Outdoor energy storage system information display method and related device

Through wireless network connection and encrypted transmission technology, the problem of insufficient intelligent experience of outdoor energy storage equipment is solved, and the status information of energy storage equipment is displayed on mobile devices is realized, improving user experience and security.

CN120300968APending Publication Date: 2025-07-11SHENZHEN FENDA TECH CO LTD
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Patent Information

Application Number
CN202510291984.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

Existing outdoor energy storage equipment lacks an intelligent experience, and users cannot understand the various status information of the equipment through mobile devices.

Method used

Connect energy storage devices and mobile devices through wireless networks, use encrypted transmission technology to display status information in preset templates of mobile devices, supports customized arrangement and environmental protection concept display, and uses Room+LiveData+ViewModel architecture to improve security and stability.

Benefits of technology

It enables users to instantly understand the status information of energy storage devices through mobile devices, improves user experience and security, and supports personalized display and environmental protection publicity.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention is suitable for the technical field of data display, and provides an outdoor energy storage system information display method and a related device, so that a user can know various state information of energy storage equipment through mobile terminal equipment; the information display method for the outdoor energy storage system mainly comprises the steps that energy storage equipment is connected with mobile terminal equipment through a wireless network; the energy storage device encrypts and transmits the acquired state information of the preset interface to the mobile device through a wireless network; the mobile device correspondingly fills a preset template with the state information to obtain display data; and when the mobile device is in a state of opening the display interface corresponding to the preset template, updating the display data on the display interface.
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Description

Technical Field

[0001] This application belongs to the technical field of data display, and particularly relates to a method and related device for displaying information of an outdoor energy storage system. Background Art

[0002] Energy storage devices for outdoor use are essential power supply devices for scenarios such as camping, emergency, and exploration. Energy storage devices in the prior art usually support fast charging from the mains and / or solar charging, and display their own battery levels through their own display screens or the number of lamp beads, and provide AC alternating current output, DC direct current output, etc. However, the energy storage devices in the prior art lack an intelligent experience and cannot enable users to understand various status information of the energy storage devices through mobile terminal devices (such as mobile phones, tablets, etc.). Summary of the Invention

[0003] The purpose of this application is to provide a method and related device for displaying information of an outdoor energy storage system, aiming to enable users to understand various status information of the energy storage device through a mobile terminal device.

[0004] In a first aspect, this application provides a method for displaying information of an outdoor energy storage system, which is applied to an outdoor energy storage system. The outdoor energy storage system includes: an energy storage device, a mobile terminal device, including:

[0005] The energy storage device is connected to the mobile terminal device through a wireless network;

[0006] The energy storage device encrypts and transmits the status information obtained from a preset interface to the mobile device through the wireless network;

[0007] The mobile device fills in the status information correspondingly in a preset template to obtain display data;

[0008] When the mobile device is in the state of opening the display interface corresponding to the preset template, the display data is updated on the display interface.

[0009] Optionally, the preset interface includes: a plurality of charging interfaces; at least two or more different types of charging interfaces are included in the plurality of charging interfaces;

[0010] The energy storage device monitors and records the charging status data of each charging interface. The charging status data includes: the connection status, charging current, charging voltage, and charging duration of each charging interface;

[0011] The energy storage device summarizes the charging status data of each charging interface to obtain the charging status information of the plurality of charging interfaces. The charging status information is a part of the status information.

[0012] Optionally, the preset interface includes: a plurality of power transmission interfaces; at least two or more different types of power transmission interfaces are included in the plurality of power transmission interfaces;

[0013] The energy storage device monitors and records the power transmission status data of each power transmission interface, and the power transmission status data includes: the connection status, power transmission current, power transmission voltage, and power transmission duration of each power transmission interface;

[0014] The energy storage device summarizes the power transmission status data of each power transmission interface to obtain the power transmission status information of the plurality of power transmission interfaces, and the power transmission status information is a part of the status information.

