Interaction method and system related to network state, and apparatus and communication device
By switching the state of access network equipment between cells, the problem of difficulty in obtaining information by terminals in energy-saving state is solved, and rapid information acquisition is achieved.
Patent Information
- Application Number
- PCT/CN2025/086095
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-04-03
- Filing Date
- 2025-03-31
- Publication Date
- 2025-10-09
AI Technical Summary
It is difficult for the terminal to quickly obtain target information in the network energy-saving state, resulting in a long time to obtain information.
The access network device sends configuration information to the terminal in a cell in an energy-saving state or a non-energy-saving state, instructs or requests the second cell to change from the energy-saving state to the non-energy-saving state, and sends target information in the second cell.
The terminal can quickly obtain the required information and improve the efficiency of information acquisition.
Smart Images

Figure CN2025086095_09102025_PF_FP_ABST
Abstract
Description
Interaction method, system, device and communication equipment related to network status
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS
[0002] This application claims priority to Chinese patent application number 202410403769.1 filed in China on April 3, 2024, the entire contents of which are incorporated herein by reference. Technical Field
[0003] The present application belongs to the field of communication technology, and specifically relates to an interaction method, system, device and communication equipment related to network status. Background Art
[0004] As technology advances, network communications need to handle very high data rates (such as more advanced services and applications such as Extended Reality (XR)). This results in denser networks, using more antennas, greater bandwidth, and more frequency bands, which consumes more network resources and has a greater impact on the environment. Therefore, the impact of technological development on the environment needs to be controlled. Network energy conservation is of great significance for environmental sustainability, reducing environmental impacts (such as greenhouse gas emissions), and saving operating costs.
[0005] To this end, a variety of network energy-saving solutions have been proposed. For example, network energy conservation can be achieved in the time, space, and frequency domains. Consequently, cells under network coverage can transition from a normal communication state (i.e., a non-energy-saving state) to an energy-saving state, achieving network energy conservation.
[0006] However, due to the uncertainty of cell status, if a terminal still relies on the solution in related technologies to monitor target information in the cell, it may take a long time to obtain the required information. Therefore, how to quickly obtain target information by the terminal is a technical problem that needs to be solved. Summary of the Invention
[0007] The embodiments of the present application provide a method, apparatus, and communication device for interacting with a network state to solve a technical problem that urgently needs to be solved: how a terminal can quickly acquire target information.
[0008] In a first aspect, a method for interacting with a network state is provided, the method comprising:
[0009] The terminal receives first configuration information sent by the first access network device in the first cell;
[0010] The first cell is in a non-energy-saving state or an energy-saving state;
[0011] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0012] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0013] The second access network device sends target information in the second cell;
[0014] The state of the second cell is used to indicate a state related to the sending of the target information;
[0015] The second access network device is the same as or different from the first access network device.
[0016] In a second aspect, a method for interacting with a network state is provided, the method comprising:
[0017] The first access network device sends first configuration information to the terminal in the first cell;
[0018] The first cell is in a non-energy-saving state or an energy-saving state;
[0019] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0020] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0021] The second access network device sends target information in the second cell;
[0022] The state of the second cell is used to indicate a state related to the sending of the target information;
[0023] The second access network device is the same as or different from the first access network device.
[0024] In a third aspect, a network status-related interaction system is provided, the system comprising:
[0025] The first access network device is configured to send first configuration information in the first cell;
[0026] a terminal, configured to receive the first configuration information in the first cell;
[0027] The first cell is in a non-energy-saving state or an energy-saving state;
[0028] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0029] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0030] The second access network device sends target information in the second cell;
[0031] The state of the second cell is used to indicate a state related to the sending of the target information;
[0032] The second access network device is the same as or different from the first access network device.
[0033] In a fourth aspect, a network status-related interaction device is provided, which is applied to a terminal, and includes:
[0034] A first receiving module, configured to receive first configuration information sent by a first access network device in a first cell;
[0035] The first cell is in a non-energy-saving state or an energy-saving state;
[0036] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0037] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0038] The second access network device sends target information in the second cell;
[0039] The state of the second cell is used to indicate a state related to the sending of the target information;
[0040] The second access network device is the same as or different from the first access network device.
[0041] In a fifth aspect, a network status-related interaction apparatus is provided, which is applied to a first access network device, and the apparatus includes:
[0042] A first sending module, configured to send first configuration information to a terminal in a first cell;
[0043] The first cell is in a non-energy-saving state or an energy-saving state;
[0044] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0045] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0046] The second access network device sends target information in the second cell;
[0047] The state of the second cell is used to indicate a state related to the sending of the target information;
[0048] The second access network device is the same as or different from the first access network device.
[0049] In a sixth aspect, a communication device is provided, which terminal includes a processor and a memory, wherein the memory stores programs or instructions that can be run on the processor, and when the program or instructions are executed by the processor, the steps of the method described in the first aspect or the second aspect are implemented.
[0050] In a seventh aspect, a terminal is provided, comprising a processor and a communication interface;
[0051] The communication interface is used to: receive first configuration information sent by the first access network device in the first cell;
[0052] The first cell is in a non-energy-saving state or an energy-saving state;
[0053] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0054] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0055] The second access network device sends target information in the second cell;
[0056] The state of the second cell is used to indicate a state related to the sending of the target information;
[0057] The second access network device is the same as or different from the first access network device.
[0058] In an eighth aspect, an access network device is provided as a first access network device; the access network device includes a processor and a communication interface;
[0059] The communication interface is used to: send first configuration information to the terminal in the first cell;
[0060] The first cell is in a non-energy-saving state or an energy-saving state;
[0061] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0062] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0063] The second access network device sends target information in the second cell;
[0064] The state of the second cell is used to indicate a state related to the sending of the target information;
[0065] The second access network device is the same as or different from the first access network device.
[0066] In the ninth aspect, a readable storage medium is provided, on which a program or instruction is stored. When the program or instruction is executed by a processor, the steps of the method described in the first aspect are implemented, or the steps of the method described in the second aspect are implemented.
[0067] In the tenth aspect, a chip is provided, which includes a processor and a communication interface, the communication interface and the processor are coupled, and the processor is used to run programs or instructions to implement the steps of the method described in the first aspect, or to implement the steps of the method described in the second aspect.
[0068] In the eleventh aspect, a computer program / program product is provided, which is stored in a storage medium and executed by at least one processor to implement the steps of the method described in the first aspect, or to implement the steps of the method described in the second aspect.
[0069] In an embodiment of the present application, the terminal is capable of receiving first configuration information sent by a first access network device in a first cell, wherein the first cell is in an energy-saving state or a non-energy-saving state; the first configuration information is used to indicate at least one of the following: the state of the second cell changes from an energy-saving state to a non-energy-saving state; the second access network device sends target information in the second cell; wherein the state of the second cell is used to indicate a state related to the sending of the target information.
[0070] It can be seen that in an embodiment of the present application, the terminal can be configured to request or instruct at least one cell in an energy-saving state to switch to a non-energy-saving state through the access network device in a cell in an energy-saving state or a cell in a non-energy-saving state; a feasible solution is provided for the cell in an energy-saving state to switch to a non-energy-saving state, so that the cell in the energy-saving state can provide the required target information to the terminal after switching to the non-energy-saving state.
[0071] And / or, by configuring the access network device in a cell in an energy-saving state or a cell in a non-energy-saving state, the terminal requests or instructs the corresponding access network device to send target information in at least one cell in an energy-saving state; thereby providing the terminal with the target information required for communication; therefore, the terminal can quickly obtain the required target information. BRIEF DESCRIPTION OF THE DRAWINGS
[0072] FIG1 is a block diagram of a wireless communication system to which embodiments of the present application may be applied;
[0073] FIG2 is a flow chart of a method for interacting with a network state according to an embodiment of the present application;
[0074] FIG3 is a flow chart of another method for interacting with network status in an embodiment of the present application;
[0075] FIG4 is a flowchart of a specific implementation of a method for interacting with a network state according to an embodiment of the present application;
[0076] FIG5 is a structural block diagram of an interactive device related to network status in an embodiment of the present application;
[0077] FIG6 is a structural block diagram of another interactive device related to network status in an embodiment of the present application;
[0078] FIG7 is a structural block diagram of a communication device in an embodiment of the present application;
[0079] FIG8 is a structural block diagram of a terminal in an embodiment of the present application;
[0080] FIG9 is a structural block diagram of a network-side device in an embodiment of the present application. DETAILED DESCRIPTION
[0081] The following will be combined with the accompanying drawings in the embodiments of this application to clearly describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of this application.
[0082] The terms "first", "second", etc. in this application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the terms used in this way are interchangeable where appropriate, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first" and "second" are generally of the same type, and do not limit the number of objects, for example, the first object can be one or more. In addition, "or" in this application represents at least one of the connected objects. For example, "A or B" covers three options, namely, Option 1: including A but not including B; Option 2: including B but not including A; Option 3: including both A and B. The character " / " generally indicates that the objects associated before and after are in an "or" relationship.
[0083] The term "indication" in this application can be either a direct indication (or explicit indication) or an indirect indication (or implicit indication). A direct indication can be understood as the sender explicitly informing the receiver of specific information, the operation to be performed, or the requested result, etc. in the instruction sent; an indirect indication can be understood as the receiver determining the corresponding information based on the instruction sent by the sender, or making a judgment and determining the operation to be performed or the requested result, etc. based on the judgment result.
[0084] It is worth noting that the technology described in the embodiments of the present application is not limited to the Long Term Evolution (LTE) / LTE-Advanced (LTE-A) system, but can also be used in other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-carrier Frequency-Division Multiple Access (SC-FDMA) or other systems. The terms "system" and "network" in the embodiments of the present application are often used interchangeably, and the technology described can be used for the systems and radio technologies mentioned above, as well as for other systems and radio technologies. The following description describes a New Radio (NR) system for illustrative purposes, and NR terminology is used in most of the following description, but these technologies can also be applied to systems other than NR systems, such as 6th generation (6G) systems. th Generation, 6G) communication system.
[0085] FIG1 is a block diagram of a wireless communication system applicable to an embodiment of the present application. The wireless communication system includes a terminal 11 and a network-side device 12. The terminal 11 may be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer), a notebook computer, a personal digital assistant (PDA), a handheld computer, a netbook, an ultra-mobile personal computer (UMPC), a mobile internet device (MID), an augmented reality (AR), a virtual reality (VR) device, a robot, a wearable device (Wearable Device), an aircraft (Flight Vehicle), a vehicle-mounted device (VUE), a ship-mounted device, a pedestrian user equipment (PUE), a smart home (home appliances with wireless communication capabilities, such as refrigerators, televisions, washing machines, or furniture), a game console, a personal computer (PC), an ATM, or a self-service machine, or other terminal-side devices. Wearable devices include: smart watches, smart bracelets, smart headphones, smart glasses, smart jewelry (smart bracelets, smart bracelets, smart rings, smart necklaces, smart anklets, smart anklets, etc.), smart wristbands, smart clothing, etc. Among them, the vehicle-mounted device can also be called a vehicle-mounted terminal, vehicle-mounted controller, vehicle-mounted module, vehicle-mounted component, vehicle-mounted chip or vehicle-mounted unit, etc. It should be noted that the specific type of the terminal 11 is not limited in the embodiment of the present application.
[0086] The network-side device 12 may include an access network device or a core network device, wherein the access network device may also be referred to as a radio access network (RAN) device, a radio access network function, or a radio access network unit. The access network device may include a base station, a wireless local area network (WLAN) access point (AS), or a wireless fidelity (WiFi) node. Among them, the base station can be referred to as Node B (NB), Evolved Node B (eNB), the next generation Node B (gNB), New Radio Node B (NR Node B), access point, Relay Base Station (RBS), Serving Base Station (SBS), Base Transceiver Station (BTS), radio base station, radio transceiver, Basic Service Set (BSS), Extended Service Set (ESS), Home Node B (HNB), Home evolved Node B (home evolved Node B), Transmission Reception Point (TRP) or other appropriate terms in the relevant field. As long as the same technical effect is achieved, the base station is not limited to specific technical vocabulary. It should be noted that in the embodiment of the present application, only the base station in the NR system is used as an example for introduction, and the specific type of the base station is not limited.
[0087] To facilitate understanding of the network status interaction method according to the embodiment of the present application, the following related technologies are first introduced:
[0088] 1. Introduction to cell selection and cell reselection
[0089] In the cell selection and reselection process, cells can be divided into:
[0090] Acceptable cell: According to the S criterion, it can meet the minimum access requirements;
[0091] Suitable cell: According to the S criteria, it can provide normal services to the UE, and the Public Land Mobile Network (PLMN) to which the cell belongs is consistent with the UE's subscription data. The PLMN uniquely identifies a telecommunications operator and consists of a Mobile Country Code (MCC) and a Mobile Network Code (MNC).
[0092] Reserved cell: The cell is indicated as reserved in the system information;
[0093] Barred cell: The cell is indicated as barred in the system information.
[0094] 2. Cell Selection Criteria (i.e., S Criteria)
[0095] During cell selection, the terminal needs to measure the channel quality of the cell being selected to determine whether it meets the criteria for camping. This measurement criterion for cell selection is called the S criterion. If the channel quality and signal strength of a cell meet the S criterion, it may be selected as the camping cell. Meeting the S criterion means that Srxlev > 0 and Squal > 0. The power criterion is: received power Srxlev > 0, and the quality criterion is: received signal quality Squal > 0 during cell search.
[0096] Where Srxlev = Q rxlevmeas –(Q rxlevmin +Q rxlevminoffset )–P compensation -Qoffset temp ;
[0097] Srxlev represents the cell selection receiving level value;
[0098] Q rxlevmeas Indicates the measured reception level value / signal strength of the cell (e.g., Reference Signal Received Power (RSRP));
[0099] Q rxlevmin (Network-side equipment configuration) Indicates the minimum receive level of a cell. Increasing this value for a cell makes it more difficult for the cell to meet the S criterion and become a suitable cell, making it more difficult for terminals to select the cell, and vice versa. The value of this parameter should ensure that the selected cell can provide the signal quality requirements for basic services.
[0100] Q rxlevminoffset(Network-side device configuration) Indicates the minimum receive level offset of a cell. This parameter is used only when the terminal is residing on a visited public land mobile network (VPLMN) and cell selection is triggered by a periodic search for a high-priority public land mobile network (PLMN). Increasing this value for a cell makes it more difficult for the cell to meet the S criterion and become a suitable cell, making it more difficult for the terminal to select the cell, and vice versa.
[0101] P compensation (Network side equipment configuration): Used to punish terminals that cannot reach the maximum power of the cell. When the maximum allowed transmit power of the terminal is less than or equal to the maximum transmit power supported by the terminal capability, P compensation =0; when the maximum allowed transmit power of the terminal is greater than the maximum transmit power supported by the terminal capability, P compensation = Maximum allowed transmit power of the terminal - Maximum transmit power supported by the terminal capability.
