Energy management system, method, equipment and medium
By integrating an energy management system with a BIM model, the system can monitor and display the operating status of equipment in the park in real time. This solves the problem of large data volumes in industrial park energy management, enables efficient energy management and adjustment scheme generation, and improves the park's energy efficiency and safety.
Patent Information
- Application Number
- CN202510745401.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2025-10-28
AI Technical Summary
In existing technologies, energy management in industrial parks faces challenges due to the massive amount of data involved, making it difficult to achieve effective micro-level energy management analysis and macro-level energy management.
An energy management system is provided, which integrates a BIM model and uses a running condition monitoring module, a display module, and an alarm management module to monitor and display the operating parameters and status of park equipment in real time, and issue alarms when abnormalities occur. Combined with an energy consumption statistical analysis module and an energy efficiency assessment module, it generates energy use adjustment plans.
It enables an intuitive preview of the overall structure of the park and timely equipment management, detects operational anomalies, provides a real data basis, makes timely adjustments to avoid property damage, generates energy usage adjustment plans, and improves the efficiency and effectiveness of energy management.
Smart Images

Figure CN120852099A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of data management technology, and in particular to an energy management system, method, device and medium. Background Art
[0002] With economic development, industrial parks have seen a surge in high-rise buildings, highlighting the problem of high energy consumption. Under the current national conditions, energy management primarily involves effectively managing the daily operation and maintenance of energy-consuming devices and monitoring user energy consumption patterns, achieving energy conservation through energy efficiency improvements and energy-saving retrofits. However, achieving micro-level energy management analysis to support macro-level building energy management requires extensive data collection, integration, and processing. The sheer volume of data makes management challenging, thus necessitating a more sophisticated energy management approach. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to address the shortcomings of the prior art, and specifically provides an energy management system, method, device and medium, as detailed below:
[0004] 1) In a first aspect, the present invention provides an energy management system, the specific technical solution of which is as follows:
[0005] Includes: operating condition monitoring module, display module, and alarm management module;
[0006] The operation condition monitoring module is used to: acquire the operating parameters and operating status of the operating equipment in the park in real time, and link the operating parameters and operating status with the BIM model corresponding to the park.
[0007] The display module is used to: obtain a user's display request for the BIM model, retrieve the BIM model of the operating equipment corresponding to the location information according to the display request, and display the BIM model of the operating equipment, the operating parameters of the operating equipment, and the operating status of the operating equipment.
[0008] The alarm management module is used to monitor the operating parameters and operating status of any operating device in real time, and to issue alarm information when the operating parameters and operating status are abnormal.
[0009] The beneficial effects of the data management system provided by this invention are as follows:
[0010] By combining BIM models, the overall structure within the park can be previewed intuitively, providing a realistic data foundation for park planning. In addition, the display module allows for real-time interaction with users. When users have display needs, the BIM model of the corresponding operating equipment and its parameters are provided, enabling users to clearly understand the status of the operating equipment and manage and control unreasonable equipment in a timely manner. Furthermore, combined with the alarm management module, abnormal operating equipment can be detected immediately, allowing for timely adjustments and preventing greater property losses.
[0011] Based on the above solution, the present invention can be further improved as follows.
[0012] Furthermore, it also includes:
[0013] The energy consumption statistical analysis module is used to: perform statistical analysis on the operating parameters of the operating equipment at fixed intervals, and create display charts based on the statistical analysis results.
[0014] Furthermore, it also includes:
[0015] The energy efficiency assessment module is used to: determine the energy consumption comparison results for each building in the park based on the displayed map, and generate an energy use adjustment plan based on the energy consumption comparison results.
[0016] Furthermore, it also includes:
[0017] The tenant management module is used to record the rental information of all tenants in the park and to grant each tenant permission to access fees.
[0018] 2) In a second aspect, the present invention also provides an energy management method, the specific technical solution of which is as follows:
[0019] Real-time acquisition of operating parameters and operating status of equipment within the park, and linkage processing of the operating parameters and operating status with the BIM model corresponding to the park;
[0020] Obtain the user's display request for the BIM model; based on the location information corresponding to the display request, retrieve the BIM model of the operating equipment corresponding to the location information; and display the BIM model of the operating equipment, the operating parameters of the operating equipment, and the operating status of the operating equipment.
