Intelligent campus intelligent integrated system
By introducing a central processing module and a multi-functional management module into the smart campus, the problem of low integration has been solved, achieving seamless integration and efficient management of various subsystems, improving system integration and operating efficiency, and reducing costs and energy consumption.
Patent Information
- Application Number
- CN202211624802.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-16
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2042-12-16
AI Technical Summary
Existing smart campus intelligent integrated systems suffer from low integration, limited functionality, and low operating efficiency, resulting in severe information silos, high management difficulty, high maintenance costs, and frequent system failures during equipment upgrades.
Design a smart campus intelligent integrated system, including a central processing module and multiple functional modules such as basic management, alarm management, subsystem report management, operation and maintenance management, inspection management and maintenance management. The system will seamlessly integrate the subsystems through efficient communication interface technology to achieve unified management and standardized operation interface.
It improves system integration and operational efficiency, reduces costs and energy consumption, realizes interconnection and efficient management of various subsystems, and provides multiple platform services such as integrated monitoring, mobile alarms, and facility operation and maintenance management, thereby enhancing the overall and intelligent level of management.
Smart Images

Figure CN116125865B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of campus intelligent management technology, and specifically to a smart campus intelligent integrated system. Background Technology
[0002] In recent years, the construction of smart campuses has become an inevitable development trend for universities. The operation of smart campuses often requires the integration of intelligent systems. Currently, most intelligent integrated systems in China adopt a SOA distributed architecture. The architecture process uses locally running page configuration tools to design dynamic pages, which are then published to a web server to provide information services. The software platform is mostly Microsoft server platform. The hardware and software devices of the integrated intelligent subsystems are deployed independently, each with its own server and control host to achieve its own functions. This hinders the interconnection and interoperability between intelligent systems in multiple buildings, making it difficult to fully share information and data. The system integration is low, resulting in severe information silos. Low integration also leads to high management difficulty, high maintenance costs, and frequent system failures during equipment upgrades, resulting in a short average lifespan for the integrated system. Furthermore, equipment maintenance processes are incomplete or even absent, equipment assets lack full lifecycle management, staff handle tasks randomly, resulting in low efficiency and no feedback mechanism after processing.
[0003] Existing technologies such as the cross-platform smart campus system disclosed in CN113723770A and the smart campus management system disclosed in CN112132525A mainly provide digital management systems for schools. Their coverage is limited, and they do not integrate functions such as disaster alarms, which results in low system integration.
[0004] Therefore, developing a smart campus intelligent integrated system that is comprehensive in function, highly integrated, and highly efficient in overall operation is of great practical significance. Summary of the Invention
[0005] In view of the above-mentioned defects in the existing technology, the present invention provides a smart campus intelligent integrated system with comprehensive functions, high integration and high overall efficiency, so as to solve the problems of low integration, single function and low operating efficiency of the existing smart campus intelligent integrated system.
[0006] To achieve the above objectives, the present invention provides the following technical solution:
[0007] A smart campus intelligent integrated system includes a central processing module and basic management modules, alarm management modules, subsystem report management modules, operation and maintenance management modules, inspection management modules, maintenance management modules, and all subsystems that are connected to the central processing module in communication.
[0008] The basic management module is used to adjust system setting parameters and manage user information;
[0009] The alarm management module is used to manage all the alarm-related information of the subsystems supported by the integrated system;
[0010] The subsystem report management module is used to record and manage the operation data information of all the subsystems supported by the integrated system;
[0011] The operation and maintenance management module is used to adjust the parameters of all the subsystems supported by the integrated system and manage the operation work orders of the integrated system;
[0012] The inspection management module is used to manage inspection information;
[0013] The maintenance management module is used to manage the maintenance information of all the devices involved in the integrated system;
[0014] The central processing module is used to obtain the relevant statuses of all the subsystems supported by the integrated system and transfer them to the alarm management module, the subsystem report management module, the operation and maintenance management module, and the maintenance management module, and send the control instructions generated by the operation and maintenance management module and the alarm management module to the subsystems corresponding to the control instructions.
