Remote controller control method and system, remote controller and computer readable storage medium

By introducing a wireless connection device and a signal acquisition device into the remote control, environmental information is obtained to determine control instructions, and reverse power supply to external devices is achieved, which solves the problem of low functionality of traditional remote controls and expands the application scenarios of remote controls.

CN120260255APending Publication Date: 2025-07-04SHENZHEN SKYWORTH DISPLAY TECH CO LTD
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Patent Information

Application Number
CN202510443115.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

The control method of traditional remote control relies on built-in battery power, resulting in low functionality and inability to charge or power external devices.

Method used

By introducing a wireless connection device and a signal acquisition device into the remote control, the remote control environment information is obtained to determine the control command, and the charging device to be reversely supplied with power under preset conditions, wireless charging is realized.

Benefits of technology

It improves the functionality of the remote control, can reverse power or charge external devices, and expands the usage scenarios and functions of the remote control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a remote controller control method and system, a remote controller and a computer readable storage medium, and relates to the technical field of remote controllers, the remote controller control method is applied to the remote controller control system, the remote controller control system comprises an electric signal acquisition device and a wireless connection device, and the wireless connection device can establish wireless connection with to-be-charged equipment. Remote controller environment information acquired by a signal acquisition device is acquired, and a remote controller control instruction is determined according to the remote controller environment information; and when the remote controller control instruction is a preset reverse power supply instruction, controlling the wireless connection device to perform reverse power supply on the to-be-charged equipment according to the remote controller control instruction. The functionality of the remote controller is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of remote controls, and particularly to a remote control method, system, remote control and computer-readable storage medium. Background Art

[0002] With the popularization of the use of remote controls in different fields, users have put forward higher requirements for the control methods of remote controls.

[0003] The control method of traditional remote controls is to directly use the built-in battery to supply power to various internal control modules. This control method of remote controls has certain defects. There will be a phenomenon that the built-in battery can only supply power to various internal control modules. That is, due to the function that the built-in battery of this remote control can only supply power to various internal control modules, the functionality of the remote control is low.

[0004] The above content is only used to assist in understanding the technical solution of the present application, and does not represent an admission that the above content is prior art. Summary of the Invention

[0005] The main purpose of the present application is to provide a remote control method, system, remote control and computer-readable storage medium, aiming to solve the technical problem of low functionality of remote controls.

[0006] To achieve the above object, the present application provides a remote control method. The remote control method is applied to a remote control system. The remote control system includes a signal acquisition device and a wireless connection device. The wireless connection device can establish a wireless connection with a device to be charged. The remote control method includes:

[0007] Obtain the remote control environment information collected by the signal acquisition device, and determine a remote control instruction according to the remote control environment information;

[0008] When the remote control instruction is a preset reverse power supply instruction, control the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction.

[0009] In an embodiment, the remote control environment information includes a first key state, a first wireless connection state with the device to be charged, and a first remaining power value in the remote control. The step of determining a remote control instruction according to the remote control environment information includes:

[0010] When the first key state matches a preset reverse power supply key state, the first wireless connection state matches a preset wireless connection establishment state, and the first remaining power value is greater than a preset reverse charging threshold, use the preset reverse power supply instruction as the remote control instruction;

[0011] When the first key state does not match the preset reverse power supply key state, or the first wireless connection state does not match the preset wireless connection establishment state, or the first remaining battery level is less than or equal to the preset reverse charging threshold, the preset remote control operation instruction is used as the remote control instruction, where the remote control operation instruction is used to control the remote control to enter the normal working state.

[0012] In one embodiment, the signal acquisition device includes a key input unit, the wireless connection device includes a signal output unit, and after the step of using the preset remote control operation instruction as the remote control instruction, it includes:

[0013] In the normal working state, obtain the key data input by the key input unit, and determine the control signal corresponding to the key data in the preset data conversion table;

[0014] Send the control signal to the signal output unit, where the signal output unit is used to connect to the device to be controlled and control the device to be controlled based on the control signal.

[0015] In one embodiment, after the step of controlling the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction, it includes:

[0016] If the key data input by the key input unit is received, execute the step of determining the control signal corresponding to the key data in the preset data conversion table, and obtain the second remaining battery level in the remote control in real time;

[0017] When the second remaining battery level is less than or equal to the preset reverse charging threshold, generate a stop charging instruction to control the wireless connection device to stop charging the device to be charged based on the stop charging instruction.

[0018] In one embodiment, the wireless connection device includes a wireless charging unit and a wireless communication unit, and the step of controlling the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction includes:

[0019] Based on the remote control instruction, control the wireless communication unit to obtain the reverse charging parameters of the device to be charged, and determine the charging control threshold corresponding to the reverse charging parameters in the preset charging parameter table;

[0020] Based on the charging control threshold, control the wireless charging unit to perform reverse power supply to the device to be charged, where the wireless charging unit includes a wireless charging chip.

[0021] In one embodiment, the signal acquisition device includes a remote control detection unit. After the step of controlling the wireless charging unit to perform reverse power supply on the device to be charged based on the charging control threshold, the following steps are included:

[0022] Control the wireless communication unit to obtain the charging data and the second wireless connection status of the device to be charged in real time, and control the remote control detection unit to obtain the second key status and the third remaining power value of the remote control in real time, where the charging data includes the current charging value and the charging completion value;

[0023] When the current charging value is greater than or equal to the charging completion value, or the second wireless connection status does not match the preset established wireless connection status, or the second key status does not match the preset reverse power supply key status, or the third remaining power value is less than or equal to the preset reverse charging threshold, generate a stop charging instruction to control the wireless connection device to stop charging the device to be charged based on the stop charging instruction.

[0024] In one embodiment, the wireless connection device can establish a wireless connection with the device to be powered. The remote control environment information includes the third key status, the third wireless connection status with the device to be powered, and the fourth remaining power value in the remote control. After the step of obtaining the remote control environment information collected by the signal acquisition device, the following steps are included:

[0025] When the third wireless connection status matches the preset established wireless connection status, detect whether the third key status matches the preset forward charging key status, or detect whether the fourth remaining power value is less than the preset forward charging threshold;

[0026] When the third key status matches the preset forward charging key status, or it is detected that the fourth remaining power value is less than the preset forward charging threshold, generate a charging start instruction to establish a wireless charging channel with the device to be powered based on the charging start instruction;

[0027] When the third key status does not match the preset forward charging key status, and it is detected that the fourth remaining power value is greater than or equal to the preset forward charging threshold, execute the step of obtaining the remote control environment information collected by the signal acquisition device.

