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Traditional upgrade methods involve complex system wiring circuits, high switch usage, and extensive engineering and materials.
Lighting control methods are singular, with limited panel prompts, requiring users to operate multiple times.
In situations such as unoccupied offices, after-hours scenarios, or when sunlight is sufficient, the lighting system cannot shut off intelligently, leading to high energy consumption.
The system lacks automated strategies and intelligent control methods for scenarios, associations, and remote operations, resulting in low control efficiency.
The intelligent lighting system is built around self-developed user language and UT-BUS bus technology, integrated with ZigBee wireless networking, cloud services, intelligent voice, and standard protocols. Relying on the dual-safety product design concept, it creates a low-cost, expandable, stable, and reliable intelligent lighting system, providing users with efficient, energy-saving, safe, and comfortable intelligent lighting solutions.
Space-time scene control
It implements switch control and lighting zone control, with many preset lighting scenarios. These scenarios are automatically adjusted based on time, the function of the location, and indoor/outdoor illumination levels.
User language programming
Users can achieve flexible control over each lighting circuit through custom programming, enabling the system to self-learn user habits and adapt to scenario adjustments accordingly.
Flexible and convenient control
The system provides various control methods such as button, touchscreen, voice, app, and workstation remote control, meeting the control needs of different scenarios.
Energy efficiency coordination
It can be integrated with building automation, IBMS, and intelligent power systems for coordinated control, executing energy management and conservation plans, and optimizing energy distribution and management.
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 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."
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.
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 system uses sensing control devices and IoT sensor networks to collect, identify, monitor, and control status information related to infrastructure, environment, buildings, and safety within the campus. Combining 3D modeling and IBMS platform, it creates flexible and intelligent scene solutions. Through the end-to-end connecting the space and time rights with the business and process rights, it implements the intelligent linkage and control between people, people and objects, and objects based on specific scenes to improve the management level of the campus and create a good campus environment experience.