• 제목/요약/키워드: High-speed maglev train

검색결과 37건 처리시간 0.023초

EMS 방식 자기부상 시스템의 외란 저감을 위한 연구 (A Study on the Disturbance Reduction of Magnetic Levitation System using the EMS Method)

  • 박응석;이주;진창성
    • 전기학회논문지
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    • 제64권2호
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    • pp.338-341
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    • 2015
  • From the past, maglev technique study(mainly for transportation like maglev) has been done. In the domestic, urban maglev train is practical steps now. High-speed maglev train(550km/h) development comes complete, followed by Japan. This year, system of High-speed maglev train(550km/h) is expected to be verified. This paper simulate FEM model for EMS(Electro-Magnetic Suspension) maglev system and verify tendency of reducing disturbance.

초전도 선형동기전동기 추진 휠-레일 고속열차의 동특성 분석 (Dynamic Analysis of Wheel-Rail High Speed Train Propelled by Superconducting Linear Synchronous Motor)

  • 이진호;이창영;조정민;한영재
    • 한국산학기술학회논문지
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    • 제17권1호
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    • pp.119-125
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    • 2016
  • 본 논문에서는 기존 휠-레일 고속열차에 자기부상열차의 추진방법을 적용한 하이브리드 방식의 고속열차의 주행 동특성에 대해서 연구하였다. 초전도 선형동기전동기를 추진 동력으로 하는 휠-레일 방식의 고속열차는 강력한 추진력을 지니면서도 자기부상열차에 비해 기존 선로와의 호환성 및 경제성 측면에서 유리할 것으로 예상된다. 본 논문에서는 초전도 선형동기전동기를 기존의 휠-레일 고속철도에 적용하는 두 가지 방안에 대해서, 초전도 선형동기전동기 추진이 휠-레일 고속열차의 동특성에 미치는 영향을 살펴보기 위하여 초전도 선형동기전동기의 회전자와 고정자의 상호 작용을 검토하고 이를 포함한 차량의 동특성 모델을 구축하였다. 구축된 모델을 이용한 시뮬레이션을 통해 초전도 선형동기전동기의 회전자와 고정자의 상호 작용이 주행 중 고속 안정성, 승차감 및 가이드웨이 불규칙도에 미는 영향을 분석하였다.

초고속튜브열차 추진/부상용 LSM의 설계 기법 및 특성 분석 연구 (A study on a design method and characteristic analysis of a LSM for a propulsion/levitation of the high-speed tube train)

  • 박찬배;이형우;이병송;김남포;박현준
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2010년도 춘계학술대회 논문집
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    • pp.830-837
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    • 2010
  • Since it started the researches on a maglev train on 1960, Germany and Japan arrived to putting to practical use level and accomplished most tests from their test-line. Korea is in progress the preparation for a practical use of low-speed maglev train in 110 [km/h] class and Korea Railroad Research Institute(KRRI) is in progress of a research about core technology of maglev system for high-speed tube train of 700 [km/h] class. In this paper, authors suggest an effective design method of Linear Synchronous Motor(LSM) for high-speed tube train of 700 [km/h] class which has a wound type electro-magnet. Then, authors calculate a variety of properties by changing speed of the LSM model which is designed by a method based on some theoretical equations. Then, authors verify the validity of the method based on some theoretical equations through a verification of property values by Finite Element Method(FEM) analysis method. Finally, in order to design a shape of pole-shoe part of LSM electro-magnet which is hard to design with a basic design method, authors analyze a transition of property values by changing a pole-shoe width and current of the electro-magnet through an analytical method by FEM.

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초고속 Maglev용 초전도 마그넷 요소 기술 및 국내 연구 개발 현황 (Core Technologies of Superconducting Magnet for High-speed Maglev and R&D Activities in Korea)

  • 이창영;강부병;한영재;심기덕;박동근;고태국
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2009년도 춘계학술대회 논문집
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    • pp.1454-1460
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    • 2009
  • Ultra-speed tube train, which runs in vacuum atmosphere to overcome aero-dynamic dragging force, is considered as a high-speed ground transportation system to back up long-distance air travel. To realize the ultra-speed tube train, feasibility study of currently available Maglev technologies especially for propulsion and levitation system is needed. Propulsion by linear synchronous motor(LSM) and levitation by electro-dynamic suspension(EDS) which are utilized in the Japan's MLX system could be one of candidated technologies for ultra-speed tube train. In the LSM-EDS system, the key component is superconducting magnet, and its reliability and performance is very important to guarantee the safe-operation of Maglev. As the initiative of the feasibility study, this paper deals with the basic structure of superconducting magnet and core technologies to design and operate it. And by surveying the current R&D achievement in Korea, the nation's capability to develop advanced superconducting magnet for Maglev is presented.

