Security information software display platform and use method
Through holographic projection technology and interactive learning functions, the problem of a single display form of the existing security information software display platform has been solved, and three-dimensional display and data-driven optimization have been achieved, improving user experience and learning effects.
Patent Information
- Application Number
- CN202510389258.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-07-18
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing security information software display platform mainly relies on two-dimensional flat display. The display form is single, it is difficult to provide an immersive experience, limited interactive functions, low user participation, and difficult to stimulate learning interest and enthusiasm.
Holographic projection technology is adopted to realize three-dimensional and three-dimensional security information display, combined with interactive learning functions such as online testing and simulation drills, providing an immersive experience, and collecting user behavior data for analysis.
Significantly improve the intuitiveness and vividness of information, enhance user memory and understanding, improve user participation and learning effect, and support platform optimization through data analysis.
Smart Images

Figure CN120335266A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of security information software display, and particularly to a security information software display platform and a usage method thereof. Background Art
[0002] The security information software display platform is a comprehensive platform integrating the release, display, promotion and interaction of security information software. It uses modern information technologies, such as the Internet, Internet of Things, big data application technologies, etc., to provide users with relevant services of security information software.
[0003] Existing security information software display platforms mainly rely on two-dimensional planes to display security information, such as text, pictures, videos, etc. The display form is relatively single, making it difficult to provide an immersive experience. At the same time, the interactive functions are limited and usually only support simple operations such as clicking and browsing. The user participation degree is relatively low, and it is difficult to stimulate the learning interest and enthusiasm of users.
[0004] Aiming at the problems of the existing security information software display platform that the display form is relatively single, it is difficult to provide an immersive experience, the user participation degree is relatively low, and it is difficult to stimulate the learning interest and enthusiasm of users, this invention utilizes holographic projection technology to achieve a three-dimensional and stereoscopic display form, provide an immersive experience, enable users to feel the security information personally, significantly improve the intuitiveness and vividness of the information, enhance the memory and understanding of users, enable users to understand the security information more deeply, improve the participation degree and learning effect, and help users better master security knowledge through interactive learning functions, such as online tests, simulation drills, etc. Summary of the Invention
[0005] In order to overcome the problems of the existing security information software display platform that mainly relies on two-dimensional planes to display security information, such as text, pictures, videos, etc., the display form is relatively single, it is difficult to provide an immersive experience, at the same time, the interactive functions are limited and usually only support simple operations such as clicking and browsing, and the user participation degree is relatively low, and it is difficult to stimulate the learning interest and enthusiasm of users.
[0006] The technical solution of the present invention is: a security information software display platform, including a display platform main body, a control module, a display module, a detection module, a projection module, a connection module and a heat dissipation module. The control module is arranged on the top surface of the display platform main body, the display module is arranged on the surface of the control module, the detection module is arranged on one side of the display module, the projection module is arranged inside the control module, the connection module is arranged on one side of the control module, and the heat dissipation module is arranged on the other side of the display module.
[0007] Preferably, the control module is used to control the main body of the display platform, the display module is used to display the security information data, the detection module is used to detect the user permissions, the projection module is used to show the holographic projection to the user, the connection module facilitates the connection of the control module with other devices, and the heat dissipation module is used to dissipate heat from the display module.
[0008] The usage method of the security information software display platform includes the following steps:
[0009] S11: First, install and configure the platform to ensure its safe operation;
[0010] S12: Import and classify the security information to be displayed;
[0011] S13: Set the holographic projection module inside the display platform;
[0012] S14: Design the layout of the information display;
[0013] S15: Manage the user permissions to ensure different access permissions are assigned to different roles;
[0014] S16: Update and remind the security information inside the platform in real time;
[0015] S17: Provide a communication platform for users to interact, learn, and give feedback;
[0016] S18: Generate corresponding data analysis and reports according to user operations.
[0017] Preferably, when installing and configuring the platform:
[0018] S21: Download the installation package of the holographic security information software display platform and install it according to the instructions of the installation wizard;
[0019] S22: After installation, start the software and perform basic configuration according to the prompts, such as setting the username, password, network connection, etc.;
[0020] S23: After configuration, conduct software testing to ensure the normal operation of the platform.
[0021] Preferably, when importing and classifying the information to be displayed, it includes the following steps:
[0022] S31: Import the security information to be displayed, such as safety operation procedures, emergency plans, hazard source identification, etc. into the platform in the form of documents, pictures, or videos;
[0023] S32: Classify the imported information, such as dividing it by department, position, urgency, etc., to facilitate subsequent management and query;
[0024] S33: Set the access rights of the information to ensure that only authorized personnel can view sensitive information.