[0102] Qoffset temp (Network side equipment configuration): Temporary offset applied to this cell. This value is configured as the connection establishment failure offset value (ConnEstFailOffset) parameter in the Radio Resource Control (RRC) and is used for connection failure control. Squal = Q qualmeas –(Q qualmin +Q qualminoffset )-Qoffset temp ;
[0103] Squal represents the cell selection quality value;
[0104] Q qualmeas Indicates the measured cell quality value (e.g., Reference Signal Receiving Quality (RSRQ));
[0105] Q qualmin (Network-side device configuration) indicates the minimum received signal quality; this parameter indicates the minimum received signal quality required for reselection and is used to control the difficulty of cell reselection; this parameter is issued in the fifth system information block (SIB5); increasing this value for a cell makes it more difficult for the cell to meet the S criterion and become a suitable cell, making it more difficult for the terminal to select the cell, and vice versa.
[0106] Q qualminoffset(Network-side device configuration) Indicates the minimum received signal quality offset value. This parameter represents the minimum received signal quality offset for a cell and is applied to the cell selection criterion (i.e., S-criterion) formula. This parameter is used only when the terminal resides in a VPLMN and cell selection is triggered by a periodic search for a high-priority PLMN. Increasing this value for a cell makes it more difficult for the cell to meet the S-criterion and become a suitable cell, making it more difficult for the terminal to select the cell, and vice versa.
[0107] Qoffset temp Configured through network-side devices.
[0108] 3. Cell Reselection Criteria (R Criteria)
[0109] When the terminal is idle / inactive, after cell selection, it continuously monitors the signal quality of neighboring cells and the current cell to camp on a cell with higher priority or better channel quality. If the signal quality and frequency of a neighboring cell meet the S criterion and certain reselection criteria, the terminal will camp on that cell.
[0110] 4. Measurement criteria for cell reselection:
[0111] After the terminal successfully camps on the cell, it will continue to measure the cell. To minimize the terminal energy consumption caused by the measurement, the RRC layer calculates the S criterion based on the RSRP / RSRQ measurement results and compares it with the intra-frequency measurement start threshold (Sintrasearch) and the inter-frequency measurement start threshold (Snonintrasearch) as the decision condition for whether to start neighboring cell measurement.
[0112] The terminal measures the serving cell signal and detects the serving cell signal strength Srxlev or quality Squal.
[0113] The same-frequency measurement start criterion is: Srxlev<=Sintrasearch or Squal<=Snonintrasearch.
[0114] The inter-frequency measurement starting criterion (for frequencies of the same priority or lower priority) is: Srxlev<=Snonintrasearch or Squal<=Sintrasearch.
[0115] During the reselection process, the network side equipment can control the terminal's residence by setting the priority of different frequency points. The terminal will select the cell with the best channel quality at a certain frequency point to provide the best service. The following are three ways for the terminal to obtain the frequency point priority information it needs to use:
[0116] (1) System information (SI): For a certain frequency point, the corresponding absolute priority is provided in the system information;
[0117] (2) RRC Release message: If the frequency priority is provided by dedicated RRC signaling, the priority in the SI is ignored;
[0118] (3) Inherited from other radio access technologies (RAT).
[0119] 5. Same-frequency and same-priority inter-frequency cell reselection criteria (R criteria)
[0120] The cell ranking criteria are defined as follows, where Rs is used for the serving cell and Rn is used for the neighboring cell; Rs = Qmeas,s + Qhyst – Qoffsettemp; Rn = Qmeas,n - Qoffset – Qoffsettemp;
[0121] Qmeas represents RSRP measurement;
[0122] Qoffset represents the offset between the target candidate cell and the current resident cell; it is used to adjust the difficulty of reselection and reduce the ping-pong effect. When other parameters remain constant, increasing this offset increases the difficulty of reselecting same-frequency or same-priority cells, and vice versa. For same-frequency reselection, if the inter-cell Qoffsets,n is present in the system broadcast, this parameter is equal to the inter-cell Qoffsets,n; if the inter-cell Qoffsets,n is not present in the system broadcast, this parameter is equal to 0. For inter-frequency reselection, if the inter-cell Qoffsets,n is present in the system broadcast, this parameter is equal to 'inter-frequency Qoffsetfrequency + inter-cell Qoffsets,n'; if the inter-cell Qoffsets,n is not present in the system broadcast, this parameter is equal to 'inter-frequency Qoffsetfrequency'.
[0123] Qhyst represents the hysteresis value of the serving cell measurement. This parameter is related to the slow fading characteristics of the cell environment. A larger slow fading variance indicates a larger hysteresis value. A larger hysteresis value also increases the serving cell boundary, making it more difficult to reselect to a neighboring cell. This value is used to adjust the reselection difficulty and reduce the ping-pong effect. An excessively large value can lead to delayed reselection. If the terminal initiates a connection at this time, RRC connection establishment may fail.
[0124] 6. It is also necessary to explain:
[0125] “The access network device sends X1 in the cell” can be understood as “the cell sends X1”. For example, when a first access network device sends first configuration information to a terminal in a first cell, it can be understood as: the first cell sends the first configuration information to the terminal, and the first cell belongs to the first access network device;
[0126] “The access network device receives X2 in the cell” can be understood as “the cell receives X2”. For example, a first access network device receives the first information sent by a terminal in the first cell, which can be understood as: the first cell receives the first information sent by the terminal;
[0127] “The terminal sends X3 in the cell” can be understood as “the terminal sends X3 to the cell”. For example, when the terminal sends the first information to the first access network device in the first cell, it can be understood as: the terminal sends the first information to the first cell;
[0128] “The terminal receives X4 in the cell” can be understood as “the terminal receives X4 sent by the cell”. For example, the terminal receives feedback information sent by the first access network device in the first cell, which can be understood as: the terminal receives feedback information sent by the first cell.
[0129] Among them, X1 to X4 represent a type of information, signal or channel respectively.
[0130] The following describes in detail the network status-related interactions provided by the embodiments of the present application through some embodiments and their application scenarios in conjunction with the accompanying drawings.
[0131] 2 , an embodiment of the present application provides an interaction related to network status. The method may include the following step 201:
[0132] Step 201: A terminal receives first configuration information sent by a first access network device in a first cell.
[0133] It should be noted that the terminal receives the first configuration information sent by the first access network device in the first cell, which can be understood as the terminal receiving the first configuration information sent by the first cell; wherein the first cell belongs to the first access network device.
[0134] The first cell is in a non-energy-saving state or an energy-saving state, that is, when or before the first access network device sends the first configuration information to the first cell, the first cell is in a non-energy-saving state or an energy-saving state.
[0135] It can be understood that if the first access network device is in a non-energy-saving state when or before the first cell sends the first configuration information, then after the first access network device sends the first configuration information in the first cell, the first cell can perform a state switch (i.e., from a non-energy-saving state to an energy-saving state), or it can continue to maintain the original non-energy-saving state.
[0136] If the first cell is in an energy-saving state when or before the first access network device sends the first configuration information in the first cell, then after the first access network device sends the first configuration information in the first cell, the first cell may switch its state (i.e., from an energy-saving state to a non-energy-saving state), or it may continue to maintain the original energy-saving state.
[0137] In addition, the first configuration information is used by the terminal to request or indicate at least one of the following:
[0138] The state of the second cell changes from the energy-saving state to the non-energy-saving state (so that the second access network device can send target information in the second cell);
[0139] The second access network device sends target information in the second cell; the target information includes information required by the terminal for communication.
[0140] The second access network device is the same as or different from the first access network device.
[0141] Optionally, the target information includes at least one of the following:
[0142] Synchronization Signal Block (SSB), first system information block (SIB1).
[0143] It should be noted that the terminal requests or instructs the second access network device to send target information in the second cell, which can be understood as "the terminal requests or instructs the second cell to send target information."
[0144] From this, it can be seen that the terminal can only request or instruct the second cell to change from the energy-saving state to the non-energy-saving state so that the second cell can send the target information; it can also only request or instruct the second cell to send the target information; it can also request or instruct the second cell to change from the energy-saving state to the non-energy-saving state and send the target information.
[0145] It can be understood that the number of the second cells can be one or more; when the number of the second cells is more than one, the second cells can also be called a second cell group.
[0146] When the second cell includes multiple cells, the terminal can request or instruct all or part of the multiple cells to change from an energy-saving state to a non-energy-saving state; it can also request or instruct all or part of the multiple cells to send target information, or it can request or instruct all or part of the multiple cells to change from an energy-saving state to a non-energy-saving state and send target information; it can also request or instruct part of the multiple cells to change from an energy-saving state to a non-energy-saving state, and the remaining cells to send target information.
[0147] In addition, the state of the second cell is used to indicate the state related to the sending of the target information; wherein, the state related to the sending of the target information includes a periodic sending state and an on-demand sending state. When the second cell is in a non-energy-saving state, the target information is sent periodically; when the second cell is in an energy-saving state, the target information is sent on demand to achieve energy saving.
[0148] It can be seen from the above step 201 that in an embodiment of the present application, the terminal can be configured to request or instruct at least one cell in an energy-saving state to switch to a non-energy-saving state through the access network device in a cell in an energy-saving state or a cell in a non-energy-saving state; a feasible solution is provided for the cell in an energy-saving state to switch to a non-energy-saving state, so that the cell in the energy-saving state can provide the required target information to the terminal after switching to the non-energy-saving state.
[0149] Alternatively, the access network device can also be used in a cell in an energy-saving state or a cell in a non-energy-saving state to configure the terminal to request or instruct the corresponding access network device to send target information in at least one cell in an energy-saving state; thereby, the target information required for communication can be provided to the terminal; and a feasible solution is provided for the cell in the energy-saving state to provide the required target information to the terminal.
[0150] Optionally, the second cell includes at least one of the following:
[0151] the first cell;
[0152] A third cell group, wherein the third cell group includes at least one cell except the first cell.
[0153] Therefore, it can be seen that the first access network device can send the first configuration information to the terminal in the first cell to instruct the terminal to request or instruct the first cell to transition from the energy-saving state to the non-energy-saving state, and to send at least one item of the target information. That is, the terminal can directly request or instruct the cell in the energy-saving state to transition from the energy-saving state to the non-energy-saving state, and to send at least one item of the target information.
[0154] Alternatively, the first access network device may send first configuration information to the terminal in the first cell to instruct the terminal to request or instruct the third cell group to transition from the energy-saving state to the non-energy-saving state and to send at least one item of target information. That is, the terminal may request or instruct the third cell group to transition from the energy-saving state to the non-energy-saving state and to send at least one item of target information.
[0155] The third cell group may include at least one of the following:
[0156] at least one neighboring cell of the first cell;
[0157] At least one cell that is not adjacent to the first cell.
[0158] Optionally, the first configuration information includes at least one of the following items A-1 to A-7:
[0159] Item A-1: an identifier of the cell to which the first configuration information applies;
[0160] For example, if the cell identifiers applicable to the first configuration information are cell2, cell3, and cell4, the terminal may use this configuration to request / instruct cell2 / 3 / 4 to change from an energy-saving state (e.g., not sending SIB1) to a non-energy-saving state (e.g., sending SIB1).
[0161] Item A-2: a reference cell for at least one of the time domain and frequency domain aspects of the first configuration information;
[0162] Item A-3: First indication information, used to instruct: the terminal, in a cell that is in an energy-saving state and needs to perform a target behavior, to send first information to the access network device (i.e., the terminal sends the first information to the cell that is in an energy-saving state and needs to perform the target behavior), or the terminal, in a cell in a non-energy-saving state (e.g., the cell in which the terminal is stationed), to send the first information to the access network device (i.e., the terminal sends the first information to the cell in a non-energy-saving state), where the target behavior includes at least one of transitioning from an energy-saving state to a non-energy-saving state and sending target information, and the first information is used to request or instruct at least one of the following: transitioning the state of the second cell from the energy-saving state to the non-energy-saving state and sending the target information by the second access network device in the second cell;
[0163] That is, the first indication information is used to instruct the terminal to request the second cell to change from the energy-saving state to the non-energy-saving state and to send at least one of the target information, which can be method 1 or method 2 as follows:
[0164] Method 1: The terminal sends a first message to a cell that is in an energy-saving state and needs to perform a target behavior;
[0165] Method 2: The terminal sends the first information to a cell in a non-energy-saving state.
[0166] Item A-4: second indication information, used to instruct: under a first condition, the terminal is in a cell in an energy-saving state and needs to perform the target behavior, to send the first information to the access network device; under a second condition, the terminal is in a cell in a non-energy-saving state, to send the first information to the access network device;
[0167] That is, the second indication information is used to indicate the use of the above-mentioned method 1 and method 2 under different conditions. The different conditions may include at least one of different scenarios, different power consumption, and different delay requirements.
[0168] Item A-5: third indication information, used to instruct the terminal to send the first information through at least one of a physical random access channel (PRACH), a physical uplink shared channel (PUSCH), and a physical uplink control channel (PUCCH);
[0169] Item A-6: The fourth indication information is used to indicate whether the terminal monitors or receives feedback information, and the feedback information is used to indicate feedback of at least one of the following: a cell in an energy-saving state is converted to a non-energy-saving state and the target information is sent; wherein the feedback information can be carried in at least one of a random access response (Random Access Response, RAR), a message B (MsgB), and a contention resolution message (Msg4).
[0170] Item A-7: fifth indication information, used to determine whether the terminal can reside in the second cell; for example, the fifth indication information includes at least one of the S criterion, cell bar information, and PLMN information of the second cell.
[0171] It should be noted that the first configuration information may include at least one set of configuration information, and each set of configuration information includes at least one item from A-3 to A-7 above; it can be understood that the contents included in different sets of configuration information may be the same or different, and a set of configuration information is applicable to one or more cells.
[0172] Alternatively, each of items A-2 to A-7 can serve as an information field. Thus, the first configuration information can include at least one of the information fields corresponding to items A-2 to A-7, and one information field can apply to one or more cells. Furthermore, it should be noted that when the terminal transmits the first information according to the first configuration information, the terminal references the at least one of the time domain and frequency domain of the cell to which the reference cell is assigned.
[0173] Optionally, the reference cell includes at least one of the following items B-1 to B-4:
[0174] Item B-1: the cell that receives the first information; that is, the cell to which the terminal sends the first information, the reference cell is the cell; that is, the cell to which the terminal sends the first information, the terminal refers to at least one of the time domain and frequency domain of the cell when sending the first information.
[0175] Item B-2: The cell requested or indicated by the terminal; that is, the first configuration information is used for the terminal to request or indicate which cell to change from the energy-saving state to the non-energy-saving state, and to send at least one of the target information, then the reference cell is which cell; that is, the first configuration information is used for the terminal to request or indicate which cell to change from the energy-saving state to the non-energy-saving state, and to send at least one of the target information, then when the terminal sends the first information, it refers to at least one of the time domain and frequency domain of the cell
[0176] Item B-3: the first cell; that is, the terminal refers to at least one of the time domain and frequency domain of the first cell when sending the first information; for example, the reference cell in the part of the first configuration information applicable to the first cell is the first cell, or the reference cell in the part of the first configuration information applicable to the third cell group is the first cell;
[0177] Exemplarily, the reference cell applied to the configuration of the fifth cell or the sixth cell in the first configuration information can be: the first cell, that is, it can be converted to a reference to the first cell, but the absolute time-frequency domain position is still the reference to the fifth cell or the sixth cell, so as to ensure that it remains unchanged.
