Energy monitoring and adjusting system of green building
By designing the energy monitoring and regulation system for green buildings, using a variety of energy supply methods and data acquisition modules, the problems of energy waste and unreasonable utilization of resources in existing buildings are solved, and efficient energy management and energy conservation and emission reduction are achieved.
Patent Information
- Application Number
- CN202510426252.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2025-07-25
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The lack of effective monitoring and control of users' energy use in existing buildings leads to waste of energy and unreasonable use of resources, and lacks awareness of energy conservation and emission reduction and specific standards.
Design an energy monitoring and regulation system for green buildings, including energy supply module, data acquisition module, central control module, energy dispatch module, cloud service module, energy analysis module, energy alarm module and display module, and realize reasonable energy dispatching and management through various energy supply methods, data acquisition and analysis.
It realizes efficient monitoring and regulation of building energy, reduces energy waste, provides data support and decision-making reference, and improves energy utilization efficiency and energy conservation and emission reduction effects.
Smart Images

Figure CN120370784A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of energy monitoring, and specifically to an energy monitoring and regulation system for green buildings. Background Art
[0002] With the increase in China's population and the development of social economy, there are more and more building constructions, and the pressure on environmental resources continues to intensify. There are some drawbacks in existing building constructions. Generally, only the energy use in public areas is monitored and controlled, but in public areas, energy use is only regulated according to environmental factors and cannot be well regulated according to specific situations; the energy use of users depends more on the users' own conservation, and currently people's awareness of energy conservation and emission reduction is relatively weak, which is difficult to achieve only by people's self-awareness. At the same time, there is no specific comparison standard for energy conservation and emission reduction, making it difficult to master the degree of resource use. The energy consumption of users has not been effectively monitored and controlled, resulting in excessive energy use in some users or public areas and causing unnecessary waste of resources.
[0003] Therefore, an energy monitoring and regulation system for green buildings is proposed to solve the above problems. Summary of the Invention
[0004] In view of this, the embodiments of the present invention hope to provide an energy monitoring and regulation system for green buildings to solve or alleviate the technical problems existing in the prior art and provide at least one beneficial option for the above technical problems.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] An energy monitoring and regulation system for green buildings, the system includes an energy supply module, a data collection module, a central control module, an energy scheduling module, a cloud service module, an energy analysis module, an energy warning module, and a display module;
[0007] The energy supply module is connected to the central control module and is used to supply energy to the building through solar energy, wind energy, geothermal energy, and biomass energy;
[0008] The data collection module is connected to the central control module and is used to collect data on the energy usage situation;
[0009] The central control module is connected to the energy supply module, the data collection module, the energy scheduling module, the cloud service module, the energy analysis module, the energy warning module, and the display module, and is used to schedule the normal operation of each module;
[0010] The energy scheduling module is connected to the central control module and is used to reasonably schedule and allocate the energy supply;
[0011] A cloud service module, connected to the central control module, for processing energy data information by centrally collecting big data resources through a cloud server;
[0012] An energy analysis module, connected to the central control module, for analyzing the energy consumption of energy;
[0013] An energy warning module, connected to the central control module, for statistically analyzing the excessive energy consumption according to the results of the energy analysis module, and at the same time marking the building where the excessive energy consumption occurs;
[0014] A display module, connected to the central control module, for displaying energy usage and scheduling allocation information.
[0015] As a further solution of the present invention: An energy monitoring and regulating system for a green building, the data acquisition module includes a temperature detection module, an energy consumption detection module, and a usage detection module;
[0016] The temperature detection module is used to detect the temperature data during energy supply through a temperature sensor;
[0017] The energy consumption detection module is used to detect building energy consumption and equipment energy consumption data;
[0018] The usage detection module is used to detect the energy usage.
[0019] As a further solution of the present invention: An energy monitoring and regulating system for a green building, the energy analysis module includes a building energy consumption analysis module, an equipment energy efficiency analysis module, and a report generation module;
[0020] The building energy consumption analysis module is used to analyze the building energy consumption situation through year-on-year and month-on-month comparisons of energy consumption, and display the building's energy usage status using dynamic charts;
[0021] The equipment energy efficiency analysis module is used to analyze the energy efficiency status of the detected equipment, analyze the detected energy efficiency results, and formulate a plan to improve the equipment energy efficiency;
[0022] The report generation module is used to generate an energy report for the building by integrating data information such as energy consumption, equipment consumption, and usage.
