Control Strategy of Multiple Battery Energy Storage Stations for
This paper proposes and validates a coordinated variable-power control strategy for multiple battery energy storage stations (BESSs) to address large-scale peak shaving in
During the three time periods of 03:00–08:00, 15:00–17:00, and 21:00–24:00, the loads are supplied by the renewable energy, and the excess renewable energy is stored in the FESPS or/and transferred to the other buses. Table 1. Energy storage power station.
During peak load periods, energy storage clusters deftly discharge stored energy to alleviate grid strain, concurrently adjusting power output in response to frequency variations to uphold grid stability .
In addition, by leveraging the scaling benefits of power stations, the investment cost per unit of energy storage can be reduced to a value lower than that of the user's investment for the distributed energy storage system, thereby reducing the total construction cost of energy storage power stations and shortening the investment payback period.
For the energy storage dispatch center, in order to meet the demands of peak shaving and frequency regulation in the power grid, it is necessary to allocate the grid's requirements to individual energy storage stations.
PDF version includes complete article with source references.
Get technical specifications, European subsidy information, and ROI analysis tools for peak shaving and container energy storage solutions.
ul. Technologii 15, Park Przemysłowy
geochojnice.pl, Poland
Office: +48 22 525 6683
Technical: +48 189 486 173
Monday - Friday: 8:00 AM - 6:00 PM CET