[0028] In addition, to achieve the above object, the present application further provides a remote control control system. The remote control control system includes a remote control control chip, a signal acquisition device, and a wireless connection device. The remote control control chip is connected to the signal acquisition device and the wireless connection device. The wireless connection device can establish a wireless connection with the device to be charged. The remote control control chip includes:

[0029] An instruction determination module, configured to obtain the remote control environment information collected by the signal acquisition device, and determine a remote control instruction according to the remote control environment information;

[0030] A charging control module, configured to, when the remote control instruction is a preset reverse power supply instruction, control the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction.

[0031] In addition, to achieve the above object, the present application further provides a remote control, including a remote control system, a processor, a memory, and a remote control method program stored on the memory and executable by the processor. When the remote control method program is executed by the processor, the steps of the remote control method as described above are implemented.

[0032] The present application further provides a computer-readable storage medium, on which a remote control method program is stored. When the remote control method program is executed by a processor, the steps of the remote control method as described above are implemented.

[0033] An embodiment of the present application provides a remote control method, which is applied to a remote control system. The remote control system includes a signal acquisition device and a wireless connection device. The wireless connection device can establish a wireless connection with a device to be charged. By obtaining the remote control environment information collected by the signal acquisition device and determining a remote control instruction according to the remote control environment information; when the remote control instruction is a preset reverse power supply instruction, controlling the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction. This remote control method can establish a wireless connection with the device to be charged through the wireless connection device, and then obtain the remote control environment information collected by the signal acquisition device, and will determine the remote control instruction according to the remote control environment information, and can, when the remote control instruction is a preset reverse power supply instruction, control the wireless connection device to perform reverse power supply to the device to be charged based on the remote control instruction, and avoid the problem that the built-in battery can only supply power to various internal control modules. This remote control method can determine the reverse power supply instruction through the remote control environment information, and perform reverse power supply to the device to be charged based on the reverse power supply instruction, so as to achieve reverse charging of the remote control to the device to be charged, thereby improving the functionality of the remote control. Description of the Drawings

[0034] Figure 1 It is a schematic flowchart of the first embodiment of the remote control method of the present application;

[0035] Figure 2 It is a schematic framework diagram of a common remote control system;

[0036] Figure 3 It is another schematic diagram of the framework of a common remote control system;

[0037] Figure 4 It is a schematic diagram of the framework of the remote control system of the present application;

[0038] Figure 5 It is a schematic connection diagram of the remote control chip in the remote control system of the present application;

[0039] Figure 6 It is a schematic interface diagram of the remote control chip in the remote control system of the present application;

[0040] Figure 7 It is a schematic flowchart of the remote control method of the present application;

[0041] Figure 8 It is a schematic connection diagram of the wireless charging chip in the remote control system of the present application;

[0042] Figure 9 It is a schematic diagram of the module of the battery management unit of the present application;

[0043] Figure 10 It is a schematic diagram of the remote control structure of the hardware operating environment involved in the remote control of the present application.

[0044] The realization of the purpose, functional characteristics and advantages of the present application will be further described in conjunction with the embodiments with reference to the accompanying drawings.

[0045] Explanation of the reference numerals in the drawings:

[0046] 200, remote control; 100, remote control system; 11, button input unit; 10, signal acquisition device; 20, wireless connection device; 21, wireless communication unit; 22, signal output unit; 40, battery compartment; 30, low-power Bluetooth chip (remote control chip); 51, battery management module; 52, lithium battery; 53, wireless charging unit; ANT, antenna; L1-L3, first coil - third coil; C1-C33, first capacitor - thirty-third capacitor; R1-R4, first resistor - fourth resistor; Y1, crystal oscillator; 1001, processing device; 1002, read-only memory; 1003, storage device; 1004, random access memory; 1005, bus; 1006, input / output interface; 1007, input device; 1008, output device; 1009, communication device. Detailed implementation manners

[0047] 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.

[0048] To better understand the technical solution of this application, the following will be described in detail in conjunction with the accompanying drawings of the specification and specific implementation manners.

[0049] The control methods of common remote controls can only supply power to internal devices, and reference can be made to Figure 2 , Figure 2 which is a schematic framework diagram of a common remote control system. The remote control 200 usually uses two No. 5 or No. 7 batteries for direct power supply. The batteries are placed in the battery compartment 40, and a 3V power supply is provided to the low-power Bluetooth chip 30 by connecting the batteries in series. The control process of the entire remote control system 100 is as follows: The low-power Bluetooth chip 30 receives various key signals from the key input unit 11, and after conversion by the low-power Bluetooth chip 30, the control signal converted from the key signal is transmitted to the device to be controlled, such as a TV, etc., through the signal output unit 22 (which can be in the form of infrared output). At the same time, the remote control system 100 also has a wireless communication unit 21. At this time, the low-power Bluetooth chip 30 can also be connected to external devices (which can be devices to be charged, devices to be powered, and devices to be controlled, etc.) through the wireless communication unit 21 to perform data interaction.

[0050] Furthermore, reference can be made to Figure 3 , Figure 3 which is another schematic framework diagram of a common remote control system. This solution usually uses a lithium battery 52 for power supply and has a charging port for charging. The power management module 51 can manage the lithium battery 52 to charge or draw power from the lithium battery 52. It can also be connected to the device to be powered through the charging port, and then the power management module 51 converts and charges the lithium battery 52. During the power supply process, the lithium battery 52 supplies power to the low-power Bluetooth chip 30 through the power management module 51, thereby realizing the control process of the above remote control system 100. From the above two remote control systems, it can be seen that the entire remote control system can only supply power to itself, which in turn causes the problem of low functionality of the remote control itself.

[0051] Therefore, based on the deficiencies of the above remote control methods, the remote control method of this application is proposed. The solution of the embodiment of this application is: A wireless connection can be established with the device to be charged through a wireless connection device, and then the remote control environment information collected by the signal collection device is obtained. The remote control control instruction is determined according to the remote control environment information. When the remote control control instruction is a preset reverse power supply instruction, the wireless connection device is controlled based on the remote control control instruction to perform reverse power supply to the device to be charged, thus avoiding the problem that the built-in battery can only supply power to various internal control modules. This remote control method can determine the reverse power supply instruction through the remote control environment information, perform reverse power supply to the device to be charged based on the reverse power supply instruction, and realize the reverse charging of the remote control to the device to be charged, thereby improving the functionality of the remote control.