[0015] Optionally, the preset interface includes: an environmental attitude data acquisition interface; the environmental attitude data acquisition interface includes: a temperature sensor data acquisition interface, a humidity sensor data acquisition interface, and a gyroscope sensor data acquisition interface;

[0016] The energy storage device monitors and records the temperature status data of its environment and itself through the temperature sensor data acquisition interface, and the temperature status data includes: the ambient temperature, the energy storage battery temperature, the charging interface temperature, and the power transmission interface temperature;

[0017] The energy storage device monitors and records the humidity status data of its environment and itself through the temperature sensor data acquisition interface, and the humidity status data includes: the ambient humidity, the energy storage battery humidity, the charging interface humidity, and the power transmission interface humidity;

[0018] The energy storage device monitors and records its own attitude data through the gyroscope sensor data acquisition interface, and infers the placement attitude of the energy storage device according to the own attitude data;

[0019] The energy storage device summarizes the temperature status data, the humidity status data, and the placement attitude to obtain environmental attitude information, and the environmental attitude information is a part of the status information.

[0020] Optionally, the wireless connection between the energy storage device and the mobile device includes:

[0021] The mobile device obtains the Bluetooth communication address of the energy storage device by identifying the identity QR code of the energy storage device;

[0022] The mobile device establishes a Bluetooth communication connection with the energy storage device through the Bluetooth communication address.

[0023] Optionally, the method further includes:

[0024] The mobile device calculates the equivalent reduced carbon emissions based on the total output power of all power transmission interfaces;

[0025] When the mobile device is in the state of opening the display interface, update and display the carbon emissions.

[0026] Optionally, the method further includes:

[0027] When the mobile device is in the state of opening the display interface, support custom arrangement of various display data on the display interface and save it as a personalized display interface template

[0028] In a second aspect, the present application provides an outdoor energy storage system, including: an energy storage device, a mobile device, including:

[0029] The energy storage device is connected to the mobile device through a wireless network;

[0030] The energy storage device encrypts and transmits the status information obtained from the preset interface to the mobile device through the wireless network;

[0031] The mobile device fills in the status information correspondingly in the preset template to obtain display data;

[0032] When the mobile device is in the state of opening the display interface corresponding to the preset template, update the display data on the display interface.

[0033] Optionally, the preset interface includes: a plurality of charging interfaces; at least two or more different types of charging interfaces are included in the plurality of charging interfaces;

[0034] The energy storage device monitors and records the charging status data of each charging interface, and the charging status data includes: the connection status, charging current, charging voltage, and charging duration of each charging interface;

[0035] The energy storage device summarizes the charging status data of each charging interface to obtain the charging status information of the plurality of charging interfaces, and the charging status information is a part of the status information.

[0036] Optionally, the preset interface includes: a plurality of power transmission interfaces; at least two or more different types of power transmission interfaces are included in the plurality of power transmission interfaces;

[0037] The energy storage device monitors and records the power transmission status data of each power transmission interface, and the power transmission status data includes: the connection status, power transmission current, power transmission voltage, and power transmission duration of each power transmission interface;

[0038] The energy storage device aggregates the power transmission status data of each power transmission interface to obtain the power transmission status information of multiple power transmission interfaces, and the power transmission status information is a part of the status information.

[0039] Optionally, the preset interface includes: an environmental attitude data acquisition interface; the environmental attitude data acquisition interface includes: a temperature sensor data acquisition interface, a humidity sensor data acquisition interface, and a gyroscope sensor data acquisition interface;

[0040] The energy storage device monitors and records the temperature status data of its environment and itself through the temperature sensor data acquisition interface, and the temperature status data includes: ambient temperature, energy storage battery temperature, charging interface temperature, and power transmission interface temperature;

[0041] The energy storage device monitors and records the humidity status data of its environment and itself through the humidity sensor data acquisition interface, and the humidity status data includes: ambient humidity, energy storage battery humidity, charging interface humidity, and power transmission interface humidity;

[0042] The energy storage device monitors and records its own attitude data through the gyroscope sensor data acquisition interface, and infers the placement attitude of the energy storage device according to the own attitude data;

[0043] The energy storage device aggregates the temperature status data, the humidity status data, and the placement attitude to obtain environmental attitude information, and the environmental attitude information is a part of the status information.

