Electronic student card intelligent charging warehouse management system and method

By designing an intelligent charging compartment system, the problems of inconvenient charging of electronic student ID cards and easy damage to the interface were solved, and centralized management and real-time monitoring were achieved, improving the reliability of the charging interface and management efficiency.

CN115549239BActive Publication Date: 2025-11-25读书郎教育科技有限公司
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Patent Information

Application Number
CN202211091068.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-07
Publication Date
2025-11-25
Estimated Expiration
2042-09-07

AI Technical Summary

Technical Problem

The existing charging method for electronic student ID cards is inconvenient to manage, and the charging interface is easily damaged, making it impossible to charge.

Method used

Design an intelligent charging bay system that includes a charging cabinet and a management terminal. The system employs a student ID recognition module, a charging module, and a control module. Data interaction and status management are achieved through a central control module and a communication module, supporting centralized charging and real-time monitoring.

Benefits of technology

It enables centralized charging management of electronic student ID cards, making it convenient for all users to know the charging status in a timely manner, and improving the reliability and management efficiency of the charging interface.

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Abstract

The application discloses an electronic student ID card intelligent charging cabinet management system and method, which comprises a charging cabinet and a management terminal. The charging cabinet comprises a cabinet body, and a plurality of charging cavities are arranged on the cabinet body. A student ID card recognition module, a charging module and a control module are arranged in each charging cavity. The total control module is used for controlling the control modules of the charging cavities. By using the application, the electronic student ID cards can be centrally charged, and the charging conditions of the electronic student ID cards can be known by all users through the terminal in time, so that the management of the electronic student ID cards is facilitated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic equipment, in particular to an electronic student ID card intelligent charging cabinet management system and method. BACKGROUND

[0002] A student ID card is a kind of certificate for student identity recognition and attendance. In order to facilitate the management of students, a school usually provides each student with a student ID card. With the development of electronic information, integrated electronic student ID cards have gradually replaced traditional paper certificate student ID cards. Electronic student ID cards are favored by parents and students due to their simple functions such as calling, positioning, and attendance.

[0003] Current electronic student ID cards are charged by a plug-in charging method similar to that of a mobile phone, which can only be charged individually. This charging method is inconvenient for the management of electronic student ID cards, and the charging interface is prone to damage, resulting in the inability of the electronic student ID card to be charged again. SUMMARY

[0004] In view of the deficiencies of the prior art, the present application aims to provide an electronic student ID card intelligent charging cabinet management system and method.

[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical solutions:

[0006] An electronic student ID card intelligent charging cabinet management system comprises a charging cabinet and a management terminal. The charging cabinet comprises a cabinet body, and a plurality of charging cavities are arranged on the cabinet body. A student ID card recognition module, a charging module, and a control module are arranged in each charging cavity. The charging module and the student ID card recognition module are connected to the control module. The student ID card recognition module is used to obtain corresponding student information when an electronic student ID card enters the charging cavity and transmit the information to the control module. The charging module is used to automatically start charging the electronic student ID card when it enters the charging cavity.

[0007] A general control module is arranged on the cabinet body. The general control module is connected with a communication module. The control modules of the charging cavities are connected with the general control module. The management terminal is pre-associated and bound with the charging cabinet. The associated and bound data is stored in a server. The associated and bound data comprises the unique identification of the management terminal, the unique identification of the bound charging cabinet, and the bound student information. After the association and binding, the general control module of the charging cabinet can utilize the communication module to perform data interaction with the management terminal through the server.

[0008] The total control module is configured to acquire and manage state information of each charging cavity through the control module of each charging cavity, the state information including serial numbers and quantities of charging cavities currently in use, serial numbers and quantities of charging cavities currently not in use; configured to acquire charging state information of the corresponding electronic student card through the control module of each charging cavity currently in use, the charging state information including current power of the electronic student card, whether the electronic student card is fully charged, duration of the current charging, and start time of the current charging; configured to acquire student information of the electronic student card from the control module of the corresponding charging cavity when the charging state information of the electronic student card meets a preset condition, and then send the charging state information, the student information, and a unique identifier of the charging cabinet to a server end, the server end sending the charging state information of the electronic student card to a corresponding management terminal for reminding according to corresponding associated binding data.

