Wake-up method, transmitting end device, receiving end device and communication system
By generating flexible wake-up sequence signals based on the wake-up mode, the problem of low wake-up efficiency in existing technologies is solved, achieving efficient wake-up of receiving devices and adapting to various application scenarios.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HONOR DEVICE CO LTD
- Filing Date
- 2025-01-23
- Publication Date
- 2026-07-31
AI Technical Summary
In existing communication systems, the wake-up sequence signal structure and length are fixed, which cannot adapt to the wake-up needs of multiple receiving devices, resulting in low wake-up efficiency and poor performance.
Based on different wake-up modes, the structure and length of the wake-up sequence signal are determined, and a flexible wake-up sequence signal is generated, including control code field, device code field, group code field and data code field, to indicate wake-up actions at different levels.
It improves the wake-up efficiency of the transmitting device to the receiving device, enhances the wake-up performance, and is suitable for wake-up scenarios involving multiple receiving devices or some component units.
Smart Images

Figure CN122496891A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of communications, and more specifically, to a wake-up method, a transmitting device, a receiving device, and a communication system. Background Technology
[0002] In communication systems, when a receiving device is not interacting with a transmitting device for data or commands, it can enter a sleep state, ceasing to receive or respond to data or commands from the transmitting device, thus reducing power consumption. When the transmitting device needs to interact with the sleeping receiving device, it can send a wake-up sequence signal. Even in a sleep state, the receiving device can still receive and respond to the wake-up sequence signal. The receiving device can then respond to the wake-up sequence signal to exit the sleep state and resume data and command interaction with the transmitting device. However, the structure and length of the wake-up sequence signal are fixed, making it unsuitable for applications requiring the wake-up of multiple receiving devices. This results in low efficiency and poor performance for the transmitting device in waking up the receiving device. Summary of the Invention
[0003] This application provides a wake-up method, a transmitting device, a receiving device, and a communication system.
[0004] In a first aspect, this application provides a wake-up method applied to a transmitting device in a communication system. The communication system further includes at least one receiving device, which communicates with the transmitting device. Each receiving device includes at least one component unit. The method includes: determining a wake-up mode of the communication system in response to the communication system meeting a wake-up condition; generating a corresponding wake-up sequence signal based on the determined wake-up mode, wherein the structure and length of the wake-up sequence signal are determined according to the wake-up mode; and sending the generated wake-up sequence signal to the at least one receiving device to control the corresponding receiving device to perform a wake-up action on the corresponding component unit.
[0005] In conjunction with the first aspect, in one possible implementation, the wake-up sequence signal includes a control code field, which is used to identify the wake-up mode.
[0006] In conjunction with the first aspect, in one possible implementation, generating a corresponding wake-up sequence signal according to a determined wake-up mode includes: generating a first wake-up sequence signal in response to the wake-up mode being a first wake-up mode. The first wake-up sequence signal includes a first control code field, and is used to instruct all component units of all receiving devices in the communication system to perform a wake-up action.
[0007] In conjunction with the first aspect, in one possible implementation, generating a corresponding wake-up sequence signal based on a determined wake-up mode includes: generating a second wake-up sequence signal in response to the wake-up mode being a second wake-up mode. The second wake-up sequence signal includes a second control code field and a device code field. The device code field indicates the identification information of the target device to be woken up, and the second wake-up sequence signal indicates that a wake-up action should be performed on all component units of the target device.
[0008] In conjunction with the first aspect, in one possible implementation, generating a corresponding wake-up sequence signal based on a determined wake-up mode includes: generating a third wake-up sequence signal in response to the wake-up mode being a third wake-up mode. The third wake-up sequence signal includes a third control code field and a block code field. The block code field indicates identification information of a target block, the target block including at least one receiving device, and the third wake-up sequence signal instructs all component units of all receiving devices in the target block to perform a wake-up action.
[0009] In conjunction with the first aspect, in one possible implementation, generating a corresponding wake-up sequence signal based on a determined wake-up mode includes: generating a fourth wake-up sequence signal in response to the wake-up mode being a fourth wake-up mode. The fourth wake-up sequence signal includes a fourth control code field and a data code field. The data code field is used to indicate the identification information of the target component unit to be woken up, and the target component unit includes at least one component unit. The fourth wake-up sequence signal is used to instruct the execution of a wake-up action on the target component units in all receiving devices in the communication system.
[0010] In conjunction with the first aspect, in one possible implementation, a corresponding wake-up sequence signal is generated according to the determined wake-up mode, including: generating a fifth wake-up sequence signal in response to the wake-up mode being a fifth wake-up mode. The fifth wake-up sequence signal includes a fifth control code field, a device code field, and a data code field. The device code field indicates the identification information of the target device to be woken up, the data code field indicates the identification information of the target component unit to be woken up, and the fifth wake-up sequence signal indicates that a wake-up action should be performed on the target component unit of the target device.
[0011] In conjunction with the first aspect, in one possible implementation, generating a corresponding wake-up sequence signal according to a determined wake-up mode includes: generating a sixth wake-up sequence signal in response to the wake-up mode being a sixth wake-up mode. The sixth wake-up sequence signal includes a sixth control code field, a block code field, and a data code field. The block code field indicates the identification information of a target block, which includes at least one receiving device; the data code field indicates the identification information of a target component unit to be woken up, which includes at least one component unit; and the sixth wake-up sequence signal instructs the execution of a wake-up action on the target component units of all receiving devices in the target block.
[0012] In conjunction with the first aspect, in one possible implementation, the method further includes: in response to receiving a wake-up command, confirming that the communication system meets the wake-up conditions. The wake-up command is used to instruct at least one component unit in at least one receiving device to perform a wake-up action.
[0013] Secondly, this application provides a wake-up method applied to a receiving device in a communication system. The communication system further includes a transmitting device that communicates with the receiving device. The receiving device includes at least one component unit. The method comprises: receiving a wake-up sequence signal. The wake-up sequence signal is used to instruct a target device to be woken up in the communication system to perform a wake-up action on a corresponding target component unit. The target component unit includes at least one component unit. In response to determining that the target device includes the receiving device based on the wake-up sequence signal, a wake-up action is performed on the target component unit.
[0014] In conjunction with the second aspect, in one possible implementation, the wake-up sequence signal includes a control code field, and the method further includes: determining whether the target device includes a receiving device based on the control code field.
[0015] In conjunction with the second aspect, in one possible implementation, in response to the control code field being a first control code field, a wake-up sequence signal is confirmed as a first wake-up sequence signal, wherein the first wake-up sequence signal includes the first control code field, and the first wake-up sequence signal is used to instruct all component units of all receiving devices in the communication system to perform a wake-up action. The confirmed target device includes the receiving device.
[0016] In conjunction with the second aspect, in one possible implementation, in response to the control code field being a second control code field, a second wake-up sequence signal is confirmed as a second wake-up sequence signal. The second wake-up sequence signal includes a second control code field and a device code field. The device code field indicates the identification information of the target device, and the second wake-up sequence signal indicates that a wake-up action should be performed on all component units in the target device. The device code field is used to confirm whether the target device includes a receiving device.
