Security integrated command and dispatch platform system
By constructing an integrated security command and dispatch platform system, integrating social resources, and utilizing artificial intelligence and big data analysis technologies, data sharing and collaborative processing, automatic early warning and unified command are achieved, solving the information barrier problem in existing technologies and improving security and prevention capabilities and user satisfaction.
Patent Information
- Application Number
- CN202510808408.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-17
- Publication Date
- 2026-02-10
AI Technical Summary
Existing technologies are insufficient to effectively integrate social resources, enhance the public security and crime prevention capabilities of public security organs, break down information barriers, achieve efficient command and management in police-security cooperation, and improve the public's sense of security and satisfaction.
Construct an integrated security command and dispatch platform system, including an equipment layer, a network layer, a software support layer, a business application layer, and a user display layer. Utilize artificial intelligence and big data analytics to achieve data sharing and collaborative processing, set early warning rules, automatically issue alarms, unify command resources, and provide a visual user interface.
It has improved public security and prevention capabilities, optimized management efficiency, reduced costs, enhanced user experience, and increased emergency response speed and resource allocation efficiency.
Smart Images

Figure CN121503938A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the security technology field, specifically to the security integrated command and dispatch platform system. BACKGROUND
[0002] In the social public security protection system, the security industry is increasingly important. SUMMARY
[0004] (I) Technical problems solved
[0005] The present application aims to solve the current public security social security prevention and control problems, integrate social resources, play the group prevention and control force, extend the prevention and control tentacles, improve the ability of fighting, preventing, managing and controlling, enhance the safety and satisfaction of the people. At the same time, the efficient command and management of security units and stationed units are realized, the information barrier is broken, and various pain points in police and security linkage are solved.
[0006] (II) Technical solutions
[0007] In order to achieve the above-mentioned advantages of simple installation and maintenance, stable and reliable, and guarantee the stable operation of the system, the present application provides the following technical solutions: the security integrated command and dispatch platform system comprises:
[0008] Device layer: including front-end, middle-end, back-end supporting software operation hardware facilities; network layer bearing data transmission network resources, such as Internet, private network routing, etc. Integrating monitoring video, real-time personnel positioning and other data, realizing data sharing and collaborative processing through software architecture, breaking the data island;
[0009] Network layer: bearing data transmission network resources, such as Internet, private network routing, etc. Using artificial intelligence and big data analysis technology, predicting and analyzing various security events, providing scientific basis for command and decision-making;
[0010] Software support layer: including software integrated, processing data, providing basic support for application business, real-time monitoring various events in security industry, setting early warning rules, discovering problems in time and triggering early warning, so as to take disposal measures quickly;
[0011] Business application layer: under the data support of software support layer, further digging, analyzing and processing data according to demand, realizing various specific function services, unified command to security units and stationed units, realizing efficient resource allocation and collaborative operation, and improving emergency response speed;
[0012] User display layer: application interface for users to display software functions, covering a variety of terminals, allowing multiple users to share and present various data in a visual manner, such as electronic map annotation, tree diagram display, etc., to help decision makers intuitively understand the situation and make decisions.
[0013] Preferably, the artificial intelligence and big data analysis technology in the network layer is specifically used for:
[0014] Analyzing past security event information;
[0015] Finding high-risk locations and event types that may have problems;
[0016] Issuing early warning signals to help commanders prepare.
[0017] Preferably, the software support layer is further used for:
[0018] Setting conditions for automatic alarms, such as detecting suspicious behavior or abnormal personnel gathering;
[0019] When the conditions are met, the system automatically issues different levels of alarms;
[0020] Quickly notify relevant personnel through various means such as messages and sounds.
[0021] Preferably, the unified command function in the business application layer specifically includes:
[0022] Displaying the locations of all available personnel and equipment such as security guards and police on the map;
[0023] When an incident occurs, automatically find and assign the closest or most suitable personnel to handle it;
[0024] Simultaneously issuing coordinated action instructions to personnel from different units.
