• Title/Summary/Keyword: 자기 부상장치

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Design and Experimental Study for a Active Magnetic Bearing System by Using PID Control (PID 제어기를 이용한 능동형 자기베어링의 설계 및 실험적 동특성 연구)

  • Kyung, Jin-Ho;Kim, Jong-Sun;Lee, Hae
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 1991.04a
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    • pp.83-89
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    • 1991
  • 본 연구에서는 5축 능동형 자기베어링 시스템에 대한 설계 및 제작 방법을 소개하고 모우드 변수 및 임계속도, 과도 및 정상상태에서의 응답 특성 등 관련 동특성을 실험으로 규명하였다. 자기베어링 제어방식은 PID 제어를 이 용하였고, air jet를 이용하여 회전체를 구동할 수 있도록 실험장치를 구성하 였다. 실험을 통하여 안정한 부상특성을 실현하였고, 1,2차의 임계속도를 통 과하여 10,000rpm이상이 회전속도에서도 안정하게 운전할 수 있었다.

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Dynamic Interaction Evaluation of Maglev Vehicle and the Segmented Switching System (자기부상열차 차량과 분기기 동적상호작용 시험 평가)

  • Lee, Jong-Min;Han, Jong-Boo;Kim, Sung-Soo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.2
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    • pp.576-582
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    • 2017
  • The switching system in a maglev train is an indispensable element for distributing train routes, and it should be designed to ensure safe operation. Unlike conventional wheels on rails, the switching track in EMS-type maglev is supported by a group of 3 to 4 steel girders. When the vehicle changes its route, the segmented track allows the girders to change from a straight position to a curved one with a small radius of curvature. Hence, the structural characteristics of the segmented switching system may affect the levitation stability of the maglev vehicle. This study experimentally evaluates the dynamic interaction between maglev vehicles and a segmented switching system. The results may be helpful for improving the switching system. The measured levitation and lateral air gaps were evaluated at a vehicle speed of 25 km/h, and the ride quality of the Maglev vehicle was determined to be "comfortable" according to the UIC 513 standard.

Study on the resonant HF DC/DC Converter for the weight reduction of the Auxiliary Power Supply of MAGLEV (자기부상열차 보조전원장치 경량화를 위한 공진형 HF DC/DC Converter 연구)

  • Lee, Kyoung-Bok;Lim, Ji-Young;Jo, Jeong-Min;Kim, Jin-Su;Han, Young-Jae;Choi, Sung-Ho
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.1825-1831
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    • 2011
  • One of the major trends in traction power electronics is increasing the switching frequencies. The advances in the frequency elevation have made it possible to reduce the total size and weight of the passive components such as capacitors, inductors and transformers in the DC/DC converter and hence to increase the power density. The traction dynamic performance is also improved. This document describes several aspects relating to the design of resonant DC/DC converter operating at high frequency(10KHz) and the converter topologies and the control method of MAGLEV, which result in soft switching, are discussed.

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Development of Levitation Control for High Accuracy Magnetic Levitation Transport System (초정밀 자기부상 이송장치의 부상제어기 개발)

  • Ha, Chang-Wan;Kim, Chang-Hyun;Lim, Jaewon
    • Journal of Institute of Control, Robotics and Systems
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    • v.22 no.7
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    • pp.557-561
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    • 2016
  • Recently, in the manufacturing process of flat panel displays, mass production methods of inline system has been emerged. In particular the next generation OLED display manufacturing process, horizontal inline evaporation process has been tried. It is important for the success of OLED inline evaporation process to develop a magnetic levitation transport system capable of transferring a carrier equipped with a mother glass with high accuracy without any physical contact along the rail under vacuum condition. In the case of existing wheel-based transfer system, it is not suitable for OLED evaporation process requiring high cleanliness. On the other hand, the magnetic levitation transport system has an advantage that it does not generate any dust and it is possible to achieve high-precision control because there are not non-linear factors such as friction force. In this paper, we introduce the high-precision magnetic levitation transport system, which is currently under development, for OLED evaporation process.

Development of Anti-Rolling Demo System for Mobile Harbor Using Maglev Type AMD (자기부상방식 AMD를 이용한 모바일 하버용 횡동요 저감 데모 장비의 개발)

  • Park, Cheol-Hoon;Ham, Sang-Yong;Kim, Byung-In;Lee, Sung-Whee;Park, Hee-Chang;Cho, Han-Wook;Moon, Seok-Jun;Chung, Tae-Young
    • Journal of the Korean Society for Precision Engineering
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    • v.28 no.1
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    • pp.40-47
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    • 2011
  • Mobile harbor which is a novel concept of ocean transportation to bring the containers from the cargo ship waiting on the ocean away is being focused now. To provide the mobile harbor with the stable loading/unloading condition, it is necessary to develop the oscillation mitigation technologies such as anti-rolling system. Anti-rolling system using AMD(Active Mass Driving) has merits that it can handle the disturbances more actively and mitigate the rolling oscillation faster than other type anti-rolling system. However, rack-and-pinion type AMD has problems such as big friction noise from gears and motor, wear and tear, and continuous maintenance. In this paper, novel anti-rolling system using Maglev type AMD for mobile harbor is suggested in order to resolve the problems caused by the friction. This novel anti-rolling system doesn't make any friction because it supports the moving mass by using magnetic levitation force and moves it by using propulsion force from the linear motor. The demo system of the novel anti-rolling system using maglev type AMD has been developed in order to investigate its feasibility. This paper presents the procedures and results of development of this demo system.