[0017] In conjunction with the second aspect, in one possible implementation, in response to the control code field being a third control code field, a wake-up sequence signal is confirmed as a third wake-up sequence signal. This third wake-up sequence signal includes a third control code field and a block code field. The block code field indicates the identification information of the target block, and the third wake-up sequence signal instructs all component units in all receiving devices within the target block to perform a wake-up action. The block code field is used to confirm whether the target device includes a receiving device.
[0018] In conjunction with the second aspect, in one possible implementation, in response to the control code field being the fourth control code field, the confirmation wake-up sequence signal is the fourth wake-up sequence signal, wherein the fourth wake-up sequence signal includes the fourth control code field and the data code field, the data code field is used to indicate the identification information of the target component unit, and the fourth wake-up sequence signal is used to indicate the execution of a wake-up action on the target component unit in all receiving devices in the communication system.
[0019] In conjunction with the second aspect, in one possible implementation, in response to the control code field being the fifth control code field, a confirmation wake-up sequence signal is also confirmed as the fifth wake-up sequence signal. This fifth wake-up sequence signal includes a fifth control code field, a device code field, and a data code field. The device code field indicates the identification information of the target device, the data code field indicates the identification information of the target component unit, and the fifth wake-up sequence signal instructs the target component unit in the target device to perform a wake-up action. The device code field is used to confirm whether the target device includes a receiving device.
[0020] In conjunction with the second aspect, in one possible implementation, in response to the control code field being the sixth control code field, a wake-up sequence signal is confirmed as the sixth wake-up sequence signal. This sixth wake-up sequence signal includes a sixth control code field, a block code field, and a data code field. The block code field indicates the identification information of the target block, the data code field indicates the identification information of the target component unit, and the sixth wake-up sequence signal indicates that a wake-up action should be performed on the target component units in all receiving devices within the target block. The block code field is used to confirm whether the target device includes a receiving device.
[0021] In conjunction with the second aspect, in one possible implementation, in response to the identification information of the target device including the device identification information pre-stored by the receiving device, it is confirmed that the target device includes the receiving device.
[0022] In conjunction with the second aspect, in one possible implementation, when the identification information of the target packet includes packet identification information pre-stored by the receiving device, it is confirmed that the target device includes the receiving device.
[0023] Thirdly, this application provides a transmitting device that communicates with at least one receiving device, the transmitting device being used to execute a wake-up method as provided in any possible implementation of the first aspect.
[0024] Fourthly, this application provides a receiving device, which includes at least one component unit and communicates with a transmitting device. The receiving device is used to execute a wake-up method as provided in any possible implementation of the second aspect.
[0025] Fifthly, this application provides a communication system, which includes a transmitting device and at least one receiving device. The transmitting device and the at least one receiving device are communicatively connected. The transmitting device is used to execute a wake-up method provided by any possible implementation of the first aspect, and the at least one receiving device is used to execute a wake-up method provided by any possible implementation of the second aspect.
[0026] This application determines different structures and lengths of wake-up sequence signals based on different wake-up modes, thereby generating different wake-up sequence signals and sending them to the receiving device. Therefore, the structure and length of the wake-up sequence signals in this application can be flexibly and adaptively adjusted according to different wake-up modes. This allows for applications requiring the wake-up of multiple receiving devices or specific component units within multiple receiving devices, improving the wake-up efficiency and performance of the transmitting device. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of a communication system provided in an embodiment of this application.
[0028] Figure 2 This is a schematic diagram of a transmitting end device and a receiving end device provided in an embodiment of this application.
[0029] Figure 3 This is the structure of the wake-up sequence signal for the first application scenario.
[0030] Figure 4 This is the structure of the wake-up sequence signal for the second application scenario.
[0031] Figure 5 This is a schematic diagram of the second application scenario.
[0032] Figure 6 This is the structure of the wake-up sequence signal for the third application scenario.
[0033] Figure 7 A schematic diagram showing the different receiving devices included in different groups.
[0034] Figure 8This is the structure of the wake-up sequence signal for the fourth application scenario.
[0035] Figure 9 This is a schematic diagram of different component units.
[0036] Figure 10 This is a diagram illustrating the functional requirements of waking up only a single component unit.
[0037] Figure 11 This is the structure of the wake-up sequence signal for the fifth application scenario.
[0038] Figure 12 This is the structure of the wake-up sequence signal for the sixth application scenario.
[0039] Figure 13 This is a schematic diagram of the frequency sweep range of the transmitting device.
[0040] Figure 14 A flowchart of a wake-up method provided in this application.
[0041] Figure 15 A flowchart of another wake-up method provided in this application.
[0042] Figure 16 A flowchart of yet another wake-up method provided in this application.
[0043] Figure 17 A flowchart of yet another wake-up method provided in this application.
[0044] Explanation of main component symbols
[0045] Communication System 10
[0046] Transmitter device 11
[0047] Receiver device 12
[0048] Main controller 111
[0049] Main transceiver 112
[0050] Main antenna 113
[0051] Antenna 121
[0052] Wake-up receiver 122
[0053] RF transceiver 123
[0054] Antenna switch 124
[0055] Microcontroller Unit 125
[0056] Component Unit 126 Detailed Implementation
[0057] The technical solutions in the embodiments of this application will be clearly described below with reference to the accompanying drawings.
[0058] It is understood that the connection relationships described in this application refer to direct or indirect connections. For example, the connection between A and B can be a direct connection between A and B, or an indirect connection between A and B through one or more other electrical components. For example, A can be directly connected to C, and C can be directly connected to B, thus achieving a connection between A and B through C. It is also understood that the "A connects to B" described in this application can be a direct connection between A and B, or an indirect connection between A and B through one or more other electrical components.
[0059] In the description of this application, unless otherwise stated, " / " means "or". For example, A / B can mean A or B. The "and / or" in this document is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A exists alone, A and B exist simultaneously, and B exists alone.
[0060] In the description of this application, the words "first," "second," etc., are used only to distinguish different objects and do not limit the quantity or order of execution, nor do they imply that they must be different. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion.
[0061] Please see Figure 1 , Figure 1 This is a schematic diagram of a communication system 10 provided in an embodiment of this application.
[0062] The communication system 10 includes a transmitting device 11 and a receiving device 12. The number of transmitting devices 11 and the number of receiving devices 12 can both be positive integers greater than or equal to 1. Here, we will use an example where the number of transmitting devices 11 is 1 and the number of receiving devices 12 is 4, but this application does not impose any limitation on the number of transmitting devices 11 and receiving devices 12.
[0063] Each receiving device 12 is communicatively connected to the transmitting device 11. Each receiving device 12 can communicate with the transmitting device 11. For example, the receiving device 12 can transmit data signals to the transmitting device 11, that is, the receiving device 12 can interact with the transmitting device 11. As another example, the receiving device 12 can transmit command signals to the transmitting device 11, that is, the receiving device 12 can interact with the transmitting device 11, so that either the receiving device 12 or the transmitting device 11 can perform a corresponding operation in response to a command sent by the other, or the transmitting device 11 can perform a corresponding operation in response to a command sent by the receiving device 12.