[0178] Item B-4: The third cell group includes at least one cell other than the first cell; that is, the terminal refers to at least one item in the time domain and frequency domain of the third cell group when sending the first information; for example, the reference cell of the part of the first configuration information applicable to the third cell group is the third cell group.
[0179] Exemplarily, the reference cell used for the fifth cell configuration in the first configuration information may be the fifth cell; and the reference cell used for the sixth cell configuration may be the sixth cell.
[0180] Optionally, the first configuration information is carried in at least one of the following:
[0181] Newly defined system messages;
[0182] Existing system messages;
[0183] Newly defined proprietary signaling;
[0184] Existing proprietary signaling.
[0185] Optionally, the method further includes:
[0186] The terminal sends the first information to the first access network device in the first cell according to the first configuration information (that is, the terminal sends the first information to the first cell according to the first configuration information);
[0187] The first information is used to request or indicate at least one of the following:
[0188] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0189] The second access network device sends target information in the second cell.
[0190] In addition, the first information may also be called a wake-up signal (Wake Up Signal, WUS).
[0191] It can be understood that the content requested or indicated by the terminal indicated by the first configuration information may be the same as or different from the content requested or indicated by the first information.
[0192] For example, the first configuration information instructs the terminal to request the state of the second cell to change from the energy-saving state to the non-energy-saving state, and when there are multiple second cells, the first information may request or instruct at least some of the multiple second cells to change from the energy-saving state to the non-energy-saving state;
[0193] Alternatively, for example, the first configuration information instructs the terminal to request the second cell to send target information, and when there are multiple second cells, the first information may request or instruct at least some of the multiple second cells to send target information;
[0194] Alternatively, for example, the first configuration information instructs the terminal to request the second cell to change its state from energy-saving state to non-energy-saving state, and when sending the target information, the first cell may only request or instruct the second cell to change its state from energy-saving state to non-energy-saving state.
[0195] Optionally, the terminal sending the first information to the first access network device in the first cell according to the first configuration information includes:
[0196] In at least one of the following situations C-1 to C-4, the terminal sends the first information to the first access network device in the first cell:
[0197] Item C-1: The first configuration information includes first indication information, and the first indication information is used to instruct: the terminal sends the first information to the access network device in a cell in a non-energy-saving state, and the first cell is in a non-energy-saving state;
[0198] That is, if the first configuration information received by the terminal includes first indication information, and the first indication information is used to instruct the terminal to send first information to a cell in a non-energy-saving state, and the first cell is in a non-energy-saving state, the terminal can send the first information to the first cell.
[0199] Item C-2: The first configuration information includes second indication information, where the second indication information is used to instruct the terminal to send the first information to the access network device in a cell in a non-energy-saving state under a second condition, and the terminal determines that the second condition is met and the first cell is in a non-energy-saving state;
[0200] That is, if the first configuration information received by the terminal includes second indication information, and the second indication information is used to indicate that the terminal sends the first information to a cell in a non-energy-saving state under a second condition, and the first cell meets the second condition and is in a non-energy-saving state, then the terminal can send the first information to the first cell.
[0201] Item C-3: The terminal meets the cell reselection conditions, and at least one candidate cell corresponding to the cell reselection is in an energy-saving state; in this case, the second cell includes at least one candidate cell corresponding to the cell reselection, that is, when the terminal meets the cell reselection conditions, and at least one candidate cell corresponding to the cell reselection is in an energy-saving state, the terminal can send first information to the at least one candidate cell to instruct the at least one candidate cell to transition from the energy-saving state to the non-energy-saving state and send at least one of the target information.
[0202] Item C-4: The first configuration information includes fifth indication information, and the terminal determines, based on the fifth indication information, that the terminal can reside in at least one of the second cells. For example, the fifth indication information may include at least one of the second cell's S criteria, cell bar information, and PLMN information. The terminal determines, based on at least one of the second cell's S criteria, cell bar information, and PLMN information, that it can reside in the second cell if it confirms at least one of the following: the second cell is a suitable cell, the second cell has not barred the terminal, and the PLMN to which the second cell belongs is consistent with the terminal's subscription data.
[0203] Optionally, the first information includes at least one of the following items D-1 to D-10:
[0204] Item D-1: a first identifier, the first identifier including an identifier of a cell that needs to be transitioned from an energy-saving state to a non-energy-saving state; the cell identifier may be an area identifier, for example, including at least one of an access network notification area (RAN Notification Area, RNA) and a registration area (RA);
[0205] Item D-2: a second identifier, the second identifier including an identifier of a cell that needs to send target information and is in an energy-saving state;
[0206] Item D-3: a third identifier and a cell measurement result corresponding to the third identifier, wherein the third identifier includes an identifier of a cell in an energy-saving state; that is, the terminal sends the identifiers and corresponding measurement results of some cells in an energy-saving state to the first cell, and the first cell can determine, based on the measurement results, which cells among these cell identifiers to request / instruct to be converted into non-energy-saving cells and / or send target information.
[0207] Item D-4: The fourth identification includes the identification of a cell that is in an energy-saving state and needs to be converted to a non-energy-saving state, and the identification of a cell that needs to send target information and is in an energy-saving state; that is, the identification of a cell that is in an energy-saving state and needs to be converted to a non-energy-saving state, and the identification of a cell that is in an energy-saving state and needs to be converted to a non-energy-saving state can be indicated in one information field.
[0208] Item D-5: A fifth identifier, the fifth identifier including an identifier of a cell to which target information needs to be sent;
[0209] Item D-6: First reason information, used to indicate the reason why a cell in an energy-saving state transitions to a non-energy-saving state; for example, the specific reason why a cell in an energy-saving state transitions to a non-energy-saving state to obtain SIB1, such as obtaining Small Data Transfer (SDT)-related configurations and system information scheduling information;
[0210] Item D-7: Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information; for example, when the target information is SIB1, the specific reason why the terminal requires SIB1, such as to obtain SDT-related configuration, scheduling information of system information, etc.;
[0211] Item D-8: First requirement information, used to indicate the requirements after the cell in the energy-saving state transitions to the non-energy-saving state; for example, the duration (specific duration required for SIB1) and number of times (specific number of times SIB1 is required) of sending target information after transitioning to the non-energy-saving state;
[0212] Item D-9: Second requirement information, used to indicate the target information transmission requirement; duration (specific duration of SIB1 required), number of times (specific number of times SIB1 is required);
[0213] Item D-10: Terminal capability information; such as whether the terminal supports Non-Terrestrial Network (NTN), NES, Reduced Capability (RedCap), Multicast Broadcast Service (MBS), etc. (for example, a base station that does not support RedCap will not respond to a request from a RedCap terminal).
[0214] Optionally, the sending, by the terminal in the first cell, the first information to the first access network device includes:
[0215] The terminal sends the first information to the first access network device in the first cell through at least one of PRACH, PUSCH, and PUCCH.
[0216] That is, the terminal can send the first information to the first cell through at least one of PRACH, PUSCH, and PUCCH.
[0217] Optionally, the method further comprises at least one of the following F-1 to F-3:
[0218] Item F-1: The terminal monitors or receives feedback information sent by the first access network device in the first cell, wherein the feedback information is used to indicate feedback on at least one of the following: the transition of the cell in the energy-saving state to the non-energy-saving state and the sending of the target information; that is, after the terminal sends the first information, it can also monitor or receive feedback information sent by the first cell to obtain information on the transition of the cell in the energy-saving state to the non-energy-saving state and / or the sending of the target information.
[0219] Item F-2: The terminal determines whether the cell in the energy-saving state is changed to the non-energy-saving state; that is, the terminal may not monitor or receive feedback information from the first cell, but directly determine whether the cell in the energy-saving state is changed to the non-energy-saving state (for example, after sending the first information, the terminal directly judges or determines whether the energy-saving cell is changed to the non-energy-saving state, rather than waiting for feedback from the first cell).
[0220] Item F-3: The terminal determines whether the access network device sends the target information in a cell in an energy-saving state; that is, the terminal may not monitor or receive feedback information from the first cell, but directly determine whether the corresponding cell has sent the target information (for example, after sending the first information, the terminal directly judges or determines whether the corresponding cell has sent the target information, rather than waiting for feedback from the first cell).
[0221] Optionally, the feedback information includes at least one of the following items E-1 to E-4:
[0222] Item E-1: Sixth indication information, used to indicate whether a cell in an energy-saving state is changed to a non-energy-saving state; for example, the sixth indication information may include: an identifier of a cell that has changed to a non-energy-saving state, and an identifier of a cell that has not changed to a non-energy-saving state;
[0223] Item E-2: First characteristic information, used to indicate information transmission characteristics after the cell in the energy-saving state transitions to the non-energy-saving state; for example, transmission duration (e.g., the specific duration of SIB1 transmission) and number of transmissions (e.g., the specific number of SIB1 transmissions);
[0224] Item E-3: seventh indication information, used to indicate whether the access network device sends target information in a cell in an energy-saving state; for example, the seventh indication information includes an identifier of a cell to which the target information is to be sent and an identifier of a cell not to which the target information is to be sent;
[0225] Item E-4: Second characteristic information, used to indicate the characteristics of the access network device sending target information in a cell in energy-saving state; for example, the sending duration (for example, the specific duration of sending SIB1) and the number of sending times (for example, the specific number of times SIB1 is sent).
[0226] It should be noted that, for each item described in E-1 to E-4 above, one item may correspond to one information field, or multiple items may correspond to one information field.
[0227] Optionally, the feedback information is indicated in at least one of the following ways H-1 to H-2:
[0228] Item H-1: Implicit method;
[0229] For example, if the first cell does not send specific information, it means that none of the cells in the energy-saving state have been changed to the non-energy-saving state, or no target information has been sent; if the first cell sends specific information, it means that the cells in the energy-saving state have been changed to the non-energy-saving state, or the target information has been sent; or, if no specific information is sent, it means that all the corresponding cells in the energy-saving state have been changed to the non-energy-saving state or the target information has been sent.
[0230] Exemplarily, if the feedback information received by the terminal includes an identifier of a cell, it indicates that the cell has been changed to a non-energy-saving state; if the feedback information does not include an identifier of a cell, it indicates that the cell has not been changed to a non-energy-saving state; if the feedback information does not include an identifier of any cell, all energy-saving cells have been changed to a non-energy-saving state;
[0231] Exemplarily, if the feedback information received by the terminal includes the identifier of a cell, it means that the cell has sent the target information; if the feedback information does not include the identifier of a cell, it means that the cell has not sent the target information; if the feedback information does not include the identifier of any cell, all energy-saving cells have sent the target information.
[0232] Item H-2: Explicit method, such as sending feedback information through at least one of broadcast message, short message, and proprietary signaling.
[0233] Optionally, the method further includes:
[0234] In a case where at least some cells in the second cell execute the target behavior, the terminal receives the eighth indication information sent by the first access network device in the first cell, wherein the eighth indication information is used to indicate that the first configuration information is updated, and the target behavior includes at least one of changing from an energy-saving state to a non-energy-saving state and sending target information.
[0235] From this, it can be seen that if at least part of the cells in the second cell are switched to a non-energy-saving state and / or the target information is sent, the first access network device can update the first configuration information in the first cell and thereby notify the terminal (that is, the first cell can update the first configuration information and thereby notify the terminal).
[0236] Optionally, the eighth indication information is carried in at least one of the following items:
[0237] Short message; for example, indicating whether the first configuration information is updated through a bit field of the short message;
[0238] Updated system information.
[0239] 3 , an embodiment of the present application provides an interaction related to network status. The method may include the following step 301:
[0240] Step 301: A first access network device sends first configuration information to a terminal in a first cell.
[0241] It should be noted that the first access network device sending the first configuration information to the terminal in the first cell can be understood as the first cell sending the first configuration information to the terminal; wherein the first cell belongs to the first access network device.
[0242] The first cell is in a non-energy-saving state or an energy-saving state, that is, when or before the first access network device sends the first configuration information to the first cell, the first cell is in a non-energy-saving state or an energy-saving state.
[0243] It can be understood that if the first access network device is in a non-energy-saving state when or before the first cell sends the first configuration information, then after the first access network device sends the first configuration information in the first cell, the first cell can perform a state switch (i.e., from a non-energy-saving state to an energy-saving state), or it can continue to maintain the original non-energy-saving state.
[0244] If the first cell is in an energy-saving state when or before the first access network device sends the first configuration information in the first cell, then after the first access network device sends the first configuration information in the first cell, the first cell may switch its state (i.e., from an energy-saving state to a non-energy-saving state), or it may continue to maintain the original energy-saving state.
[0245] In addition, the first configuration information is used by the terminal to request or indicate at least one of the following:
[0246] The state of the second cell changes from the energy-saving state to the non-energy-saving state (so that the second access network device can send target information in the second cell);
[0247] The second access network device sends target information in the second cell; the target information includes information required by the terminal for communication.
[0248] The second access network device is the same as or different from the first access network device.
[0249] Optionally, the target information includes at least one of the following:
[0250] Synchronization Signal Block (SSB), first system information block (SIB1).
[0251] It should be noted that the terminal requests or instructs the second access network device to send target information in the second cell, which can be understood as "the terminal requests or instructs the second cell to send target information."
[0252] From this, it can be seen that the terminal can only request or instruct the second cell to change from the energy-saving state to the non-energy-saving state so that the second cell can send the target information; it can also only request or instruct the second cell to send the target information; it can also request or instruct the second cell to change from the energy-saving state to the non-energy-saving state and send the target information.
[0253] It can be understood that the number of the second cells can be one or more; when the number of the second cells is more than one, the second cells can also be called a second cell group.
[0254] When the second cell includes multiple cells, the terminal can request or instruct all or part of the multiple cells to change from an energy-saving state to a non-energy-saving state; it can also request or instruct all or part of the multiple cells to send target information, or it can request or instruct all or part of the multiple cells to change from an energy-saving state to a non-energy-saving state and send target information; it can also request or instruct part of the multiple cells to change from an energy-saving state to a non-energy-saving state, and the remaining cells to send target information.
[0255] In addition, the state of the second cell is used to indicate the state related to the sending of the target information; wherein, the state related to the sending of the target information includes a periodic sending state and an on-demand sending state. When the second cell is in a non-energy-saving state, the target information is sent periodically; when the second cell is in an energy-saving state, the target information is sent on demand to achieve energy saving.
[0256] It can be seen from the above step 301 that in an embodiment of the present application, the terminal can be configured to request or instruct at least one cell in an energy-saving state to switch to a non-energy-saving state through the access network device in a cell in an energy-saving state or a cell in a non-energy-saving state; a feasible solution is provided for the cell in an energy-saving state to switch to a non-energy-saving state, so that the cell in the energy-saving state can provide the required target information to the terminal after switching to the non-energy-saving state.