[0025] Preferably, the device layer is further used for:
[0026] Collecting information from different sources such as cameras, positioning devices, and access control systems;
[0027] Converting these different types of information into a format that the system can uniformly process;
[0028] Making this information visible and usable in different parts of the platform.
[0029] Preferably, the user display layer is further used for:
[0030] Displaying ongoing events, personnel locations, and risk areas in real time on the map using different colors or icons;
[0031] Displaying the composition of the security team and the progress of event handling in clear charts;
[0032] Let the commander can easily view information and make adjustments.
[0033] Preferably, the business application layer also includes security personnel management function:
[0034] Using positioning information to automatically record whether the security is on duty;
[0035] Automatically discover abnormal situations such as security long-term off-duty;
[0036] View the security distribution and dispatching situation in a larger range such as the whole city or province.
[0037] Preferably, the security guard credit management module:
[0038] A multi-dimensional credit acquisition and consumption system is established for individual security guards;
[0039] A credit evaluation system is established for security service companies, with contract performance as the core.
[0040] (Three) beneficial effects
[0041] Compared with the prior art, the security integrated command and dispatch platform system provided by the present application has the following
[0042] Beneficial effects:
[0043] 1. Improve public security prevention and control capability: integrate various forces, realize information sharing and cooperation, and improve the response speed and disposal capability for various public security events.
[0044] 2. Optimize management efficiency: digitally and intelligently manage the security team and police-security linkage work, simplify the management process, improve the fine and standardized level of management, and reduce the management burden.
[0045] 3. Reduce costs: optimize resource allocation through software functions, avoid resource waste, and at the same time, the audio and video dispatching technology reduces the code rate, saves traffic and storage costs.
[0046] 4. Enhance user experience: visual display and convenient operation interface, facilitate the decision-making of the commander, improve the user efficiency, and improve the user satisfaction. BRIEF DESCRIPTION OF DRAWINGS
[0047] Figure 1 The structure diagram of the present application;
[0048] Figure 2 The method diagram of the present application. DETAILED DESCRIPTION
[0049] With reference to the accompanying drawings, the technical solutions in the embodiments of the present application will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts are within the scope of the present application.
[0050] Embodiment 1
[0051] Please refer to Figure 1 The security integrated command and dispatch platform system described in the embodiments of the present application comprises:
[0052] The device layer includes hardware facilities supporting the operation of the front end, the middle end and the back end; the network layer carries network resources for data transmission, such as the Internet and private network routing, and integrates various data such as monitored video and real-time personnel positioning, and realizes data sharing and collaborative processing through software architecture, breaking the data island.
[0053] The device layer is further used for:
[0054] Various front-end sensing devices are connected, such as cameras, positioning devices, access control systems, alarm buttons and the like. These devices continuously collect various information from the real world, such as monitoring pictures, personnel positions, access records, alarm signals and the like. The role of the device layer is to collect all the information from different devices and different sources together to form a comprehensive information pool. The information formats from different devices are often different from each other. For example, the camera collects video stream data, the positioning device collects latitude and longitude coordinate data, and the access control system collects on-off data. In order to enable the platform to understand and process these information, the device layer needs to convert and standardize the data of different formats, and convert them into a unified data format. The device layer provides the processed unified format data to other parts of the entire platform, such as the network layer, the software support layer and the business application layer, so that each module and function can easily obtain the required data, realize data sharing and collaborative work, break the information island, and ensure that each part of the platform can operate based on the same information base.
[0055] The network layer: carries network resources for data transmission, such as the Internet and private network routing, and uses artificial intelligence and big data analysis technology to predict and analyze various security events, providing a scientific basis for command and decision-making.
[0056] The software support layer: includes various sub-software integrated in the software, processing data and providing basic support for application business, real-time monitoring various events in the security industry, setting early warning rules, timely discovering problems and triggering early warning, so as to take prompt disposal measures.
