Charging cabinet management method of shared mobile power supply and charging cabinet

By managing shared mobile power within the shared mobile power charging cabinet and triggering it to switch to standby mode to supply the internal power supply of the charging cabinet, the deployment inconvenience problem when the external power supply is not accessible, reducing operating costs and expanding application scenarios.

CN120222591APending Publication Date: 2025-06-27HANGZHOU ARIJIE NETWORK TECH CO LTD
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Patent Information

Application Number
CN202510372770.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

The existing shared mobile power charging cabinet is inconvenient to deploy when it cannot be connected to the external power supply, and adding a battery alone will increase production and transformation costs.

Method used

By managing the shared mobile power supply inside the charging cabinet, triggering it to perform a switching action, switching to the standby mode to supply the internal power supply of the charging cabinet, self-power supply without external power supply is achieved.

Benefits of technology

The application scenarios of charging cabinets have been expanded, operating costs have been reduced, and deployment inconvenient problems have been solved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a charging cabinet management method for a shared mobile power supply and a charging cabinet, and the method comprises the steps: triggering the shared mobile power supply managed in the charging cabinet to execute a first switching action under the condition that the charging cabinet does not have an external power supply for power supply; the working mode of the shared mobile power supply after executing the first switching action is switched to a standby mode, and the shared mobile power supply in the standby mode supplies power to the charging cabinet. According to the charging cabinet, the shared mobile power supply in the charging cabinet is used for supplying power to the charging cabinet in a scene that an external power supply cannot be used for supplying power, so that the application scene of the charging cabinet is expanded, the operation cost is reduced, and the problem that an existing shared mobile power supply charging cabinet is inconvenient to deploy is solved.
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Description

Technical Field

[0001] This application relates to the technical field of shared mobile power supplies, and particularly to a charging cabinet management method and a charging cabinet for shared mobile power supplies. Background Art

[0002] In the existing shared mobile power supply solutions, before being taken out and used by users, the shared mobile power supplies are generally locked in the charging cabinet, and the charging cabinet must be powered by an external power supply to operate normally. This will result in limited installation scenarios for the charging cabinet, and it must be deployed near a fixed power source (such as shopping malls, airports, etc.), and cannot cover outdoor scenarios without mains power access (such as parks, open-air activity areas, remote scenic spots, etc.). On the other hand, if a separate battery is added to the charging cabinet for power supply, the production cost of the charging cabinet will be greatly increased, and it is also a significant expense to retrofit the already operating charging cabinet to add a battery.

[0003] Currently, for the problem of inconvenient deployment of existing shared mobile power supply charging cabinets in related technologies, no effective solution has been proposed. Summary of the Invention

[0004] Embodiments of this application provide a charging cabinet management method and a charging cabinet for shared mobile power supplies to at least solve the problem of inconvenient deployment of existing shared mobile power supply charging cabinets in related technologies.

[0005] In a first aspect, embodiments of this application provide a charging cabinet management method for shared mobile power supplies, and the method includes:

[0006] When there is no external power supply for the charging cabinet, trigger the shared mobile power supplies managed inside the charging cabinet to perform a first switching action;

[0007] After performing the first switching action, the working mode of the shared mobile power supply is switched to the standby mode, where the shared mobile power supply in the standby mode powers the charging cabinet.

[0008] In some embodiments, triggering the shared mobile power supplies managed inside the charging cabinet to perform the first switching action includes:

[0009] If the shared mobile power supplies managed inside the charging cabinet do not receive a first instruction sent by the charging cabinet within a first preset time period, trigger the shared mobile power supplies managed inside the charging cabinet to perform the first switching action, where when the charging cabinet is powered on and running, the charging cabinet regularly sends the first instruction to the shared mobile power supplies inside the charging cabinet.

[0010] In some embodiments, triggering the shared mobile power supplies managed inside the charging cabinet to perform the first switching action further includes:

[0011] Trigger all shared mobile power supplies that manage the interior of the charging cabinet to perform a first switching action.

