioned in any of the above embodiments may refer to a satellite cell or an NTN cell.
[0217] The method embodiment of the present application is described in detail above in conjunction with Figures 1 to 7 . The device embodiment of the present application is described in detail below in conjunction with Figures 8 to 11 . It should be understood that the description of the method embodiment corresponds to the description of the device embodiment. Therefore, for portions not described in detail, reference can be made to the above method embodiment.
[0218] Figure 8 is a schematic diagram of the structure of a terminal device provided in one embodiment of the present application. The terminal device 800 shown in Figure 8 may be the first terminal device mentioned in the embodiment of Figure 2. Terminal device 800 may include a processing module 810. Processing module 810 is configured to perform cell selection based on a first criterion; wherein the first criterion corresponds to a warning signal.
[0219] In some implementations, the first criterion includes: a second criterion for the terminal device to select a cell based on the signal reception power and / or signal reception quality of the cell; and a third criterion for the terminal device to select a cell based on location.
[0220] In some implementations, the second criterion is associated with one or more of the following: a first parameter used to indicate a threshold of a cell selection reception level value and / or a cell selection quality value; a second parameter used to determine the cell selection reception level value and / or the cell selection quality value.
[0221] In some implementations, the first parameter corresponds to the early warning signal.
[0222] In some implementations, the value of the first parameter is less than a threshold corresponding to a fourth criterion for cell selection, wherein the fourth criterion is not associated with the warning signal.
[0223] In some implementations, the value of the first parameter is less than 0.
[0224] In some implementations, one or more of the second parameters correspond to the early warning signal.
[0225] In some implementations, the second parameter includes a third parameter, where the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality, and the third parameter corresponds to the early warning signal.
[0226] In some implementations, the second parameter includes a fourth parameter, the fourth parameter is used to indicate an offset value of the third parameter, the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality, and the fourth parameter corresponds to the warning signal.
[0227] In some implementations, the cell selection reception level value and / or the cell selection quality value is determined based on the difference between the third parameter and the fourth parameter, and the value of the fourth parameter is greater than 0; or, the cell selection reception level value and / or the cell selection quality value is determined based on the sum of the third parameter and the fourth parameter, and the value of the fourth parameter is less than 0.
[0228] In some implementations, the third criterion is associated with one or more of: the location of the terminal device; the location of the cell ground reference point; the location of the satellite; the distance between the terminal device and the cell ground reference point; the distance between the terminal device and the satellite; the signal transmission time between the terminal device and the satellite; and the timing advance of the service link between the terminal device and the satellite.
[0229] In some implementations, the third criterion includes one or more of the following: if the distance between the terminal device and the ground reference point of the current cell is less than or equal to a first threshold, the terminal device satisfies the third criterion; if the distance between the terminal device and the satellite corresponding to the current cell is less than or equal to a second threshold, the terminal device satisfies the third criterion; if the signal transmission time between the terminal device and the satellite corresponding to the current cell is less than or equal to a third threshold, the terminal device satisfies the third criterion; if the timing advance of the service link between the terminal device and the current cell is less than or equal to a fourth threshold, the terminal device satisfies the third criterion.
[0230] In some implementations, the processing module 810 is used to: if the second criterion is met, the first terminal device determines that the current cell meets the residence condition or cell selection criterion; or, if both the second criterion and the third criterion are met, the first terminal device determines that the current cell meets the residence condition or cell selection criterion; or, if the second criterion is met or the third criterion is met, the first terminal device determines that the current cell meets the residence condition or cell selection criterion.
[0231] In some implementations, the terminal device 800 further includes: a communication module for receiving first configuration information sent by a network device, where the first configuration information corresponds to the early warning signal.
[0232] In some implementations, the first configuration information includes one or more of the following information: first information indicating whether the current cell supports the transmission of the warning signal; second information used to configure the time and frequency resources of the warning signal; and third information indicating a threshold used to determine whether the first criterion is met.
[0233] FIG9 is a schematic diagram of the structure of a terminal device provided in another embodiment of the present application. The terminal device 900 shown in FIG9 may be the first terminal device in the embodiment of FIG5 . The terminal device 900 includes a processing module 910 . The processing module 910 is used to activate or deactivate the function of receiving the warning signal.
[0234] In some implementations, the activation or deactivation of the early warning signal receiving function is determined based on a first condition, and the first condition is associated with one or more of the following information: the signal receiving power of the cell; the signal receiving quality of the cell; the detection result of the first channel, wherein the first channel is used to schedule the paging information of the first terminal device; the reception result of the second channel, wherein the second channel is used to carry the paging information of the first terminal device.
[0235] In some implementations, the first condition includes: if the signal reception power and / or signal reception quality of the cell is lower than or equal to a first threshold, the first terminal device activates the warning signal reception function; or, if the signal reception power and / or signal reception quality of the cell is higher than or equal to the first threshold, the first terminal device deactivates the warning signal reception function.
[0236] In some implementations, the first condition includes: if the signal reception power and / or signal reception quality of the cell is lower than or equal to a second threshold within a first time period, the first terminal device activates the early warning signal reception function; or, if the signal reception power and / or signal reception quality of the cell is higher than or equal to the second threshold within the first time period, the first terminal device deactivates the early warning signal reception function.
[0237] In some implementations, the first condition includes: if the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to a third threshold, the first terminal device activates the warning signal receiving function; or, if the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold, the first terminal device deactivates the warning signal receiving function.
[0238] In some implementations, the first condition includes: if the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to the third threshold within the second time period, the first terminal device activates the warning signal receiving function; or, if the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold within the second time period, the first terminal device deactivates the warning signal receiving function.
[0239] In some implementations, the first condition includes one or more of the following: if the first terminal device fails to detect the first channel, the first terminal device activates the receiving function of the early warning signal; if the first terminal device fails to detect the first channel for N1 consecutive times, the first terminal device activates the receiving function of the early warning signal, wherein N1 is a positive integer greater than 1; if the first terminal device fails to receive the second channel, the first terminal device activates the receiving function of the early warning signal; if the first terminal device fails to receive the second channel for N2 consecutive times, the first terminal device activates the receiving function of the early warning signal, wherein N2 is a positive integer greater than 1; if the first terminal device fails to receive the second channel for N2 consecutive times, the first terminal device activates the receiving function of the early warning signal, wherein N2 is a positive integer greater than 1; If the device fails to detect the first channel continuously within the third time period, the first terminal device activates the early warning signal receiving function; if the first terminal device fails to receive the second channel continuously within the fourth time period, the first terminal device activates the early warning signal receiving function; if the first terminal device fails to detect the first channel the number of times within the fifth time period is greater than or equal to N3, the first terminal device activates the early warning signal receiving function, where N3 is a positive integer greater than or equal to 1; if the first terminal device fails to receive the second channel the number of times within the sixth time period is greater than or equal to N4, the first terminal device activates the early warning signal receiving function, where N4 is a positive integer greater than or equal to 1.
