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The campus energy efficiency management system utilizes digital IoT and other intelligent power technologies to provide comprehensive monitoring and management of power distribution, distributed energy equipment, personnel, and environments for users such as enterprises, factories, hospitals, campuses, and buildings. It enables operational monitoring, energy efficiency management, intelligent O&M energy coordination, transfer supply operations, and full lifecycle management of equipment assets. The system also meets the requirements of government and power regulatory authorities for online energy consumption monitoring and demand-side management, contributing to the goals of "carbon peaking and carbon neutrality."
Comprehensive perception and control
Using ubiquitous communication/network interconnection, the system connects devices for data collection, monitoring, adjustment, control, and locking at the site. It applies intelligent power technology to monitor and manage user-side power equipment, personnel, and environments comprehensively, enabling full perception and intelligent control.
Cloud-based integrated platform
The platform supports modular application integration and flexible expansion through the YunTu PaaS service, meeting various personalized customization needs; with SaaS services, APP interaction, and edge/local monitoring and control technology, it fully supports the integration of subsystems and the integration of various power distribution and usage services.
Multiple safety
Through specialized power monitoring and energy/load regulation technologies, the system ensures stable and reliable power supply; provides asset lifecycle management through digital methods, ensuring equipment asset safety; manages operational and maintenance processes using intelligent methods, ensuring safe O&M activities.
Comprehensive efficiency improvement
It optimizes the utilization of distribution assets and system operation efficiency and reduces energy consumption and costs while improving energy utilization performance; unifies and integrates O&M and business information, facilitating data sharing and efficient full-process O&M collaboration, enhancing overall management efficiency.
Comprehensive energy management
The system performs real-time monitoring and energy balance control, fully utilizing the regulatory role of microgrid loads and energy storage to smooth out fluctuations in distributed renewable energy power; achieves dynamic balancing of distributed power sources, energy storage, and loads, and enables flexible and friendly interaction with the main grid.
Optimal grid coordination
The system integrates with the main power grid to participate in automatic demand response and peak-shaving electricity use, prioritizing local renewable energy and off-peak electricity from the main grid; fully utilizes the regulatory functions of microgrid loads and energy storage to smooth fluctuations in distributed renewable energy power, promoting the absorption and utilization of distributed renewable energy.
Specialized energy efficiency analysis
The system provides detailed energy data queries and analyses, including power and power quality analysis, load analysis, energy consumption and cost analysis, water/gas usage analysis, energy consumption comparison, and time-based energy analysis, assisting users in improving energy efficiency, ensuring reliable power supply, and reducing energy costs.
Intelligent supply-demand balance
The system maintains dynamic balance and optimization of energy and loads under various modes, ensuring the highest possible power quality and reliability by prioritizing loads and power sources. It automatically meets constraints such as power equipment capacity and maximum demand, and can adjust equipment operating schedules to avoid peak periods and reduce electricity costs.
The industrial enterprise power distribution and O&M control system adopts intelligent power technologies such as digital IoT to provide comprehensive monitoring and management of the user-side power distribution equipment, personnel, and environment. It enables operational monitoring, energy efficiency management, intelligent O&M, sub-supply operation, and full lifecycle management of equipment assets. Additionally, it meets the requirements of government and power regulatory authorities for online energy consumption monitoring and demand-side management for energy users.
The solution utilizes intelligent microgrid coordination control devices, integrating renewable energy equipment such as solar, energy storage, and charging systems, as well as various intelligent load devices or systems. It enables coordinated and optimized operation, along with safe and stable control of distributed power sources, energy storage, and loads. This ensures the microgrid remains balanced, stable, and operates efficiently and economically, and facilitates large-scale integration and utilization of distributed renewable energy, thereby contributing to the goals of "carbon peaking and carbon neutrality."
The intelligent sensor control devices and the energy efficiency management cloud service platform enable power monitoring, analysis, optimized management, and coordinated control. Assist users in improving energy use efficiency and ensuring power supply safety and reliability, reducing energy costs, actively participating in demand response, and avoiding overloads, thus delaying capacity expansion. It promotes energy saving, emission reduction, and electricity substitution, contributing to "carbon peak and carbon neutrality."
The industrial enterprise energy efficiency management system realizes monitoring, analysis, optimized management, and coordinated control of electrical energy through intelligent sensor control devices and an energy efficiency management cloud service platform. It assists users in improving energy efficiency and ensuring the safety and reliability of power supply, reducing energy costs, actively participating in demand response, and avoiding load limits, thereby delaying capacity increase investments. It promotes energy saving, emission reduction, and electricity substitution, contributing to "carbon peak and carbon neutrality."
The intelligent energy O&M control system is primarily designed for supply-side energy users, including photovoltaic stations, wind turbines, energy storage stations, charging stations, integrated energy stations, and multi-energy integration stations. It facilitates intelligent O&M and monitoring across these scenarios, enabling intelligent energy O&M on the regional energy production and supply side.
The Unitech intelligent home system includes subsystems such as intelligent lighting, intelligent safety, HVAC environment control, intelligent shading, AI voice control, and intelligent scenes. It is built around independently developed UT-BUS bus technology and proprietary user language technology, combined with ZigBee wireless networking technology. Based on the dual-safety product design concept, the system creates a rich, stable, and reliable intelligent environment, offering a comfortable and personalized intelligent home experience for users.
The system collects, identifies, monitors and controls the status information of infrastructure, environment, buildings, safety and other aspects of the campus through the perception and control of equipment and the IoT sensor network. Integrate and interactively manage video surveillance, access control, intelligent lighting, and intrusion safety through the three-dimensional IBMS platform. By establishing end-to-end integration of spatiotemporal access and business/process permissions, the system enables intelligent interaction and control between people, between people and objects, and between objects in specific scenarios, which enhances campus management efficiency and improves the overall environmental experience.