Empower Industrial and Commercial Buildings with Smarter Energy
Industry Challenges
& Solution Overview
Under the goals of "Dual Carbon" targets and the digital transformation of energy, building and campus energy consumption is evolving from a traditional power supply to an intelligent, perceptible, analyzable, and optimizable system. Facing challenges like diverse load types, complex operating conditions, and the need for refined management, traditional power distribution systems can no longer support modern energy management models.
Building on established medium- and low-voltage (MV/LV) distribution architectures and digital technologies, this solution creates a smart power distribution system for commercial and industrial scenarios. It achieves end-to-end visibility and control, from the medium-voltage incoming line and low-voltage distribution down to the final loads. By combining a standardized hardware architecture with digital monitoring capabilities, the system effectively improves power supply reliability, operational transparency, and energy efficiency management. It provides a stable, safe, and sustainably evolvable energy foundation for smart campuses, commercial complexes, and various public buildings.
Low Energy Visibility
Manual Maintenance & Slow Response
Fragmented Systems & High Carbon
Customizable Solutions
Sensing Layer
Achieves Full Visibility into the Power System
By deploying intelligent measurement and sensing devices at key nodes, the system enables real-time data collection on power quality and operational status.
• Captures key parameters like voltage, current, power, and energy.
• Monitors energy consumption at the circuit and device levels.
• Perceives temperature, status, and alarms at critical points.
• Supports deployment across multiple circuits and scenarios.
• Provides a complete, accurate data foundation for subsequent control and analysis.


Control Layer
Ensures Safe Operation and Enables Smart Control
Based on standardized low-voltage distribution and control units, the system ensures reliable control and protection for different loads.
• Multi-level distribution structure supports selective protection and fault isolation.
• Enables hierarchical management for power loads, lighting loads, and critical loads.
• Supports remote control, coordinated control, and emergency switching.
• Safeguards power supply continuity and reduces system operational risks.
Platform Layer
Enables Centralized Management and Intelligent Decision-Making
A unified energy management platform processes and analyzes collected data, delivering:
• Energy visualization and trend analysis.
• Abnormal alarm notification and operational status monitoring.
• Energy efficiency evaluation and energy-saving optimization recommendations.
• Provides decision-making support for smart maintenance and refined management.
• The platform-based architecture offers continuous evolution capabilities for future system expansion, energy management, and carbon management applications.

Main Advantages
Visibility & Control
Safety & Reliability
Easy Expansion & Sustainable Evolution
Future-Ready Digital Foundation
Transforms energy management from “invisible” to “clearly visible and manageable”.