[0023] As a further solution of the present invention: An energy monitoring and regulating system for a green building, the system further includes: a data acquisition module, a cloud server, a remote monitoring terminal, a user interface, and an energy management department. The data acquisition module is network-connected to the cloud server, and the cloud server is network-connected to the remote monitoring terminal;
[0024] The data acquisition module is used to collect the energy consumption data and population density of each public building, and copy the data to the cloud server;
[0025] The cloud server is used to store energy consumption data and population density, aggregate and analyze the energy consumption data and population density of public buildings in the same area, calculate the energy consumption quota value, energy consumption index value and energy consumption benchmark value of public buildings in this area, and transmit the data to the remote monitoring terminal;
[0026] The remote monitoring terminal is used for online monitoring of the overall energy resource consumption status of public buildings in the area, online monitoring of the energy resource consumption status of each public building and online monitoring of electricity safety, displaying the analysis results of the energy consumption quota, energy consumption index and energy consumption benchmark of public buildings, and inputting the energy consumption data that cannot be collected by public buildings;
[0027] The user interface displays energy management guidance corresponding to the energy management situation and the above energy management situation during the operation of the building and equipment, and performs user input according to the above energy management guidance;
[0028] The Energy Management Department manages the above buildings and equipment based on the above user input to manage the energy of the above buildings and equipment.
[0029] As a further solution of the present invention: An energy monitoring and regulation system for a green building, the data acquisition module includes: an intelligent electricity meter, which is used to collect the total energy consumption data and electrical parameter data of each public building, the energy consumption data and electrical parameter data of special equipment, and copy the data to the cloud server;
[0030] And / or an intelligent water meter, which is used to collect the total water consumption data of each public building and copy the data to the cloud server; and / or an intelligent gas meter, which is used to collect the gas consumption data of each public building and copy the data to the cloud server;
[0031] And / or a population density acquisition device, which acquires the population density in public buildings.
[0032] As a further solution of the present invention: An energy monitoring and regulation system for a green building, the user interface part includes a display part, which includes a situation display part and a guidance display part. The above situation display part displays the energy management situation during the operation of the above building and equipment, and the above guidance display part displays the energy management guidance corresponding to the above energy management situation;
[0033] And an input part, which receives user input according to the above energy management guidance.
[0034] As a further solution of the present invention: An energy monitoring and regulation system for green buildings comprehensively manages a project database, digitizes and pre-stores the comprehensive management project database according to data selected for building operation-related projects or according to building characteristics; and a comprehensive management department reads from the above-mentioned comprehensive management project database and constructs the data selected for building operation-related projects input by the building operator or the comprehensive management projects corresponding to the building characteristics, and presents them on the above-mentioned display unit.
[0035] As a further solution of the present invention: An energy monitoring and regulation system for green buildings, the cloud server includes an online monitoring and intelligent management system for the energy resource consumption of the management unit, and the online monitoring and intelligent management system for the energy resource consumption of the management unit includes an energy consumption overview unit, an energy consumption statistics unit, an energy consumption analysis unit, an energy use management unit, an energy consumption quota standard formulation unit, a system management unit, an information input unit, and a pedestrian flow statistics unit.
[0036] As a further solution of the present invention: An energy monitoring and regulation system for green buildings, the pedestrian flow density acquisition device is a camera, the camera is connected to the background software, and the pedestrian flow is counted by image recognition at a certain time granularity, or the background software counts the pedestrian flow through a mobile communication operator.
[0037] As a further solution of the present invention: An energy monitoring and regulation system for green buildings further includes an energy guidance database, and the above-mentioned energy guidance database is pre-databaseized in the following manner, which means defining the energy management guidance that may occur in buildings and equipment, defining the environments and operating conditions applicable to the above-mentioned energy management guidance, mapping the above-mentioned energy management guidance to the above-mentioned environments and operating conditions, and mapping the above-mentioned environments and operating conditions to the measurement data of the building management system or the building automation system.
