Construction engineering site electric energy intelligent management system
By introducing intelligent electrical management systems on the construction project site, the problems of opacity and inconvenience in information in traditional power management methods are solved, real-time transparent and efficient management of power use are achieved, and energy waste and operation costs are reduced.
Patent Information
- Application Number
- CN202510263484.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-06-13
AI Technical Summary
Traditional on-site power management methods for construction projects have problems such as opacity in information and inconvenient management, resulting in blind spots in energy waste and management.
The intelligent power management system for on-site construction projects is adopted. The system includes an electric energy monitoring platform, a central data summary processing platform, a wireless transmission module and a remote monitoring platform. It connects various platforms through the wireless transmission module to realize real-time monitoring, remote monitoring, data analysis and early warning notification.
Real-time transparency of power use is achieved, the convenience and efficiency of power management is improved, potential problems are discovered and dealt with in a timely manner, equipment failure is avoided, and energy waste and operation costs are reduced.
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Figure CN120150352A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of construction project management, especially the intelligent power management system for construction project sites. Background Art
[0002] A construction project refers to the engineering entity formed by the construction of various housing buildings and their ancillary facilities and the installation of the associated lines, pipelines, and equipment. In a construction project, in addition to the structure and function of the housing building itself, it also includes associated facilities such as electrical circuits, plumbing pipes, and air conditioning equipment. The design, installation, and operation of these associated facilities are all important components of a construction project to ensure the normal use and functional operation of the building.
[0003] With the continuous development of construction projects, on-site management has become increasingly complex. Among them, power management is an important link. There are many problems in the traditional on-site power management method for construction projects, such as opaque information and inconvenient management, which bring inconvenience to the on-site power management work of construction projects. Therefore, a new power management system is needed to improve management efficiency and reduce costs. Summary of the Invention
[0004] The purpose of this application is to provide an intelligent power management system for construction project sites to solve the problems raised in the above background art.
[0005] To achieve the above purpose, this application adopts the following technical solutions:
[0006] An intelligent power management system for construction project sites includes a power monitoring platform, a central data aggregation and processing platform, a wireless transmission module, and a remote monitoring platform; the power monitoring platform is signal-connected to the remote monitoring platform through the wireless transmission module, and the remote monitoring platform is signal-connected to the central data aggregation and processing platform through the wireless transmission module;
[0007] The power monitoring platform is used to monitor the power usage situation at the construction project site in real time, send the power information to the remote monitoring platform through the wireless transmission module, and obtain the power quality situation of the electrical equipment according to the power quality parameters;
[0008] The remote monitoring platform is used for remote real-time monitoring, data analysis, and early warning of the power usage situation, sends the power information to the central data aggregation and processing platform through the wireless transmission module, and issues early warning notifications according to the power health status of the electrical equipment;
[0009] The wireless transmission module is used for the transmission and sending of power information;
[0010] The central data aggregation and processing platform is used to receive data sent by multiple remote monitoring platforms, and aggregate, analyze, process, etc. the data.
[0011] Furthermore, the power monitoring platform includes a power parameter acquisition module, a data processing and analysis module, a communication and data transmission module, a display and alarm module, and a power supply module. The power parameter acquisition module, the data processing and analysis module, and the communication and data transmission module are all connected to the remote monitoring platform through a wireless transmission module;
[0012] The data processing and analysis module is used to filter and denoise the collected raw data, calculate various parameters of electric energy based on the processed data, and perform trend analysis and anomaly detection to identify possible faults or abnormal states;
[0013] The communication and data transmission module is used to exchange data and cooperate with other devices or systems on-site, and upload data to the remote monitoring platform to achieve remote monitoring and management;
[0014] The display and alarm module is used to send early warning or alarm signals of faults or abnormal states to the system;
[0015] The power supply module provides a stable working voltage for the system to ensure the normal operation of the module.