[0052] It should be noted that the execution subject of this embodiment can be a computing service remote controller with data processing, network communication, and program running functions, such as a tablet computer, a personal computer, a mobile phone, etc., or a remote controller, an internal controller of the remote controller, etc. that can implement the above functions. Hereinafter, the internal controller of the remote controller will be taken as an example to illustrate this embodiment and the following embodiments.

[0053] Based on this, the embodiment of the present application provides a remote controller control method, referring to Figure 1 , Figure 1 is a schematic flowchart of the first embodiment of the remote controller control method of the present application.

[0054] Referring to Figure 1 , the present application provides a remote controller control method. In the first embodiment of the remote controller control method, the remote controller control method is applied to a remote controller control system. The remote controller control system includes a signal acquisition device and a wireless connection device. The wireless connection device can establish a wireless connection with the device to be charged. The remote controller control method includes:

[0055] Step S10, obtain the remote controller environment information collected by the signal acquisition device, and determine the remote controller control instruction according to the remote controller environment information;

[0056] Exemplarily, the remote controller control method is applied to a remote controller control system. The remote controller control system includes a remote controller control system. The remote controller control system includes a signal acquisition device and a wireless connection device. The wireless connection device can establish a wireless connection with the device to be charged. Reference can be made to Figure 4 , Figure 4This is a schematic framework diagram of the remote control system of this application. At this time, a lithium battery 52 is set inside the remote control 200, and at the same time, a battery management module 51 is used to manage and control the lithium battery. Among them, the battery management module 51 can be a common BMS (Battery Management System), and the control principle and logic thereof will not be elaborated in detail here. At this time, a wireless charging unit 53 is added to the entire remote control system 100, so that wireless charging can be realized. The wireless charging unit 53 is controlled by the low-power Bluetooth chip 30 and can charge the lithium battery 52 through the battery management module 51. At the same time, the wireless charging unit 53 is also controlled by the low-power Bluetooth chip 30 and can also draw power from the lithium battery 51 through the battery management module 51 to supply power to external devices in reverse. Of course, the low-power Bluetooth chip 30 and the button input unit 11 are the same as the above-described method. It should be noted that at this time, the wireless charging unit 53 can be directly controlled by the low-power Bluetooth chip 30 for charging, or can be controlled by the battery management module 51 for charging, which is not limited here. Due to the addition of the wireless charging unit 53, at this time, the wireless charging unit 53 can directly supply power to the low-power Bluetooth chip 30, or the lithium battery 52 can be used to supply power to the low-power Bluetooth chip 30 through the battery management module 51. Moreover, the wireless charging unit 53 can also be connected to the lithium battery 52 through the battery management module 51, so as to supply power to the devices connected to the remote control 200, thereby expanding the functionality of the remote control 200. It should be noted that the remote control system can also communicate through the wireless charging unit. And its wireless power supply generally has the following three stages: Detection stage: Identify the device that can be powered and foreign objects. For example, when a mobile phone (assuming the device to be charged is a mobile phone, and it can also be other devices) approaches the wireless charging module in the remote control (that is, it can be a wireless connection device and related charging parts), the wireless charging module will detect the presence of the mobile phone and judge whether it is a device that can be powered. Communication stage: Conduct identity authentication. The charger and the mobile phone communicate through a certain protocol to confirm the identities and compatibility of both parties. Charging stage: Conduct power transmission. Once the identity authentication is passed, the charger starts to transmit power to the mobile phone, and the receiver inside the mobile phone will convert the received power into direct current to charge the battery. Further, for the options of the low-power Bluetooth chip 30, reference can be made to Figure 5 , Figure 5This is a connection schematic diagram of the remote control chip in the remote control system of this application. The low-power Bluetooth chip 30 can be the Telink Microelectronics TLSR8271 low-power Bluetooth chip, or other low-power Bluetooth chips. Taking the Telink Microelectronics TLSR8271 low-power Bluetooth chip as an example, the 40th pin of this chip is used to connect to the wireless communication unit 21 (that is, the wireless communication is a Bluetooth connection for the 39th pin, and the infrared is a one-way wireless control connection for the 13th pin). The other connection methods of this chip can be realized by customizing the input and output ports. For example, define D0 - D6 (selected according to the actual situation, not all need to be used) as the interface of the button input unit 11, define A0 - A6 (selected according to the actual situation, not all need to be used) as the interface of the signal output unit 22, define B0 - B6 (selected according to the actual situation, not all need to be used) as the interface of the battery management module 51, and define C0 - C6 (selected according to the actual situation, not all need to be used) as the interface of the wireless charging unit 53. Of course, other connection methods are also possible and are not limited here. Further, reference can be made to Figure 6 , Figure 6 This is an interface schematic diagram of the remote control chip in the remote control system of this application. It can be seen from the figure that the Telink Microelectronics TLSR8271 low-power Bluetooth chip contains rich interfaces and can perform data interaction and control with general devices, such as UART (Universal Asynchronous Receiver / Transmitter), SPI (Serial Peripheral Interface), etc. Each interface of the Telink Microelectronics TLSR8271 low-power Bluetooth chip will not be described one by one here. The above is only one selection method for the low-power Bluetooth chip 30, and other types of chips can also be selected, which are not limited here.

[0057] In this embodiment, when power supply control is performed on the entire remote control system, the environmental information of the remote control collected by the signal acquisition device is obtained, and then the remote control control instruction is determined based on the environmental information of the remote control. The environmental information of the remote control refers to the information related to the remote control at this time, including at least the remaining power in the remote control at this time, the connection status with the external device to be charged, and the control requirements for the remote control itself. This requirement can be displayed based on buttons or other means. At this time, it is determined whether reverse power supply needs to be provided to the device to be charged based on the environmental information of the remote control, or it can be determined whether to control the device controlled by the remote control, or it can be determined whether to charge the battery in the remote control, etc. That is, the remote control control instruction refers to the instruction for controlling the remote control, including at least the instructions for controlling the remote control to charge the external device to be charged, charge the internal battery of the remote control, and control the external controlled device. Because at this time, the remote control can be controlled to charge the external device to be charged, thereby improving the functionality of the remote control.

[0058] Step S20, when the remote control control instruction is a preset reverse power supply instruction, control the wireless connection device to perform reverse power supply to the device to be charged according to the remote control control instruction.