[0064] When the receiving device 12 does not interact with the sending device 11 in terms of data or commands, the receiving device 12 can enter a sleep state and no longer receive or respond to data, commands, or other signals sent by the sending device 11, thereby reducing the power consumption of the receiving device 12.
[0065] When the transmitting device 11 needs to interact with the receiving device 12, which is in a sleep state, it can send a wake-up sequence signal to the receiving device 12. Even if the receiving device 12 is in a sleep state, it can still receive and respond to the wake-up sequence signal. The receiving device 12 can respond to the wake-up sequence signal to exit the sleep state and resume data and command interaction with the transmitting device 11.
[0066] In some embodiments, the communication system 10 may be a Global System of Mobile communication (GSM) system, a Code Division Multiple Access (CDMA) system, a Wideband Code Division Multiple Access (WCDMA) system, a General Packet Radio Service (GPRS) system, a Long Term Evolution (LTE) system, an LTE Frequency Division Duplex (FDD) system, an LTE Time Division Duplex (TDD) system, a Universal Mobile Telecommunication System (UMTS) system, or a Worldwide Interoperability for Microwave Access (WiMAX) communication system, etc.
[0067] In some embodiments, the transmitting device 11 and the receiving device 12 can be user equipment (UE), mobile station (MS), mobile terminal (MT), etc. The UE can include mobile phones, tablets, laptops, ultra-mobile personal computers (UMPCs), handheld computers, walkie-talkies, netbooks, point-of-sale (POS) machines, personal digital assistants (FIAs), wearable devices, virtual reality devices, wireless USB flash drives, Bluetooth speakers / headphones, or in-vehicle pre-installed devices, dashcams, security equipment, and other mobile or fixed terminals. In addition, the transmitting device 11 can also be a wireless access point, base station, communication satellite, navigation satellite, low-Earth orbit satellite, network-side NodeB, evolved network-side eNodeB, the network side in the 5G mobile communication system 10, the network side in the future mobile communication system 10, or an access node in a WiFi system, etc. The receiver device 12 can also be used for wake-up radio (WuR) terminal devices, sensors, smart home devices, smart medical devices, smart wearable devices, smart cars, etc.
[0068] In some embodiments, the communication connection between the receiving device 12 and the transmitting device 11 is a wireless connection. For example, Bluetooth connection, Wi-Fi connection, Zigbee connection, Near Field Communication (NFC) connection, Narrow Band Internet of Things (NB-IoT) connection, Long Range Radio (LoRa) connection, etc.
[0069] In some embodiments, the transmitting device 11 can group the multiple receiving devices 12 to facilitate group management of the multiple receiving devices 12. For example, the transmitting device 11 can group the multiple receiving devices 12 according to their types. For example, the transmitting device 11 can group all receiving devices 12 that are sensors into the same group. The same receiving device 12 can belong to different groups.
[0070] Please see Figure 2 , Figure 2 This is a schematic diagram of a transmitting device 11 and a receiving device 12 provided in an embodiment of this application.
[0071] The transmitting device 11 includes a main controller 111, a main transceiver 112 (Radio Frequency Transceiver, RF Transceiver), and a main antenna 113. The main controller 111 is connected to the main transceiver 112. The main transceiver 112 is also connected to the main antenna 113.
[0072] The main controller 111 is used to generate data signals, instruction signals, wake-up sequence signals and other signals.
[0073] The main transceiver 112 is used for signal processing of data signals, command signals, wake-up sequence signals, etc. For example, modulation, encoding, scrambling, up-conversion, filtering, and amplification.
[0074] Correspondingly, the main antenna 113 is used to transmit processed data signals, command signals, wake-up sequence signals, and other signals to the receiving device 12.
[0075] The main antenna 113 is also used to receive data signals, command signals and other signals transmitted by the receiving device 12.
[0076] Correspondingly, the main transceiver 112 is also used to perform signal processing on the data signals, command signals, and other signals received by the main antenna 113. For example, demodulation, decoding, descrambling, down-conversion, filtering, and amplification.
[0077] Correspondingly, the main controller 111 is also used to analyze and respond to the processed data signals and command signals.
[0078] Each receiving device 12 includes an antenna 121, a wake-up receiver 122, an RF transceiver 123, an antenna switch 124, a microcontroller unit (MCU) 125, and at least one component unit 126. The antenna switch 124 has at least three terminals. The first terminal of the antenna switch 124 is connected to the antenna 121. The second terminal of the antenna switch 124 is connected to the wake-up receiver 122. The third terminal of the antenna switch 124 is connected to the RF transceiver 123. The wake-up receiver 122 is also connected to the RF transceiver 123. The wake-up receiver 122 is also connected to the microcontroller unit 125. The microcontroller unit 125 is connected to at least one component unit 126.
[0079] In some embodiments, component unit 126 may be a hardware unit such as a Bluetooth unit, an audio unit, a camera unit, or a screen unit.
[0080] Antenna 121 is used to receive data signals, command signals, wake-up sequence signals and other signals transmitted by transmitting device 11.
[0081] Antenna switch 124 is used to establish an electrical connection between antenna 121 and wake-up receiver 122. Alternatively, antenna switch 124 is used to establish an electrical connection between antenna 121 and RF transceiver 123. For example, when receiver device 12 is in sleep mode, antenna switch 124 activates its second terminal, establishing an electrical connection between antenna 121 and wake-up receiver 122. Receiver device 12 can then listen to and receive wake-up sequence signals. As another example, when receiver device 12 is interacting with transmitter device 11 for data or commands, antenna switch 124 activates its third terminal, establishing an electrical connection between antenna 121 and RF transceiver 123. Receiver device 12 can then transmit or receive data signals and / or command signals.
[0082] The radio frequency transceiver 123 is used to perform signal processing on data signals, command signals, and other signals. For example, when the receiving device 12 transmits data signals and / or command signals, the radio frequency transceiver 123 performs signal processing such as modulation, encoding, scrambling, up-conversion, filtering, and amplification on the data signals and command signals. As another example, when the receiving device 12 receives data signals and / or command signals, the radio frequency transceiver 123 performs signal processing such as demodulation, decoding, descrambling, down-conversion, filtering, and amplification on the data signals and command signals.
[0083] The wake-up receiver 122 is used to perform signal processing on the wake-up sequence signal. For example, signal processing such as demodulation, decoding, descrambling, downconversion, filtering, and amplification.
[0084] The transmitting device 11 can determine the wake-up mode of the communication system 10 in response to the communication system 10 meeting the wake-up conditions.
[0085] Specifically, the transmitting device 11 can confirm that the communication system 10 meets the wake-up conditions upon receiving a wake-up command. The wake-up command instructs at least one component unit 126 in at least one receiving device 12 to perform a wake-up action. The wake-up mode indicates the target device to be woken up and the target component unit within that target device to be woken up. That is, the wake-up mode indicates at least one component unit 126 in at least one receiving device 12 that performs the wake-up action as indicated by the wake-up command.