[0016] Furthermore, the power parameter acquisition module includes a voltage acquisition module, a current acquisition module, a power factor acquisition module, an active power and reactive power acquisition module. The voltage acquisition module, the current acquisition module, the power factor acquisition module, and the active power and reactive power acquisition module are all signal-connected to the remote monitoring platform through a wireless transmission module;
[0017] The voltage acquisition module is responsible for acquiring the voltage signals of each power line on-site; the current acquisition module is used to acquire current signals; the power factor acquisition module is used to measure the power factor of electric energy to reflect the utilization efficiency of electric energy; the active power and reactive power acquisition modules respectively acquire the active power and reactive power of electric energy to evaluate the consumption and compensation of electric energy.
[0018] Furthermore, the data processing and analysis module includes a data preprocessing module, a data calculation and analysis module, and a fault diagnosis and early warning unit module. The data preprocessing module, the data calculation and analysis module, and the fault diagnosis and early warning unit module are all connected to the remote monitoring platform through a wireless transmission module. The data preprocessing module is used to filter and denoise the collected raw data to improve the accuracy and reliability of the data. The data calculation and analysis module is used to calculate various parameters of electric energy based on the processed data and perform trend analysis and anomaly detection. The fault diagnosis and early warning unit module is used to identify possible faults or abnormal states based on the data analysis results and send early warning or alarm signals to the system.
[0019] Furthermore, the remote monitoring platform includes a data collection and transmission module, a remote monitoring center module, a data analysis and early warning module, an alarm and notification module, a data storage and management module, and a user management and permission control module. The data collection and transmission module, the remote monitoring center module, the data analysis and early warning module, the alarm and notification module, the data storage and management module, and the user management and permission control module are all connected to the central data aggregation and processing platform through a wireless transmission module.
[0020] The data collection and transmission module is responsible for collecting electric energy parameters in real time and transmitting the collected electric energy data to the remote monitoring center or the central data aggregation and processing platform. The data analysis and early warning module deeply analyzes the received electric energy data, automatically detects abnormal events through setting thresholds or machine learning algorithms, and sends early warning signals. The alarm and notification module is used to send abnormal state early warning or alarm signals to the central data aggregation and processing platform. The data storage and management module is responsible for storing electric energy data and alarm records, ensuring the security and integrity of the data, regularly backing up the data to prevent data loss, and providing a data recovery function. The user management and permission control module is used to manage and maintain system users, including user registration, login, role assignment, etc., and controls their access and operation scope of the system according to user roles and permissions to ensure system security.
[0021] Furthermore, the remote monitoring center module includes a data reception and parsing module, a real-time monitoring and display module, and a control and instruction issuing module. The data reception and parsing module, the real-time monitoring and display module, and the control and instruction issuing module are all connected to the central data aggregation and processing platform through a wireless transmission module.
[0022] Furthermore, the alarm and notification module includes an alarm trigger module and a notification sending module. The alarm trigger module and the notification sending module are all connected to the central data aggregation and processing platform through a wireless transmission module.
[0023] Compared with the prior art, the present application has the following beneficial effects:
[0024] (1) In the present application, the electric energy detection module can collect key electric energy parameters such as voltage, current, and power at the construction site in real time, and through high-precision measurement and data processing, accurately reflect the electric energy usage situation. This enables the management personnel to understand the real-time state of the on-site electric energy at any time, improves the transparency of electric energy usage, and avoids energy waste and management blind spots caused by information opacity. The system can monitor the operation status of electric energy equipment in real time. Once an abnormality or fault is detected, it can quickly give an early warning and diagnosis. This helps the management personnel to discover and handle potential problems in a timely manner, avoid the adverse effects of equipment failures on construction projects, and improve the reliability and stability of the equipment.