[0257] Alternatively, the access network device can also be used in a cell in an energy-saving state or a cell in a non-energy-saving state to configure the terminal to request or instruct the corresponding access network device to send target information in at least one cell in an energy-saving state; thereby, the target information required for communication can be provided to the terminal; and a feasible solution is provided for the cell in the energy-saving state to provide the required target information to the terminal.
[0258] Optionally, the second cell includes at least one of the following:
[0259] the first cell;
[0260] A third cell group, wherein the third cell group includes at least one cell except the first cell.
[0261] Therefore, it can be seen that the first access network device can send the first configuration information to the terminal in the first cell to instruct the terminal to request or instruct the first cell to transition from the energy-saving state to the non-energy-saving state, and to send at least one item of the target information. That is, the terminal can directly request or instruct the cell in the energy-saving state to transition from the energy-saving state to the non-energy-saving state, and to send at least one item of the target information.
[0262] Alternatively, the first access network device may send first configuration information to the terminal in the first cell to instruct the terminal to request or instruct the third cell group to transition from the energy-saving state to the non-energy-saving state and to send at least one item of target information. That is, the terminal may request or instruct the third cell group to transition from the energy-saving state to the non-energy-saving state and to send at least one item of target information.
[0263] The third cell group may include at least one of the following:
[0264] at least one neighboring cell of the first cell;
[0265] At least one cell that is not adjacent to the first cell.
[0266] Optionally, the first configuration information includes at least one of the following items A-1 to A-7:
[0267] Item A-1: an identifier of the cell to which the first configuration information applies;
[0268] Item A-2: a reference cell for at least one of the time domain and frequency domain aspects of the first configuration information;
[0269] Item A-3: First indication information, used to instruct: the terminal to send first information to the access network device in a cell that is in an energy-saving state and needs to perform a target behavior, or the terminal to send the first information to the access network device in a cell that is in a non-energy-saving state, where the target behavior includes at least one of transitioning from an energy-saving state to a non-energy-saving state and sending target information, and the first information is used to request or instruct at least one of the following: transitioning from the energy-saving state to a non-energy-saving state in the second cell and sending the target information in the second cell by the second access network device;
[0270] Item A-4: second indication information, used to instruct: under a first condition, the terminal is in a cell in an energy-saving state and needs to perform the target behavior, to send the first information to the access network device; under a second condition, the terminal is in a cell in a non-energy-saving state, to send the first information to the access network device;
[0271] Item A-5: third indication information, used to instruct the terminal to send the first information through at least one of a physical random access channel PRACH, a physical uplink shared channel PUSCH, and a physical uplink control channel PUCCH;
[0272] Item A-6: fourth indication information, used to indicate whether the terminal monitors or receives feedback information, where the feedback information is used to indicate feedback of at least one of: a cell in an energy-saving state transitioning to a non-energy-saving state and sending target information;
[0273] Item A-7: Fifth indication information, used to determine whether the terminal can reside in the second cell.
[0274] It is understood that the relevant explanations of items A-1 to A-7 can be found in the above text and will not be repeated here.
[0275] Optionally, the reference cell includes at least one of the following items B-1 to B-4:
[0276] Item B-1: a cell receiving the first information;
[0277] Item B-2: the cell requested or indicated by the terminal;
[0278] Item B-3: The first community;
[0279] Item B-4: A third cell group, wherein the third cell group includes at least one cell other than the first cell.
[0280] It is understood that the relevant explanations of items B-1 to B-4 can be found in the above text and will not be repeated here.
[0281] Optionally, the first configuration information is carried in at least one of the following:
[0282] Newly defined system messages;
[0283] Existing system messages;
[0284] Newly defined proprietary signaling;
[0285] Already signaling.
[0286] Optionally, the method further includes:
[0287] In a case where the first access network device and the second access network device are different, the first access network device and the second access network device exchange the first configuration information.
[0288] Optionally, the method further includes:
[0289] The first access network device receives, in the first cell, the first information sent by the terminal (that is, the first cell receives the first information sent by the terminal);
[0290] The first information is used to request or indicate at least one of the following:
[0291] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0292] The second access network device sends target information in the second cell.
[0293] In addition, the first information may also be called a wake-up signal (Wake Up Signal, WUS).
[0294] It is understandable that the content requested or indicated by the terminal in the first configuration information may be the same as or different from the content requested or indicated by the first information.
[0295] For example, the first configuration information instructs the terminal to request the state of the second cell to change from the energy-saving state to the non-energy-saving state, and when there are multiple second cells, the first information may request or instruct at least some of the multiple second cells to change from the energy-saving state to the non-energy-saving state;
[0296] Alternatively, for example, the first configuration information instructs the terminal to request the second cell to send target information, and when there are multiple second cells, the first information may request or instruct at least some of the multiple second cells to send target information;
[0297] Alternatively, for example, the first configuration information instructs the terminal to request the second cell to change its state from energy-saving state to non-energy-saving state, and when sending the target information, the first cell may only request or instruct the second cell to change its state from energy-saving state to non-energy-saving state.
[0298] Optionally, the first information includes at least one of the following items D-1 to D-10:
[0299] Item D-1: a first identifier, the first identifier including an identifier of a cell that needs to be changed from an energy-saving state to a non-energy-saving state;
[0300] Item D-2: a second identifier, the second identifier including an identifier of a cell that needs to send target information and is in an energy-saving state;
[0301] Item D-3: a third identifier and a cell measurement result corresponding to the third identifier, the third identifier including an identifier of a cell in an energy-saving state;
[0302] Item D-4: a fourth identifier, the fourth identifier including an identifier of a cell in an energy-saving state that needs to be changed to a non-energy-saving state, and an identifier of a cell in an energy-saving state that needs to send target information;
[0303] Item D-5: A fifth identifier, the fifth identifier including an identifier of a cell to which target information needs to be sent;
[0304] Item D-6: first reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state;
[0305] Item D-7: Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information;
[0306] Item D-8: First requirement information, used to indicate the requirements after the cell in the energy-saving state changes to the non-energy-saving state;
[0307] Item D-9: Second request information, used to indicate the requirement for sending target information;
[0308] Item D-10: Terminal capability information.
[0309] It is understood that the relevant explanations of items D-1 to D-10 can be found in the above text and will not be repeated here.
[0310] Optionally, the first access network device receiving, in the first cell, the first information sent by the terminal includes:
[0311] The first access network device receives the first information sent by the terminal in the first cell through at least one of PRACH, PUSCH, and PUCCH.
[0312] That is, the first cell can receive the first information sent by the terminal through at least one of PRACH, PUSCH, and PUCCH.
[0313] Optionally, the method further includes:
[0314] When the second cell includes a third cell group and the first access network device and the second access network device are different, the first access network device sends second information to the second access network device (i.e., the first cell sends the second information to the third cell group); the third cell group belongs to the second access network device;
[0315] The second information is used to request or indicate at least one of the following:
[0316] The third cell group changes from an energy-saving state to a non-energy-saving state;
[0317] The second access network device sends target information in the third cell group.
[0318] From this, it can be seen that after the first cell receives the first information sent by the terminal, if the first information requests or instructs the third cell group to change from an energy-saving state to a non-energy-saving state and send at least one item of target information, the first cell can send the second information to the third cell group (that is, each cell in the third cell group) to enable the third cell group to determine: whether to change from an energy-saving state to a non-energy-saving state and whether to send at least one item of target information.
[0319] Optionally, the third cell group includes at least one of the following J-1 to J-6:
[0320] Item J-1: At least one of the cells to which the first configuration information applies; for example, if the first configuration information applies to cell2, cell3, and cell4, the first cell may request or instruct at least one of cell2, cell3, and cell4 to change from an energy-saving state to a non-energy-saving state and / or send target information.
[0321] Item J-2: At least one of the cells with the first identifier included in the first information received by the first access network device, the first identifier includes the identifier of the cell that needs to be changed from the energy-saving state to the non-energy-saving state; for example, the first identifier in the first information received by the first cell includes cell2 cell3, cell4, then the first cell can request or instruct at least one of cell2 cell3, cell4 to change from the energy-saving state to the non-energy-saving state, so that the first cell sends the above-mentioned second information to the cell to be requested or indicated.
[0322] Item J-3: At least one of the cells with the second identifier included in the first information, the second identifier includes the identifier of the cell that needs to send the target information and is in the energy-saving state; for example, the second identifier in the first information received by the first cell includes cell2 cell3, cell4, then the first cell can request or instruct at least one of cell2 cell3, cell4 to send the target information, so that the first cell sends the above-mentioned second information to the cell to be requested or indicated.
[0323] Item J-4: The first cell selects at least one cell from the cells with the third identifier based on the measurement results of the cells with the third identifier, and the third identifier includes the identifier of the cell in the energy-saving state; for example, the first information received by the first cell includes cell2 cell3, cell4 and their corresponding measurement results, then the first cell can select at least one cell from cell2 cell3, cell4 based on the measurement results (for example, select several cells with the best measurement results) to request or instruct to change from the energy-saving state to the non-energy-saving state and / or send the target information, so that the first cell sends the above-mentioned second information to the cell to be requested or indicated.
[0324] Item J-5: At least one of the cells with the fourth identifier included in the first information received by the first access network device, the fourth identifier includes the identifier of a cell that is in an energy-saving state and needs to be switched to a non-energy-saving state, and the identifier of a cell that needs to send target information and is in an energy-saving state; for example, if the fourth identifier in the first information received by the first cell includes cell2 cell3, and cell4, the first cell can request or instruct at least one of cell2 cell3 and cell4 to send target information, and at least one to switch from an energy-saving state to a non-energy-saving state, thereby sending the above-mentioned second information to the cell to be requested or instructed.
[0325] Item J-6: At least one of the cells with the fifth identifier included in the first information received by the first access network device, where the fifth identifier includes the identifier of the cell to which the target information is to be transmitted. For example, if the fifth identifier in the first information received by the first cell includes cell2, cell3, and cell4, the first cell may request or instruct at least one of cell2, cell3, and cell4 to transmit the target information, thereby transmitting the second information to the requested or instructed cell.
[0326] Optionally, the second information is carried in at least one of the following:
[0327] Existing messages; for example, enhancing existing messages (adding a field carrying the second information in the existing message), such as enhancing the XN setup request message (SETUP REQUEST message), the access network node configuration update message (NG-RAN NODE CONFIGURATION UPDATE message).
[0328] Newly defined message.
[0329] Optionally, the second information includes at least one of the following items L-1 to L-5:
[0330] L-1 item: first reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state; for example, the specific reason for changing to the non-energy-saving state and sending SIB1, such as obtaining SDT-related configuration, system information scheduling information, etc.;
[0331] Item L-2: Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information; for example, the specific reason why SIB1 is required, such as to obtain SDT-related configuration, system information scheduling information, etc.;
[0332] Item L-3: First requirement information, used to indicate the requirements after the cell in energy-saving state changes to non-energy-saving state; for example, the duration requirement for sending target information (for example, the specific duration of SIB1 required) and the number requirement (for example, the specific number of times SIB1 is required)
[0333] Item L-4: Second requirement information, used to indicate the target information transmission requirements; for example, duration requirements (e.g., the specific duration of SIB1 required) and frequency requirements (e.g., the specific number of times SIB1 is required);
[0334] Item L-5: capability information of the terminal, such as whether the terminal supports NTN, NES, RedCap, MBS, etc. (for example, a base station that does not support RedCap will not respond to a request from a RedCap terminal).
[0335] Optionally, the method further includes:
[0336] The first access network device receives third information sent by the second access network device;
[0337] The third information includes at least one of the following items P-1 to P-4:
[0338] Item P-1: indication information of whether the third cell group is changed to a non-energy-saving state;
[0339] Item P-2: indication information of whether the second access network device sends target information in the third cell group (i.e., indication information of whether the third cell group sends target information);
[0340] P-3 item: third characteristic information, used to indicate the information transmission characteristics after the third cell group is transformed into the non-energy-saving state; for example, the duration requirement for sending the target information (for example, the specific duration of SIB1 required) and the number requirement (for example, the specific number of times SIB1 is required);
[0341] Item P-4: Fourth characteristic information, used to indicate the characteristics of the second access network device sending target information in the third cell group; for example, duration requirements (for example, the specific duration of SIB1 required) and number requirements (for example, the specific number of times SIB1 is required).
[0342] From this, it can be seen that after the second access network device receives the second information sent by the first access network device, it can determine whether the third cell group has changed to a non-energy-saving state and whether to send at least one item of the target information, thereby feeding back the third information to the first access network device.
[0343] Optionally, the third information is carried in at least one of the following:
[0344] Existing messages; for example, enhancing existing messages (adding a field carrying third information to an existing message), such as enhancing the XN setup response message (SETUP RESPONSE message) and the access network node configuration update confirmation message (NG-RAN NODE CONFIGURATION UPDATE ACKNOWLEDGE message);
[0345] Newly defined message.
[0346] Optionally, the method further includes:
[0347] The first access network device sends feedback information to the terminal in the first cell, wherein the feedback information is used to instruct the cell in the energy-saving state to change to the non-energy-saving state and to send feedback of at least one item of the target information.
[0348] It can be seen that after sending the first information, the terminal can also monitor or receive feedback information sent by the first cell to learn whether the cell in the energy-saving state is converted to the non-energy-saving state and / or sends the target information.
[0349] Optionally, the feedback information includes at least one of the following items E-1 to E-4:
[0350] Item E-1: sixth indication information, used to indicate whether the cell in the energy-saving state is changed to the non-energy-saving state;
[0351] Item E-2: first characteristic information, used to indicate information transmission characteristics after a cell in an energy-saving state transitions to a non-energy-saving state;
[0352] Item E-3: seventh indication information, used to indicate whether the access network device sends target information in a cell in an energy-saving state;
[0353] Item E-4: Second characteristic information, used to indicate the characteristics of the access network device sending target information in a cell in an energy-saving state.
[0354] It is understood that the relevant explanations of items E-1 to E-4 can be found in the above text and will not be repeated here.
[0355] Optionally, the feedback information is indicated in at least one of the following ways H-1 to H-2:
[0356] Item H-1: Implicit method;
[0357] Item H-2: Explicit method.
[0358] It is understood that the relevant explanations of items H-1 to H-2 can be found in the above text and will not be repeated here.
[0359] Optionally, the method further includes:
[0360] In a case where at least some of the second cells perform a target behavior, the first access network device updates or does not update the first configuration information (i.e., the first cell updates or does not update the first configuration information), wherein the target behavior includes at least one of changing from an energy-saving state to a non-energy-saving state and sending target information;
[0361] In the case where the first access network device updates the first configuration information, the first access network device sends eighth indication information to the terminal in the first cell (i.e., the first cell sends the eighth indication information to the terminal), or the first access network device does not notify the terminal of the update of the first configuration information in the first cell (i.e., the first cell does not notify the terminal of the update of the first configuration information), and the eighth indication information is used to indicate that the first configuration information is updated.