[0086] For example, a wake-up command can be input by a user to the transmitting device 11 based on the target device to be woken up and the target components within that target device. After receiving the wake-up command input by the user, the transmitting device 11 can obtain the target device to be woken up and the target components within that target device based on the wake-up command. Thus, the transmitting device 11 can determine the wake-up mode of the communication system 10 based on the target device to be woken up and the target components within that target device.
[0087] For example, the wake-up command can be generated by the transmitting device 11 according to preset conditions. When the transmitting device 11 is a smart home device and the receiving device 12 is a wireless access point device, the transmitting device 11 can generate a wake-up command after power-on. This wake-up command is used to instruct all wireless access point devices to perform a wake-up action, thereby enabling smart home devices to quickly join the Internet of Things and improving the user's smart IoT experience. At this time, the transmitting device 11 can respond to the wake-up command and determine the wake-up mode of the communication system 10, wherein the wake-up mode is used to instruct all wireless access point devices communicating with smart home devices to perform a wake-up action.
[0088] The transmitting device 11 can generate a corresponding wake-up sequence signal according to the determined wake-up mode. The wake-up sequence signal is used to instruct the target device to be woken up in the communication system 10 to perform a wake-up action on the corresponding target component unit. The target component unit includes at least one component unit 126.
[0089] The structure and length of the wake-up sequence signal are determined according to the wake-up mode. For example, the wake-up modes include the first wake-up mode to the sixth wake-up mode, and correspondingly, the wake-up sequence signal includes the first wake-up sequence signal to the sixth wake-up sequence signal. Different wake-up sequence signals may have different structures and / or lengths.
[0090] Subsequently, the transmitting device 11 sends the generated wake-up sequence signal to at least one receiving device 12 to control the corresponding receiving device 12 to perform a wake-up action on the corresponding component unit 126.
[0091] Correspondingly, the receiving device 12 can receive a wake-up sequence signal and determine whether the target device to be woken up includes the receiving device 12 based on the wake-up sequence signal. If so, the target component unit to be woken up will perform a wake-up action. Specifically, the receiving device 12 can determine whether the target device includes the receiving device 12 based on the control code field.
[0092] Specifically, please refer to Figure 3 , Figure 3 The diagram shown is a structural schematic of a wake-up sequence signal provided in this application. In this embodiment, the wake-up sequence signal includes a Command field, a Group Slave Identifier (GSID) field, a Unique Slave Identifier (USID) field, and a Data field.
[0093] The Command field is used to identify the wake-up mode. The Command field differs in different wake-up sequence signals. For example, the first to sixth wake-up sequence signals each include a first Command field to a sixth Command field. The GSID field indicates the identification information of the target packet. A packet includes at least one receiving device 12. Each packet has unique packet identification information. The target packet is the packet containing the target device to be woken up. The USID field indicates the identification information of the target device to be woken up. The Data field indicates the identification information of the target component unit.
[0094] The sending device 11 can determine the corresponding Command field based on the determined wake-up mode. For example, when the wake-up mode is the first wake-up mode, the Command field is the first Command field.
[0095] The transmitting device 11 can determine the corresponding GSID field and / or USID field based on the target device to be woken up as indicated by the determined wake-up mode. The GSID field can be determined based on the identification information of the target group to which the target device belongs, and the USID field can be determined based on the identification information of the target device.
[0096] The transmitting device 11 can determine the corresponding Data field based on the target component unit indicated by the determined wake-up mode. The Data field can be determined based on the identification information of the target component unit.
[0097] Correspondingly, after receiving the wake-up sequence signal, the receiving device 12 determines the type of the wake-up sequence signal based on the Command field. For example, the receiving device 12 can determine that the wake-up sequence signal is the first wake-up sequence signal in response to the Command field being the first Command field.
[0098] The receiving device 12 can determine the target device based on the type of wake-up sequence signal. If the target device includes itself, it can then determine the target component unit based on the type of wake-up sequence signal and perform a wake-up action on the target component unit.
[0099] In some embodiments, the wake-up sequence signal may further include a Sequence Start Condition (SSC) field, a Parity (P) field, and a Bus Park Cycle (BPC) field. The SSC field is configured at the beginning of the wake-up sequence signal to identify the start position. The BPC field is configured at the end of the wake-up sequence signal to identify the end position. The P field is configured between different fields in the wake-up sequence signal, such as between the Command field and the SSC field, or between the Command field and the BPC field, to implement parity correction.
[0100] The following describes the structure of the first wake-up sequence signal to the sixth wake-up sequence signal and the communication process between the sending device 11 and the receiving device 12, respectively, in different application scenarios.
[0101] Please see Figure 4 , Figure 4 The diagram shows the structure of the first wake-up sequence signal in the first application scenario.
[0102] In the first application scenario, the wake-up command received by the transmitting device 11 instructs the execution of a wake-up action on all component units 126 of all receiving devices 12 in the communication system 10. That is, in the first application scenario, it is necessary to execute a wake-up action on all component units 126 of all receiving devices 12 in the communication system 10.
[0103] At this time, the transmitting device 11 determines that the wake-up mode of the communication system 10 is the first wake-up mode. Correspondingly, the transmitting device 11 generates a first wake-up sequence signal according to the first wake-up mode. The first wake-up sequence signal includes a Command field, which is a first Command field. The first Command field is used to identify the first wake-up mode. The first wake-up sequence signal is used to instruct all component units 126 of all receiving devices 12 in the communication system 10 to perform a wake-up action.
[0104] In the first application scenario, the receiving device 12 responds to the fact that the Command field in the wake-up sequence signal is the first wake-up sequence signal, confirming that the received wake-up sequence signal is the first wake-up sequence signal. Since the first wake-up sequence signal indicates that a wake-up action should be performed on all component units 126 of all receiving devices 12 in the communication system 10, the receiving device 12 confirms that the target device includes itself, and thus performs a wake-up action on all component units 126 included in itself.
[0105] Please see Figure 5 , Figure 5 The diagram shows the structure of the second wake-up sequence signal in the second application scenario.
[0106] In the second application scenario, the wake-up command received by the transmitting device 11 instructs all component units 126 of at least one receiving device 12 in the communication system 10 to perform a wake-up action. That is, in the second application scenario, it is necessary to perform a wake-up action on all component units 126 of at least one receiving device 12 in the communication system 10.
[0107] At this time, the transmitting device 11 determines that the wake-up mode of the communication system 10 is the second wake-up mode. Correspondingly, the transmitting device 11 generates a second wake-up sequence signal according to the second wake-up mode. The Command field of the second wake-up sequence signal is the second Command field. In addition, the second wake-up sequence signal also includes a USID field. The second Command field is used to identify the second wake-up mode. The USID field is used to indicate the identification information of the target device to be woken up. The second wake-up sequence signal is used to instruct the execution of a wake-up action on all component units 126 of the target device.
[0108] In the second application scenario, the receiving device 12 confirms that the received wake-up sequence signal is the second wake-up sequence signal in response to the Command field in the wake-up sequence signal being the second Command field. The receiving device 12 also confirms whether the target device includes itself based on the USID field. Specifically, the receiving device 12 can determine whether the identification information of the target device includes its own pre-stored device identification information. If so, it confirms that the target device includes itself; otherwise, it confirms that the target device does not include itself.
