Multi-station, multi-service and multi-scene visual centralized control center system
By integrating multiple systems, the compatibility and expansion of the visual centralized control center system is improved, real-time monitoring and management of multiple stations, multiple services, and multiple scenarios is realized, and the problems of poor system compatibility and insufficient data processing capabilities in the existing technology are solved, and intelligent decision-making support and data security guarantees are provided.
Patent Information
- Application Number
- CN202510314757.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-08-01
AI Technical Summary
The existing visual centralized control center system has shortcomings in compatibility, scalability and data processing capabilities, and cannot meet the efficient, real-time and comprehensive monitoring needs in multiple stations, multiple services, and multiple scenarios.
A multi-station, multi-service, and multi-scenario visual central control center system is designed, integrating core monitoring system, visualization and display system, auxiliary decision-making and support system, communication and network system and auxiliary system, including SCADA system, video surveillance subsystem, three-dimensional visualization system, big data analysis system, intelligent alarm system, expert system, permission management system and data storage and backup system, realizing the system's high compatibility, scalability and powerful data processing capabilities.
Real-time monitoring and management of multiple stations, multiple services, and multiple scenarios is realized, monitoring efficiency and management level is improved, intelligent decision-making support is provided, system security and data reliability are ensured, and sustainable development in industries, energy, transportation and other fields is supported.
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Figure CN120406328A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of visual centralized control center monitoring, and particularly to a visual centralized control center system for multiple stations, multiple services, and multiple scenarios. Background Art
[0002] With the rapid development of modern industries, energy, transportation and other fields, the demand for centralized monitoring and management in multiple stations, multiple services, and multiple scenarios is increasing day by day. Traditional monitoring methods often have problems such as information islands, data non-sharing, and incomplete monitoring, and cannot meet the efficient, real-time, and comprehensive monitoring requirements in the current complex environment.
[0003] To solve the above problems, the visual centralized control center system came into being. The visual centralized control center system realizes the comprehensive monitoring and management of multiple stations, multiple services, and multiple scenarios through integrating various technical means such as video monitoring, data collection, and analysis and processing. However, there are still some deficiencies in the existing visual centralized control center system during application, such as poor system compatibility, poor scalability, insufficient data processing ability, etc., which limit its application in a wider range of fields. Summary of the Invention
[0004] (1) Invention Objectives
[0005] In view of this, the present invention proposes a visual centralized control center system for multiple stations, multiple services, and multiple scenarios, aiming to overcome the deficiencies of the prior art and provide a visual centralized control center system with better compatibility, stronger scalability, and more powerful data processing ability to meet the efficient, real-time, and comprehensive monitoring requirements in the current complex environment. Through the implementation of the present invention, the real-time monitoring and management of multiple stations, multiple services, and multiple scenarios can be realized, the monitoring efficiency and management level can be improved, and strong support can be provided for the sustainable development of industries, energy, transportation and other fields.
[0006] (2) Technical Solutions
[0007] A visual centralized control center system for multiple stations, multiple services, and multiple scenarios includes:
[0008] 1) A core monitoring system for real-time collecting the production data of each station and performing centralized monitoring and display. The core monitoring system includes:
[0009] An SCADA system that supports remote signaling, remote measurement, remote control, and remote adjustment functions, realizes the unified dispatching and centralized control of multiple stations, and has a self-diagnosis function, capable of real-time monitoring its own operation status and reporting abnormalities;
[0010] A computer monitoring system for assisting the SCADA system in data processing and monitoring;
[0011] Video surveillance subsystem: It consists of analog cameras, infrared cameras, and rotating cameras (3). These cameras are connected to an embedded DVR (Digital Video Recorder) separately or in combination to achieve all-round monitoring of the station environment. The embedded DVR transmits video data to the PC side for storage, viewing, and analysis through the communication and network system, and at the same time, the data is also backed up to a dedicated storage device;
[0012] 2) Visualization and display system, which is used to display information such as the equipment layout and operating status of each station in an intuitive way. The visualization and display system includes:
[0013] Three-dimensional visualization system: Using three-dimensional modeling technology, it displays information such as the equipment layout and operating status of each station in the form of three-dimensional graphics, supports operations such as zooming, rotating, and panning, and has a dynamic simulation function, capable of simulating the change process of equipment operating status;