[0012] In some embodiments, after the shared mobile power supply in the standby mode powers the charging cabinet, the method includes:

[0013] The charging cabinet automatically powers on and periodically sends a first instruction to the shared mobile power supplies managed by the charging cabinet, and receives a first reply returned by the shared mobile power supplies;

[0014] Based on the first reply and the power demand information of the charging cabinet, send a third instruction to the shared mobile power supplies that do not need to be in the standby mode to trigger the shared mobile power supplies to perform a third switching action;

[0015] The working mode of the shared mobile power supply after performing the third switching action is switched to the locked mode, wherein the shared mobile power supply in the locked mode can be rented by users by scanning the code.

[0016] In some embodiments, triggering the shared mobile power supplies that manage the interior of the charging cabinet to perform a first switching action includes:

[0017] If the charging cabinet detects the occurrence of a power outage event, it provides instantaneous power supply through a built-in super capacitor to determine the number of shared mobile power supplies that need to perform the first switching action, and triggers the shared mobile power supplies of the determined number to perform the first switching action.

[0018] In some embodiments, after the shared mobile power supply in the standby mode powers the charging cabinet, the method includes:

[0019] The charging cabinet automatically powers on. When a user scans the code to rent a shared mobile power supply managed by the charging cabinet, send a second instruction to the shared mobile power supply in the locked mode to trigger the shared mobile power supply to perform a second switching action;

[0020] The working mode of the shared mobile power supply after performing the second switching action is switched to the activation mode, wherein the shared mobile power supply in the activation mode pops out of the charging cabinet for users to use.

[0021] In some embodiments, the charging cabinet automatically powering on includes:

[0022] The charging cabinet automatically powers on. If no user rents a shared mobile power supply within a second preset time period, the charging cabinet enters the sleep mode and continuously monitors the surrounding environment of the charging cabinet through a built-in detection sensor, and automatically wakes up the charging cabinet in the sleep mode when someone approaches the charging cabinet.

[0023] In some of these embodiments, after the shared mobile power supply in the standby mode powers the charging cabinet, the method includes:

[0024] Charging the shared mobile power supply in the locked mode in the charging cabinet through a solar panel outside the charging cabinet.

[0025] In some of these embodiments, the power supply of the charging cabinet by the shared mobile power supply in the standby mode includes:

[0026] The POGOPIN interface connecting the shared mobile power supply in the standby mode and the charging cabinet is in a power output state, and the shared mobile power supply powers the charging cabinet through the POGOPIN interface.

[0027] In a second aspect, an embodiment of the present application provides a charging cabinet for a shared mobile power supply. The charging cabinet is used to implement the method described in the first aspect above, and the charging cabinet is powered by a shared mobile power supply managed internally.

[0028] Compared with the related art, a method for managing a charging cabinet for a shared mobile power supply and a charging cabinet provided by an embodiment of the present application. Among them, the method triggers a first switching action of a shared mobile power supply managed internally in the charging cabinet when there is no external power supply for the charging cabinet; the working mode of the shared mobile power supply after performing the first switching action is switched to the standby mode. Among them, the shared mobile power supply in the standby mode powers the charging cabinet, realizing that in a scenario where external power supply cannot be used, the shared mobile power supply in the charging cabinet is used to power the charging cabinet, thereby expanding the application scenario of the charging cabinet, reducing the operation cost, and solving the problem that the existing charging cabinet for shared mobile power supply is inconvenient to deploy. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] The drawings described herein are used to provide a further understanding of the present application, and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application, and do not constitute an improper limitation of the present application. In the drawings:

[0030] Figure 1 is a flowchart of the steps of a method for managing a charging cabinet for a shared mobile power supply according to an embodiment of the present application;

[0031] Figure 2 is a schematic internal structure diagram of an electronic device according to an embodiment of the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0032] In order to make the objectives, technical solutions and advantages of the present application more clearly understood, the present application will be described and explained below with reference to the accompanying drawings and embodiments. 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. All other embodiments obtained by those of ordinary skill in the art based on the embodiments provided in the present application without creative efforts belong to the scope of protection of the present application.

[0033] Obviously, the accompanying drawings in the following description are only some examples or embodiments of the present application. For those of ordinary skill in the art, without creative efforts, the present application can also be applied to other similar scenarios based on these drawings. In addition, it can also be understood that although the efforts made in this development process may be complex and lengthy, for those of ordinary skill in the art related to the content disclosed in the present application, some design, manufacturing or production changes made based on the technical content disclosed in the present application are only conventional technical means and should not be understood as the content disclosed in the present application being insufficient.

