Processing method, communication device and storage medium

By determining the subcarrier offset of the synchronization signal block and the broadcast state of the system information block 1 in the terminal device, the problem that terminal devices in the network energy-saving cell are difficult to monitor and schedule PDCCH is solved, and more efficient and reliable communication is achieved, and energy consumption is reduced.

CN119997225APending Publication Date: 2025-05-13SHENZHEN TRANSSION HLDG CO LTD
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Patent Information

Application Number
CN202510339348.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

In the network energy-saving cell, it is difficult for the terminal device to determine whether to monitor the PDCCH of the scheduling SIB1, resulting in the possibility of increasing the number of blind inspections or the failure to successfully receive the scheduling signal.

Method used

A processing method is provided in which the terminal device decides whether to monitor the physical downlink control channel of the scheduling system information block 1 by determining the synchronous signal block subcarrier offset and the broadcast state of the system information block 1 .

Benefits of technology

The monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell is clarified, which improves communication efficiency and reliability, and reduces the power consumption of terminal equipment and network equipment.

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Abstract

Disclosed are a processing method, a communication device and a storage medium, the method comprising: a terminal device determines to monitor a physical downlink control channel in response to meeting a first condition. Through the technical scheme of the invention, the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell can be determined.
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Description

Technical Field

[0001] The present application relates to the field of communication technology, and in particular to a processing method, a communication device and a storage medium. Background Art

[0002] For the existing wireless communication system, in a traditional cell, after the terminal equipment (UE) receives the SSB (SS / PBCH Block, synchronization signal block), it will decide whether to monitor the PDCCH (Physical Downlink Control Channel) of the scheduling SIB1 (System Information Block 1, system information block 1) according to the information carried by the SSB.

[0003] In the process of conceiving and implementing this application, the inventor found that there are at least the following problems:

[0004] In a network energy-saving cell, after the terminal device completes SSB reception, how to determine whether to monitor the PDCCH scheduling SIB1 is not clear in the existing protocol, which may cause the terminal device to increase the number of blind detections of the PDCCH scheduling SIB1, or may cause the terminal device to fail to successfully receive the PDCCH scheduling SIB1. Therefore, it is necessary to clarify the monitoring mechanism of the physical downlink control channel scheduling system information block 1 in the network energy-saving cell.

[0005] The preceding description is intended to provide general background information and does not necessarily constitute prior art. Summary of the invention

[0006] The main purpose of the present application is to provide a processing method, a communication device and a storage medium, which aims to clarify the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell.

[0007] The present application provides a processing method which can be applied to a terminal device (such as a mobile phone), comprising the steps of:

[0008] S2: In response to satisfying a first condition, determining to monitor a physical downlink control channel.

[0009] Optionally, the method further comprises at least one of the following:

[0010] The physical downlink control channel is a type 0 physical downlink control channel;

[0011] The physical downlink control channel is the physical downlink control channel of the scheduling system information block 1.

[0012] Optionally, satisfying the first condition includes at least one of the following:

[0013] The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value;

[0014] The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value;

[0015] The subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value;

[0016] The broadcast status of system information block 1 is broadcast;

[0017] The broadcast status of system information block 1 is not broadcast but requested by other terminal devices;

[0018] The broadcast status of system information block 1 is not broadcast and not requested by any terminal device;

[0019] There is a monitoring opportunity for a type 0 physical downlink control channel in the first time;

[0020] There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

[0021] Optionally, step S2 includes at least one of the following:

[0022] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0023] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value and not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0024] If the subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0025] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0026] If the broadcast status of system information block 1 is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0027] If the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel that schedules the system information block 1;

[0028] If the broadcast status of system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules system information block 1;

[0029] If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time;

[0030] If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0031] Optionally, the method further comprises at least one of the following:

[0032] The first time is a multiple of the transmission period of system information block 1;

[0033] The second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell;

[0034] The first time is located in the uplink wake-up signal configuration information;

[0035] In the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number;

[0036] The maximum value of the subcarrier offset of the synchronization signal block of the first frequency band is less than or equal to the fifth value;

[0037] The maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0038] Optionally, after step S2, the method further includes: step S3: sending an uplink wake-up signal.

[0039] The present application also provides a processing method, which can be applied to a network device (such as a base station), comprising the steps of:

[0040] S1: Send a physical downlink control channel so that in response to satisfying a first condition, the terminal device determines to monitor the physical downlink control channel.

[0041] Optionally, the method further comprises at least one of the following:

[0042] Optionally, the physical downlink control channel is a type 0 physical downlink control channel;

[0043] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0044] Optionally, satisfying the first condition includes at least one of the following:

[0045] The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value;

[0046] The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value;

[0047] The subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value;

[0048] The broadcast status of system information block 1 is broadcast;

[0049] The broadcast status of system information block 1 is not broadcast but requested by other terminal devices;

[0050] The broadcast status of system information block 1 is not broadcast and not requested by any terminal device;

[0051] There is a monitoring opportunity for a type 0 physical downlink control channel in the first time;

[0052] There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

[0053] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0054] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0055] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value and is not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and is not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0056] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0057] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0058] If the broadcast status of the system information block 1 of the terminal device is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0059] If the broadcast status of the system information block 1 of the terminal device is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0060] If the broadcast status of the system information block 1 of the terminal device is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system information block 1;

[0061] If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time;

[0062] If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0063] Optionally, the method further comprises at least one of the following:

[0064] The first time is a multiple of the transmission period of system information block 1;

[0065] The second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell;

[0066] The first time is located in the uplink wake-up signal configuration information;

[0067] In the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number;

[0068] The maximum value of the subcarrier offset of the synchronization signal block of the first frequency band is less than or equal to the fifth value;

[0069] The maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0070] Optionally, after step S1, the method further includes:

[0071] Step S4: Receive an uplink wake-up signal.

[0072] The present application also provides a processing device, the device comprising:

[0073] The processing module is used to determine to monitor the physical downlink control channel in response to satisfying the first condition.

[0074] The present application also provides a processing device, the device comprising:

[0075] The sending module is used to send a physical downlink control channel so that in response to satisfying a first condition, the terminal device determines to monitor the physical downlink control channel.

[0076] The present application also provides a communication device, comprising: a memory, a processor, and a processing program stored in the memory and executable on the processor, wherein the processing program implements the steps of any of the processing methods described above when executed by the processor.

[0077] The communication device in this application can be a terminal device (such as a mobile phone), a network device (such as a base station), or a chip (such as a SOC or a baseband chip with communication functions, etc.). The specific reference needs to be clarified in the context.

[0078] The present application also provides a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, the steps of any of the processing methods described above are implemented.

[0079] The technical solution of the present application, in response to the first condition being met, the terminal device determines to monitor the physical downlink control channel, and can clarify the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell. BRIEF DESCRIPTION OF THE DRAWINGS

[0080] The drawings herein are incorporated into the specification and constitute a part of the specification, illustrate embodiments consistent with the present application, and are used together with the specification to explain the principles of the present application. In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the description of the embodiments are briefly introduced below. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without creative labor.

[0081] Figure 1A schematic diagram of the hardware structure of a mobile terminal for implementing various embodiments of the present application;

[0082] Figure 2 A communication network system architecture diagram provided for an embodiment of the present application;

[0083] Figure 3 A schematic diagram of the hardware structure of a controller 140 provided in this application;

[0084] Figure 4 A schematic diagram of the hardware structure of a network node 150 provided in this application;

[0085] Figure 5 This is a flow chart of a processing method according to the first embodiment of the present application;

[0086] Figure 6 This is a flowchart of a processing method according to the sixth embodiment of the present application;

[0087] Figure 7 A schematic diagram of the interaction flow between a network device and a terminal device of a processing method shown in the seventh embodiment of the present application;

[0088] Figure 8 A schematic diagram of the structure of the processing device provided in the embodiment of the present application Figure 1 ;

[0089] Fig. 9 A schematic diagram of the structure of the processing device provided in the embodiment of the present application Figure 2 ;

[0090] Fig.10 A schematic diagram of the structure of a communication device provided in an embodiment of the present application.

[0091] The realization of the purpose, functional features and advantages of this application will be further described in conjunction with the embodiments and with reference to the accompanying drawings. The above-mentioned drawings have shown clear embodiments of this application, which will be described in more detail later. These drawings and textual descriptions are not intended to limit the scope of the concept of this application in any way, but to illustrate the concept of this application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION

[0092] Exemplary embodiments will be described in detail herein, examples of which are shown in the accompanying drawings. When the following description refers to the drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated. The implementations described in the following exemplary embodiments do not represent all implementations consistent with the present application. Instead, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.

[0093] It should be noted that, in this article, the terms "comprises", "includes" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also includes 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 existence of other identical elements in the process, method, article or device including the element, and / or, components, features, and elements with the same name in different embodiments of the present application may have the same meaning or different meanings, and their specific meanings need to be determined by their explanation in the specific embodiment or further combined with the context of the specific embodiment.