[0015] The intelligent integrated system of the smart campus of the present invention can organically integrate the various subsystems on campus, can achieve the unified management of the subsystems, can greatly improve the overall efficiency, each subsystem does not need to be equipped with a separate control unit, can reduce costs and energy consumption, and can effectively solve the problems existing in the current campus intelligent integrated system such as information islands, power loss, high operation costs, etc., and has great application prospects.
[0016] The above-mentioned intelligent integrated system of the smart campus integrates the four system functions of the security technical prevention system, equipment operation and maintenance, energy consumption analysis, and emergency command into one, adopts an efficient communication interface technology, seamlessly integrates the functional modules of each system, makes its operation interface standardized, normalized, and unified, and deeply integrates the business modules between each system, and finally achieves the interconnection, high-efficiency operation and management of each system. At the same time, relying on the centralized supervision of the operation information of the system equipment, it provides various platform services such as integrated monitoring, mobile alarm, facility operation and maintenance management, energy consumption analysis, multimedia information release, etc., realizes the intelligent integrated management platform, and achieves the purpose of global management and intelligent operation.
[0017] As a preferred technical solution:
[0018] The aforementioned intelligent integrated system for a smart campus includes all its subsystems, such as an automatic fire alarm system, a security technology prevention system, a dormitory management alarm subsystem, a transparent kitchen subsystem, an electronic examination room auxiliary subsystem, and an emergency response subsystem. This is merely one feasible technical solution; it can integrate 20 low-voltage intelligent subsystems as needed, including automatic fire alarm, video surveillance, intrusion alarm, access control, electronic patrol, elevator system, parking management, HVAC, water supply and drainage, power distribution monitoring, intelligent public lighting and landscape lighting, energy efficiency monitoring, information guidance and dissemination, public address system, dormitory management alarm, transparent kitchen, electronic examination room auxiliary system, smart irrigation, smart leakage monitoring, and emergency response. All the low-voltage intelligent subsystems requiring monitoring are integrated onto a single control panel (i.e., control center) for centralized management, thereby achieving the goals of "reducing labor costs," "ensuring operational quality," and "reducing operational energy consumption."
[0019] As described above, the basic management module of the intelligent integrated system for a smart campus includes a user authentication unit, a user management unit, a system configuration unit, and a log management unit.
[0020] User authentication unit: Independent user authentication management, adopting a unified single sign-on that is easy for users to manage and remember, providing users with unified identity authentication functions. When switching to other systems, there is no need to enter the username and password again, achieving the high-quality service of "login once, access multiple times".
[0021] User Management Unit: The system provides two user groups by default: management users and regular users. Administrators can set access permissions, access areas, system access, editing permissions, and control permissions for operators in each subsystem; all user operation records will be automatically archived and cannot be deleted or modified.
[0022] System Configuration Unit: Provides initial configuration, including project name, location, project image, and project description. It offers editable functionality, allowing users to modify it themselves.
[0023] Log Management Unit: User operation logs can record user operation platform data and can be exported in EXCEL format; system operation logs can record interface communication and control command data of subsystem devices and can be exported in EXCEL format.
[0024] As described above, in a smart campus intelligent integrated system, the alarm management module includes a real-time alarm unit, a historical alarm unit, an alarm classification and confirmation unit, and an alarm linkage unit.
[0025] The alarm management module mainly includes two functions: real-time alarms and historical alarms. When an alarm occurs, on-duty personnel perform corresponding operations according to the system prompts. When there are too many alarm messages, batch operations can be performed. After the corresponding operations are completed, the alarm messages that are being processed and those that have been processed are converted into historical alarm records.
[0026] Real-time alarm unit: Pie chart shows the percentage of different alarm levels in the total number of alarms on the day; line chart shows the trend of different alarm levels on the day; table shows real-time alarm information, and users in this area can "confirm", "process" and open the video of the alarm area for a specific alarm.
[0027] Historical alarm unit: Pie charts display the percentage of total alarms for different alarm levels in daily, monthly, and yearly units; line charts display the trend of different alarm levels in daily, monthly, and yearly units; tables allow querying historical alarm information by time period, level, subsystem, status, and whether alarms from the same source are merged.