[0009] Further, the preset condition includes one or both of the current power of the electronic student card reaching a preset power threshold and the duration of the current charging of the electronic student card exceeding a preset duration threshold.

[0010] Further, the student card identification module includes one or more of an RFID module, an NFC module, a Bluetooth module, a wifi module, and a shooting module; one or more of the RFID module, the NFC module, the Bluetooth module, and the wifi module can be used to establish communication with the electronic student card and acquire student information stored in the electronic student card; the shooting module can be used to take an image of the electronic student card, and the control module can be used to acquire student information recorded on the surface of the electronic student card by using optical character recognition technology.

[0011] Further, the cabinet body is further provided with a touch display screen and an electronic student card search module, both of which are connected to the total control module; the electronic student card search module is configured to allow a user to input electronic student card search information, the total control module searches for a charging cavity where a corresponding electronic student card is located according to the electronic student card search information, and returns a serial number of the charging cavity to the touch display screen for display.

[0012] Further, the electronic student card search module is an identity authentication information input module, the total control module pre-stores a mapping data set of student information and identity authentication information, and the total control module can match corresponding student information and further match a serial number of a corresponding charging cavity according to identity authentication information acquired by the identity authentication information input module.

[0013] Further, the total control module is further used for actively detecting and sending the charging state information of the electronic student card being charged to the management terminal when reaching the preset detection time, the preset detection time including one or more of the school dismissal time, the lunch break time and the class dismissal time.

[0014] Further, the total control module is further used for actively sending the detection event trigger instruction to the charging cabinet by the server end when the management terminal actively sends the detection event trigger instruction to the charging cabinet by the server end, detecting whether the electronic student card corresponding to the student information bound by the management terminal is being charged, if yes, sending the corresponding charging state information to the management terminal, otherwise returning the information that no relevant electronic student card is being charged.

[0015] Further, the total control module is further used for counting the charging details of each charging cavity in a set period, the charging details including the charging speed, the number of electronic student cards being charged, the charging frequency and the total charging power; the total control module is further used for counting the charging conditions of each electronic student card in a set period, the charging conditions including the charging power, the total charging time and the charging frequency; and the total control module generates the charging data report by the charging details and the charging conditions.

[0016] The application also provides a method using the above system, and the specific process is as follows:

[0017] When the electronic student card needs to be charged, the electronic student card is placed in one of the unused charging cavities;

[0018] The charging module in the charging cavity automatically starts charging the electronic student card, at this time, the control module senses that the electronic student card enters the charging cavity, so as to start the student card identification module to identify the electronic student card and obtain the corresponding student information;

[0019] The total control module obtains and manages the state information of each charging cavity through the control module of each charging cavity, the state information including the serial number and the number of the charging cavities currently in use and the serial number and the number of the charging cavities currently not in use; and obtains the charging state information of the corresponding electronic student card through the control module of each charging cavity currently in use, the charging state information including the current power of the electronic student card, whether the electronic student card is fully charged, the duration of the current charging and the start time of the current charging; when the charging state information of the electronic student card meets the preset condition, the student information of the electronic student card is obtained from the control module of the corresponding charging cavity, and then the charging state information of the electronic student card, the student information and the unique identifier of the charging cabinet are sent to the server end, and the server end sends the charging state information of the electronic student card to the corresponding management terminal for reminding according to the corresponding associated binding data.

[0020] The present application has the beneficial effect that, by using the present application, not only can the electronic student cards be centrally charged (charging cabinets are set up in units of classes or grades), but also all users can know the charging status of the electronic student cards in time through terminals, and the management of the electronic student cards is facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 Fig. 1 is a structural schematic diagram of a charging cabinet in Embodiment 1 of the present application;

[0022] Figure 2 Fig. 2 is a principle schematic diagram of a system in Embodiment 1 of the present application. DETAILED DESCRIPTION

[0023] The present application will be further described below in combination with the drawings, and it should be noted that the present embodiment is based on the technical solution of the present application, and gives a detailed implementation mode and specific operation process, but the protection scope of the present application is not limited to the present embodiment.