[0240] In some implementations, the first condition includes one or more of the following: if the first terminal device successfully detects the first channel, the first terminal device deactivates the receiving function of the early warning signal; if the first terminal device successfully detects the first channel N5 times in a row, the first terminal device deactivates the receiving function of the early warning signal, wherein N5 is a positive integer greater than 1; if the first terminal device successfully receives the second channel N6 times in a row, the first terminal device deactivates the receiving function of the early warning signal; if the first terminal device successfully receives the second channel N6 times in a row, the first terminal device deactivates the receiving function of the early warning signal, wherein N6 is a positive integer greater than 1; if the first terminal device successfully receives the second channel N6 times in a row, the first terminal device deactivates the receiving function of the early warning signal If the device successfully detects the first channel continuously during the seventh time period, the first terminal device deactivates the receiving function of the early warning signal; if the first terminal device successfully receives the second channel continuously during the eighth time period, the first terminal device deactivates the receiving function of the early warning signal; if the first terminal device successfully detects the first channel the number of times during the ninth time period is greater than or equal to N7, the first terminal device deactivates the receiving function of the early warning signal, where N7 is a positive integer greater than or equal to 1; if the first terminal device successfully receives the second channel the number of times during the tenth time period is equal to or greater than N8, the first terminal device deactivates the receiving function of the early warning signal, where N8 is a positive integer greater than or equal to 1.
[0241] In some implementations, the terminal device 900 further includes: a communication module for receiving first configuration information sent by a network device, where the first configuration information corresponds to the early warning signal.
[0242] In some implementations, the first configuration information includes one or more of the following information: first information indicating whether the current cell supports the transmission of the early warning signal; second information used to configure the time and frequency resources of the early warning signal; and fourth information indicating the threshold used to activate or deactivate the receiving function of the early warning signal.
[0243] Figure 10 is a schematic diagram of the structure of a network device provided in an embodiment of the present application. The network device 1000 shown in Figure 10 may correspond to the network device mentioned in any of the aforementioned embodiments. The network device 1000 may include a communication module 1010. The communication module 1010 is configured to send first configuration information to a first terminal device, where the first configuration information corresponds to a warning signal.
[0244] In some implementations, the first configuration information includes one or more of the following information: first information indicating whether the current cell supports the transmission of the early warning signal; second information used to configure the time and frequency resources of the early warning signal; third information indicating a threshold for determining whether a first criterion is met, the first criterion corresponding to the early warning signal; fourth information indicating a threshold for activating or deactivating the receiving function of the early warning signal.
[0245] In some implementations, the first criterion includes: a second criterion for the terminal device to select a cell based on the signal reception power and / or signal reception quality of the cell; and a third criterion for the terminal device to select a cell based on location.
[0246] In some implementations, the second criterion is associated with one or more of the following: a first parameter used to indicate a threshold of a cell selection reception level value and / or a cell selection quality value; a second parameter used to determine the cell selection reception level value and / or the cell selection quality value.
[0247] In some implementations, the first parameter corresponds to the early warning signal.
[0248] In some implementations, the value of the first parameter is less than a threshold corresponding to a fourth criterion for cell selection, wherein the fourth criterion is not associated with the warning signal.
[0249] In some implementations, the value of the first parameter is less than 0.
[0250] In some implementations, one or more of the second parameters correspond to the early warning signal.
[0251] In some implementations, the second parameter includes a third parameter, where the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality, and the third parameter corresponds to the early warning signal.
[0252] In some implementations, the second parameter includes a fourth parameter, the fourth parameter is used to indicate an offset value of the third parameter, the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality, and the fourth parameter corresponds to the warning signal.
[0253] In some implementations, the cell selection reception level value and / or the cell selection quality value is determined based on the difference between the third parameter and the fourth parameter, and the value of the fourth parameter is greater than 0; or, the cell selection reception level value and / or the cell selection quality value is determined based on the sum of the third parameter and the fourth parameter, and the value of the fourth parameter is less than 0.
[0254] In some implementations, the third criterion is associated with one or more of: the location of the terminal device; the location of the cell ground reference point; the location of the satellite; the distance between the terminal device and the cell ground reference point; the distance between the terminal device and the satellite; the signal transmission time between the terminal device and the satellite; and the timing advance of the service link between the terminal device and the satellite.
[0255] In some implementations, the third criterion includes one or more of the following: if the distance between the terminal device and the ground reference point of the current cell is less than or equal to a first threshold, the terminal device satisfies the third criterion; if the distance between the terminal device and the satellite corresponding to the current cell is less than or equal to a second threshold, the terminal device satisfies the third criterion; if the signal transmission time between the terminal device and the satellite corresponding to the current cell is less than or equal to a third threshold, the terminal device satisfies the third criterion; if the timing advance of the service link between the terminal device and the current cell is less than or equal to a fourth threshold, the terminal device satisfies the third criterion.
[0256] In some implementations, if the second criterion is satisfied, the current cell satisfies the residency condition or cell selection criterion; or, if both the second criterion and the third criterion are satisfied, the current cell satisfies the residency condition or cell selection criterion; or, if the second criterion is satisfied or the third criterion is satisfied, the current cell satisfies the residency condition or cell selection criterion.
[0257] In some implementations, the activation or deactivation of the early warning signal receiving function is determined based on a first condition, and the first condition is associated with one or more of the following information: the signal receiving power of the cell; the signal receiving quality of the cell; the detection result of the first channel, wherein the first channel is used to schedule the paging information of the first terminal device; the reception result of the second channel, wherein the second channel is used to carry the paging information of the first terminal device.
[0258] In some implementations, the first condition includes: if the signal reception power and / or signal reception quality of the cell is lower than or equal to a first threshold, the first terminal device activates the warning signal reception function; or, if the signal reception power and / or signal reception quality of the cell is higher than or equal to the first threshold, the first terminal device deactivates the warning signal reception function.
[0259] In some implementations, the first condition includes: if the signal reception power and / or signal reception quality of the cell is lower than or equal to a second threshold within a first time period, the first terminal device activates the early warning signal reception function; or, if the signal reception power and / or signal reception quality of the cell is higher than or equal to the second threshold within the first time period, the first terminal device deactivates the early warning signal reception function.