[0028] Alarm classification and confirmation unit:
[0029] Alarm Classification: The system adopts a real-time centralized alarm management approach, which can centrally display and process various alarms from different subsystems, and supports alarm level priority sorting. Alarm levels can be extended and customized, and are divided into three levels by default: emergency alarm, important alarm, and general alarm, represented by yellow, orange, and red respectively.
[0030] Alarm Confirmation: When an alarm occurs, the system will notify administrators and display specific alarm information via SMS, sound alarm, alarm lights, and other methods, according to the alarm level and category. The system will not stop alarming and return to normal until the alarm is resolved and administrators manually deactivate the system to confirm that the fault has been resolved. When there are too many alarm messages, you can click "Confirm All" to perform batch operations.
[0031] Alarm Management:
[0032] Users can query historical alarm information for all alarms and faults generated by the system by time period, level, subsystem, status, and whether alarms from the same source are merged. The system also displays statistical and trend analysis graphs of historical alarm information by time (day, month) and different alarm levels.
[0033] When a network communication anomaly occurs, a communication anomaly alarm is triggered. The alarm automatically clears once communication is restored. The alarm system records the alarm start time and alarm clearing time. After recovery, the data can be automatically or manually repaired within a reasonable range to complete data restoration, ensuring the integrity and accuracy of energy consumption data.
[0034] Alarm linkage unit: When a real-time alarm occurs, manually clicking the video will bring up a video window associated with the alarm point for alarm confirmation. In multi-screen mode, manually clicking the electronic map when a real-time alarm occurs will jump to the electronic map interface where the alarm point is located, allowing for a more intuitive view of the alarm's location.
[0035] As described above, in a smart campus intelligent integrated system, the subsystem report management module includes a real-time status display unit and a historical status display unit.
[0036] Subsystem Report Management Module
[0037] The system can record historical operational data from various intelligent subsystems and provide users with tools for browsing, querying, and analyzing it. Depending on user needs, it displays real-time graphs (real-time change curves of operational data) and historical trend graphs (historical curves of operational data); it also displays histograms and pie charts of energy consumption data; and supports user-defined graphical display of any information in the database. The software outputs reports in a graphical format, including but not limited to Excel, PDF, and hypertext formats.
[0038] Real-time status display unit: Real-time charts are continuously refreshed and dynamically changing, while historical charts are static and their values are user-defined. Historical trend charts provide a basis for system tuning, operation monitoring, preventive maintenance, and system maintenance decisions.
[0039] Historical Status Display Unit: Users can display any parameter stored on the server as a trend chart according to their actual needs. In other words, the trend chart supports user-defined queries and displays.
[0040] Equipment operation history reports: Users can query equipment by start date, end date, and subsystem, and export the reports in tabular format with support for printing. The system also supports displaying the trend of each subsystem over different time periods in a line graph format.
[0041] Equipment operation history trend chart: The equipment operation history trend chart displays the operation data of each subsystem in different time periods in units of "day, month, year", and is presented in the form of a line graph.
[0042] As described above, in a smart campus intelligent integrated system, the operation and maintenance management module includes an equipment management unit and a work order management unit.
[0043] Equipment Management Unit: Equipment management is an important part of operation and maintenance management. Equipment management is divided into equipment template configuration and equipment information management.
[0044] Device Template Configuration: A device template is a complete set of standard attribute templates. Based on this template, relevant devices can be quickly added, giving the devices an abstract model concept that facilitates subsequent application operations. User-defined configurations are supported.
[0045] Equipment information management: Equipment templates can be used to create, modify, and delete equipment.
[0046] Work order management unit:
[0047] To-do list
[0048] The pending work orders are mainly used by maintenance users, who can also be understood as customer service specialists. This management module enables operations throughout the entire lifecycle of a work order, including submitting an order, dispatching an order, accepting an order, accepting an order, evaluating an order, and closing an order.
[0049] Work order list
[0050] The work order list is a feature module that allows operations and maintenance personnel to view the processing details of all work orders, track their entire lifecycle, and facilitate problem identification. Administrators can promptly see the status of work orders, including those created, processing, pending approval, and completed, and proceed with the next steps.