[0021] The system monitors the operating parameters and status of any operating device in real time, and issues an alarm when the operating parameters and status are abnormal.
[0022] Based on the above solution, the present invention can be further improved as follows.
[0023] Furthermore, it also includes:
[0024] At fixed intervals, statistical analysis is performed on the operating parameters corresponding to the operating equipment, and display charts are created based on the statistical analysis results.
[0025] Furthermore, it also includes:
[0026] Based on the displayed diagram, the energy consumption comparison results for each building in the park are determined, and an energy use adjustment plan is generated based on the energy consumption comparison results.
[0027] Furthermore, it also includes:
[0028] Record the rental information of all tenants in the park and grant each tenant access to fee information.
[0029] 3) In a third aspect, the present invention also provides an electronic device, the electronic device including a processor coupled to a memory, the memory storing at least one computer program, the at least one computer program being loaded and executed by the processor to enable the electronic device to perform any of the above methods.
[0030] 4) In a fourth aspect, the present invention also provides a computer-readable storage medium storing at least one computer program, which is loaded and executed by a processor to enable a computer to implement any of the above methods.
[0031] It should be noted that the beneficial effects of the technical solutions of the second to fourth aspects of the present invention and their corresponding possible implementations can be found in the above description of the technical effects of the first aspect and its corresponding possible implementations, and will not be repeated here. Attached Figure Description
[0032] Other features, objects, and advantages of the invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0033] Figure 1 This is a flowchart illustrating an energy management method according to an embodiment of the present invention;
[0034] Figure 2 This is a structural framework diagram of an electronic device. Detailed Implementation
[0035] To make the objectives, technical solutions, and advantages of the present invention clearer, the embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.
[0036] An energy management system according to an embodiment of the present invention includes the following:
[0037] Includes: operating condition monitoring module, display module, and alarm management module;
[0038] The operation condition monitoring module is used to: acquire the operating parameters and operating status of the operating equipment in the park in real time, and link the operating parameters and operating status with the BIM model corresponding to the park.
[0039] The display module is used to: obtain a user's display request for the BIM model, retrieve the BIM model of the operating equipment corresponding to the location information according to the display request, and display the BIM model of the operating equipment, the operating parameters of the operating equipment, and the operating status of the operating equipment.
[0040] The alarm management module is used to monitor the operating parameters and operating status of any operating device in real time, and to issue alarm information when the operating parameters and operating status are abnormal.
[0041] The beneficial effects of the data management system provided by this invention are as follows:
[0042] By combining BIM models, the overall structure within the park can be previewed intuitively, providing a realistic data foundation for park planning. In addition, the display module allows for real-time interaction with users. When users have display needs, the BIM model of the corresponding operating equipment and its parameters are provided, enabling users to clearly understand the status of the operating equipment and manage and control unreasonable equipment in a timely manner. Furthermore, combined with the alarm management module, abnormal operating equipment can be detected immediately, allowing for timely adjustments and preventing greater property losses.
[0043] An industrial park refers to any industrial zone. An industrial park is a special locational environment established to promote the development of a specific industry. It is an important spatial agglomeration form for regional economic development and industrial restructuring and upgrading, undertaking a series of important missions such as gathering innovative resources, cultivating emerging industries, and promoting urbanization. Industrial parks can effectively create agglomeration power, driving the development of related industries through resource sharing and overcoming negative externalities, thereby effectively promoting the formation of industrial clusters. There are various types of industrial parks, classified in different ways. According to the classification on Wanzhuan Park (cnyuanqu), the most common types include: logistics parks, science and technology parks, cultural and creative parks, headquarters bases, and ecological agricultural parks.
[0044] Operating equipment includes, but is not limited to:
[0045] 1. Factory buildings and equipment:
[0046] Air conditioning system: Ensures suitable temperature and humidity in the factory, providing a comfortable production and office environment.