[0260] In some implementations, the first condition includes: if the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to a third threshold, the first terminal device activates the warning signal receiving function; or, if the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold, the first terminal device deactivates the warning signal receiving function.
[0261] In some implementations, the first condition includes: if the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to the third threshold within the second time period, the first terminal device activates the warning signal receiving function; or, if the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold within the second time period, the first terminal device deactivates the warning signal receiving function.
[0262] In some implementations, the first condition includes one or more of the following: if the first terminal device fails to detect the first channel, the first terminal device activates the receiving function of the early warning signal; if the first terminal device fails to detect the first channel for N1 consecutive times, the first terminal device activates the receiving function of the early warning signal, wherein N1 is a positive integer greater than 1; if the first terminal device fails to receive the second channel, the first terminal device activates the receiving function of the early warning signal; if the first terminal device fails to receive the second channel for N2 consecutive times, the first terminal device activates the receiving function of the early warning signal, wherein N2 is a positive integer greater than 1; if the first terminal device fails to receive the second channel for N2 consecutive times, the first terminal device activates the receiving function of the early warning signal, wherein N2 is a positive integer greater than 1; If the device fails to detect the first channel continuously within the third time period, the first terminal device activates the early warning signal receiving function; if the first terminal device fails to receive the second channel continuously within the fourth time period, the first terminal device activates the early warning signal receiving function; if the first terminal device fails to detect the first channel the number of times within the fifth time period is greater than or equal to N3, the first terminal device activates the early warning signal receiving function, where N3 is a positive integer greater than or equal to 1; if the first terminal device fails to receive the second channel the number of times within the sixth time period is greater than or equal to N4, the first terminal device activates the early warning signal receiving function, where N4 is a positive integer greater than or equal to 1.
[0263] In some implementations, the first condition includes one or more of the following: if the first terminal device successfully detects the first channel, the first terminal device deactivates the receiving function of the early warning signal; if the first terminal device successfully detects the first channel N5 times in a row, the first terminal device deactivates the receiving function of the early warning signal, wherein N5 is a positive integer greater than 1; if the first terminal device successfully receives the second channel N6 times in a row, the first terminal device deactivates the receiving function of the early warning signal; if the first terminal device successfully receives the second channel N6 times in a row, the first terminal device deactivates the receiving function of the early warning signal, wherein N6 is a positive integer greater than 1; if the first terminal device successfully receives the second channel N6 times in a row, the first terminal device deactivates the receiving function of the early warning signal If the device successfully detects the first channel continuously during the seventh time period, the first terminal device deactivates the receiving function of the early warning signal; if the first terminal device successfully receives the second channel continuously during the eighth time period, the first terminal device deactivates the receiving function of the early warning signal; if the first terminal device successfully detects the first channel the number of times during the ninth time period is greater than or equal to N7, the first terminal device deactivates the receiving function of the early warning signal, where N7 is a positive integer greater than or equal to 1; if the first terminal device successfully receives the second channel the number of times during the tenth time period is equal to or greater than N8, the first terminal device deactivates the receiving function of the early warning signal, where N8 is a positive integer greater than or equal to 1.
[0264] FIG11 is a schematic block diagram of an apparatus according to an embodiment of the present application. The dashed lines in FIG11 indicate that the unit or module is optional. Apparatus 1100 may be used to implement the method described in the above method embodiment. Apparatus 1100 may be a chip, a terminal device, or a network device.
[0265] The device 1100 may include one or more processors 1110. The processor 1110 may support the device 1100 to implement the method described in the method embodiment above. The processor 1110 may be a general-purpose processor or a special-purpose processor. For example, the processor may be a central processing unit (CPU). Alternatively, the processor may be another general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field programmable gate array (FPGA) or other programmable logic device, discrete gate or transistor logic device, discrete hardware component, etc. The general-purpose processor may be a microprocessor or the processor may be any conventional processor, etc.
[0266] The apparatus 1100 may further include one or more memories 1120. The memories 1120 may store programs that can be executed by the processor 1110, causing the apparatus 1100 to perform the methods described in the above method embodiments. The memories 1120 may be independent of the processor 1110 or integrated into the processor 1110.
[0267] The apparatus 1100 may further include a transceiver 1130. The processor 1110 may communicate with other devices or chips via the transceiver 1130. For example, the processor 1110 may transmit and receive data with other devices or chips via the transceiver 1130.
[0268] The present application also provides a computer-readable storage medium for storing a program. The computer-readable storage medium can be applied to a terminal device or network device provided in the present application, and the program enables a computer to execute the method performed by the terminal device or network device in each embodiment of the present application.
[0269] The present application also provides a computer program product. The computer program product includes a program. The computer program product can be applied to a terminal device or network device provided in the present application, and the program causes a computer to execute the method performed by the terminal device or network device in each embodiment of the present application.
[0270] The present application also provides a computer program that can be applied to a terminal device or network device provided in the present application, and enables a computer to execute the method performed by the terminal device or network device in each embodiment of the present application.
[0271] It should be understood that in the embodiments of the present application, "B corresponding to A" means that B is associated with A and B can be determined based on A. However, it should also be understood that determining B based on A does not mean determining B based solely on A, but B can also be determined based on A and / or other information.
[0272] It should be understood that the term "and / or" in this document simply describes a relationship between related objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A exists alone, A and B exist simultaneously, or B exists alone. Furthermore, the character " / " in this document generally indicates that the related objects are in an "or" relationship.
[0273] It should be understood that in the various embodiments of the present application, the size of the serial numbers of the above-mentioned processes does not mean the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of the present application.
[0274] In the several embodiments provided in this application, it should be understood that the disclosed systems, devices and methods can be implemented in other ways. For example, the device embodiments described above are merely schematic. For example, the division of the units is merely a logical function division. In actual implementation, there may be other division methods, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms.
[0275] The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected to achieve the purpose of this embodiment according to actual needs.
[0276] In addition, each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
[0277] In the above embodiments, it can be implemented in whole or in part by software, hardware, firmware or any combination thereof. When implemented using software, it can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, the process or function described in the embodiment of the present application is generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer instructions can be stored in a computer-readable storage medium or transmitted from one computer-readable storage medium to another computer-readable storage medium. For example, the computer instructions can be transmitted from one website, computer, server or data center to another website, computer, server or data center via a wired (e.g., coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (e.g., infrared, wireless, microwave, etc.) method. The computer-readable storage medium can be any available medium that can be read by a computer or a data storage device such as a server or data center that includes one or more available media integrated therein. The available medium may be a magnetic medium (eg, a floppy disk, a hard disk, a magnetic tape), an optical medium (eg, a digital versatile disc (DVD)), or a semiconductor medium (eg, a solid state disk (SSD)).
