Digital power supply dynamic monitoring display method and system
By integrating relevant modules in the mobile power supply and connecting to the cloud server, intelligent monitoring and charging management of external devices are realized, solving the problem of low intelligence in existing mobile power supply and improving functions and user experience.
Patent Information
- Application Number
- CN202510590388.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing mobile power supply has shortcomings in terms of intelligence and functions, and cannot meet users' needs for intelligent load identification, health status detection and load matching intelligent charging.
By integrating the processor module, power charging module, discharge detection module and switching unit in the mobile power supply, connecting external devices to detect the power, first charging, discharge detection and data collection, and then uploading the data to the cloud server for analysis, matching the charging strategy and feedback to the mobile power supply, and updating the charging status in real time.
It significantly improves the intelligence of the mobile power supply, can dynamically monitor and manage the health status of external equipment batteries, and intelligently charge according to the status, improving the user experience, and at the same time, the mobile power supply hardware changes are small, almost no affecting its weight and volume, retaining portable performance.
Smart Images

Figure CN120103174A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of portable power supply display technology, and more specifically to a digital power supply dynamic monitoring and display method and system. Background Art
[0002] With the rise and popularity of portable power sources such as mobile power supplies, people's functional requirements for the power supply itself are also increasing. Due to the limitations of their own chip capabilities, traditional mobile power supplies usually only have energy storage power supply and simple power display functions (usually in the form of multiple display lights), which are difficult to meet people's needs for intelligent load identification, health status detection, and load matching intelligent charging. A feature-rich and low-cost digital power dynamic monitoring and display method and system is needed. Summary of the invention
[0003] The technical problem to be solved by the present invention is to provide a digital power supply dynamic monitoring and display method and a digital power supply dynamic monitoring and display system in view of the above-mentioned defects of the prior art.
[0004] The technical solution adopted by the present invention to solve the technical problem is: A digital power supply dynamic monitoring and display method is constructed, wherein the method comprises the following steps: After the mobile power supply is connected to the external device, the current power level of the battery of the external device is detected. If the power level is lower than the first set value, the battery of the external device is charged to reach the first set value and the next step is entered. Otherwise, the next step is entered directly. The mobile power supply switches the external device battery to be connected to the discharge detection module, discharges the external device battery, and collects discharge information. When the power level of the external device battery reaches a second set value, the discharge is stopped and the collected discharge information is uploaded to the cloud server; The cloud server analyzes the health status data of the external device battery obtained by the discharge information, matches the charging strategy according to the health status data, feeds back the charging strategy to the mobile power supply, and sends the health status data to the mobile terminal device of the user associated with the external device; The mobile power supply charges the battery of the external device according to the charging strategy and uploads the charging status to the cloud server in real time. The cloud server feeds back the charging status to the user's mobile device for dynamic status display.
[0005] The digital power supply dynamic monitoring and display method of the present invention further comprises: The user's mobile device registers an account on the cloud server, and associates and binds the unique identification information of the mobile device and the external device under the registered account; After the mobile power supply is connected to the external device, the unique identification information of the external device is collected, and the unique identification information is uploaded at the same time as the collected discharge information is uploaded; The cloud server performs an account query based on the unique identification information to obtain the contact information of the user's mobile device associated with the external device.
[0006] In the digital power dynamic monitoring and display method of the present invention, after the mobile power supply is connected to an external device, detecting the current power level of the battery of the external device includes: After the mobile power supply is connected to the external device through the data cable, it handshakes through the USBPD protocol and sends a detection message to the external device; After receiving the feedback message information fed back by the external device, parse it and obtain the battery type and power information.
[0007] The digital power dynamic monitoring and display method of the present invention, wherein the mobile power supply switches the external device battery to be connected to the discharge detection module, comprises: The mobile power supply is internally configured with a processor module, a power charging module, a discharge detection module and a switching unit; The power charging module is connected to the energy storage battery of the mobile power source for power charging management; The discharge detection module is connected to a load and is used for power supply discharge management; The switching unit is controlled by the processor module to switch between the power charging module and the discharge detection module.
