Intelligent monitoring system for college student innovation and entrepreneurship incubator

By designing an intelligent monitoring system for college students' innovation and entrepreneurship incubator, it integrates monitoring, attendance, fire protection and data storage modules, solving the problems of narrow application areas and low functionality of existing incubators, and improving the safety and management efficiency of the entrepreneurial park.

CN119957778AInactive Publication Date: 2025-05-09YANCHENG TEACHERS UNIV
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510305117.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-05-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing college student innovation and entrepreneurship incubator has a narrow application scope and low functionality. It cannot provide timely and accurate information, and it cannot view the equipment dynamics in the entrepreneurship area in real time, which reduces the practicality and management monitoring effect.

Method used

An intelligent monitoring system for college students' innovation and entrepreneurship incubator is designed, including monitoring modules, attendance modules, fire protection modules and data storage modules. These modules are connected through the central processor and control circuit to realize remote monitoring, real-time data management and automated emergency response.

Benefits of technology

It improves the safety of the entrepreneurial incubation park and the real-time and speed of fire warning information, facilitates administrators to view and manage attendance records in real time, improves the convenience and speed of the system, and meets the entrepreneurial needs of college students.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119957778A_ABST
    Figure CN119957778A_ABST
Patent Text Reader

Abstract

The invention discloses a college student innovation and entrepreneurship incubator intelligent monitoring system which comprises a base, walking mechanisms are arranged on the two sides of the base, a bearing frame is installed at the upper end of the base, a lifting mechanism is installed on the bearing frame, a mounting plate is installed on the lifting mechanism, a mounting groove is formed in one side of the mounting plate, and the mounting groove is formed in the other side of the mounting plate. A telescopic mechanism is mounted in the mounting groove, one end of the telescopic mechanism is connected with a control panel, a control module is arranged in the control panel, and the control module is connected with a monitoring module, an attendance checking module, a fire-fighting module and a data storage module. The system not only can improve the safety of an entrepreneurship incubation park, but also can improve the real-time performance and rapidity of fire-fighting early warning information, in addition, an administrator can conveniently check and manage attendance records in real time, meanwhile, a user can adjust the height and the front and back positions according to own requirements, integrated management of a large amount of data is provided, and the system is convenient to use. And the use convenience and rapidity are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of business incubator technology, and in particular to an intelligent monitoring system for a university student innovation and entrepreneurship incubator. Background Technology

[0002] Innovation and entrepreneurship among college students is an entrepreneurial process primarily driven by a special group of current and past college students. As my country continues its transformation and modernization process, entrepreneurship is gradually becoming a career choice for both current and past college students.

[0003] To facilitate entrepreneurship among university students, universities often establish innovation and entrepreneurship incubators. These incubators leverage resources both on and off campus to provide information, guidance, and venue support to student entrepreneurial teams. While these incubators are widespread and numerous on university campuses, their application is limited, their functionality is low, and they fail to provide timely and accurate information to students. Furthermore, they cannot monitor the equipment and real-time dynamics of the entrepreneurial area, reducing their practicality and offering limited assistance to students in management and monitoring. Therefore, we propose an intelligent monitoring system for university student innovation and entrepreneurship incubators to address these issues. Summary of the Invention

[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing an intelligent monitoring system for university student innovation and entrepreneurship incubators.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A smart monitoring system for a university student innovation and entrepreneurship incubator includes a base with walking mechanisms on both sides. A support frame is mounted on the upper end of the base, and a lifting mechanism is mounted on the support frame. An installation plate is mounted on the lifting mechanism, and an installation groove is provided on one side of the installation plate. A telescopic mechanism is installed in the installation groove, and one end of the telescopic mechanism is connected to a control panel. The control panel contains a control module, which is connected to a monitoring module, an attendance module, a fire protection module, and a data storage module. The control module includes a central processing unit (CPU), which is connected to the lifting mechanism and the telescopic mechanism via a control circuit. The other end of the CPU is connected to a touch panel and indicator lights. The CPU is connected to the monitoring module, the attendance module, the fire protection module, and the data storage module.

[0006] Preferably, the walking mechanism includes two rotating rods rotatably connected to both sides of the base, and one end of each rotating rod is fixed with a roller.

[0007] Preferably, the support frame includes support columns fixed on both sides of the upper end of the base, and the upper ends of the two support columns are jointly fixed with a support frame.

[0008] Preferably, the lifting mechanism includes a servo motor fixed to the upper end of the support frame, the output shaft of the servo motor is connected to a stud, the lower end of the stud is rotatably connected to one side inside the support frame, two guide rods are fixed between opposite side walls inside the support frame, a moving block is provided through the two guide rods, the moving block is threaded onto the stud, and one end of the moving block is fixed to one side of the mounting plate.