[0044] Optionally, the connection between the energy storage device and the mobile device through a wireless network includes:

[0045] The mobile device obtains the Bluetooth communication address of the energy storage device by identifying the identity QR code of the energy storage device;

[0046] The mobile device establishes a Bluetooth communication connection with the energy storage device through the Bluetooth communication address.

[0047] Optionally, the outdoor energy storage system further includes:

[0048] The mobile device calculates the equivalent reduced carbon emissions based on the total output power output by all power transmission interfaces;

[0049] When the mobile device is in the state of opening the display interface, the carbon emissions are updated and displayed.

[0050] Optionally, the outdoor energy storage system further includes:

[0051] When the mobile device is in the state of opening the display interface, it supports custom arranging various display data of the display interface and saving them as a personalized display interface template.

[0052] In a third aspect, the present application provides a computer device, including:

[0053] A processor, a memory, a bus, an input / output interface, and a network interface;

[0054] The processor is connected to the memory, the input / output interface, and the network interface through the bus;

[0055] The memory stores a program;

[0056] When the processor executes the program stored in the memory, it implements the outdoor energy storage system information display method described in any one of the foregoing first aspects.

[0057] In a fourth aspect, the present application provides a computer-readable storage medium. Instructions are stored in the computer storage medium. When the instructions are executed on a computer, the computer is caused to execute the outdoor energy storage system information display method described in any one of the foregoing first aspects.

[0058] In a fifth aspect, the present application provides a computer program product. When the computer program product is executed on a computer, the computer is caused to execute the outdoor energy storage system information display method described in any one of the first aspects. The computer program product of this embodiment is a software application, which can be developed based on systems such as Android, Harmony, and IOS.

[0059] From the above technical solutions, it can be seen that the embodiments of the present application have the following advantages:

[0060] The outdoor energy storage system information display method of the present application is applied to an outdoor energy storage system, where the outdoor energy storage system includes: an energy storage device and a mobile device; the energy storage device is connected to the mobile device through a wireless network; the energy storage device encrypts and transmits the status information obtained from a preset interface to the mobile device through the wireless network; the mobile device fills the status information correspondingly in a preset template to obtain display data; when the mobile device is in the state of opening the display interface corresponding to the preset template, the display data is updated on the display interface, so that the user can understand various status information of the energy storage device through the mobile device. BRIEF DESCRIPTION OF THE DRAWINGS

[0061] Figure 1 It is a schematic flowchart of an embodiment of the outdoor energy storage system information display method of the present application;

[0062] Figure 2Schematic flowchart of another embodiment of the method for displaying information of the outdoor energy storage system of the present application;

[0063] Figure 3 Schematic structural diagram of an embodiment of the outdoor energy storage system of the present application;

[0064] Figure 4 Schematic structural diagram of an embodiment of the computer device of the present application;

[0065] Figure 5 Schematic diagram of the effect of an embodiment of the display interface state of the mobile device of the present application. Detailed implementation manners

[0066] In order to make the purpose, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the 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.

[0067] It should be noted that the energy storage device in this embodiment mainly refers to a portable outdoor energy storage device, which is an essential power supply device for outdoor scenarios such as camping, emergency, and exploration. The energy storage devices in the prior art usually support fast charging from the mains and / or solar charging, and display their own power through their own display screens or the number of light beads, and provide AC alternating current output, DC direct current output, etc. However, the energy storage devices in the prior art lack an intelligent experience and cannot enable users to understand various state information of the energy storage device through a mobile device (such as a mobile phone, a tablet computer, etc.).