[0025] (2) In the present application, through the remote monitoring module, the management personnel can remotely monitor the electric energy usage status at the construction site in real time. No matter where they are, as long as there is a network connection, they can view key parameters such as voltage, current, and power at the site at any time, understand the operation status of the equipment and the electric energy consumption situation. This breaks the limitations of traditional on-site monitoring and makes electric energy management more convenient and efficient. Once an abnormal situation occurs in the electric energy equipment, such as overload, under-voltage, leakage, etc., the system can immediately send out an early warning signal and notify the management personnel by means of SMS, email, or APP push, etc. This enables the management personnel to quickly discover and handle the abnormality, avoid the occurrence of equipment failures or accidents, and thus ensure the safe operation of the equipment. Therefore, it makes the information at the construction site transparent and the management convenient, bringing convenience to the electric energy management work at the construction site. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 is a schematic diagram of the overall system module structure of the present invention;
[0027] Figure 2 is a schematic diagram of the module structure of the electric energy monitoring platform in the present invention;
[0028] Figure 3 is a schematic diagram of the module structure of the remote monitoring platform in the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0029] To facilitate the understanding of the present application, the following will refer to the relevant content to describe the present application more comprehensively. Several embodiments of the present application are given. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.
[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the technical field to which this application belongs. The terms used in the description of this application are only for the purpose of describing specific embodiments and are not intended to limit this application.
[0031] Embodiment 1
[0032] As Figure 1 shown, the intelligent power management system for construction sites of this application includes a power monitoring platform, a central data aggregation and processing platform, a wireless transmission module, and a remote monitoring platform; the power monitoring platform is signal-connected to the remote monitoring platform through the wireless transmission module, and the remote monitoring platform is signal-connected to the central data aggregation and processing platform through the wireless transmission module. The power monitoring platform of this application is used to monitor the power usage situation at the construction site in real time, send power information to the remote monitoring platform through the wireless transmission module, and obtain the power quality situation of electrical equipment according to the power quality parameters; the remote monitoring platform is used for remote real-time monitoring, data analysis, early warning and alarm of the power usage situation, send power information to the central data aggregation and processing platform through the wireless transmission module, and give early warning notifications according to the power health status of electrical equipment; the wireless transmission module is used for the transmission and sending of power information; the central data aggregation and processing platform is used to receive data sent by multiple remote monitoring platforms and aggregate, analyze, process, etc. the data.
[0033] It should be further explained for the power monitoring platform: It can also provide real-time power data, providing a basis for managers to optimize energy allocation. Through data analysis, peak and trough energy consumption can be identified, and the operation time and power of equipment can be reasonably adjusted to achieve energy conservation and optimized utilization. This helps to reduce the energy consumption cost of construction projects and improve the economic benefits of the project. Managers can make intelligent decisions based on real-time data, and the system can automatically adjust management strategies according to the power usage situation, improving management efficiency.
[0034] It should be further explained for the remote monitoring platform: It can collect a large amount of power usage data and deeply explore the power usage situation through data analysis techniques. Managers can understand the distribution and trend of power consumption based on these data, identify potential energy-saving spaces. At the same time, the system can also provide optimization suggestions according to historical data and real-time data, such as adjusting equipment operation time, optimizing power distribution, etc., so as to help managers formulate more scientific power management strategies and reduce energy consumption costs. Managers can obtain more comprehensive and accurate power usage information, providing more powerful support for decision-making. The system can automatically predict future power demands according to real-time data and historical data, providing a scientific basis for equipment procurement, allocation, and maintenance.
[0035] This system can collect and process electrical energy data on the construction site in real time, including key parameters such as voltage, current, and power. This enables managers to remotely view and monitor this data anytime and anywhere, breaking geographical limitations and achieving comprehensive data transparency. This helps managers to grasp the electrical energy usage situation in real time, promptly discover and solve potential problems, reducing the need for manual intervention. This not only improves management efficiency, reduces waste of human resources, but also can lower operating costs, bringing tangible economic benefits to the enterprise and providing convenience for the electrical energy management on the construction site.
