• Title/Summary/Keyword: 고속철도 추진시스템

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Single Phase PWM Converter For High-Speed Railway Propulsion System Using Discontinuous PWM (불연속 변조 기법을 이용한 고속철도 추진제어장치용 단상 PWM 컨버터)

  • Song, Min-Sup
    • Journal of the Korean Society for Railway
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    • v.20 no.4
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    • pp.448-457
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    • 2017
  • In this paper, for high speed railway propulsion systems, a single phase PWM Converter using discontinuous PWM (DPWM) was investigated. The conventional PWM Converter uses a low frequency modulation index of less than 10 to reduce switching losses due to high power characteristics, which results in low control frequency bandwidth and requires an additional compensation method. To solve these problems, the DPWM method, which is commonly used in three phase PWM Inverters, was adopted to a single phase PWM Converter. The proposed method was easily implemented using offset voltage techniques. Method can improve the control performance by doubling the frequency modulation index for the same switching loss, and can also bring the same dynamic characteristics among switches. Proposed DPWM method was verified by simulation of 100 kW PWM converter.

The ATP Installation Strategy for Railway Long-term Development in Korea (철도 장기 발전전략에 입각한 ATP(Automatic Train Protection) 도입 방안)

  • 유병관;양근율
    • Journal of Korean Society of Transportation
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    • v.20 no.7
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    • pp.205-211
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    • 2002
  • 본고에서는 최근 논의되고 있는 ATP 도입의 필요성 및 시스템 선정의 적절성을 검토하는데 있어서 철도신호 분야 뿐만이 아닌 우리의 환경변화 여건 등을 종합적으로 고려하여 철도의 장기 발전전략에 부합하는 APT 도입 방안을 제시하였다. ATP 도입시 고려해야 할 주요 환경변화로는 고속철도개통, 기존철도시스템과의 조화와 관련한 기술발전 측면, 틸팅차량 등 기존선 속도향상, 전철화, 복선화 등 철도영업거리 확장 및 남북철도연결 등을 고려해야 할 것이다. 즉, 바람직한 차상신호장치 도입을 위해서는 차량과의 적합성에 있어서는 기존차량, 특히 속도계장치와의 호환성, 시설분야에 있어서는 설치작업 및 향후 유지보수의 용이성과 국산화 가능성, 향후 남북철도 연결과 고속 철도의 기존선 연계운행 등을 종합적으로 고려하고 장기적인 철도발전에 도움이 되는 방향으로 추진되어야 할 것이다. 결론적으로, 우리철도의 기반시설과 차량 등의 현황과 향후 변동요인을 반영하여 가장 바람직한 ATP 표준기준을 용역 등을 통해 설정하고, 업체선정, 적어도 1년 정도의 시험기간을 거쳐 실용화 단계로 접근해야 할 것이다.

Reliability Assessment of Traction System of Korean High Speed Train (한국형 고속열차 추진시스템의 신뢰성 평가)

  • Seo Sung-Il;Park Choon-Soo;Han Young-Jae;Lee Tae-Hyung;Kim Ki-Hwan
    • Journal of the Korean Society for Railway
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    • v.8 no.5
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    • pp.434-438
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    • 2005
  • In this paper, as the first step to assess and enhance the reliability of Korea High Speed Train, an electric traction system is selected and reliability analysis is carried out. The electric traction system is classified into subsystems and functional block diagrams and reliability block diagrams are drawn. Expressions for evaluating the reliability are derived and Mean Kilometer Between Service Failure is calculated using the trial track test results. The calculation results show reliability growth of the proposed system.

A case study on the increasing load capacity of AT Feeder system with speed-up train (고속열차 투입에 따른 AT급전계통의 부하용량증가에 관한 사례연구)

  • Na, Youn-Il;Han, Seong-Ho
    • Proceedings of the KSR Conference
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    • 2005.11a
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    • pp.694-698
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    • 2005
  • The operation speed improvement of the train in electric railway must pursue continuously and need the investigation of whole railway system whole. The high-speed of the train is related to not only vehicle technique but also the infrastructure, signal system, operation technique, the trolley line and catenary, economical efficiency. Specially, in case of electric railway, we have to consider a technical investigation which is current collection efficiency improvement, voltage drop countermeasure, equipment capacity, track force, signal system. In this paper, we presents the technical investigation of AT feeder system in order to achieve high speed train in exist real railroad. We proved this approach which will use the whole domestic lines in the future.