[0051] Mobile App
[0052] Managers can manage the entire process of work orders—including creation, approval, acceptance, closure, verification, and evaluation—through a mobile app. It also enables mobile management of maintenance and inspection tasks and supports QR code scanning and photo taking. This effectively improves employee work efficiency and reduces work order error rates.
[0053] As described above, in a smart campus intelligent integrated system, the patrol management module includes a patrol plan management unit and a patrol record management unit.
[0054] Patrol Management Module
[0055] The main function of the inspection management system is to develop periodic inspection plans and inspect the computer room and equipment by scanning the QR code in the computer room via a mobile app. If any equipment abnormalities are found during the inspection, they can be addressed directly; if the problem cannot be resolved on-site, a fault report can be submitted.
[0056] In addition, the client can directly create inspection plans. The designated person in charge of the inspection plan executes the inspection on the APP, and can report equipment issues during the execution of the inspection plan.
[0057] Inspection Plan Management Unit: Develop periodic inspection plans, including data center inspections, equipment inspections, and custom inspections. Each inspection plan requires a designated person in charge.
[0058] Inspection Record Management Unit: Inspection record management mainly involves querying the execution status of inspection records. Inspection records can be queried based on the work order name, type, responsible person, and work order status.
[0059] As described above, in a smart campus intelligent integrated system, the maintenance management module includes a maintenance plan management unit and a maintenance record query unit.
[0060] Maintenance Management Module
[0061] Its main function is to create equipment maintenance plans based on daily, weekly, monthly, and yearly schedules, and then push these plans to the maintenance worker's APP in the form of work orders at specified times to carry out equipment maintenance work.
[0062] Maintenance Plan Management Unit
[0063] Enable Maintenance Plan: Once the maintenance plan is enabled and takes effect, maintenance records will be generated. Click the "Enable" text in the maintenance plan management page list to enable the maintenance plan.
[0064] To modify the maintenance plan: Click the "Modify" text in the list on the maintenance plan management page to modify the content of the maintenance plan.
[0065] To delete a maintenance plan: Click the "Delete" button in the maintenance plan management page list to delete the maintenance plan.
[0066] Maintenance record query unit: Enter the query criteria, click the query button at the top of the maintenance record management page list, and query the maintenance records.
[0067] The smart campus intelligent integrated system described above runs on a cloud server;
[0068] The campus has a control center for the smart campus intelligent integrated system. The smart campus intelligent integrated system can be run by accessing the cloud server through the control center.
[0069] The above technical solution is only one feasible technical solution of the present invention. The scope of protection of the present invention is not limited thereto. Those skilled in the art can reasonably adjust the specific design according to actual needs.
[0070] The above invention has the following advantages or beneficial effects:
[0071] The intelligent integrated system for smart campuses of this invention can realize functions such as comprehensive operation monitoring, alarm / fault management, and equipment maintenance / repair management of electromechanical equipment on campus. Its advantages are reflected in the following aspects:
[0072] 1. Unified Management
[0073] 1.1 System Integration: The platform adopts efficient universal interface technology and seamlessly integrates with different subsystems through specific system exchange layers and standard communication protocols.
[0074] 1.2 Information Sharing: Dispersed and independent intelligent subsystems are centrally displayed using a unified environment and software interface. The software presents various information desired by managers in a vivid graphical format and a user-friendly interface.
[0075] 2. Improve efficiency
[0076] 2.1 Self-operating mode (one-click operation): Based on the overall operating conditions of the property, two or more subsystems work together to ensure that the electromechanical equipment of the entire building or parts thereof automatically operates according to a pre-set mode without human intervention. The operating mode can use a timeline as the reference point for the execution sequence of operating events, and switch operations in an orderly manner, effectively reducing human interference and the number of personnel required.
[0077] 2.2 Unified Storage: Through an open working platform, data from each subsystem is collected and translated, corresponding service programs are established for each system, and service requests from all authorized users on the network are accepted to achieve data sharing.
[0078] 2.3 Cost Reduction and Efficiency Improvement: The integrated system uses software functions instead of hardware dry contact linkage, which not only saves costs but also increases the amount of integrated information and system functions. It allows administrators to operate and manage various intelligent subsystems from one or more computers using the same interface, which not only facilitates management but also reduces the number of administrators and improves management efficiency.
