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Solutions
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.
Distributed energy centralized monitoring
Integrates four endpoints—source, grid, load, and storage, connects energy devices such as electricity, wind, solar, storage, charging, cooling, heating, steam, and gas, collects information, controls status, and realizes integrated energy monitoring and control for the campus.
Operation process safety management and control
Safety management/locking/isolation during O&M processes includes operation tickets, work tickets, intelligent anti-misoperation, maintenance locking, energy isolation, personnel positioning, intelligent grounding, and safety tool management.
Online monitoring of equipment environment
The temperature, partial discharge, leakage, pressure, and other conditions of energy equipment, as well as the environments of various stations and pipe corridors in energy production, transmission and distribution, storage, transformation, and consumption areas, are monitored through video surveillance and intelligent analysis. Additionally, AI-driven diagnostics and analysis are used for status monitoring.
Standardized closed-loop O&M management
It generates O&M strategies and plans through diagnostic analysis, tracks work orders, manages processes and safety, and updates equipment status and drawings, creating a closed-loop system for feedback and tracking.
Intelligent inspection management
Using inspection point identification tags, the system supports manual inspection management via a mobile app and integrates with drones, robots, and video systems for intelligent online inspections of edge devices and systems, achieving system integration and business fusion.
Intelligent lock, control and safety
The system uses intelligent locks for access control and integrates with the safety facilities of various energy stations, achieving intelligent safety system integration and business fusion.
Operational statistics, analysis, and evaluation
Provides intelligent diagnosis and hidden risk warnings for energy equipment status and system stability and safety;
Simulates operations optimization, plans technical upgrades, and evaluates management improvement potential, generating strategy recommendations.
Energy efficiency and carbon emission analysis
Provides interactive energy efficiency statistics and analysis;
Gathers information on comprehensive energy production, operation, and consumption in the campus, as well as energy carbon emission data and compliance data;
Performs predictive analysis on the carbon neutrality process by using big data analysis technology.
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 comprehensive energy O&M system for industrial enterprises works collaboratively from both the energy supply and consumption sides. It achieves comprehensive energy dispatching of various distributed energy stations in industrial parks, enabling intelligent operation, monitoring, maintenance, complementarity, optimization, coordinated management, and control across the entire process and life cycle of energy generation (production), supply (transmission), transformation (conversion), distribution (allocation), and consumption (utilization). This supports industrial parks in taking the lead in achieving "carbon peaking and carbon neutrality."
By monitoring the carbon emissions in various scenarios across the campus and using scientific accounting models to audit carbon assets, the system helps identify reduction measures, achieving the goals of energy saving, emission reduction, and efficiency improvement, and creating a near-zero carbon benchmark campus. By connecting energy, building, and office subsystems with edge intelligent devices, the system integrates energy consumption data into a digital platform. This helps optimize green energy supply at the source, ensures effective carbon emission monitoring at the terminal, and upgrades intelligent management during the process. Ultimately, it enables near-zero carbon circular economic development and a green living experience. With the goal of achieving carbon neutrality in the campus, a closed-loop system is created that covers data collection of carbon emission sources, emission accounting, asset inventory, and carbon neutrality strategies.
By deeply integrating intelligence and informatization, this solution creates a new pattern for a intelligent and warm mining area, constructing a first-class intelligent coal mine support platform and building an efficient, safe, convenient, green, and healthy campus environment. Fully utilizing 5G, IoT, and digital twin technologies to build new infrastructure for the campus, the solution establishes an intelligent control and operation management platform for surface mining, achieving intelligent interconnectivity, twin control of the mining area, and promoting the construction of a safe, intelligent, green, and happy intelligent mining area.
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.