[0014] Large screen display system: It is connected to a large screen display through a decoding matrix to display information from the core monitoring system and the video surveillance subsystem, including real-time video, production data, and alarm information;
[0015] 3) Auxiliary decision-making and support system, which is used to deeply mine and analyze the collected data, provide decision-making support, and monitor and alarm abnormal situations in real time. The auxiliary decision-making and support system includes:
[0016] Big data analysis system: It deeply mines and analyzes the massive data collected, provides data-driven decision-making support, supports a variety of data analysis algorithms and models, has the ability of real-time data analysis, and can process and display the data analysis results in real time;
[0017] Intelligent alarm system: According to preset rules and thresholds, it monitors and alarms abnormal situations in real time, supports a variety of alarm methods and notification channels, has the function of setting alarm priorities, and can automatically adjust the alarm priorities according to the severity of the abnormality;
[0018] Expert system: It integrates the knowledge and experience of domain experts, provides intelligent decision-making suggestions for management personnel, supports natural language processing and knowledge reasoning technologies, has the ability of self-learning, and can continuously optimize the accuracy of decision-making suggestions according to historical data and user feedback;
[0019] 4) Communication and network system, which is responsible for data transmission and communication between each station and the centralized control center, and constructs the network infrastructure of the centralized control center to support the interconnection and data sharing between each system;
[0020] 5) Auxiliary system, which is used to provide functions such as permission management, data storage, and backup to ensure the security, compliance, and data reliability of the system. It includes at least:
[0021] A permission management system that assigns and manages permissions for different users, ensures the security and compliance of the system, supports multiple permission control strategies and management methods, has an auditing function, and can record users' operation behaviors and generate audit logs;
[0022] A data storage and backup system that stores and backs up the collected data, ensures the security and availability of the data, uses highly reliable storage devices and backup strategies, has data compression and encryption functions, and can reduce the occupation of storage space and improve the security of the data.
[0023] Preferably, the SCADA system supports remote teleindication, telemetry, telecontrol, and teleadjustment functions, realizes the unified dispatching and centralized control of multiple stations, and has a self-diagnosis function, and can monitor its own operation status in real time and report anomalies.
[0024] Preferably, the 3D visualization system uses 3D modeling technology to display information such as the equipment layout and operation status of each station in a 3D graphic manner, and supports operations such as zooming, rotating, and panning; this system also has a dynamic simulation function and can simulate the change process of the equipment operation status.
[0025] Preferably, the big data analysis system deeply mines and analyzes the massive data collected, provides data-driven decision support, and supports multiple data analysis algorithms and models. This system also has real-time data analysis capabilities and can process and display the data analysis results in real time.
[0026] Preferably, the intelligent alarm system monitors and alarms abnormal situations in real time according to preset rules and thresholds, and supports multiple alarm methods and notification channels; this system also has an alarm priority setting function and can automatically adjust the alarm priority according to the severity of the anomaly.
[0027] Preferably, the expert system integrates the knowledge and experience of domain experts, provides intelligent decision-making suggestions for managers, and supports natural language processing and knowledge reasoning technologies; this system also has a self-learning ability and can continuously optimize the accuracy of decision-making suggestions according to historical data and user feedback.
[0028] Preferably, the permission management system assigns and manages permissions for different users, ensures the security and compliance of the system, and supports multiple permission control strategies and management methods; this system also has an auditing function and can record users' operation behaviors and generate audit logs.
[0029] Preferably, the data storage and backup system stores and backs up the collected data to ensure the security and availability of the data, and adopts highly reliable storage devices and backup strategies; the system also has data compression and encryption functions, which can reduce the occupancy of storage space and improve the security of the data.
[0030] From the above technical solutions, it can be seen that this application has the following beneficial effects:
[0031] 1. By integrating the core monitoring system, especially including the SCADA system and the video monitoring subsystem, the invention realizes the comprehensive and real-time monitoring of the production data and environmental status of each station. The SCADA system supports remote tele-signaling, telemetry, tele-control, and tele-adjustment functions, ensuring the unified dispatching and centralized control of multiple stations, and greatly improving the monitoring efficiency. At the same time, the video monitoring subsystem uses analog cameras, infrared cameras, and rotating cameras, combined with an embedded DVR, to achieve all-round and non-blind-spot monitoring of the station environment, further enhancing the comprehensiveness of the monitoring. This efficient monitoring method not only helps to detect and handle abnormal situations in a timely manner but also effectively prevents potential safety hazards, providing a strong guarantee for the stable operation of the station.