[0094] It should be understood that, although the terms first, second, third, etc. may be used to describe various information in this article, these information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of this article, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Depending on the context, the word "if" as used herein can be interpreted as "at the time of" or "when" or "in response to determination". Furthermore, as used in this article, the singular forms "one", "one" and "the" are intended to also include plural forms, unless there is an opposite indication in the context. It should be further understood that the terms "comprising" and "including" indicate that there are the described features, steps, operations, elements, components, projects, kinds, and / or groups, but do not exclude the existence, occurrence or addition of one or more other features, steps, operations, elements, components, projects, kinds, and / or groups. The terms "or", "and / or", "including at least one of the following" etc. used in this application can be interpreted as inclusive, or mean any one or any combination. For example, “comprising at least one of the following: A, B, C” means “any of the following: A; B; C; A and B; A and C; B and C; A and B and C”, and for another example, “A, B or C” or “A, B and / or C” means “any of the following: A; B; C; A and B; A and C; B and C; A and B and C”. An exception to this definition will only occur when a combination of elements, functions, steps or operations are inherently mutually exclusive in some manner.

[0095] It should be understood that, although the various steps in the flowchart in the embodiment of the present application are displayed in sequence according to the indication of the arrows, these steps are not necessarily performed in sequence according to the order indicated by the arrows. Unless there is a clear explanation in this article, the execution of these steps does not have a strict order restriction, and it can be performed in other orders. Moreover, at least a portion of the steps in the figure may include a plurality of sub-steps or a plurality of stages, and these sub-steps or stages are not necessarily performed at the same time, but can be performed at different times, and their execution order is not necessarily performed in sequence, but can be performed in turn or alternately with other steps or at least a portion of the sub-steps or stages of other steps.

[0096] As used herein, the words "if" and "if" may be interpreted as "at the time of" or "when" or "in response to determining" or "in response to detecting", depending on the context. Similarly, the phrases "if it is determined" or "if (stated condition or event) is detected" may be interpreted as "when it is determined" or "in response to determining" or "when detecting (stated condition or event)" or "in response to detecting (stated condition or event)", depending on the context.

[0097] It should be noted that in this article, step codes such as S1 and S2 are used for the purpose of expressing the corresponding content more clearly and concisely, and do not constitute a substantial limitation on the order. When implementing the step, those skilled in the art may execute S2 first and then S1, etc., but these should all be within the scope of protection of this application.

[0098] It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0099] In the subsequent description, the suffixes such as "module", "component" or "unit" used to represent elements are only used to facilitate the description of the present application, and have no specific meanings. Therefore, "module", "component" or "unit" can be used in a mixed manner.

[0100] The communication device in this application can be a terminal device (such as a mobile phone), a network device (such as a base station), or a chip (such as a SOC or a baseband chip with communication functions, etc.). The specific reference needs to be clarified based on the context.

[0101] The terminal device may be implemented in various forms. For example, the terminal device described in this application may include intelligent terminal devices such as mobile phones, tablet computers, laptop computers, PDAs, portable media players (PMPs), navigation devices, wearable devices, smart bracelets, pedometers, etc., as well as fixed terminal devices such as digital TVs and desktop computers.

[0102] The subsequent description will be made by taking a mobile terminal as an example, and those skilled in the art will understand that, in addition to components specifically used for mobile purposes, the construction according to the embodiments of the present application can also be applied to fixed-type terminal devices.

[0103] See also Figure 1 , which is a schematic diagram of the hardware structure of a mobile terminal for implementing various embodiments of the present application, the mobile terminal 100 may include: a radio frequency unit 101, a WiFi module 102, an audio output unit 103, an A / V (audio / video) input unit 104, a sensor 105, a display unit 106, a user input unit 107, an interface unit 108, a memory 109, a processor 110, and a power supply 111 and other components. Those skilled in the art can understand that Figure 1 The structure of the mobile terminal shown in the figure does not constitute a limitation on the mobile terminal. The mobile terminal may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently.

[0104] Combine the following Figure 1 The following is a detailed introduction to the various components of the mobile terminal:

[0105] The radio frequency unit 101 can be used for receiving and sending signals during information transmission or communication. Specifically, after receiving the downlink information of the base station, it is sent to the processor 110 for processing; in addition, the uplink data is sent to the base station. Generally, the radio frequency unit 101 includes but is not limited to an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, etc. And / or, the radio frequency unit 101 can also communicate with the network and other devices through wireless communication. The above-mentioned wireless communications can use any communication standard or protocol, including but not limited to GSM (Global System of Mobile communication), GPRS (General Packet Radio Service), CDMA2000 (Code Division Multiple Access 2000), WCDMA (Wideband Code Division Multiple Access), TD-SCDMA (Time Division-Synchronous Code Division Multiple Access), FDD-LTE (Frequency Division Duplexing-Long Term Evolution), TDD-LTE (Time Division Duplexing-Long Term Evolution), 5G and 6G, etc.

[0106] WiFi is a short-range wireless transmission technology. Mobile terminals can help users send and receive emails, browse web pages, and access streaming media through WiFi module 102. It provides users with wireless broadband Internet access. Figure 1 The WiFi module 102 is shown, but it is understandable that it is not an essential component of the mobile terminal and can be omitted as needed without changing the essence of the invention.

[0107] The audio output unit 103 can convert the audio data received by the RF unit 101 or the WiFi module 102 or stored in the memory 109 into an audio signal and output it as sound when the mobile terminal 100 is in a call signal reception mode, a talk mode, a recording mode, a voice recognition mode, a broadcast reception mode, etc. Moreover, the audio output unit 103 can also provide audio output related to a specific function performed by the mobile terminal 100 (for example, a call signal reception sound, a message reception sound, etc.). The audio output unit 103 may include a speaker, a buzzer, etc.

[0108] The A / V input unit 104 is used to receive audio or video signals. The A / V input unit 104 may include a graphics processor (GPU) 1041 and a microphone 1042, and the graphics processor 1041 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 processed image frame can be displayed on the display unit 106. The image frame processed by the graphics processor 1041 can be stored in the memory 109 (or other storage medium) or sent via the radio frequency unit 101 or the WiFi module 102. The microphone 1042 can receive sound (audio data) via the microphone 1042 in operating modes such as a telephone call mode, a recording mode, and a voice recognition mode, and can process such sound into audio data. The processed audio (voice) data can be converted into a format output that can be sent to a mobile communication base station via the radio frequency unit 101 in the case of a telephone call mode. The microphone 1042 can implement various types of noise elimination (or suppression) algorithms to eliminate (or suppress) noise or interference generated in the process of receiving and sending audio signals.

[0109] The mobile terminal 100 also includes at least one sensor 105, such as a light sensor, a motion sensor, and other sensors. Optionally, the light sensor includes an ambient light sensor and a proximity sensor. Optionally, the ambient light sensor can adjust the brightness of the display panel 1061 according to the brightness of the ambient light, and the proximity sensor can turn off the display panel 1061 and / or the backlight when the mobile terminal 100 is moved to the ear. As a type of motion sensor, the accelerometer sensor can detect the magnitude of acceleration in all directions (generally three axes), and can detect the magnitude and direction of gravity when stationary. It can be used for applications that identify the posture of the mobile phone (such as horizontal and vertical screen switching, related games, magnetometer posture calibration), vibration recognition related functions (such as pedometer, tapping), etc.; as for other sensors that can be configured on the mobile phone, such as fingerprint sensors, pressure sensors, iris sensors, molecular sensors, gyroscopes, barometers, hygrometers, thermometers, infrared sensors, etc., they will not be repeated here.

[0110] The display unit 106 is used to display information input by the user or information provided to the user. The display unit 106 may include a display panel 1061, which may be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), or the like.

[0111] The user input unit 107 can be used to receive input digital or character information, and to generate key signal input related to the user settings and function control of the mobile terminal. Optionally, the user input unit 107 may include a touch panel 1071 and other input devices 1072. The touch panel 1071, also known as a touch screen, can collect the user's touch operation on or near it (such as the user's operation on the touch panel 1071 or near the touch panel 1071 using any suitable object or accessory such as a finger, stylus, etc.), and drive the corresponding connection device according to a pre-set program. The touch panel 1071 may include two parts: a touch detection device and a touch controller. Optionally, the touch detection device detects the user's touch orientation, detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts it into the touch point coordinates, and then sends it to the processor 110, and can receive and execute the command sent by the processor 110. And / or, the touch panel 1071 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic wave. In addition to the touch panel 1071, the user input unit 107 may further include other input devices 1072. Optionally, the other input devices 1072 may include, but are not limited to, one or more of a physical keyboard, a function key (such as a volume control key, a switch key, etc.), a trackball, a mouse, a joystick, etc., which are not specifically limited here.

[0112] Optionally, the touch panel 1071 may cover the display panel 1061. When the touch panel 1071 detects a touch operation on or near it, it transmits the information to the processor 110 to determine the type of touch event. Then, the processor 110 provides corresponding visual output on the display panel 1061 according to the type of touch event. Figure 1 In the figure, the touch panel 1071 and the display panel 1061 are used as two independent components to implement the input and output functions of the mobile terminal. However, in some embodiments, the touch panel 1071 and the display panel 1061 can be integrated to implement the input and output functions of the mobile terminal, which is not limited here.