[0109] After confirming that the target device includes itself, the receiving device 12 can perform a wake-up action on all component units 126 included in itself. After confirming that the target device does not include itself, the receiving device 12 can continue to receive the wake-up sequence signal.
[0110] Please see Figure 6 , Figure 6 The diagram illustrates the second application scenario. In this scenario, the communication system 10 includes multiple receiving devices 12. These receiving devices 12 can be of different types. When a wake-up command received by the transmitting device 11 requires waking up all component units 126 of at least one receiving device 12 in the communication system 10, the transmitting device 11 can generate a corresponding USID field based on the device identification information of the at least one receiving device 12 that needs to be woken up, since each receiving device 12 has different pre-stored device identification information—that is, the device identification information can uniquely identify a receiving device 12—thus accurately waking up at least one target device.
[0111] Please see Figure 7 , Figure 7The diagram shows the structure of the third wake-up sequence signal in the third application scenario.
[0112] In the third application scenario, the wake-up command received by the transmitting device 11 instructs to perform a wake-up action on all component units 126 of all receiving devices 12 in the target packet of the communication system 10. That is, in the third application scenario, it is necessary to perform a wake-up action on all component units 126 of all receiving devices 12 in the target packet. At this time, the transmitting device 11 determines that the wake-up mode of the communication system 10 is the third wake-up mode. Correspondingly, the transmitting device 11 generates a third wake-up sequence signal according to the third wake-up mode. The Command field in the third wake-up sequence signal is the third Command field. The third wake-up sequence signal also includes a GSID field. The third Command field is used to identify the third wake-up mode. The GSID field is used to indicate the identification information of the target packet. The third wake-up sequence signal is used to instruct to perform a wake-up action on all component units 126 of all receiving devices 12 in the target packet.
[0113] The transmitting device 11 can group multiple receiving devices 12 into groups, with each group including at least one receiving device 12. Each group has unique group identification information. For example... Figure 8 As shown, the first group includes multiple travel gear items, the second group includes multiple temperature sensors, and the third group includes multiple smart home devices. The transmitting device 11 can send the group identification information of each group to the corresponding receiving device 12. For example, the transmitting device 11 can send the group identification information of the first group to multiple travel gear items, the group identification information of the second group to multiple temperature sensors, and the group identification information of the third group to multiple smart home devices, etc. The corresponding receiving device 12 can write and store the corresponding group identification information.
[0114] In the third application scenario, the receiving device 12 confirms that the received wake-up sequence signal is the third wake-up sequence signal in response to the Command field in the wake-up sequence signal being the third Command field. The receiving device 12 also confirms whether the target device includes itself based on the GSID field. Specifically, the receiving device 12 can determine whether the packet identification information of the target packet includes its own pre-stored packet identification information. If so, it confirms that the target device includes itself; otherwise, it confirms that the target device does not include itself.
[0115] After confirming that the target device includes itself, the receiving device 12 can perform a wake-up action on all component units 126 included in itself. After confirming that the target device does not include itself, the receiving device 12 can continue to receive the wake-up sequence signal.
[0116] Please see Figure 9 , Figure 9 The diagram shows the structure of the fourth wake-up sequence signal in the fourth application scenario.
[0117] In the fourth application scenario, the wake-up command received by the transmitting device 11 instructs a wake-up action to be performed on some component units 126 in all receiving devices 12 in the communication system 10. That is, in the fourth application scenario, a wake-up action needs to be performed on some component units 126 in all receiving devices 12 in the communication system 10. At this time, the transmitting device 11 determines that the wake-up mode of the communication system 10 is the fourth wake-up mode. Correspondingly, the transmitting device 11 generates a fourth wake-up sequence signal according to the fourth wake-up mode. The Command field in the fourth wake-up sequence signal is the fourth Command field. In addition, the fourth wake-up sequence signal also includes a Data field. The fourth Command field is used to identify the fourth wake-up mode. The Data field is used to indicate the identification information of the target component unit. The fourth wake-up sequence signal is used to instruct the target component units in all receiving devices 12 in the communication system 10 to perform a wake-up action.
[0118] Each component unit 126 in the receiving device 12 has unique component identification information, so the receiving device 12 can determine the corresponding component unit 126 based on the component identification information.
[0119] In the fourth application scenario, the receiving device 12 responds to the fact that the Command field in the wake-up sequence signal is the fourth Command field, confirming that the received wake-up sequence signal is the fourth wake-up sequence signal. Since the fourth wake-up sequence signal indicates that a wake-up action should be performed on some component units 126 of all receiving devices 12 in the communication system 10, the receiving device 12 confirms that the target device includes itself, and thus determines the component unit 126 that needs to be woken up based on the identification information of the target component unit, and performs a wake-up action on it.
[0120] like Figure 10 and Figure 11 As shown, the multiple component units 126 can be Bluetooth modules, Wi-Fi modules, screen units, audio modules, camera modules, etc. The Data field in the fourth wake-up sequence signal can include the identification information of one of the component units 126, thereby realizing the corresponding functional requirements by waking up some component units 126 and reducing the power consumption of the receiving device 12.
[0121] Please see Figure 12 , Figure 12 The diagram shows the structure of the fifth wake-up sequence signal in the fifth application scenario.
[0122] In the fifth application scenario, the wake-up command received by the transmitting device 11 instructs a wake-up action to be performed on a portion of the component units 126 of at least one of the receiving devices 12 in the communication system 10. That is, in the fifth application scenario, it is necessary to perform a wake-up action on a portion of the component units 126 of at least one receiving device 12 in the communication system 10.
[0123] At this time, the transmitting device 11 determines that the wake-up mode of the communication system 10 is the fifth wake-up mode. Correspondingly, the transmitting device 11 generates a fifth wake-up sequence signal according to the fifth wake-up mode. The Command field in the fifth wake-up sequence signal is the fifth Command field. In addition, the fifth wake-up sequence signal also includes a USID field and a Data field. The fifth Command field is used to identify the fifth wake-up mode. The USID field is used to indicate the identification information of the target device to be woken up. The Data field is used to indicate the identification information of the target component unit. The fifth wake-up sequence signal is used to instruct the target component unit of the target device to perform a wake-up action.
[0124] In the fifth application scenario, the receiving device 12 confirms that the received wake-up sequence signal is the fifth wake-up sequence signal in response to the Command field in the wake-up sequence signal being the fifth Command field. The receiving device 12 also confirms whether the target device includes itself based on the USID field. Specifically, the receiving device 12 can determine whether the identification information of the target device includes its own pre-stored device identification information. If so, it confirms that the target device includes itself; otherwise, it confirms that the target device does not include itself.
[0125] After the receiving device 12 confirms that the target device includes itself, it can determine the component unit 126 that needs to be woken up based on the identification information of the target component unit, and perform a wake-up action on it.
[0126] Once the receiving device 12 confirms that the target device does not include itself, it can resume receiving the wake-up sequence signal.
[0127] Please see Figure 13 , Figure 13 The diagram shows the structure of the sixth wake-up sequence signal in the sixth application scenario.