[0032] 2. Through the in-depth mining and analysis of massive data by the big data analysis system, the system can provide data-driven decision support to help managers make more scientific and reasonable decisions. The intelligent alarm system can monitor abnormal situations in real time and automatically alarm according to preset rules and thresholds, greatly improving the emergency response speed. In addition, the expert system integrates the knowledge and experience of domain experts and can provide intelligent decision-making suggestions for managers, supporting natural language processing and knowledge reasoning technologies, making the decision-making process more intelligent and convenient. These intelligent functions not only improve the overall performance of the system but also provide strong support for the optimized operation and sustainable development of the station.
[0033] 3. The invention provides functions such as permission management, data storage and backup, etc., ensuring the security and compliance of the system. The permission management system assigns and manages permissions for different users, supports multiple permission control strategies and management methods, and effectively prevents unauthorized access and operations. The data storage and backup system adopts highly reliable storage devices and backup strategies to store and back up the collected data, ensuring the security and availability of the data. At the same time, the system also has data compression and encryption functions, further improving the security of the data and reducing the occupancy of storage space. These security measures not only protect the stable operation of the system but also provide strong guarantees for the long-term preservation and efficient utilization of the data. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 It is a schematic structural flow diagram of the present invention;
[0035] Figure 2 Schematic diagram of the process of the present invention;
[0036] Figure 3 Schematic diagram of the core monitoring system of the present invention;
[0037] Figure 4 Schematic diagram of the visualization and display system of the present invention;
[0038] Figure 5 Schematic diagram of the communication and network system of the present invention;
[0039] Figure 6 Schematic diagram of the auxiliary system of the present invention.
[0040] In the figure: 1. Analog camera; 2. Infrared camera; 3. Rotating camera; 4. Embedded DVR; 5. PC; 6. Memory; 7. Large screen display. Detailed implementation manners
[0041] The following description is merely exemplary in nature and is not intended to limit the present disclosure, application, and uses. It should be understood that in all these figures, the same or similar reference numerals indicate the same or similar parts and features. Each figure only schematically shows the concept and principle of the embodiments of the present disclosure, and does not necessarily show the specific dimensions and their ratios of the embodiments of the present disclosure. Specific parts in a specific figure may be exaggerated to illustrate the relevant details or structures of the embodiments of the present disclosure.
[0042] Please refer to Figure 1-6 , an embodiment provided by the present invention:
[0043] A visual centralized control center system for multiple stations, multiple services, and multiple scenarios, comprising:
[0044] 1) A core monitoring system, configured to collect production data of each station in real time, and perform centralized monitoring and display. The core monitoring system includes:
[0045] The SCADA system, which supports remote tele-signaling, telemetry, tele-control, and tele-adjustment functions, realizes unified scheduling and centralized control of multiple stations, and has a self-diagnosis function, capable of real-time monitoring of its own operating state and reporting abnormalities;
[0046] A computer monitoring system, used to assist the SCADA system in data processing and monitoring;
[0047] Video surveillance subsystem: It consists of analog camera 1, infrared camera 2 and pan-tilt camera 3. These cameras are connected to the embedded DVR 4 (Digital Video Recorder) separately or in combination to achieve all-round monitoring of the station environment. The embedded DVR 4 transmits video data to the PC 5 for storage, viewing and analysis through the communication and network system, and at the same time, the data is also backed up to the dedicated storage 6.