[0113] The interface unit 108 serves as an interface through which at least one external device can be connected to the mobile terminal 100. For example, the external device may include a wired or wireless headset port, an external power supply (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device with an identification module, an audio input / output (I / O) port, a video I / O port, a headphone port, etc. The interface unit 108 may be used to receive input (e.g., data information, power, etc.) from an external device and transmit the received input to one or more elements within the mobile terminal 100 or may be used to transmit data between the mobile terminal 100 and an external device.

[0114] The memory 109 can be used to store software programs and various data. The memory 109 can mainly include a program storage area and a data storage area. Optionally, the program storage area can store an operating system, an application required for at least one function (such as a sound playback function, an image playback function, etc.), etc.; the data storage area can store data created according to the use of the mobile phone (such as audio data, a phone book, etc.), etc. And / or, the memory 109 can include a high-speed random access memory, and can also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage devices.

[0115] The processor 110 is the control center of the mobile terminal. It uses various interfaces and lines to connect various parts of the entire mobile terminal. It executes various functions of the mobile terminal and processes data by running or executing software programs and / or modules stored in the memory 109, and calling data stored in the memory 109, so as to monitor the mobile terminal as a whole. The processor 110 may include one or more processing units; preferably, the processor 110 may integrate an application processor and a modem processor. Optionally, the application processor mainly processes the operating system, user interface, and application programs, and the modem processor mainly processes wireless communications. It is understandable that the above-mentioned modem processor may not be integrated into the processor 110.

[0116] The mobile terminal 100 may also include a power supply 111 (such as a battery) for supplying power to various components. Preferably, the power supply 111 may be logically connected to the processor 110 via a power management system, thereby implementing functions such as charging, discharging, and power consumption management through the power management system.

[0117] although Figure 1 Not shown, the mobile terminal 100 may further include a Bluetooth module, etc., which will not be described in detail here.

[0118] In order to facilitate understanding of the embodiments of the present application, the communication network system on which the mobile terminal of the present application is based is described below.

[0119] See also Figure 2 , Figure 2A communication network system architecture diagram is provided for an embodiment of the present application. The communication network system is a NR (New Radio) system of universal mobile communication technology. The NR system includes a UE (User Equipment) 201, an E-UTRAN (Evolved UMTS Terrestrial Radio Access Network) 202, an EPC (Evolved Packet Core) 203 and an operator's IP service 204, which are connected in sequence.

[0120] Optionally, UE201 may be the above-mentioned terminal device 100, which will not be described in detail here.

[0121] E-UTRAN 202 includes eNodeB 2021 and other eNodeBs 2022 , etc. Optionally, eNodeB 2021 may be connected to other eNodeBs 2022 via a backhaul (eg, an X2 interface), and eNodeB 2021 is connected to EPC 203 , and eNodeB 2021 may provide UE 201 with access to EPC 203 .

[0122] EPC203 may include MME (Mobility Management Entity) 2031, HSS (Home Subscriber Server) 2032, other MMEs 2033, SGW (Serving Gate Way) 2034, PGW (PDN Gate Way) 2035 and PCRF (Policy and Charging Rules Function) 2036, etc. Optionally, MME 2031 is a control node that processes signaling between UE 201 and EPC 203, and provides bearer and connection management. HSS 2032 is used to provide some registers to manage functions such as home location register (not shown in the figure), and store some user-specific information such as service features and data rates. All user data can be sent through SGW2034, PGW2035 can provide IP address allocation and other functions for UE 201, PCRF2036 is the policy and charging control policy decision point for service data flow and IP bearer resources, which selects and provides available policy and charging control decisions for the policy and charging execution function unit (not shown in the figure).

[0123] The IP service 204 may include the Internet, an intranet, an IMS (IP Multimedia Subsystem) or other IP services.

[0124] Although the above introduction takes the LTE system as an example, those skilled in the art should know that the present application is not only applicable to the LTE system, but also to other wireless communication systems, such as GSM, CDMA2000, WCDMA, TD-SCDMA, 5G and future new network systems (such as 6G), etc., without limitation here.

[0125] Figure 3 The hardware structure diagram of a controller 140 provided in the present application is shown in FIG. The controller 140 includes a memory 1401 and a processor 1402. The memory 1401 is used to store program instructions, and the processor 1402 is used to call the program instructions in the memory 1401 to execute the steps executed by the controller in the first embodiment of the above method. The implementation principle and beneficial effects are similar and will not be described in detail here.

[0126] Optionally, the controller further includes a communication interface 1403, which can be connected to the processor 1402 via a bus 1404. The processor 1402 can control the communication interface 1403 to implement the receiving and sending functions of the controller 140.

[0127] Figure 4 The hardware structure diagram of a network node 150 provided in the present application is shown in FIG. The network node 150 includes: a memory 1501 and a processor 1502, the memory 1501 is used to store program instructions, and the processor 1502 is used to call the program instructions in the memory 1501 to execute the steps performed by the first node in the first embodiment of the above method, and its implementation principle and beneficial effects are similar, which will not be repeated here.

[0128] Optionally, the controller further includes a communication interface 1503, which can be connected to the processor 1502 via a bus 1504. The processor 1502 can control the communication interface 1503 to implement the receiving and sending functions of the network node 150.

[0129] The above-mentioned integrated module implemented in the form of a software function module can be stored in a computer-readable storage medium. The above-mentioned software function module is stored in a storage medium, including a number of instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor (English: processor) to perform some steps of the methods of various embodiments of the present application.

[0130] In the above embodiments, it can be implemented in whole or in part by software, hardware, firmware or any combination thereof. When implemented using software, it can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. When loading and executing computer program instructions on a computer, the process or function according to the embodiment of the present application is generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. Computer instructions can be stored in a storage medium, or transmitted from one storage medium to another storage medium. For example, computer instructions can be transmitted from a website site, computer, server or data center to another website site, computer, server or data center by wired (e.g., coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (e.g., infrared, wireless, microwave, etc.) mode. The storage medium can be any available medium that a computer can access or a data storage device such as a server or data center that includes one or more available media integration. Available media can be magnetic media, (e.g., floppy disk, hard disk, tape), optical media (e.g., DVD), or semiconductor media (e.g., solid state hard disk solid state disk, SSD), etc.

[0131] Based on the above-mentioned mobile terminal hardware structure and communication network system, various embodiments of the present application are proposed.

[0132] Technical terms involved in this embodiment:

[0133] SSB: SS / PBCH Block, synchronization signal block;

[0134] SIB: System Information Block, system information block;

[0135] PDCCH: Physical Downlink Control CHannel, physical downlink control channel;

[0136] FR1: Frequency Range 1, the first frequency band;

[0137] FR2: Frequency Range 2, the second frequency band;

[0138] UL WUS: UpLink Wake-Up Signal, uplink wake-up signal;

[0139] NES: Network Energy Saving, network energy saving;

[0140] K_SSB: synchronization signal block subcarrier offset;

[0141] pdcch-ConfigSIB1: Physical downlink control channel configuration of system information block 1.

[0142] First embodiment

[0143] Reference Figure 5 , Figure 5 This is a flow chart of a processing method according to the first embodiment of the present application. The processing method according to the embodiment of the present application can be applied to a terminal device (such as a mobile phone), and includes the following steps:

[0144] S2: In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel.

[0145] This embodiment proposes a technical solution. In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, so as to clarify the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of the terminal device.

[0146] Optionally, the physical downlink control channel is sent by a network device.

[0147] Optionally, the network device may be a base station or the like.

[0148] Optionally, the network device sends a physical downlink control channel, and in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel.

[0149] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0150] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0151] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0152] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0153] Optionally, satisfying the first condition includes at least one of the following:

[0154] The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value;

[0155] The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value;

[0156] The subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value;

[0157] The broadcast status of system information block 1 is broadcast;

[0158] The broadcast status of system information block 1 is not broadcast but requested by other terminal devices;

[0159] The broadcast status of system information block 1 is not broadcast and not requested by any terminal device;

[0160] There is a monitoring opportunity for a type 0 physical downlink control channel in the first time;

[0161] There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

[0162] Optionally, the second cell is a network energy-saving cell.

[0163] Optionally, the terminal device receives uplink wake-up signal configuration information in the first cell, and determines which cells are the second cells according to the content in the uplink wake-up signal configuration information.

[0164] Optionally, the first cell is a traditional cell, such as a traditional cell before R19.

[0165] Optionally, the system information block in the second cell is requested to be transmitted by the terminal device by sending an uplink wake-up signal.

[0166] Optionally, the broadcast status of system information block 1 is broadcast and / or on-demand transmission.

[0167] Optionally, the broadcast status of the system information block 1 is on-demand transmission, including that the broadcast status of the system information block 1 is non-broadcast but has been requested by other terminal devices and / or non-broadcast and has not been requested by any terminal device.

[0168] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0169] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0170] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value and not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0171] If the subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0172] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0173] If the broadcast status of system information block 1 is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0174] If the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel that schedules the system information block 1;

[0175] If the broadcast status of system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules system information block 1;

[0176] If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time;

[0177] If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0178] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0179] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the broadcast status of the system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system information block 1.

[0180] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the first time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time.

[0181] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the first time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0182] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 during the monitoring opportunity within the second time.

[0183] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0184] Optionally, the synchronization signal block subcarrier offset in the main system information block of the second cell is a frequency domain subcarrier offset between the synchronization signal block and the entire resource block grid.