[0362] From this, it can be seen that when one / some / all cells in the second cell execute the target behavior (i.e., change from energy-saving state to non-energy-saving state and / or send target information), the first configuration can be updated in the first cell, or the first configuration can not be updated; and if the first configuration information is updated, the first cell can also notify the terminal that the first configuration information has changed, or not notify the terminal that the first configuration information has changed.
[0363] Optionally, the first access network device updating the first configuration information includes:
[0364] The first access network device deletes configuration information applicable to a fourth cell in the first configuration information, wherein the fourth cell includes the cell in the second cell that performs the target behavior.
[0365] It can be seen from this that “updating the first configuration” means deleting the configuration of the cell that performs the target behavior in the second cell from the first configuration information.
[0366] Optionally, the eighth indication information is carried in at least one of the following items:
[0367] Short messages, updated system information.
[0368] Optionally, the first access network device does not notify the terminal of the first configuration information update in the first cell, including at least one of the following:
[0369] The first access network device sends the first configuration information in the first cell through newly defined or existing dedicated signaling, and when the first configuration information is updated, the first access network device does not resend the dedicated signaling in the first cell (that is, the first cell does not resend the dedicated signaling);
[0370] The first access network device sends the first configuration information in the first cell through newly defined or existing system information, and when the first configuration information is updated, the first access network device does not send a short message in the first cell (that is, the first cell does not send the short message) to notify the terminal.
[0371] The embodiment of the present application further provides an interactive system related to network status, which applies the interactive method related to network status described above;
[0372] Wherein, the system comprises:
[0373] The first access network device is configured to send first configuration information in the first cell;
[0374] a terminal, configured to receive the first configuration information in the first cell;
[0375] The first cell is in a non-energy-saving state or an energy-saving state;
[0376] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0377] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0378] The second access network device sends target information in the second cell;
[0379] The state of the second cell is used to indicate a state related to the sending of the target information;
[0380] The second access network device is the same as or different from the first access network device.
[0381] It should be noted that the relevant description of the first configuration information here can be found in the previous text and will not be repeated here.
[0382] Optionally, the terminal is further configured to: send first information in the first cell according to the first configuration information;
[0383] The first access network device is further configured to: receive the first information in the first cell;
[0384] The first information is used to request or indicate at least one of the following:
[0385] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0386] The second access network device sends target information in the second cell.
[0387] It should be noted that the relevant description of the first information here can be found in the previous article and will not be repeated here.
[0388] Optionally, when the second cell includes a third cell group and the first access network device is different from the second access network device, the first access network device is further configured to: send second information;
[0389] The system further comprises:
[0390] A second access network device, configured to receive the second information;
[0391] The third cell group belongs to the second access network device, and the third cell group includes at least one cell other than the first cell;
[0392] The second information is used to request or indicate at least one of the following:
[0393] The third cell group changes from an energy-saving state to a non-energy-saving state;
[0394] The second access network device sends target information in the third cell group.
[0395] It should be noted that the relevant description of the second information here can be found in the previous article and will not be repeated here.
[0396] It can be understood that the terminal can also execute other steps in the interaction method related to the network status applied to the terminal in the previous text, and the first access network device can also execute other steps in the interaction method related to the network status applied to the first access network device in the previous text, and the relevant descriptions of these steps and the descriptions of the information interacted by these steps can be found in the previous text and will not be repeated here.
[0397] In summary, the specific implementation of the network status-related interaction method of the embodiment of the present application can be shown in FIG4 .
[0398] The following describes the specific implementation process of Figure 4, which specifically includes the following steps 401 to 405:
[0399] Step 401: The first cell sends first configuration information to the terminal;
[0400] The first cell is in an energy-saving state or a non-energy-saving state;
[0401] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0402] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0403] The second cell sends target information (e.g., SIB1);
[0404] The second cell includes at least one of the first cell and the third cell group, and the third cell group includes at least one cell other than the first cell (for example, the third cell group includes at least one neighboring cell of the first cell).
[0405] Exemplarily, the first cell may configure the terminal to request or instruct the second cell to transition from the energy-saving state to the non-energy-saving state, thereby periodically sending SIB1;
[0406] Exemplarily, the first cell may also configure the terminal to request or instruct the second cell to send SIB1 n times, but the state does not change to the non-energy-saving state, where n is a positive integer.
[0407] In addition, the first configuration information includes at least one of the following:
[0408] an identifier of a cell to which the first configuration information applies;
[0409] a reference cell for at least one of the time domain and the frequency domain of the first configuration information;
[0410] First indication information, used to instruct: the terminal to send the first information to a cell that is in an energy-saving state and needs to perform a target behavior, or, that is, the terminal to send the first information to a cell in a non-energy-saving state, where the target behavior includes at least one of changing from an energy-saving state to a non-energy-saving state and sending target information, and the first information is used to request or instruct at least one of the following: the state of a second cell changes from an energy-saving state to a non-energy-saving state, and the second cell sends the target information;
[0411] The second indication information is used to instruct: under the first condition, the terminal sends the first information to a cell that is in an energy-saving state and needs to perform a target behavior; under the second condition, the terminal sends the first information to a cell that is not in an energy-saving state;
[0412] The third indication information is used to instruct the terminal to send the first information through at least one of the PRACH, PUSCH, and PUCCH;
[0413] Fourth indication information, used to indicate whether the terminal monitors or receives feedback information, where the feedback information is used to indicate feedback of at least one of: a cell in an energy-saving state transitioning to a non-energy-saving state and sending target information;
[0414] The fifth indication information is used to determine whether the terminal can reside in the second cell.
[0415] Here, for the relevant description of the various contents included in the first configuration information, please refer to the above description and will not be repeated here.
[0416] The reference cell includes at least one of the following:
[0417] a cell receiving the first information;
[0418] The cell requested or indicated by the terminal;
[0419] First District;
[0420] The third cell group.
[0421] It should be noted that the relevant description about the reference cell can be found in the above description and will not be repeated here.
[0422] Optionally, when one / some / all cells in the second cell perform the target behavior (i.e., change from an energy-saving state to a non-energy-saving state and / or send target information), the first configuration can be updated in the first cell, or the first configuration can not be updated; where "updating the first configuration" means deleting the configuration of the cell in the second cell that performs the target behavior from the first configuration information; and the first cell can notify the terminal of the change in the first configuration information, or not notify the terminal of the change in the first configuration information.
[0423] The specific method of notifying the terminal that the first configuration information has changed includes at least one of the following:
[0424] Notify through short message;
[0425] Notified via updated system information.
[0426] The specific method of “not notifying the terminal of the change in the first configuration information” includes at least one of the following:
[0427] In the case where the first configuration information is sent through a newly defined or existing dedicated signaling, if the first configuration information is updated, the first cell resends the dedicated signaling;
[0428] In the case where the first configuration information is sent through newly defined or existing system information, if the first configuration information is updated, the first cell resends the short message to notify the terminal.
[0429] Step 402: The terminal sends first information to the first cell according to the first configuration information;
[0430] The first information is used to request or indicate at least one of the following:
[0431] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0432] The second cell sends target information.
[0433] In addition, the triggering condition for the terminal to send the first information to the first cell may include at least one of the following:
[0434] The first configuration information indicates that: a method for the terminal to request / instruct a cell in an energy-saving state to change to a non-energy-saving state is: the terminal sends first information to a cell in a non-energy-saving state (for example, a cell where the terminal is camped);
[0435] The terminal meets the cell reselection conditions, and the candidate cell is a cell in energy-saving state.
[0436] In addition, the first information includes at least one of the following:
[0437] a first identifier, wherein the first identifier includes an identifier of a cell that needs to be changed from an energy-saving state to a non-energy-saving state;
[0438] a second identifier, where the second identifier includes an identifier of a cell that needs to send target information and is in an energy-saving state;
[0439] a third identifier and a cell measurement result of a cell corresponding to the third identifier, wherein the third identifier includes an identifier of a cell in an energy-saving state;
[0440] a fourth identifier, the fourth identifier including an identifier of a cell that is in an energy-saving state and needs to be changed to a non-energy-saving state and needs to send target information;
[0441] First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state;
[0442] Second reason information, used to indicate the reason why the cell in energy-saving state sends the target information;
[0443] First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state;
[0444] Second requirement information, used to indicate a requirement for a cell in an energy-saving state to send target information;
[0445] Terminal capability information.
[0446] Here, for the relevant description of the various contents included in the first information, please refer to the above description and will not be repeated here.
[0447] Optionally, after the terminal sends the first information to the first cell according to the first configuration information, the terminal's behavior may include at least one of the following:
[0448] Monitor / receive feedback information from the first cell (such as RAR, MsgB, Msg4);
[0449] Do not monitor / receive feedback information from the first cell, but directly determine whether the cell in the energy-saving state is changed to the non-energy-saving state (for example, after sending the first information, the terminal directly judges or determines whether the energy-saving cell is changed to the non-energy-saving state, rather than waiting for feedback from the first cell).
[0450] Among them, after the first cell receives the first information, if the second cell includes the first cell, the first cell can perform at least one of the following according to the first information: switch to a non-energy-saving state, send target information; if the second cell includes a third cell group, execute step 403.
[0451] Step 403: The first cell sends the second information to the third cell group;
[0452] The third cell group here may include at least one of the following:
[0453] At least one of the cells to which the first configuration information applies (for example, if the cells to which the first configuration information applies are cell 2, cell 3, and cell 4, the third cell group may include at least one of cell 2, cell 3, and cell 4);
[0454] At least one of the cells identified by the first identifier included in the first information (ie, at least one cell that needs to be transitioned from an energy-saving state to a non-energy-saving state);
[0455] At least one of the cells identified by the second identifier included in the first information (i.e., at least one cell that needs to send target information and is in an energy-saving state);
[0456] The first cell selects at least one cell from the cells with the third identifier according to the measurement results of the cells with the third identifier included in the first information (for example, several cells with the best measurement results are selected as the second cells);
[0457] At least one of the cells identified by the fourth identifier included in the first information (ie, at least one cell that is in an energy-saving state and needs to be transitioned to a non-energy-saving state and needs to send target information).
[0458] The second information may be carried by at least one of the following:
[0459] Existing messages; for example, enhancing existing messages (adding a field carrying the second information to the existing message), such as enhancing the XN SETUP REQUEST message and the NG-RAN NODE CONFIGURATION UPDATE message;
[0460] Newly defined message.
[0461] The second information may include at least one of the following:
[0462] First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state;
[0463] Second reason information, used to indicate the reason why the cell in energy-saving state sends the target information;
[0464] First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state;
[0465] Second requirement information, used to indicate a requirement for a cell in an energy-saving state to send target information;
[0466] Terminal capability information.
[0467] Here, for the relevant description of the various contents included in the second information, please refer to the above description and will not be repeated here.
[0468] Step 404: After receiving the second information, the second cell determines whether to transition from an energy-saving state to a non-energy-saving state; if so, adjusts the transmission of corresponding information (e.g., SIB1 changes from non-transmission to transmission, and SSB changes from a large cycle to a normal cycle);
[0469] Optionally, the second cell sends third information to the first cell;
[0470] The third information includes at least one of the following:
[0471] Indication information of whether the third cell group is changed to a non-energy-saving state;
[0472] Indication information of whether the third cell group sends target information;
[0473] The third characteristic information is used to indicate the information transmission characteristics after the third cell group changes to the non-energy-saving state; for example, duration (for example, the specific duration of sending SIB1) and number of times (for example, the specific number of times SIB1 is sent);
[0474] The fourth characteristic information is used to indicate the characteristics of the target information sent by the third cell group.
[0475] The third information is carried in at least one of the following items:
[0476] Existing messages; for example, enhancing existing messages (adding a field that carries third information to an existing message), such as enhancing the XN SETUP RESPONSE message and the NG-RAN NODE CONFIGURATION UPDATE ACKNOWLEDGE message;
[0477] Newly defined message.
[0478] Step 405: After receiving the third information, the first cell sends feedback information to the terminal;
[0479] The feedback information includes at least one of the following:
[0480] Sixth indication information, used to indicate whether the cell in the energy-saving state is changed to the non-energy-saving state;
[0481] First characteristic information, used to indicate information transmission characteristics after the cell in the energy-saving state changes to the non-energy-saving state;
[0482] seventh indication information, used to indicate whether the cell in the energy-saving state sends target information;
[0483] The second characteristic information is used to indicate the characteristics of sending target information by the cell in the energy-saving state.
[0484] In addition, the feedback information is indicated in at least one of the following ways:
[0485] Implicit way, explicit way.
[0486] It is understandable that the description of sending feedback information in an implicit manner and an explicit manner can be found in the above description and will not be repeated here.
[0487] It should be noted that FIG4 only shows the main information transmitted in each step.
[0488] The embodiment of the present application provides an interactive method related to network status, and the execution subject may be an interactive device related to network status. In the embodiment of the present application, the interactive method related to network status is performed by an interactive device related to network status as an example to illustrate the interactive device related to network status provided in the embodiment of the present application.
[0489] 5 , an embodiment of the present application provides an interactive device related to network status, which is applied to a terminal. The interactive device 50 related to network status may include the following modules:
[0490] A first receiving module 501 is configured to receive first configuration information sent by a first access network device in a first cell;
[0491] The first cell is in a non-energy-saving state or an energy-saving state;
[0492] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0493] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0494] The second access network device sends target information in the second cell;
[0495] The state of the second cell is used to indicate a state related to the sending of the target information;
[0496] The second access network device is the same as or different from the first access network device.
[0497] Optionally, the second cell includes at least one of the following:
[0498] the first cell;
[0499] A third cell group, wherein the third cell group includes at least one cell except the first cell.
[0500] Optionally, the first configuration information includes at least one of the following:
[0501] an identifier of a cell to which the first configuration information applies;
[0502] a reference cell for at least one of the time domain and frequency domain items of the first configuration information;
[0503] The first indication information is used to instruct: the terminal to send the first information to the access network device in a cell that is in an energy-saving state and needs to perform a target behavior, or the terminal to send the first information to the access network device in a cell that is in a non-energy-saving state, where the target behavior includes at least one of changing from the energy-saving state to the non-energy-saving state and sending target information, and the first information is used to request or instruct at least one of the following: the state of the second cell is changed from the energy-saving state to the non-energy-saving state, and the second access network device sends the target information in the second cell;
[0504] The second indication information is used to instruct: under a first condition, the terminal is in a cell that is in an energy-saving state and needs to perform the target behavior, to send the first information to the access network device; under a second condition, the terminal is in a cell that is not in an energy-saving state, to send the first information to the access network device;
[0505] The third indication information is used to instruct the terminal to send the first information through at least one of a physical random access channel PRACH, a physical uplink shared channel PUSCH, and a physical uplink control channel PUCCH;
[0506] Fourth indication information, used to indicate whether the terminal monitors or receives feedback information, where the feedback information is used to indicate feedback of at least one of: a cell in an energy-saving state transitioning to a non-energy-saving state and sending target information;
[0507] The fifth indication information is used to determine whether the terminal can reside in the second cell.