[0278] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims.
Claims
1. A wireless communication method, characterized in that: include: The first terminal device selects a cell according to a first criterion; wherein the first criterion corresponds to the early warning signal.
2. The method according to claim 1, characterized in that The first criteria include: The second criterion is used for the terminal device to select a cell based on the signal reception power and / or signal reception quality of the cell; The third criterion is used by the terminal device to select a cell based on location.
3. The method according to claim 2, characterized in that The second criterion is associated with one or more of the following: A first parameter is used to indicate a threshold of a cell selection reception level value and / or a cell selection quality value; The second parameter is used to determine the cell selection reception level value and / or the cell selection quality value.
4. The method according to claim 3, characterized in that The first parameter corresponds to the early warning signal.
5. The method according to claim 4, characterized in that The value of the first parameter is smaller than a threshold corresponding to a fourth criterion, wherein the fourth criterion is used for cell selection and the fourth criterion is not associated with the warning signal.
6. The method according to any one of claims 3 to 5, characterized in that The value of the first parameter is less than 0.
7. The method according to any one of claims 3 to 6, characterized in that One or more parameters of the second parameters correspond to the early warning signal.
8. The method according to claim 7, characterized in that The second parameter includes a third parameter, where the third parameter is used to indicate the minimum requirement of the cell for signal reception power and / or signal reception quality, and the third parameter corresponds to the early warning signal.
9. The method according to claim 7, characterized in that: The second parameter includes a fourth parameter, where the fourth parameter is used to indicate an offset value of the third parameter, where the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality, and the fourth parameter corresponds to the warning signal.
10. The method according to claim 9, characterized in that: The cell selection reception level value and / or the cell selection quality value is determined based on a difference between the third parameter and the fourth parameter, and the value of the fourth parameter is greater than 0; or, The cell selection reception level value and / or the cell selection quality value is determined based on the sum of the third parameter and the fourth parameter, and the value of the fourth parameter is less than 0.
11. The method according to any one of claims 2 to 10, characterized in that The third criterion is associated with one or more of the following: The location of the terminal equipment; The location of the cell ground reference point; The location of the satellite; The distance between the terminal equipment and the ground reference point of the cell; The distance between the terminal device and the satellite; Signal transmission time between terminal equipment and satellite; The timing advance of the service link between the terminal device and the satellite.
12. The method according to claim 11, characterized in that The third criterion includes one or more of the following: If the distance between the terminal device and the ground reference point of the current cell is less than or equal to the first threshold, the terminal device meets the third criterion; If the distance between the terminal device and the satellite corresponding to the current cell is less than or equal to the second threshold, the terminal device meets the third criterion; If the signal transmission time between the terminal device and the satellite corresponding to the current cell is less than or equal to the third threshold, the terminal device meets the third criterion; If the timing advance of the service link between the terminal device and the current cell is less than or equal to a fourth threshold, the terminal device meets the third criterion.
13. The method according to any one of claims 2 to 12, characterized in that The first terminal device performs cell selection according to a first criterion, including: If the second criterion is satisfied, the first terminal device determines that the current cell satisfies the stay condition or the cell selection criterion; or, If both the second criterion and the third criterion are satisfied, the first terminal device determines that the current cell satisfies the stay condition or the cell selection criterion; or, If the second criterion is satisfied or the third criterion is satisfied, the first terminal device determines that the current cell satisfies the stay condition or the cell selection criterion.
14. The method according to any one of claims 1 to 13, characterized in that The method further comprises: The first terminal device receives first configuration information sent by a network device, where the first configuration information corresponds to the early warning signal.
15. The method according to claim 14, characterized in that The first configuration information includes one or more of the following information: First information, indicating whether the current cell supports the transmission of the warning signal; The second information is used to configure the time and frequency resources of the warning signal; The third information indicates a threshold used to determine whether the first criterion is met.
16. A wireless communication method, characterized in that: include: The first terminal device activates or deactivates the receiving function of the early warning signal.
17. The method according to claim 16, characterized in that The activation or deactivation of the receiving function of the warning signal is determined based on a first condition, wherein the first condition is associated with one or more of the following information: The signal receiving power of the cell; The signal reception quality of the cell; a detection result of a first channel, wherein the first channel is used to schedule paging information of the first terminal device; The reception result of the second channel, wherein the second channel is used to carry the paging information of the first terminal device.
18. The method according to claim 17, characterized in that The first condition includes: If the signal reception power and / or signal reception quality of the cell is lower than or equal to the first threshold, the first terminal device activates the receiving function of the early warning signal; or, If the signal reception power and / or signal reception quality of the cell is higher than or equal to the first threshold, the first terminal device deactivates the function of receiving the early warning signal.
19. The method according to claim 17, characterized in that The first condition includes: If the signal reception power and / or signal reception quality of the cell is lower than or equal to the second threshold within the first time period, the first terminal device activates the receiving function of the early warning signal; or, If the signal reception power and / or signal reception quality of the cell is higher than or equal to the second threshold within the first time period, the first terminal device deactivates the function of receiving the early warning signal.
20. The method according to claim 17, characterized in that The first condition includes: If the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to a third threshold, the first terminal device activates the warning signal receiving function; or, If the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold, the first terminal device deactivates the warning signal receiving function.
21. The method according to claim 17, characterized in that The first condition includes: If the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to the third threshold within the second time period, the first terminal device activates the warning signal receiving function; or, If the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold during the second time period, the first terminal device deactivates the warning signal receiving function.
22. The method according to claim 17, characterized in that The first condition includes one or more of the following: If the first terminal device fails to detect the first channel, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to detect the first channel for N1 consecutive times, the first terminal device activates the receiving function of the early warning signal, where N1 is a positive integer greater than 1; If the first terminal device fails to receive the second channel, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to receive the second channel for N2 consecutive times, the first terminal device activates the receiving function of the early warning signal, where N2 is a positive integer greater than 1; If the first terminal device fails to continuously detect the first channel within a third time period, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to continuously receive the second channel within a fourth time period, the first terminal device activates a receiving function of the early warning signal; If the number of times that the first terminal device fails to detect the first channel within the fifth time period is greater than or equal to N3, the first terminal device activates the receiving function of the early warning signal, where N3 is a positive integer greater than or equal to 1; If the number of times that the first terminal device fails to receive the second channel within the sixth time period is greater than or equal to N4, the first terminal device activates the receiving function of the early warning signal, where N4 is a positive integer greater than or equal to 1.