[0036] As Figure 2 shown, the electrical energy monitoring platform described in this application includes an electrical energy parameter acquisition module, a data processing and analysis module, a communication and data transmission module, a display and alarm module, and a power supply module. The electrical energy parameter acquisition module, the data processing and analysis module, and the communication and data transmission module are all connected to the remote monitoring platform through a wireless transmission module, jointly constituting the electrical energy detection platform of the intelligent management system for electrical energy on the construction site, realizing comprehensive monitoring and management of the electrical energy usage situation;
[0037] The data processing and analysis module is used to process the collected raw data, such as filtering and noise reduction, calculate various parameters of electrical energy based on the processed data, and conduct trend analysis and anomaly detection to identify possible faults or abnormal states; the communication and data transmission module is used to exchange data and cooperate with other devices or systems on the site, and upload data to the remote monitoring platform to achieve remote monitoring and management; the display and alarm module is used to issue early warnings or alarm signals for faults or abnormal states to the system: the power supply module provides a stable working voltage for the system to ensure the normal operation of the module.
[0038] The electrical energy parameter acquisition module includes a voltage acquisition module, a current acquisition module, a power factor acquisition module, an active power and reactive power acquisition module. The voltage acquisition module, the current acquisition module, the power factor acquisition module, the active power and reactive power acquisition module are all signal-connected to the remote monitoring platform through a wireless transmission module; the voltage acquisition module is responsible for collecting voltage signals of each power line on the site, including phase voltage, line voltage, etc.; the current acquisition module collects current signals through devices such as current transformers or Hall elements, including phase currents and total current; the power factor acquisition module is used to measure the power factor of electrical energy to reflect the utilization efficiency of electrical energy; the active power and reactive power acquisition modules respectively collect the active power and reactive power of electrical energy to evaluate the consumption and compensation of electrical energy.
[0039] The data processing and analysis module includes a data preprocessing module, a data calculation and analysis module, and a fault diagnosis and warning unit module. The data preprocessing module, the data calculation and analysis module, and the fault diagnosis and warning unit module are all signal-connected to the remote monitoring platform through a wireless transmission module. The data preprocessing module is used to process the collected raw data, such as filtering and noise reduction, to improve the accuracy and reliability of the data. The data calculation and analysis module is used to calculate various parameters of electric energy based on the processed data, and perform trend analysis and anomaly detection. The fault diagnosis and warning unit module is used to identify possible faults or abnormal states based on the data analysis results, and send a warning or alarm signal to the system.
[0040] As Figure 3 shown, the remote monitoring platform includes a data collection and transmission module, a remote monitoring center module, a data analysis and warning module, an alarm and notification module, a data storage and management module, and a user management and permission control module. The data collection and transmission module, the remote monitoring center module, the data analysis and warning module, the alarm and notification module, the data storage and management module, and the user management and permission control module are all signal-connected to the central data aggregation and processing platform through a wireless transmission module, jointly constituting the remote monitoring platform of the intelligent power management system for the construction project site, realizing functions such as remote real-time monitoring, data analysis, warning and alarm of the power usage situation, and improving the efficiency and security of power management. Among them:
[0041] Data collection and transmission module: Responsible for real-time collection of power parameters, such as voltage, current, active power, reactive power, etc. These data are obtained through sensors or smart meters, and the collected power data are transmitted to the remote monitoring center or the central data aggregation and processing platform using wired or wireless communication technologies such as Ethernet, GPRS, LoRa, NB-IoT, etc.
[0042] Data analysis and warning module: Deeply analyzes the received power data, including trend analysis, energy consumption comparison, load forecasting, etc. By setting thresholds or using machine learning algorithms, it automatically detects abnormal events, such as overload, undervoltage, leakage, etc., and sends a warning signal.
[0043] Data storage and management module: Responsible for storing power data and alarm records, ensuring the security and integrity of the data, regularly backing up the data to prevent data loss, and providing a data recovery function.