[0185] Optionally, the synchronization signal block subcarrier offset in the main system information block is denoted as K_SSB.

[0186] Optionally, in the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number.

[0187] Optionally, the maximum value of the synchronization signal block subcarrier offset of the first frequency band is less than or equal to the fifth value.

[0188] Optionally, the maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0189] Optionally, the first value is 23, the second value is 11, the third value is 30, the fourth value is 14, the fifth value is 31, and the sixth value is 15.

[0190] Optionally, the first time is a multiple of a transmission period of system information block 1.

[0191] Optionally, the first time is located in the uplink wake-up signal configuration information.

[0192] Optionally, the second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell.

[0193] Optionally, in response to the first condition being met, after the step of the terminal device determining to monitor the physical downlink control channel, the method further includes:

[0194] Step S3: The terminal device sends an uplink wake-up signal.

[0195] Optionally, the sending time slot of the uplink wake-up signal is determined by uplink wake-up signal configuration information.

[0196] Through the technical solution of this embodiment, in response to the first condition being met, the terminal device determines to monitor the physical downlink control channel, which can clarify the monitoring mechanism of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell. Specifically, the conditions for the terminal device to monitor the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell can be clarified, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of network devices and / or terminal devices.

[0197] Second embodiment

[0198] On the basis of any of the above embodiments of the present application, a second embodiment of the present application is proposed. This embodiment mainly describes a processing method for determining monitoring of a physical downlink control channel when a first condition is met.

[0199] This embodiment proposes a technical solution. In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, thereby clarifying the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of the terminal device and / or network equipment.

[0200] Optionally, the network device sends a physical downlink control channel.

[0201] Optionally, in response to satisfying the first condition, the terminal device determines to monitor a physical downlink control channel.

[0202] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0203] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0204] Optionally, the first condition is related to a main system information block of the second cell.

[0205] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0206] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0207] Optionally, the second cell is a network energy-saving cell.

[0208] Optionally, the terminal device receives uplink wake-up signal configuration information in the first cell, and determines which cells are the second cells according to the content in the uplink wake-up signal configuration information.

[0209] Optionally, the first cell is a traditional cell, such as a traditional cell before R19.

[0210] Optionally, satisfying the first condition includes at least one of the following:

[0211] The subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the second frequency band is greater than or equal to 0 and less than or equal to the second value;

[0212] If the subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the first frequency band is greater than the first value and is not equal to the third value, or the subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the second frequency band is greater than the second value and is not equal to the fourth value;

[0213] The subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the second frequency band is greater than the second value;

[0214] The synchronization signal block subcarrier offset in the main system information block of the second cell in the first frequency band is equal to the third value, or the synchronization signal block subcarrier offset in the main system information block of the second cell in the second frequency band is equal to the fourth value.

[0215] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0216] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0217] If the subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the first frequency band is greater than the first value and is not equal to the third value, or the subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the second frequency band is greater than the second value and is not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0218] If the subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block in the primary system information block of the second cell in the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0219] If the subcarrier offset of the synchronization signal block in the main system information block of the second cell in the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block in the main system information block of the second cell in the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0220] Optionally, the synchronization signal block subcarrier offset in the main system information block of the second cell is a frequency domain subcarrier offset between the synchronization signal block and the entire resource block grid.

[0221] Optionally, the synchronization signal block subcarrier offset in the main system information block of the second cell is recorded as K_SSB.

[0222] Optionally, in the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset in the main system information block of the second cell is a natural number.

[0223] Optionally, the maximum value of the synchronization signal block subcarrier offset in the main system information block of the second cell in the first frequency band is less than or equal to the fifth value.

[0224] Optionally, the maximum value of the synchronization signal block subcarrier offset in the main system information block of the second cell in the second frequency band is less than or equal to the sixth value.

[0225] Optionally, the first value is 23, the second value is 11, the third value is 30, the fourth value is 14, the fifth value is 31, and the sixth value is 15.

[0226] Optionally, if the subcarrier offset of the synchronization signal block of the main system information block of the second cell in the first frequency band is greater than or equal to 0 and less than or equal to 23, or the subcarrier offset of the synchronization signal block of the main system information block of the second cell in the second frequency band is greater than or equal to 0 and less than or equal to 11, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0227] Optionally, if the subcarrier offset of the synchronization signal block of the main system information block of the second cell in the first frequency band is greater than 23 and not equal to 30, or the subcarrier offset of the synchronization signal block in the main system information block of the second cell in the second frequency band is greater than 11 and not equal to 14, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0228] Optionally, if the subcarrier offset of the synchronization signal block of the main system information block of the second cell in the first frequency band is greater than 23 or the subcarrier offset of the synchronization signal block of the main system information block of the second cell in the second frequency band is greater than 11, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0229] Optionally, if the subcarrier offset of the synchronization signal block in the main system information block of the second cell in the first frequency band is equal to 30, or the subcarrier offset of the synchronization signal block in the main system information block of the second cell in the second frequency band is equal to 14, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0230] Optionally, if the synchronization signal block subcarrier offset (K_SSB) in the main system information block in the first frequency band (FR1) is 6, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in a traditional manner.

[0231] Optionally, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in a traditional manner, including the terminal device monitoring the type 0 physical downlink control channel of the scheduling system information block 1 at a configured monitoring opportunity of the type 0 physical downlink control channel.

[0232] Optionally, the monitoring timing of the type 0 physical downlink control channel is determined by control resource set 0 and search space 0.

[0233] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block of the second cell in the first frequency band (FR1) is 26, and the terminal device has a request configuration for the system information block 1 of the second cell, then before transmitting the uplink wake-up signal, the terminal device does not listen to the type 0 physical downlink control channel of the scheduling system information block 1 in the second cell.

[0234] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block of the second cell in the first frequency band (FR1) is 30, and the terminal device has a request configuration for the system information block 1 of the second cell, then before transmitting the uplink wake-up signal, the terminal device listens to the type 0 physical downlink control channel of the scheduling system information block 1 in the second cell.

[0235] Optionally, in response to satisfying the first condition, after the terminal device determines to monitor the physical downlink control channel, the method further includes:

[0236] Step S3: The terminal device sends an uplink wake-up signal.

[0237] Optionally, the sending time slot of the uplink wake-up signal is determined by uplink wake-up signal configuration information.

[0238] Through the technical solution of this embodiment, in response to the first condition being met, the terminal device determines to monitor the physical downlink control channel, and the monitoring conditions of the terminal device for the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell can be clarified. Specifically, this scheme determines the monitoring conditions of the terminal device for the physical downlink control channel of the scheduling system information block 1 in the second cell by reusing the bits in the main system information block of the second cell, which can not only save the signaling overhead between the terminal device and the network device, but also the terminal device can determine whether to monitor the physical downlink control channel of the scheduling system information block 1 according to the monitoring conditions, so that the necessary system information block 1 can be received in time, and / or the number of requests for the system information block can be reduced, thereby supporting the reduction of the number of times the terminal device sends an uplink wake-up signal and the power consumption of the network device receiving the uplink wake-up signal.

[0239] Third embodiment

[0240] On the basis of the first embodiment of the present application, a third embodiment of the present application is proposed. This embodiment mainly describes a processing method for determining monitoring of a physical downlink control channel when the first condition is met.

[0241] This embodiment proposes a technical solution. In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, so as to clarify the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of the terminal device.

[0242] Optionally, the network device sends a physical downlink control channel.

[0243] Optionally, in response to satisfying the first condition, the terminal device determines to monitor a physical downlink control channel.

[0244] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0245] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0246] Optionally, the first condition is related to the broadcast status of system information block 1.

[0247] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0248] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0249] Optionally, the second cell is a network energy-saving cell.

[0250] Optionally, the terminal device receives uplink wake-up signal configuration information in the first cell, and determines which cells are the second cells according to the content in the uplink wake-up signal configuration information.

[0251] Optionally, the first cell is a traditional cell, such as a traditional cell before R19.

[0252] Optionally, the broadcast status of system information block 1 is broadcast and / or on-demand transmission.

[0253] Optionally, the broadcast status of the system information block 1 is on-demand transmission, including that the broadcast status of the system information block 1 is non-broadcast but has been requested by other terminal devices and / or non-broadcast and has not been requested by any terminal device.

[0254] Optionally, satisfying the first condition includes at least one of the following:

[0255] The broadcast status of system information block 1 is broadcast;

[0256] The broadcast status of system information block 1 is not broadcast but requested by other terminal devices;

[0257] The broadcast status of system information block 1 is not broadcast and not requested by any terminal device.

[0258] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0259] If the broadcast status of system information block 1 is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0260] If the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel that schedules the system information block 1;

[0261] If the broadcast status of system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules system information block 1.

[0262] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to a first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to a second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0263] If the synchronization signal block subcarrier offset of the first frequency band is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and the broadcast status of the system message 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel that schedules the system message 1;

[0264] If the synchronization signal block subcarrier offset of the first frequency band is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and the broadcast status of the system message 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system message 1.

[0265] Optionally, the synchronization signal block subcarrier offset is a frequency domain subcarrier offset between the synchronization signal block and the entire resource block grid.

