Emergency information resource content sharing application software

By developing emergency information resource content sharing application software, the problem of existing platforms being unable to achieve real-time monitoring and resource sharing has been solved. It has enabled real-time aggregation of monitoring images and efficient sharing of information resources, improving the scientific nature and efficiency of emergency rescue and reducing equipment costs.

CN122340237APending Publication Date: 2026-07-03邵明法
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
邵明法
Filing Date
2025-01-01
Publication Date
2026-07-03

AI Technical Summary

Technical Problem

Existing emergency information resource sharing platforms cannot achieve real-time monitoring and comprehensive sharing of resource information, resulting in low efficiency in safety production and emergency rescue, as well as increased costs and technical barriers.

Method used

Develop emergency information resource content sharing application software, which can send video screens through hardware terminals to achieve zero-blind-spot monitoring, and push monitoring screens to command centers at all levels in real time. Combined with network port splitters and switch expansion ports, it supports video conferencing and file transfer, and provides powerful search functions and communication platforms.

Benefits of technology

It enables real-time aggregation of monitoring images, reduces equipment costs, improves the scientific nature and efficiency of emergency rescue decision-making, simplifies information sharing processes, and promotes the efficient use and innovation of resources.

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Abstract

This invention relates to the field of information technology for safe production, specifically to the application of emergency information resource content sharing. It mainly consists of two parts: first, hardware composed of a firewall, router, network cable interface, network cable, etc.; second, software composed of three major system software components: resource sharing, dual-stream push, and command and dispatch. To use it, access the system login interface by clicking the first option in the lower left corner and installing the emergency information resource sharing content application platform software. After logging into the terminal, select content sharing, and use the remote control to select sending dual streams to push computer content, realizing system functions such as resource sharing and command and dispatch. This resource sharing allows for convenient projection of other monitoring screens and control over them, with smooth connection and dual-stream input / output. Users can easily upload, store, and share various types of information resources, such as documents, pictures, videos, and on-site footage. Similar to Baidu Cloud Drive software, users can upload their data to the cloud and then share the generated links or permission settings with other users through the emergency resource sharing software, simplifying the sharing process, reducing unnecessary steps, and allowing sharing operations to be completed in a short time.
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Description

Technical Field

[0001] This invention relates to the field of information technology for safe production, specifically to the application of sharing emergency information resources. Background Technology

[0002] With the rapid development of information technology, the amount of information resources is exploding. To improve the efficiency of information resource utilization and promote knowledge dissemination and innovation, developing an emergency information resource content sharing application has become essential. This software aims to break down information silos in emergency situations, enabling different users to conveniently share and access various emergency information resources.

[0003] Existing emergency information resources only meet normal needs. To access more resources, simply adding more servers is insufficient, as server memory is limited. This not only increases costs but also hinders socio-economic development and fails to meet the needs of comprehensive safety supervision, thus impeding scientific planning and command in emergency response. Furthermore, higher-level departments cannot access real-time monitoring footage, resulting in a lack of real-time oversight between different levels. In addition, some information platforms and monitoring systems are outdated and poorly maintained, with units unwilling to invest heavily in repairs or system upgrades. This lack of timely access to on-site footage creates significant safety hazards. To achieve information resource sharing and real-time monitoring access, could an emergency information resource content sharing platform software be developed to integrate resources at all levels and realize information content sharing?

[0004] Therefore, an emergency information resource sharing application software is needed to solve the above problems. Summary of the Invention

[0005] The purpose of this invention is to enable faster file transfer, exchange, video monitoring, and video conferencing; to immediately push and aggregate images and audio from monitoring screens and rescue sites to command centers at all levels, providing a clear overview of the situation and facilitating timely detection, recording, and handling of anomalies. This lays a solid foundation for improving the ability to respond to natural disasters, sudden safety incidents, forest fire prevention and control, reservoir emergency rescue, and other critical situations. This objective can be achieved through the following technical solutions.

[0006] Emergency Information Resource Content Sharing Application Software is a newly developed platform application system and a central hub for sharing video feeds from hardware terminals. This tool can easily project other monitoring feeds and control them, with smooth connections, dual-stream input and output, and guaranteed audio quality, ensuring high-quality projected feeds just like actual operation, bringing an efficient and smooth experience.

[0007] 1. Maintain the existing network and ports on the computer. Add a network port splitter to connect to the resource network port, or add a switch to expand the port. Change the computer's IP address to the video conferencing IP range. Log in to the terminal's IP address using a browser, or check the IP address by selecting Settings - Administrator Settings - Network - Ethernet on the remote control. The first option in the lower left corner of the login interface is the Emergency Information Resource Sharing Content Application Platform software. After logging into the terminal, select Content Sharing, and then select Send Dual Stream on the remote control to push computer content, enabling system functions such as resource sharing and command and dispatch.

[0008] 2. Achieve zero-blind-spot monitoring. Real-time viewing of video surveillance resources for important road sections, major waterways, chemical industrial parks, metal smelting, forest farms and reservoirs, non-coal mines, coal mines, bus stations, airports, aviation bases, geological disaster sites and surrounding villages, fireworks and firecrackers, etc.

[0009] 3. It solves the problem of monitoring footage not being able to be viewed in real time. It can immediately push and aggregate the images and audio from monitoring footage to rescue command centers at all levels, making the situation on-site clear at a glance. This facilitates timely detection, recording, and handling of abnormalities, enabling real-time monitoring of the scene and providing a scientific basis for command and decision-making at all levels.

[0010] 4. Reduced costs. This emergency information resource sharing system saves space, reduces equipment requirements, and increases internal storage. It is simple to operate, easy to use, and has a wide range of applications, making it an indispensable resource support tool for emergency rescue.