[0008] In the digital power dynamic monitoring and display method of the present invention, the cloud server analyzes the discharge information to obtain the health status data of the external device battery, and matches the charging strategy according to the health status data, including: The cloud server is equipped with a health status analysis module to analyze battery discharge information; The cloud server is configured with a database, which stores mapping data of multiple groups of battery health status and charging strategies. The corresponding charging strategy can be obtained according to the battery health status.
[0009] The digital power supply dynamic monitoring and display method of the present invention further comprises: Before the cloud server feeds back the charging strategy to the mobile power supply, it first sends it to the user's mobile device for confirmation, and confirms or changes the charging strategy based on the feedback from the user's mobile device.
[0010] In the digital power dynamic monitoring and display method of the present invention, a wireless module is configured inside the mobile power supply to communicate with a cloud server; The wireless module is awakened after the external device is connected, and enters a dormant state after the external device is disconnected.
[0011] A digital power dynamic monitoring and display system, used to implement the digital power dynamic monitoring and display method as described above, wherein the system includes a mobile power supply and a cloud server; After the mobile power source is connected to the external device, the current power of the battery of the external device is detected. If the power is lower than the first set value, the battery of the external device is charged to reach the first set value and the next step is entered; otherwise, the next step is entered directly; The mobile power source switches the external device battery to be connected to the discharge detection module, discharges the external device battery, and collects discharge information. When the power level of the external device battery reaches a second set value, the discharge is stopped and the collected discharge information is uploaded to the cloud server; The cloud server analyzes the discharge information to obtain the health status data of the battery of the external device, matches the charging strategy according to the health status data, feeds back the charging strategy to the mobile power supply, and sends the health status data to the mobile terminal device of the user associated with the external device; The mobile power source charges the battery of the external device according to the charging strategy, and uploads the charging status to the cloud server in real time. The cloud server feeds back the charging status to the user's mobile terminal device for dynamic status display.
[0012] The beneficial effect of the present invention is that the application of the method and technique of the present application can effectively solve the technical problem that the current mobile power supply has no display capability and low intelligence level. In combination with a cloud server, it can not only greatly improve the intelligence level of the mobile power supply, but also make very small changes to the hardware of the mobile power supply, hardly increase its weight and volume, and retain its portability. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the present invention will be further described below in conjunction with the accompanying drawings and embodiments. The drawings described below are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative work: Figure 1 This is a flow chart of a digital power supply dynamic monitoring and display method according to a preferred embodiment of the present invention; Figure 2 It is a principle block diagram of a digital power dynamic monitoring and display system according to a preferred embodiment of the present invention. DETAILED DESCRIPTION
[0014] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the following will be described clearly and completely in combination with the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are partial embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work belong to the protection scope of the present invention.
[0015] A digital power dynamic monitoring and display method according to a preferred embodiment of the present invention is as follows: Figure 1 As shown, the following steps are included: S01: After the mobile power supply is connected to the external device, the current power of the battery of the external device is detected. If the power is lower than the first set value, the battery of the external device is charged to reach the first set value and the next step is entered; otherwise, the next step is entered directly; Detecting the current battery power of an external device includes: After the mobile power supply is connected to the external device through the data cable, it handshakes through the USBPD protocol and sends a detection message to the external device; After receiving the feedback message information from the external device, analyze it to obtain the battery type and power information; S02: the mobile power supply switches the external device battery to be connected to the discharge detection module, discharges the external device battery, and collects discharge information. When the power of the external device battery reaches a second set value, the discharge is stopped and the collected discharge information is uploaded to the cloud server; The mobile power supply is internally configured with a processor module, a power charging module, a discharge detection module and a switching unit; The power charging module is connected to the energy storage battery of the mobile power supply for power charging management; The discharge detection module is connected to a load and is used for power supply discharge management; The switching unit is controlled by the processor module to switch between the power charging module and the discharge detection module; The mobile power bank is also equipped with a wireless module to communicate with the cloud server; The wireless module is awakened when an external device is connected and enters a dormant state when the external device is disconnected.