[0059] In this embodiment, when it is determined that the remote control control instruction is a preset reverse power supply instruction, the wireless connection device is controlled to perform reverse power supply to the device to be charged based on the remote control control instruction. The preset reverse power supply instruction refers to the instruction for the remote control to reverse charge other devices. At this time, after only meeting the conditions set by the reverse charge instruction, it is determined that reverse charging is required at this time, and then the wireless connection device 20 (such as a wireless charging chip) is controlled to perform reverse power supply to the device to be charged. Among them, the reverse power supply is the wireless charging unit, thereby realizing the reverse charging function of the remote control for the device to be charged and improving the functionality of the remote control. Of course, when the remote control control instruction is a preset wireless charging instruction, the wireless connection device is controlled to supply power to the remote control according to the remote control control instruction, that is, to control the wireless connection device to charge the battery inside the remote control, thereby improving the functionality of the remote control.

[0060] In this embodiment, a remote control method is provided, which is applied to a remote control system. The remote control system includes a signal acquisition device and a wireless connection device. The wireless connection device can establish a wireless connection with the device to be charged. By obtaining the remote control environment information collected by the signal acquisition device and determining the remote control instruction according to the remote control environment information; when the remote control instruction is a preset reverse power supply instruction, the wireless connection device is controlled according to the remote control instruction to perform reverse power supply to the device to be charged. This remote control method can establish a wireless connection with the device to be charged through the wireless connection device, and then obtain the remote control environment information collected by the signal acquisition device, and will determine the remote control instruction according to the remote control environment information. When the remote control instruction is a preset reverse power supply instruction, the wireless charging unit in the wireless connection device can be controlled based on the remote control instruction to perform reverse power supply to the device to be charged, thus avoiding the problem that the built-in battery can only supply power to various internal control modules. This remote control method can determine the reverse power supply instruction through the remote control environment information, and perform reverse power supply to the device to be charged based on the reverse power supply instruction to achieve reverse charging of the remote control to the device to be charged, thereby improving the functionality of the remote control.

[0061] Further, based on the first embodiment of the present application above, a second embodiment of the remote control method of the present application is proposed. In this embodiment, in step S10 above, the remote control environment information includes the first key state, the first wireless connection state with the device to be charged (such as a mobile phone that needs to be charged, etc.), and the first remaining battery level value in the remote control. The step of determining the remote control instruction according to the remote control environment information includes:

[0062] Step S11, when the first key state matches the preset reverse power supply key state, the first wireless connection state matches the preset established wireless connection state, and the first remaining battery level value is greater than the preset reverse charging threshold, the preset reverse power supply instruction is used as the remote control instruction;

[0063] Step S12, when the first key state does not match the preset reverse power supply key state, or the first wireless connection state does not match the preset established wireless connection state, or the first remaining battery level value is less than or equal to the preset reverse charging threshold, the preset remote control working instruction is used as the remote control instruction, where the remote control working instruction is used to control the remote control to enter the normal working state.

[0064] In this embodiment, when determining the remote control instruction, it is determined whether reverse charging is required at this time based on the first key state in the remote control environment information, the first wireless connection state with the device to be charged, and the first remaining battery level in the remote control. Among them, the first key state refers to the key situation (or combination keys) of the key input unit 11 (generally the circuit composition corresponding to the keyboard on the remote control, which can be determined by using the detection level or off device on the key), the first wireless connection state refers to whether it is in a wireless connection state or a disconnected state with the device to be charged (which can be determined by detecting the connection state of the corresponding wireless connection chip), and the first remaining battery level refers to the remaining battery level of the lithium battery 51 in the remote control at this time (which can be determined based on the BMS). Furthermore, when it is determined that the first key state matches the preset reverse power supply key state, the first wireless connection state matches the preset established wireless connection state, and the first remaining battery level is greater than the preset reverse charging threshold, then the preset reverse power supply instruction is used as the remote control instruction. Among them, the reverse power supply key state refers to the state where the user-defined reverse charging key is pressed, the established wireless connection state refers to the establishment of a wireless connection between the device to be charged and the remote control, which can be determined based on a certain flag bit, and the preset reverse charging threshold refers to the battery level of the lithium battery that can perform wireless reverse charging defined by the user. Furthermore, when all of the above three conditions (or other more conditions, such as the state of the line, temperature, and busyness of remote control) are met, it is determined that wireless reverse charging is required at this time, and then wireless reverse charging control is performed. On the contrary, when one of the above three conditions is not met, the preset remote control working instruction is determined as the remote control instruction, and then the remote control is controlled to enter the normal working state based on the remote control working instruction (it should be noted that in the normal working state, the remote control environment information can still be obtained, and then the subsequent steps are executed to determine whether reverse charging needs to be performed on the device to be charged, and the normal working can still be carried out in the reverse power supply state). The remote control working instruction refers to the instruction for controlling the remote control to work normally, and the normal working state refers to the state where the remote control normally controls the controlled device. Furthermore, the remote control can be controlled to perform reverse charging on the device to be charged based on the remote control instruction, so as to improve the functionality of the remote control. Further, reference can be made to Figure 7 , Figure 7This is a schematic flowchart of the remote control method of the present application. When the remote control is in normal operation, it will obtain the remote control environment information to determine whether to perform reverse charging on the device to be charged. By judging whether there is a power supply switching action on the button in the remote control environment information, that is, determining whether the first button state matches the preset reverse power supply button state, and determining whether there is a wireless receiving device, that is, whether the first wireless connection state matches the preset wireless connection establishment state, and whether the lithium battery power is sufficient, that is, whether the first remaining power value is greater than the preset reverse charging threshold. Then, when all three conditions are met, the lithium battery is controlled to charge the device to be charged. Otherwise, when one of the three does not meet the conditions, the remote control will continue to work in the normal state, and thus the remote control can supply power to other devices, improving the functionality of the remote control.

[0065] Further, based on the first and second embodiments of the present application above, a third embodiment of the remote control method of the present application is proposed. In this embodiment, after the step S10 where the signal acquisition device 10 includes the button input unit 11 and the wireless connection device 20 includes the signal output unit 22, and the preset remote control working instruction is used as the remote control instruction, the following steps are included:

[0066] Step S121, in the normal working state, obtain the button data input by the button input unit, and determine the control signal corresponding to the button data in the preset data conversion table (the transmission mode of the control signal can be infrared or Bluetooth control);

[0067] Step S122, send the control signal to the signal output unit, where the signal output unit is used to connect to the device to be controlled and control the device to be controlled based on the control signal.

