The reasonable configuration of RES, energy storage equipment, and combined cooling, heating, and power (CCHP) unit capacity in IES is the key to system optimization design and is an important basis for ensuring the safe and reliable operation of the system .
Therefore, a hybrid energy storage system composed of batteries and PS stores and releases surplus energy. When the IES generates insufficient or excess power, the energy management system (EMS) automatically switches the PCC to trade electricity with the distribution network (DN).
The battery energy storage system is the most flexible, reliable, and fastest-response independent power generation system, but the energy storage time is short . PHS uses electricity to pump energy storage and discharge water for power generation. It has a long energy storage time, high efficiency, and low unit energy storage cost [33, 34].
The “source-grid-load-storage” multi-energy complementary IES proposed in this paper effectively coordinates the advantages of RES, ESS, and HPS. Compared with scenario 1, scenario 3 reduces the wind and solar power abandonment rate in winter by 13.9 %, and the RES utilization rate in summer is as high as 99.86 %.
Our BESS energy storage systems and photovoltaic foldable container solutions are engineered for reliability, safety, and efficient deployment. All systems include comprehensive monitoring and control systems with remote management capabilities.
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