[0047] Lighting equipment: Provides the light needed for nighttime work and office work.
[0048] Fire suppression systems: for the prevention and handling of sudden fire incidents.
[0049] 2. Water supply equipment:
[0050] Water supply system: Provides sufficient water for production and daily life.
[0051] Firefighting water system: Provides sufficient firefighting water supply in the event of a sudden fire.
[0052] 3. Power supply equipment:
[0053] Power transmission lines: Ensure the power supply to all factories and offices within the park.
[0054] Generator sets: provide backup power support when the main power source fails.
[0055] 4. Parking equipment:
[0056] Parking management system: Enables functions such as automatic billing and parking space management.
[0057] Camera system: Enables vehicle monitoring and security.
[0058] 5. Other facilities and equipment:
[0059] Anti-counterfeiting systems, access control systems, and logistics equipment: ensuring the safety and operational efficiency of the industrial park.
[0060] The running parameters and running status refer to:
[0061] For air conditioning systems: operating parameters include: daily power consumption of air conditioning in each building, peak and off-peak periods of power consumption;
[0062] For lighting systems: operating parameters include the average daily power consumption of each room in each building.
[0063] For fire suppression systems: operating parameters include: the location of each fire extinguisher and the coverage area of each fire suppression device, as well as the shelf life or maintenance period of each fire suppression device.
[0064] For tap water systems: operating parameters include: daily water consumption per floor of each building.
[0065] Firefighting water system: Operating parameters include the water consumption corresponding to each fire incident.
[0066] Transmission lines: Operating parameters include: the number of substations, the location of the main transmission line and branch lines, and which power supply line corresponds to each room, etc.
[0067] Generator sets: Operating parameters include: the number of generator sets, the total reserve capacity of each generator set, and the longest power supply time that can be supported in the event of a power outage throughout the entire park.
[0068] Anti-counterfeiting systems, access control systems, and logistics equipment: Operating parameters include: the number of anti-counterfeiting identification attempts, the number of counterfeits identified, the time, and the type. Access control systems have corresponding daily usage and user numbers. Logistics equipment has corresponding daily transport capacity and the number of vehicles required for logistics.
[0069] Operating status includes whether the equipment is operating normally.
[0070] The process of linking the operating parameters and the operating status with the BIM model corresponding to the park is specifically as follows:
[0071] Based on the existing layout of the park, a corresponding BIM model of the park (including equipment, buildings, vehicles, etc.) is constructed. Simultaneously, construction drawings from the park's construction process are retrieved, and a BIM model of the wiring and junction boxes is built based on these drawings. This BIM model of the park is then linked to the BIM model of the wiring and junction boxes, specifically linking the junction box and lighting fixture models in the park's BIM model with the internal wiring of the corresponding junction boxes and lighting fixtures in the wiring and junction box BIM model. Furthermore, the equipment in the park's BIM model is linked to its corresponding operating parameters; for example, the BIM model of a water faucet is linked to the average daily water flow and the daily water consumption.
[0072] When a fire occurs in a room or area, the corresponding operational equipment in the relevant area or room in the BIM model of the park is quickly highlighted, and the circuits and other BIM models that are linked to the operational equipment in that area and room are retrieved to determine the importance level of that area or room. Based on the importance level and the number of circuits and other BIM models linked to that room or area, the rescue plan is adjusted.
[0073] The application displays the BIM model corresponding to the area touched by the user on the corresponding BIM model in the park.