[0024] Embodiment 1

[0025] The present embodiment provides an intelligent charging cabinet management system for electronic student cards, as shown in Fig. 1, which comprises a charging cabinet and a management terminal; the charging cabinet comprises a cabinet body 1, and a plurality of charging cavities 2 are arranged on the cabinet body 1; a student card identification module, a charging module and a control module are arranged in each charging cavity 2, the charging module and the student card identification module are connected to the control module, the student card identification module is used to acquire corresponding student information when an electronic student card enters the charging cavity and transmit the student information to the control module, and the charging module is used to automatically start charging the electronic student card when the electronic student card enters the charging cavity; Figure 1

[0026] A general control module is arranged on the cabinet body, the general control module is connected with a communication module, and the control modules of the charging cavities are all connected with the general control module; the management terminal is pre-associated and bound with the charging cabinet, the associated and bound data is stored in a server end, and the associated and bound data comprises a unique identifier of the management terminal, a unique identifier of the bound charging cabinet and bound student information; after the association and binding, the general control module of the charging cabinet can utilize the communication module to perform data interaction through the server end and the management terminal.

[0027] It should be noted that the charging module is a contact charging module or a wireless charging module.

[0028] ​It should be noted that the management terminal can be one or more, such as a student terminal, a parent terminal, a teacher terminal, etc., and can be a phone watch, a tablet, a mobile phone, etc. It should be noted that the teacher terminal can bind the student information of all students under its responsibility, and the student terminal and the parent terminal of the student can only bind the student information of the student itself. In this way, the teacher terminal can receive the charging state information of the electronic student card corresponding to all the bound student information sent by the charging cabinet, and the student terminal and the parent terminal of the student can only receive the charging state information of the electronic student card itself. The association binding data can be uniformly set by the school administrator and pre-stored in the server end.

[0029] The total control module is configured to acquire and manage the state information of each charging cavity through the control module of each charging cavity, the state information including the serial number and quantity of the charging cavities currently in use, and the serial number and quantity of the charging cavities currently not in use; acquire the charging state information of the corresponding electronic student card through the control module of each charging cavity currently in use, the charging state information including the current power (percentage) of the electronic student card, whether the electronic student card is full, the duration of the current charging, and the start time of the current charging; when the charging state information of the electronic student card meets a preset condition, acquire the student information of the electronic student card from the control module of the corresponding charging cavity, and then send the charging state information, the student information, and the unique identifier of the charging cabinet to the server end, and the server end sends the charging state information of the electronic student card to the corresponding management terminal for reminding according to the corresponding association binding data. The preset condition can be that the current power reaches a preset power threshold, the duration of the current charging exceeds a preset time threshold, etc.

[0030] In the present embodiment, the student card identification module includes one or more of an RFID module, an NFC module, a Bluetooth module, a wifi module, and a shooting module. One or more of the RFID module, the NFC module, the Bluetooth module, and the wifi module can be used to establish communication with the electronic student card, acquire the student information stored in the electronic student card, and the shooting module can be used to take an image of the electronic student card. The control module acquires the student information recorded on the surface of the electronic student card by using text recognition technology. The student information generally includes the student's name, class, and student ID, etc.

[0031] In the present embodiment, the cabinet body is further provided with a touch display screen 3 and an electronic student card retrieval module 4, both of which are connected with the total control module; the electronic student card retrieval module is used for the user to input electronic student card retrieval information, and the total control module retrieves the charging cavity where the corresponding electronic student card is located according to the electronic student card retrieval information, and returns the serial number of the charging cavity to the touch display screen for display.

[0032] Specifically, the electronic student card retrieval module is an identity authentication information input module, and the total control module pre-stores a mapping dataset of student information and identity authentication information. The total control module can match the corresponding student information according to the identity authentication information obtained by the identity authentication information input module, and further match the serial number of the corresponding charging cavity. More specifically, the identity authentication information input module includes one or more of a face recognition module, a fingerprint recognition module, a voiceprint recognition module, and a password verification module. The face information, fingerprint information, voiceprint information, and password information can be input by using the face input module, the fingerprint input module, the voiceprint input module, and the password input module, so as to realize the input of the student identity authentication information.

