Main Equipment:
The project features a liquid-cooled containerized integrated energy storagesystem and grid-connection cabinets. Based on lithium iron phosphate (LFP) battery cells, it adopts an intelligently integrated system design housed within standard shipping containers.
Technical Process:
The energy storage system charges during off-peak electricity demand periods anddischarges during peak demand periods to reduce load peaks. It connects to the grid at two points (each with acapacity of 0.4 MW /0.93 MWh), with the system integrated into the 400V busbar of the distribution substation.Social Benefits:With capabilities such as peak shaving, load shifting, and power quality optimization, theenergy storage system enables flexible and optimized performance of the power system at the system levelThrough system-wide optimization, it achieves efficient and energy-saving operation. Additionally, by storingelectricity from low-carbon energy sources during off-peak periods and utilizing it during peak hours, the systemreduces reliance on high-emission energy sources, contributing to energy conservation and emissions reduction.