[0025] Preferably, when setting up the holographic projection module, the following steps are included:
[0026] S41: Adjust the parameters of the holographic projection according to the size and shape of the display space, such as the projection range, brightness, contrast, etc.;
[0027] S42: Select a suitable holographic projection device and connect it to the platform;
[0028] S43: Conduct a projection test to ensure that the projection effect is clear and stable.
[0029] Preferably, when designing the information display layout, the following steps are included:
[0030] S51: Use the layout design tool provided by the platform to design the information display layout;
[0031] S52: Arrange the display order and position reasonably according to the classification and urgency of the information;
[0032] S53: Add necessary animation effects and interactive elements to improve the attractiveness and interactivity of the display.
[0033] Preferably, when managing user permissions, the following steps are included:
[0034] S61: Set user roles and permissions in the platform, such as administrator, ordinary user, etc.;
[0035] S62: Assign different access rights and operation permissions to different roles;
[0036] S63: Monitor user behavior to ensure information security.
[0037] Preferably, when performing real-time updates and reminders on the platform, the following steps are included:
[0038] S71: Regularly update the security information in the platform to ensure the timeliness and accuracy of the information;
[0039] S72: Set up a reminder function to automatically notify relevant users when there is new information or important information is updated;
[0040] S73: Users can also set custom reminders, such as regularly reviewing safety operation procedures, etc.
[0041] Preferably, when providing interactive learning and feedback to users, the following steps are included:
[0042] S81: Users can interact with information through holographic projection, such as clicking, dragging, zooming, etc.;
[0043] S82: The platform provides interactive learning functions, such as simulation drills, online tests, etc., to help users better master safety knowledge;
[0044] S83: Users can submit feedback on the platform, and platform administrators can make improvements and optimizations based on the feedback.
[0045] Preferably, when conducting data analysis and reporting on user behavior, the following steps are included:
[0046] S91: The platform collects users' behavior data, such as the number of visits, stay time, interaction status, etc.;
[0047] S92: Analyze the data to evaluate the effect of information display and users' learning situation;
[0048] S93: Generate a detailed report to provide data support for subsequent improvements and optimizations.
[0049] Preferably, by using the holographic projection technology on the safety information software display platform, the safety information is presented to users in a three-dimensional and stereoscopic manner, which is more intuitive and vivid than two-dimensional display, can better attract users' attention, improve the information transmission efficiency and users' acceptance, and at the same time can collect users' behavior data and conduct in-depth analysis. These data can be used to evaluate the effect of information display and users' learning situation, and provide data support for subsequent improvements and optimizations.
[0050] Advantages of the present invention:
[0051] 1. Compared with the traditional usage method of the safety information software display platform, which mainly relies on two-dimensional plane to display safety information, such as text, pictures, videos, etc., the display form is relatively single, it is difficult to provide an immersive experience, and at the same time the interaction function is limited, usually only supporting simple operations such as clicking and browsing, and the user participation degree is relatively low, it is difficult to stimulate users' learning interest and enthusiasm. By using the holographic projection technology, a three-dimensional and stereoscopic display form is realized, providing an immersive experience, enabling users to feel the safety information personally, significantly improving the intuitiveness and vividness of the information, enhancing users' memory and understanding, enabling users to understand the safety information more deeply, improving the participation degree and learning effect, and helping users better master safety knowledge through interactive learning functions, such as online tests, simulation drills, etc.;
[0052] 2. By using the holographic projection technology on the security information software display platform, the security information is presented to users in a three-dimensional and stereoscopic manner, which is more intuitive and vivid than two-dimensional display, can better attract users' attention, improve the information transmission efficiency and users' acceptance, and at the same time can collect users' behavior data and conduct in-depth analysis. These data can be used to evaluate the information display effect and users' learning situation, providing data support for subsequent improvement and optimization. BRIEF DESCRIPTION OF THE DRAWINGS
[0053] Figure 1 FIG. 1 shows a schematic diagram of the first three-dimensional structure of the security information software display platform of the present invention;
[0054] Figure 2 FIG. 2 shows a schematic diagram of the second three-dimensional structure of the security information software display platform of the present invention;
[0055] Figure 3 FIG. 3 shows a schematic diagram of the working process of the usage method of the security information software display platform of the present invention;
[0056] DESCRIPTION OF THE REFERENCE NUMERALS: 1. Display platform main body; 2. Control module; 3. Display module; 4. Detection module; 5. Projection module; 6. Connection module; 7. Heat dissipation module. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0057] The present invention will be further described below with reference to the drawings and embodiments.