[0033] Further, in the present embodiment, the total control module is also used to actively detect and send the charging state information of the electronic student card being charged to the management terminal when a preset detection time is reached, the preset detection time including one or more of the time of leaving school, the time of lunch break, and the time of class dismissal. In this way, the management terminal can master the use of the charging compartment at fixed times. For example, if the electronic student card is still charging in the charging cabinet after school, the teacher terminal or the corresponding student terminal and the parent terminal can also be informed in time.

[0034] Further, in the present embodiment, the total control module is also used to detect whether the electronic student card corresponding to the student information bound by the management terminal is being charged when the management terminal actively sends a detection event trigger instruction to the charging cabinet through the server end. If so, the corresponding charging state information is sent to the management terminal, otherwise, no information about the electronic student card being charged is returned. If the detection event trigger instruction is sent by the teacher terminal, the charging state information and student information of all electronic student cards being charged will be sent to the teacher terminal. If the detection event trigger instruction is sent by the parent terminal or the student terminal, only the charging state information of the corresponding student's electronic student card can be queried. In this way, the management terminal can actively obtain the charging condition of the electronic student card.

[0035] Further, the total control module is also used to count the charging details of each charging cavity in a set period, the charging details including the charging speed, the number of electronic student cards being charged, the number of charging times (the number of poor contacts can be calculated by comparing the number of charging times and the number of electronic student cards being charged), and the total amount of charging power; the total control module is also used to count the charging condition of each electronic student card in a set period, the charging condition including the charging amount, the total charging time, and the number of charging times; the total control module generates a charging data report based on the charging details and the charging condition.

[0036] The total control module is also used for detecting charging cavity abnormal details and recording in a charging data report. If the charging speed in a period is lower than a preset charging speed threshold, it is determined as an abnormality.

[0037] Embodiment 2

[0038] The embodiment provides a method for using the system in embodiment 1, and the specific process is as follows:

[0039] When the electronic student card needs to be charged, the electronic student card is placed in one of the unused charging cavities;

[0040] The charging module in the charging cavity automatically starts charging the electronic student card. At this time, the control module senses that the electronic student card enters the charging cavity, so as to start the student card identification module to identify the electronic student card and obtain the corresponding student information of the electronic student card;

[0041] The total control module obtains and manages the state information of each charging cavity through the control modules of the charging cavities, and the state information includes the serial numbers and quantities of the charging cavities currently in use and the serial numbers and quantities of the charging cavities currently not in use. The total control module obtains the charging state information of the corresponding electronic student card through the control modules of the charging cavities currently in use, and the charging state information includes the current power of the electronic student card, whether the electronic student card is fully charged, the duration of the current charging, and the start time of the current charging. When the charging state information of the electronic student card meets a preset condition, the student information of the electronic student card is obtained from the control module of the corresponding charging cavity, and then the charging state information of the electronic student card, the student information, and the unique identifier of the charging cabinet are sent to the server end. The server end sends the charging state information of the electronic student card to the corresponding management terminal for reminding according to the corresponding association binding data.

[0042] For those skilled in the art, various corresponding changes and modifications can be given according to the above technical solutions and concepts, and all these changes and modifications should be included in the protection scope of the claims of the present application.

Claims

1. An electronic student ID intelligent charging warehouse management system, characterized in that, The charging cabinet comprises a cabinet body, a plurality of charging cavities are arranged on the cabinet body, a student ID recognition module, a charging module and a control module are arranged in each charging cavity, the charging module and the student ID recognition module are connected to the control module, the student ID recognition module is used to obtain corresponding student information when an electronic student ID enters the charging cavity and transmit the student information to the control module, and the charging module is used to automatically start charging when the electronic student ID enters the charging cavity; A general control module is arranged on the cabinet body, the general control module is connected with a communication module, and the control modules of the charging cavities are connected with the general control module; the management terminal is pre-associated and bound with the charging cabinet, associated and bound data is stored in a server end, and the associated and bound data comprises a unique identifier of the management terminal, a unique identifier of the bound charging cabinet and bound student information; After the association and binding, the general control module of the charging cabinet can utilize the communication module to perform data interaction through the server end and the management terminal; The general control module is used to obtain and manage state information of each charging cavity through the control modules of the charging cavities, the state information comprises serial numbers and quantities of charging cavities currently in use and serial numbers and quantities of charging cavities currently not in use, and is used to obtain charging state information of corresponding electronic student IDs through the control modules of the charging cavities currently in use, the charging state information comprises current power of the electronic student ID, whether the electronic student ID is fully charged, a duration of this time of charging and a start time of this time of charging; When the charging state information of the electronic student ID meets a preset condition, the student information of the electronic student ID is obtained from the control module of the corresponding charging cavity, and then the charging state information, the student information and the unique identifier of the charging cabinet are sent to the server end, and the server end sends the charging state information of the electronic student ID to the corresponding management terminal for reminding according to the corresponding associated and bound data.