[0068] In this embodiment, in the normal working state, in addition to monitoring the conditions for reverse power supply, the control method of the remote control itself is also monitored. Since the signal acquisition device 10 includes the button input unit 11 and the wireless connection device 20 includes the signal output unit 22, the button data input by the button input unit will also be obtained in the normal working state. Then, the control signal corresponding to the button data is determined in the preset data conversion table. That is, the button data refers to determining which button on the remote control the user presses at this time, and the control signal refers to the signal for the button to control the device to be controlled, such as controlling the increase or decrease of the TV volume. The preset data conversion table defines the corresponding relationship between the button and the control signal. Then, the control signal will be sent to the signal output unit, where the signal output unit is used to connect to the device to be controlled and control the device to be controlled based on the control signal. That is, at this time, the signal output unit can control the device to be controlled based on the control signal to realize the basic control function of the remote control.

[0069] In one embodiment, before controlling the device to be controlled, it is necessary to communicate with the device to be controlled through a wireless communication unit, such as WIFI (Wireless Fidelity) communication or Bluetooth communication, so as to determine the current usage state of the device to be controlled (such as the video playback mode of the TV or the game mode of the TV), and then determine the control signal corresponding to the key data in a preset data conversion table in combination with the key data, so as to achieve targeted control of the device to be controlled in different modes, and to realize the control function of the remote control in different usage scenarios.

[0070] Further, after the step of controlling the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction, it includes:

[0071] Step S201, if the key data input by the key input unit is received, then execute the step of determining the control signal corresponding to the key data in the preset data conversion table, and simultaneously obtain the second remaining power value in the remote control in real time;

[0072] Step S202, when the second remaining power value is less than or equal to the preset reverse charging threshold, generate a stop charging instruction, so as to control the wireless connection device to stop charging the device to be charged based on the stop charging instruction.

[0073] In this embodiment, after determining and performing reverse power supply to the device to be charged, the key data input by the key input unit will be obtained in real time or based on a specific duration, and then directly execute the step of determining the control signal corresponding to the key data in the preset data conversion table. That is, the key data at this time may also be a control signal for controlling the device to be charged to stop charging. Then, based on this control signal, the device to be charged is controlled to stop charging. Moreover, during the charging process, the control of the device to be controlled can also be executed in real time, so as to ensure that multiple functions of the remote control are executed simultaneously and will not be interfered by the external charging function, thereby expanding the usage scenarios of the remote control. Of course, it is also possible to directly detect the state of a certain key or key combination (this key is the stop charging key) on the remote control. Then, when the state is the stop charging state defined by the user, the charging of the device to be charged will be controlled to stop. In another implementation manner, the second remaining power value in the remote control can also be obtained in real time, that is, the real-time remaining power value of the lithium battery during the reverse charging process. Then, when the second remaining power value is less than or equal to the preset reverse charging threshold, a stop charging instruction is generated, so as to control the wireless connection device to stop charging the device to be charged based on the stop charging instruction. The stop charging instruction refers to an instruction to stop charging the device to be charged. Of course, the control condition at this time can also be that the device to be charged is not wirelessly connected to the remote control, the charging of the device to be charged is completed, etc. Conditions are not described one by one here, so as to control the device to be charged to stop charging based on different conditions, so as to ensure the accuracy of the reverse charging control of the device to be charged.

[0074] Further, based on the first embodiment, the second embodiment, and / or the third embodiment of the present application described above, a fourth embodiment of the remote control method of the present application is proposed. In this embodiment, the wireless connection device includes a wireless charging unit and a wireless communication unit (which can be designed and integrated into a single functional module). The steps of controlling the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction include:

[0075] Step a: Based on the remote control instruction, control the wireless communication unit to obtain the reverse charging parameters of the device to be charged, and determine the charging control threshold corresponding to the reverse charging parameters in the preset charging parameter table;

[0076] Step b: Based on the charging control threshold, control the wireless charging unit to perform reverse power supply to the device to be charged, where the wireless charging unit includes a wireless charging chip.

[0077] In this embodiment, when performing reverse power supply to the device to be charged, the wireless communication unit is controlled based on the remote control instruction to obtain the reverse charging parameters of the device to be charged. It can also be obtained through the wireless power supply unit, that is, to determine the reverse charging parameters of the device to be charged that needs to perform reverse charging at this time. The reverse charging parameters refer to the parameters for charging the device to be charged, such as the maximum induction current, etc. Then, based on the reverse charging parameters, the charging control threshold is determined in the preset charging parameter table. Then, the wireless charging unit is controlled based on the charging control threshold to perform reverse power supply to the device to be charged. The wireless charging unit includes a wireless charging chip. The preset charging parameter table refers to the control instructions corresponding to different charging parameters. For example, when the wireless current is A, the control instruction is A1. The charging control threshold refers to the threshold parameter for controlling the internal wireless charging circuit to meet the reverse charging parameters. For example, to ensure that the output current does not exceed A, the charging control threshold needs to control M resistors connected in series at the input end for voltage division input. Thus, the reverse charging can be matched with the reverse charging parameters of the device to be charged, and the safety and accuracy of the charging control of the device to be charged can be ensured.

[0078] In one embodiment, reference can be made to Figure 8 , Figure 8This is a connection schematic diagram of a wireless charging chip in the remote control system of this application. The wireless charging chip can use the MT5725 chip of MAXIC Company (which can perform two-way wireless charging), or it can be other chips that can perform two-way wireless charging. Taking the MT5725 chip as an example, this chip can obtain a maximum power of 40W from the front stage through a coil and convert it into direct current to supply power to the power management module to charge the lithium battery; in addition, this chip also supports 10W reverse charging. Controlled by the low-power Bluetooth chip 30, it can draw power from the lithium battery 52 through the power management module 51 to provide 10W reverse power supply for the device to be charged. Only one functional chip is listed here as an example, and other feasible solutions can also be used as alternatives. Such as Figure 8 As shown, the MT5725 chip includes a first input terminal ACN, a second input terminal ACP, and a power management terminal VSNS. The external circuit of the MT5725 chip includes: a third coil L3; a nineteenth capacitor C19, the first end of the nineteenth capacitor C19 is connected to the second end of the third coil L3, and the second end of the nineteenth capacitor C19 is connected to the first input terminal ACN; a twentieth capacitor C20, the first end of the twentieth capacitor C20 is connected to the first end of the third coil L3 and the second input terminal ACP, and the second end of the twentieth capacitor C20 is connected to the second end of the nineteenth capacitor C19; a first diode D1, the anode of the first diode D1 is connected to the second end of the third coil L3; a second resistor R2, the second end of the second resistor R2 is connected to the cathode of the first diode D1; a third resistor R3, the second end of the third resistor R3 is connected to the first end of the second resistor R2, and the first end of the third resistor R3 is grounded; the midpoint of the third resistor R3 and the second resistor R2 is connected to the power management terminal VSNS after being connected in series through a twenty-fifth capacitor C25 and a fourth resistor R4, and the power management terminal VSNS is also connected to a twenty-sixth capacitor C26 and then grounded.