[0079] 3. User-friendly operation
[0080] 3.1 Simple and Easy to Use: The system establishes an integrated platform in the central control room, allowing for centralized monitoring, control, and management of integrated subsystems within a single room and on a single platform. This simple and easy-to-use control mode greatly simplifies the complexity of the work and reduces the requirements for management personnel.
[0081] 3.2 Visually Appealing and Easy to Understand: The system displays information about each subsystem, device, and floor using electronic maps and device lists, providing a simple and user-friendly interface. It offers users a rich and maintainable library of basic graphics, allowing them to create electronic maps on the development platform using a drag-and-drop method. After setting the correspondence between graphics and relevant devices, users can easily monitor various devices within the building on the deployment map.
[0082] 4. Enhance asset value
[0083] 4.1 Improve equipment quality: Implement full lifecycle management for equipment, from equipment purchase and basic information entry; to work order submission, approval, assignment, tracking, and satisfaction feedback; and then to the formulation of new equipment purchase plans, to achieve closed-loop management, so that managers have a comprehensive understanding of each piece of equipment; and replace or eliminate equipment, brands, or suppliers with high failure rates or instability.
[0084] 4.2 Extend equipment life: Strictly implement equipment maintenance, inspection and upkeep plans to extend asset life, reduce equipment safety hazards and prevent accidents, and increase asset value.
[0085] 5. Reduce energy consumption
[0086] 5.1 Refined Management: Managers can monitor energy flow in real time, changing the previous extensive energy management approach. The system provides services such as remote monitoring, energy auditing, and energy consumption statistics, laying the foundation for in-depth exploration of the school's energy-saving potential.
[0087] 5.2 Precise Analysis: Through online monitoring with metering devices, real-time energy consumption information such as power load, electricity consumption, voltage, power quality, gas consumption, fuel consumption, and water supply is collected. This provides timely, complete, and accurate basic data to the higher-level information system, offering a technical foundation for the implementation of business strategies such as energy conservation, emission reduction, and cost reduction. This, in turn, supports analysis and decision-making in various management aspects of the school.
[0088] 6. Assist in safety management
[0089] It provides platform support and comprehensive information support for automatic fire alarm systems, security technology prevention systems, dormitory management alarm subsystems, transparent kitchen systems, electronic examination room auxiliary subsystems, and emergency response subsystems, enabling efficient integration and operation of various systems and comprehensively improving the technical quality of school safety management.
[0090] 7. Enable emergency command
[0091] In the event of various public safety emergencies, the emergency response subsystem can be activated at any time. The Intelligent Integrated System (IBMS) control center can be transformed into an emergency response command center, providing rapid and comprehensive information support for command and decision-making, effectively preventing, controlling and eliminating the harm of public safety emergencies, realizing visualized coordinated command, orderly dispatch and effective supervision, and improving emergency response efficiency. Attached Figure Description
[0092] The invention, its features, shape, and advantages will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings. Like reference numerals denote like parts throughout the drawings. The drawings are not drawn to scale; their focus is on illustrating the gist of the invention.
[0093] Figure 1 This is a schematic diagram of the intelligent integrated system for smart campuses according to the present invention;
[0094] Figure 2 A structural diagram of the basic management module;
[0095] Figure 3 This is a structural diagram of the alarm management module;
[0096] Figure 4 This is a structural diagram of the report management module of the subsystem;
[0097] Figure 5 This is a structural diagram of the operation and maintenance management module;
[0098] Figure 6 This is a structural diagram of the patrol management module;
[0099] Figure 7 This is a structural diagram of the maintenance management module. Detailed Implementation
[0100] The structure of the present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention.
[0101] Example 1
[0102] A smart campus intelligent integrated system, such as Figure 1 As shown, it includes a central processing module and basic management modules, alarm management modules, subsystem report management modules, operation and maintenance management modules, inspection management modules, maintenance management modules, and all subsystems that are connected to the integrated system and communicate with the central processing module.
[0103] The integrated system includes all its subsystems, such as an automatic fire alarm system, a security technology prevention system, a dormitory management alarm subsystem, a transparent kitchen system, an electronic examination room external support subsystem, and an emergency response subsystem.
