Project Cases

Project Cases

Integrated energy solutions for airports and high-speed rail stations

Through the national standard energy consumption real-time collection system, accurate monitoring and intelligent analysis of energy data are realized. The system combines traffic schedules and meteorological data to dynamically adjust the operation of lighting, fresh air, and heating and cooling source equipment; uses machine learning algorithms to generate predictive control strategies, breaking through the spatio-temporal delay effect of energy transmission and distribution; relies on AI to build a dynamic energy consumption model, corrects parameters in real time and generates fault warning and contingency plans, simultaneously carrying out carbon emission trend deduction, providing multi-dimensional decision support for green and low-carbon operation.

School Integrated Energy Solutions

The school's integrated energy solution centers around a photovoltaic system, incorporating smart temperature control, air-source heat pumps, and direct-drinking water purification equipment to build a green, low-carbon energy system. A digital platform monitors energy production, storage, and consumption in real time, optimizing energy efficiency management, reducing maintenance costs, and promoting the transformation of smart energy use on campus, achieving the sustainable development goals of high efficiency, energy saving, and economic environmental protection.

Hospital Integrated Energy Solutions

Hospitals are unlike typical public buildings; their energy supply must be both uninterrupted and of guaranteed quality. Air conditioning and heating account for over 60% of total energy consumption, presenting significant potential for energy savings. A comprehensive, integrated energy design and implementation can effectively reduce hospital energy consumption.

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