[0079] Exemplarily, the MT5725 chip receives the electric energy of the first coil L1, and then inputs it into the MT5725 chip through the first input terminal ACN and the second input terminal ACP, and outputs it to the device that needs to be charged or powered through the chip output port VOUT of the MT5725 chip. Of course, it can also be input through the output port VOUT and output by the first coil L1, so as to realize the two-way charging and discharging function to ensure the functionality in the remote control.

[0080] In an embodiment, after the signal acquisition device includes a remote control detection unit and controls the wireless charging unit to perform reverse power supply to the device to be charged based on the charging control threshold, it includes:

[0081] Step c: Control the wireless communication unit to obtain the charging data and the second wireless connection status of the device to be charged in real time, and control the remote control detection unit to obtain the second button status and the third remaining power value of the remote control in real time. The charging data includes the current charging value and the charging completion value.

[0082] Step d: When the current charging value is greater than or equal to the charging completion value, or the second wireless connection status does not match the preset established wireless connection status, or the second button status does not match the preset reverse power supply button status, or the third remaining power value is less than or equal to the preset reverse charging threshold, generate a stop charging instruction to control the wireless connection device to stop charging the device to be charged based on the stop charging instruction.

[0083] In this embodiment, after reverse charging (that is, during reverse charging but before charging is completed), the wireless communication unit is controlled to obtain the charging data and the second wireless connection status of the device to be charged in real time, and at the same time, the remote control detection unit is controlled to obtain the second button status and the third remaining power value of the remote control in real time. The charging data includes the current charging value (referring to the amount of power that has been charged to the device to be charged) and the charging completion value (referring to the amount of power defined as charging completion for the device to be charged). The second wireless connection status refers to the connection status between the device to be charged and the remote control. The second button status refers to the status of the buttons on the remote control, which can be obtained by a circuit that uses the remote control detection unit to detect the high and low levels of the buttons, or by other acquisition methods. The third remaining power value refers to the remaining power of the lithium battery at this time, which can be obtained based on the power detection chip in the remote control detection unit or directly based on the BMS. Furthermore, when the current charging value is greater than or equal to the charging completion value, that is, it is determined that the device to be charged is fully charged at this time, or the second wireless connection status does not match the preset established wireless connection status, that is, the device to be charged is not connected to the remote control at this time, or the third remaining power value is less than or equal to the preset reverse charging threshold, that is, the lithium battery power is insufficient at this time, a stop charging instruction will be controlled to be generated to control the wireless connection device to stop charging the device to be charged based on the stop charging instruction. On the contrary, when none of the above three conditions are met, charging will continue, thereby ensuring the accuracy of the entire charging control.

[0084] Further, based on the first, second, third, and / or fourth embodiments of the present application above, a fifth embodiment of the remote control control method of the present application is proposed. In this embodiment, the wireless connection device can establish a wireless connection with the device to be powered. The remote control environment information includes the third button status, the third wireless connection status with the device to be powered, and the fourth remaining power value in the remote control. After the step of obtaining the remote control environment information collected by the signal acquisition device, it includes:

[0085] Step e, when the third wireless connection state matches the preset wireless connection establishment state, detect whether the third button state matches the preset forward charging button state, or detect whether the fourth remaining battery level is less than the preset forward charging threshold;

[0086] Step f, when the third button state matches the preset forward charging button state, or it is detected that the fourth remaining battery level is less than the preset forward charging threshold, generate a charging start command to establish a wireless charging channel with the device to be powered based on the charging start command;

[0087] Step g, when the third button state does not match the preset forward charging button state and it is detected that the fourth remaining battery level is greater than or equal to the preset forward charging threshold, execute the step of obtaining the remote control environment information collected by the signal acquisition device.

[0088] In this embodiment, in addition to performing reverse charging on the outside, forward charging is also performed on the lithium battery inside the remote control. At this time, the wireless connection device can establish a wireless connection with the device to be powered. The remote control environment information includes the third button state (i.e., the pressed state of the button, or other distinguishable button states, such as pressing the single button again, pressing the combination buttons simultaneously, or pressing the buttons in a sequential combination), the third wireless connection state with the device to be powered (the wireless connection state with the device to be powered, and the device to be powered and the device to be charged can be determined based on the charging flag obtained by the wireless communication unit. For example, if the charging flag is 1, it is the device to be powered, and if the charging flag is 0, it is the device to be charged), and the fourth remaining battery level inside the remote control (the remaining battery level of the lithium battery). Furthermore, when it is determined that the third wireless connection state matches the preset wireless connection establishment state, that is, at this time the remote control has established a wireless connection with the device to be powered, then it will be detected whether the third button state matches the preset forward charging button state, or whether the fourth remaining battery level is less than the preset forward charging threshold. The forward charging button state refers to the state in which the button is pressed when charging is required as defined by the user, and the preset forward charging threshold refers to the battery level of the lithium battery when charging is required as defined by the user. Furthermore, when the third button state matches the preset forward charging button state, or it is detected that the fourth remaining battery level is less than the preset forward charging threshold, a charging start command is generated to establish a wireless charging channel with the device to be powered based on the charging start command. On the contrary, when the third button state does not match the preset forward charging button state and it is detected that the fourth remaining battery level is greater than or equal to the preset forward charging threshold, the step of obtaining the remote control environment information collected by the signal acquisition device is executed, which can ensure the accuracy of remote control charging control and improve the functionality of the remote control by combining the external power supply function of the remote control.

[0089] It should be noted that the above examples are only for understanding the present application and do not constitute a limitation on the remote control method of the present application. Based on this technical concept, more forms of simple transformations are within the protection scope of the present application.

[0090] The present application also provides a remote control system, which includes a remote control chip, a signal acquisition device and a wireless connection device. The remote control chip is connected to the signal acquisition device and the wireless connection device. The wireless connection device can establish a wireless connection with the device to be charged. Please refer to Figure 9 , the remote control chip includes:

[0091] An instruction determination module A10, configured to obtain the remote control environment information collected by the signal acquisition device and determine a remote control instruction according to the remote control environment information;

[0092] A charging control module A20, configured to, when the remote control instruction is a preset reverse power supply instruction, control the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction.