[0057] The software support layer is further used for:
[0058] The system continuously collects and monitors information from various aspects of the security industry, such as patrol records of security personnel, footage from surveillance cameras, access control system entry and exit records, and alarm system trigger signals. To enable the platform to proactively identify problems, the software support layer allows users to set various warning rules according to their needs. For example, an alert can be triggered when the number of people gathering in a certain area exceeds a certain threshold, or when surveillance cameras capture suspicious behavior such as prolonged loitering or attempts to climb over walls. The software support layer automatically analyzes the real-time monitored data based on the set warning rules. Once data matches the warning rule conditions, the system immediately triggers the warning mechanism. For example, if a "suspicious crowd gathering" warning rule is set, the system will automatically identify a sudden surge in the number of people in a certain area as abnormal and trigger the corresponding warning.
[0059] Automatic alarm issuance and notification to relevant personnel: When an alert is triggered, the software support layer will automatically issue alarms of different levels according to pre-set rules. Alarm levels can be categorized based on the severity of the event, such as general warning, important warning, and emergency warning. Simultaneously, the system will also quickly notify relevant personnel, such as security captains, on-site supervisors, and command center staff, through various means, including SMS, email, in-platform messages, and sound alerts, ensuring they are promptly informed and can take appropriate action.
[0060] Optimize management efficiency: Implement digital and intelligent management of security teams and police-security joint operations, simplify management processes, improve the level of refinement and standardization of management, and reduce management burden.
[0061] Example 2
[0062] like Figure 1 As shown, the integrated security command and dispatch platform system also includes the following modules:
[0063] Business Application Layer: With the data support provided by the software support layer, this layer further mines, analyzes, and processes data according to needs, and realizes various specific functional services to enable unified command of security units and stationed units, achieve efficient resource allocation and collaborative operations, and improve emergency response speed.
[0064] The unified command function in the business application layer specifically includes:
[0065] The electronic map displays the real-time location information of all security personnel, police, vehicles, equipment, and other resources. Commanders can clearly see where available personnel and equipment are located, along with their specific positions. When an incident occurs, the business application layer automatically identifies the most suitable personnel to handle the incident based on its type, urgency, and the personnel's location, skills, and current task status. The system prioritizes personnel closest to the incident location, while also considering their professional skills and workload to ensure that assigned personnel can handle the incident efficiently and professionally. For complex incidents, collaboration between security personnel from different units is often required. The business application layer can simultaneously issue coordinated action instructions to personnel from multiple units, including police, security guards, and firefighters. Commanders can formulate action plans on the platform and send instructions to all relevant personnel with a single click, ensuring that all parties act in unison, cooperate effectively, and quickly and efficiently control the situation.
[0066] The business application layer also includes security personnel management functions:
[0067] The business application layer can connect with positioning devices worn by security personnel, such as positioning wristbands and walkie-talkies, or with mobile apps, to obtain their location information in real time. The system automatically determines whether security personnel are on duty based on pre-set duty areas and time periods, eliminating the need for manual clocking in and recording their attendance. This allows management to easily monitor the real-time on-duty status of the security team. The business application layer continuously monitors the location information of security personnel. If it detects that a security personnel have left their duty area for an extended period or have left their post without reporting, the system will automatically identify this anomaly and send an alert to management to ensure timely understanding of the situation and avoid the risk of vacant positions. The business application layer can aggregate and display the location and status information of security personnel across the city, province, or even larger areas. Management can intuitively see the distribution density and real-time status of security personnel in various areas. When it is necessary to deploy security personnel to support other areas or respond to emergencies, management can quickly locate the nearest, well-behaved security personnel and dispatch them uniformly, achieving efficient cross-regional collaboration of security forces and improving overall security effectiveness.
[0068] By optimizing resource allocation through software functions, resource waste can be avoided. At the same time, audio and video scheduling technology reduces bitrate, saving traffic and storage costs.