[0074] It should be noted that the process of determining the BIM model selected by the user is as follows:
[0075] When displaying a BIM model of any floor in any building within any park on a display screen, the system acquires real-time user touch information on the screen. This touch information includes the contour information of the user's skin contacting the screen and pressure information. A 2D image of the BIM model of that floor is generated at the same scale as the angle displayed on the screen. The contour information is mapped onto this 2D image to determine the running equipment within the contour information. If multiple running devices are included in the contour information, the area percentage of each running device is determined. If the difference in area percentage between any two running devices does not exceed a preset value, the corresponding running devices are highlighted, and their corresponding BIM models are proportionally enlarged and arranged side-by-side in the center of the display screen. The user selects the highlighted and proportionally enlarged BIM model to determine the BIM model corresponding to their touch information. If the difference in area percentage between the contour information and any running device exceeds a preset value, that running device is taken as the BIM model corresponding to the user's touch information. If no running equipment is found in the outline information, the pressure information is determined. If the touch pressure value in the pressure information is lower than the preset pressure value, it means that the user touched it by mistake and no corresponding processing is performed. If the touch pressure value in the pressure information is higher than the preset pressure value, the BIM model of any layer displayed on the display screen is magnified with the area corresponding to the user's touch information as the center, and the user is prompted to reselect to determine the BIM model finally selected by the user.
[0076] The process for determining whether the operating parameters and the operating status are abnormal is as follows:
[0077] Based on the preset judgment parameter range and corresponding status for each operating device at different times, it is determined whether the real-time collected operating parameters are within the judgment parameter range and whether the operating status is corresponding.
[0078] Furthermore, it also includes:
[0079] The energy consumption statistical analysis module is used to: perform statistical analysis on the operating parameters of the operating equipment at fixed intervals, and create display charts based on the statistical analysis results.
[0080] Furthermore, it also includes:
[0081] The energy efficiency assessment module is used to: determine the energy consumption comparison results for each building in the park based on the displayed map, and generate an energy use adjustment plan based on the energy consumption comparison results.
[0082] Furthermore, it also includes:
[0083] The tenant management module is used to record the rental information of all tenants in the park and to grant each tenant permission to access fees.
[0084] Example 1, Operational Status Monitoring: 1) Display the spatial layout of the data acquisition terminals through a realistic BIM scene; the BIM model of the data acquisition terminals can be shown or hidden according to type / unit; 2) Support online monitoring of the overall operation of the project, displaying energy consumption data in the form of curves, bar charts, forms, etc., and historical data can be viewed by switching time ranges;
[0085] The monitoring process involves real-time monitoring of the park's water, electricity, and other energy consumption, as well as the operation, shutdown, standby, and overload status of various energy-consuming equipment. When abnormal fluctuations in energy consumption data or abnormal conditions occur during equipment operation, an alarm is triggered in the system, and relevant personnel in the park then take appropriate action.
[0086] Energy consumption statistics and analysis: Supports the analysis and statistics of data collection terminal operation status (including the number of various types of data collection terminals and the number of terminals in operation), data collection status (including smart meter data collection), and communication status. It supports statistics by management unit, terminal manufacturer, communication method, etc., and displays the data intuitively in pie charts, bar charts, forms, and other formats.
[0087] Alarm Management: 1) Supports recording equipment fault alarms and data anomaly alarms, sending reminders to relevant personnel, and providing troubleshooting suggestions; 2) Alarm list, including alarm item, system type, location, content, date, level, status, etc. Multi-dimensional filtering is available (multi-dimensional filtering includes energy type, alarm location, alarm time, alarm level, and equipment status. Alarm data can be searched by entering keywords or selecting filter conditions); 3) Alarm handling: Each alarm message requires individual or batch confirmation, and relevant personnel enter the alarm reason and handling result.
[0088] Energy Efficiency Assessment: Energy efficiency assessment analyzes the energy usage efficiency of buildings in the park. It involves comparing the energy consumption of various buildings in the park based on different energy efficiency assessment indicators (e.g., total energy consumption, per capita energy consumption, energy consumption per unit area). An energy efficiency assessment system is established based on these indicators. Due to differences in the size, purpose, and number of people in different buildings, the assessment data is standardized to ensure fair comparison, such as converting energy consumption data into relative percentage values. Based on the calculation results of the energy efficiency assessment indicators, each building is ranked for energy efficiency. Combining the basic information and energy consumption data of each building, the energy efficiency level and its causes are analyzed. For example, for buildings with low energy efficiency levels, the analysis examines whether there are problems such as aging equipment or poor energy management; for buildings with high energy efficiency levels, the energy-saving measures and experiences are summarized. The final result is an energy efficiency ranking and assessment report.