23. The method according to claim 17, characterized in that The first condition includes one or more of the following: If the first terminal device detects the first channel successfully, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully detects the first channel for N5 consecutive times, the first terminal device deactivates the receiving function of the early warning signal, where N5 is a positive integer greater than 1; If the first terminal device successfully receives the second channel, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully receives the second channel for N6 consecutive times, the first terminal device deactivates the receiving function of the early warning signal, where N6 is a positive integer greater than 1; If the first terminal device continues to successfully detect the first channel within the seventh time period, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully continues to receive the second channel within the eighth time period, the first terminal device deactivates the receiving function of the early warning signal; If the number of times that the first terminal device successfully detects the first channel in the ninth time period is greater than or equal to N7, the first terminal device deactivates the function of receiving the early warning signal, where N7 is a positive integer greater than or equal to 1; If the first terminal device successfully receives the second channel the number of times within the tenth time period is greater than or equal to N8, the first terminal device deactivates the receiving function of the early warning signal, where N8 is a positive integer greater than or equal to 1.
24. The method according to any one of claims 16 to 23, characterized in that The method further comprises: The first terminal device receives first configuration information sent by a network device, where the first configuration information corresponds to the early warning signal.
25. The method according to claim 24, characterized in that The first configuration information includes one or more of the following information: First information, indicating whether the current cell supports the transmission of the warning signal; The second information is used to configure the time and frequency resources of the warning signal; The fourth information indicates a threshold for activating or deactivating the receiving function of the early warning signal.
26. A wireless communication method, characterized in that: include: The network device sends first configuration information to the first terminal device, where the first configuration information corresponds to the early warning signal.
27. The method according to claim 26, characterized in that The first configuration information includes one or more of the following information: First information, indicating whether the current cell supports the transmission of the warning signal; The second information is used to configure the time and frequency resources of the warning signal; third information indicating a threshold for determining whether a first criterion is satisfied, the first criterion corresponding to the warning signal; The fourth information indicates a threshold for activating or deactivating the receiving function of the early warning signal.
28. The method according to claim 27, characterized in that The first criteria include: The second criterion is used for the terminal device to select a cell based on the signal reception power and / or signal reception quality of the cell; The third criterion is used by the terminal device to select a cell based on location.
29. The method according to claim 28, characterized in that The second criterion is associated with one or more of the following: A first parameter is used to indicate a threshold of a cell selection reception level value and / or a cell selection quality value; The second parameter is used to determine the cell selection reception level value and / or the cell selection quality value.
30. The method according to claim 29, characterized in that The first parameter corresponds to the early warning signal.
31. The method according to claim 30, characterized in that The value of the first parameter is smaller than a threshold corresponding to a fourth criterion, wherein the fourth criterion is used for cell selection and the fourth criterion is not associated with the warning signal.
32. The method according to any one of claims 29 to 31, characterized in that The value of the first parameter is less than 0.
33. The method according to any one of claims 29 to 32, characterized in that One or more parameters of the second parameters correspond to the early warning signal.
34. The method according to claim 33, characterized in that The second parameter includes a third parameter, where the third parameter is used to indicate the minimum requirement of the cell for signal reception power and / or signal reception quality, and the third parameter corresponds to the early warning signal.
35. The method according to claim 33, characterized in that The second parameter includes a fourth parameter, where the fourth parameter is used to indicate an offset value of the third parameter, where the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality, and the fourth parameter corresponds to the warning signal.
36. The method according to claim 35, characterized in that: The cell selection reception level value and / or the cell selection quality value is determined based on a difference between the third parameter and the fourth parameter, and the value of the fourth parameter is greater than 0; or, The cell selection reception level value and / or the cell selection quality value is determined based on the sum of the third parameter and the fourth parameter, and the value of the fourth parameter is less than 0.
37. The method according to any one of claims 28 to 36, characterized in that The third criterion is associated with one or more of the following: The location of the terminal equipment; The location of the cell ground reference point; The location of the satellite; The distance between the terminal equipment and the ground reference point of the cell; The distance between the terminal device and the satellite; Signal transmission time between terminal equipment and satellite; The timing advance of the service link between the terminal device and the satellite.
38. The method according to claim 37, characterized in that The third criterion includes one or more of the following: If the distance between the terminal device and the ground reference point of the current cell is less than or equal to the first threshold, the terminal device meets the third criterion; If the distance between the terminal device and the satellite corresponding to the current cell is less than or equal to the second threshold, the terminal device meets the third criterion; If the signal transmission time between the terminal device and the satellite corresponding to the current cell is less than or equal to the third threshold, the terminal device meets the third criterion; If the timing advance of the service link between the terminal device and the current cell is less than or equal to a fourth threshold, the terminal device meets the third criterion.
39. The method according to any one of claims 28 to 38, characterized in that: If the second criterion is satisfied, the current cell satisfies the camping condition or the cell selection criterion; or, If both the second criterion and the third criterion are satisfied, the current cell satisfies the stay condition or the cell selection criterion; or, If the second criterion is satisfied or the third criterion is satisfied, the current cell satisfies the camping condition or the cell selection criterion.
40. The method according to any one of claims 26 to 39, characterized in that The activation or deactivation of the receiving function of the warning signal is determined based on a first condition, wherein the first condition is associated with one or more of the following information: The signal receiving power of the cell; The signal reception quality of the cell; a detection result of a first channel, wherein the first channel is used to schedule paging information of the first terminal device; The reception result of the second channel, wherein the second channel is used to carry the paging information of the first terminal device.
41. The method according to claim 40, characterized in that The first condition includes: If the signal reception power and / or signal reception quality of the cell is lower than or equal to the first threshold, the first terminal device activates the receiving function of the early warning signal; or, If the signal reception power and / or signal reception quality of the cell is higher than or equal to the first threshold, the first terminal device deactivates the function of receiving the early warning signal.
42. The method according to claim 40, characterized in that The first condition includes: If the signal reception power and / or signal reception quality of the cell is lower than or equal to the second threshold within the first time period, the first terminal device activates the receiving function of the early warning signal; or, If the signal reception power and / or signal reception quality of the cell is higher than or equal to the second threshold within the first time period, the first terminal device deactivates the function of receiving the early warning signal.
43. The method according to claim 40, characterized in that The first condition includes: If the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to a third threshold, the first terminal device activates the warning signal receiving function; or, If the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold, the first terminal device deactivates the warning signal receiving function.