[0038] Due to the adoption of the above technical solutions in the embodiments of the present invention, it has at least one of the following advantages:
[0039] Multi-module collaborative work: The system includes multiple modules such as an energy supply module, a data acquisition module, a control module, an energy scheduling module, a cloud service module, an energy analysis module, an energy warning module, and a display module. Through the collaborative work of these modules, the monitoring and regulation of building energy are realized.
[0040] Multi-energy supply: The energy supply module uses multiple renewable energy sources such as solar energy, wind energy, geothermal energy, and biomass energy to supply energy to the building, reduces the dependence on traditional energy sources, and realizes the utilization of green energy.
[0041] Data collection and analysis: The data collection module consists of a temperature detection module, an energy consumption detection module, a usage detection module, etc., to collect data on the energy usage situation. The energy analysis module analyzes the energy consumption of the energy, providing a basis for energy scheduling and management.
[0042] Energy scheduling and regulation: The energy scheduling module conducts reasonable scheduling and distribution of the energy supply to ensure that the building can obtain sufficient energy supply, while avoiding energy waste and insufficient supply.
[0043] Cloud service and remote monitoring: The cloud service module centrally manages and processes energy data information through a cloud server to achieve the centralized utilization of big data resources; the remote monitoring terminal can online monitor the consumption status of building energy resources, display energy consumption quotas, energy consumption indicators, and energy consumption benchmark analysis results, and conduct online monitoring of electricity safety.
[0044] Energy management and report generation: The system also includes a user interface and an energy management department. The user interface displays energy management guides corresponding to the energy management situation and receives user input; the energy management department manages the building and equipment according to the user input to achieve the goals of energy management. At the same time, the system has a report generation module that can integrate and generate energy reports for the building, providing data support and decision-making reference.
[0045] Comprehensive management and statistical functions: The system also includes a comprehensive management project database and a comprehensive management department. By selecting relevant project data or building characteristics, the comprehensive management project is databaseized and stored, and the project selection data related to the building operation or the comprehensive management project corresponding to the building characteristics is read and formed for display on the display unit.
[0046] System improvement and scalability: The system also includes an energy guidance database, in which energy management guides that may occur are predefined and mapped to environmental and operation conditions to achieve more accurate energy management guides. In addition, the system has a people flow density collection device that can count people flow information by means of cameras or cooperation with mobile communication operators.
[0047] In summary, the energy monitoring and regulation system of this green building realizes the monitoring, scheduling, and management of energy through the collaborative work of multiple modules and various data collection means, has high practicability and scalability. At the same time, through functions such as cloud service and remote monitoring, it can realize the online monitoring and analysis of the energy consumption situation, helping the building to achieve green and efficient energy utilization.
[0048] The above summary is for the purpose of the specification only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments, and features described above, further aspects, embodiments, and features of the present invention will be readily apparent by reference to the drawings and the following detailed description. Description of the Drawings
[0049] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0050] Figure 1 Flow of an energy monitoring and regulation system for a green building proposed by the present invention Figure 1 。
[0051] Figure 2 Flow of an energy monitoring and regulation system for a green building proposed by the present invention Figure 2 。 Detailed Embodiments
[0052] In the following, only some exemplary embodiments are briefly described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present invention. Therefore, the drawings and the description are considered to be exemplary in nature rather than restrictive.
[0053] It should be noted that terms such as "first", "second", "symmetric", "array", etc. are only used for the purpose of distinguishing descriptions and position descriptions, and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, features defined with "first", "symmetric", etc. can explicitly or implicitly include one or more of such features; similarly, when certain features are not limited in quantity by words such as "two", "three", etc., it should be noted that such features also belong to explicitly or implicitly including one or more feature quantities.