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초고속열차용 축소모델 선형동기전동기의 개념 및 기본설계 연구 (A Study on a Concept and Basic Design of a Small-Scaled LSM for Ultra-High Speed Railway Transit)

  • 박찬배;이형우;이병송;박현준
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2009년도 춘계학술대회 논문집
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    • pp.905-911
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    • 2009
  • The viscosity drive method by the wheel which is widely used in the conventional railway systems needs a large friction force between the wheel and the guide-rail, which brings on a thrust force for a quick acceleration and a high-speed travelling. In addition, the viscosity drive method needs an increase of the vehicle weight for a large friction force. However, a maglev train is possible to be driven by the electro-magnet instead of the wheel, which produces a levitation and thrust force without any contact. In general, low-speed maglev train uses a linear induction motor(LIM) for propulsion that is operated under 300[km/h] due to the power-collecting and end-effect problems of LIM. In case of high-speed maglev train, a linear synchronous motor(LSM) is more suitable than LIM because of a high-efficiency and high-output properties. LSM has a driving principle as same as a conventional rotary synchronous motor(RSM), and the torque of RSM becomes the thrust force of LSM. A conventional LSM has relatively large air-gap compared with a conventional RSM. So, it must be achieved a design that is considered normal force by finite-asymmetric structure, end-effect on the entry and exit part, and support structure of a moving part. Therefore, in this research, authors accomplish a conceptualizing and basic design of a small-scaled LSM, and characteristics analysis using FEM.

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동적영향변수를 통한 자기부상열차용 철도교의 해석적 연구 (Analytical Study of Railroad Bridge for Maglev Propulsion Train with Dynamical Influence Variable)

  • 유이슬;박원찬;임성순
    • 한국산학기술학회논문지
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    • 제19권4호
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    • pp.532-542
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    • 2018
  • 자기부상열차는 비접촉자기부상과 안내 및 추진 시스템을 이용하므로 안전한 고속주행이 가능할 뿐만 아니라 진동이 적으므로 주행안정성에도 탁월하다. 최근 우리나라도 자기부상열차개발을 국가성장산업으로 지정하면서 자기부상열차의 시범제작과 시범운행을 시도하였으며 이에 대한 연구와 투자가 진행되고 있다. 본 연구는 고속주행으로 발생하는 각 모듈의 동적 응답의 상호관계를 분석하는 것이 연구목적이므로 주행속도, 노면조도, 현가장치의 물성치, 교량거더의 강성비 등 동적효과에 영향을 주는 주요변수들의 변화에 따라 동적응답들의 상호관계를 연구범위로 선택하였다. 따라서 콘크리트 박스거더교를 교량모델로 선택하였고 국내 생산중인 부상열차와 레일형식을 각각 이동열차하중과 가이드웨이 해석모델로 선택하였다. 해석결과 처짐 제한을 2000분의 L로 제시한 단면을 가진 자기부상열차용 교량의 고유진동수는 일반교량에 비해 높다는 것을 알 수 있다. 일반교량구조에서와 같이 자기부상열차용 철도교도 이동속도에 따른 거더의 동적응답은 속도에 비례하여 크게 증가함을 알 수 있다. 설계기준은 이동속도와 관계없이 10%의 충격계수로 동적효과를 나타내므로 설계기준의 값과 적용범위는 검증이 요구된다. 거더의 동적응답은 시속 240km/h에서 극대 값을 가지며 이후 속도증가에 따라 비례하여 증가함을 알 수 있다. 본 연구의 해석결과들은 자기부상열차용 철도교 설계에 적용할 수 있으며 설계기준을 확인하거나 검증할 때 기본 자료를 제공해 줄 수 있다.