[0093] The remote control system provided by the present application adopts the remote control method in the above embodiment, and can solve the technical problem of low functionality of the remote control. Compared with the prior art, the beneficial effects of the remote control system provided by the present application are the same as those of the remote control method provided by the above embodiment, and other technical features in the remote control system are the same as those disclosed in the above embodiment method, and will not be elaborated here.

[0094] The present application provides a remote control, which includes: the above remote control system (it should be noted that the subsequent processor and memory can be set in the system base chip in the remote control system), at least one processor; and, a memory communicatively connected to the at least one processor; wherein, the memory stores instructions executable by the at least one processor, and the instructions are executed by the at least one processor so that the at least one processor can execute the remote control method in the first embodiment above.

[0095] Next, refer to Figure 10, which shows a schematic structural diagram of a remote controller suitable for implementing the embodiments of the present application. The remote controller in the embodiments of the present application may include, but is not limited to, mobile terminals such as mobile phones, laptop computers, digital broadcast receivers, PDAs (Personal Digital Assistants), PADs (Portable Application Descriptions), PMPs (Portable Media Players), vehicle-mounted terminals (such as vehicle-mounted navigation terminals), etc., and fixed terminals such as digital TVs, desktop computers, etc. Figure 10 The remote controller shown is only an example and should not impose any limitations on the functions and usage scope of the embodiments of the present application.

[0096] As Figure 10 shown, the remote controller may include a processing system 1001 (such as a central processing unit, a graphics processing unit, etc.), which can perform various appropriate actions and processes according to the programs stored in the read-only memory (Read Only Memory) 1002 or the programs loaded from the storage system 1003 into the random access memory 1004. In the random access memory 1004, various programs and data required for the operation of the remote controller are also stored. The processing system 1001, the read-only memory 1002, and the random access memory 1004 are connected to each other through a bus 1005. The input / output interface 1006 is also connected to the bus. Generally, the following systems may be connected to the input / output interface 1006: an input system 1007 including, for example, a touch screen, a touch pad, a keyboard, a mouse, an image sensor, a microphone, an accelerometer, a gyroscope, etc.; an output system 1008 including, for example, a liquid crystal display (LCD: Liquid Crystal Display), a speaker, a vibrator, etc.; a storage system 1003 including, for example, a magnetic tape, a hard disk, etc.; and a communication system 1009. The communication system 1009 can allow the remote controller to communicate with other remote controllers wirelessly or wiredly to exchange data. Although the figure shows a remote controller with various systems, it should be understood that it is not required to implement or have all the systems shown. More or fewer systems may be alternatively implemented or had.

[0097] In particular, according to the embodiments disclosed in the present application, the processes described above with reference to the flowcharts can be implemented as computer software programs. For example, the embodiments disclosed in the present application include a computer program product, which includes a computer program carried on a computer-readable medium, and the computer program contains program codes for executing the methods shown in the flowcharts. In such an embodiment, the computer program can be downloaded and installed from a network through a communication system, or installed from a storage system 1003, or installed from a read-only memory 1002. When the computer program is executed by a processing system 1001, the above-mentioned functions defined in the methods of the embodiments disclosed in the present application are executed.

[0098] The remote controller provided by the present application adopts the remote controller control method in the above-mentioned embodiment, and can solve the technical problem of low functionality of the remote controller. Compared with the prior art, the beneficial effects of the remote controller provided by the present application are the same as those of the remote controller control method provided in the above-mentioned embodiment, and other technical features in the remote controller are the same as those disclosed in the method of the previous embodiment, and will not be elaborated here.

[0099] It should be understood that each part disclosed in the present application can be implemented by hardware, software, firmware or a combination thereof. In the description of the above embodiments, specific features, structures, materials or characteristics can be combined in a suitable manner in any one or more embodiments or examples.

[0100] As mentioned above, the above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed in the present application can easily think of changes or substitutions, which should all be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

[0101] The present application provides a computer-readable storage medium, having computer-readable program instructions (i.e., computer programs) stored thereon, and the computer-readable program instructions are used to execute the remote controller control method in the above-mentioned embodiment.

[0102] The computer-readable storage medium provided by the present application may be, for example, a USB flash drive, but is not limited to electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems, devices, or components, or any combination of the above. More specific examples of the computer-readable storage medium may include, but are not limited to: electrical connections with one or more wires, portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM) or flash memory, optical fibers, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination of the above. In this embodiment, the computer-readable storage medium may be any tangible medium that contains or stores a program that can be used by or in conjunction with an instruction execution system, device, or component. The program code contained on the computer-readable storage medium may be transmitted using any appropriate medium, including but not limited to: wires, optical cables, RF (radio frequency), etc., or any suitable combination of the above.

[0103] The above computer-readable storage medium may be included in the remote control; or it may exist independently and not be assembled into the remote control.

[0104] The above computer-readable storage medium carries one or more programs. When the one or more programs are executed by the remote control, the remote control is caused to:

[0105] Obtain the remote control environment information collected by the signal acquisition device, and determine a remote control instruction according to the remote control environment information;

[0106] When the remote control instruction is a preset reverse power supply instruction, control the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction.

[0107] Computer program code for performing the operations of this application can be written in one or more programming languages or combinations thereof. The above-mentioned programming languages include object-oriented programming languages such as Java, Smalltalk, C++, and also include conventional procedural programming languages such as the "C" language or similar programming languages. The program code can be executed entirely on the user's computer, partially on the user's computer, executed as an independent software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In the case of a remote computer, the remote computer can be connected to the user's computer through any type of network, including a local area network (LAN: Local Area Network) or a wide area network (WAN: Wide Area Network), or it can be connected to an external computer (for example, by connecting through the Internet using an Internet service provider).

[0108] The flowcharts and block diagrams in the accompanying drawings illustrate the possible architectures, functions, and operations of systems, methods, and computer program products according to various embodiments of this application. In this regard, each block in the flowchart or block diagram may represent a module, a program segment, or a part of code that contains one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions marked in the blocks may occur in a different order than marked in the accompanying drawings. For example, two consecutive blocks shown may actually be executed substantially in parallel, and they may sometimes be executed in the reverse order, depending on the functions involved. It should also be noted that each block in the block diagram and / or flowchart, as well as the combination of blocks in the block diagram and / or flowchart, can be implemented by a dedicated hardware-based system for performing the specified functions or operations, or can be implemented by a combination of dedicated hardware and computer instructions.