[0048] 2) Visualization and display system, which is used to display information such as the equipment layout and operation status of each station in an intuitive way. The visualization and display system includes:
[0049] 3D visualization system: Using 3D modeling technology, it displays information such as the equipment layout and operation status of each station in the form of 3D graphics, supports operations such as zooming, rotating and panning, and has a dynamic simulation function, which can simulate the change process of the equipment operation status;
[0050] Large screen display system: It is connected to the large screen display 7 through a decoding matrix to display information from the core monitoring system and the video surveillance subsystem, including real-time video, production data and alarm information;
[0051] 3) Auxiliary decision-making and support system, which is used to deeply mine and analyze the collected data, provide decision-making support, and monitor and alarm abnormal situations in real time. The auxiliary decision-making and support system includes:
[0052] Big data analysis system: It deeply mines and analyzes the massive data collected, provides data-driven decision-making support, supports a variety of data analysis algorithms and models, has the ability of real-time data analysis, and can process and display the data analysis results in real time;
[0053] Intelligent alarm system: According to the preset rules and thresholds, it monitors and alarms abnormal situations in real time, supports a variety of alarm methods and notification channels, has the function of setting alarm priorities, and can automatically adjust the alarm priorities according to the severity of the abnormality;
[0054] Expert system: It integrates the knowledge and experience of domain experts, provides intelligent decision-making suggestions for managers, supports natural language processing and knowledge reasoning technologies, has the ability of self-learning, and can continuously optimize the accuracy of decision-making suggestions according to historical data and user feedback;
[0055] 4) Communication and network system, which is responsible for data transmission and communication between each station and the centralized control center, constructs the network infrastructure of the centralized control center, and supports the interconnection and data sharing between each system;
[0056] 5) Auxiliary system, which is used to provide functions such as permission management, data storage and backup, etc., to ensure the security, compliance and data reliability of the system, and at least includes:
[0057] The permission management system assigns and manages permissions for different users to ensure the security and compliance of the system, supports multiple permission control policies and management methods, and has an auditing function that can record users' operation behaviors and generate audit logs;
[0058] The data storage and backup system stores and backs up the collected data to ensure the security and availability of the data, adopts highly reliable storage devices and backup strategies, and has data compression and encryption functions, which can reduce the occupancy of storage space and improve the security of the data.
[0059] Furthermore, the SCADA system supports remote signaling, telemetry, remote control, and remote adjustment functions, realizes the unified scheduling and centralized control of multiple stations, and has a self-diagnosis function that can monitor its own operating status in real time and report anomalies.
[0060] Furthermore, the 3D visualization system uses 3D modeling technology to display information such as the equipment layout and operating status of each station in a 3D graphic manner and supports operations such as zooming, rotating, and panning; the system also has a dynamic simulation function that can simulate the change process of the equipment operating status.
[0061] Furthermore, the big data analysis system deeply mines and analyzes the massive data collected, provides data-driven decision support, and supports multiple data analysis algorithms and models. The system also has real-time data analysis capabilities and can process and display the data analysis results in real time.
[0062] Furthermore, the intelligent alarm system monitors and alarms abnormal situations in real time according to preset rules and thresholds, and supports multiple alarm methods and notification channels; the system also has an alarm priority setting function that can automatically adjust the alarm priority according to the severity of the anomaly.
[0063] Furthermore, the expert system integrates the knowledge and experience of domain experts to provide intelligent decision-making suggestions for managers and supports natural language processing and knowledge reasoning technologies; the system also has a self-learning ability that can continuously optimize the accuracy of decision-making suggestions according to historical data and user feedback.
[0064] Furthermore, the permission management system assigns and manages permissions for different users to ensure the security and compliance of the system, and supports multiple permission control policies and management methods; the system also has an auditing function that can record users' operation behaviors and generate audit logs.
[0065] Furthermore, the data storage and backup system stores and backs up the collected data to ensure the security and availability of the data, and adopts highly reliable storage devices and backup strategies; the system also has data compression and encryption functions, which can reduce the occupation of storage space and improve the security of the data.
[0066] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention. Any reference signs in the claims should not be construed as limiting the claimed invention.