[0016] S03: The cloud server analyzes the health status data of the battery of the external device obtained by the discharge information, matches the charging strategy according to the health status data, feeds back the charging strategy to the mobile power supply, and sends the health status data to the mobile terminal device of the user associated with the external device; The cloud server is equipped with a health status analysis module to analyze battery discharge information; The cloud server is equipped with a database, which stores mapping data of multiple groups of battery health status and charging strategies. The corresponding charging strategy can be obtained according to the battery health status; In addition, before the cloud server feeds back the charging strategy to the mobile power supply, it is first sent to the user's mobile device for confirmation, and the charging strategy is confirmed or changed according to the result fed back by the user's mobile device; S04: The mobile power supply charges the battery of the external device according to the charging strategy, and uploads the charging status to the cloud server in real time. The cloud server feeds back the charging status to the user's mobile device for dynamic status display; The application of the method and approach of the present application can effectively solve the technical problems that the current mobile power supply has no display capability and low intelligence level. Combined with the cloud server, it can not only greatly improve the intelligence level of the mobile power supply, but also make very small changes to the hardware of the mobile power supply, hardly increase its weight and volume, and retain its portability.
[0017] Preferably, the method further comprises: The user's mobile device registers an account on the cloud server, and associates and binds the unique identification information of the mobile device and the external device under the registered account; After the mobile power supply is connected to the external device, the unique identification information of the external device is collected, and the unique identification information is uploaded at the same time as the collected discharge information is uploaded; The cloud server performs an account query based on the unique identification information to obtain the contact information of the user's mobile device associated with the external device; In this way, the information security of the connected devices can be well guaranteed, and information leakage is less likely to occur.
[0018] A digital power supply dynamic monitoring and display system is used to implement the digital power supply dynamic monitoring and display method as described above. Figure 2 As shown, the system includes a mobile power supply 10 and a cloud server 11; After the mobile power supply 10 is connected to the external device 12, the current power level of the battery of the external device is detected. If the power level is lower than the first set value, the battery of the external device is charged to reach the first set value and the next step is entered. Otherwise, the next step is entered directly. The mobile power supply 10 switches the external device battery to be connected to the discharge detection module (the mobile power supply 10 is internally configured with a processor module 100, a power charging module 101, a discharge detection module 102, a switching unit 103 and a wireless module 104), discharges the external device battery, and collects discharge information. When the power level of the external device battery reaches a second set value, the discharge is stopped and the collected discharge information is uploaded to the cloud server 11 (the cloud server is configured with a health status analysis module 110 and a database 111); The cloud server 11 analyzes the health status data of the external device battery obtained by the discharge information, matches the charging strategy according to the health status data, feeds back the charging strategy to the mobile power supply, and sends the health status data to the mobile terminal device 13 of the user associated with the external device; The mobile power supply 10 charges the battery of the external device according to the charging strategy, and uploads the charging status to the cloud server in real time. The cloud server feeds back the charging status to the user's mobile device for dynamic status display; The application of the system of the present application can effectively solve the technical problems that the current mobile power supply has no display capability and low intelligence level. Combined with the cloud server, it can not only greatly improve the intelligence level of the mobile power supply, but also make very small changes to the hardware of the mobile power supply, and almost do not increase its weight and volume, thereby retaining its portability.
[0019] It should be understood that those skilled in the art can make improvements or changes based on the above description, and all these improvements and changes should fall within the scope of protection of the appended claims of the present invention.
Claims
1. A digital power supply dynamic monitoring and display method, characterized in that: The method comprises the following steps: After the mobile power supply is connected to the external device, the current power level of the battery of the external device is detected. If the power level is lower than the first set value, the battery of the external device is charged to reach the first set value and the next step is entered. Otherwise, the next step is entered directly. The mobile power supply switches the external device battery to be connected to the discharge detection module, discharges the external device battery, and collects discharge information. When the power level of the external device battery reaches a second set value, the discharge is stopped and the collected discharge information is uploaded to the cloud server; The cloud server analyzes the health status data of the external device battery obtained by the discharge information, matches the charging strategy according to the health status data, feeds back the charging strategy to the mobile power supply, and sends the health status data to the mobile terminal device of the user associated with the external device; The mobile power supply charges the battery of the external device according to the charging strategy and uploads the charging status to the cloud server in real time. The cloud server feeds back the charging status to the user's mobile device for dynamic status display.
