Public facilities, as the core carrier of urban operation and people's daily life, cover municipal buildings, schools, hospitals, transportation hubs, parks, commercial plazas and other scenarios. These facilities have the characteristics of large energy consumption, complex operation scenarios, high safety requirements and long service cycles. However, most public facilities are currently facing prominent pain points such as high energy consumption and low efficiency, insufficient safety protection, difficult operation and maintenance, and difficulty in integrating renewable energy. To address these challenges, we launch a comprehensive Public Facilities Energy Solution, integrating advanced energy technology, intelligent management systems and professional operation and maintenance services, tailored to the diverse needs of different public facilities, to help build efficient, safe, low-carbon and intelligent public spaces.
Solution Overview
Our Public Facilities Energy Solution is built on the core concepts of "efficiency, safety, intelligence and sustainability", covering five major functional directions. By integrating full-chain energy products, intelligent monitoring and control platforms, and professional operation and maintenance teams, we realize the whole-process management of public facility energy "generation, storage, distribution, use, protection and maintenance", helping public institutions reduce energy consumption, lower operation costs, ensure operational safety, and promote the construction of low-carbon cities.
The solution has strong adaptability and scalability, which can be flexibly adjusted according to the type, scale, functional characteristics and regional energy policies of public facilities, ensuring that it can meet the personalized energy and operation needs of different public scenarios.
Core Solution Content
Aiming at the pain points of large energy demand, high dependence on grid power, and easy power outages affecting normal operation in public facilities, we provide stable, reliable and efficient energy supply support to ensure the continuous and safe operation of public facilities. We adopt industrial-grade high-energy-density energy storage batteries, which can be flexibly configured according to the energy demand of public facilities (ranging from 50kWh to 500kWh), suitable for installation in equipment rooms, basements and other spaces, capable of storing surplus grid power or renewable energy power and providing stable power supply during peak energy consumption or grid outages. Equipped with an intelligent power distribution cabinet and control module, we can realize real-time monitoring and dynamic adjustment of power supply, balance the load of each power consumption area, avoid overload and voltage instability, and ensure the normal operation of high-power equipment such as elevators, air conditioners, and medical equipment (for hospitals). We also configure high-power emergency generators and rapid switching devices, which can realize 0.5-second rapid switching when the grid is cut off, ensuring that key areas and equipment (such as emergency channels, operating rooms, signal systems, and fire-fighting equipment) are not interrupted, effectively avoiding safety hazards and operational losses caused by power outages. This part of the solution ensures the stability and continuity of public facility energy supply, reduces the impact of grid outages on public services, balances peak and valley energy consumption, and lays a solid foundation for the normal operation of public facilities.
Combined with the energy consumption characteristics of public facilities (long operation time, large number of equipment, and uneven energy consumption), we optimize energy usage through scientific scheduling, intelligent adjustment and technical transformation to reduce energy waste and operation costs. We realize the interconnection between energy systems and public facility equipment (air conditioners, lighting, ventilation, elevators, etc.), and automatically adjust the operation state of equipment according to the number of people, environmental temperature and usage scenarios; for example, adjust the air conditioner temperature and lighting brightness in public areas according to the flow of people, and turn off unused equipment in non-operating hours to achieve energy saving without affecting service quality. The intelligent energy management platform can real-time monitor the energy consumption of each area and each equipment of public facilities, generate detailed energy consumption reports, analyze energy-wasting links, and push targeted energy-saving transformation suggestions (such as replacing high-energy-consuming equipment with energy-saving equipment, optimizing pipeline insulation, etc.). We also provide professional energy-saving transformation services for public facilities, including the replacement of energy-saving lighting, the transformation of central air conditioning systems, the installation of heat recovery equipment, etc., to further improve energy utilization efficiency and reduce energy consumption. This part of the solution can reduce the energy consumption of public facilities by 20%-30%, lower the operation and maintenance costs of public institutions, and promote the energy-saving transformation of public facilities in line with national energy-saving and emission-reduction policies.
Aiming at the pain points of large scale of public facilities, scattered equipment, high difficulty in operation and maintenance, and high labor costs, we realize the intelligent management of equipment operation and maintenance to improve operation and maintenance efficiency and reduce operation and maintenance costs. The built-in sensor and monitoring module of the equipment can real-time detect the operation status of energy equipment, power distribution equipment and other key equipment, and send early warning information in time when abnormalities (such as equipment overheating, failure, and energy leakage) occur, avoiding the expansion of faults. The system automatically formulates maintenance plans according to the operation time, fault records and maintenance standards of the equipment, and assigns maintenance tasks to professional technicians, realizing regular maintenance and precise maintenance, reducing unnecessary maintenance work and labor costs. We also support remote monitoring and remote debugging of equipment through the mobile APP and background management platform; technicians can handle common faults remotely without on-site operation, improving the efficiency of fault handling and reducing the impact of equipment faults on public services. This part of the solution can improve the operation and maintenance efficiency of public facilities by 40%+, reduce operation and maintenance labor costs by 25%+, extend the service life of equipment, and ensure the stable operation of public facilities.