Claims
1. A visual centralized control center system for multiple stations, multiple services, and multiple scenarios, characterized in that, Including: 1) Core monitoring system, which is used to collect the production data of each station in real time and conduct centralized monitoring and display. The core monitoring system includes: SCADA system, which supports remote tele-signaling, telemetry, remote control, and remote adjustment functions, realizes the unified dispatching and centralized control of multiple stations, and has a self-diagnosis function, capable of real-time monitoring of its own operating status and reporting abnormalities; Computer monitoring system, which is used to assist the SCADA system in data processing and monitoring; Video monitoring subsystem: It consists of analog cameras (1), infrared cameras (2), and rotating cameras (3). These cameras are respectively or combined to access the embedded DVR (4) (digital video recorder) to achieve all-round monitoring of the station environment. The embedded DVR (4) transmits the video data to the PC side (5) for storage, viewing, and analysis through the communication and network system, and at the same time, the data is also backed up to the dedicated storage (6); 2) Visualization and display system, which is used to display the information such as the equipment layout and operating status of each station in an intuitive way. The visualization and display system includes: Three-dimensional visualization system, which uses three-dimensional modeling technology to display the information such as the equipment layout and operating status of each station in the form of three-dimensional graphics, supports operations such as zooming, rotating, and panning, and has a dynamic simulation function, capable of simulating the change process of the equipment operating status; Large screen display system: It is connected to the large screen display (7) through a decoding matrix to display the information from the core monitoring system and the video monitoring subsystem, including real-time video, production data, and alarm information; 3) Auxiliary decision-making and support system, which is used to deeply mine and analyze the collected data, provide decision-making support, and conduct real-time monitoring and alarm for abnormal situations. The auxiliary decision-making and support system includes: Big data analysis system, which deeply mines and analyzes the massive data collected, provides data-driven decision-making support, supports a variety of data analysis algorithms and models, has real-time data analysis capabilities, and is capable of real-time processing and displaying the data analysis results; Intelligent alarm system, which conducts real-time monitoring and alarm for abnormal situations according to preset rules and thresholds, supports a variety of alarm methods and notification channels, has an alarm priority setting function, and is capable of automatically adjusting the alarm priority according to the severity of the abnormality; Expert system, which integrates the knowledge and experience of domain experts, provides intelligent decision-making suggestions for managers, supports natural language processing and knowledge reasoning technologies, has a self-learning ability, and is capable of continuously optimizing the accuracy of decision-making suggestions according to historical data and user feedback; 4) Communication and network system, which is responsible for data transmission and communication between each station and the centralized control center, constructs the network infrastructure of the centralized control center, and supports the interconnection and data sharing between each system; The auxiliary system is used to provide functions such as permission management, data storage, and backup to ensure the security, compliance, and reliability of the system. It includes at least: The permission management system assigns and manages permissions for different users to ensure the security and compliance of the system, supports multiple permission control strategies and management methods, and has an auditing function that can record users' operation behaviors and generate audit logs. The data storage and backup system stores and backs up the collected data to ensure the security and availability of the data, adopts highly reliable storage devices and backup strategies, and has data compression and encryption functions, which can reduce the occupation of storage space and improve the security of the data.
2. The visual centralized control center system for multiple stations, multiple services, and multiple scenarios according to claim 1, wherein: The SCADA system supports remote tele-signaling, telemetry, tele-control, and tele-adjustment functions, realizes the unified dispatching and centralized control of multiple stations, and has a self-diagnosis function that can monitor its own operating status in real time and report anomalies.
3. A visual centralized control center system for multiple stations, multiple services, and multiple scenarios according to claim 1, characterized in that: The 3D visualization system uses 3D modeling technology to display information such as the equipment layout and operating status of each station in a 3D graphic manner, and supports operations such as zooming, rotating, and panning; this system also has a dynamic simulation function that can simulate the change process of the equipment operating status.
4. A visual centralized control center system for multiple stations, multiple services, and multiple scenarios according to claim 1, characterized in that: The big data analysis system deeply mines and analyzes the massive data collected, provides data-driven decision support, and supports multiple data analysis algorithms and models. This system also has the ability of real-time data analysis, which can process and display the data analysis results in real time.
5. A visual centralized control center system for multiple stations, multiple services, and multiple scenarios according to claim 1, characterized in that: The intelligent alarm system monitors and alarms abnormal situations in real time according to preset rules and thresholds, and supports multiple alarm methods and notification channels; this system also has an alarm priority setting function that can automatically adjust the alarm priority according to the severity of the anomaly.
6. A visual centralized control center system for multiple stations, multiple services, and multiple scenarios according to claim 1, wherein: The expert system integrates the knowledge and experience of domain experts to provide intelligent decision-making suggestions for managers, and supports natural language processing and knowledge reasoning technologies; this system also has a self-learning ability that can continuously optimize the accuracy of decision-making suggestions according to historical data and user feedback.
7. A visual centralized control center system for multiple stations, multiple services, and multiple scenarios according to claim 1, characterized in that: The permission management system assigns and manages permissions for different users to ensure the security and compliance of the system, and supports multiple permission control strategies and management methods; this system also has an auditing function that can record users' operation behaviors and generate audit logs.
8. A visual centralized control center system for multiple stations, multiple services, and multiple scenarios according to claim 1, characterized in that: The data storage and backup system stores and backs up the collected data to ensure the security and availability of the data, and adopts highly reliable storage devices and backup strategies. This system also has data compression and encryption functions, which can reduce the occupation of storage space and improve the security of the data.