[0266] Optionally, the synchronization signal block subcarrier offset is located in a master system information block. Optionally, the synchronization signal block subcarrier offset is denoted as K_SSB.

[0267] Optionally, in the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number.

[0268] Optionally, the maximum value of the synchronization signal block subcarrier offset of the first frequency band is less than or equal to the fifth value.

[0269] Optionally, the maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0270] Optionally, the first value is 23, the second value is 11, the fifth value is 31, and the sixth value is 15.

[0271] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to 23, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to 11, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0272] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than 23 or the subcarrier offset of the synchronization signal block of the second frequency band is greater than 11, and the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0273] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than 23 or the subcarrier offset of the synchronization signal block of the second frequency band is greater than 11, and the broadcast status of the system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system information block 1.

[0274] Optionally, other terminal devices refer to other terminal devices except the current terminal device.

[0275] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 6, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in a traditional manner.

[0276] Optionally, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in a traditional manner, including the terminal device monitoring the type 0 physical downlink control channel of the scheduling system information block 1 at a configured monitoring opportunity of the type 0 physical downlink control channel.

[0277] Optionally, the monitoring timing of the type 0 physical downlink control channel is determined by control resource set 0 and search space 0.

[0278] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 26, the terminal device has a request configuration for the system information block 1 of the second cell, and the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, then before transmitting the uplink wake-up signal, the terminal device listens to the type 0 physical downlink control channel of the scheduling system information block 1 in the second cell.

[0279] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 26, the terminal device has a request configuration for the system information block 1 of the second cell, and the broadcast status of the system information block 1 is not broadcast and not requested by any terminal device, then before transmitting the uplink wake-up signal, the terminal device does not listen to the type 0 physical downlink control channel of the scheduling system information block 1 in the second cell.

[0280] Optionally, in response to satisfying the first condition, after the terminal device determines to monitor the physical downlink control channel, the method further includes:

[0281] Step S3: The terminal device sends an uplink wake-up signal.

[0282] Optionally, the sending time slot of the uplink wake-up signal is determined by uplink wake-up signal configuration information.

[0283] Through the technical solution of this embodiment, in response to the first condition being met, the terminal device determines to monitor the physical downlink control channel, which can clarify the monitoring conditions of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell. Specifically, this solution determines the monitoring conditions of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the second cell by obtaining the broadcast status of the system information block 1, and can directly notify the terminal device whether the current network device is sending the system information block 1, thereby reducing the number of times the terminal device sends an uplink wake-up signal, and enabling the terminal device to receive the necessary system information block 1 in a timely manner, thereby supporting the improvement of communication efficiency and / or supporting the reduction of energy consumption of the terminal device and / or network equipment.

[0284] Fourth embodiment

[0285] On the basis of any of the above embodiments of the present application, a fourth embodiment of the present application is proposed. This embodiment mainly describes a processing method for determining monitoring of a physical downlink control channel when the first condition is met.

[0286] This embodiment proposes a technical solution. In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, so as to clarify the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of the terminal device.

[0287] Optionally, the network device sends a physical downlink control channel.

[0288] Optionally, in response to satisfying the first condition, the terminal device determines to monitor a physical downlink control channel.

[0289] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0290] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0291] Optionally, the first condition is related to a first time.

[0292] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0293] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0294] Optionally, the second cell is a network energy-saving cell.

[0295] Optionally, the terminal device receives uplink wake-up signal configuration information in the first cell, and determines which cells are the second cells according to the content in the uplink wake-up signal configuration information.

[0296] Optionally, the first cell is a traditional cell, such as a traditional cell before R19.

[0297] Optionally, satisfying the first condition includes: there is a monitoring opportunity for a type 0 physical downlink control channel within a first time.

[0298] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0299] If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time;

[0300] If there is no opportunity to monitor the type 0 physical downlink control channel within the first time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0301] Optionally, if the synchronization signal block subcarrier offset of the first frequency band is greater than or equal to 0 and less than or equal to the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0302] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the first time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time;

[0303] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the first time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0304] Optionally, the synchronization signal block subcarrier offset is a frequency domain subcarrier offset between the synchronization signal block and the entire resource block grid.

[0305] Optionally, the synchronization signal block subcarrier offset is located in a master system information block. Optionally, the synchronization signal block subcarrier offset is denoted as K_SSB.

[0306] Optionally, in the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number.

[0307] Optionally, the maximum value of the synchronization signal block subcarrier offset of the first frequency band is less than or equal to the fifth value.

[0308] Optionally, the maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0309] Optionally, the first value is 23, the second value is 11, the fifth value is 31, and the sixth value is 15.

[0310] Optionally, if the synchronization signal block subcarrier offset of the first frequency band is greater than or equal to 0 and less than or equal to 23, or the synchronization signal block subcarrier offset of the second frequency band is greater than or equal to 0 and less than or equal to 11, the terminal device monitors the type 0 physical downlink control channel of the scheduling system message 1.

[0311] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than 23 or the subcarrier offset of the synchronization signal block of the second frequency band is greater than 11, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the first time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time.

[0312] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than 23 or the subcarrier offset of the synchronization signal block of the second frequency band is greater than 11, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the first time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0313] Optionally, the first time is a multiple of a transmission period of system information block 1. Optionally, the first time may be a fixed value.

[0314] Optionally, the first time is located in the uplink wake-up signal configuration information.

[0315] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 6, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in a traditional manner.

[0316] Optionally, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in a traditional manner, including the terminal device monitoring the type 0 physical downlink control channel of the scheduling system information block 1 at a configured monitoring opportunity of the type 0 physical downlink control channel.

[0317] Optionally, the monitoring timing of the type 0 physical downlink control channel is determined by control resource set 0 and search space 0.

[0318] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 26, the terminal device has a request configuration for the system information block 1 of the second cell, the first time is 20ms, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the first time, then before transmitting the uplink wake-up signal, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in the second cell.

[0319] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 26, the terminal device has a request configuration for the system information block 1 of the second cell, the first time is 20ms, and the second cell does not have a monitoring opportunity for the type 0 physical downlink control channel within the first time, then before transmitting the uplink wake-up signal, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1 in the second cell.

[0320] Optionally, in response to satisfying the first condition, after the terminal device determines to monitor the physical downlink control channel, the method further includes:

[0321] Step S3: The terminal device sends an uplink wake-up signal.

[0322] Optionally, the sending time slot of the uplink wake-up signal is determined by uplink wake-up signal configuration information.

[0323] Through the technical solution of this embodiment, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, which can clarify the monitoring conditions of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell. Specifically, this solution can clarify the monitoring conditions of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the second cell through the limitation of the first time. Based on the monitoring condition, the terminal device determines whether it is necessary to monitor the physical downlink control channel of the scheduling system information block 1 by comparing the relationship between the monitoring timing of the physical downlink control channel of the scheduling system information block 1 and the first time. This mechanism can reduce the number of times the terminal device sends an uplink wake-up signal, so that the terminal device can receive the necessary system information block 1 in a timely manner, thereby supporting the improvement of communication efficiency, and / or supporting the reduction of energy consumption of the terminal device and / or network equipment.

[0324] Fifth embodiment

[0325] On the basis of any of the above embodiments of the present application, a fifth embodiment of the present application is proposed. This embodiment mainly describes a processing method for determining monitoring of a physical downlink control channel when the first condition is met.

[0326] This embodiment proposes a technical solution. In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, so as to clarify the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of the terminal device.

[0327] Optionally, the network device sends a physical downlink control channel.

[0328] Optionally, in response to satisfying the first condition, the terminal device determines to monitor a physical downlink control channel.

[0329] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0330] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0331] Optionally, the first condition is related to the second time.

[0332] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0333] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0334] Optionally, the second cell is a network energy-saving cell.

[0335] Optionally, the terminal device receives uplink wake-up signal configuration information in the first cell, and determines which cells are the second cells according to the content in the uplink wake-up signal configuration information.

[0336] Optionally, the first cell is a traditional cell, such as a traditional cell before R19.

[0337] Optionally, satisfying the first condition includes: there is a monitoring opportunity for a type 0 physical downlink control channel within the second time.

[0338] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0339] If there is a monitoring opportunity for the type 0 physical downlink control channel within the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the second time;

[0340] If there is no opportunity to monitor the type 0 physical downlink control channel within the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0341] Optionally, if the synchronization signal block subcarrier offset of the first frequency band is greater than or equal to 0 and less than or equal to the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0342] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 at the monitoring opportunity within the second time;

[0343] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0344] Optionally, the synchronization signal block subcarrier offset is a frequency domain subcarrier offset between the synchronization signal block and the entire resource block grid.

[0345] Optionally, the synchronization signal block subcarrier offset is located in a master system information block. Optionally, the synchronization signal block subcarrier offset is denoted as K_SSB.

[0346] Optionally, in the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number.

[0347] Optionally, the maximum value of the synchronization signal block subcarrier offset of the first frequency band is less than or equal to the fifth value.

[0348] Optionally, the maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0349] Optionally, the first value is 23, the second value is 11, the fifth value is 31, and the sixth value is 15.

[0350] Optionally, if the synchronization signal block subcarrier offset of the first frequency band is greater than or equal to 0 and less than or equal to 23, or the synchronization signal block subcarrier offset of the second frequency band is greater than or equal to 0 and less than or equal to 11, the terminal device monitors the type 0 physical downlink control channel of the scheduling system message 1.