[0128] In the sixth application scenario, the wake-up command received by the transmitting device 11 instructs to perform a wake-up action on some component units 126 in all receiving devices 12 in the target group of the communication system 10. That is, in the sixth application scenario, it is necessary to perform a wake-up action on some component units 126 in all receiving devices 12 in the target group. At this time, the transmitting device 11 determines that the wake-up mode of the communication system 10 is the sixth wake-up mode. Correspondingly, the transmitting device 11 generates a sixth wake-up sequence signal according to the sixth wake-up mode. The Command field in the sixth wake-up sequence signal is the sixth Command field. In addition, the sixth wake-up sequence signal also includes a GSID field and a Data field. The sixth Command field is used to identify the sixth wake-up mode. The GSID field is used to indicate the identification information of the target group. The Data field is used to indicate the identification information of the target component unit. The sixth wake-up sequence signal is used to instruct to perform a wake-up action on the target component units in all receiving devices 12 in the target group.
[0129] In the sixth application scenario, the receiving device 12 confirms that the received wake-up sequence signal is the sixth wake-up sequence signal in response to the Command field in the wake-up sequence signal being the sixth Command field. The receiving device 12 also confirms whether the target device includes itself based on the GSID field. Specifically, the receiving device 12 can determine whether the packet identification information of the target packet includes its own pre-stored packet identification information. If so, it confirms that the target device includes itself; otherwise, it confirms that the target device does not include itself.
[0130] After the receiving device 12 confirms that the target device includes itself, it can determine the component unit 126 that needs to be woken up based on the identification information of the target component unit, and perform a wake-up action on it.
[0131] Once the receiving device 12 confirms that the target device does not include itself, it can resume receiving the wake-up sequence signal.
[0132] In some embodiments, the transmitting device 11 may pre-divide at least one receiving device 12 into at least one group. For example, the transmitting device 11 may pre-send the identification information of the group to at least one receiving device 12 that needs to be assigned to the group. In this case, after receiving the identification information of the group, at least one receiving device 12 may write the identification information of the group into its memory, thereby realizing the grouping of the receiving device 12.
[0133] Therefore, the transmitting device 11 can determine the wake-up mode of the communication system 10 according to the wake-up command, and determine different structures and lengths of the wake-up sequence signals according to different wake-up modes, thereby generating different wake-up sequence signals and sending them to the receiving device 12. Thus, the structure and length of the wake-up sequence signals can be flexibly and adaptively adjusted according to different wake-up modes, which can be applied to application scenarios such as needing to wake up multiple receiving devices 12 or needing to wake up some component units 126 in multiple receiving devices 12, improving the wake-up efficiency of the transmitting device 11 to the receiving device 12 and enhancing the wake-up performance of the transmitting device 11 to the receiving device 12.
[0134] Please see Figure 14 , Figure 14 A flowchart of a wake-up method provided in this application is shown. This wake-up method is executed by the transmitting device 11, and specifically includes the following steps.
[0135] Step S141: Receive wake-up command.
[0136] The wake-up command is used to instruct at least one component unit 126 in at least one receiving device 12 to perform a wake-up action.
[0137] Step S142: In response to the communication system 10 meeting the wake-up conditions, determine the wake-up mode of the communication system 10.
[0138] In this device, the transmitting end device 11 can respond to receiving a wake-up command, confirm that the communication system 10 meets the wake-up conditions, and then determine the wake-up mode of the communication system 10 according to the target device to be woken up and the target component to be woken up in the target device indicated by the wake-up command.
[0139] Step S143: Generate the corresponding wake-up sequence signal according to the determined wake-up mode.
[0140] The wake-up mode can include a first wake-up mode to a sixth wake-up mode, and the wake-up sequence signal correspondingly includes a first wake-up sequence signal to a sixth wake-up sequence signal. The first wake-up mode to the sixth wake-up mode respectively indicate different target devices and / or target component units. Correspondingly, the transmitting device 11 can generate corresponding first wake-up sequence signals to sixth wake-up sequence signals according to the first wake-up mode to the sixth wake-up mode.
[0141] Step S144: The generated wake-up sequence signal is sent to at least one receiving device 12 to control the corresponding receiving device 12 to perform a wake-up action on the corresponding component unit 126.
[0142] Please see Figure 15 , Figure 15A flowchart of another wake-up method provided in this application. This wake-up method is executed by the receiving device 12, and specifically, the wake-up method includes the following steps.
[0143] Step S151: Enter sleep mode. When the receiving device 12 is not interacting with the sending device 11 via data or commands, the receiving device 12 can enter sleep mode and no longer receive or respond to data, commands, or other signals sent by the sending device 11, thereby reducing the power consumption of the receiving device 12.
[0144] Step S152: Determine whether a wake-up sequence signal has been received.
[0145] When the receiving device 12 is in sleep mode, the wake-up receiver 122 is still listening for the wake-up sequence signal. When the wake-up receiver 122 receives the wake-up sequence signal, it executes step S153; otherwise, it continues to listen for the wake-up sequence signal.
[0146] Step S153: Decode the wake-up sequence signal.
[0147] The decoding of the wake-up sequence signal by the receiving device 12 may include parsing the structure and length of the wake-up sequence signal, determining the specific fields included in the wake-up sequence signal, and thus determining the type of wake-up sequence signal. For example, the receiving device 12 may determine the type of Command field included in the wake-up sequence signal, thereby determining the type of wake-up sequence signal. For example, if the receiving device 12 decodes the wake-up sequence signal and obtains that the Command field is the first Command field, then the receiving device 12 may determine that the wake-up sequence signal is the first wake-up sequence signal.
[0148] Step S154: Determine whether the target device includes the receiving device 12 based on the wake-up sequence signal.
[0149] The receiving device 12 can determine the target device to be woken up based on the type of wake-up sequence signal and different fields in the wake-up sequence signal. If the target device includes itself, then step S155 is executed; otherwise, step S152 is returned.
[0150] For example, when the wake-up sequence signal is the first wake-up sequence signal, since the first wake-up sequence signal indicates that a wake-up action is performed on all component units 126 of all receiving devices 12 in the communication system 10, the receiving device 12 can confirm that the target device includes itself based solely on the first Command field in the first wake-up sequence signal.
[0151] For example, when the wake-up sequence signal is the second wake-up signal, since the second wake-up sequence signal indicates that a wake-up action should be performed on all component units 126 of the target device, the receiving device 12 can combine the USID field in the second wake-up sequence signal to determine the identification information of the target device and compare it with the pre-stored device identification information. If the identification information of the target device includes the pre-stored device identification information, then it is confirmed that the target device includes itself. Otherwise, the target device does not include itself.
[0152] For example, when the wake-up sequence signal is the third wake-up signal, since the third wake-up sequence signal indicates that a wake-up action should be performed on all component units 126 of all receiving devices 12 in the target packet, the receiving device 12 can combine the GSID field in the third wake-up sequence signal to determine the identification information of the target packet and compare it with the pre-stored packet identification information. If the identification information of the target packet includes the pre-stored packet identification information, then it is confirmed that the target device includes itself. Otherwise, the target device does not include itself.