[0068] Therefore, please refer to Figure 1 , this embodiment provides a method for displaying information of an outdoor energy storage system, which is applied to the outdoor energy storage system. The outdoor energy storage system includes: an energy storage device and a mobile device; the method includes:

[0069] 101. The energy storage device and the mobile device usually establish a communication connection through a wireless network.

[0070] In this embodiment, the energy storage device is provided with a wireless communication module, which can be a WiFi module, a Bluetooth module, etc., preferably a Bluetooth module, to meet the low-power communication requirements.

[0071] 102. The energy storage device encrypts and transmits the status information obtained from the preset interface to the mobile device through the wireless network.

[0072] It should be noted that, to avoid the leakage of data information of the energy storage device, in this embodiment, it is required that the status information transmitted from the energy storage device to the mobile device needs to be encrypted to reduce the risk of data information leakage. For example, encryption algorithms such as symmetric encryption, symmetric encryption, and hash functions are used to encrypt the communication data, so that the mobile device can safely receive various status information of the energy storage device.

[0073] 103. The mobile device fills the status information in the corresponding positions in the preset template to obtain the display data.

[0074] It can be understood that, in order for the mobile device to quickly and accurately display the relevant status information of the energy storage device on the display interface, a preset template can be pre-set in the mobile device. The preset template pre-defines the position area, color, font size and style, etc. for displaying different status data on the display interface. In this step, the status information obtained in step 102 can be directly filled in the corresponding position area in the preset template to obtain the display data.

[0075] 104. When the mobile device is in the state of opening the display interface corresponding to the preset template, update the display data on the display interface.

[0076] It can be understood that, in order to meet the user's need to obtain information about the energy storage device while saving the power consumption of the mobile device as much as possible, in this embodiment, the display data can be updated on the display interface only when the mobile device is in the state of opening the display interface corresponding to the preset template, that is, the mobile device will update the display data only when the display interface is in the open state.

[0077] In a possible embodiment, the following measures can also be adopted: when the mobile device is in the state of opening the display interface, the mobile device increases the frequency of obtaining the status information from the energy storage device; or, when the energy storage device learns that the mobile device is in the state of opening the display interface, the energy storage device shortens the time interval for transmitting the status information to the mobile device, which can realize a more timely refresh of the acquisition of the status information of the energy storage device; when the mobile device is not in the state of opening the display interface, the mobile device obtains the status information from the energy storage device at a preset frequency; or, when the energy storage device learns that the mobile device is not in the state of opening the display interface, the energy storage device transmits the status information to the mobile device at a preset time interval, which can save the power consumption of the energy storage device and the mobile device according to the preset rules.

[0078] Please refer to Figure 2, Another embodiment of the outdoor energy storage system information display applied to the outdoor energy storage system in this application. The outdoor energy storage system also includes: an energy storage device and a mobile device. The solution includes:

[0079] 201. The energy storage device establishes a wireless network connection with the mobile device.

[0080] The execution of this step is similar to step 101 in the foregoing Figure 1 embodiment, and the repeated part will not be elaborated here.

[0081] It should be emphasized that usually the mobile device obtains the Bluetooth communication address of the energy storage device by identifying the identity QR code of the energy storage device; then the mobile device establishes a Bluetooth communication connection with the energy storage device through the Bluetooth communication address. After the energy storage device establishes a Bluetooth communication connection with the mobile device, it will always maintain a heartbeat packet for keep-alive, unless the energy storage device and the mobile device are too far away to lose contact. However, as long as the energy storage device and the mobile device enter the communication range again, the energy storage device and the mobile device will automatically establish a communication connection again. Of course, in the embodiment of this application, the device list can also be obtained through the traditional Bluetooth signal scanning method and then paired by clicking the binding, which is not limited here.