[0034] Referring to "embodiments" in the present application means that the specific features, structures or characteristics described in connection with the embodiments can be included in at least one embodiment of the present application. The appearance of this phrase at various positions in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those of ordinary skill in the art explicitly and implicitly understand that the embodiments described in the present application can be combined with other embodiments without conflict.

[0035] Unless otherwise defined, the technical terms or scientific terms involved in this application shall have the ordinary meanings understood by those with ordinary skills in the technical field to which this application belongs. The words such as "a", "an", "one", "the" and the like involved in this application do not indicate a quantity limitation and may represent a singular or plural number. The terms "including", "comprising", "having" and any variations thereof involved in this application are intended to cover non-exclusive inclusion; for example, a process, method, system, product or device including a series of steps or modules (units) is not limited to the listed steps or units, but may further include unlisted steps or units, or may further include other steps or units inherent to these processes, methods, products or devices. The words such as "connected", "coupled" and the like involved in this application are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. The "plurality" involved in this application means two or more. The "and / or" describes the association relationship of associated objects and indicates that three relationships may exist. For example, "A and / or B" may represent: A exists alone, A and B exist simultaneously, and B exists alone. The character " / " generally represents an "or" relationship between the front and rear associated objects. The terms "first", "second", "third" and the like involved in this application are only used to distinguish similar objects and do not represent a specific order for the objects.

[0036] The embodiment of this application provides a method for managing a charging cabinet of a shared mobile power supply. Figure 1 It is a flowchart of the steps of the method for managing a charging cabinet of a shared mobile power supply according to the embodiment of this application, as Figure 1 shown, and this method includes the following steps:

[0037] Step S102, when there is no external power supply for the charging cabinet, trigger the shared mobile power supply managed inside the charging cabinet to perform a first switching action;

[0038] Specifically for step S102, when there is no external power supply for the charging cabinet, if the shared mobile power supply managed inside the charging cabinet does not receive the first instruction sent by the charging cabinet within the first preset time period, trigger the shared mobile power supply managed inside the charging cabinet to perform a first switching action, where, when the charging cabinet is powered on and running, the charging cabinet regularly sends the first instruction to the shared mobile power supply inside the charging cabinet.

[0039] It should be noted that the time interval for the charging cabinet to send the first instruction regularly should be less than or equal to the first preset time period. For example, if the time interval for sending the first instruction regularly is 3s and the first preset time period is 5s, then if the shared mobile power supply does not receive the first instruction sent by the charging cabinet within 5s, the first switching action will be triggered. In addition, after receiving the first instruction, the shared mobile power supply will send a first reply to the charging cabinet, and the data content of the first reply should at least include: the unique identity identifier of the shared mobile power supply, the working mode of the mobile power supply (such as locked mode, standby mode, active mode), and the power information of the mobile power supply.

[0040] Furthermore, it should be noted that: ① The situation where there is no external power supply for the charging cabinet can be: the charging cabinet is connected to an external power supply but the external power supply stops supplying power to the charging cabinet (such as a sudden power outage in a shopping mall). At this time, triggering the shared mobile power supply to perform the first switching action to supply power to the charging cabinet can effectively maintain the normal rental of the shared mobile power supply in the charging cabinet and play a good emergency function; ② The situation where there is no external power supply for the charging cabinet can also be: the charging cabinet cannot be connected to an external power supply (such as a remote scenic area without mains power access, etc.). Triggering the shared mobile power supply to perform the first switching action to supply power to the charging cabinet can effectively expand the deployment application scenarios of the charging cabinet.

[0041] Step S104, the working mode of the shared mobile power supply after performing the first switching action is switched to the standby mode, where the shared mobile power supply in the standby mode supplies power to the charging cabinet.

[0042] It should be noted that for the shared mobile power supply with the working mode of standby mode, the preset identifier on the charging cabinet can be activated to prompt the user that the shared mobile power supply cannot be rented out externally.