Public facilities have a large flow of people and high safety requirements, so we integrate energy supply and safety protection to effectively prevent electrical hazards such as electrical fires, electric shocks, and equipment damage, and protect the safety of the public and public property. The energy system and power distribution system are equipped with overload protection, short-circuit protection, leakage protection, voltage surge protection, over-temperature protection and other functions; when an electrical fault occurs, it can cut off the power supply in time to avoid the expansion of hazards. At the same time, the equipment adopts flame-retardant, waterproof and anti-corrosion designs, adapting to the complex environment of public facilities. We integrate with the fire-fighting system of public facilities, detect electrical fire hazards (such as line aging, short circuit) in real time, send fire alarm information to the property management and fire-fighting department, and link with the emergency power supply and fire-fighting equipment to start emergency disposal measures, minimizing the loss caused by fire. We also regularly conduct electrical safety inspections on public facilities, generate safety inspection reports, and remind the management to eliminate potential safety hazards in time; for key areas (such as crowded places, equipment rooms), we set up 24-hour real-time monitoring to ensure safety. This part of the solution eliminates electrical safety hazards in public facilities, protects the safety of the public and public property, reduces the risk of electrical accidents, and ensures the safe operation of public facilities.
In response to the national low-carbon city construction policy, we help public facilities integrate renewable energy (solar energy, wind energy, etc.) to reduce reliance on grid power, reduce carbon emissions, and set an example for low-carbon development. According to the layout, area and environmental conditions of public facilities, we design customized renewable energy systems; for example, install rooftop solar panels for municipal buildings, schools and hospitals; install small wind power generation equipment for parks and transportation hubs to realize the efficient utilization of clean energy. The renewable energy system is closely integrated with the large-capacity energy storage system, storing excess clean energy power and supplying power to public facilities when renewable energy is insufficient, ensuring the stability of energy supply and maximizing the utilization rate of clean energy. Combined with local renewable energy incentive policies and low-carbon city construction requirements, we provide professional policy consultation and application guidance for public institutions, help public facilities obtain policy support and subsidies, and reduce the initial investment cost of renewable energy integration. This part of the solution can reduce the long-term energy costs of public facilities by 25%-35%, reduce carbon emissions, help public institutions achieve low-carbon operation goals, and promote the construction of low-carbon cities.
Solution Advantages
Scenario Adaptability: Tailor-made solutions according to the type, scale and functional characteristics of public facilities, solving the personalized pain points of different public scenarios (such as hospitals focusing on emergency power supply, schools focusing on energy saving and safety, etc.).
Intelligent Operation: Integrate intelligent monitoring, scheduling and operation and maintenance systems, reduce manual intervention, improve operation efficiency, and reduce operation and maintenance costs.
Safety and Reliability: Equipped with multi-layer safety protection mechanisms and emergency backup systems, ensuring the stable and safe operation of public facilities, and effectively avoiding safety hazards and operational losses.
Cost-Effectiveness: Through energy efficiency optimization, renewable energy integration and intelligent operation and maintenance, it effectively reduces the energy consumption and operation and maintenance costs of public facilities, and the investment can be recovered within 4-6 years.
Sustainability: Focus on low-carbon development, promote the integration and utilization of renewable energy, reduce carbon emissions, and conform to the national energy strategy and low-carbon city construction requirements.
Implementation Process
Scenario Investigation & Needs Analysis: Professional technicians conduct on-site investigation of public facilities, understand the type, scale, energy consumption status, operation needs and safety requirements of the facilities, and conduct in-depth analysis of existing pain points.
Solution Design & Confirmation: According to the investigation and analysis results, design a detailed personalized solution, including equipment selection, system layout, energy-saving transformation plan, operation and maintenance plan, etc., and confirm the plan with the public institution.
Equipment Supply & Construction Installation: Provide high-quality energy storage, power distribution, renewable energy and other equipment, and arrange professional construction teams to carry out standardized installation and transformation, ensuring the safety, beauty and efficiency of the project.
System Commissioning & Personnel Training: After the construction is completed, conduct system commissioning to ensure the normal operation of each module. At the same time, provide training for the operation and maintenance personnel of public institutions, teaching them how to use the system, view monitoring data and handle common faults.
Operation & Maintenance Service: Provide 24/7 professional operation and maintenance services, including regular equipment maintenance, fault repair, system upgrade, energy consumption analysis and optimization, ensuring the long-term stable and efficient operation of the system.
Conclusion
Our Public Facilities Energy Solution is a comprehensive energy service system that integrates efficiency, safety, intelligence and sustainability, aiming to solve the core pain points of energy use and operation management of public facilities. It not only helps public institutions reduce energy consumption and operation costs, but also ensures the safe and stable operation of public facilities, promotes low-carbon development, and provides a better service experience for the public.
Whether it is municipal buildings, schools, hospitals, transportation hubs or parks, we can provide customized solutions to empower public facilities to achieve intelligent, efficient, safe and low-carbon operation, and contribute to the construction of livable and low-carbon cities.