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What is the energy-saving management effect of intelligent building system?
A successful intelligent building system is not only a collection of various technologies, but also requires a high degree of intelligent integration. This means that all systems and devices can work together seamlessly to achieve synergy and provide greater value. Some key advantages of intelligent integration are as follows:
Higher efficiency: Intelligent integration can realize automatic cooperation between devices and reduce conflicts and waste. For example, when there is no one in the building, the system can automatically turn off unnecessary equipment to save energy.
Better user experience: Intelligent integration can automatically adjust the building environment according to users' needs and preferences to provide a more comfortable experience. Users can enjoy personalized service at home or in business places.
Reduce manual intervention: Intelligent integration reduces the need for manual intervention and reduces management and operation costs. This also helps to reduce human errors and accidents.
Real-time monitoring and response: The system can monitor various parameters in real time, and quickly respond to emergencies, such as fire alarm or safety problems, thus improving the safety of buildings.
Sustainability and environmental protection: Intelligent integration helps to optimize energy use, reduce waste, improve the sustainability of buildings and reduce the adverse impact on the environment.
The digital twin system of the smart park is created, which truly restores the three-dimensional scene of the park and displays security, fire protection, lighting, air conditioning, elevators, water supply and drainage, electricity and other equipment in detail. With the help of the data billboards on both sides, the asset data, environmental data and security data of the building can be displayed intuitively. Realize human-computer interaction, information sharing, safety monitoring, energy saving and environmental protection, including but not limited to personnel and equipment management, energy consumption monitoring and regulation, safety monitoring and early warning, intelligent traffic management, etc. Its purpose is to improve the overall quality of living and working environment and contribute to the sustainable development of the city.
Energy efficiency management of intelligent buildings aims at centralized monitoring and management of energy use such as power distribution, lighting, air conditioning, water supply and drainage in buildings. Analyze the relationship between equipment database and energy consumption, carry out data mining, regularly evaluate and improve the performance of equipment energy consumption, so that each building energy consumption equipment system can operate efficiently under different working conditions, and achieve the purpose of further optimizing energy conservation.
By combining the distribution line with the building model, the trend of the distribution line can be viewed intuitively, and the power data can be monitored by IOT equipment. When there is a power failure, it can send out an alarm signal in time to ensure the normal operation and system safety of the power system.
In the aspect of building automation, the HT data visualization supervision platform is applied to realize the linkage between reality and three-dimensional scene by restoring the lighting equipment points in the floor and connecting the lighting control system, so that all lighting equipment states in the building can be supervised and controlled without leaving home, so as to reduce the daily lighting energy consumption and realize real intelligent lighting.
In the management and control platform of smart park, the pipes and equipment of air-conditioning system can be restored and displayed, the routing of air-conditioning bridge and data such as temperature, humidity and air quality can be viewed intuitively, and the reverse control of air-conditioning equipment can be supported through three-dimensional scenes, so as to carry out real-time maintenance and troubleshooting of air-conditioning equipment, and improve the air environment quality in the park and the work efficiency of traffic managers.
Water supply and drainage management is mainly used to monitor and manage the water supply and drainage and sewage treatment system of buildings. HT can visually display water quality monitoring, water quantity monitoring, water leakage monitoring, water pressure monitoring and sewage treatment monitoring in combination with three-dimensional scenes, understand the state data of water supply and drainage in real time, monitor the running state and abnormal situation of equipment, and help managers achieve the purposes of safe drinking water, resource saving and building safety.
Restore the parking spaces and facilities in the parking lot through the three-dimensional scene, dock the parking space data in real time and simulate the restoration in the three-dimensional scene, monitor the parking space occupation in the park, and carry out vehicle management. Based on multi-dimensional data such as space, time and index, the traffic flow, type and time period analysis data of vehicles in the park are dynamically refreshed, and the daily parking space usage in the park is summarized in real time, effectively improving the traffic efficiency and parking space usage efficiency.
In the smart community visualization platform, by binding the elevator operation data-driven model, the elevator animation simulation is realized, and the abnormal alarm equipment is highlighted, which greatly increases the response efficiency of elevator fault handling and ensures the safety of personnel.
By integrating the capabilities of various business units in the park, the information island is broken, and the functional areas such as building security, energy saving, transportation, environment and equipment assets are globally controlled in the form of data visualization. Hightopo visualization can gradually realize refined energy management, reduce total energy consumption, improve energy utilization rate, achieve the purpose of dual control of energy consumption, effectively improve park management efficiency and reduce management costs.
Intelligent building system can monitor and optimize the use of power, lighting and air conditioning equipment to ensure the efficient use of energy. By intelligently adjusting the working mode of equipment, energy consumption and energy cost can be significantly reduced. At the same time, it supports real-time monitoring of environmental parameters in buildings, such as air quality, temperature and humidity. This helps to provide a healthier working and living environment and reduce indoor pollution and discomfort. On the basis of collecting a large number of data, detailed reports and analysis are made to help building managers better understand building performance, make decisions and optimize resource allocation.
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