[0104] The basic management module is used to adjust system settings and manage user information, such as... Figure 2 The diagram shows the user authentication unit, user management unit, system configuration unit, and log management unit.
[0105] User authentication unit: Independent user authentication management, adopting a unified single sign-on that is easy for users to manage and remember, providing users with unified identity authentication functions. When switching to other systems, there is no need to enter the username and password again, achieving the high-quality service of "login once, access multiple times".
[0106] User Management Unit: The system default provides two user groups: administrative users and ordinary users. The administrator can set the access rights, access areas, accessed systems, editing rights, control rights, etc. of the operators for each subsystem; the operation records of all users will be automatically archived and cannot be deleted or modified.
[0107] System Configuration Unit: Provide initial configuration, including project name, location, project pictures and project profiles. Provide an editable function that users can modify by themselves.
[0108] Log Management Unit: The user operation log can record the user operation platform data and can be exported in the EXCEL format; the system operation log can record the interface communication and control instruction data of the subsystem devices and can be exported in the EXCEL format.
[0109] Alarm Management Module, used to manage all the alarm-related information of the subsystems supporting the integrated system, as shown in Figure 3 including a real-time alarm unit, a historical alarm unit, an alarm classification and confirmation unit, and an alarm linkage unit;
[0110] The alarm management module mainly includes two major functions: real-time alarm and historical alarm. When an alarm occurs, the duty personnel perform corresponding operations according to the system prompt. When there are too many alarm messages, batch operations can be performed. After the corresponding operations are completed, the alarm messages being processed and those that have been processed are converted into historical alarm records.
[0111] Real-time Alarm Unit: A pie chart shows the percentage of different alarm levels in the total number of alarms on the current day; a line chart shows the trend of different alarm levels on the current day; a table shows the real-time alarm information. In this area, users can "confirm", "process" a specific alarm message and open the video of the alarm area.
[0112] Historical Alarm Unit: A pie chart shows the percentage of different alarm levels in the total number of alarms on a daily, monthly, or yearly basis; a line chart shows the trend of different alarm levels on a daily, monthly, or yearly basis; a table queries historical alarm information according to time period, level, subsystem, status, and whether to merge homologous alarm conditions.
[0113] Alarm Classification and Confirmation Unit:
[0114] Alarm Classification: The system adopts a real-time alarm centralized management method, which can centrally display and process various alarms in each subsystem, and supports the arrangement of alarm level priorities. Alarm levels support extended customization and are default divided into three levels: emergency alarm, important alarm, and general alarm, represented by yellow, orange, and red respectively.
[0115] Alarm Confirmation: When the system alarms, it will prompt the management personnel in various ways such as text messages, audible alarms, and alarm warning lights according to the alarm level and category, and display the specific alarm information. Until the alarm fault is handled and the management personnel manually解除 the system alarm and confirm that the fault has been handled, the system will stop the alarm state and resume normal operation. When there are too many alarm messages, you can click "All Confirmations" for batch operations.
[0116] Alarm Management:
[0117] For all alarm and fault information generated by the system, users can query historical alarm information according to time periods, levels, subsystems, statuses, and whether to merge homologous alarm conditions, and display the statistics and trend analysis graphs of historical alarm information in the form of time (day, month) and different-level alarms.
[0118] When a communication anomaly occurs in the network, a communication anomaly alarm is triggered. When the communication resumes normal, the alarm can be automatically解除. The alarm system records the alarm start time and alarm elimination time. After recovery, the data can be automatically or manually patched within a reasonable range to complete the data repair work to ensure the integrity and authenticity of energy consumption data.
[0119] Alarm Linkage Unit: When a real-time alarm occurs, manually click on the video to pop up the video window associated with the alarm point for alarm situation confirmation. Under the condition of multiple screens on one machine, when a real-time alarm occurs, manually click on the electronic map, and it can jump to the electronic map interface where the alarm point is located to view the location of the alarm in a more intuitive way.
