DOI QR코드

DOI QR Code

과학기술위성 3호의 리튬 이온 배터리 운용 시스템 개발

Development of STSAT-3 Battery Management System

  • 박경화 (한국과학기술원 인공위성연구센터) ;
  • 김철호 (한국과학기술원 전기 및 전자공학부) ;
  • 임철우 (한국과학기술원 인공위성연구센터) ;
  • 김진규 (한국과학기술원 인공위성연구센터)
  • 발행 : 2009.11.01

초록

본 논문은 과학기술위성3호 리튬이온 배터리의 배터리 운용 시스템에 대해 소개한다. 위성에 전력을 공급하기위한 리튬이온 배터리의 요구조건과 리튬 이온 배터리의 운용 시스템의 전반적인 디자인 방법들을 설명하였다. 더 나아가 이러한 설계 내용들을 검증하기 위하여 검증 모델을 제작하여 기능 테스트들을 수행하였고 이러한 결과 들을 통해서 BMS와 사용된 리튬이온 cell의 성능을 확인하였다.

This paper introduces the lithium ion battery management system for STSAT-3 satellite. The specifications of lithium ion battery unit are proposed to supply power to the satellite and the overall electrical design for lithium ion battery BMS is presented. Furthermore, the test results of battery management system are shown to verify the design.

키워드

참고문헌

  1. T. Gonai, T. Kiyokawa, H. Yamazaki, and M. Goto, “Development of the lithium ion battery system for space: report on the result of development of the lithium ion battery system for space”, Telecommunications Energy Conference, 2003. INTELEC '03. The 25th International, 19-23, Oct.2003, pp. 234-240.
  2. V. L. Teofilo, M. J. Isaacson, R. L. Higgins, and E. A. Cuellar, “Advanced lithium ion solid polymer electrolyte battery development”, IEEE Aerospace and Electronic Magazine, Vol. 14, Issue 11, Nov. 1999, pp. 43-47. https://doi.org/10.1109/62.809260
  3. M.J. Isaacson, V.L. Teofilo, “Lithium ion aerospace batteries”, Battery Conferenceon Applications and Advances, 2002. The Seventeenth Annual, 15-18, Jan. 2002, pp. 119-122.
  4. R. Bugga, M. Smart, J. Whitacre, and W. West, “Lithium ion aerospace batteries”, Aerospace Conference, 2007 IEEE, 3-10, March 2007,pp. 1-7.
  5. A. Jossen, V. path, H Doring, and J Garche, “Battery management systems (BMS) for increasing battery life time”, 21st 1999 International Telecommunications Energy Conference (INTELEC99), 6–9, June 1999, Dresden, Germany, pp. 3-1.
  6. J. Chatzakis, K. Kalaitzakis, N. C. Voulgaris, and S. N. Manias, “Designing a new generalized battery management system”, IEEE Transactions in Industrial Electronics, Vol. 50, No. 5, October 2003, pp. 990-999. https://doi.org/10.1109/TIE.2003.817706
  7. K. Shimitzu, N. Shirai, and M. Nihei, “On-board battery management system with SOC indicator”, Proc. Int. Electric Vehicle Symp., Vol. 2, 1996, pp. 99-104.
  8. J. M. Andrews and R. H. Johnes, “A VRLA battery management system”, Proc. INTELEC, 1996, pp. 507-513.
  9. J. A. Asumadu, and M. Haque, H. Vogel, and C. Willards, “Precision battery management system”, Instrumentation and Measurement Technology Conference, Volume 2, 16-19 May 2005, pp. 1317-1320. https://doi.org/10.1109/IMTC.2005.1604361
  10. J. Alzieu, P. Gangol, and H. Smimite, “Development of an on-board charge and discharge management system for electric-vehicle batteries”, J. Power Sources, Vol. 53, 1995 pp. 327-333. https://doi.org/10.1016/0378-7753(94)01994-7
  11. W. Retzlaff, “On-board battery diagnostic and charge equalizing system (BADICHEQ)”, Proc. 11th Int. Electric Vehicle Symp., Vol. 2, Sept. 1992, pp. 20.03/1~20.30/12.
  12. Z. Noworolski and J.M. Noworolski, A microcomputer-based UPS battery management system”, Proc. IEEE APEC'91, 1991, pp. 475-479. https://doi.org/10.1109/APEC.1991.146217