능동 판토그래프 제어기 설계에 관한 연구

Design of Active Pantograph Controller

  • 발행 : 2005.08.01

초록

The high investment is necessary for the new high speed lines. So the KRRI has been interested in the possibility of upgrading the existing line in order to speed up the train in the conventional lines. The pantograph in train is indispensable in order to supply the electrification equipments with power in safe. The pantograph and the overhead wire form a dynamic coupled system and they affect each other through the contact force. Unfortunately, as the operational speed of a train increases, the vibration of the pantograph and the overhead wire also increases. This may lead to a zero contact force between the pantograph head and the overhead wire, which can results in the loss of contact, arching and abrasion. If the arching and spark happen between the pantograph and the overhead catenary system, the EMI(electro magnetic interface) and noises may occur. After all, the quality of current collection is deteriorated. This paper describes the dynamic response between the pantograph and catenary system by the numerical simulations and presents the LQ-servo controller to reduce the contact force variation

키워드

참고문헌

  1. Katushiko Ogata, 'Discrete-Time Control System', Prentice Hall, Second Edition
  2. Frank L. Lewis 'Applied Optimal Control and Estimation', Prentice Hall, 1992
  3. T. X. Wu and M. J. Brennan, 'Active vibration control of a railway pantograph', Proceedings of the Institution of Mechanical Engineers, pp.117-130, 1997
  4. D. N. O'connor, S. D. Eppinger, W. P. Seering, and D. N. Wormley, 'Active control of a High-Speed Pantograph', Journal of Dynamic Systems, Measurement, and Control, pp.1-4, 1997
  5. Arie LEVANT, Alessandro PISANO, and Elio USAI, 'Output-Feedback Control of the Contact-Force in High-Speed-Train Pantographs', Proceedings of the 40th Conference on Decision and Control Orlando, Florida USA, pp.1831-1836, December 2001