44. The method according to claim 40, characterized in that The first condition includes: If the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to the third threshold within the second time period, the first terminal device activates the warning signal receiving function; or, If the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold during the second time period, the first terminal device deactivates the warning signal receiving function.
45. The method according to claim 40, characterized in that The first condition includes one or more of the following: If the first terminal device fails to detect the first channel, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to detect the first channel for N1 consecutive times, the first terminal device activates the receiving function of the early warning signal, where N1 is a positive integer greater than 1; If the first terminal device fails to receive the second channel, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to receive the second channel for N2 consecutive times, the first terminal device activates the receiving function of the early warning signal, where N2 is a positive integer greater than 1; If the first terminal device fails to continuously detect the first channel within a third time period, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to continuously receive the second channel within a fourth time period, the first terminal device activates a receiving function of the early warning signal; If the number of times that the first terminal device fails to detect the first channel within the fifth time period is greater than or equal to N3, the first terminal device activates the receiving function of the early warning signal, where N3 is a positive integer greater than or equal to 1; If the number of times that the first terminal device fails to receive the second channel within the sixth time period is greater than or equal to N4, the first terminal device activates the receiving function of the early warning signal, where N4 is a positive integer greater than or equal to 1.
46. The method according to claim 40, characterized in that The first condition includes one or more of the following: If the first terminal device detects the first channel successfully, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully detects the first channel for N5 consecutive times, the first terminal device deactivates the receiving function of the early warning signal, where N5 is a positive integer greater than 1; If the first terminal device successfully receives the second channel, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully receives the second channel for N6 consecutive times, the first terminal device deactivates the receiving function of the early warning signal, where N6 is a positive integer greater than 1; If the first terminal device continues to successfully detect the first channel within the seventh time period, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully continues to receive the second channel within the eighth time period, the first terminal device deactivates the receiving function of the early warning signal; If the number of times that the first terminal device successfully detects the first channel in the ninth time period is greater than or equal to N7, the first terminal device deactivates the receiving function of the early warning signal, where N7 is a positive integer greater than or equal to 1; If the number of times that the first terminal device successfully receives the second channel within the tenth time period is equal to or greater than N8, the first terminal device deactivates the receiving function of the early warning signal, where N8 is a positive integer greater than or equal to 1.
47. A terminal device, characterized in that: The terminal device is a first terminal device, and the terminal device includes: A processing module is used to select a cell according to a first criterion; wherein the first criterion corresponds to a warning signal.
48. The terminal device according to claim 47, characterized in that: The first criteria include: The second criterion is used for the terminal device to select a cell based on the signal reception power and / or signal reception quality of the cell; The third criterion is used by the terminal device to select a cell based on location.
49. The terminal device according to claim 48, characterized in that: The second criterion is associated with one or more of the following: A first parameter is used to indicate a threshold of a cell selection reception level value and / or a cell selection quality value; The second parameter is used to determine the cell selection reception level value and / or the cell selection quality value.
50. The terminal device according to claim 49, characterized in that: The first parameter corresponds to the early warning signal.
51. The terminal device according to claim 50, characterized in that: The value of the first parameter is smaller than a threshold corresponding to a fourth criterion, wherein the fourth criterion is used for cell selection and the fourth criterion is not associated with the warning signal.
52. The terminal device according to any one of claims 49 to 51, characterized in that: The value of the first parameter is less than 0.
53. The terminal device according to any one of claims 49 to 52, characterized in that: One or more parameters of the second parameters correspond to the early warning signal.
54. The terminal device according to claim 53, characterized in that: The second parameter includes a third parameter, where the third parameter is used to indicate the minimum requirement of the cell for signal reception power and / or signal reception quality, and the third parameter corresponds to the early warning signal.
55. The terminal device according to claim 53, characterized in that: The second parameter includes a fourth parameter, where the fourth parameter is used to indicate an offset value of the third parameter, where the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality, and the fourth parameter corresponds to the warning signal.
56. The terminal device according to claim 55, characterized in that: The cell selection reception level value and / or the cell selection quality value is determined based on a difference between the third parameter and the fourth parameter, and the value of the fourth parameter is greater than 0; or, The cell selection reception level value and / or the cell selection quality value is determined based on the sum of the third parameter and the fourth parameter, and the value of the fourth parameter is less than 0.
57. The terminal device according to any one of claims 48 to 56, characterized in that: The third criterion is associated with one or more of the following: The location of the terminal equipment; The location of the cell ground reference point; The location of the satellite; The distance between the terminal equipment and the ground reference point of the cell; The distance between the terminal device and the satellite; Signal transmission time between terminal equipment and satellite; The timing advance of the service link between the terminal device and the satellite.
58. The terminal device according to claim 57, characterized in that: The third criterion includes one or more of the following: If the distance between the terminal device and the ground reference point of the current cell is less than or equal to the first threshold, the terminal device meets the third criterion; If the distance between the terminal device and the satellite corresponding to the current cell is less than or equal to the second threshold, the terminal device meets the third criterion; If the signal transmission time between the terminal device and the satellite corresponding to the current cell is less than or equal to the third threshold, the terminal device meets the third criterion; If the timing advance of the service link between the terminal device and the current cell is less than or equal to a fourth threshold, the terminal device meets the third criterion.
59. The terminal device according to any one of claims 48 to 58, characterized in that: The processing module is used for: If the second criterion is satisfied, the first terminal device determines that the current cell satisfies the stay condition or the cell selection criterion; or, If both the second criterion and the third criterion are satisfied, the first terminal device determines that the current cell satisfies the stay condition or the cell selection criterion; or, If the second criterion is satisfied or the third criterion is satisfied, the first terminal device determines that the current cell satisfies the stay condition or the cell selection criterion.
60. The terminal device according to any one of claims 47 to 59, characterized in that: The terminal device further includes: The communication module is used to receive first configuration information sent by the network device, where the first configuration information corresponds to the early warning signal.
61. The terminal device according to claim 60, characterized in that: The first configuration information includes one or more of the following information: First information, indicating whether the current cell supports the transmission of the warning signal; The second information is used to configure the time and frequency resources of the warning signal; The third information indicates a threshold used to determine whether the first criterion is met.
62. A terminal device, characterized in that: The terminal device is a first terminal device, and the terminal device includes: The processing module is used to activate or deactivate the receiving function of the early warning signal.