[0082] 202. The energy storage device obtains the status information of its own various preset interfaces.

[0083] It can be understood that the preset interfaces of the energy storage device in this embodiment at least include: a plurality of charging interfaces; the plurality of charging interfaces at least include two or more different types of charging interfaces, such as a mains AC charging interface, a solar charging interface, etc.; the energy storage device monitors and records the charging status data of each charging interface, and the charging status data may include one or more of the connection status, charging current, charging voltage, and charging duration of each charging interface; the energy storage device summarizes the charging status data of each charging interface to obtain the charging status information of the plurality of charging interfaces, and the above charging status information is used as part of the status information. The preset interfaces of the energy storage device in this embodiment also at least include: a plurality of power transmission interfaces; the plurality of power transmission interfaces at least include two or more different types of power transmission interfaces, such as a USB power transmission interface, an AC mains power transmission interface, a lighting output interface, etc.; the energy storage device monitors and records the power transmission status data of each power transmission interface, and the power transmission status data includes one or more of the connection status, power transmission current, power transmission voltage, and power transmission duration of each power transmission interface; the energy storage device summarizes the power transmission status data of each power transmission interface to obtain the power transmission status information of the plurality of power transmission interfaces, and the above power transmission status information is used as part of the status information.

[0084] The preset interfaces of the energy storage device in this embodiment may further include: an environmental attitude data acquisition interface; the environmental attitude data acquisition interface at least includes: a temperature sensor data acquisition interface, a humidity sensor data acquisition interface, and a gyroscope sensor data acquisition interface; wherein the energy storage device monitors and records its environmental and its own temperature status data through the temperature sensor data acquisition interface, and the temperature status data includes one or more of the ambient temperature, the energy storage battery temperature, the charging interface temperature, and the power transmission interface temperature; the energy storage device monitors and records its environmental and its own humidity status data through the temperature sensor data acquisition interface, and the humidity status data includes one or more of the ambient humidity, the energy storage battery humidity, the charging interface humidity, and the power transmission interface humidity; the energy storage device monitors and records its own attitude data through the gyroscope sensor data acquisition interface, and infers the placement attitude of the energy storage device based on its own attitude data; the energy storage device summarizes the temperature status data, the humidity status data, and the placement attitude to obtain environmental attitude information, and the above environmental attitude information is used as part of the status information.

[0085] It should be noted that the energy storage device in this embodiment stores the relevant data of the above status information using the architecture of Room + LiveData + ViewModel. Room uses the SQLite database to store data and provides type-safe APIs, effectively preventing security vulnerabilities such as SQL injection. LiveData, as a data holding class in the observer pattern, realizes real-time data update and notification, avoids frequent data polling and manual refreshing, and improves data security and consistency. ViewModel, as a data holding class related to the interface, stores and manages interface-related data, and perceives the interface life cycle, avoiding memory leaks and data loss, and improving the security and stability of the application.

[0086] 203. The energy storage device sends the status information to the mobile device.

[0087] The execution of this step is similar to step 102 in the foregoing Figure 1 embodiment, and the repeated parts will not be elaborated here.

[0088] 204. The mobile device fills in the status information correspondingly in the preset template to obtain display data.

[0089] The execution of this step is similar to step 103 in the foregoing Figure 1 embodiment, and the repeated parts will not be elaborated here.

[0090] 205. When the mobile device is in the state of opening the display interface corresponding to the preset template, update the display data on the display interface.

[0091] The execution of this step is similar to the foregoing Figure 1Similar to step 104 in the embodiment, the repeated part will not be elaborated here.

[0092] In another embodiment, the display interface of the mobile device can also be provided with a display area for calculating and displaying carbon emissions related to the concept of environmental protection. That is, the mobile device calculates the equivalent reduced carbon emissions based on the total output power of all power transmission interfaces. The carbon emissions (in kilograms) = electricity consumption (in degrees) × carbon emission conversion coefficient for electricity. For example, the carbon emission conversion coefficient for electricity takes one of the preset values such as 0.785, 1.5, etc. When the mobile device is in the state of opening the display interface, the carbon emissions are updated and displayed, making the concept of environmental protection more deeply rooted in people's hearts and playing a role in promoting environmental protection.