[0011] Beneficial effects of the present invention

[0012] Emergency information resource sharing refers to the collective information such as video surveillance and data collected during the safety production and management processes across various industries and sectors. It encompasses the information resources generated, acquired, processed, stored, transmitted, and used during safety production and business activities in all industries, and runs through the entire safety management process.

[0013] 1. Establish a unified resource-sharing application software that enables users to easily upload, store, and share various types of information resources, such as documents, pictures, videos, and live footage. Similar to Baidu Cloud Drive, users can upload their data to the cloud and then share the generated links or permission settings with other users through the resource-sharing software, simplifying the sharing process, reducing unnecessary steps, and allowing sharing operations to be completed in a short time.

[0014] 2. Develop powerful search functionality, enabling users to quickly and accurately find the resources they need through keywords, category tags, and other methods. It should be able to filter large amounts of information, providing the most relevant results, and effectively categorize and organize resources so that users can browse resources according to different themes, fields, or types.

[0015] 3. Provide users with a space for communication and collaboration, where developers can exchange experiences and solve problems together, thereby promoting the further development and innovation of information resources. Encourage users to comment, annotate, and provide improvement suggestions on shared resources to drive the continuous updating and improvement of knowledge. Detailed Implementation

[0016] The technical solution will now be clearly and completely described in conjunction with the actual implementation of this invention. Obviously, the described embodiments are merely some embodiments of this invention, and not all embodiments. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.

[0017] 1. Conduct surveys targeting different types of potential users (government authorities, corporate users, third-party service providers, etc.) to understand the needs, pain points, and desired functions of emergency management in terms of information resource sharing.

[0018] 2. Analyze existing information resource sharing applications on the market, studying their features, user reviews, market share, etc. Identify market gaps or areas for improvement. Pay attention to industry dynamics and technological trends, and understand the potential impact of emerging technologies (such as the application of blockchain technology in information security) on information resource sharing.

[0019] 3. Determine the software's layered architecture, such as dividing it into a user interface layer, business logic layer, and data storage layer. This ensures a clear software structure, facilitating development and maintenance. Plan the software's module division, such as setting up resource upload modules, search modules, user management modules, and communication and interaction modules, clearly defining the functions of each module and the relationships between them.

[0020] 4. Determine the database type based on resource requirements. Design the database table structure, including user tables, resource tables, and shared relationship tables.

[0021] 5. Detail the design of each module's functionality. For example, for the resource upload module, determine supported file formats, maximum file size limits, and upload progress display methods. Design the search algorithm, such as whether to use a full-text search algorithm or a tag-based search algorithm, and how to sort the search results.

[0022] 6. Draw a sketch of the user interface, determining the layout, color scheme, and position of operation buttons, etc.

[0023] 7. Conduct unit testing, testing the functionality of each module individually to ensure that each function can operate normally.

[0024] 8. Select a suitable server environment (such as a self-built server or a cloud server) for software deployment. Configure relevant server parameters, such as bandwidth and storage space. Install and configure the software to ensure it can run normally in the server environment.

[0025] 9. Security Design: Considering that resource sharing may involve sensitive information, it is necessary to design corresponding security measures, such as data encryption, user authentication, and access control.

[0026] 10. Compatibility Design: The software should support multiple operating systems and devices to ensure its use by a wide range of users.

[0027] Working Principle: Emergency Information Resource Sharing Application Software is a network-based resource sharing tool that allows users to share and access various types of digital content, such as documents, images, audio, and video. To use it, users enter the system, click to connect, and then view the required on-site footage on their video terminals. This shared resource forms a powerful intelligent system with functions such as searching, downloading, uploading, and sharing, aiming to promote the efficient circulation and utilization of resources. When designing this type of software, multiple aspects such as user experience, security, and compatibility need to be considered. Through a series of processes including requirements analysis, prototype design, visual design, and interaction design, a resource sharing hub that both meets user needs and provides a good user experience is ultimately formed. Attached Figure Description

[0029] Figure 1 Information resource content sharing application software Figure 2 Resource sharing to build a comprehensive platform

[0030] Figure 3 Resource sharing creates a smart hub

[0031] Figure 4 Resource sharing aligns with practical applications

[0032] Figure 5 Five major systems for resource sharing and integration

[0033] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0034] The above description is merely an example and illustration of the present invention. Those skilled in the art can make various modifications or additions to the specific embodiments described, or use similar methods to replace them, as long as they do not deviate from the present invention or exceed the scope defined in the claims, they should all fall within the protection scope of the present invention.

Claims

1. The emergency information resource content sharing application software mainly consists of two parts: the hardware consists of firewalls, routers, dual-network interface devices, network cables, etc.; the software consists of four major system software: resource sharing, dual-stream push, converged communication, and command and dispatch.

2. Maintain the existing network and ports on the computer. Add a network port splitter to connect to the resource network port, or add a switch to expand the port. Change the computer's IP address to the video conferencing IP range. Log in to the terminal's IP address using a browser, or check the IP address by selecting Settings - Administrator Settings - Network - Ethernet on the remote control. The first option in the lower left corner of the login interface is the Emergency Information Resource Sharing Content Application Platform software. After logging into the terminal, select Content Sharing, and then select Send Dual Stream on the remote control to push computer content, enabling system functions such as resource sharing and command and dispatch.

3. Determine the layered architecture of the shared software, such as dividing it into a user interface layer, business logic layer, and data storage layer. This ensures a clear software structure, facilitates development and maintenance, and plans the software's module division, such as setting up resource upload modules, search modules, user management modules, and communication and interaction modules, clearly defining the functions of each module and the relationships between them.

4. Strengthen the security features of shareware, such as installing antivirus software and firewalls. During data transmission, employ encryption technology to ensure data security and prevent theft or tampering. Simultaneously, provide security education to users to raise their awareness of security precautions.