[0069] Security guard personal points management module:
[0070] A multi-dimensional points acquisition and consumption system is established for individual security guards. Security guards accumulate points through daily performance, such as: Basic attendance: Daily sign-in and sign-out, and completion of assigned patrol shifts earn basic points, encouraging high attendance rates; Task execution: Successfully completing temporary dispatch tasks and special security tasks assigned by the platform earns additional points based on task difficulty and completion quality; Clue reporting: Proactively reporting security risks, suspicious situations, and other valid information earns points upon verification, encouraging security guards to play a "frontline" role; Points redemption mechanism: Accumulated points can be redeemed for physical prizes such as daily necessities, security equipment, training opportunities, and honorary titles, forming an incentive loop of "more work, more pay; better performance, better reward." The platform provides a points mall where security guards can independently choose redeemed items, enhancing their sense of gain and value in earning points. A points-based evaluation system centered on contract performance will be established for security service companies. The points system is directly linked to the company's contract performance, with assessment dimensions including: Contract Completion Rate: Timely, high-quality, and sufficient completion of security service contracts entrusted by the government or clients, scored based on contract amount, service duration, and client satisfaction; Emergency Response Capability: Rapid response to platform dispatch instructions and efficient cooperation with police in emergencies or major security missions, awarded bonus points based on response speed and handling effectiveness; Industry Compliance: Compliance with security industry regulations and platform management standards, with no major violations or disciplinary infractions, and regular platform assessments, with qualified companies receiving basic points; Points Application Scenarios: Relevant government departments will regularly publish security company rankings, serving as an important reference for project bidding, contract renewal, and industry evaluation. Companies with higher rankings will have priority access to high-quality resources such as government large-scale event security projects and key unit security contracts, creating a "survival of the fittest" market competition mechanism that forces security companies to improve service quality and management levels.
[0071] The introduction of the points-based statistical management system transforms the previously abstract concept of security service quality into quantifiable and comparable points data, enabling precise incentives for security personnel and security companies. For security personnel, points serve as both recognition of their hard work and a "currency" for redeeming tangible rewards, effectively enhancing their work enthusiasm and sense of professional belonging. For security companies, points rankings directly impact corporate reputation and economic benefits, compelling them to strengthen internal management, improve service quality, and actively participate in platform collaboration. This fosters a multi-faceted governance structure involving government oversight, platform collaboration, and market forces, ultimately enhancing the effectiveness and vitality of the entire social security and crime prevention system.
[0072] User Presentation Layer: This layer presents the software's functionalities to users, covering multiple terminals and allowing multiple users to share and visualize various types of data, such as electronic map annotations and tree diagrams, to assist command and decision-makers in intuitively understanding the situation and making decisions.
[0073] The user presentation layer is further used for:
[0074] On the electronic map, different colors or icons are used to display in real time the locations of ongoing events, security personnel, and police, as well as high-risk areas. For example, a red icon represents an ongoing fire, a blue icon represents patrolling security personnel, and a yellow shaded area represents an area with a recent high incidence of theft. Commanders can intuitively see the security situation throughout the jurisdiction, quickly locate the location of an incident, and dispatch nearby personnel to handle it. The user display layer uses clear charts to show the composition of the security team, the progress of incident handling, and other information. For example, a pie chart shows the proportion of security personnel of different age groups, and a bar chart shows the number of various types of incidents. The system displays the completion status of incident handling using progress bars, helping commanders quickly understand the security team's situation and incident handling efficiency, identify potential problems, and identify areas for improvement. The user interface provides a simple and easy-to-use interface, allowing commanders to easily view information, adjust perspectives, filter data, and issue instructions. For example, commanders can click on the event icon on the map to view detailed event information, drag the map to view the situation in different areas, select specific types of data by checking options in the charts, and issue instructions to security personnel or adjust resource allocation plans through simple click operations, enabling commanders to easily control the overall situation and efficiently command and dispatch resources.
[0075] It can also enhance the user experience, with visual displays and user-friendly interfaces, making it easier for commanders to make decisions, improving user efficiency, and increasing user satisfaction.
[0076] Example 3
[0077] Please see Figure 2 As shown, the integrated security command and dispatch platform system includes the following steps:
[0078] S1: Includes the hardware facilities that support the operation of the front-end, middle-end, and back-end software; network resources that carry data transmission at the network layer, such as the Internet and private network routing, integrate various data such as surveillance video and real-time personnel positioning, and realize data sharing and collaborative processing through software architecture to break down data silos;
[0079] S2: Network resources that carry data transmission, such as the Internet and private network routing, use artificial intelligence and big data analysis technology to predict and analyze various security incidents, providing a scientific basis for command and decision-making;
[0080] S3: This includes various sub-software components integrated into the software to process data and provide basic support for application services. These components monitor various events in the security industry in real time, set early warning rules, promptly detect problems and trigger early warnings so that rapid response measures can be taken.