[0508] Optionally, the reference cell includes at least one of the following:
[0509] a cell receiving the first information;
[0510] a cell requested or indicated by the terminal;
[0511] the first cell;
[0512] A third cell group, wherein the third cell group includes at least one cell except the first cell.
[0513] Optionally, the first configuration information is carried in at least one of the following:
[0514] Newly defined system messages;
[0515] Existing system messages;
[0516] Newly defined proprietary signaling;
[0517] Existing proprietary signaling.
[0518] Optionally, the device further comprises:
[0519] A second sending module, configured to send first information to the first access network device in the first cell according to the first configuration information;
[0520] The first information is used to request or indicate at least one of the following:
[0521] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0522] The second access network device sends target information in the second cell.
[0523] Optionally, the second sending module is specifically configured to:
[0524] In at least one of the following cases, the first information is sent to the first access network device in the first cell:
[0525] The first configuration information includes first indication information, and the first indication information is used to indicate that: the terminal sends the first information to the access network device in a cell in a non-energy-saving state, and the first cell is in a non-energy-saving state;
[0526] The first configuration information includes second indication information, where the second indication information is used to instruct the terminal to send the first information to the access network device in a cell in a non-energy-saving state under a second condition, and the terminal determines that the second condition is met and the first cell is in a non-energy-saving state;
[0527] The terminal meets the cell reselection condition, and at least one candidate cell corresponding to the cell reselection is in an energy-saving state;
[0528] The first configuration information includes fifth indication information, and the terminal determines, according to the fifth indication information, that the terminal can reside in at least one of the second cells.
[0529] Optionally, the first information includes at least one of the following:
[0530] a first identifier, wherein the first identifier includes an identifier of a cell that needs to be changed from an energy-saving state to a non-energy-saving state;
[0531] a second identifier, where the second identifier includes an identifier of a cell that needs to send target information and is in an energy-saving state;
[0532] a third identifier and a cell measurement result corresponding to the third identifier, wherein the third identifier includes an identifier of a cell in an energy-saving state;
[0533] a fourth identifier, the fourth identifier including an identifier of a cell that is in an energy-saving state and needs to be changed to a non-energy-saving state, and an identifier of a cell that needs to send target information and is in an energy-saving state;
[0534] a fifth identifier, the fifth identifier including an identifier of a cell to which target information needs to be sent;
[0535] First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state;
[0536] Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information;
[0537] First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state;
[0538] The second requirement information is used to indicate a requirement for sending target information;
[0539] Terminal capability information.
[0540] Optionally, the second sending module sending the first information to the first access network device in the first cell includes:
[0541] The first information is sent to the first access network device in the first cell through at least one of PRACH, PUSCH, and PUCCH.
[0542] Optionally, the device further comprises at least one of the following:
[0543] A first processing module is configured to monitor or receive, in the first cell, feedback information sent by the first access network device, wherein the feedback information is used to indicate feedback of at least one of: a transition of the cell in the energy-saving state to the non-energy-saving state and sending target information;
[0544] A second processing module is used to determine whether the cell in the energy-saving state is changed to the non-energy-saving state;
[0545] The third processing module is used to determine whether the access network device sends target information in a cell in an energy-saving state.
[0546] Optionally, the feedback information includes at least one of the following:
[0547] Sixth indication information, used to indicate whether the cell in the energy-saving state is changed to the non-energy-saving state;
[0548] First characteristic information, used to indicate information transmission characteristics after the cell in the energy-saving state changes to the non-energy-saving state;
[0549] seventh indication information, used to indicate whether the access network device sends target information in a cell in an energy-saving state;
[0550] The second characteristic information is used to indicate a characteristic of the access network device sending target information in a cell in an energy-saving state.
[0551] Optionally, the feedback information is indicated in at least one of the following ways: implicitly or explicitly.
[0552] Optionally, the device further comprises:
[0553] A second receiving module is configured to receive, in the first cell, an eighth indication message sent by the first access network device when at least some cells in the second cell execute the target behavior, wherein the eighth indication information is used to indicate that the first configuration information is updated, and the target behavior includes at least one of changing from an energy-saving state to a non-energy-saving state and sending target information.
[0554] Optionally, the eighth indication information is carried in at least one of the following items:
[0555] Short messages, updated system information.
[0556] Optionally, the target information includes at least one of the following:
[0557] Synchronization signal block SSB, first system information block SIB1.
[0558] In the embodiments of the present application, the network status interaction device can be an electronic device, such as an electronic device with an operating system, or a component of an electronic device, such as an integrated circuit or chip. The electronic device can be a terminal. For example, the terminal can include but is not limited to the types of terminal 11 listed above, and the embodiments of the present application do not specifically limit this.
[0559] The network status-related interaction device provided in the embodiment of the present application can implement the various processes implemented in the method embodiment of Figure 2 and achieve the same technical effect. To avoid repetition, it will not be repeated here.
[0560] 6 , an embodiment of the present application provides an apparatus for interacting with a network state, which is applied to a first access network device. The apparatus 60 for interacting with a network state may include the following modules:
[0561] A first sending module 601 is configured to send first configuration information to a terminal in a first cell;
[0562] The first cell is in a non-energy-saving state or an energy-saving state;
[0563] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0564] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0565] The second access network device sends target information in the second cell;
[0566] The state of the second cell is used to indicate a state related to the sending of the target information;
[0567] The second access network device is the same as or different from the first access network device.
[0568] Optionally, the second cell includes at least one of the following:
[0569] the first cell;
[0570] A third cell group, wherein the third cell group includes at least one cell except the first cell.
[0571] Optionally, the first configuration information includes at least one of the following:
[0572] an identifier of a cell to which the first configuration information applies;
[0573] a reference cell for at least one of the time domain and frequency domain items of the first configuration information;
[0574] The first indication information is used to instruct: the terminal to send the first information to the access network device in a cell that is in an energy-saving state and needs to perform a target behavior, or the terminal to send the first information to the access network device in a cell that is in a non-energy-saving state, where the target behavior includes at least one of changing from the energy-saving state to the non-energy-saving state and sending target information, and the first information is used to request or instruct at least one of the following: the state of the second cell is changed from the energy-saving state to the non-energy-saving state, and the second access network device sends the target information in the second cell;
[0575] The second indication information is used to instruct: under a first condition, the terminal is in a cell that is in an energy-saving state and needs to perform the target behavior, to send the first information to the access network device; under a second condition, the terminal is in a cell that is not in an energy-saving state, to send the first information to the access network device;
[0576] The third indication information is used to instruct the terminal to send the first information through at least one of a physical random access channel PRACH, a physical uplink shared channel PUSCH, and a physical uplink control channel PUCCH;
[0577] Fourth indication information, used to indicate whether the terminal monitors or receives feedback information, where the feedback information is used to indicate feedback of at least one of: a cell in an energy-saving state transitioning to a non-energy-saving state and sending target information;
[0578] The fifth indication information is used to determine whether the terminal can reside in the second cell.
[0579] Optionally, the reference cell includes at least one of the following:
[0580] a cell receiving the first information;
[0581] a cell requested or indicated by the terminal;
[0582] the first cell;
[0583] A third cell group, wherein the third cell group includes at least one cell except the first cell.
[0584] Optionally, the first configuration information is carried in at least one of the following:
[0585] Newly defined system messages;
[0586] Existing system messages;
[0587] Newly defined proprietary signaling;
[0588] Already signaling.
[0589] Optionally, the device further comprises:
[0590] An interaction module is used to exchange the first configuration information with the second access network device when the first access network device and the second access network device are different.
[0591] Optionally, the device further comprises:
[0592] a third receiving module, configured to receive, in the first cell, first information sent by the terminal;
[0593] The first information is used to request or indicate at least one of the following:
[0594] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0595] The second access network device sends target information in the second cell.
[0596] Optionally, the first information includes at least one of the following:
[0597] a first identifier, wherein the first identifier includes an identifier of a cell that needs to be changed from an energy-saving state to a non-energy-saving state;
[0598] a second identifier, where the second identifier includes an identifier of a cell that needs to send target information and is in an energy-saving state;
[0599] a third identifier and a cell measurement result corresponding to the third identifier, wherein the third identifier includes an identifier of a cell in an energy-saving state;
[0600] a fourth identifier, the fourth identifier including an identifier of a cell that is in an energy-saving state and needs to be changed to a non-energy-saving state, and an identifier of a cell that needs to send target information and is in an energy-saving state;
[0601] a fifth identifier, the fifth identifier including an identifier of a cell to which target information needs to be sent;
[0602] First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state;
[0603] Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information;
[0604] First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state;
[0605] The second requirement information is used to indicate a requirement for sending target information;
[0606] Terminal capability information.
[0607] Optionally, the third receiving module receiving, in the first cell, the first information sent by the terminal includes:
[0608] The first information sent by the terminal is received in the first cell through at least one of PRACH, PUSCH, and PUCCH.
[0609] Optionally, the device further comprises:
[0610] a third sending module, configured to send second information to the second access network device when the second cell includes a third cell group and the first access network device and the second access network device are different; the third cell group belongs to the second access network device;
[0611] The second information is used to request or indicate at least one of the following:
[0612] The third cell group changes from an energy-saving state to a non-energy-saving state;
[0613] The second access network device sends target information in the third cell group.
[0614] Optionally, the third cell group includes at least one of the following:
[0615] at least one of the cells to which the first configuration information applies;
[0616] at least one of the cells with the first identification included in the first information received by the first access network device, where the first identification includes an identification of a cell that needs to be transitioned from an energy-saving state to a non-energy-saving state;
[0617] at least one of the cells with the second identifier included in the first information, where the second identifier includes an identifier of a cell that needs to send target information and is in an energy-saving state;
[0618] At least one cell selected by the first cell from the cells with a third identifier based on a measurement result of the cell with a third identifier, where the third identifier includes an identifier of a cell in an energy-saving state;
[0619] at least one of the cells with the fourth identifier included in the first information received by the first access network device, the fourth identifier including an identifier of a cell in an energy-saving state that needs to be changed to a non-energy-saving state, and an identifier of a cell in an energy-saving state that needs to send target information;
[0620] At least one of the cells with the fifth identifier included in the first information received by the first access network device, the fifth identifier includes an identifier of a cell to which target information needs to be sent.
[0621] Optionally, the second information is carried in at least one of the following:
[0622] There is news;
[0623] Newly defined message.
[0624] Optionally, the second information includes at least one of the following:
[0625] First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state;
[0626] Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information;
[0627] First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state;
[0628] The second requirement information is used to indicate a requirement for sending target information;
[0629] capability information of the terminal.
[0630] Optionally, the device further comprises:
[0631] a fourth receiving module, configured to receive third information sent by the second access network device;
[0632] The third information includes at least one of the following:
[0633] Indication information of whether the third cell group is changed to a non-energy-saving state;
[0634] whether the second access network device sends indication information of target information in the third cell group;
[0635] third characteristic information, used to indicate information sending characteristics after the third cell group changes to a non-energy-saving state;
[0636] The fourth characteristic information is used to indicate the characteristics of the second access network device sending target information in the third cell group.
[0637] Optionally, the third information is carried in at least one of the following:
[0638] There is news;
[0639] Newly defined message.
[0640] Optionally, the device further comprises:
[0641] The fourth sending module is configured to send feedback information to the terminal in the first cell, wherein the feedback information is used to indicate that the cell in the energy-saving state is converted to a non-energy-saving state and to send feedback of at least one item of the target information.
[0642] Optionally, the feedback information includes at least one of the following:
[0643] Sixth indication information, used to indicate whether the cell in the energy-saving state is changed to the non-energy-saving state;
[0644] First characteristic information, used to indicate information transmission characteristics after the cell in the energy-saving state changes to the non-energy-saving state;
[0645] seventh indication information, used to indicate whether the access network device sends target information in a cell in an energy-saving state;
[0646] The second characteristic information is used to indicate a characteristic of the access network device sending target information in a cell in an energy-saving state.
[0647] Optionally, the feedback information is indicated in at least one of the following ways: implicitly or explicitly.
[0648] Optionally, the device further comprises:
[0649] a fourth processing module, configured to update or not update the first configuration information when at least some of the second cells perform a target behavior, wherein the target behavior includes at least one of changing from an energy-saving state to a non-energy-saving state and sending target information;
[0650] A notification module is used to send eighth indication information to the terminal in the first cell when the first configuration information is updated, or not to notify the terminal of the update of the first configuration information in the first cell, wherein the eighth indication information is used to indicate that the first configuration information is updated.
[0651] Optionally, the fourth processing module updates the first configuration information, including:
[0652] The configuration information applicable to a fourth cell in the first configuration information is deleted, wherein the fourth cell includes the cell in the second cell that performs the target behavior.
[0653] Optionally, the eighth indication information is carried in at least one of the following items:
[0654] Short messages, updated system information.
[0655] Optionally, the notification module does not notify the terminal of the first configuration information update in the first cell, including at least one of the following:
[0656] When the first cell sends the first configuration information through a newly defined or existing dedicated signaling and the first configuration information is updated, the first cell does not resend the dedicated signaling;
[0657] When the first cell sends the first configuration information through newly defined or existing system information and the first configuration information is updated, the first cell does not send a short message to notify the terminal.
[0658] Optionally, the target information includes at least one of the following:
[0659] Synchronization signal block SSB, first system information block SIB1.
[0660] The network status interaction device in the embodiments of the present application can be an electronic device, such as an electronic device with an operating system, or a component of an electronic device, such as an integrated circuit or chip. The electronic device can be an access network device. Exemplary access network devices include, but are not limited to, the types of access network devices listed above, and are not specifically limited in the embodiments of the present application.
[0661] The network status-related interaction device provided in the embodiment of the present application can implement the various processes implemented in the method embodiment of Figure 3 and achieve the same technical effect. To avoid repetition, it will not be repeated here.
[0662] As shown in Figure 7, an embodiment of the present application further provides a communication device 700, including a processor 701 and a memory 702. The memory 702 stores a program or instruction that can be run on the processor 701. For example, when the communication device 700 is a terminal, the program or instruction, when executed by the processor 701, implements the various steps of the embodiment of the above-mentioned interaction method related to the network status applied to the terminal, and can achieve the same technical effect. When the communication device 700 is an access network device, the program or instruction, when executed by the processor 701, implements the various steps of the embodiment of the above-mentioned interaction method related to the network status applied to the first access network device, and can achieve the same technical effect. To avoid repetition, it will not be repeated here.
[0663] The present application also provides a terminal including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is configured to execute a program or instruction to implement the steps of the method embodiment shown in FIG2 . This terminal embodiment corresponds to the aforementioned terminal-side method embodiment, and each implementation process and implementation method of the aforementioned method embodiment is applicable to this terminal embodiment and can achieve the same technical effects. Specifically, FIG8 is a schematic diagram of the hardware structure of a terminal implementing an embodiment of the present application.
[0664] The terminal 800 includes but is not limited to: a radio frequency unit 801, a network module 802, an audio output unit 803, an input unit 804, a sensor 805, a display unit 806, a user input unit 807, an interface unit 808, a memory 809 and at least some of the components of the processor 810.