[0009] Preferably, the telescopic mechanism includes four electrically operated telescopic rods fixed to one side of the mounting groove, with one end of each of the four electric telescopic rods fixed to one side of the control panel.

[0010] Preferably, the monitoring module includes a monitoring processing terminal, which is connected to a monitoring platform, and the monitoring platform is connected to a monitoring terminal. The monitoring processing terminal is also connected to a cloud server and a monitoring transmission module.

[0011] Preferably, the attendance module includes an attendance processor, which is connected to an attendance output module and 5-20 attendance devices.

[0012] Preferably, the fire protection module includes a fire protection data fusion processor, which is connected to a fire protection transmission module and 30-100 fire protection sensing devices.

[0013] Preferably, the data storage module includes a data transmission module, which is connected to a park database, a school database, a personal database, and a company database.

[0014] Preferably, the school database automatically obtains student timetable data by connecting to the school's academic affairs system. Combined with the intelligent attendance equipment in the incubator, it can statistically analyze the activity level of students in the incubator during their spare time in real time, generate a team attendance heat map, and assist administrators in optimizing workstation allocation strategies and improving space utilization.

[0015] This invention establishes a three-tiered access control system for students, mentors, and administrators. Sensitive operations, such as monitoring playback, require dual authentication. It utilizes plug-and-play sensor nodes, supporting rapid expansion with new functional modules. Students can customize their viewing of team progress, resource usage, and other data, while administrators have access to a comprehensive monitoring screen supporting GIS map visualization. The system can integrate financial data, patent applications, market feedback, and other information to construct an evaluation model for entrepreneurial projects. The system can automatically generate a competitiveness radar chart, providing a basis for mentor resource matching. When sensors detect emergencies such as fires or leaks, the system can automatically shut off power in the affected area, activate emergency lighting, and simultaneously push escape routes to students' mobile devices.

[0016] In this invention, when needed, the entire device can be pre-push to the corresponding position using rollers. The lifting and telescopic mechanisms allow users to adjust the height and position according to their needs, making it highly convenient to use. The attendance module can connect to the attendance equipment throughout the entire park, and users can view attendance status in real time according to their permissions. The monitoring module can view multiple monitoring terminals set up throughout the park in real time. The fire protection module connects to multiple fire sensing devices throughout the park, and can display and warn in time when an accident occurs, improving safety and timeliness. The data storage module stores data from within the park, school data, personal data, and company data, facilitating real-time querying by users with different permissions, improving convenience and speed. After connecting to the academic affairs system, it can automatically obtain student course schedules and calculate the actual attendance rate in the incubator during off-duty time. For example, the system can exclude class time, accurately calculate the effective usage time of entrepreneurial teams in offices and laboratories, identify idle resources and dynamically adjust their allocation. Student identity, major, and mentor information are automatically synchronized to avoid manual input errors. Administrators can directly call the department and class data in the academic affairs system to quickly match entrepreneurial teams with mentors.

[0017] The present invention has the following advantages: 1. The monitoring module enables remote and real-time monitoring, improving the security and making the business incubation park more intelligent. 2. By setting up the fire protection module, fire warning information inside and outside the building can be determined in a timely manner, improving the real-time nature and speed of fire warning information; 3. The attendance module allows administrators to easily view and manage attendance records in real time, while also recording records, thus improving management convenience; 4. The lifting and telescopic mechanisms allow users to adjust the height and position according to their needs, making it highly convenient to use; 5. The data storage module stores internal park data, school data, personal data, and company data, allowing users with different permissions to query in real time, improving convenience and speed; In summary, this invention not only improves the safety of business incubation parks, but also enhances the real-time and rapid nature of fire early warning information. Furthermore, it facilitates real-time viewing and management of attendance records for administrators, allows users to adjust the height and position of items according to their needs, and provides comprehensive data integration and management, further improving ease of use and speed. Attached Figure Description

[0018] Figure 1 This is a diagram showing the installation structure of the control panel of the present invention; Figure 2A structural diagram showing the telescopic mechanism of the present invention; Figure 3 This is a connection diagram of the control module system of the present invention; Figure 4 This is a connection diagram of the attendance module system of the present invention; Figure 5 This is a connection diagram of the fire protection module system of the present invention; Figure 6 This is a connection diagram of the monitoring module system of the present invention; Figure 7 This is a system connection diagram of the data storage module of the present invention.