[0058] Please refer to Figures 1-3 , the present invention provides an embodiment: a security information software display platform, including a display platform main body 1, a control module 2, a display module 3, a detection module 4, a projection module 5, a connection module 6 and a heat dissipation module 7. The control module 2 is arranged on the top surface of the display platform main body 1, the display module 3 is arranged on the surface of the control module 2, the detection module 4 is arranged on one side of the display module 3, the projection module 5 is arranged inside the control module 2, the connection module 6 is arranged on one side of the control module 2, and the heat dissipation module 7 is arranged on the other side of the display module 3.
[0059] Preferably, the display platform main body 1 is controlled through the control module 2, the security information data is displayed through the display module 3, the user permissions are detected through the detection module 4, the holographic projection is shown to the user through the projection module 5, the control module 2 is conveniently connected to other devices through the connection module 6, and the display module 3 is cooled through the heat dissipation module 7.
[0060] The usage method of the security information software display platform includes the following steps:
[0061] S11: First, install and configure the platform to ensure its safe operation;
[0062] S12: Import and classify the safety information to be displayed;
[0063] S13: Set up the holographic projection module inside the display platform;
[0064] S14: Design the layout of information display;
[0065] S15: Manage user permissions to ensure different access permissions are assigned to different roles;
[0066] S16: Update and remind the safety information inside the platform in real time;
[0067] S17: Provide users with a communication platform for interactive learning and feedback;
[0068] S18: Generate corresponding data analysis and reports according to user operations.
[0069] Preferably, when installing and configuring the platform:
[0070] S21: Download the installation package of the holographic safety information software display platform and install it according to the instructions of the installation wizard;
[0071] S22: After installation, start the software and perform basic configuration according to the prompts, such as setting the username, password, network connection, etc.;
[0072] S23: After configuration, conduct software testing to ensure the normal operation of the platform.
[0073] Preferably, when importing and classifying the information to be displayed, it includes the following steps:
[0074] S31: Import the safety information to be displayed, such as safety operation procedures, emergency plans, hazard source identification, etc. into the platform in the form of documents, pictures or videos;
[0075] S32: Classify the imported information, such as dividing it by department, position, urgency, etc., to facilitate subsequent management and query;
[0076] S33: Set the access permissions of the information to ensure that only authorized personnel can view sensitive information.
[0077] Preferably, when setting up the holographic projection module, it includes the following steps:
[0078] S41: Adjust the parameters of the holographic projection according to the size and shape of the display space, such as projection range, brightness, contrast, etc.;
[0079] S42: Select a suitable holographic projection device and connect it to the platform;
[0080] S43: Conduct a projection test to ensure that the projection effect is clear and stable.
[0081] Preferably, when designing the information display layout, the following steps are included:
[0082] S51: Use the layout design tool provided by the platform to design the information display layout;
[0083] S52: Reasonably arrange the display order and position according to the classification and urgency of the information;
[0084] S53: Add necessary animation effects and interactive elements to improve the attractiveness and interactivity of the display.
[0085] Preferably, when managing user permissions, the following steps are included:
[0086] S61: Set user roles and permissions in the platform, such as administrator, ordinary user, etc.;
[0087] S62: Assign different access permissions and operation permissions to different roles;
[0088] S63: Monitor user behavior to ensure information security.
[0089] Preferably, when performing real-time updates and reminders on the platform, the following steps are included:
[0090] S71: Regularly update the security information in the platform to ensure the timeliness and accuracy of the information;
[0091] S72: Set a reminder function to automatically notify relevant users when there is new information or important information updated;
[0092] S73: Users can also set custom reminders, such as regularly reviewing safety operation procedures, etc.
[0093] Preferably, when providing interactive learning and feedback to users, the following steps are included:
[0094] S81: Users can interact with the information through holographic projection, such as clicking, dragging, zooming, etc.;
[0095] S82: The platform provides interactive learning functions, such as simulation drills, online tests, etc., to help users better master safety knowledge;
[0096] S83: Users can submit feedback opinions on the platform, and platform administrators can make improvements and optimizations based on the feedback.
[0097] Preferably, when performing data analysis and reporting on user behavior, the following steps are included:
[0098] S91: The platform collects users' behavioral data, such as the number of visits, stay time, interaction status, etc.;
[0099] S92: Analyze the data to evaluate the effect of information display and the learning situation of users;
[0100] S93: Generate a detailed report to provide data support for subsequent improvement and optimization.