[0043] Through the above steps in the embodiments of the present application, it is realized that in the scenario where external power supply cannot be used, the shared mobile power supply in the charging cabinet is used to supply power to the charging cabinet, thereby expanding the application scenarios of the charging cabinet, reducing the operation cost, and solving the problem of inconvenient deployment existing in the existing shared mobile power supply charging cabinet.

[0044] The specific embodiment of the present application provides a method for managing a charging cabinet of a shared mobile power supply. For triggering the first switching action of the shared mobile power supply for internal management of the charging cabinet in the above step S102, it can be selected as:

[0045] Based on the power demand information of the charging cabinet and the output power of the shared mobile power supply for internal management of the charging cabinet, determine the execution quantity of the shared mobile power supply that needs to perform the first switching action, and trigger the shared mobile power supply with the execution quantity to perform the first switching action.

[0046] In the case where there is no external power supply for the charging cabinet, and the charging cabinet can detect the occurrence of a power-off event (which can be detected through a power-off detection circuit, such as using a voltage monitoring chip to detect the voltage to determine whether a power-off has occurred), the built-in supercapacitor provides instantaneous power supply to determine the number of shared mobile power supplies that need to perform the first switching action (which can be determined based on the power demand information of the charging cabinet and the output power of the shared mobile power supply), and triggers the shared mobile power supplies with the determined number to perform the first switching action.

[0047] Then, after the shared mobile power supply in the standby mode in step S104 supplies power to the charging cabinet, the method of the specific embodiment of the present application further includes:

[0048] Step S205, the charging cabinet automatically powers on. When a user scans the code to rent a shared mobile power supply managed inside the charging cabinet, the charging cabinet sends a second instruction to the shared mobile power supply in the locked mode to trigger the shared mobile power supply to perform a second switching action; wherein, after receiving the second instruction, the shared mobile power supply sends a second reply to the charging cabinet, and the data content of the second reply at least includes: the unique identity identifier of the shared mobile power supply, the working mode of the mobile power supply (such as locked mode, standby mode, active mode), and the power information of the mobile power supply.

[0049] The charging cabinet automatically powering on in step S205 is specifically: the charging cabinet automatically powers on. If no user rents a shared mobile power supply within the second preset time period, the charging cabinet enters the sleep mode and continuously monitors the surrounding environment of the charging cabinet through the built-in detection sensor, and automatically wakes up the charging cabinet in the sleep mode when someone approaches the charging cabinet.

[0050] Step S206, the working mode of the shared mobile power supply after performing the second switching action is switched to the active mode, wherein the shared mobile power supply in the active mode pops out of the charging cabinet for the user to use.

[0051] The specific embodiment of the present application provides a method for managing a charging cabinet of a shared mobile power supply. For triggering the shared mobile power supply managed inside the charging cabinet to perform the first switching action in the above step S102, it is optional to:

[0052] Trigger all the shared mobile power supplies managed inside the charging cabinet to perform the first switching action.

[0053] Then, after the shared mobile power supply in the standby mode in step S104 supplies power to the charging cabinet, the method of the specific embodiment of the present application further includes:

[0054] Step S305, the charging cabinet automatically powers on and periodically sends a first instruction to the shared mobile power supply managed inside the charging cabinet, and receives the first reply returned by the shared mobile power supply;

[0055] The automatic startup of the charging cabinet in step S305 is specifically as follows: The charging cabinet automatically starts up. If no user rents a shared mobile power supply within the second preset time period, the charging cabinet enters the sleep mode and continuously monitors the surrounding environment of the charging cabinet through the built-in detection sensor. When someone approaches the charging cabinet, the charging cabinet in the sleep mode is automatically awakened.

[0056] Step S306: Based on the first reply and the power demand information of the charging cabinet, send a third instruction (at least including the unique identity identifier of the shared mobile power supply) to the shared mobile power supplies that do not need to be in the standby mode, so as to trigger the shared mobile power supplies to perform a third switching action. After receiving the third instruction, the shared mobile power supply will send a third reply to the charging cabinet. The data content of the third reply at least includes: the unique identity identifier of the shared mobile power supply, the working mode of the mobile power supply (such as the locked mode, standby mode, activation mode), and the power information of the mobile power supply.