[0665] Those skilled in the art will appreciate that the terminal 800 may also include a power supply (such as a battery) to power various components. The power supply may be logically connected to the processor 810 via a power management system, thereby enabling the power management system to manage charging, discharging, and power consumption. The terminal structure shown in FIG8 does not limit the terminal. The terminal may include more or fewer components than shown, or may combine certain components, or have different component arrangements, which will not be described in detail here.
[0666] It should be understood that in an embodiment of the present application, the input unit 804 may include a graphics processing unit (GPU) 8041 and a microphone 8042, and the graphics processor 8041 processes the image data of a static picture or video obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. The display unit 806 may include a display panel 8061, and the display panel 8061 may be configured in the form of a liquid crystal display, an organic light emitting diode, etc. The user input unit 807 includes a touch panel 8071 and at least one of other input devices 8072. The touch panel 8071 is also called a touch screen. The touch panel 8071 may include two parts: a touch detection device and a touch controller. Other input devices 8072 may include, but are not limited to, a physical keyboard, function keys (such as volume control keys, switch keys, etc.), a trackball, a mouse, and a joystick, which will not be repeated here.
[0667] In the embodiment of the present application, after receiving downlink data from a network-side device, the radio frequency unit 801 may transmit the data to the processor 810 for processing. Furthermore, the radio frequency unit 801 may send uplink data to the network-side device. Typically, the radio frequency unit 801 includes, but is not limited to, an antenna, an amplifier, a transceiver, a coupler, a low-noise amplifier, a duplexer, and the like.
[0668] The memory 809 can be used to store software programs or instructions and various data. The memory 809 may mainly include a first storage area for storing programs or instructions and a second storage area for storing data, wherein the first storage area may store an operating system, applications or instructions required for at least one function (such as a sound playback function, an image playback function, etc.). In addition, the memory 809 may include a volatile memory or a non-volatile memory. Among them, the non-volatile memory may be a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically erasable programmable read-only memory (EEPROM), or a flash memory. The volatile memory may be random access memory (RAM), static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct RAM bus random access memory (DRRAM). The memory 809 in the embodiment of the present application includes but is not limited to these and any other suitable types of memory.
[0669] Processor 810 may include one or more processing units. Optionally, processor 810 integrates an application processor and a modem processor. The application processor primarily handles operations related to the operating system, user interface, and application programs, while the modem processor primarily processes wireless communication signals, such as a baseband processor. It is understood that the modem processor may not be integrated into processor 810.
[0670] The radio frequency unit 801 is configured to: receive first configuration information sent by a first access network device in a first cell;
[0671] The first cell is in a non-energy-saving state or an energy-saving state;
[0672] The first configuration information is used by the terminal to request or indicate at least one of the following:
[0673] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0674] The second access network device sends target information in the second cell;
[0675] The state of the second cell is used to indicate a state related to the sending of the target information;
[0676] The second access network device is the same as or different from the first access network device.
[0677] Optionally, the second cell includes at least one of the following:
[0678] the first cell;
[0679] A third cell group, wherein the third cell group includes at least one cell except the first cell.
[0680] Optionally, the first configuration information includes at least one of the following:
[0681] an identifier of a cell to which the first configuration information applies;
[0682] a reference cell for at least one of the time domain and frequency domain items of the first configuration information;
[0683] The first indication information is used to instruct: the terminal to send the first information to the access network device in a cell that is in an energy-saving state and needs to perform a target behavior, or the terminal to send the first information to the access network device in a cell that is in a non-energy-saving state, where the target behavior includes at least one of changing from the energy-saving state to the non-energy-saving state and sending target information, and the first information is used to request or instruct at least one of the following: the state of the second cell is changed from the energy-saving state to the non-energy-saving state, and the second access network device sends the target information in the second cell;
[0684] The second indication information is used to instruct: under a first condition, the terminal is in a cell that is in an energy-saving state and needs to perform the target behavior, to send the first information to the access network device; under a second condition, the terminal is in a cell that is not in an energy-saving state, to send the first information to the access network device;
[0685] The third indication information is used to instruct the terminal to send the first information through at least one of a physical random access channel PRACH, a physical uplink shared channel PUSCH, and a physical uplink control channel PUCCH;
[0686] Fourth indication information, used to indicate whether the terminal monitors or receives feedback information, where the feedback information is used to indicate feedback of at least one of: a cell in an energy-saving state transitioning to a non-energy-saving state and sending target information;
[0687] The fifth indication information is used to determine whether the terminal can reside in the second cell.
[0688] Optionally, the reference cell includes at least one of the following:
[0689] a cell receiving the first information;
[0690] a cell requested or indicated by the terminal;
[0691] the first cell;
[0692] A third cell group, wherein the third cell group includes at least one cell except the first cell.
[0693] Optionally, the first configuration information is carried in at least one of the following:
[0694] Newly defined system messages;
[0695] Existing system messages;
[0696] Newly defined proprietary signaling;
[0697] Existing proprietary signaling.
[0698] Optionally, the radio frequency unit 801 is further configured to:
[0699] Sending first information to the first access network device in the first cell according to the first configuration information;
[0700] The first information is used to request or indicate at least one of the following:
[0701] The state of the second cell changes from an energy-saving state to a non-energy-saving state;
[0702] The second access network device sends target information in the second cell.
[0703] Optionally, the radio frequency unit 801 sends the first information to the first access network device in the first cell according to the first configuration information, including:
[0704] In at least one of the following cases, the first information is sent to the first access network device in the first cell:
[0705] The first configuration information includes first indication information, and the first indication information is used to indicate that: the terminal sends the first information to the access network device in a cell in a non-energy-saving state, and the first cell is in a non-energy-saving state;
[0706] The first configuration information includes second indication information, where the second indication information is used to instruct the terminal to send the first information to the access network device in a cell in a non-energy-saving state under a second condition, and the terminal determines that the second condition is met and the first cell is in a non-energy-saving state;
[0707] The terminal meets the cell reselection condition, and at least one candidate cell corresponding to the cell reselection is in an energy-saving state;
[0708] The first configuration information includes fifth indication information, and the terminal determines, according to the fifth indication information, that the terminal can reside in at least one of the second cells.
[0709] Optionally, the first information includes at least one of the following:
[0710] a first identifier, wherein the first identifier includes an identifier of a cell that needs to be changed from an energy-saving state to a non-energy-saving state;
[0711] a second identifier, where the second identifier includes an identifier of a cell that needs to send target information and is in an energy-saving state;
[0712] a third identifier and a cell measurement result corresponding to the third identifier, wherein the third identifier includes an identifier of a cell in an energy-saving state;
[0713] a fourth identifier, the fourth identifier including an identifier of a cell that is in an energy-saving state and needs to be changed to a non-energy-saving state, and an identifier of a cell that needs to send target information and is in an energy-saving state;
[0714] a fifth identifier, the fifth identifier including an identifier of a cell to which target information needs to be sent;
[0715] First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state;
[0716] Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information;
[0717] First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state;
[0718] The second requirement information is used to indicate a requirement for sending target information;
[0719] Terminal capability information.
[0720] Optionally, the radio frequency unit 801 sends the first information to the first access network device in the first cell, including:
[0721] The first information is sent to the first access network device in the first cell through at least one of PRACH, PUSCH, and PUCCH.
[0722] Optionally, the terminal satisfies at least one of the following:
[0723] The radio frequency unit 801 is configured to monitor or receive feedback information sent by the first access network device in the first cell, wherein the feedback information is used to indicate feedback of at least one of the cell in the energy-saving state transitioning to the non-energy-saving state and sending target information;
[0724] The processor 810 is configured to determine whether a cell in an energy-saving state is changed to a non-energy-saving state;
[0725] The processor 810 is configured to determine whether the access network device sends target information in a cell in an energy-saving state.
[0726] Optionally, the feedback information includes at least one of the following:
[0727] Sixth indication information, used to indicate whether the cell in the energy-saving state is changed to the non-energy-saving state;
[0728] First characteristic information, used to indicate information transmission characteristics after the cell in the energy-saving state changes to the non-energy-saving state;
[0729] seventh indication information, used to indicate whether the access network device sends target information in a cell in an energy-saving state;
[0730] The second characteristic information is used to indicate a characteristic of the access network device sending target information in a cell in an energy-saving state.
[0731] Optionally, the feedback information is indicated in at least one of the following ways: implicitly or explicitly.
[0732] Optionally, the radio frequency unit 801 is further configured to:
[0733] In a case where at least some cells in the second cell execute the target behavior, the first cell receives the eighth indication information sent by the first access network device, wherein the eighth indication information is used to indicate that the first configuration information is updated, and the target behavior includes at least one of changing from an energy-saving state to a non-energy-saving state and sending target information.
[0734] Optionally, the eighth indication information is carried in at least one of the following items:
[0735] Short messages, updated system information.
[0736] Optionally, the target information includes at least one of the following:
[0737] Synchronization signal block SSB, first system information block SIB1.
[0738] It can be understood that the implementation process of each implementation method mentioned in this embodiment can refer to the relevant description of the method embodiment and achieve the same or corresponding technical effects. To avoid repetition, it will not be described here.
[0739] The present application also provides a network-side device, including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is configured to execute a program or instruction to implement the steps of the method embodiment shown in FIG3 . This network-side device embodiment corresponds to the aforementioned network-side device method embodiment, and each implementation process and implementation method of the aforementioned method embodiment are applicable to this network-side device embodiment and can achieve the same technical effects.
[0740] Specifically, embodiments of the present application also provide a network-side device. As shown in Figure 9, the network-side device 900 includes an antenna 91, a radio frequency device 92, a baseband device 93, a processor 94, and a memory 95. Antenna 91 is connected to radio frequency device 92. In the uplink direction, radio frequency device 92 receives information via antenna 91 and sends the received information to baseband device 93 for processing. In the downlink direction, baseband device 93 processes the information to be transmitted and sends it to radio frequency device 92. Radio frequency device 92 processes the received information and then sends it through antenna 91.
[0741] The method executed by the network-side device in the above embodiment may be implemented in the baseband device 93 , which includes a baseband processor.
[0742] The baseband device 93 may include, for example, at least one baseband board, on which multiple chips are arranged, as shown in Figure 9, one of the chips is, for example, a baseband processor, which is connected to the memory 95 through a bus interface to call the program in the memory 95 and execute the network device operations shown in the above method embodiment.
[0743] The network side device may further include a network interface 96, which is, for example, a Common Public Radio Interface (CPRI).
[0744] Specifically, the network side device 900 of an embodiment of the present invention also includes: instructions or programs stored in the memory 95 and executable on the processor 94. The processor 94 calls the instructions or programs in the memory 95 to execute the methods executed by the modules shown in FIG6 and achieve the same technical effect. To avoid repetition, they will not be elaborated here.
[0745] An embodiment of the present application also provides a readable storage medium, on which a program or instruction is stored. When the program or instruction is executed by a processor, the various processes of the above-mentioned embodiment of the interaction method related to the network status are implemented, and the same technical effect can be achieved. To avoid repetition, it will not be repeated here.
[0746] The processor is the processor in the terminal described in the above embodiment. The readable storage medium includes a computer-readable storage medium, such as a computer read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk. In some examples, the readable storage medium may be a non-transitory readable storage medium.
[0747] An embodiment of the present application further provides a chip, which includes a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the various processes of the above-mentioned interaction method embodiment related to the network status, and can achieve the same technical effect. To avoid repetition, it will not be repeated here.
[0748] It should be understood that the chip mentioned in the embodiments of the present application can also be called a system-level chip, a system chip, a chip system or a system-on-chip chip, etc.
[0749] An embodiment of the present application further provides a computer program / program product, which is stored in a storage medium and is executed by at least one processor to implement the various processes of the above-mentioned embodiment of the interaction method related to the network status, and can achieve the same technical effect. To avoid repetition, it will not be repeated here.
[0750] It should be noted that, in this article, the terms "comprise", "include" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the presence of other identical elements in the process, method, article or device comprising the element. In addition, it should be pointed out that the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in the opposite order according to the functions involved. For example, the described method may be performed in an order different from that described, and various steps may also be added, omitted or combined. In addition, the features described with reference to certain examples may be combined in other examples.
[0751] Through the description of the above embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of a computer software product plus a necessary general-purpose hardware platform, or of course, by hardware. The computer software product is stored in a storage medium (such as ROM, RAM, magnetic disk, optical disk, etc.) and includes a number of instructions for enabling a terminal or network-side device to execute the methods described in each embodiment of the present application.
[0752] The embodiments of the present application are described above in conjunction with the accompanying drawings, but the present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of this application, ordinary technicians in this field can also make many forms of implementation methods without departing from the purpose of this application and the scope of protection of the claims. These implementation methods are all within the protection of this application.
Claims
1. A method for interacting with a network state, the method comprising: The terminal receives first configuration information sent by the first access network device in the first cell; The first cell is in a non-energy-saving state or an energy-saving state; The first configuration information is used by the terminal to request or indicate at least one of the following: The state of the second cell changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the second cell; The state of the second cell is used to indicate a state related to the sending of the target information; The second access network device is the same as or different from the first access network device.
2. The method for interacting with network status according to claim 1, wherein: The second cell includes at least one of the following: the first cell; A third cell group, wherein the third cell group includes at least one cell except the first cell.
3. The method for interacting with network status according to claim 1 or 2, wherein: The first configuration information includes at least one of the following: an identifier of a cell to which the first configuration information applies; a reference cell for at least one of the time domain and frequency domain items of the first configuration information; The first indication information is used to instruct: the terminal to send the first information to the access network device in a cell that is in an energy-saving state and needs to perform a target behavior, or the terminal to send the first information to the access network device in a cell that is in a non-energy-saving state, where the target behavior includes at least one of changing from the energy-saving state to the non-energy-saving state and sending target information, and the first information is used to request or instruct at least one of the following: the state of the second cell is changed from the energy-saving state to the non-energy-saving state, and the second access network device sends the target information in the second cell; The second indication information is used to instruct: under a first condition, the terminal is in a cell that is in an energy-saving state and needs to perform the target behavior, to send the first information to the access network device; under a second condition, the terminal is in a cell that is not in an energy-saving state, to send the first information to the access network device; The third indication information is used to instruct the terminal to send the first information through at least one of a physical random access channel PRACH, a physical uplink shared channel PUSCH, and a physical uplink control channel PUCCH; Fourth indication information, used to indicate whether the terminal monitors or receives feedback information, where the feedback information is used to indicate feedback of at least one of: a cell in an energy-saving state transitioning to a non-energy-saving state and sending target information; The fifth indication information is used to determine whether the terminal can reside in the second cell.
4. The method for interacting with network status according to claim 3, wherein: The reference cell includes at least one of the following: a cell receiving the first information; a cell requested or indicated by the terminal; the first cell; A third cell group, wherein the third cell group includes at least one cell except the first cell.
5. The method for interacting with network status according to any one of claims 1 to 4, wherein: The first configuration information is carried in at least one of the following: Newly defined system messages; Existing system messages; Newly defined proprietary signaling; Existing proprietary signaling.
