• 제목/요약/키워드: Pantograph Detachment Frequency

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고속철도차량의 이선빈도가 귀선전류에 미치는 영향 (The Influence on Traction Return Current by Pantograph Detachment Frequency of High-speed Train)

  • 이성근;조영만;고광철
    • 조명전기설비학회논문지
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    • 제28권9호
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    • pp.8-13
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    • 2014
  • Currently it is major problem of electric railway with increasing drive speed such as the arc generated by the pantograph detachment and the distortion current in the motor-block high speed switching. When physical contact between the pantograph and the catenary line is separated, the pantograph detachment arcing occurs and it makes up the conductive noise to the return feeder. We made the EMTP modeling of the railway traction system and the pantograph arc by circuit elements and switches. The influence of pantograph detachment frequency is investigated by changing some frequencies. The over-current occurs in each detachment and it oscillates some time at beginning and stabilizes gradually. The magnitude of over-current is decided by instantaneous value of existing traction return current. If the detachment occurs at a point of peak value or distortion current, the over-current will be more harmful to the power systems connected with the return feeder and will become to arise with increasing detachment frequency.

이선현상을 포함한 고속철도차량의 전도성 잡음 해석 (Analysis on Conductive Noise of High-Speed Train Including Pantograph Detachment)

  • 이성근;조영만;고광철
    • 조명전기설비학회논문지
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    • 제27권12호
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    • pp.87-92
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    • 2013
  • In high-speed train, the EMI is generated by pantograph detachment and switching device of motor-block. Especially, the conductive noise flows through rail as return feeder influences unintended results to sub-station, transformer, etc. These phenomena were investigated by PSIM circuit analysis tool and each part of railway system is modeled by circuit elements and switching devices. Consequently, the distorted wave in return feeder current occurs by the high speed switching frequency, and the overvoltage is applied by the pantograph detachment. Also the distortion of return current is high in starting point and it decreases from the proximity of a starting point ro the end of terminal.