[0101] Preferably, by using the security information software display platform with holographic projection technology, the security information is presented to users in a three-dimensional and stereoscopic manner, which is more intuitive and vivid than two-dimensional display, can better attract users' attention, improve the information transmission efficiency and users' acceptance, and at the same time can collect users' behavioral data and conduct in-depth analysis. These data can be used to evaluate the effect of information display and the learning situation of users, and provide data support for subsequent improvement and optimization.
[0102] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the scope of knowledge possessed by those skilled in the art.
Claims
1. Safety information software display platform; characterized in that: It includes a display platform main body (1), a control module (2), a display module (3), a detection module (4), a projection module (5), a connection module (6) and a heat dissipation module (7). The control module (2) is arranged on the top surface of the display platform main body (1), the display module (3) is arranged on the surface of the control module (2), the detection module (4) is arranged on one side of the display module (3), the projection module (5) is arranged inside the control module (2), the connection module (6) is arranged on one side of the control module (2), and the heat dissipation module (7) is arranged on the other side of the display module (3).
2. The method for using a security information software display platform according to claim 1, wherein: It includes the following steps: S11: First, install and configure the platform to ensure its safe operation; S12: Import and classify the security information to be displayed; S13: Set the holographic projection module inside the display platform; S14: Design the layout of information display; S15: Manage user permissions to ensure different access permissions are assigned to different roles; S16: Real-time update and remind the security information inside the platform; S17: Provide an interactive learning and feedback communication platform for users; S18: Generate corresponding data analysis and reports according to user operations.
3. The method for using a security information software display platform according to claim 2, wherein: When installing and configuring the platform: S21: Download the installation package of the holographic security information software display platform and install it according to the instructions of the installation wizard; S22: After installation, start the software and perform basic configuration according to the prompts, such as setting the username, password, network connection, etc.; S23: After configuration, conduct software testing to ensure the normal operation of the platform.
4. The method for using a security information software display platform according to claim 3, characterized in that: When importing and classifying the information to be displayed, it includes the following steps: S31: Import the security information to be displayed, such as safety operation procedures, emergency plans, hazard source identification, etc. into the platform in the form of documents, pictures or videos; S32: Classify the imported information, such as dividing it by department, position, urgency, etc., to facilitate subsequent management and query; S33: Set the access permissions of the information to ensure that only authorized personnel can view sensitive information.
5. The method for using a security information software display platform according to claim 4, characterized in that: When setting the holographic projection module, it includes the following steps: S41: Adjust the parameters of the holographic projection, such as projection range, brightness, contrast, etc. according to the size and shape of the display space; S42: Select a suitable holographic projection device and connect it to the platform; S43: Conduct projection testing to ensure that the projection effect is clear and stable.
6. The method for using a security information software display platform according to claim 5, characterized in that: When designing the information display layout, it includes the following steps: S51: Use the layout design tool provided by the platform to design the layout of information display; S52: Reasonably arrange the display order and position according to the classification and urgency of the information; S53: Add necessary animation effects and interactive elements to improve the attraction and interactivity of the display.
7. The method for using a security information software display platform according to claim 6, characterized in that: When managing user permissions, it includes the following steps: S61: Set user roles and permissions in the platform, such as administrator, ordinary user, etc.; S62: Assign different access permissions and operation permissions to different roles; S63: Monitor user behavior to ensure information security.
8. The method for using a security information software display platform according to claim 7, characterized in that: When performing real-time update and reminder on the platform, it includes the following steps: S71: Regularly update the security information in the platform to ensure the timeliness and accuracy of the information; S72: Set up a reminder function to automatically notify relevant users when new information or important information is updated; S73: Users can also set up custom reminders, such as regularly reviewing safety operation procedures, etc.
9. The method for using a security information software display platform according to claim 8, characterized in that: When providing interactive learning and feedback to users, it includes the following steps: S81: Users can interact with the information through holographic projection, such as clicking, dragging, zooming, etc.; S82: The platform provides interactive learning functions, such as simulation drills, online tests, etc., to help users better master safety knowledge; S83: Users can submit feedback on the platform, and platform administrators can make improvements and optimizations based on the feedback.
10. The method for using a security information software display platform according to claim 9, characterized in that: When conducting data analysis and reporting on user behavior, it includes the following steps: S91: The platform collects users' behavior data, such as the number of visits, stay time, interaction situation, etc.; S92: Analyze the data to evaluate the effect of information display and users' learning situation; S93: Generate a detailed report to provide data support for subsequent improvements and optimizations.