Title :
Battery energy storage system smooth photovoltaic power fluctuation control method and capacity demand analysis
Author :
Wentao Jin ; Zhijia Xie ; Bei Li
Author_Institution :
China Electr. Power Res. Inst., Beijing, China
Abstract :
Analysis the power data of a grid-connected photovoltaic (PV) power station in northern China. And analyze its 1 minute or 10 minutes time interval maximum active power variation. Consider grid-connected PV requirements to join the battery energy storage system(BESS) to reduce the photovoltaic power fluctuate caused by light intensity and temperature change of grid photovoltaic power fluctuations. Use battery optimization control strategy to reduce power and capacity of the BESS configuration. Take advantage of the BESS charge and discharge characteristics to reduce the problems of grid-connected PV power output fluctuations. Analysis the smoothing effect evaluation index when BESS rated power and capacity changed. Proposed a control strategy that use BESS to smooth PV grid power fluctuations, and optimize the BESS power and capacity, the simulation results verify the feasibility of control strategy and algorithm.
Keywords :
battery storage plants; data analysis; optimisation; photovoltaic power systems; power control; power generation control; power grids; BESS capacity optimization; BESS charge characteristics; BESS discharge characteristics; BESS power optimization; battery energy storage system; battery optimization control strategy; capacity demand analysis; grid-connected PV power output fluctuations; grid-connected PV requirements; grid-connected photovoltaic power station; light intensity; northern China; power data analysis; smooth photovoltaic power fluctuation control method; temperature change; time interval maximum active power variation; Energy storage; Fluctuations; Indexes; Photovoltaic systems; System-on-chip;
Conference_Titel :
Electrical Machines and Systems (ICEMS), 2014 17th International Conference on
Conference_Location :
Hangzhou
DOI :
10.1109/ICEMS.2014.7013594