[0351] Optionally, if the synchronization signal block subcarrier offset of the first frequency band is greater than 23 or the synchronization signal block subcarrier offset of the second frequency band is greater than 11, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system message 1 within the second time.

[0352] Optionally, if the synchronization signal block subcarrier offset of the first frequency band is greater than 23 or the synchronization signal block subcarrier offset of the second frequency band is greater than 11, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system message 1.

[0353] Optionally, the second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell.

[0354] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 6, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in a traditional manner.

[0355] Optionally, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in a traditional manner, including the terminal device monitoring the type 0 physical downlink control channel of the scheduling system information block 1 at a configured monitoring opportunity of the type 0 physical downlink control channel.

[0356] Optionally, the monitoring timing of the type 0 physical downlink control channel is determined by control resource set 0 and search space 0.

[0357] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 26, the terminal device has a request configuration for the system information block 1 of the second cell, the second time is 4 time slots, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the second time, then before transmitting the uplink wake-up signal, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 in the second cell.

[0358] Optionally, if the synchronization signal block subcarrier offset (K_SSB) of the main system information block in the first frequency band (FR1) is 26, the terminal device has a request configuration for the system information block 1 of the second cell, the second time is 4 time slots, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the second time, then before transmitting the uplink wake-up signal, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1 in the second cell.

[0359] Optionally, in response to satisfying the first condition, after the terminal device determines to monitor the physical downlink control channel, the method further includes:

[0360] Step S3: The terminal device sends an uplink wake-up signal.

[0361] Optionally, the sending time slot of the uplink wake-up signal is determined by uplink wake-up signal configuration information.

[0362] Through the technical solution of this embodiment, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, which can clarify the monitoring conditions of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell. Specifically, this solution can clarify the monitoring conditions of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the second cell through the restriction of the second time. Based on the monitoring condition, the terminal device determines whether it needs to monitor the physical downlink control channel of the scheduling system information block 1 by comparing the relationship between the monitoring timing of the physical downlink control channel of the scheduling system information block 1 and the second time. This mechanism can reduce the number of times the terminal device sends an uplink wake-up signal, so that the terminal device can receive the necessary system information block 1 in a timely manner, thereby supporting the improvement of communication efficiency, and / or supporting the reduction of energy consumption of the terminal device and / or network equipment.

[0363] Sixth embodiment

[0364] Reference Figure 6 , Figure 6 This is a flow chart of a processing method according to the sixth embodiment of the present application. The processing method according to the embodiment of the present application can be applied to a network device (such as a base station), and includes the following steps:

[0365] S1: The network device sends a physical downlink control channel so that in response to satisfying a first condition, the terminal device determines to monitor the physical downlink control channel.

[0366] This embodiment proposes a technical solution that can clarify the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of terminal equipment.

[0367] Optionally, the physical downlink control channel is sent by a network device.

[0368] Optionally, the network device may be a base station or the like.

[0369] Optionally, the network device sends a physical downlink control channel, and in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel.

[0370] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0371] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0372] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0373] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0374] Optionally, satisfying the first condition includes at least one of the following:

[0375] The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value;

[0376] The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value;

[0377] The subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value;

[0378] The broadcast status of system information block 1 is broadcast;

[0379] The broadcast status of system information block 1 is not broadcast but requested by other terminal devices;

[0380] The broadcast status of system information block 1 is not broadcast and not requested by any terminal device;

[0381] There is a monitoring opportunity for a type 0 physical downlink control channel in the first time;

[0382] There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

[0383] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0384] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0385] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value and is not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and is not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0386] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0387] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0388] If the broadcast status of the system information block 1 of the terminal device is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0389] If the broadcast status of the system information block 1 of the terminal device is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0390] If the broadcast status of the system information block 1 of the terminal device is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system information block 1;

[0391] If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time;

[0392] If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0393] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0394] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the broadcast status of the system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system information block 1.

[0395] Optionally, if the synchronization signal block subcarrier offset of the first frequency band of the terminal device is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the first time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time.

[0396] Optionally, if the synchronization signal block subcarrier offset of the first frequency band of the terminal device is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the first time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0397] Optionally, if the synchronization signal block subcarrier offset of the first frequency band of the terminal device is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 during the monitoring opportunity within the second time.

[0398] Optionally, if the synchronization signal block subcarrier offset of the first frequency band of the terminal device is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0399] Optionally, the synchronization signal block subcarrier offset is a frequency domain subcarrier offset between the synchronization signal block and the entire resource block grid.

[0400] Optionally, the synchronization signal block subcarrier offset in the main system information block is denoted as K_SSB.

[0401] Optionally, in the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number.

[0402] Optionally, the maximum value of the synchronization signal block subcarrier offset of the first frequency band is less than or equal to the fifth value.

[0403] Optionally, the maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0404] Optionally, the first value is 23, the second value is 11, the third value is 30, the fourth value is 14, the fifth value is 31; and the sixth value is 15.

[0405] Optionally, the first time is a multiple of a transmission period of system information block 1.

[0406] Optionally, the first time is located in the uplink wake-up signal configuration information.

[0407] Optionally, the second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell.

[0408] Optionally, the method further comprises:

[0409] Step S3: The terminal device sends an uplink wake-up signal;

[0410] Step S4: The network device receives an uplink wake-up signal.

[0411] Optionally, the sending time slot of the uplink wake-up signal is determined by uplink wake-up signal configuration information.

[0412] Through the technical solution of this embodiment, the network device sends a physical downlink control channel, so that in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, which can clarify the monitoring mechanism of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell. This solution can clarify the conditions for the terminal device to monitor the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell after the network device sends the physical downlink control channel of the scheduling system information block 1, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of the network device and / or the terminal device.

[0413] Seventh embodiment

[0414] Reference Figure 7 , Figure 7 The seventh embodiment of the present application provides a processing method according to the interaction flow diagram of the network device and the terminal device according to the processing method shown in the seventh embodiment. The seventh embodiment of the present application provides a processing method, including the steps of:

[0415] S1: The network device sends a physical downlink control channel, so that in response to satisfying a first condition, the terminal device determines to monitor the physical downlink control channel;

[0416] S2: In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel.

[0417] This embodiment proposes a technical solution. In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, so as to clarify the monitoring mechanism of the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of the terminal device.

[0418] Optionally, the physical downlink control channel is sent by a network device.

[0419] Optionally, the network device may be a base station or the like.

[0420] Optionally, the network device sends a physical downlink control channel, and in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel.

[0421] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0422] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0423] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0424] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0425] Optionally, satisfying the first condition includes at least one of the following:

[0426] The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value;

[0427] The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value;

[0428] The subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value;

[0429] The broadcast status of system information block 1 is broadcast;

[0430] The broadcast status of system information block 1 is not broadcast but requested by other terminal devices;

[0431] The broadcast status of system information block 1 is not broadcast and not requested by any terminal device;

[0432] There is a monitoring opportunity for a type 0 physical downlink control channel in the first time;

[0433] There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

[0434] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0435] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0436] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value and is not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and is not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0437] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0438] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0439] If the broadcast status of the system information block 1 of the terminal device is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0440] If the broadcast status of the system information block 1 of the terminal device is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0441] If the broadcast status of the system information block 1 of the terminal device is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system information block 1;

[0442] If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time;

[0443] If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0444] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1.

[0445] Optionally, if the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, and the broadcast status of the system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system information block 1.

[0446] Optionally, if the synchronization signal block subcarrier offset of the first frequency band of the terminal device is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the first time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time.

[0447] Optionally, if the synchronization signal block subcarrier offset of the first frequency band of the terminal device is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the first time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0448] Optionally, if the synchronization signal block subcarrier offset of the first frequency band of the terminal device is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and the second cell has a monitoring opportunity for the type 0 physical downlink control channel within the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 during the monitoring opportunity within the second time.

[0449] Optionally, if the synchronization signal block subcarrier offset of the first frequency band of the terminal device is greater than the first value or the synchronization signal block subcarrier offset of the second frequency band is greater than the second value, and there is no monitoring opportunity for the type 0 physical downlink control channel in the second cell within the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0450] Optionally, the synchronization signal block subcarrier offset is a frequency domain subcarrier offset between the synchronization signal block and the entire resource block grid.

[0451] Optionally, the synchronization signal block subcarrier offset in the main system information block is denoted as K_SSB.

[0452] Optionally, in the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number.

[0453] Optionally, the maximum value of the synchronization signal block subcarrier offset of the first frequency band is less than or equal to the fifth value.

[0454] Optionally, the maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0455] Optionally, the first value is 23, the second value is 11, the third value is 30, the fourth value is 14, the fifth value is 31, and the sixth value is 15.

[0456] Optionally, the first time is a multiple of a transmission period of system information block 1.

[0457] Optionally, the first time is located in the uplink wake-up signal configuration information.

[0458] Optionally, the second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell.

[0459] Optionally, the method further comprises:

[0460] Step S3: The terminal device sends an uplink wake-up signal;

[0461] Step S4: The network device receives an uplink wake-up signal.

[0462] Optionally, the sending time slot of the uplink wake-up signal is determined by uplink wake-up signal configuration information.