[0054] As Figure 1 shown, an energy monitoring and regulation system for a green building according to the present invention includes an energy supply module, a data acquisition module, a central control module, an energy scheduling module, a cloud service module, an energy analysis module, an energy warning module, and a display module;
[0055] The energy supply module is connected to the central control module and is used to supply power to the building through solar energy, wind energy, geothermal energy, and biomass energy;
[0056] The data acquisition module, connected to the central control module, is used for data acquisition of the energy usage situation;
[0057] The central control module, connected to the energy supply module, data acquisition module, energy scheduling module, cloud service module, energy analysis module, energy warning module, and display module, is used for scheduling the normal operation of each module;
[0058] The energy scheduling module, connected to the central control module, is used for reasonable scheduling and allocation of the energy supply;
[0059] The cloud service module, connected to the central control module, is used for processing energy data information by centrally collecting big data resources through the cloud server;
[0060] The energy analysis module, connected to the central control module, is used for analyzing the energy consumption of the energy;
[0061] The energy warning module, connected to the central control module, is used for counting the excessive energy usage according to the results of the energy analysis module, and at the same time marking the buildings with excessive energy usage;
[0062] The display module, connected to the central control module, is used for displaying energy usage and scheduling allocation information.
[0063] In one embodiment, the data acquisition module includes a temperature detection module, an energy consumption detection module, and a usage amount detection module;
[0064] The temperature detection module is used for detecting temperature data during energy supply through a temperature sensor;
[0065] The energy consumption detection module is used for detecting building energy consumption and equipment energy consumption data;
[0066] The usage amount detection module is used for detecting the energy usage amount.
[0067] In one embodiment, the energy analysis module includes a building energy consumption analysis module, an equipment energy efficiency analysis module, and a report generation module;
[0068] The building energy consumption analysis module is used for analyzing the building energy consumption situation through year-on-year and month-on-month comparison of energy consumption, and displaying the building energy usage status using dynamic charts;
[0069] The equipment energy efficiency analysis module is used for analyzing the energy efficiency status of the detected equipment, analyzing the detected energy efficiency results, and formulating a plan for improving the equipment energy efficiency;
[0070] The report generation module is used for fusing and generating an energy report for the building according to data information such as energy consumption, equipment consumption, and usage amount.
[0071] Such asFigure 2 As shown in Figure 2 , an energy monitoring and regulation system for a green building according to the present invention further includes: a data acquisition module, a cloud server, a remote monitoring terminal, a user interface, and an energy management department. The data acquisition module is network-connected to the cloud server, and the cloud server is network-connected to the remote monitoring terminal;
[0072] The data acquisition module is used to collect the energy consumption data and population density of each public building and copy the data to the cloud server;
[0073] The cloud server is used to store the energy consumption data and population density, summarize and analyze the energy consumption data and population density of public buildings in the same area, calculate the energy consumption quota value, energy consumption index value, and energy consumption benchmark value of public buildings in this area, and transmit the data to the remote monitoring terminal;
[0074] The remote monitoring terminal is used for online monitoring of the energy resource consumption status of public buildings in the whole area, online monitoring of the energy resource consumption status of each public building, and online monitoring of electrical safety, displaying the analysis results of the energy consumption quota, energy consumption index, and energy consumption benchmark of public buildings, and inputting the energy consumption data that cannot be collected by public buildings;
[0075] The user interface displays an energy management guide corresponding to the energy management situation and the above energy management situation during the operation of the building and equipment, and receives user input according to the above energy management guide;
[0076] The energy management department manages the above-mentioned building and equipment based on the above user input to manage the energy of the above-mentioned building and equipment.
[0077] In one embodiment, the data acquisition module includes: a smart electricity meter, which is used to collect the total energy consumption data and electrical parameter data of each public building, the energy consumption data and electrical parameter data of special equipment, and copy the data to the cloud server;
[0078] and / or a smart water meter, which is used to collect the total water consumption data of each public building and copy the data to the cloud server; and / or a smart gas meter, which is used to collect the gas consumption data of each public building and copy the data to the cloud server;
[0079] and / or a population density acquisition device, which collects the population density in public buildings.
[0080] In one embodiment, the user interface department includes a display part, which includes a situation presentation part and a guide presentation part. The above situation presentation part presents the energy management situation during the operation of the above building and equipment, and the above guide presentation part presents an energy management guide corresponding to the above energy management situation;
[0081] and an input part, which receives user input according to the above energy management guide.