[0044] User management and permission control module: Used to manage and maintain system users, including user registration, login, role assignment, etc. According to user roles and permissions, it controls their access and operation scope of the system to ensure system security.
[0045] The remote monitoring center module includes a data reception and parsing module, a real-time monitoring and display module, and a control and instruction issuing module. The data reception and parsing module, the real-time monitoring and display module, and the control and instruction issuing module are all signal-connected to the central data aggregation and processing platform through a wireless transmission module. Among them, the data reception and parsing module is used to receive the electrical energy data from the site, and perform parsing and processing for subsequent analysis and display; the real-time monitoring and display module displays the electrical energy usage situation in real time through a monitoring interface or dashboard, including power statistics, load curves, abnormal events, etc.; the control and instruction issuing module: allows managers to remotely control and operate the on-site equipment, such as remotely opening and closing switches, parameter settings, etc.
[0046] The alarm and notification module includes an alarm trigger module and a notification sending module. The alarm trigger module and the notification sending module are both signal-connected to the central data aggregation and processing platform through a wireless transmission module. When the alarm trigger module detects an abnormality or a fault, it triggers the alarm mechanism; the notification sending module sends the alarm information to the managers in a timely manner through methods such as text messages, emails, and APP push, ensuring rapid response and handling.
[0047] The electrical energy parameter acquisition module acquires key electrical energy parameters such as voltage, current, and power at the construction site. Through high-precision measurement and data processing, it accurately reflects the electrical energy usage situation, enabling managers to understand the real-time status of on-site electrical energy at any time, improving the transparency of electrical energy usage, and avoiding energy waste and management blind spots caused by information opacity. The system can monitor the operating status of electrical energy equipment in real time. Once an abnormality or a fault is detected, it can quickly give an early warning and diagnosis, which helps managers discover and handle potential problems in a timely manner, avoiding the adverse effects of equipment failures on construction projects, and improving the reliability and stability of the equipment. The remote monitoring center module can remotely monitor the electrical energy usage status at the construction site in real time. No matter where you are, as long as there is a network connection, you can view key parameters such as on-site voltage, current, and power at any time, and understand the operating status and electrical energy consumption of the equipment. This breaks the limitations of traditional on-site monitoring and makes electrical energy management more convenient and efficient. Once an abnormality occurs in the electrical energy equipment, such as overload, undervoltage, leakage, etc., the system can immediately send out an early warning signal and notify the managers through methods such as text messages, emails, or APP push. This enables managers to quickly discover and handle the abnormality, avoiding the occurrence of equipment failures or accidents, and thus ensuring the safe operation of the equipment. Therefore, it makes the information at the construction site transparent and the management convenient, bringing convenience to the electrical energy management work at the construction site.
[0048] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.
Claims
1. Intelligent management system for electric energy on construction site, characterized by: It includes an electric energy monitoring platform, a central data aggregation and processing platform, a wireless transmission module and a remote monitoring platform; the electric energy monitoring platform is connected to the remote monitoring platform through the wireless transmission module, and the remote monitoring platform is connected to the central data aggregation and processing platform through the wireless transmission module; The power monitoring platform is used to monitor the power usage of the construction site in real time, send the power information to the remote monitoring platform through the wireless transmission module, and obtain the power quality of the electrical equipment according to the power quality parameters; The remote monitoring platform is used for remote real-time monitoring, data analysis, and early warning of power usage. It sends power information to the central data aggregation and processing platform through a wireless transmission module and issues early warning notifications based on the power health status of power-consuming equipment. The wireless transmission module is used to transmit and send the electric energy information; The central data aggregation and processing platform is used to receive data sent from multiple remote monitoring platforms, and aggregate, analyze, and process the data.