[0109] The modules described in the embodiments of this application can be implemented in software or in hardware. Among them, the name of the module does not constitute a limitation to the unit itself in some cases.

[0110] The computer-readable storage medium provided by this application is a computer-readable storage medium that stores computer-readable program instructions (i.e., computer programs) for performing the above-mentioned remote control method, and can solve the technical problem of the low functionality of the remote control. Compared with the prior art, the beneficial effects of the computer-readable storage medium provided by this application are the same as those of the remote control method provided by the above embodiments, and will not be elaborated here.

[0111] The present application also provides a computer program product, including a computer program which, when executed by a processor, implements the steps of the remote control method as described above.

[0112] The computer program product provided by the present application can solve the technical problem of low functionality of the remote control. Compared with the prior art, the beneficial effects of the computer program product provided by the present application are the same as those of the remote control method provided by the above embodiments, and will not be elaborated here.

[0113] The above are only partial embodiments of the present application, and thus do not limit the patent scope of the present application. Any equivalent structural transformation made under the technical concept of the present application by using the content of the specification and drawings of the present application, or any direct / indirect application in other related technical fields, is included in the patent protection scope of the present application.

Claims

1. A remote control method, characterized in that The remote control method is applied to a remote control system, which includes a signal acquisition device and a wireless connection device. The wireless connection device can establish a wireless connection with a device to be charged. The remote control method includes: Obtain the remote control environment information collected by the signal acquisition device, and determine a remote control instruction according to the remote control environment information; When the remote control instruction is a preset reverse power supply instruction, control the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction.

2. The remote control method according to claim 1, wherein, The remote control environment information includes a first key state, a first wireless connection state with the device to be charged, and a first remaining battery level value in the remote control. The step of determining a remote control instruction according to the remote control environment information includes: When the first key state matches a preset reverse power supply key state, the first wireless connection state matches a preset established wireless connection state, and the first remaining battery level value is greater than a preset reverse charging threshold, use the preset reverse power supply instruction as the remote control instruction; When the first key state does not match the preset reverse power supply key state, or the first wireless connection state does not match the preset established wireless connection state, or the first remaining battery level value is less than or equal to the preset reverse charging threshold, use the preset remote control working instruction as the remote control instruction, where the remote control working instruction is used to control the remote control to enter a normal working state.

3. The remote control method according to claim 2, characterized in that, The signal acquisition device includes a key input unit, and the wireless connection device includes a signal output unit. After the step of using the preset remote control working instruction as the remote control instruction, it includes: In the normal working state, obtain the key data input by the key input unit, and determine the control signal corresponding to the key data in a preset data conversion table; Send the control signal to the signal output unit, where the signal output unit is used to connect to a device to be controlled and control the device to be controlled based on the control signal.

4. The remote control method according to claim 3, wherein After the step of controlling the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction, it includes: If the key data input by the key input unit is received, execute the step of determining the control signal corresponding to the key data in the preset data conversion table, and obtain the second remaining battery level value in the remote control in real time; When the second remaining battery level value is less than or equal to the preset reverse charging threshold, generate a stop charging instruction to control the wireless connection device to stop charging the device to be charged based on the stop charging instruction.

5. The remote control method according to claim 1, wherein The wireless connection device includes a wireless charging unit and a wireless communication unit. The step of controlling the wireless connection device to perform reverse power supply to the device to be charged according to the remote control instruction includes: Control the wireless communication unit based on the remote control instruction, obtain the reverse charging parameters of the device to be charged, and determine the charging control threshold corresponding to the reverse charging parameters in a preset charging parameter table; Based on the charging control threshold, control the wireless charging unit to perform reverse power supply to the device to be charged, where the wireless charging unit includes a wireless charging chip.

6. The remote control method according to claim 5, characterized in that The signal acquisition device includes a remote control detection unit. After the step of controlling the wireless charging unit to perform reverse power supply to the device to be charged based on the charging control threshold, it includes: Control the wireless communication unit to obtain the charging data and the second wireless connection status of the device to be charged in real time, and control the remote control detection unit to obtain the second button status and the third remaining battery level of the remote control in real time, where the charging data includes the current charging value and the charging completion value; When the current charging value is greater than or equal to the charging completion value, or the second wireless connection status does not match the preset established wireless connection status, or the second button status does not match the preset reverse power supply button status, or the third remaining battery level is less than or equal to the preset reverse charging threshold, generate a stop charging instruction to control the wireless connection device to stop charging the device to be charged based on the stop charging instruction.

7. The remote control method according to any one of claims 1 to 6, characterized in that The wireless connection device can establish a wireless connection with the device to be powered. The remote control environment information includes the third button status, the third wireless connection status with the device to be powered, and the fourth remaining battery level in the remote control. After the step of obtaining the remote control environment information collected by the signal acquisition device, it includes: When the third wireless connection status matches the preset established wireless connection status, detect whether the third button status matches the preset forward charging button status, or detect whether the fourth remaining battery level is less than the preset forward charging threshold; When the third button status matches the preset forward charging button status, or it is detected that the fourth remaining battery level is less than the preset forward charging threshold, generate a charging start instruction to establish a wireless charging channel with the device to be powered based on the charging start instruction; When the third button status does not match the preset forward charging button status, and it is detected that the fourth remaining battery level is greater than or equal to the preset forward charging threshold, execute the step of obtaining the remote control environment information collected by the signal acquisition device.

8. A remote control system, characterized in that, The remote control control system includes a remote control control chip, a signal acquisition device, and a wireless connection device. The remote control control chip is connected to the signal acquisition device and the wireless connection device. The wireless connection device can establish a wireless connection with the device to be charged. The remote control control chip includes: An instruction determination module for obtaining the remote control environment information collected by the signal acquisition device and determining the remote control control instruction according to the remote control environment information; A charging control module for controlling the wireless connection device to perform reverse power supply to the device to be charged according to the remote control control instruction when the remote control control instruction is the preset reverse power supply instruction.

9. A remote control, characterized in that, The remote controller includes a remote controller control system, a processor, and a memory. A remote controller control method program that can run on the processor is stored on the memory. Among them, when the remote controller control method program is executed by the processor, the steps of the remote controller control method described in any one of claims 1 to 7 are implemented.

10. A computer-readable storage medium, characterized in that, A remote controller control method program is stored on the computer-readable storage medium. Among them, when the remote controller control method program is executed by the processor, the steps of the remote controller control method described in any one of claims 1 to 7 are implemented.

Citation Information

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