[0153] Step S155: Perform a wake-up action on the target component unit according to the wake-up sequence signal.
[0154] The receiving device 12 can determine the target component unit to be woken up based on the type of wake-up sequence signal and different fields in the wake-up sequence signal.
[0155] For example, when the wake-up sequence signal is any one of the first wake-up sequence signal to the third wake-up sequence signal, since the first wake-up sequence signal to the third wake-up sequence signal all indicate that the target component unit is all component units 126 of the target device, the receiving device 12 can confirm that the target component unit is all component units 126 based solely on the corresponding Command field, and then perform a wake-up action on all component units 126.
[0156] For example, when the wake-up sequence signal is any one of the fourth to sixth wake-up sequence signals, since the target component unit is indicated by the Data field in all of the fourth to sixth wake-up sequence signals, the receiving device 12 can determine the target component unit by combining the corresponding Data field and perform a wake-up action on it. Please refer to [link to relevant documentation]. Figure 16 , Figure 16 A flowchart of another wake-up method provided in this application. The wake-up method includes the following steps.
[0157] Step S160: Enter hibernation mode.
[0158] Step S160 is executed by the receiving device 12.
[0159] Step S161: Receive wake-up command.
[0160] Step S162: In response to the communication system 10 meeting the wake-up conditions, determine the wake-up mode of the communication system 10.
[0161] Step S163: Generate the corresponding wake-up sequence signal according to the determined wake-up mode.
[0162] Step S164: Send the generated wake-up sequence signal to at least one receiving device 12.
[0163] Steps S161 to S164 are executed by the sending device 11.
[0164] Step S165: Determine whether a wake-up sequence signal has been received.
[0165] Step S166: Decode the wake-up sequence signal.
[0166] Steps S165 to S166 are executed by the receiving device 12. For a detailed explanation of steps S160 to S166, please refer to... Figures 2 to 15 The relevant explanations will not be repeated here.
[0167] Step S167: Determine the wake-up method.
[0168] Step S167 is performed by the receiving device 12. Determining the wake-up method may include determining the target device to be woken up based on the type of wake-up sequence signal and different fields in the wake-up sequence signal. If the target device includes itself, then step S168 is performed.
[0169] Step S168: Perform the wake-up action.
[0170] Step S168 is performed by the receiving device 12. Performing a wake-up action may include performing a wake-up action on the target component unit.
[0171] Please see Figure 17 , Figure 17 A flowchart of another wake-up method provided in this application. The wake-up method includes the following steps.
[0172] Step S170: Enter hibernation mode.
[0173] Step S171: Receive wake-up command.
[0174] Step S172: In response to the communication system 10 meeting the wake-up conditions, determine the wake-up mode of the communication system 10.
[0175] Step S173: Generate the corresponding wake-up sequence signal according to the determined wake-up mode.
[0176] Step S174: Send the generated wake-up sequence signal to at least one receiving device 12.
[0177] Step S175: Determine whether a wake-up sequence signal has been received.
[0178] Step S176: Decode the wake-up sequence signal.
[0179] The executing entities and specific descriptions of steps S170 to S176 can be found in the following references. Figure 16 The execution entities and specific explanations of steps S160 to S176 will not be repeated here.
[0180] Step S177: Determine the wake-up mode of the communication system 10 based on the wake-up sequence signal.
[0181] Step S177 is executed by the receiving device 12. The receiving device 12 can determine the wake-up mode of the corresponding communication system 10 based on the wake-up sequence signal.
[0182] For example, when the wake-up sequence signal is the first wake-up sequence, the wake-up mode of the communication system 10 corresponds to the first wake-up mode. The first wake-up mode corresponds to instructing the execution of a wake-up action on all component units 126 of all receiving devices 12 in the communication system 10, that is, a full wake-up. A full wake-up refers to executing a wake-up action on all receiving devices 12 in the communication system 10. At this time, the receiving device 12 can confirm that the target device includes itself, and thus execute step S180.
[0183] For example, when the wake-up sequence signal is the second wake-up sequence, the wake-up mode of the communication system 10 corresponds to the second wake-up mode. The second wake-up mode corresponds to instructing all component units 126 of the target device to perform a wake-up action, that is, precise wake-up. Precise wake-up refers to performing a wake-up action on at least one receiving device 12. At this time, the receiving device 12 executes step S178.
[0184] For example, when the wake-up sequence signal is the third wake-up sequence, the wake-up mode of the communication system 10 corresponds to the third wake-up mode. The third wake-up mode indicates that a wake-up action should be performed on all receiving devices 12 in the target group, that is, group wake-up. Group wake-up refers to performing a wake-up action on all receiving devices 12 in the target group. At this time, the receiving device 12 executes step S179.
[0185] Step S178: Determine whether the identification information of the target device includes pre-stored device identification information.
[0186] Specifically, the receiving device 12 can combine the USID field in the wake-up sequence signal to determine the identification information of the target device, and compare it with the pre-stored device identification information to determine whether the identification information of the target device includes the pre-stored device identification information. If yes, proceed to step S180; otherwise, return to step S175.
[0187] Step S179: Determine whether the identification information of the target group includes the pre-stored group identification information.
[0188] Specifically, the receiving device 12 can combine the GSID field in the wake-up sequence signal to determine the identification information of the target packet, and compare it with the pre-stored packet identification information to determine whether the identification information of the target packet includes the pre-stored packet identification information. If yes, proceed to step S180; otherwise, return to step S175.
[0189] Step S180: Perform a wake-up action on the target component unit.
[0190] Those skilled in the art should recognize that the above embodiments are only used to illustrate this application and are not intended to limit this application. Any appropriate changes and variations made to the above embodiments within the essential spirit and scope of this application fall within the scope of protection claimed in this application.
Claims
1. A wake-up method applied to a sending terminal device in a communication system, the communication system further comprising at least one receiving terminal device, the at least one receiving terminal device being in communication with the sending terminal device, each of the receiving terminal devices comprising at least one component unit; characterized in that, The method includes: In response to the communication system meeting the wake-up conditions, the wake-up mode of the communication system is determined; Based on the determined wake-up mode, a corresponding wake-up sequence signal is generated, wherein the structure and length of the wake-up sequence signal are determined according to the wake-up mode; The generated wake-up sequence signal is sent to the at least one receiving device to control the corresponding receiving device to perform a wake-up action on the corresponding component unit.
2. The wake-up method of claim 1, wherein, The wake-up sequence signal includes a control code field, which is used to identify the wake-up mode.
3. The wake-up method of claim 2, wherein, The step of generating a corresponding wake-up sequence signal based on the determined wake-up mode includes: In response to the wake-up mode being the first wake-up mode, a first wake-up sequence signal is generated; The first wake-up sequence signal includes a first control code field, which is used to instruct all component units of all receiving devices in the communication system to perform a wake-up action.
4. The wake-up method of claim 2, wherein, The step of generating a corresponding wake-up sequence signal based on the determined wake-up mode includes: In response to the wake-up mode being the second wake-up mode, a second wake-up sequence signal is generated; The second wake-up sequence signal includes a second control code field and a device code field; The device code field is used to indicate the identification information of the target device to be woken up, and the second wake-up sequence signal is used to indicate that a wake-up action is performed on all component units of the target device.