2. The digital power dynamic monitoring and display method according to claim 1, characterized in that: The method further comprises: The user's mobile device registers an account on the cloud server, and associates and binds the unique identification information of the mobile device and the external device under the registered account; After the mobile power supply is connected to the external device, the unique identification information of the external device is collected, and the unique identification information is uploaded at the same time as the collected discharge information is uploaded; The cloud server performs an account query based on the unique identification information to obtain the contact information of the user's mobile device associated with the external device.
3. The digital power dynamic monitoring and display method according to claim 1, characterized in that: After the mobile power supply is connected to the external device, detecting the current power level of the battery of the external device includes: After the mobile power supply is connected to the external device through the data cable, it handshakes through the USBPD protocol and sends a detection message to the external device; After receiving the feedback message information fed back by the external device, parse it and obtain the battery type and power information.
4. The digital power dynamic monitoring and display method according to claim 1, characterized in that: The mobile power supply switches the external device battery to be connected to the discharge detection module, comprising: The mobile power supply is internally configured with a processor module, a power charging module, a discharge detection module and a switching unit; The power charging module is connected to the energy storage battery of the mobile power source for power charging management; The discharge detection module is connected to a load and is used for power supply discharge management; The switching unit is controlled by the processor module to switch between the power charging module and the discharge detection module.
5. The digital power dynamic monitoring and display method according to claim 1, characterized in that: The cloud server analyzes the discharge information to obtain the health status data of the external device battery, and matches the charging strategy according to the health status data, including: The cloud server is equipped with a health status analysis module to analyze battery discharge information; The cloud server is configured with a database, which stores mapping data between the health status of multiple groups of batteries and charging strategies. The corresponding charging strategy can be obtained according to the health status of the battery.
6. The digital power dynamic monitoring and display method according to claim 5, characterized in that: The method further comprises: Before the cloud server feeds back the charging strategy to the mobile power supply, it first sends it to the user's mobile device for confirmation, and confirms or changes the charging strategy based on the feedback from the user's mobile device.
7. The digital power dynamic monitoring and display method according to claim 1, characterized in that: The mobile power bank is equipped with a wireless module to communicate with the cloud server; The wireless module is awakened after the external device is connected, and enters a dormant state after the external device is disconnected.
8. A digital power dynamic monitoring and display system, used to implement the digital power dynamic monitoring and display method according to any one of claims 1 to 7, characterized in that: The system includes a mobile power source and a cloud server; After the mobile power source is connected to the external device, the current power of the battery of the external device is detected. If the power is lower than the first set value, the battery of the external device is charged to reach the first set value and the next step is entered; otherwise, the next step is entered directly; The mobile power source switches the external device battery to be connected to the discharge detection module, discharges the external device battery, and collects discharge information. When the power level of the external device battery reaches a second set value, the discharge is stopped and the collected discharge information is uploaded to the cloud server; The cloud server analyzes the discharge information to obtain the health status data of the battery of the external device, matches the charging strategy according to the health status data, feeds back the charging strategy to the mobile power supply, and sends the health status data to the mobile terminal device of the user associated with the external device; The mobile power source charges the battery of the external device according to the charging strategy, and uploads the charging status to the cloud server in real time. The cloud server feeds back the charging status to the user's mobile terminal device for dynamic status display.
Citation Information
Patent Citations
Portable power source
CN103795121A
Battery health state detection method and system and computer readable storage medium
CN110244238A
Power management method and device, chip and storage medium
CN115754779A
Charging control method for mobile power supply
CN116667497A
Equipment control method and system applied to charging of power adapter
CN118868327A