[0019] In the diagram: 1. Mounting plate, 2. Servo motor, 3. Bearing frame, 4. Guide rod, 5. Moving block, 6. Stud, 7. Support column, 8. Control panel, 9. Base, 10. Roller, 11. Mounting slot, 12. Electric telescopic rod. Detailed Implementation

[0020] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0021] Reference Figure 1-7 A smart monitoring system for a college student innovation and entrepreneurship incubator includes a base 9, with a walking mechanism on both sides of the base 9. The walking mechanism includes two rotating rods rotatably connected to both sides of the base 9, with a roller 10 fixed at one end of each rotating rod, which facilitates positional movement as needed, greatly improving the flexibility of movement and making it convenient for use in different positions. A support frame is installed on the upper end of the base 9, and a lifting mechanism is installed on the support frame. The lifting mechanism includes a servo motor 2 fixed to the upper end of the support frame 3. The output shaft of the servo motor 2 is connected to a stud 6. The lower end of the stud 6 is rotatably connected to one side inside the support frame 3. Two guide rods 4 are fixed between opposite side walls inside the support frame 3. A moving block 5 is provided through the two guide rods 4. The moving block 5 is threaded onto the stud 6. One end of the moving block 5 is fixed to one side of the mounting plate 1. The servo motor 2 drives the stud 6 to rotate through the rotation of its output shaft. The rotation of the stud 6 drives the moving block 5 to move. The height movement of the moving block 5 is achieved by the forward and reverse rotation of the output shaft of the servo motor 2, thereby achieving the effect of height adjustment. Precise height adjustment can be achieved through the control panel. A mounting plate 1 is installed on the lifting mechanism. A mounting groove 11 is provided on one side of the mounting plate 1. A telescopic mechanism is installed in the mounting groove 11. The telescopic mechanism includes four electric telescopic rods 12 fixed to one side of the mounting groove 11. One end of the four electric telescopic rods 12 is fixed to one side of the control panel 8. The electric telescopic rods 12 are controlled by a synchronous system, which can control the operation of multiple electric telescopic rods 12 at the same time, so as to realize the simultaneous extension and retraction of the control panel 8, which is convenient for operators to use. One end of the telescopic mechanism is connected to a control panel 8, which contains a control module. The control module is connected to a monitoring module, an attendance module, a fire protection module, and a data storage module. The support frame includes support columns 7 fixed on both sides of the upper end of the base 9. The upper ends of the two support columns 7 are jointly fixed with a support frame 3. The support frame 3 adopts a U-shaped setting, which greatly improves the stability of installation and support. The control module includes a central processing unit (CPU), which is connected to the lifting mechanism and the telescopic mechanism via control circuits. The other end of the CPU is connected to a touch panel and indicator lights. The CPU is connected to the monitoring module, attendance module, fire protection module, and data storage module. The CPU can control and view each module in real time, and can also store data in the cloud for easy viewing at each port. The monitoring module includes a monitoring processing terminal, which is connected to a monitoring platform. The monitoring platform is connected to a monitoring terminal, and the monitoring processing terminal is connected to a cloud server and a monitoring transmission module. It can perform remote and real-time monitoring, which improves the security of the business incubation park and makes it more intelligent. The attendance module includes an attendance processor, which is connected to an attendance output module. The attendance processor can connect to 5-20 attendance devices, allowing administrators to easily view and manage attendance records in real time, while also registering records, thus improving management convenience. The fire protection module includes a fire data fusion processor, which is connected to a fire transmission module and 30-100 fire sensing devices. It can promptly determine fire warning information inside and outside the building, improving the real-time nature and speed of fire warning information. The data storage module includes a data transmission module, which connects to the park database, school database, personal database, and company database. This module stores internal park data, school data, personal data, and company data, facilitating real-time queries for users with different permissions and improving convenience and speed. The school database connects to the school's academic affairs system to automatically obtain student class schedules. Combined with the incubator's intelligent attendance devices, it provides real-time statistics on student activity during off-hours, generating team attendance heatmaps to assist administrators in optimizing workstation allocation strategies and improving space utilization. After connecting to the academic affairs system, it can automatically obtain student course schedules and calculate actual off-hours attendance rates within the incubator. For example, the system can exclude class time periods, accurately calculate the effective usage time of entrepreneurial teams in offices and laboratories, identify idle resources, and dynamically adjust their allocation. Student identity, major, and mentor information are automatically synchronized, avoiding manual entry errors. Administrators can directly access department and class data from the academic affairs system to quickly match entrepreneurial teams with mentors. In this invention, when needed, the entire device can be pre-push to the corresponding position using rollers 10. The lifting and telescopic mechanisms allow users to adjust the height and position according to their needs, making it convenient to use. The attendance module can connect to the attendance equipment throughout the entire park, and users can view the attendance status in real time according to their permissions. The monitoring module can view multiple monitoring terminals set up throughout the park in real time. The fire protection module connects to multiple fire sensing devices throughout the park, and can display and warn in time when an accident occurs, improving safety and timeliness. The data storage module stores data from within the park, schools, individuals, and companies, making it convenient for users with different permissions to query in real time, improving convenience and speed.