5. The wake-up method of claim 2, wherein, The step of generating a corresponding wake-up sequence signal based on the determined wake-up mode includes: In response to the wake-up mode being the third wake-up mode, a third wake-up sequence signal is generated; The third wake-up sequence signal includes a third control code field and a block code field; The group code field is used to indicate the identification information of the target group, the target group includes at least one of the receiving devices, and the third wake-up sequence signal is used to indicate that a wake-up action is performed on all component units of all receiving devices in the target group.
6. The wake-up method of claim 2, wherein, The step of generating a corresponding wake-up sequence signal based on the determined wake-up mode includes: In response to the wake-up mode being the fourth wake-up mode, a fourth wake-up sequence signal is generated; The fourth wake-up sequence signal includes a fourth control code field and a data code field; The data code field is used to indicate the identification information of the target component unit to be woken up, and the target component unit includes at least one of the component units; The fourth wake-up sequence signal is used to instruct the target component unit in all receiving devices in the communication system to perform a wake-up action.
7. The wake-up method of claim 2, wherein, The step of generating a corresponding wake-up sequence signal based on the determined wake-up mode includes: In response to the wake-up mode being the fifth wake-up mode, a fifth wake-up sequence signal is generated; The fifth wake-up sequence signal includes a fifth control code field, a device code field, and a data code field. The device code field is used to indicate the identification information of the target device to be woken up, the data code field is used to indicate the identification information of the target component unit to be woken up, and the fifth wake-up sequence signal is used to indicate that a wake-up action is performed on the target component unit of the target device.
8. The wake-up method of claim 2, wherein, The step of generating a corresponding wake-up sequence signal based on the determined wake-up mode includes: In response to the wake-up mode being the sixth wake-up mode, a sixth wake-up sequence signal is generated; The sixth wake-up sequence signal includes a sixth control code field, a block code field, and a data code field. Wherein, the group code field is used to indicate the identification information of the target group, the target group includes at least one of the receiving end devices, the data code field is used to indicate the identification information of the target component unit to be woken up, the target component unit includes at least one of the component units, and the sixth wake-up sequence signal is used to indicate that a wake-up action is performed on the target component units of all receiving end devices in the target group.
9. The wake-up method of any one of claims 2 to 8, wherein, The method further includes: Upon receiving a wake-up command, confirm that the communication system meets the wake-up conditions; The wake-up command is used to instruct at least one component unit in the at least one receiving device to perform a wake-up action.
10. A wake-up method applied to a receiving end device in a communication system, the communication system further comprising a transmitting end device, the transmitting end device being in communication with the receiving end device, the receiving end device comprising at least one component unit, characterized in that, The method includes: Receive wake-up sequence signal; The wake-up sequence signal is used to instruct the target device to be woken up in the communication system to perform a wake-up action on the corresponding target component unit, wherein the target component unit includes at least one of the component units; In response to determining that the target device includes the receiving device based on the wake-up sequence signal, a wake-up action is performed on the target component unit.
11. The wake-up method of claim 10, wherein, The wake-up sequence signal includes a control code field, and the method further includes: Based on the control code field, determine whether the target device includes the receiving device.
12. The wake-up method of claim 11, wherein, The method further includes: In response to the control code field being a first control code field, the wake-up sequence signal is confirmed to be a first wake-up sequence signal, wherein the first wake-up sequence signal includes the first control code field, and the first wake-up sequence signal is used to instruct all component units of all receiving devices in the communication system to perform a wake-up action; It has been confirmed that the target device includes the receiving device.
13. The wake-up method of claim 11, wherein, The method further includes: In response to the control code field being a second control code field, the wake-up sequence signal is confirmed to be a second wake-up sequence signal, wherein the second wake-up sequence signal includes the second control code field and a device code field, the device code field is used to indicate the identification information of the target device, and the second wake-up sequence signal is used to indicate that a wake-up action is performed on all component units in the target device; The device code field is used to confirm whether the target device includes the receiving device.
14. The wake-up method of claim 11, wherein, The method further includes: In response to the control code field being a third control code field, the wake-up sequence signal is confirmed to be a third wake-up sequence signal, wherein the third wake-up sequence signal includes the third control code field and a group code field, the group code field is used to indicate the identification information of the target group, and the third wake-up sequence signal is used to indicate that a wake-up action is performed on all component units of all receiving devices in the target group; The target device is confirmed to contain the receiving device based on the block code field.
15. The wake-up method of claim 11, wherein, The method further includes: In response to the control code field being the fourth control code field, the wake-up sequence signal is confirmed to be the fourth wake-up sequence signal, wherein the fourth wake-up sequence signal includes the fourth control code field and a data code field, the data code field is used to indicate the identification information of the target component unit, and the fourth wake-up sequence signal is used to instruct the target component unit in all receiving devices in the communication system to perform a wake-up action.
16. The wake-up method of claim 11, wherein, The method further includes: In response to the control code field being the fifth control code field, the wake-up sequence signal is confirmed to be the fifth wake-up sequence signal, wherein the fifth wake-up sequence signal includes the fifth control code field, the device code field, and the data code field, the device code field is used to indicate the identification information of the target device, the data code field is used to indicate the identification information of the target component unit, and the fifth wake-up sequence signal is used to instruct the target component unit in the target device to perform a wake-up action; The device code field is used to confirm whether the target device includes the receiving device.
17. The wake-up method as described in claim 11, characterized in that, The method further includes: In response to the control code field being the sixth control code field, the wake-up sequence signal is confirmed to be the sixth wake-up sequence signal, wherein the sixth wake-up sequence signal includes the sixth control code field, the group code field, and the data code field, the group code field is used to indicate the identification information of the target group, the data code field is used to indicate the identification information of the target component unit, and the sixth wake-up sequence signal is used to instruct the target component unit in all receiving devices in the target group to perform a wake-up action; The target device is confirmed to contain the receiving device based on the block code field.
18. The wake-up method as described in claim 13 or 16, characterized in that, The method further includes: In response to the identification information of the target device including the device identification information pre-stored by the receiving device, it is confirmed that the target device includes the receiving device.
19. The wake-up method as described in claim 14 or 17, characterized in that, The method further includes: When the identification information of the target packet includes the packet identification information pre-stored by the receiving device, it is confirmed that the target device includes the receiving device.
20. A transmitting device, comprising: The transmitting device communicates with at least one receiving device, and the transmitting device is used to perform the wake-up method as described in any one of claims 1 to 10.
21. A receiving end device, comprising: The receiving device includes at least one component unit, and the receiving device communicates with the sending device. The receiving device is used to perform the wake-up method as described in any one of claims 11 to 19.
22. A communication system, characterized by The communication system includes a transmitting device and at least one receiving device, the transmitting device being communicatively connected to the at least one receiving device, the transmitting device being used to execute the wake-up method as described in any one of claims 1 to 10, and the at least one receiving device being used to execute the wake-up method as described in any one of claims 11 to 19.