[0082] In one embodiment, an integrated management project database is created and pre-stored by selecting data according to building operation-related projects or according to building characteristics; and an integrated management department reads from the above integrated management project database and constructs the building operation-related project selection data input by the building operator or the integrated management projects corresponding to the building characteristics, and presents them on the above display unit.
[0083] In one embodiment, the cloud server includes an online monitoring and intelligent management system for the energy resource consumption of the management unit. The online monitoring and intelligent management system for the energy resource consumption of the management unit includes an energy consumption overview unit, an energy consumption statistics unit, an energy consumption analysis unit, an energy use management unit, an energy consumption quota standard formulation unit, a system management unit, an information input unit, and a people flow statistics unit.
[0084] In one embodiment, the people flow density acquisition device is a camera. The camera is connected to the background software to perform image recognition to count the people flow at a certain time granularity, or the background software counts the people flow through a mobile communication operator.
[0085] In one embodiment, an energy guidance database is further included. The above energy guidance database is pre-databaseized in the following manner, which means defining the energy management guidance that may occur in buildings and equipment, defining the environments and operating conditions applicable to the above energy management guidance, mapping the above energy management guidance to the above environments and operating conditions, and mapping the above environments and operating conditions to the measurement data of the building management system or the building automation system.
[0086] In another embodiment, an energy monitoring and regulation system for a green building mainly includes an energy supply module, a data acquisition module, a control module, an energy scheduling module, a cloud service module, an energy analysis module, an energy warning module, and a display module. Among them, the energy supply module supplies energy to the building through solar energy, wind energy, geothermal energy, and biomass energy; the data acquisition module is responsible for collecting data on energy usage; the control module is connected to each module and is used to schedule and coordinate the normal operation of each module; the energy scheduling module performs reasonable scheduling of energy supply; the cloud service module processes energy data information with the help of a cloud server; the energy analysis module analyzes the energy consumption of energy; the energy warning module counts the excessive energy usage according to the energy analysis results and marks the building; the display module displays energy usage and scheduling allocation information.
[0087] In addition, the system further includes a temperature detection module, an energy consumption detection module, and a usage amount detection module, which are used to collect temperature data, building energy consumption and equipment energy consumption data, and energy usage amount data during energy supply.
[0088] The system also includes an energy management department, remote monitoring terminals, user interfaces, and data acquisition modules. The data acquisition modules collect the energy consumption data and population density of public buildings and transmit the data to the cloud server. The cloud server stores and analyzes the energy consumption data and population density, calculates the energy consumption quota, energy consumption index, and energy consumption benchmark value, and at the same time transmits the data to the remote monitoring terminals. The remote monitoring terminals are used to online monitor the energy and resource consumption status of the overall public buildings in the region, the energy and resource consumption status of each public building, and the electricity usage safety status, and display the analysis results of the energy consumption quota, energy consumption index, and energy consumption benchmark. At the same time, the energy consumption data that cannot be collected by the public buildings is entered. The user interfaces are used to display the energy management guidance corresponding to the energy management situation and receive user input. The energy management department manages the buildings and equipment according to the user input.
[0089] In addition, the system also includes components such as smart electricity meters, smart water meters, smart gas meters, and population density acquisition devices, which are used to collect information such as total energy consumption data, electrical parameter data, energy consumption data of special equipment, water usage data, gas usage data, and population density.
[0090] The system also involves components such as an integrated management project database, an integrated management department, an energy guidance database, and a cloud server, which are used to manage and display the data of building operation-related project selections, energy consumption statistics and analysis, energy management guidance, and the mutual mapping relationship between the environment and operation conditions.
[0091] The system also includes a cloud server, remote monitoring terminals, user interfaces, and an energy management department. The data acquisition modules are network-connected to the cloud server, and the cloud server is network-connected to the remote monitoring terminals. The data acquisition modules are responsible for collecting the energy consumption data and population density of each public building and transmitting the data to the cloud server. The cloud server stores the energy consumption data and population density and aggregates and analyzes the energy consumption data and population density of public buildings in the same region. The remote monitoring terminals are used to online monitor the energy and resource consumption status of the overall public buildings in the region, the energy and resource consumption status of each public building, and the electricity usage safety situation, and display the analysis results of the energy consumption quota, energy consumption index, and energy consumption benchmark. The user interfaces display the information corresponding to the energy management situation and energy management guidance and receive user input according to the energy management guidance. The energy management department conducts energy management on the buildings and equipment based on the user input.