[0120] The subsystem report management module is used to record and manage the operation data information of all subsystems supporting the integrated management system, such as Figure 4 shown including a real-time status display unit and a historical status display unit;
[0121] The subsystem report management module can record the historical operation data of each intelligent subsystem and provide means for users to browse, query, and analyze. According to user needs, display the real-time graph (real-time change curve of operation data) and historical trend graph (historical curve of operation data) of the information; display the histogram and pie chart of energy consumption data; support user-defined and graphical display of any information in the database. The software customizes and outputs reports in the form of graphics and text, and the report formats include but are not limited to Excel, PDF, hypertext, etc.
[0122] The real-time status display unit: The real-time chart is continuously refreshed and is dynamically changing. The historical chart is static and unchanged, and its value is specified by the user. The historical trend graph provides a basis for system tuning, operation monitoring, preventive maintenance, and system maintenance decision-making, etc.
[0123] Historical Status Display Unit: Users can display any parameter stored in the server in the form of a trend chart according to actual needs. That is, the trend chart supports user-defined queries and displays.
[0124] Device Operation History Report: Users can query devices by start date, end date, and subsystem, and export and print them in tabular form. The system also supports displaying the trend of each subsystem in different time periods of user-defined queries in the form of a line chart.
[0125] Device Operation History Trend Chart: The device operation history trend chart displays the operation data of each subsystem in different time periods in units of "day, month, year" and shows it in the form of a line chart.
[0126] The operation and maintenance management module is used to adjust the parameters of all subsystems supporting the integrated system and manage the operation work orders of the integrated system, such as Figure 5 shown, including the device management unit and the work order management unit;
[0127] Device Management Unit: Device management is an important part of operation and maintenance management. Device management is divided into device template configuration and device information management.
[0128] Device Template Configuration: The device template is a complete set of standard attribute templates. Based on this template, relevant devices can be quickly added, giving the devices an abstract model concept for convenient subsequent application operations. User-defined configuration is supported.
[0129] Device Information Management: Based on the device template, the creation, modification, and deletion of devices can be completed.
[0130] Work Order Management Unit:
[0131] Pending Work Orders
[0132] Pending work orders are mainly for the users of operation and maintenance, which can also be understood as customer service specialists. In this management module, operations throughout the entire life cycle of work orders, such as reporting, dispatching, receiving, acceptance, evaluation, and closing, can be implemented.
[0133] Work Order List
[0134] The work order list is for operation and maintenance management personnel. Through this function module, they can view the processing details of all work orders, track the entire life cycle of work orders, and facilitate management to discover problems. Managers can timely see the status of work orders, including created, in progress, pending approval, and completed work orders, and perform the next operation.
[0135] Mobile APP
[0136] Managers can manage the entire process of work orders—including creation, approval, acceptance, closure, verification, and evaluation—through a mobile app. It also enables mobile management of maintenance and inspection tasks and supports QR code scanning and photo taking. This effectively improves employee work efficiency and reduces work order error rates.
[0137] The patrol management module is used to manage patrol information, such as... Figure 6 The diagram shows the patrol plan management unit and the patrol record management unit;
[0138] Patrol Management Module
[0139] The main function of the inspection management system is to develop periodic inspection plans and inspect the computer room and equipment by scanning the QR code in the computer room via a mobile app. If any equipment abnormalities are found during the inspection, they can be addressed directly; if the problem cannot be resolved on-site, a fault report can be submitted.
[0140] In addition, the client can directly create inspection plans. The designated person in charge of the inspection plan executes the inspection on the APP, and can report equipment issues during the execution of the inspection plan.
[0141] Inspection Plan Management Unit: Develop periodic inspection plans, including data center inspections, equipment inspections, and custom inspections. Each inspection plan requires a designated person in charge.
[0142] Inspection Record Management Unit: Inspection record management mainly involves querying the execution status of inspection records. Inspection records can be queried based on the work order name, type, responsible person, and work order status.
[0143] The maintenance management module is used to manage maintenance information for all equipment involved in the integrated system, such as... Figure 7 The diagram shows a maintenance plan management unit and a maintenance record query unit;
[0144] The main function of the maintenance management module is to implement equipment maintenance plans based on daily, weekly, monthly, and yearly schedules, and then push these plans to the maintenance worker's APP in the form of work orders at specified times to carry out equipment maintenance work.