[0089] Energy Report: Supports online creation of energy report templates, automatic data acquisition, generation of energy reports, and supports export and printing;
[0090] Water system monitoring: Monitor the operating status of reclaimed water, water supply, drinking water, cooling tower makeup water, and fire pumps.
[0091] Tenant Management: 1) Integrates with the lease management system to enable tenant addition, editing, deletion, and user information query functions; 2) Payment management, including prepaid and postpaid; 3) Supports regular automatic sending of fee notifications, and allows tenants to upload vouchers after paying fees to complete reconciliation and auditing.
[0092] like Figure 1 As shown, the present invention also provides an energy management method, the specific technical solution of which is as follows:
[0093] S1, real-time acquisition of operating parameters and operating status of equipment in the park, and linkage processing of the operating parameters and operating status with the BIM model corresponding to the park;
[0094] S2, obtain the user's display request for the BIM model, retrieve the BIM model of the operating equipment corresponding to the location information according to the display request, and display the BIM model of the operating equipment, the operating parameters of the operating equipment, and the operating status of the operating equipment.
[0095] S3 monitors the operating parameters and operating status of any operating device in real time, and issues an alarm message when the operating parameters and operating status are abnormal.
[0096] Based on the above solution, the present invention can be further improved as follows.
[0097] Furthermore, it also includes:
[0098] At fixed intervals, statistical analysis is performed on the operating parameters corresponding to the operating equipment, and display charts are created based on the statistical analysis results.
[0099] Furthermore, it also includes:
[0100] Based on the displayed diagram, the energy consumption comparison results for each building in the park are determined, and an energy use adjustment plan is generated based on the energy consumption comparison results.
[0101] Furthermore, it also includes:
[0102] Record the rental information of all tenants in the park and grant each tenant access to fee information.
[0103] In the above embodiments, although the steps are numbered S1, S2, etc., they are only specific embodiments given by the present invention. Those skilled in the art can adjust the execution order of S1, S2, etc. according to the actual situation, which is also within the protection scope of the present invention. It can be understood that in some embodiments, some or all of the above embodiments may be included.
[0104] It should be noted that the beneficial effects of the data management method provided in the above embodiments are the same as those of the data management system described above, and will not be repeated here. Furthermore, the system provided in the above embodiments is only illustrated by the division of the above functional modules. In practical applications, the above functions can be assigned to different functional modules as needed, that is, the system can be divided into different functional modules according to the actual situation to complete all or part of the functions described above. In addition, the system and method embodiments provided in the above embodiments belong to the same concept, and their specific implementation process is detailed in the method embodiments, and will not be repeated here.
[0105] like Figure 2 As shown, an electronic device 300 according to an embodiment of the present invention includes a processor 320 coupled to a memory 310. The memory 310 stores at least one computer program 330, which is loaded and executed by the processor 320 to enable the electronic device 300 to implement any of the above-mentioned methods. Specifically:
[0106] The electronic device 300 can vary considerably due to differences in configuration or performance. It may include one or more processors 320 (Central Processing Units, CPUs) and one or more memories 310. The one or more memories 310 store at least one computer program 330, which is loaded and executed by the one or more processors 320 to enable the electronic device 300 to implement the data management method provided in the above embodiments. Of course, the electronic device 300 may also have wired or wireless network interfaces, a keyboard, and input / output interfaces for input and output. The electronic device 300 may also include other components for implementing device functions, which will not be elaborated upon here.
[0107] An embodiment of the present invention provides a computer-readable storage medium storing at least one computer program, which is loaded and executed by a processor to enable a computer to implement any of the above-described methods.
[0108] Alternatively, the computer-readable storage medium may be a read-only memory (ROM), a random access memory (RAM), a compact disc read-only memory (CD-ROM), magnetic tape, a floppy disk, and an optical data storage device, etc.
