DocumentCode
769240
Title
Determination of the installation site and optimal capacity of the battery energy storage system for load leveling
Author
Jung, Kyung-Hee ; Kim, Hoyong ; Rho, Daeseok
Author_Institution
POSCO Res. Inst., Seoul, South Korea
Volume
11
Issue
1
fYear
1996
fDate
3/1/1996 12:00:00 AM
Firstpage
162
Lastpage
167
Abstract
This study aims to show methods of determining the installation site and the optimal capacity of a battery energy storage system (BESS) to attain load leveling. The methods are based on the hardware characteristics of 20 kW/100 kWh and 1 MW/4 MWh prototype BESSs, which are already developed and are being developed, respectively. The candidate site of BESS installation is the secondary side of a distribution substation´s main transformer (MTR). These tasks are performed by first classifying the load pattern of an MTR and comparing it to the load pattern of a total power system. If the load factor improves, then the location is determined to be a BESS installation site. Subsequently, the optimal BESS capacity for an MTR is determined using the given operation pattern, the charging/discharging characteristics and efficiency. Computational experimentation was performed on an actual distribution system in Korea. After determining the optimal capacity, the authors verified that installing the BESS on the selected MTR improved both daily and nightly load factors
Keywords
battery storage plants; distribution networks; energy storage; installation; load regulation; optimisation; power system control; power transformers; secondary cells; substations; transformer substations; 1 MW; 100 kWh; 20 kW; 4 MWh; battery energy storage system; charging characteristics; discharging characteristics; distribution substation; efficiency; hardware characteristics; installation site; load factor; load leveling; load pattern; main transformer; optimal capacity; Batteries; Chemicals; Distributed computing; Energy storage; Hardware; Power generation economics; Power system analysis computing; Power systems; Prototypes; Substations;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/60.486591
Filename
486591
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