[0093] In another embodiment, the display interface of the mobile device can also be provided with control buttons (virtual buttons or real physical buttons) for each of the above-mentioned power transmission interfaces and each charging interface. When the energy storage device receives a close instruction or an open instruction from the mobile device for a specified charging interface or a specified power transmission interface, the energy storage device closes the corresponding charging interface or the corresponding power transmission interface according to the close instruction, and the energy storage device starts the corresponding charging interface or the corresponding power transmission interface according to the open instruction.

[0094] In another embodiment, when the mobile device is in the state of opening the display interface, it can also support custom arrangement of various display data on the entire display interface, that is, the just-displayed data can be dragged and placed at various positions on the display interface and saved as a personalized display interface template to meet personalized display requirements.

[0095] In summary, this embodiment realizes wireless connection and communication between devices through the Bluetooth communication protocol, and displays the user interface and the status information data of the energy storage device through the display screen of the mobile device, so that the mobile device can be connected to the energy storage device through Bluetooth to control and display various preset interfaces of the energy storage device. By adopting advanced architecture components and security guarantee measures, such as Room, LiveData, and ViewModel, it not only improves the security and stability of the application program in the mobile device, but also makes the user interface operation of the application program more simple and intuitive, as shown in Figure 5 shown. Through these measures, we can effectively manage and display the data of the energy storage device and provide users with a convenient and safe control experience.

[0096] The above embodiment describes the method for displaying information of the outdoor energy storage system of the present application. Next, the outdoor energy storage system of the present application will be described. Please refer to Figure 3 , the outdoor energy storage system of the present application includes: an energy storage device and a mobile device. The embodiments include:

[0097] The energy storage device 301 is connected to the mobile device 302 through a wireless network;

[0098] The energy storage device 301 encrypts and transmits the status information obtained from the preset interface to the mobile device 302 through the wireless network;

[0099] The mobile device 302 fills in the status information correspondingly in the preset template to obtain display data;

[0100] When the mobile device 302 is in the state of opening the display interface corresponding to the preset template, the display data is updated on the display interface.

[0101] Optionally, the preset interface includes: a plurality of charging interfaces; at least two or more different types of charging interfaces are included in the plurality of charging interfaces;

[0102] The energy storage device 301 monitors and records the charging status data of each charging interface, and the charging status data includes: the connection status, charging current, charging voltage, and charging duration of each charging interface;

[0103] The energy storage device 301 summarizes the charging status data of each charging interface to obtain the charging status information of the plurality of charging interfaces, and the charging status information is a part of the status information.

[0104] Optionally, the preset interface includes: a plurality of power transmission interfaces; at least two or more different types of power transmission interfaces are included in the plurality of power transmission interfaces;

[0105] The energy storage device 301 monitors and records the power transmission status data of each power transmission interface, and the power transmission status data includes: the connection status, power transmission current, power transmission voltage, and power transmission duration of each power transmission interface;

[0106] The energy storage device 301 summarizes the power transmission status data of each power transmission interface to obtain the power transmission status information of the plurality of power transmission interfaces, and the power transmission status information is a part of the status information.