[0145] Maintenance Plan Management Unit
[0146] Enable Maintenance Plan: Once the maintenance plan is enabled and takes effect, maintenance records will be generated. Click the "Enable" text in the maintenance plan management page list to enable the maintenance plan.
[0147] To modify the maintenance plan: Click the "Modify" text in the list on the maintenance plan management page to modify the content of the maintenance plan.
[0148] To delete a maintenance plan: Click the "Delete" button in the maintenance plan management page list to delete the maintenance plan.
[0149] Maintenance record query unit: Enter the query criteria, click the query button at the top of the maintenance record management page list, and query the maintenance records.
[0150] The central processing module is used to obtain the relevant status of all subsystems supporting the integrated system and transmit them to the alarm management module, subsystem report management module, operation and maintenance management module, and maintenance management module. It also sends the control commands generated by the operation and maintenance management module and alarm management module to the subsystems corresponding to the control commands.
[0151] The smart campus intelligent integrated system runs on a cloud server;
[0152] The campus has a control center for the smart campus intelligent integrated system. The smart campus intelligent integrated system can be run by accessing the cloud server through the control center.
[0153] Those skilled in the art should understand that variations can be implemented by combining existing technology with the above embodiments, which will not be elaborated here. Such variations do not affect the essence of the present invention, and will not be elaborated here either.
[0154] The preferred embodiments of the present invention have been described above. It should be understood that the present invention is not limited to the specific embodiments described above, and the devices and structures not described in detail should be understood as being implemented in a conventional manner in the art. Any person skilled in the art can make many possible variations and modifications to the technical solutions of the present invention using the methods and techniques disclosed above, or modify them into equivalent embodiments with equivalent changes, without departing from the scope of the present invention. This does not affect the essential content of the present invention. Therefore, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the present invention's technical solutions still fall within the protection scope of the present invention.
Claims
1. A smart campus intelligent integrated system, characterized in that: The system comprises a central processing module and a basic management module, an alarm management module, a subsystem report management module, an operation and maintenance management module, a patrol management module, a maintenance management module and all subsystems matched with the integrated system, which are respectively connected with the central processing module in communication; The basic management module is used for adjusting system setting parameters and managing user information; The alarm management module is used for managing all subsystem alarm related information matched with the integrated system; The subsystem report management module is used for recording and managing running data information of all subsystems matched with the integrated system; The operation and maintenance management module is used for adjusting parameters of all subsystems matched with the integrated system and managing integrated system running work orders; The patrol management module is used for managing patrol information; The maintenance management module is used for managing maintenance information of all devices involved in the integrated system; The central processing module is used for acquiring related states of all subsystems matched with the integrated system and transmitting the states to the alarm management module, the subsystem report management module, the operation and maintenance management module and the maintenance management module, and sending control instructions generated by the operation and maintenance management module and the alarm management module to the subsystems corresponding to the control instructions; All subsystems matched with the integrated system comprise a fire automatic alarm system, a security technical prevention system, a dormitory management alarm subsystem, a bright kitchen and bright stove subsystem, an electronic examination room external matching subsystem and an emergency response subsystem; The basic management module comprises a user authentication unit, a user management unit, a system configuration unit and a log management unit; The alarm management module comprises a real-time alarm unit, a historical alarm unit, an alarm classification and confirmation unit and an alarm linkage unit; The subsystem report management module comprises a real-time state display unit and a historical state display unit; The operation and maintenance management module comprises a device management unit and a work order management unit; The patrol management module comprises a patrol plan management unit and a patrol record management unit; The maintenance management module comprises a maintenance plan management unit and a maintenance record query unit. 2.The intelligent integrated system of a smart campus according to claim 1, wherein, The intelligent integrated system of the smart campus runs on a cloud server; The control center of the intelligent integrated system of the smart campus is arranged in the campus, and the intelligent integrated system of the smart campus can be run by accessing the cloud server through the control center.
Citation Information
Patent Citations
Smart campus management system
CN112132525A
Cross-platform-based smart campus system
CN113723770A
Internet of things smart campus
CN106249656A