[0057] Step S307: After performing the third switching action, the working mode of the shared mobile power supply is switched to the locked mode. Among them, the shared mobile power supply in the locked mode can be rented by the user by scanning the code.

[0058] In some embodiments, after the shared mobile power supply in the standby mode powers the charging cabinet, the method includes:

[0059] Charge the shared mobile power supply in the locked mode in the charging cabinet through the solar panel outside the charging cabinet. It should be noted that the application of the solar panel further improves the convenience and independence of the charging cabinet without mains power access.

[0060] In some embodiments, the power supply of the charging cabinet by the shared mobile power supply in the standby mode includes:

[0061] The POGOPIN interface connecting the shared mobile power supply in the standby mode and the charging cabinet is in the power output state, and the shared mobile power supply powers the charging cabinet through the POGOPIN interface. In addition, if the charging cabinet charges the shared mobile power supply by wireless charging, the shared mobile power supply in the standby mode can also power the charging cabinet by wireless charging. Further, the shared mobile power supply in the standby mode continuously detects the size of the external load. If the external load is less than a certain threshold for a certain period of time, the shared mobile power supply in the standby mode will also automatically switch to the locked mode.

[0062] It should be noted that the steps shown in the above process or the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer executable instructions. And although the logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in a different order than here.

[0063] An embodiment of the present application provides a charging cabinet for shared mobile power supplies. The charging cabinet is used to implement the method in the above first aspect, and the charging cabinet is powered by the shared mobile power supplies managed internally.

[0064] This embodiment provides an electronic device, including a memory and a processor. A computer program is stored in the memory, and the processor is configured to run the computer program to execute the steps in any of the above method embodiments.

[0065] Optionally, the above electronic device may further include a transmission device and an input / output device. Among them, the transmission device is connected to the above processor, and the input / output device is connected to the above processor.

[0066] Optionally, the electronic device may further include a processor, a memory, a network interface, a display screen, and an input device connected through a system bus. Among them, the processor of the electronic device is used to provide computing and control capabilities. The memory of the electronic device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system and a computer program. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The network interface of the electronic device is used to communicate with an external terminal through a network connection. When the computer program is executed by the processor, it implements a method for managing a charging cabinet for shared mobile power supplies. The display screen of the electronic device may be a liquid crystal display screen or an electronic ink display screen. The input device of the electronic device may be a touch layer covering the display screen, or a button, a trackball, or a touchpad provided on the housing of the electronic device, or an external keyboard, a touchpad, or a mouse, etc.

[0067] It should be noted that the specific examples in this embodiment may refer to the examples described in the above embodiments and optional implementation manners, and will not be repeated here.

[0068] In addition, in combination with the method for managing a charging cabinet for shared mobile power supplies in the above embodiments, an embodiment of the present application can be implemented by providing a storage medium. A computer program is stored on the storage medium; when the computer program is executed by a processor, it implements any one of the methods for managing a charging cabinet for shared mobile power supplies in the above embodiments.

[0069] In one embodiment, Figure 2 is a schematic internal structure diagram of an electronic device according to an embodiment of the present application. As Figure 2 shown, an electronic device is provided. The electronic device may be a server, and its internal structure diagram may be as Figure 2As shown. The electronic device includes a processor, a network interface, an internal memory, and a non-volatile memory connected through an internal bus. Among them, the non-volatile memory stores an operating system, a computer program, and a database. The processor is used to provide computing and control capabilities. The network interface is used to communicate with external terminals through a network connection. The internal memory is used to provide an environment for the operation of the operating system and the computer program. The computer program, when executed by the processor, implements a method for managing a charging cabinet of a shared mobile power supply. The database is used to store data.

[0070] Those skilled in the art can understand that Figure 2 the structure shown in is only a block diagram of some structures related to the solution of the present application, and does not constitute a limitation on the electronic device to which the solution of the present application is applied. The specific electronic device may include more or fewer components than those shown in the figure, or combine some components, or have different component arrangements.

[0071] Those of ordinary skill in the art can understand that all or part of the processes in the above-described method embodiments can be completed by instructing relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it may include the processes of the above-described method embodiments. Among them, any reference to a memory, storage, database, or other medium used in the various embodiments provided in the present application may include non-volatile and / or volatile memories. Non-volatile memory may include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory may include random access memory (RAM) or an external cache memory. By way of illustration and not limitation, RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0072] Those skilled in the art should understand that the technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered to be within the scope described in this specification.