[0107] Optionally, the preset interface includes: an environmental attitude data acquisition interface; the environmental attitude data acquisition interface includes: a temperature sensor data acquisition interface, a humidity sensor data acquisition interface, and a gyroscope sensor data acquisition interface;

[0108] The energy storage device 301 monitors and records the temperature status data of its environment and itself through the temperature sensor data acquisition interface, and the temperature status data includes: the ambient temperature, the energy storage battery temperature, the charging interface temperature, and the power transmission interface temperature;

[0109] The energy storage device 301 monitors and records the humidity status data of its surrounding environment and itself through the temperature sensor data acquisition interface. The humidity status data includes: ambient humidity, energy storage battery humidity, charging interface humidity, and power transmission interface humidity;

[0110] The energy storage device 301 monitors and records its own attitude data through the gyroscope sensor data acquisition interface, and infers the placement attitude of the energy storage device based on the own attitude data;

[0111] The energy storage device 301 aggregates the temperature status data, the humidity status data, and the placement attitude to obtain environmental attitude information, which is a part of the status information.

[0112] Optionally, the connection between the energy storage device 301 and the mobile device 302 through a wireless network includes:

[0113] The mobile device 302 obtains the Bluetooth communication address of the energy storage device 301 by identifying the identity QR code of the energy storage device 301;

[0114] The mobile device 302 establishes a Bluetooth communication connection with the energy storage device through the Bluetooth communication address.

[0115] Optionally, the outdoor energy storage system further includes:

[0116] The mobile device 302 calculates the equivalent reduced carbon emissions based on the total output power output by all power transmission interfaces;

[0117] When the mobile device 302 is in the state of opening the display interface, the carbon emissions are updated and displayed.

[0118] Optionally, the outdoor energy storage system further includes:

[0119] When the mobile device 302 is in the state of opening the display interface, it supports custom arrangement of various display data on the display interface and saves it as a personalized display interface template.

[0120] The operations performed by the outdoor energy storage system in this embodiment are similar to those performed in the foregoing Figure 1 、 Figure 2 embodiments, and the repeated parts will not be described herein again.

[0121] Next, the computer device in the embodiments of the present application will be described. Please refer to Figure 4 . An embodiment of the computer device in the embodiments of the present application includes:

[0122] The computer device 400 may include one or more processors (central processing units, CPUs) 401 and a memory 402, and one or more applications or data may be stored in the memory 402. Among them, the memory 402 is volatile storage or persistent storage. The program stored in the memory 402 may include one or more modules, and each module may include a series of instruction operations on the computer device. Further, the processor 401 may be configured to communicate with the memory 402 and execute a series of instruction operations in the memory 402 on the computer device 400. The computer device 400 may further include: one or more network interfaces 403, one or more input / output interfaces 404, and / or one or more operating systems, such as HarmonyOS, Windows Server, Mac OS, Unix, Linux, FreeBSD, etc. The processor 401 may perform the operations performed in any of the foregoing Figures 1 to 2 embodiments shown, and details are not described herein again.

[0123] In several embodiments provided in the embodiments of the present application, those skilled in the art should understand that the disclosed systems, devices, and methods may be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the division of the unit is only a logical function division, and there may be other division methods in actual implementation. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Another point is that the displayed or discussed coupling or direct coupling or communication connection to each other may be through some interfaces, and the indirect coupling or communication connection of the device or unit may be in an electrical, mechanical, or other form.

[0124] In addition, in each embodiment of the present application, each functional unit can be integrated into a processing unit, can exist separately as individual physical units, or two or more units can be integrated into one unit. The above-mentioned integrated unit can be implemented in the form of hardware or in the form of a software functional unit. If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods in each embodiment of the present application. The aforementioned storage medium includes: various media such as USB flash drives, mobile hard disks, read-only memories (ROM), random access memories (RAM), magnetic disks, or optical discs that can store program codes.

[0125] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, or improvements made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An information display method for an outdoor energy storage system, characterized in that Applied to an outdoor energy storage system, the outdoor energy storage system includes: an energy storage device and a mobile device. The method includes: The energy storage device is connected to the mobile device through a wireless network; The energy storage device encrypts and transmits the status information obtained from a preset interface to the mobile device through the wireless network; The mobile device fills in the status information correspondingly in a preset template to obtain display data; When the mobile device is in the state of opening the display interface corresponding to the preset template, update the display data on the display interface.