63. The terminal device according to claim 62, characterized in that: The activation or deactivation of the receiving function of the warning signal is determined based on a first condition, wherein the first condition is associated with one or more of the following information: The signal receiving power of the cell; The signal reception quality of the cell; a detection result of a first channel, wherein the first channel is used to schedule paging information of the first terminal device; The reception result of the second channel, wherein the second channel is used to carry the paging information of the first terminal device.
64. The terminal device according to claim 63, characterized in that: The first condition includes: If the signal reception power and / or signal reception quality of the cell is lower than or equal to the first threshold, the first terminal device activates the receiving function of the early warning signal; or, If the signal reception power and / or signal reception quality of the cell is higher than or equal to the first threshold, the first terminal device deactivates the function of receiving the early warning signal.
65. The terminal device according to claim 63, characterized in that: The first condition includes: If the signal reception power and / or signal reception quality of the cell is lower than or equal to the second threshold within the first time period, the first terminal The device activates the receiving function of the warning signal; or, If the signal reception power and / or signal reception quality of the cell is higher than or equal to the second threshold within the first time period, the first terminal device deactivates the function of receiving the early warning signal.
66. The terminal device according to claim 63, characterized in that: The first condition includes: If the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to a third threshold, the first terminal device activates the warning signal receiving function; or, If the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold, the first terminal device deactivates the warning signal receiving function.
67. The terminal device according to claim 63, characterized in that: The first condition includes: If the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to the third threshold within the second time period, the first terminal device activates the warning signal receiving function; or, If the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold during the second time period, the first terminal device deactivates the warning signal receiving function.
68. The terminal device according to claim 63, characterized in that: The first condition includes one or more of the following: If the first terminal device fails to detect the first channel, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to detect the first channel for N1 consecutive times, the first terminal device activates the receiving function of the early warning signal, where N1 is a positive integer greater than 1; If the first terminal device fails to receive the second channel, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to receive the second channel for N2 consecutive times, the first terminal device activates the receiving function of the early warning signal, where N2 is a positive integer greater than 1; If the first terminal device fails to continuously detect the first channel within a third time period, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to continuously receive the second channel within a fourth time period, the first terminal device activates a receiving function of the early warning signal; If the number of times that the first terminal device fails to detect the first channel within the fifth time period is greater than or equal to N3, the first terminal device activates the receiving function of the early warning signal, where N3 is a positive integer greater than or equal to 1; If the number of times that the first terminal device fails to receive the second channel within the sixth time period is greater than or equal to N4, the first terminal device activates the receiving function of the early warning signal, where N4 is a positive integer greater than or equal to 1.
69. The terminal device according to claim 63, characterized in that: The first condition includes one or more of the following: If the first terminal device detects the first channel successfully, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully detects the first channel for N5 consecutive times, the first terminal device deactivates the receiving function of the early warning signal, where N5 is a positive integer greater than 1; If the first terminal device successfully receives the second channel, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully receives the second channel for N6 consecutive times, the first terminal device deactivates the receiving function of the early warning signal, where N6 is a positive integer greater than 1; If the first terminal device continues to successfully detect the first channel within the seventh time period, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully continues to receive the second channel within the eighth time period, the first terminal device deactivates the receiving function of the early warning signal; If the number of times that the first terminal device successfully detects the first channel in the ninth time period is greater than or equal to N7, the first terminal device deactivates the receiving function of the early warning signal, where N7 is a positive integer greater than or equal to 1; If the number of times that the first terminal device successfully receives the second channel within the tenth time period is equal to or greater than N8, the first terminal device deactivates the receiving function of the early warning signal, where N8 is a positive integer greater than or equal to 1.
70. The terminal device according to any one of claims 62 to 69, characterized in that: The terminal device further includes: The communication module is used to receive first configuration information sent by the network device, where the first configuration information corresponds to the early warning signal.
71. The terminal device according to claim 70, characterized in that: The first configuration information includes one or more of the following information: First information, indicating whether the current cell supports the transmission of the warning signal; The second information is used to configure the time and frequency resources of the warning signal; The fourth information indicates a threshold for activating or deactivating the receiving function of the early warning signal.
72. A network device, characterized in that: The network equipment includes: The communication module is used to send first configuration information to the first terminal device, where the first configuration information corresponds to the early warning signal.
73. The network device according to claim 72, characterized in that The first configuration information includes one or more of the following information: First information, indicating whether the current cell supports the transmission of the warning signal; The second information is used to configure the time and frequency resources of the warning signal; third information indicating a threshold for determining whether a first criterion is satisfied, the first criterion corresponding to the warning signal; The fourth information indicates a threshold for activating or deactivating the receiving function of the early warning signal.
74. The network device according to claim 73, characterized in that The first criteria include: The second criterion is used for the terminal device to select a cell based on the signal reception power and / or signal reception quality of the cell; The third criterion is used by the terminal device to select a cell based on location.
75. The network device according to claim 74, characterized in that The second criterion is associated with one or more of the following: A first parameter is used to indicate a threshold of a cell selection reception level value and / or a cell selection quality value; The second parameter is used to determine the cell selection reception level value and / or the cell selection quality value.
76. The network device according to claim 75, characterized in that The first parameter corresponds to the early warning signal.
77. The network device according to claim 76, characterized in that The value of the first parameter is smaller than a threshold corresponding to a fourth criterion, wherein the fourth criterion is used for cell selection and the fourth criterion is not associated with the warning signal.
78. The network device according to any one of claims 75 to 77, characterized in that: The value of the first parameter is less than 0.
79. The network device according to any one of claims 57 to 78, characterized in that: One or more parameters of the second parameters correspond to the early warning signal.
80. The network device according to claim 79, characterized in that The second parameter includes a third parameter, where the third parameter is used to indicate the minimum requirement of the cell for signal reception power and / or signal reception quality, and the third parameter corresponds to the early warning signal.
81. The network device according to claim 79, characterized in that: The second parameter includes a fourth parameter, where the fourth parameter is used to indicate an offset value of the third parameter, where the third parameter is used to indicate the cell's minimum requirement for signal reception power and / or signal reception quality, and the fourth parameter corresponds to the warning signal.
82. The network device according to claim 81, characterized in that: The cell selection reception level value and / or the cell selection quality value is determined based on a difference between the third parameter and the fourth parameter, and the value of the fourth parameter is greater than 0; or, The cell selection reception level value and / or the cell selection quality value is determined based on the sum of the third parameter and the fourth parameter, and the value of the fourth parameter is less than 0.