[0109] In an exemplary embodiment, a computer program product or computer program is also provided, which includes computer instructions stored in a computer-readable storage medium. A processor of an electronic device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the electronic device to perform any of the methods described above.
[0110] It should be noted that the terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and represent a limitation on a specific order or sequence. Where appropriate, the order of use for similar objects can be interchanged so that the embodiments of this application described herein can be implemented in an order other than that shown or described.
[0111] Those skilled in the art will recognize that this invention can be implemented as a system, method, or computer program product. Therefore, this disclosure can be specifically implemented in the following forms: it can be entirely hardware, entirely software (including firmware, resident software, microcode, etc.), or a combination of hardware and software, generally referred to herein as a "circuit," "module," or "system." Furthermore, in some embodiments, this invention can also be implemented as a computer program product in one or more computer-readable media containing computer-readable program code.
[0112] Any combination of one or more computer-readable media may be used. A computer-readable medium can be a computer-readable signal medium or a computer-readable storage medium. A computer-readable storage medium can be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination thereof. More specific examples (a non-exhaustive list) of computer-readable storage media include: an electrical connection having one or more wires, a portable computer disk, a hard disk, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fiber, portable compact disk read-only memory (CD-ROM), optical storage device, magnetic storage device, or any suitable combination thereof. In this document, a computer-readable storage medium can be any tangible medium that contains or stores a program that can be used by or in connection with an instruction execution system, apparatus, or device.
[0113] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.
Claims
1. An energy management system, characterized in that, include: Operating condition monitoring module, display module, and alarm management module; The operation condition monitoring module is used to: acquire the operating parameters and operating status of the operating equipment in the park in real time, and link the operating parameters and operating status with the BIM model corresponding to the park. The display module is used to: obtain a user's display request for the BIM model, retrieve the BIM model of the operating equipment corresponding to the location information according to the display request, and display the BIM model of the operating equipment, the operating parameters of the operating equipment, and the operating status of the operating equipment. The alarm management module is used to monitor the operating parameters and operating status of any operating device in real time, and to issue alarm information when the operating parameters and operating status are abnormal.
2. The energy management system according to claim 1, characterized in that, Also includes: The energy consumption statistical analysis module is used to: perform statistical analysis on the operating parameters of the operating equipment at fixed intervals, and create display charts based on the statistical analysis results.
3. An energy management system according to claim 2, characterized in that, Also includes: The energy efficiency assessment module is used to: determine the energy consumption comparison results for each building in the park based on the displayed map, and generate an energy use adjustment plan based on the energy consumption comparison results.
4. An energy management system according to claim 1, characterized in that, Also includes: The tenant management module is used to record the rental information of all tenants in the park and to grant each tenant permission to access fees.
5. An energy management method, characterized in that, include: Real-time acquisition of operating parameters and operating status of equipment within the park, and linkage processing of the operating parameters and operating status with the BIM model corresponding to the park; Obtain the user's display request for the BIM model; based on the location information corresponding to the display request, retrieve the BIM model of the operating equipment corresponding to the location information; and display the BIM model of the operating equipment, the operating parameters of the operating equipment, and the operating status of the operating equipment. The system monitors the operating parameters and status of any operating device in real time, and issues an alarm when the operating parameters and status are abnormal.
6. The energy management method according to claim 5, characterized in that, Also includes: At fixed intervals, statistical analysis is performed on the operating parameters corresponding to the operating equipment, and display charts are created based on the statistical analysis results.
7. The energy management method according to claim 6, characterized in that, Also includes: Based on the displayed diagram, the energy consumption comparison results for each building in the park are determined, and an energy use adjustment plan is generated based on the energy consumption comparison results.
8. The energy management method according to claim 5, characterized in that, Also includes: Record the rental information of all tenants in the park and grant each tenant access to fee information.
9. An electronic device, characterized in that, The electronic device includes a processor coupled to a memory storing at least one computer program, which is loaded and executed by the processor to enable the electronic device to perform the method as described in any one of claims 5 to 8.
10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores at least one computer program, which is loaded and executed by a processor to enable the computer to perform the method as described in any one of claims 5 to 8.