• Title/Summary/Keyword: 한국고속전철

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국내 고속전철 기술 현황 및 차세대 시제차량개발

  • 정경렬;김경택
    • Journal of KSNVE
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    • v.14 no.2
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    • pp.35-45
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    • 2004
  • 한국에서의 철도는 1890년대 말 서울-노량진간(33 km)을 시속 20km/h로 1시간 30분에 주파한 이래 100여년이 지난 2004년 4월 1일 시속 300 km/h 의 고속철도시대를 개막하였다. 고속철도의 개통은 전국을 한나절 생활권으로 묶으면서 국민 생활 전반에 큰 변화를 가져올 것으로 기대된다. 지역균형 발전과 지역경제 활성화에 기여할 뿐만 아니라 사람과 물류의 이동시간을 단축시켜 운송 및 물류비용을 절감시키는 등 고속철도는 국토의 대동맥 역할을 담당할 신교통수단으로서 그 자리를 굳건히 할 것이다.(중략)

A Study on Conceptual Design for Crashworthiness of the Next Generation High-speed EMU (동력분산형 차세대고속전철의 충돌안전도 개념설계 연구)

  • Kim, Geo-Young;Cho, Hyun-Jik;Koo, Jeong-Seo
    • Journal of the Korean Society for Railway
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    • v.11 no.3
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    • pp.300-310
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    • 2008
  • Through this study, a conceptual design for the next generation high-speed EMU has been derived to meet the crash worthiness requirements of the Korean rollingstock safety regulation. The crashworthiness regulations require some performance requirements for two heavy collision accident scenarios; a train-to-train collision at the relative speed of 36 km/h, and a collision against a standard deformable obstacle of 15 ton at 110km/h. The complete train set will be composed of 2TC-6M with 13 ton axle load, which is different from KTX with the power car of 17 ton axle load. Using theoretical and numerical analyses, a crashworthy conceptual design was derived in terms of mean crush forces and energy absorptions for principal crushable structures and devices. The derived conceptual design was evaluated and improved using one dimensional dynamic simulations for the bar-spring-damper-mass model. It is shown from the simulation results that the suggested conceptual design can easily satisfy domestic crashworthiness requirements.

Modeling of SVPWM and Control Method for Driving Systems of High-speed Trains by using Multi-level Power Converters (고속전철 추진시스템을 위한 멀티레벨 전력변환기의 제어기법 및 SVPWM 모델링)

  • Lee, Dong-Myung;Hong, Chan-Hee
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.23 no.12
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    • pp.136-145
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    • 2009
  • This paper proposes control methods and simulation models of a driving system, which consists of converters and inverters, for high speed trains employing multi-level power converters. The control method of a single phase three-level converter for high-speed trains is designed to use DC values instead of instantaneous current values which are usually used in single-phase application, so that it results in a fast and robust voltage control response. In addition, simulation models of Space Vector Pulse Width Modulation (SVPWM) for single phase three-level converters as well as three level inverters are proposed. Experimental results demonstrate the validity of the simulation model for three-level inverters.