83. The network device according to any one of claims 74 to 82, characterized in that: The third criterion is associated with one or more of the following: The location of the terminal equipment; The location of the cell ground reference point; The location of the satellite; The distance between the terminal equipment and the ground reference point of the cell; The distance between the terminal device and the satellite; Signal transmission time between terminal equipment and satellite; The timing advance of the service link between the terminal device and the satellite.
84. The network device according to claim 83, characterized in that The third criterion includes one or more of the following: If the distance between the terminal device and the ground reference point of the current cell is less than or equal to the first threshold, the terminal device meets the third criterion; If the distance between the terminal device and the satellite corresponding to the current cell is less than or equal to the second threshold, the terminal device meets the third criterion; If the signal transmission time between the terminal device and the satellite corresponding to the current cell is less than or equal to the third threshold, the terminal device meets the third criterion; If the timing advance of the service link between the terminal device and the current cell is less than or equal to a fourth threshold, the terminal device meets the third criterion.
85. The network device according to any one of claims 74 to 84, characterized in that: If the second criterion is satisfied, the current cell satisfies the camping condition or the cell selection criterion; or, If both the second criterion and the third criterion are satisfied, the current cell satisfies the stay condition or the cell selection criterion; or, If the second criterion is satisfied or the third criterion is satisfied, the current cell satisfies the camping condition or the cell selection criterion.
86. The network device according to any one of claims 72 to 85, characterized in that: The activation or deactivation of the receiving function of the warning signal is determined based on a first condition, wherein the first condition is associated with one or more of the following information: The signal receiving power of the cell; The signal reception quality of the cell; a detection result of a first channel, wherein the first channel is used to schedule paging information of the first terminal device; The reception result of the second channel, wherein the second channel is used to carry the paging information of the first terminal device.
87. The network device according to claim 86, characterized in that The first condition includes: If the signal reception power and / or signal reception quality of the cell is lower than or equal to the first threshold, the first terminal device activates the receiving function of the early warning signal; or, If the signal reception power and / or signal reception quality of the cell is higher than or equal to the first threshold, the first terminal device deactivates the function of receiving the early warning signal.
88. The network device according to claim 86, characterized in that The first condition includes: If the signal reception power and / or signal reception quality of the cell is lower than or equal to the second threshold within the first time period, the first terminal device activates the receiving function of the early warning signal; or, If the signal reception power and / or signal reception quality of the cell is higher than or equal to the second threshold within the first time period, the first terminal device deactivates the function of receiving the early warning signal.
89. The network device according to claim 86, characterized in that The first condition includes: If the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to a third threshold, the first terminal device activates the warning signal receiving function; or, If the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold, the first terminal device deactivates the warning signal receiving function.
90. The network device according to claim 86, characterized in that The first condition includes: If the warning signal receiving function of the first terminal device is in a deactivated state, and the signal receiving power and / or signal receiving quality of the cell is lower than or equal to the third threshold within the second time period, the first terminal device activates the warning signal receiving function; or, If the warning signal receiving function of the first terminal device is in an activated state, and the signal receiving power and / or signal receiving quality of the cell is higher than or equal to the fourth threshold during the second time period, the first terminal device deactivates the warning signal receiving function.
91. The network device according to claim 86, characterized in that The first condition includes one or more of the following: If the first terminal device fails to detect the first channel, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to detect the first channel for N1 consecutive times, the first terminal device activates the receiving function of the early warning signal, where N1 is a positive integer greater than 1; If the first terminal device fails to receive the second channel, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to receive the second channel for N2 consecutive times, the first terminal device activates the receiving function of the early warning signal, where N2 is a positive integer greater than 1; If the first terminal device fails to continuously detect the first channel within a third time period, the first terminal device activates a receiving function of the early warning signal; If the first terminal device fails to continuously receive the second channel within a fourth time period, the first terminal device activates a receiving function of the early warning signal; If the number of times that the first terminal device fails to detect the first channel within the fifth time period is greater than or equal to N3, the first terminal device activates the receiving function of the early warning signal, where N3 is a positive integer greater than or equal to 1; If the number of times that the first terminal device fails to receive the second channel within the sixth time period is greater than or equal to N4, the first terminal device activates the receiving function of the early warning signal, where N4 is a positive integer greater than or equal to 1.
92. The network device according to claim 86, characterized in that: The first condition includes one or more of the following: If the first terminal device detects the first channel successfully, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully detects the first channel for N5 consecutive times, the first terminal device deactivates the receiving function of the early warning signal, where N5 is a positive integer greater than 1; If the first terminal device successfully receives the second channel, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully receives the second channel for N6 consecutive times, the first terminal device deactivates the receiving function of the early warning signal, where N6 is a positive integer greater than 1; If the first terminal device continues to successfully detect the first channel within the seventh time period, the first terminal device deactivates the receiving function of the early warning signal; If the first terminal device successfully continues to receive the second channel within the eighth time period, the first terminal device deactivates the receiving function of the early warning signal; If the number of times that the first terminal device successfully detects the first channel in the ninth time period is greater than or equal to N7, the first terminal device deactivates the receiving function of the early warning signal, where N7 is a positive integer greater than or equal to 1; If the number of times that the first terminal device successfully receives the second channel within the tenth time period is equal to or greater than N8, the first terminal device deactivates the receiving function of the early warning signal, where N8 is a positive integer greater than or equal to 1.
93. A terminal device, characterized in that: It comprises a memory and a processor, wherein the memory is used to store a program, and the processor is used to call the program in the memory so that the terminal device executes the method as claimed in any one of claims 1 to 15 or claims 16 to 25.
94. A network device, characterized in that: The network device comprises a memory and a processor, wherein the memory is used to store a program, and the processor is used to call the program in the memory so that the network device executes the method as claimed in any one of claims 26 to 46.
95. A device, characterized in that The device comprises a processor for calling a program from a memory so that the device executes the method according to any one of claims 1 to 15, claims 16 to 25 or claims 26 to 46.
96. A chip, characterized in that: It comprises a processor, which is used to call a program from a memory, so that a device equipped with the chip executes the method according to any one of claims 1 to 15, claims 16 to 25 or claims 26 to 46.
97. A computer-readable storage medium, characterized in that A program is stored thereon, the program causing a computer to execute the method of any one of claims 1 to 15, claims 16 to 25 or claims 26 to 46.
98. A computer program product, characterized in that Comprising a program which causes a computer to execute the method of any one of claims 1 to 15, claims 16 to 25 or claims 26 to 46.
99. A computer program, characterized in that The computer program causes a computer to perform the method of any one of claims 1 to 15, claims 16 to 25 or claims 26 to 46.