[0022] This invention establishes a three-tiered access control system for students, mentors, and administrators. Sensitive operations, such as monitoring playback, require dual authentication. It utilizes plug-and-play sensor nodes, supporting rapid expansion with new functional modules. Students can customize their viewing of team progress, resource usage, and other data, while administrators have access to a comprehensive monitoring screen supporting GIS map visualization. The system can integrate financial data, patent applications, market feedback, and other information to construct an evaluation model for entrepreneurial projects. The system can automatically generate a competitiveness radar chart, providing a basis for mentor resource matching. When sensors detect emergencies such as fires or leaks, the system can automatically shut off power in the affected area, activate emergency lighting, and simultaneously push escape routes to students' mobile devices.

[0023] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. An intelligent monitoring system for a college student innovation and entrepreneurship incubator, comprising a base (9), characterized in that: Walking mechanisms are provided on both sides of the base (9); a load-bearing frame is installed on the upper end of the base (9); a lifting mechanism is installed on the load-bearing frame; a mounting plate (1) is installed on the lifting mechanism; a mounting groove (11) is provided on one side of the mounting plate (1); a telescopic mechanism is installed in the mounting groove (11); one end of the telescopic mechanism is connected to a control panel (8); a control module is provided in the control panel (8); a monitoring module, an attendance module, a fire protection module and a data storage module are connected to the control module; the control module comprises a central processing unit; the central processing unit is connected to the lifting mechanism and the telescopic mechanism through a control circuit; the other end of the central processing unit is connected to a touch panel and an indicator light; the central processing unit is connected to the monitoring module, the attendance module, the fire protection module and the data storage module.

2. According to claim 1, the intelligent monitoring system for college students' innovation and entrepreneurship incubator is characterized by: The walking mechanism comprises two rotating rods rotatably connected to two sides of a base (9), and a roller (10) is fixed to one end of the rotating rod.

3. The intelligent monitoring system for college students' innovation and entrepreneurship incubator according to claim 1 is characterized by: The bearing frame comprises support columns (7) fixed to both sides of the upper end of the base (9), and a bearing frame (3) is commonly fixed to the upper ends of the two support columns (7).

4. The intelligent monitoring system for college students' innovation and entrepreneurship incubator according to claim 3 is characterized by: The lifting mechanism comprises a servo motor (2) fixed to the upper end of a carrying frame (3); a stud (6) is connected to the end of an output shaft of the servo motor (2); the lower end of the stud (6) is rotatably connected to one side of the carrying frame (3); two guide rods (4) are fixed between opposite side walls of the carrying frame (3); a moving block (5) is passed through the two guide rods (4); the moving block (5) is threadedly screwed onto the stud (6); and one end of the moving block (5) is fixed to one side of the mounting plate (1).

5. The intelligent monitoring system for college students' innovation and entrepreneurship incubator according to claim 1 is characterized by: The telescopic mechanism comprises four electric telescopic rods (12) fixed to one side of the installation slot (11), and one end of the four electric telescopic rods (12) is commonly fixed to one side of the control panel (8).

6. The intelligent monitoring system for college student innovation and entrepreneurship incubator according to claim 1 is characterized by: The monitoring module includes a monitoring processing end, the monitoring processing end is connected to a monitoring platform, the monitoring platform is connected to a monitoring terminal, and the monitoring processing end is connected to a cloud server and a monitoring transmission module.

7. The intelligent monitoring system for college student innovation and entrepreneurship incubator according to claim 1 is characterized by: The attendance module comprises an attendance processor, the attendance processor is connected to an attendance output module, and the attendance processor is connected to 5-20 attendance devices.

8. The intelligent monitoring system for college students' innovation and entrepreneurship incubator according to claim 1 is characterized by: The fire protection module comprises a fire protection data fusion processor, the fire protection data fusion processor is connected to a fire protection transmission module, and the fire protection data fusion processor is connected to 30-100 fire protection sensing devices.

9. The intelligent monitoring system for college students' innovation and entrepreneurship incubator according to claim 1 is characterized by: The data storage module includes a data transmission module, and the data transmission module is connected to a park database, a school database, a personal database and a company database.

10. The intelligent monitoring system for college students' innovation and entrepreneurship incubator according to claim 1 is characterized by: The school database automatically obtains student timetable data by connecting to the school's academic affairs system, and combines with the intelligent attendance equipment in the incubator to count students' activity in the incubator during their spare time in real time, generate a team attendance heat map, and assist administrators in optimizing workstation allocation strategies and improving space utilization.