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A study on performance measurement system of traction equipment (추진장치 성능측정 시스템에 관한 연구)

  • Han, Young-Jae;Kim, Seog-Won;Kim, Young-Guk;Park, Chan-Kyoung;Choi, Jong-Sun;Kim, Jung-Su
    • Journal of Sensor Science and Technology
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    • v.12 no.4
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    • pp.170-175
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    • 2003
  • The korean high speed train(350km/h), composed of 7cars that are 2 power cars, 2 motorized car and 3 trailer cars, has been developed and is under on-line test. To verify the design requirements about the functions and traction performances of this train, KRRI(Korea Railroad Research Institute) decided to evaluate traction performances of the train during on-line test. For this purpose, such as torque, velocity, voltage and current, must be measured. KRRI has developed the measurement system that can be measured vast and various signals effectively. In this paper, we introduce traction performances of korean high speed train. The traction measurement items are focused on the verification of motor block performances. Motor block are consist of 2 motor. For this test, we verified traction performances of korean high speed train.

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.

상이한 보호방식의 전차선로 고장전류 계산

  • 이형수;윤동현;유보혁
    • Proceedings of the Korean Institute of Industrial Safety Conference
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    • 2000.11a
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    • pp.76-81
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    • 2000
  • 972년 태백선을 시작으로 우리나라에 전기철도가 도입된 이래 수도권에 전기철도가 건설되어 운행되어왔고 최근에는 수도권 광역 전철망, 충북선 전철화, 경부선 전구간의 전철화 등 기존철도의 전철화 사업이 지속적으로 추진되고 있다 한편으로 경부고속철도의 건설과 함께 기존철도의 운행속도 향상, 시스템 보호 및 유지 보수의 현대화 등이 과제로 등장하였고 이를 해결하기 위하여 최신 전차선로 설비의 도입 등과 함께 전철 시스템의 전반적 기술검토의 필요성이 제기되었다.(중략)

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An Information System Implementation Case Research on Korea Train eXpress (고속철도에 있어서의 정보시스템 구현 사례에 대한 연구)

  • Lee, Sung-Ho;Ahn, Joong-Ho
    • Information Systems Review
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    • v.7 no.2
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    • pp.1-21
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    • 2005
  • Integrated Railroad Information System(IRIS) Construction Project is one of the super projects in Korea required to invest over 100 billion won and 10,000 engaged manpower until Dec 30, 2004. Composition of this paper is as follows; firstly, examined individual contents and aspects of IRIS, and studied formality and contents that have been based to project methodology for successful propulsion of project in overall situation of SI project progress until present. Secondly, presented for construction background of IRIS as well as Project Management and Project Development Methodologies. Thirdly, described each characteristic and development substance for individual systems after present whole contents and system image of the system. Finally, presented successful propulsion result of this project and development directions. We presented development example laying stress on IRIS's Project contents and propulsion circumstances. Evaluation about operation results should be analyzed and studied in detail operating system from now on.

Reliability Assessment of Traction System of Korean High Speed Train (한국형 고속전철 추진시스템의 신뢰성 평가)

  • 서승일;박춘수;한영재;박태근
    • Proceedings of the KSR Conference
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    • 2003.10a
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    • pp.151-155
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    • 2003
  • In this paper, as the first step to assess and enhance the reliability of Korea High Speed Train, electric traction system is selected and reliability analysis is carried out. The electric traction system is classified into subsystems and functional block diagrams and reliability block diagrams are drawn. Expressions to calculate the reliability are deducted and Mean Kilometer Between Service Failure is calculated using the trial test results on the track. Calculated results show reliability growth of the electric traction system.

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