초고속 자기부상열차용 선형 동기 전동기의 추력 및 부상력 특성 개선을 위한 연구 (The research to improve Thrust and Levitation Force characteristic of Linear Synchronous Motor for High-speed Maglev train)

  • 홍현석;오세영;한정호;이주
    • 조명전기설비학회논문지
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    • 제28권6호
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    • pp.75-84
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    • 2014
  • A linear synchronous motor (Linear Synchronous Motor, under LSM) is suitable for Maglev train. This is 500km/h or more for running high-speed propulsion system of high-efficiency, high-output characteristics. Also, as high-speed running, it is needed solution to reduce output ripple component cause bad riding like noise and vibration. So this paper was designed 500km/h-class Maglev train and analyzed characteristics of the LSM base model using finite element analysis method. Further, improved model is designed to improve characteristics of thrust and levitation force by enforcing design parameters analysis and sensitivity analysis. And it was applied skew on field in order to reduce the ripple component still remaining. Skew interpretation of the two-dimensional is proposed and this is verified by carrying out three-dimensional finite element analysis comparing two values. It proved to be valid of skew of the two-dimensional analysis.

유도무선루프에 의한 자기부상열차 정보전송 시스템의 설계 (Design of MAGLEV Information Transmission System by Radio Inductive Loop)

  • 안상권;박석하;박정수;김종범;김양모
    • 대한전기학회논문지:전기기기및에너지변환시스템부문B
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    • 제48권1호
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    • pp.42-47
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    • 1999
  • This paper presents the information transmission between on-board and ground-site in MAGLEV. considering safety and high speed operation and density operation, information transmission between them is necessary. Therefore it is necessary for transmission system to ensure high speed transmission, low error rate, massive information, and reliability of information. To provide above conditions, 1.1km signal line assembly was constructed and Frequency Shift Keying(FSK) modulation and Open System Interconnection(OSI) based high-level data link control(HDLC) protocol are applied. To modulate digital signal for transmission from ground-site to on-board, carrier frequency of 70kHz is used and 90khz is used for transmission from on-board to ground-site. Transmission speed is 2400bps for consideration of train speed, quantity of information, and data error rate. And this paper introduces information monitoring considering user interface and presents the method for an effective data transmission in MAGLEV which is now being tested and intends to provide for an intelligent train operation system in future.

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휠-레일 방식 초고속열차용 초전도 선형동기전동기의 지상권선 방식별 특성 분석 (Characteristic Analysis of Superconducting LSM for the Wheel-rail-guided Very High Speed Train according to Winding Method of the Ground 3-phase Coils)

  • 박찬배;이병송;이창영
    • 전기학회논문지
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    • 제63권8호
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    • pp.1164-1169
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    • 2014
  • Recently, an interest in a hybrid system combining only the merits of the conventional wheel-rail system and Maglev propulsion system is growing as an alternative to high-speed maglev train. This hybrid-type system is based on wheel-rail method, but it enables to overcome the speed limitation by adhesion because it is operated by a non-contact method using a linear motor as a propulsion system and reduce the overall construction costs by its compatibility with the conventional railway systems. Therefore, the design and characteristic analysis of a coreless-type superconducting Linear Synchronous Motor (LSM) for 600km/h very high speed railway system are conducted in this paper. The designed coreless-type superconducting LSMs are the distributed winding model, the concentrated 1 layer winding model and the concentrated 2 layer winding model, respectively. In addition, the characteristic comparison studies on each LSM are conducted.

자기부상열차(磁氣浮上列車) 기술체계(技術體系)와 개발전략(開發戰略) (Present Status and Development Strategies of Maglev in Korea)

  • 유문환;김인근
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1991년도 하계학술대회 논문집
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    • pp.102-105
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    • 1991
  • In recognition of the transportation problems of the present and to prepare for the ever increasing demands of the future, government decided to develop the magnetically levitated train domestically and started R&D program office in Korea Institute of Machinery and Metals(KIMM). This office since has established three step by step goals : first to develop a 40 passenger exhibition vehicle for Daejon EXPO'93, second to develop the low to mid-speed maglev system for urban public transportation by 1997 and finally the high speed inter-city maglev train by year 2001. The first two maglev systems will use attractive levitation-LIM driven technologies and these technologies are the ones currently being developed by this office and others. The maglev train system is a product of wide range of technologies from electro-technologies to civil engineering technologies. Some of the technologies are currently available but more have to be developed in the near future and these technologies are owned by or to be developed by various institutions within the science & technology community. The level of the technologies available at the present time are still very rudimentary and their basis are very narrow. Recently we have made a few successes in terms of levitation and propulsion but they are only with small scale modules and results are very qualitative at best. A great deal of development work has yet to be done to refine the technologies and to gain confidence. Full scale levitation/propulsion modules will be tested on the curved guideway within 6 months by this office and another institution. This paper reviews the current status of the maglev technologies in Korea and discuss the development strategies. The Korean maglev program is very ambitious and the schedule is even more so. A steady financial support and strong system engineering and integration are essential to the success of this program.

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