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DOI QR Code

무가선 전동차용 울트라커패시터 모듈 충·방전을 위한 DC-DC 컨버터 설계

Design of DC-DC Converter to Charge and Discharge Ultra-Capacitor Modules for Wireless Trains

  • Jo, Jeong-Min (Maglev Railroad Research Team, Korea Railroad Research Institute) ;
  • Han, Young-Jae (Maglev Railroad Research Team, Korea Railroad Research Institute) ;
  • Kim, Jae-Won (Wireless Power Transfer System Research Team, Korea Railroad Research Institute) ;
  • Lee, Jang-Moo (Wireless Power Transfer System Research Team, Korea Railroad Research Institute) ;
  • Kim, Gil-Dong (Propulsion System Research Team, Korea Railroad Research Institute)
  • 투고 : 2015.10.19
  • 심사 : 2015.11.23
  • 발행 : 2015.12.01

초록

Electric power trains receive electric power from overhead cables via a pantograph system. Power collector system in trains increase the cross section of tunnel and require a massive coreless filter reactor in propulsion inverter because of the power disturbance by contact loss phenomenon of a train. In this paper we proposed a wireless train which can run to next station with charging energy of ultra-capacitor module block. We designed DC-DC converter to charge and discharge ultra-capacitor modules by using Next Train running test results and confirm the feasibility of the proposed system through simulation.

키워드

참고문헌

  1. Ming-Tse Kuo; Wen-Yi Lo, "Magnetic components Used in the Train Pantograph to Reduce the Arcing Phenomena," IEEE Journals & magazines, Vol. 50, pp.2891-2899, 2014.
  2. Collina, A.; Faccinetti, A.; Fossati, F.; Resta, F., "An Application of Active Control to the Collector of an High-Speed Pantograph: Simulation and Laboratory Tests," 44th IEEE conf. pp.4602-4609, 2005.
  3. Nishimura, M.; Kawamura, A.; Kuroda, G.; Chi Zhu; Sato, e.K., "High efficient Contact-less Power Transmission system for the High Speed Trains," IEEE Conf. pp.547-553, 2005
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