[0092] In an embodiment, the data acquisition module may include devices such as a smart electricity meter, a smart water meter, a smart gas meter, and a people flow density acquisition device. The user interface unit includes a display unit and an input unit. The display unit presents the energy management situation, and the input unit receives user input. The comprehensive management project database is database-ized and pre-stored according to the data selected for building operation-related projects or building characteristics. The comprehensive management unit reads and presents the data selected for building operation-related projects or the comprehensive management projects corresponding to the building characteristics from the database. The cloud server also includes an online monitoring and intelligent management system for the energy consumption of the management unit. The system includes an overall energy consumption unit, an energy consumption statistics unit, an energy consumption analysis unit, an energy use management unit, an energy consumption quota standard formulation unit, a system management unit, an information entry unit, and a people flow statistics unit. The people flow density acquisition device may be a camera, and the number of people is counted through image recognition. In addition, the system also includes an energy guidance database, which pre-database-izes energy management guidance and maps it to the measurement data of the environment, operating conditions, and building management system or building automation system.
[0093] In summary, through the collaborative work of multiple modules, the system realizes the monitoring and regulation of green building energy, improves energy utilization efficiency, and provides data analysis and alarm functions to support energy management.
[0094] In several embodiments provided in the present application, it should be understood that the disclosed terminals, devices, and methods can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the division of units is only a logical function division. In actual implementation, there may be other division methods. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the displayed or discussed coupling or direct coupling or communication connection between each other can be through some interfaces, and the indirect coupling or communication connection of the device or unit can be in an electrical, mechanical, or other form.
[0095] In addition, each functional unit in the various embodiments of the present application can be integrated in a processing unit, or each unit can exist physically alone, or two or more units can be integrated in one unit. The above-mentioned integrated units can be implemented in the form of hardware or in the form of software functional units. The above is only the implementation manner of the present application and does not limit the patent scope of the present application. Any equivalent structural or equivalent process transformation made by using the content of the specification and drawings of the present application, or directly or indirectly applied to other related technical fields, is equally included in the patent protection scope of the present application.
Claims
1. An energy monitoring and regulation system for a green building, characterized in that, The system includes an energy supply module, a data acquisition module, a central control module, an energy scheduling module, a cloud service module, an energy analysis module, an energy warning module, and a display module; The energy supply module, connected to the central control module, is used to supply energy to the building through solar energy, wind energy, geothermal energy, and biomass energy; The data acquisition module, connected to the central control module, is used to collect data on the energy usage situation; The central control module, connected to the energy supply module, the data acquisition module, the energy scheduling module, the cloud service module, the energy analysis module, the energy warning module, and the display module, is used to schedule the normal operation of each module; The energy scheduling module, connected to the central control module, is used to reasonably schedule and allocate the energy supply; The cloud service module, connected to the central control module, is used to process energy data information by centralized big data resources through the cloud server; The energy analysis module, connected to the central control module, is used to analyze the energy consumption of energy; The energy warning module, connected to the central control module, is used to count the excessive energy usage according to the results of the energy analysis module, and at the same time mark the building buildings with excessive energy usage; The display module, connected to the central control module, is used to display energy usage and scheduling allocation information.
2. The energy monitoring and regulation system of a green building according to claim 1, characterized in that: The data acquisition module includes a temperature detection module, an energy consumption detection module, and a usage amount detection module; The temperature detection module is used to detect the temperature data during energy supply through a temperature sensor; The energy consumption detection module is used to detect building energy consumption and equipment energy consumption data; The usage amount detection module is used to detect the energy usage amount.