[0463] Through the technical solution of this embodiment, the network device sends a physical downlink control channel, and in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, which can clarify the monitoring mechanism of the terminal device on the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell. This solution can clarify the conditions for the terminal device to monitor the physical downlink control channel of the scheduling system information block 1 in the network energy-saving cell after the network device sends the physical downlink control channel of the scheduling system information block 1, thereby supporting the improvement of communication efficiency and / or reliability, and / or supporting the reduction of power consumption of the network device and / or the terminal device.

[0464] Eighth embodiment

[0465] See also Figure 8 , Figure 8 A schematic diagram of the structure of the processing device provided in the embodiment of the present application Figure 1 , the device may be mounted on or is the terminal device in the above method embodiment, Figure 8 The processing device shown can be used to perform part or all of the functions of the method embodiments described in the above embodiments, such as Figure 8 As shown, the processing device 160 includes:

[0466] The processing module 1601 is configured to determine to monitor a physical downlink control channel in response to satisfying a first condition.

[0467] Optionally, the device also includes: sending an uplink wake-up signal.

[0468] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0469] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0470] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0471] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0472] Optionally, satisfying the first condition includes at least one of the following:

[0473] The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value;

[0474] The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value;

[0475] The subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value;

[0476] The broadcast status of system information block 1 is broadcast;

[0477] The broadcast status of system information block 1 is not broadcast but requested by other terminal devices;

[0478] The broadcast status of system information block 1 is not broadcast and not requested by any terminal device;

[0479] There is a monitoring opportunity for a type 0 physical downlink control channel in the first time;

[0480] There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

[0481] Optionally, in response to satisfying the first condition, determining to monitor the physical downlink control channel includes at least one of the following:

[0482] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0483] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value and not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0484] If the subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0485] If the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0486] If the broadcast status of system information block 1 is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0487] If the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel that schedules the system information block 1;

[0488] If the broadcast status of system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules system information block 1;

[0489] If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time;

[0490] If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0491] Optionally, the device further comprises at least one of the following:

[0492] The first time is a multiple of the transmission period of system information block 1;

[0493] The first time is located in the uplink wake-up signal configuration information;

[0494] The second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell;

[0495] The sync signal block subcarrier offset is the frequency domain subcarrier offset between the sync signal block and the entire resource block grid;

[0496] The synchronization signal block subcarrier offset in the primary system information block of the second cell is denoted as K_SSB;

[0497] In the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number;

[0498] The maximum value of the subcarrier offset of the synchronization signal block of the first frequency band is less than or equal to the fifth value;

[0499] The maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0500] Optionally, in response to satisfying the first condition, determining to monitor the physical downlink control channel, the apparatus further includes: sending an uplink wake-up signal.

[0501] The processing device provided in the embodiment of the present application has similar implementation principles and beneficial effects to the technical solutions shown in the above-mentioned corresponding method embodiments, and will not be described in detail here.

[0502] Ninth embodiment

[0503] See also Fig. 9 , Fig. 9 A schematic diagram of the structure of the processing device provided in the embodiment of the present application Figure 2 The device may be mounted on or be the network device in the above method embodiment. Fig. 9 The processing device shown can be used to perform part or all of the functions of the method embodiments described in the above embodiments, such as Fig. 9 As shown, the device 170 includes:

[0504] The sending module 1701 is used to send a physical downlink control channel so that in response to satisfying a first condition, the terminal device determines to monitor the physical downlink control channel.

[0505] Optionally, the device also includes: receiving an uplink wake-up signal.

[0506] Optionally, the physical downlink control channel is a type 0 physical downlink control channel.

[0507] Optionally, the physical downlink control channel is a physical downlink control channel of the scheduling system information block 1.

[0508] Optionally, before sending the uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0509] Optionally, if the terminal device has a request configuration for system information block 1 of the second cell, and before the terminal device transmits an uplink wake-up signal, in response to satisfying the first condition, the terminal device determines whether to monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0510] Optionally, satisfying the first condition includes at least one of the following:

[0511] The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value;

[0512] The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value;

[0513] The subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value;

[0514] The broadcast status of system information block 1 is broadcast;

[0515] The broadcast status of system information block 1 is not broadcast but requested by other terminal devices;

[0516] The broadcast status of system information block 1 is not broadcast and not requested by any terminal device;

[0517] There is a monitoring opportunity for a type 0 physical downlink control channel in the first time;

[0518] There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

[0519] Optionally, in response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following:

[0520] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0521] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value and is not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and is not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0522] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0523] If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1;

[0524] If the broadcast status of the system information block 1 of the terminal device is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0525] If the broadcast status of the system information block 1 of the terminal device is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1;

[0526] If the broadcast status of the system information block 1 of the terminal device is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules the system information block 1;

[0527] If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time;

[0528] If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

[0529] Optionally, the device further comprises at least one of the following:

[0530] The first time is a multiple of the transmission period of system information block 1;

[0531] The first time is located in the uplink wake-up signal configuration information;

[0532] The second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell;

[0533] The sync signal block subcarrier offset is the frequency domain subcarrier offset between the sync signal block and the entire resource block grid;

[0534] The synchronization signal block subcarrier offset is denoted as K_SSB;

[0535] In the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number;

[0536] The maximum value of the subcarrier offset of the synchronization signal block of the first frequency band is less than or equal to the fifth value;

[0537] The maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

[0538] The processing device provided in the embodiment of the present application has similar implementation principles and beneficial effects to the technical solutions shown in the above-mentioned corresponding method embodiments, and will not be described in detail here.

[0539] See also Fig.10 , Fig.10 This is a schematic diagram of the structure of the communication device provided in the embodiment of the present application. Fig.10As shown, the communication device 180 described in this embodiment can be the terminal device (or a component that can be used for the terminal device) or the network device (or a component that can be used for the network device) mentioned in the above method embodiment. The communication device 180 can be used to implement the method corresponding to the terminal device or the network device described in the above method embodiment, and specifically refer to the description in the above method embodiment.

[0540] The communication device 180 may include one or more processors 1801, which may also be referred to as a processing unit, and may implement certain control or processing functions. The processor 1801 may be a general-purpose processor or a dedicated processor, etc. For example, it may be a baseband processor or a central processing unit. The baseband processor may be used to process the communication protocol and communication data, and the central processing unit may be used to control the communication device, execute the software program, and process the data of the software program.

[0541] Optionally, the processor 1801 may also store instructions 1803 or data (eg, intermediate data). Optionally, the instructions 1803 may be executed by the processor 1801, so that the communication device 180 executes the method corresponding to the terminal device or network device described in the above method embodiment.

[0542] Optionally, the communication device 180 may include a circuit that can implement the functions of sending or receiving or communicating in the aforementioned method embodiments.

[0543] Optionally, the communication device 180 may include one or more memories 1802 , on which instructions 1804 may be stored. The instructions may be executed on the processor 1801 , so that the communication device 180 executes the method described in the above method embodiment.

[0544] Optionally, data may also be stored in the memory 1802. The processor 1801 and the memory 1802 may be provided separately or integrated together.

[0545] Optionally, the communication device 180 may further include a transceiver 1805 and / or an antenna 1806. The processor 1801 may be referred to as a processing unit, and controls the communication device 180 (terminal device or core network device or wireless access network device). The transceiver 1805 may be referred to as a transceiver unit, a transceiver, a transceiver circuit, or a transceiver, etc., and is used to implement the transceiver function of the communication device 180.

[0546] Optionally, if the communication device 180 is used to implement operations corresponding to the terminal device in the above-mentioned embodiments, for example, the transceiver 1805 can receive a physical downlink control channel; and the processor 1801 determines to monitor the physical downlink control channel in response to satisfying the first condition.

[0547] Optionally, the specific implementation process of the processor 1801 and the transceiver 1805 can refer to the relevant description of the above embodiments, which will not be repeated here.

[0548] Optionally, if the communication device 180 is used to implement operations corresponding to the network devices in the above embodiments, for example: the physical downlink control channel can be sent by the transceiver 1805.

[0549] Optionally, the specific implementation process of the processor 1801 and the transceiver 1805 can refer to the relevant description of the above embodiments, which will not be repeated here.

[0550] The processor 1801 and the transceiver 1805 described in the present application can be implemented in an IC (Integrated Circuit), an analog integrated circuit, an RFIC (Radio Frequency Integrated Circuit), a mixed signal integrated circuit, an ASIC (Application Specific Integrated Circuit), a PCB (Printed Circuit Board), an electronic device, etc. The processor 1801 and the transceiver 1805 can also be manufactured using various integrated circuit process technologies, such as CMOS (Complementary Metal Oxide Semiconductor), NMOS (N Metal-Oxide-Semiconductor), PMOS (Positive channel Metal Oxide Semiconductor), BJT (Bipolar Junction Transistor), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaAs), etc.

[0551] In this application, the communication device may be a terminal device (such as a mobile phone) or a network device (such as a base station), which needs to be determined according to the context. In addition, the terminal device may be implemented in various forms. For example, the terminal device described in this application may include mobile terminals such as mobile phones, tablet computers, laptop computers, PDAs, portable media players (PMPs), navigation devices, wearable devices, smart bracelets, pedometers, etc., as well as fixed terminal devices such as digital TVs and desktop computers.