[0081] S4: With the data support provided by the software support layer, further mine, analyze and process data according to needs to realize various specific functional services, enable unified command of security units and stationed units, achieve efficient resource allocation and collaborative operations, and improve emergency response speed;
[0082] S5: The application interface that displays the software functions to users, covering multiple terminals, allowing multiple users to share and present various types of data in a visual way, such as electronic map annotations, tree diagrams, etc., to help commanders and decision-makers intuitively understand the situation and make decisions.
[0083] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0084] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A security integrated command and dispatch platform system, characterized in that, include: Equipment layer: includes the hardware facilities that support the operation of the front-end, middle-end, and back-end software; network layer: carries network resources for data transmission, such as the Internet and private network routing, integrates various data such as surveillance video and real-time personnel positioning, and realizes data sharing and collaborative processing through software architecture to break down data silos; Network layer: Network resources that carry data transmission, such as the Internet and private network routing. Using artificial intelligence and big data analysis technology, it predicts and analyzes various security incidents to provide a scientific basis for command and decision-making. Software support layer: This includes various sub-software components that integrate and process data within the software, providing basic support for application services. These components monitor various events in the security industry in real time, set early warning rules, promptly detect problems and trigger early warnings so that rapid response measures can be taken. Business Application Layer: With the data support provided by the software support layer, it further mines, analyzes and processes data according to needs, and realizes various specific functional services to enable unified command of security units and stationed units, achieve efficient resource allocation and collaborative operations, and improve emergency response speed; User Presentation Layer: This layer presents the software's functionalities to users, covering multiple terminals and allowing multiple users to share and visualize various types of data, such as electronic map annotations and tree diagrams, to assist command and decision-makers in intuitively understanding the situation and making decisions.
2. The integrated security command and dispatch platform system according to claim 1, characterized in that, The artificial intelligence and big data analytics technologies in the network layer are specifically used for: Analyze past security incident information; Identify high-risk locations and types of incidents where problems may occur; Issue early warning signals to help commanders prepare.
3. The integrated security command and dispatch platform system according to claim 1, characterized in that, The software support layer is further used for: Set conditions for automatic alarms, such as detecting suspicious behavior or abnormal gatherings of people; When the conditions are met, the system automatically issues alarms of different levels; Quickly notify relevant personnel through various means such as messages and voice.
4. The integrated security command and dispatch platform system according to claim 1, characterized in that, The unified command function in the business application layer specifically includes: Display the location of all available personnel and equipment, such as security guards and police, on the map; When an incident occurs, the system automatically locates and assigns the nearest or most suitable person to handle it. Simultaneously issue coordinated action instructions to personnel in different units.
5. The integrated security command and dispatch platform system according to claim 1, characterized in that, The device layer is further used for: It aggregates information from various sources such as cameras, positioning devices, and access control systems. Convert these different types of information into a format that the system can process uniformly; This allows this information to be seen and used in different parts of the platform.
6. The integrated security command and dispatch platform system according to claim 1, characterized in that, The user presentation layer is further used for: The map displays ongoing events, personnel locations, and risk areas in real time using different colors or icons; Use clear charts to illustrate the composition of the security team and the progress of incident handling; This allows commanders to easily view information and make adjustments.
7. The integrated security command and dispatch platform system according to claim 1, characterized in that, The business application layer also includes security personnel management functions: Automatically record whether security guards are on duty using location information; Automatically detects abnormal situations such as security guards leaving their posts for extended periods; Check the distribution and deployment of security guards on a larger scale, such as the whole city or the whole province.
8. The integrated security command and dispatch platform system according to claim 1, characterized in that, The business application layer also includes a security guard points management module: Establish a multi-dimensional points acquisition and consumption system for individual security guards; establish a points evaluation system for security service companies with contract performance as the core.