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Kt Factor Analysis of Lead-Acid Battery for Nuclear Power Plant

  • Kim, Daesik (Dept. of I&C and Electricity, Korea Institute of Nuclear Safety) ;
  • Cha, Hanju (Department of Electrical Engineering, Chungnam National University)
  • 투고 : 2013.10.16
  • 심사 : 2013.10.28
  • 발행 : 2013.12.01

초록

Electrical equipments of nuclear power plant are divided into class 1E and non-class 1E. Electrical equipment and systems that are essential to emergency reactor shutdown, containment isolation, reactor core cooling, and containment and reactor heat removal, are classified as class 1E. batteries of nuclear power plant are divided into four channels, which are physically and electrically separate and independent. The battery bank of class 1E DC power system of the nuclear power plant use lead-acid batteries in present. The lead acid battery, which has a high energy density, is the most popular form of energy storage. Kt factor of lead-acid battery is used to determine battery size and it is one of calculatiing coefficient for capacity. this paper analyzes Kt factor of lead-acid battery for the DC power system of nuclear power plant. In addition, correlation between Kt parameter and peukert's exponent of lead-acid battery for nuclear plant are discussed. The analytical results contribute to optimize of determining size Lead-acid battery bank.

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참고문헌

  1. Ralph Hiesey, "Some comments on Peukert's compensation", Bogart Engineering, April 2011.
  2. Daesik Kim and Hanju Cha, "Analysis on Lead-Acid Battery Bank for Nuclear Power Plants in Korea", IEEE 7th International Power Electronics and Motion Control Conference - ECCE Asia, pp.2118-2122, May 2012
  3. Nosh K. Medora and Alexander Kusko, "An Enhanced Dynamic Battery Moder of Lead-Acid Batteries Using Manufacturers' Data", IEEE, pp.21-1, 2006
  4. "IEEE Recommended Practice for Sizing Lead-Acid Batteries for Stationary Applications", ANSI/IEEE Standard 485-2010
  5. Takeshi KITAHARA and Hajime NAKAMURA, "A Data Transmission Control to Maximize Discharge Capacity of Battery" IEEE Communications Society, pp. 2951-2956, WCNC 2008.