[0073] The above-described embodiments merely represent several implementation manners of the present application. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several modifications and improvements can still be made, and these all fall within the protection scope of the present application. Therefore, the protection scope of the patent of the present application shall be subject to the appended claims.

Claims

1. A method for managing a charging cabinet for a shared mobile power source, characterized in that: The method comprises: In the case where there is no external power supply to the charging cabinet, triggering the shared mobile power supply managed internally by the charging cabinet to perform a first switching action; After the first switching action is performed, the working mode of the shared mobile power supply is switched to the standby mode, wherein the shared mobile power supply in the standby mode supplies power to the charging cabinet.

2. The method according to claim 1, characterized in that Triggering the shared mobile power source managed internally by the charging cabinet to perform a first switching action includes: If the shared mobile power supply managed internally by the charging cabinet does not receive the first instruction sent by the charging cabinet within a first preset time period, the shared mobile power supply managed internally by the charging cabinet is triggered to perform a first switching action, wherein, when the charging cabinet is turned on and running, the charging cabinet periodically sends the first instruction to the shared mobile power supply in the charging cabinet.

3. The method according to claim 2, characterized in that Triggering the shared mobile power source managed internally by the charging cabinet to perform a first switching action further includes: All shared mobile power sources managed within the charging cabinet are triggered to perform a first switching action.

4. The method according to claim 3, characterized in that After the shared mobile power supply in the standby mode supplies power to the charging cabinet, the method includes: The charging cabinet automatically powers on, and periodically sends a first instruction to a shared mobile power source managed within the charging cabinet, and receives a first response returned by the shared mobile power source; Based on the first reply and the power demand information of the charging cabinet, sending a third instruction to the shared mobile power supply that does not need to be in the standby mode, so as to trigger the shared mobile power supply to perform a third switching action; After the third switching action is performed, the working mode of the shared mobile power supply is switched to a locked mode, wherein the shared mobile power supply in the locked mode can be rented and used by the user by scanning a code.

5. The method according to claim 1, characterized in that Triggering the shared mobile power source managed internally by the charging cabinet to perform a first switching action includes: If the charging cabinet detects a power outage, it provides instantaneous power supply through a built-in supercapacitor to determine the number of shared mobile power supplies that need to perform the first switching action, and trigger the shared mobile power supplies of the execution number to perform the first switching action.

6. The method according to claim 5, characterized in that After the shared mobile power supply in the standby mode supplies power to the charging cabinet, the method includes: The charging cabinet automatically powers on, and when a user scans a code to rent a shared mobile power source managed by the charging cabinet, sends a second instruction to the shared mobile power source in the lock mode to trigger the shared mobile power source to perform a second switching action; After the second switching action is performed, the working mode of the shared mobile power supply is switched to the activation mode, wherein the shared mobile power supply in the activation mode pops out of the charging cabinet for use by the user.

7. The method according to claim 4 or 6, characterized in that: The automatic startup of the charging cabinet includes: The charging cabinet automatically turns on. If no user rents a shared mobile power supply within a second preset time period, the charging cabinet enters a sleep mode. The charging cabinet monitors the surrounding environment of the charging cabinet in real time through a built-in detection sensor, and automatically wakes up the charging cabinet in sleep mode when someone approaches the charging cabinet.

8. The method according to claim 1, characterized in that After the shared mobile power supply in the standby mode supplies power to the charging cabinet, the method includes: The shared mobile power source in the locking mode in the charging cabinet is charged by the solar power generation panel outside the charging cabinet.

9. The method according to claim 1, characterized in that: The shared mobile power supply in the standby mode supplies power to the charging cabinet, including: The shared mobile power supply in the standby mode is connected to the POGO PIN interface of the charging cabinet and is in a power output state, and the shared mobile power supply supplies power to the charging cabinet through the POGO PIN interface.

10. A charging cabinet for a shared mobile power source, characterized in that: The charging cabinet is used to implement the method described in any one of claims 1 to 9, and the charging cabinet is powered by an internally managed shared mobile power supply.