2. The intelligent management system for electric energy on construction sites according to claim 1 is characterized by: The electric energy monitoring platform includes an electric energy parameter acquisition module, a data processing and analysis module, a communication and data transmission module, a display and alarm module, and a power supply module. The electric energy parameter acquisition module, the data processing and analysis module, and the communication and data transmission module are all connected to the remote monitoring platform through a wireless transmission module; The data processing and analysis module is used to filter and reduce noise on the collected raw data, calculate various parameters of electric energy based on the processed data, perform trend analysis and anomaly detection, and identify possible faults or abnormal conditions; The communication and data transmission module is used to exchange data and work in collaboration with other devices or systems on site, and to upload data to the remote monitoring platform to achieve remote monitoring and management; The display and alarm module is used to send a fault or abnormal state warning or alarm signal to the system; The power supply module provides a stable operating voltage for the system to ensure the normal operation of the module.
3. The intelligent management system for electric energy on construction site according to claim 2 is characterized by: The electric energy parameter acquisition module includes a voltage acquisition module, a current acquisition module, a power factor acquisition module, and an active power and reactive power acquisition module. The voltage acquisition module, the current acquisition module, the power factor acquisition module, the active power and reactive power acquisition module are all connected to the remote monitoring platform signal through a wireless transmission module; The voltage acquisition module is responsible for collecting voltage signals of various power lines on site; the current acquisition module is used to collect current signals; the power factor acquisition module is used to measure the power factor of electric energy to reflect the utilization efficiency of electric energy; the active power and reactive power acquisition modules respectively collect the active power and reactive power of electric energy to evaluate the consumption and compensation of electric energy.
4. The intelligent management system for electric energy on construction site according to claim 2 is characterized by: The data processing and analysis module includes a data preprocessing module, a data calculation and analysis module, and a fault diagnosis and early warning unit module. The data preprocessing module, the data calculation and analysis module, and the fault diagnosis and early warning unit module are all connected to the remote monitoring platform signal through a wireless transmission module; the data preprocessing module is used to filter, reduce noise and other processing on the collected original data to improve the accuracy and reliability of the data; the data calculation and analysis module is used to calculate various parameters of electric energy based on the processed data, and perform trend analysis and anomaly detection; the fault diagnosis and early warning unit module is used to identify possible faults or abnormal conditions based on the data analysis results, and send a warning or alarm signal to the system.
5. The intelligent management system for electric energy on construction site according to claim 1 is characterized by: The remote monitoring platform includes a data acquisition and transmission module, a remote monitoring center module, a data analysis and early warning module, an alarm and notification module, a data storage and management module, and a user management and authority control module. The data acquisition and transmission module, the remote monitoring center module, the data analysis and early warning module, the alarm and notification module, the data storage and management module, and the user management and authority control module are all connected to the central data aggregation processing platform through a wireless transmission module. The data acquisition and transmission module is responsible for real-time acquisition of power parameters and transmission of the acquired power data to a remote monitoring center or a central data aggregation and processing platform; the data analysis and early warning module performs in-depth analysis on the received power data, automatically detects abnormal events by setting thresholds or machine learning algorithms, and issues early warning signals; the alarm and notification module is used to issue abnormal status early warnings or alarm signals to the central data aggregation and processing platform; The data storage and management module is responsible for storing power data and alarm records, ensuring the security and integrity of the data, regularly backing up the data to prevent data loss, and providing data recovery function; the user management and authority control module is used to manage and maintain system users, including user registration, login, role assignment, etc., and control their access to the system and the scope of operation according to the user's role and authority to ensure system security.
6. The intelligent management system for electric energy on construction site according to claim 5 is characterized by: The remote monitoring center module includes a data receiving and analyzing module, a real-time monitoring and display module, and a control and command issuing module. The data receiving and analyzing module, the real-time monitoring and display module, and the control and command issuing module are all connected to the central data aggregation and processing platform through a wireless transmission module.
7. The intelligent management system for electric energy on construction sites according to claim 5 is characterized by: The alarm and notification module includes an alarm trigger module and a notification sending module. Both the alarm trigger module and the notification sending module are connected to the central data aggregation and processing platform through a wireless transmission module.