6. The method for interacting with network status according to any one of claims 1 to 5, wherein: The method further comprises: The terminal sends first information to the first access network device in the first cell according to the first configuration information; The first information is used to request or indicate at least one of the following: The state of the second cell changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the second cell.
7. The method for interacting with network status according to claim 6, wherein: The terminal sending the first information to the first access network device in the first cell according to the first configuration information includes: In at least one of the following cases, the terminal sends the first information to the first access network device in the first cell: The first configuration information includes first indication information, and the first indication information is used to indicate that: the terminal sends the first information to the access network device in a cell in a non-energy-saving state, and the first cell is in a non-energy-saving state; The first configuration information includes second indication information, where the second indication information is used to instruct the terminal to send the first information to the access network device in a cell in a non-energy-saving state under a second condition, and the terminal determines that the second condition is met and the first cell is in a non-energy-saving state; The terminal meets the cell reselection condition, and at least one candidate cell corresponding to the cell reselection is in an energy-saving state; The first configuration information includes fifth indication information, and the terminal determines, according to the fifth indication information, that the terminal can reside in at least one of the second cells.
8. The method for interacting with network status according to claim 6 or 7, wherein: The first information includes at least one of the following: a first identifier, wherein the first identifier includes an identifier of a cell that needs to be changed from an energy-saving state to a non-energy-saving state; a second identifier, where the second identifier includes an identifier of a cell that needs to send target information and is in an energy-saving state; a third identifier and a cell measurement result corresponding to the third identifier, wherein the third identifier includes an identifier of a cell in an energy-saving state; a fourth identifier, the fourth identifier including an identifier of a cell that is in an energy-saving state and needs to be changed to a non-energy-saving state, and an identifier of a cell that needs to send target information and is in an energy-saving state; a fifth identifier, the fifth identifier including an identifier of a cell to which target information needs to be sent; First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state; Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information; First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state; The second requirement information is used to indicate a requirement for sending target information; Terminal capability information.
9. The method for interacting with a network state according to any one of claims 6 to 8, wherein: The terminal sending the first information to the first access network device in the first cell includes: The terminal sends the first information to the first access network device in the first cell through at least one of PRACH, PUSCH, and PUCCH.
10. The method for interacting with network status according to any one of claims 6 to 9, wherein: The method further comprises at least one of the following: The terminal monitors or receives feedback information sent by the first access network device in the first cell, wherein the feedback information is used to indicate feedback of at least one of: the cell in the energy-saving state is converted to the non-energy-saving state and the target information is sent; The terminal determines whether a cell in an energy-saving state is changed to a non-energy-saving state; The terminal determines whether the access network device sends target information in a cell in an energy-saving state.
11. The method for interacting with a network state according to claim 10, wherein: The feedback information includes at least one of the following: Sixth indication information, used to indicate whether the cell in the energy-saving state is changed to the non-energy-saving state; First characteristic information, used to indicate information transmission characteristics after the cell in the energy-saving state changes to the non-energy-saving state; seventh indication information, used to indicate whether the access network device sends target information in a cell in an energy-saving state; The second characteristic information is used to indicate a characteristic of the access network device sending target information in a cell in an energy-saving state.
12. The method for interacting with network status according to claim 10 or 11, wherein: The feedback information is indicated in at least one of the following ways: implicit way and explicit way.
13. The method for interacting with a network state according to any one of claims 1 to 12, wherein: The method further comprises: In a case where at least some cells in the second cell execute the target behavior, the terminal receives the eighth indication information sent by the first access network device in the first cell, wherein the eighth indication information is used to indicate that the first configuration information is updated, and the target behavior includes at least one of changing from an energy-saving state to a non-energy-saving state and sending target information.
14. The method for interacting with a network state according to claim 13, wherein: The eighth indication information is carried in at least one of the following items: Short messages, updated system information.
15. The method for interacting with network status according to any one of claims 1 to 14, wherein: The target information includes at least one of the following: Synchronization signal block SSB, first system information block SIB1.
16. A method for interacting with a network state, the method comprising: The first access network device sends first configuration information to the terminal in the first cell; The first cell is in a non-energy-saving state or an energy-saving state; The first configuration information is used by the terminal to request or indicate at least one of the following: The state of the second cell changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the second cell; The state of the second cell is used to indicate a state related to the sending of the target information; The second access network device is the same as or different from the first access network device.
17. The method for interacting with a network state according to claim 16, wherein: The second cell includes at least one of the following: the first cell; A third cell group, wherein the third cell group includes at least one cell except the first cell.
18. The method for interaction related to network status according to claim 16 or 17, wherein: The first configuration information includes at least one of the following: an identifier of a cell to which the first configuration information applies; a reference cell for at least one of the time domain and frequency domain items of the first configuration information; The first indication information is used to instruct: the terminal to send the first information to the access network device in a cell that is in an energy-saving state and needs to perform a target behavior, or the terminal to send the first information to the access network device in a cell that is in a non-energy-saving state, where the target behavior includes at least one of changing from the energy-saving state to the non-energy-saving state and sending target information, and the first information is used to request or instruct at least one of the following: the state of the second cell is changed from the energy-saving state to the non-energy-saving state, and the second access network device sends the target information in the second cell; The second indication information is used to instruct: under a first condition, the terminal is in a cell that is in an energy-saving state and needs to perform the target behavior, to send the first information to the access network device; under a second condition, the terminal is in a cell that is not in an energy-saving state, to send the first information to the access network device; The third indication information is used to instruct the terminal to send the first information through at least one of a physical random access channel PRACH, a physical uplink shared channel PUSCH, and a physical uplink control channel PUCCH; Fourth indication information, used to indicate whether the terminal monitors or receives feedback information, where the feedback information is used to indicate feedback of at least one of: a cell in an energy-saving state transitioning to a non-energy-saving state and sending target information; The fifth indication information is used to determine whether the terminal can reside in the second cell.
19. The method for interacting with a network state according to claim 18, wherein: The reference cell includes at least one of the following: a cell receiving the first information; a cell requested or indicated by the terminal; the first cell; A third cell group, wherein the third cell group includes at least one cell except the first cell.
20. The method for interacting with a network state according to any one of claims 16 to 19, wherein: The first configuration information is carried in at least one of the following: Newly defined system messages; Existing system messages; Newly defined proprietary signaling; Already signaling.
21. The method for interacting with a network state according to any one of claims 16 to 20, wherein: The method further comprises: In a case where the first access network device and the second access network device are different, the first access network device and the second access network device exchange the first configuration information.
22. The method for interacting with a network state according to any one of claims 16 to 21, wherein: The method further comprises: The first access network device receives, in the first cell, first information sent by the terminal; The first information is used to request or indicate at least one of the following: The state of the second cell changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the second cell.
23. The method for interacting with a network state according to claim 22, wherein: The first information includes at least one of the following: a first identifier, wherein the first identifier includes an identifier of a cell that needs to be changed from an energy-saving state to a non-energy-saving state; a second identifier, where the second identifier includes an identifier of a cell that needs to send target information and is in an energy-saving state; a third identifier and a cell measurement result corresponding to the third identifier, wherein the third identifier includes an identifier of a cell in an energy-saving state; a fourth identifier, the fourth identifier including an identifier of a cell that is in an energy-saving state and needs to be changed to a non-energy-saving state, and an identifier of a cell that needs to send target information and is in an energy-saving state; a fifth identifier, the fifth identifier including an identifier of a cell to which target information needs to be sent; First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state; Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information; First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state; The second requirement information is used to indicate a requirement for sending target information; Terminal capability information.
24. The method for interaction related to network status according to claim 22 or 23, wherein: The first access network device receiving, in the first cell, first information sent by the terminal, includes: The first access network device receives the first information sent by the terminal in the first cell through at least one of PRACH, PUSCH, and PUCCH.
25. The method for interacting with a network state according to any one of claims 22 to 24, wherein: The method further comprises: In a case where the second cell includes a third cell group and the first access network device and the second access network device are different, the first access network device sends second information to the second access network device; the third cell group belongs to the second access network device; The second information is used to request or indicate at least one of the following: The third cell group changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the third cell group.
26. The method for interacting with a network state according to claim 25, wherein: The third cell group includes at least one of the following: at least one of the cells to which the first configuration information applies; at least one of the cells with the first identification included in the first information received by the first access network device, where the first identification includes an identification of a cell that needs to be transitioned from an energy-saving state to a non-energy-saving state; at least one of the cells with the second identifier included in the first information, where the second identifier includes an identifier of a cell that needs to send target information and is in an energy-saving state; At least one cell selected by the first cell from the cells with a third identifier based on a measurement result of the cell with a third identifier, where the third identifier includes an identifier of a cell in an energy-saving state; at least one of the cells with the fourth identifier included in the first information received by the first access network device, the fourth identifier including an identifier of a cell in an energy-saving state that needs to be changed to a non-energy-saving state, and an identifier of a cell in an energy-saving state that needs to send target information; At least one of the cells with the fifth identifier included in the first information received by the first access network device, the fifth identifier includes an identifier of a cell to which target information needs to be sent.
27. The method for interacting with network status according to claim 25 or 26, wherein: The second information is carried in at least one of the following: There is news; Newly defined message.
28. The method for interacting with a network state according to any one of claims 25 to 27, wherein: The second information includes at least one of the following: First reason information, used to indicate the reason why the cell in the energy-saving state changes to the non-energy-saving state; Second reason information, used to indicate the reason why the terminal requests or instructs to send the target information; First requirement information, used to indicate the requirements after the cell in the energy-saving state is changed to the non-energy-saving state; The second requirement information is used to indicate a requirement for sending target information; capability information of the terminal.
29. The method for interacting with a network state according to any one of claims 25 to 28, wherein: The method further comprises: The first access network device receives third information sent by the second access network device; The third information includes at least one of the following: Indication information of whether the third cell group is changed to a non-energy-saving state; whether the second access network device sends indication information of target information in the third cell group; third characteristic information, used to indicate information sending characteristics after the third cell group changes to a non-energy-saving state; The fourth characteristic information is used to indicate the characteristics of the second access network device sending target information in the third cell group.
30. The method for interaction related to network status according to claim 29, wherein: The third information is carried in at least one of the following: There is news; Newly defined message.
31. The method for interacting with a network state according to any one of claims 22 to 30, wherein: The method further comprises: The first access network device sends feedback information to the terminal in the first cell, wherein the feedback information is used to instruct the cell in the energy-saving state to change to the non-energy-saving state and to send feedback of at least one item of the target information.
32. The method for interacting with a network state according to claim 31, wherein: The feedback information includes at least one of the following: Sixth indication information, used to indicate whether the cell in the energy-saving state is changed to the non-energy-saving state; First characteristic information, used to indicate information transmission characteristics after the cell in the energy-saving state changes to the non-energy-saving state; seventh indication information, used to indicate whether the access network device sends target information in a cell in an energy-saving state; The second characteristic information is used to indicate a characteristic of the access network device sending target information in a cell in an energy-saving state.
33. The method for interacting with a network state according to claim 31 or 32, wherein: The feedback information is indicated in at least one of the following ways: implicit way and explicit way.
34. The method for interacting with a network state according to any one of claims 16 to 33, wherein: The method further comprises: In a case where at least some of the second cells perform a target behavior, the first access network device updates or does not update the first configuration information, wherein the target behavior includes at least one of changing from an energy-saving state to a non-energy-saving state and sending target information; In the case where the first access network device updates the first configuration information, the first access network device sends eighth indication information to the terminal in the first cell, or the first access network device does not notify the terminal of the update of the first configuration information in the first cell, and the eighth indication information is used to indicate the update of the first configuration information.
35. The method for interacting with a network state according to claim 34, wherein: Updating, by the first access network device, the first configuration information includes: The first access network device deletes configuration information applicable to a fourth cell in the first configuration information, wherein the fourth cell includes the cell in the second cell that performs the target behavior.
36. The method for interacting with a network state according to claim 34 or 35, wherein: The eighth indication information is carried in at least one of the following items: Short messages, updated system information.
37. The method for interacting with a network state according to any one of claims 34 to 36, wherein: The first access network device not notifying the terminal of an update of the first configuration information in the first cell includes at least one of the following: The first access network device sends the first configuration information in the first cell through a newly defined or existing dedicated signaling, and when the first configuration information is updated, the first access network device does not resend the dedicated signaling in the first cell; The first access network device sends the first configuration information in the first cell through newly defined or existing system information, and when the first configuration information is updated, the first access network device does not send a short message in the first cell to notify the terminal.
38. The method for interacting with a network state according to any one of claims 16 to 37, wherein: The target information includes at least one of the following: Synchronization signal block SSB, first system information block SIB1.
39. An interactive system related to network status, the system comprising: The first access network device is configured to send first configuration information in the first cell; a terminal, configured to receive the first configuration information in the first cell; The first cell is in a non-energy-saving state or an energy-saving state; The first configuration information is used by the terminal to request or indicate at least one of the following: The state of the second cell changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the second cell; The state of the second cell is used to indicate a state related to the sending of the target information; The second access network device is the same as or different from the first access network device.
40. The interactive system related to network status according to claim 39, wherein: The terminal is further configured to: send first information in the first cell according to the first configuration information; The first access network device is further configured to: receive the first information in the first cell; The first information is used to request or indicate at least one of the following: The state of the second cell changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the second cell.
41. The interactive system related to network status according to claim 40, wherein: In a case where the second cell includes a third cell group and the first access network device is different from the second access network device, the first access network device is further configured to: send second information; The system further comprises: A second access network device, configured to receive the second information; The third cell group belongs to the second access network device, and the third cell group includes at least one cell other than the first cell; The second information is used to request or indicate at least one of the following: The third cell group changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the third cell group.
42. A network status-related interaction device, applied to a terminal, comprising: A first receiving module, configured to receive first configuration information sent by a first access network device in a first cell; The first cell is in a non-energy-saving state or an energy-saving state; The first configuration information is used by the terminal to request or indicate at least one of the following: The state of the second cell changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the second cell; The state of the second cell is used to indicate a state related to the sending of the target information; The second access network device is the same as or different from the first access network device.
43. A network status-related interaction device, applied to a first access network device, the device comprising: A first sending module, configured to send first configuration information to a terminal in a first cell; The first cell is in a non-energy-saving state or an energy-saving state; The first configuration information is used by the terminal to request or indicate at least one of the following: The state of the second cell changes from an energy-saving state to a non-energy-saving state; The second access network device sends target information in the second cell; The state of the second cell is used to indicate a state related to the sending of the target information; The second access network device is the same as or different from the first access network device.
44. A communication device comprising a processor and a memory, wherein the memory stores a program or instruction that can be run on the processor, and when the program or instruction is executed by the processor, it implements the steps of the interaction method related to the network status as described in any one of claims 1 to 15, or implements the steps of the interaction method related to the network status as described in any one of claims 16 to 38.
45. A readable storage medium storing a program or instruction, wherein the program or instruction, when executed by a processor, implements the steps of the interaction method related to network status as described in any one of claims 1 to 15, or implements the steps of the interaction method related to network status as described in any one of claims 16 to 38.
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