[0552] Although in the above embodiments, the communication device is described by taking a terminal device or a network device as an example, the scope of the communication device described in the present application is not limited to the above terminal device or network device, and the structure of the communication device may not be limited to the above terminal device or network device. Fig.10 The communication device may be a stand-alone device or may be part of a larger device.

[0553] An embodiment of the present application also provides a communication system, including: a terminal device as in any of the above embodiments; and a network device as in any of the above embodiments.

[0554] An embodiment of the present application also provides a communication device, including a memory and a processor, wherein a processing program is stored in the memory, and when the processing program is executed by the processor, the steps of the processing method in any of the above embodiments are implemented.

[0555] The communication device in this application can be a terminal device (such as a mobile phone), a network device (such as a base station), or a chip (such as a SOC or a baseband chip with communication functions, etc.). The specific reference needs to be clarified based on the context.

[0556] An embodiment of the present application further provides a computer-readable storage medium, on which a processing program is stored. When the processing program is executed by a processor, the steps of the processing method in any of the above embodiments are implemented.

[0557] In the embodiments of the communication device and the storage medium provided in the embodiments of the present application, all the technical features of any of the above-mentioned processing method embodiments may be included, and the expansion and explanation content of the specification are basically the same as those of the embodiments of the above-mentioned methods, and will not be repeated here.

[0558] The embodiment of the present application further provides a computer program product, which includes a computer program code. When the computer program code runs on a computer, the computer executes the methods in the various possible implementation modes described above.

[0559] An embodiment of the present application also provides a chip, including a memory and a processor, the memory is used to store computer programs, and the processor is used to call and run the computer programs from the memory, so that a device equipped with the chip executes the methods in various possible implementation modes as described above.

[0560] It is understood that the above scenarios are only examples and do not constitute a limitation on the application scenarios of the technical solutions provided in the embodiments of the present application. The technical solutions of the present application can also be applied to other scenarios. For example, it is known to those skilled in the art that with the evolution of the system architecture and the emergence of new business scenarios, the technical solutions provided in the embodiments of the present application are also applicable to similar technical problems.

[0561] The serial numbers of the above-mentioned embodiments of the present application are for description only and do not represent the advantages or disadvantages of the embodiments.

[0562] The steps in the method of the embodiment of the present application can be adjusted in order, combined and deleted according to actual needs.

[0563] The units in the device of the embodiment of the present application can be merged, divided and deleted according to actual needs.

[0564] In the present application, the same or similar terminology concepts, technical solutions and / or application scenario descriptions are generally described in detail only the first time they appear. When they appear again later, they are generally not repeated for the sake of brevity. When understanding the technical solutions and other contents of the present application, for the same or similar terminology concepts, technical solutions and / or application scenario descriptions that are not described in detail later, reference can be made to the previous related detailed descriptions.

[0565] In the present application, the description of each embodiment has its own emphasis. For parts that are not described or recorded in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0566] The various technical features of the technical solution of the present application can be arbitrarily combined. In order to make the description concise, not all possible combinations of the various technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of the present application.

[0567] Through the description of the above implementation methods, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of software plus a necessary general hardware platform, and of course by hardware, but in many cases the former is a better implementation method. Based on such an understanding, the technical solution of the present application, or the part that contributes to the prior art, can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, disk, CD) as above, including a number of instructions for a terminal device (which can be a mobile phone, computer, server, controlled terminal device, or network device, etc.) to execute the method of each embodiment of the present application.

[0568] In the above embodiments, it can be implemented in whole or in part by software, hardware, firmware or any combination thereof. When implemented using software, it can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. When loading and executing computer program instructions on a computer, the process or function according to the embodiment of the present application is generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. Computer instructions can be stored in a storage medium, or transmitted from one storage medium to another storage medium. For example, computer instructions can be transmitted from a website site, computer, server or data center to another website site, computer, server or data center by wired (e.g., coaxial cable, optical fiber, digital subscriber line) or wireless (e.g., infrared, wireless, microwave, etc.) mode. The storage medium can be any available medium that a computer can access or a data storage device such as a server or data center that includes one or more available media integration. Available media can be magnetic media, (e.g., floppy disk, storage disk, tape), optical media (e.g., DVD), or semiconductor media (e.g., solid-state storage disk Solid State Disk (SSD)), etc.

[0569] The above are only preferred embodiments of the present application, and are not intended to limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A processing method, characterized in that: Applied to terminal equipment, including the steps of: S2: In response to satisfying a first condition, determining to monitor a physical downlink control channel.

2. The method according to claim 1, characterized in that Also includes at least one of the following: The physical downlink control channel is a type 0 physical downlink control channel; The physical downlink control channel is the physical downlink control channel of the scheduling system information block 1; The first condition includes at least one of the following: The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value; The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value; The synchronization signal block subcarrier offset of the first frequency band is equal to the third value, or the synchronization signal block subcarrier offset of the second frequency band is equal to the fourth value; The broadcast status of system information block 1 is broadcast; The broadcast status of system information block 1 is not broadcast but requested by other terminal devices; The broadcast status of system information block 1 is not broadcast and not requested by any terminal device; There is a monitoring opportunity for a type 0 physical downlink control channel in the first time; There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

3. The method according to claim 2, characterized in that Step S2 includes at least one of the following: If the subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1; If the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value and not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1; If the subcarrier offset of the synchronization signal block of the first frequency band is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1; If the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1; If the broadcast status of system information block 1 is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1; If the broadcast status of the system information block 1 is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel that schedules the system information block 1; If the broadcast status of system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules system information block 1; If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time; If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

4. The method according to claim 3, characterized in that Also includes at least one of the following: The first time is a multiple of the transmission period of system information block 1; The second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell; The first time is located in the uplink wake-up signal configuration information; In the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number; The maximum value of the subcarrier offset of the synchronization signal block of the first frequency band is less than or equal to the fifth value; The maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

5. A processing method, characterized in that: Applied to network equipment, including the steps of: S1: Send a physical downlink control channel so that in response to satisfying a first condition, the terminal device determines to monitor the physical downlink control channel.

6. The method according to claim 5, characterized in that Also includes at least one of the following: The physical downlink control channel is a type 0 physical downlink control channel; The physical downlink control channel is the physical downlink control channel of the scheduling system information block 1; The first condition includes at least one of the following: The subcarrier offset of the synchronization signal block of the first frequency band is greater than or equal to 0 and less than or equal to the first value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value; The subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value; The synchronization signal block subcarrier offset of the first frequency band is equal to the third value, or the synchronization signal block subcarrier offset of the second frequency band is equal to the fourth value; The broadcast status of system information block 1 is broadcast; The broadcast status of system information block 1 is not broadcast but requested by other terminal devices; The broadcast status of system information block 1 is not broadcast and not requested by any terminal device; There is a monitoring opportunity for a type 0 physical downlink control channel in the first time; There is a monitoring opportunity for the type 0 physical downlink control channel within the second time.

7. The method according to claim 6, characterized in that In response to satisfying the first condition, the terminal device determines to monitor the physical downlink control channel, including at least one of the following: If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than or equal to 0 and less than or equal to the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than or equal to 0 and less than or equal to the second value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1; If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is greater than the first value and is not equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value and is not equal to the fourth value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1; If the subcarrier offset of the synchronization signal block of the first frequency band of the terminal device is equal to the third value, or the subcarrier offset of the synchronization signal block of the second frequency band is equal to the fourth value, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1; if the subcarrier offset of the synchronization signal block of the first frequency band is greater than the first value or the subcarrier offset of the synchronization signal block of the second frequency band is greater than the second value, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1; If the broadcast status of system information block 1 is broadcast, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1; If the broadcast status of the system information block 1 of the terminal device is not broadcast but has been requested by other terminal devices, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1; If the broadcast status of system information block 1 is not broadcast and not requested by any terminal device, the terminal device does not monitor the type 0 physical downlink control channel that schedules system information block 1; If there is a monitoring opportunity for the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device monitors the type 0 physical downlink control channel of the scheduling system information block 1 within the first time or the second time; If there is no opportunity to monitor the type 0 physical downlink control channel within the first time or the second time of the terminal device, the terminal device does not monitor the type 0 physical downlink control channel of the scheduling system information block 1.

8. The method according to claim 7, characterized in that Also includes at least one of the following: The first time is a multiple of the transmission period of system information block 1; The second time is the interval between the terminal device receiving the uplink wake-up signal configuration information in the first cell and the terminal device sending the uplink wake-up signal in the second cell; The first time is located in the uplink wake-up signal configuration information; In the first frequency band or the second frequency band, the value of the synchronization signal block subcarrier offset is a natural number; The maximum value of the subcarrier offset of the synchronization signal block of the first frequency band is less than or equal to the fifth value; The maximum value of the synchronization signal block subcarrier offset of the second frequency band is less than or equal to the sixth value.

9. A communication device, characterized in that: include: A memory and a processor, wherein a processing program is stored in the memory, and when the processing program is executed by the processor, the processing method according to any one of claims 1 to 8 is implemented.

10. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores a processing program, and when the processing program is executed by a processor, the processing method according to any one of claims 1 to 8 is implemented.

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