2. The system of claim 1, wherein, The preset condition comprises one or both of that the current power of the electronic student ID reaches a preset power threshold and that the duration of this time of charging of the electronic student ID exceeds a preset time threshold.

3. The system of claim 1, wherein, The student ID recognition module comprises one or more of an RFID module, an NFC module, a Bluetooth module, a wifi module and a shooting module; one or more of the RFID module, the NFC module, the Bluetooth module and the wifi module can be utilized to establish communication with the electronic student ID and obtain student information stored in the electronic student ID; the shooting module can be utilized to take an image of the electronic student ID, and the control module utilizes character recognition technology to obtain student information recorded on the surface of the electronic student ID.

4. The system of claim 1, wherein, A touch display screen and an electronic student ID searching module are further arranged on the cabinet body, and the touch display screen and the electronic student ID searching module are connected with the general control module; the electronic student ID searching module is used for a user to input electronic student ID searching information, the general control module searches for a charging cavity where a corresponding electronic student ID is located according to the electronic student ID searching information, and returns the serial number of the charging cavity to be displayed on the touch display screen.

5. The system of claim 4, wherein, The electronic student card retrieval module is an identity authentication information input module, and the total control module pre-stores a mapping data set of student information and identity authentication information.

6. The system of claim 1, wherein, The total control module is also configured to actively detect and send the charging state information of the electronic student card being charged to the management terminal when a preset detection time is reached, and the preset detection time includes one or more of the time of leaving school, the time of lunch break, and the time of class dismissal.

7. The system of claim 1, wherein, The total control module is also configured to, when the management terminal actively sends a detection event trigger instruction to the charging cabinet through the server end, detect whether the electronic student card corresponding to the student information bound by the management terminal is being charged, and if so, send the corresponding charging state information to the management terminal, otherwise return information that no electronic student card is being charged.

8. The system of claim 1, wherein, The total control module is also configured to count the charging details of each charging cavity within a set period, including charging speed, number of electronic student cards charged, charging frequency, and total charging capacity; and to count the charging conditions of each electronic student card within a set period, including charging capacity, total charging time, and charging frequency. The total control module generates a charging data report based on the charging details and the charging conditions.

9. A method of using the system of any of claims 1-8, wherein, The specific process is as follows: When the electronic student card needs to be charged, the electronic student card is placed in one of the unused charging cavities; The charging module in the charging cavity automatically starts charging the electronic student card, at which time the control module senses that the electronic student card has entered the charging cavity, thereby starting the student card identification module to identify the electronic student card and obtain the corresponding student information; The total control module obtains and manages the state information of each charging cavity through the control module of each charging cavity, including the serial number and number of charging cavities currently in use, and the serial number and number of charging cavities not currently in use; and obtains the charging state information of the corresponding electronic student card through the control module of each charging cavity currently in use, including the current capacity of the electronic student card, whether it is full, the duration of the current charging, and the start time of the current charging; when the charging state information of the electronic student card meets the preset conditions, the student information of the electronic student card is obtained from the control module of the corresponding charging cavity, and then the charging state information of the electronic student card, the student information, and the unique identifier of the charging cabinet are sent to the server end, and the server end sends the charging state information of the electronic student card to the corresponding management terminal for prompting according to the corresponding association binding data.

Citation Information

Patent Citations

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