IPMSM 파라미터 변동에 따른 차세대 고속전철 시스템의 운전 특성 고찰

Operation Characteristics Investigation of the Next Generation High Speed Railway System with respect to IPMSM Parameter Variation

  • 박동규 (중앙대학교, 전자전기공학부) ;
  • 서용훈 (중앙대학교, 전자전기공학부) ;
  • 이상현 (중앙대학교, 전자전기공학부) ;
  • 진강환 (중앙대학교, 전자전기공학부) ;
  • 김윤호 (중앙대학교)
  • 발행 : 2011.10.20

초록

The next generation domestic high speed railway system is a power distributed type and uses vector control method for motor speed control. Nowadays, inverter driven induction motor system is widely used. However, recently PMSM drives are deeply considered as a alternative candidate instead of an induction motor drive system due to their advantages in efficiency, noise reduction and maintenance. The next-generation high speed train is composed of 2 converter units, 4 inverter units, and 4 Traction Motor units. Each motor is connected to the inverter directly. In this paper, the effect of IPMSM parameter variations to the system operation characteristics of the multi inverter drive high speed train system are investigated. The parallel connected inverter input-output characteristics are analyzed to the parameter mismatches of IPMSM using the 1C1M control simulator based on Matlab/Simulink.

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