Development of on-board ATC system for Maglev Vehicle (자기부상 차량용 차상신호장치 개발)

  • Cho, Young-Wan;Yun, Hak-Sun;Park, Hee-Jun
    • Proceedings of the KSR Conference
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    • 2011.05a
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    • pp.350-355
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    • 2011
  • This paper gives an overview and developing status of the on-board Automatic Train Control (ATC) System employed to control the Urban Maglev vehicle in Korea. In the construction of demonstration line for Urban Maglev Program, the Daewoo Engineering Company (DEC) has participated as a supplier of the whole ATC System since 2009. According to the contract with Korea Rail Network Authority, DEC is under progress for the development of the whole ATC system including Safety Integration Level (SIL) assessment from the ISA, which is followed by the international standards IEC62278, IEC62279, and EN50129. Once the Urban Maglev Program is completed successfully in 2013, the developed system will be the first localized whole ATC system which has SIL assessment and commercial operation experience in Korea.

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Response Surface Tuning Methods in PID Control of the Magnetic Levitation Conveyor System (반응 표면법을 이용한 자기부상 반송장치의 PID 이득값 조정)

  • Bae, Kyu-Young;Kim, Chang-Hyun;Kim, Bong-Seup
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.2609-2614
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    • 2011
  • A proportional integral derivative (PID) controller is designed and applied to a magnetic levitation conveyor system to control the levitation gap length of the electromagnet constantly. The PID gain parameters are optimized by response surface methods (RSM). The controller is verified with the state-space model of electromagnetic suspension by MATLAB/SIMULINK program. And, the controller and the state-space model are also verified experimentally. Simulation and experimental results shows the effectiveness of the PID gain tuning by RSM as compared with the classical PID tuning.

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Automatic Train Operation System Requirements Examination for Driverless Operation and Application Case of Urban Maglev Train (무인운전을 위한 자동열차운전장치 시스템 요구조건 검토 및 도시형 자기부상열차 적용사례)

  • Kang, Kyeong-Yong;Cho, Young-Wan;Park, Hee-Jun;Park, Chae-Young
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.1100-1107
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    • 2011
  • The light-rail system which is recently being built in Korea is a train control system based on driverless operation, and the train control system for urban maglev train under construction at the moment in Youngjong-Do, Incheon is pushed ahead based on driverless operation. In this paper, it compares train operation cases with manned operation and unmanned operation to examine system requirements for unmanned driving on train and detects system requirements of automatic train operation device for unmanned operation by analyzing unmanned operation cases which are currently operating or planed project and also introduces automatic train operation of urban maglev train and verifies whether the system for unmanned driving meets the requirements.

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Principal and Application of Velocity Detection Signal Device Applied in Tarin Control System of Maglev Train (자기부상열차 열차제어시스템에 적용되는 속도검출장치 원리 및 적용사례)

  • Kim, Young-Taek;Cho, Dong-Il;Lee, Oh-Hyun;Park, Hee-Jun
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.1108-1114
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    • 2011
  • In general, railway system uses wheels so detecting speed by tachometer. However, LRT(Light Rail Transits) stands out recently as alternatives transportation, and besides of that Maglev trains are emerged as an alternative means of transportation. Maglev operates above certain heights caused inability of the measurement by tachometer which used to detect speed of wheels. Velocity Detection Signal Device of Train Control System applied in "Train Control System Project of Pilot Line Construction for Urban MAGLEV Train" which is prepared ahead of opening in 2013. This paper, therefore, explains the function and operation principal of Velocity Detection Signal Device, and suggests installation method of velocity detection loop installed around the track.

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Design of the Power Conversion System for the Magnetic Levitation System (자기부상열차용 전원공급장치 설계)

  • Song, Byeong-Mun;Kye, Moon-Ho;Oh, Sung-Chul;Joe, Ki-Youn;Kim, Yo-Hee
    • Proceedings of the KIEE Conference
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    • 1990.11a
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    • pp.384-387
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    • 1990
  • This paper describes the design of the power conversion system for the 3-ton prototype magnetic levitation system. Electric power needed for the propulsion and levitation system of the vehicle is supplied by the wayside rectifier through the power rail and is picked up by the on board power collector, and is supplied to the propulsion VVVF inverter and levitation chopper. In this paper, design characteristic of the VVVF inverter, chopper and power source unit which provides control power to the levitation controller and levitation power to the chopper is described.

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