2. The method for displaying information of the outdoor energy storage system according to claim 1, wherein, The preset interface includes: a plurality of charging interfaces; at least two or more different types of charging interfaces are included in the plurality of charging interfaces; The energy storage device monitors and records the charging status data of each charging interface. The charging status data includes: the connection status, charging current, charging voltage, and charging duration of each charging interface; The energy storage device summarizes the charging status data of each charging interface to obtain the charging status information of the plurality of charging interfaces. The charging status information is a part of the status information.

3. The method for displaying information of the outdoor energy storage system according to claim 1, wherein The preset interface includes: a plurality of power transmission interfaces; at least two or more different types of power transmission interfaces are included in the plurality of power transmission interfaces; The energy storage device monitors and records the power transmission status data of each power transmission interface. The power transmission status data includes: the connection status, power transmission current, power transmission voltage, and power transmission duration of each power transmission interface; The energy storage device summarizes the power transmission status data of each power transmission interface to obtain the power transmission status information of the plurality of power transmission interfaces. The power transmission status information is a part of the status information.

4. The method for displaying information of the outdoor energy storage system according to claim 1, wherein The preset interface includes: an environmental attitude data acquisition interface; the environmental attitude data acquisition interface includes: a temperature sensor data acquisition interface, a humidity sensor data acquisition interface, and a gyroscope sensor data acquisition interface; The energy storage device monitors and records the temperature status data of its environment and itself through the temperature sensor data acquisition interface. The temperature status data includes: the ambient temperature, the energy storage battery temperature, the charging interface temperature, and the power transmission interface temperature; The energy storage device monitors and records the humidity status data of its environment and itself through the temperature sensor data acquisition interface. The humidity status data includes: the ambient humidity, the energy storage battery humidity, the charging interface humidity, and the power transmission interface humidity; The energy storage device monitors and records its own attitude data through the gyroscope sensor data acquisition interface, and infers the placement attitude of the energy storage device according to the own attitude data; The energy storage device summarizes the temperature status data, the humidity status data, and the placement attitude to obtain environmental attitude information. The environmental attitude information is a part of the status information.

5. The method for displaying outdoor energy storage system information according to claim 1, wherein, The energy storage device is connected to the mobile device through a wireless network, including: The mobile device obtains the Bluetooth communication address of the energy storage device by identifying the identity QR code of the energy storage device; The mobile device establishes a Bluetooth communication connection with the energy storage device through the Bluetooth communication address.

6. The method for displaying outdoor energy storage system information according to claim 1, wherein The method further includes: The mobile device calculates the equivalent reduced carbon emissions based on the total output power of all power transmission interfaces; When the mobile device is in the state of opening the display interface, the carbon emissions are updated and displayed.

7. The method for displaying outdoor energy storage system information according to claim 1, wherein, The method further includes: When the mobile device is in the state of opening the display interface, it supports custom arrangement of various display data on the display interface and saves it as a personalized display interface template.

8. An outdoor energy storage system, characterized in that, Including: An energy storage device and a mobile device, including: The energy storage device is connected to the mobile device through a wireless network; The energy storage device encrypts and transmits the status information of the preset interface to the mobile device through the wireless network; The mobile device fills in the status information correspondingly in the preset template to obtain display data; When the mobile device is in the state of opening the display interface corresponding to the preset template, the display data is updated on the display interface.

9. A computer device, characterized in that, Including: A processor, a memory, a bus, an input / output interface, and a network interface; The processor is connected to the memory, the input / output interface, and the network interface through the bus; A program is stored in the memory; When the processor executes the program stored in the memory, it implements the outdoor energy storage system information display method described in any one of claims 1 to 7.

10. A computer program product, characterized in that, When the computer program product is executed on a computer, the computer is caused to execute the outdoor energy storage system information display method described in any one of claims 1 to 7.