3. The energy monitoring and regulation system for a green building according to claim 2, characterized in that: The energy analysis module includes a building energy consumption analysis module, an equipment energy efficiency analysis module, and a report generation module; The building energy consumption analysis module is used to analyze the building energy consumption situation through year-on-year and month-on-month comparison of energy consumption, and display the building energy usage status using dynamic charts; The equipment energy efficiency analysis module is used to analyze the energy efficiency status of the detected equipment, analyze the detected energy efficiency results, and formulate a plan to improve the equipment energy efficiency; The report generation module is used to generate an energy report for the building building by integrating data information such as energy consumption, equipment consumption, and usage amount.
4. The energy monitoring and regulation system for a green building according to claim 1, characterized in that, The system further includes: a data acquisition module, a cloud server, a remote monitoring terminal, a user interface, and an energy management department. The data acquisition module is network-connected to the cloud server, and the cloud server is network-connected to the remote monitoring terminal; The data acquisition module is used to collect the energy consumption data and population density of each public building, and copy the data to the cloud server; The cloud server is used to store the energy consumption data and population density, summarize and analyze the energy consumption data and population density of public buildings in the same area, calculate the energy consumption quota value, energy consumption index value, and energy consumption benchmark value of public buildings in this area, and transmit the data to the remote monitoring terminal; The remote monitoring terminal is used for online monitoring of the overall energy resource consumption status of public buildings in a region, online monitoring of the energy resource consumption status of each public building and online monitoring of electricity safety, displaying the energy consumption quota, energy consumption index and energy consumption benchmark analysis results of public buildings, and inputting energy consumption data that cannot be collected from public buildings; The user interface displays energy management guidance corresponding to the energy management situation and the above energy management situation during the operation of the building and equipment, and receives user input according to the above energy management guidance; The energy management department manages the above buildings and equipment based on the above user input to manage the energy of the above buildings and equipment.
5. An energy monitoring and adjustment system for a green building according to claim 4, characterized in that, The data acquisition module includes: an intelligent electricity meter for collecting the total energy consumption data and electrical parameter data of each public building, the energy consumption data and electrical parameter data of special equipment, and copying the data to the cloud server; And / or an intelligent water meter for collecting the total water consumption data of each public building and copying the data to the cloud server; and / or an intelligent gas meter for collecting the gas consumption data of each public building and copying the data to the cloud server; And / or a people flow density acquisition device for collecting the people flow density in public buildings.
6. The energy monitoring and regulation system of a green building according to claim 5, characterized in that, The user interface department includes a display unit, which includes a situation display part and a guidance display part. The above situation display part displays the energy management situation during the operation of the above building and equipment, and the above guidance display part displays the energy management guidance corresponding to the above energy management situation; And an input unit for receiving user input according to the above energy management guidance.
7. The energy monitoring and regulation system of a green building according to claim 6, characterized in that: The comprehensive management project database databaseizes and pre-stores the comprehensive management project database by selecting data according to the building operation related projects or according to the building characteristics; and the comprehensive management department reads and constructs the building operation related project selection data input by the building operator or the comprehensive management project corresponding to the building characteristics from the above comprehensive management project database, and displays it on the above display unit.
8. The energy monitoring and regulation system of a green building according to claim 7, characterized in that: The cloud server includes an online monitoring and intelligent management system for the energy resource consumption of the management unit. The online monitoring and intelligent management system for the energy resource consumption of the management unit includes an energy consumption overview unit, an energy consumption statistics unit, an energy consumption analysis unit, an energy use management unit, an energy consumption quota standard formulation unit, a system management unit, an information input unit and a people flow statistics unit.
9. The energy monitoring and regulation system of a green building according to claim 8, characterized in that: The people flow density acquisition device is a camera. The camera is connected to the background software to perform image recognition to count the number of people at a certain time granularity, or the background software counts the number of people through a mobile communication operator.
10. The energy monitoring and regulation system of a green building according to claim 9, characterized in that: It also includes an energy guidance database, which is pre-databaseized in the following way. This way means defining the energy management guidance that may occur in the building and equipment, defining the environment and operation conditions applicable to the above energy management guidance, mapping the above energy management guidance to the above environment and operation conditions, and mapping the above environment and operation conditions to the measurement data of the building management system or the building automation system.
Citation Information
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