DocumentCode :
551420
Title :
A study of optimal capacity of BESS to mitigate unstable of solar power generation
Author :
Hida, Yusuke ; Miyaguchi, Yuki ; Yokoyama, Ryuichi ; Iba, Kenji
Author_Institution :
Grad. Sch. of Environ. & Energy Eng., Waseda Univ., Tokyo, Japan
fYear :
2010
fDate :
20-22 Sept. 2010
Firstpage :
1
Lastpage :
5
Abstract :
Sustainable energy resources such as solar energy are in the spotlight to achieve post-carbon-society. However, the vast space is required to install PV generators compared with other distributed generators. The optimal usage of PV generator has to be investigated if it is installed in the limited areas. On the other hand, the output of PV power generator is not constant and varies depending on climate conditions. It causes difficulty in the power system operation and control when introduced into distributed networks or demand side. BESS (battery energy storage system) attracts attention as the device which is able to mitigate the change of PV generation output. As the first step in this paper, the relation between the solar radiation on PV and typical installation parameters such as azimuth and tilt angle of PV array is investigated as the usage of PV generators. In the second step, the combination of PV generation system and BESS is discussed from the viewpoint of cost and CO2-emission when installed on demand side, and the optimal installation capacities of PV generators and BESS are calculated.
Keywords :
energy resources; power distribution control; power generation control; secondary cells; solar power stations; BESS; PV power generator; battery energy storage system; climate conditions; demand side; distributed networks; installation parameters; optimal installation capacities; post-carbon-society; power system control; power system operation; solar energy; solar power generation; solar radiation; sustainable energy resources; Batteries; Electrical engineering; Generators; Load modeling; Photovoltaic systems; Solar radiation; BESS; CO2-emission; Demand side; Optimal capacity; PV generation; Reverse power flow; Tilt angel;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Modern Electric Power Systems (MEPS), 2010 Proceedings of the International Symposium
Conference_Location :
Wroclaw
Print_ISBN :
978-83-921315-7-1
Type :
conf
Filename :
6007205
Link To Document :
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