• Title/Summary/Keyword: Traction inverter

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Multi-Level Inverter for Regenerative Breaking of SRM (SRM의 회생제동을 위한 멀티레벨 인버터)

  • Lee S. H.;Ahn G. S.;Park S. J.;Ahn J. W,
    • Proceedings of the KIPE Conference
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    • 2001.07a
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    • pp.239-242
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    • 2001
  • Energy recovery in the regenerative region is very important when SRM(Switched Reluctance Motor) is used in traction drive. This is because that to reduce energy toss during mechanical breaking and/or to have a high efficiency drive during breaking. To control excitation voltage in motor operation and regenerative voltage in the generator operation in the SRM, multi-level voltage control is effective. This paper proposes multi-level inverter which is useful for motoring and regenerative operation in SRM. The proposed method is verified by experiment.

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Development of control algorithm for TTX Tilting Train eXpress propulsion system (틸팅 차량용 추진제어장치의 제어 알고리즘 개발)

  • Kim, Hyung-Cheol;Lee, Eun-Kyu;Choi, Jae-Ho
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1343-1345
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    • 2005
  • In this paper, control schemes are proposed for a propulsion system(Converter/Inverter) of the TTX(Tilting Train express). In developed traction converter, unity power factor control, compensation method of dc link voltage have been applied. Output current of converter contains harmonics ripple at twice input ac line frequency, which causes a ripple in the dc link voltage so that control scheme is developed in inverter system to reduce the pulsating torque current. At low speed region, vector control scheme is applied and slip frequency control is adopted at high speed region. The performance of propulsion system will be verified by simulation and prototype experimental results.

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Measurement and Analysis of Electromagnetic field for DC electric railway train (직류철도차량에 대한 자계측정 및 분석)

  • Jang, Dong-Uk;Kim, Min-Cheol;Lee, Chang-Mu;Han, Moon-Seob
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1637-1639
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    • 2005
  • The measurement of magnetic field is performed about DC and AC magnetic field in test track of depot. The test point is cap, on the converter/inverter box, on the traction motor, on the APSE and on the line filter, the height of measurement is bottom and 50 cm height. In case of AC magnetic field, the selected specific frequency is measured on the converter/inverter box. The AC magnetic field is checked and analysis through RS-232C and notebook PC. The DC magnetic field is measured by using the Hall Probe, test result is saved and analysis by PXI system. On the line filter, the maximum value is 1.4 mT in case of DC magnetic field and 0.044 mT in case of AC magnetic field at 50 Hz.

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A Propulsion Device Control using Communication Networks (통신망을 이용한 추진장치의 제어)

  • 이현두;정만규;고영철;방이석
    • Proceedings of the KIPE Conference
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    • 1999.07a
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    • pp.270-273
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    • 1999
  • This paper describes the characteristics of two methods about providing information needed for propulsion device control in train. The one is to use new way using the communication network for transmission of control information, the other is traditional way using hardwire connection. And this paper describes the communication interface technique between TCMS(Train Control and Monitoring System) and VVVF inverter system with LonWorks network adapted to SMG line 6 which has been developed. With this technique, an inertia load test carried out for the traction control environment and it is expecting a field test at SMG line 6.

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A Study of propulsion control algorithm of Tilting Train eXpress (틸팅 열차 추진시스템의 제어 알고리즘에 관한 연구)

  • Kim Hyung-Chul;Choi Jae-Ho
    • Proceedings of the KSR Conference
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    • 2005.05a
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    • pp.800-805
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    • 2005
  • In this study, control schemes are proposed for a propulsion system of TTX(Tilting Train eXpress). In developed traction converter, unity power factor control, compensation method of dc link voltage have been applied. Output current of converter contains harmonic ripple at twice input ac line frequency, which causes a ripple in the dc link voltage so that beatless control is developed in inverter system to reduce the pulsating torque current. This system is verified by the system modelling and prototype test.

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A Study on TTX Traction Characteristics using Measurement System (계측시스템을 활용한 틸팅열차 추진장치 특성 연구)

  • Han, Young-Jae;Lee, Su-Gil;Park, Choon-Soo;Han, Seong-Ho;Lee, Jun-Seok;Jung, Kwon-Il
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.20 no.12
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    • pp.1093-1098
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    • 2007
  • Tilting trains are currently in operation in 13 countries around the world. With the advances in tilting technology, verification of economic efficiency, and changes in economic situations, the introduction of tilting trains will rapidly spread across the globe. The measurement system is composed of the industrial computers installed in the console and the measurement racks mounted on each car. It is utilized to accumulate the data by the communication card and the optical cable. The optical cable and power cable are coupled at the connector located in joint of train to make easy to disconnect car each other. The signal conditioner is designed to choose and to extend the channel for each sensor readily. The sensor measurement rack has adopted as decentralization method. It is installed in each car to minimize the cable length. In also, it is manufactured based on 19"rack and covered to protect the cable. In this study, the programs for measurement and analysis were also developed to understand the traction system characteristics of TTX. Using this measurement system, we studied that acceleration test, re-powering test, and gradually powering test. The acceleration performance of TTX is 1.735 km/h/s, and it is inner standard value. The notch test result from 1 to 7 steps, DC link voltage is under standard value, and the output electric current of inverter is controlled normally. From the test results, we saw the performances of the traction systems are normal.

Measurement and Analysis of Regenerative Energy in DC 1500V Electric Traction Substation (직류 1500V 전철변전소의 회생전력량 측정 및 분석)

  • Bae, Chang-Han;Jang, Dong-Uk;Kim, Ju-Rak;Han, Moon-Seub;Kim, Yong-Ki
    • Journal of the Korean Society for Railway
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    • v.10 no.6
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    • pp.717-722
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    • 2007
  • Most of DC 1500V electric railway substations have adopted diode rectifiers to supply stable DC power. However, the diode rectifiers operate in the first quadrant of the voltage-current plane and thus need regenerative inverters which transfer the surplus regenerative power caused by regenerative braking of electric train sets into the grid. In order to select the proper capacity and installation position of regenerative inverter, it needs to investigate the consumed and regenerative energy of the electric traction substations in advance. This paper presents an analysis of regenerative energy in two substations operating in Seoul Seolleung and Kwangju Yangdong substations. DC line voltage and feeder currents are measured for a day to calculate consumed and regenerative power far four feeders. We calculated an amount of regenerative energy consumed in other feeders and estimated the cost reduction in energy consumption due to the reuse of regenerative energy

Analysis on Voltage and Cost of Substation with PWM Rectifier in DC Traction Power Supply System (PWM 정류기를 적용한 직류급전시스템의 전압강하 및 비용 평가)

  • Kim, Joorak;Park, Kijun;Park, Chang-Reung;Choo, Eun-Sang;Lee, Jun-Young
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.64 no.4
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    • pp.640-645
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    • 2015
  • Near surface transit system has should be constructed as installation cost of light rail transit with elevated track. So, distance between two substations is longer than conventional system. The long feeding distance results in severe voltage drop. This paper proposes a PWM rectifier instead of diode rectifier. The PWM rectifier has some advantages. This is able to control output voltage constantly to reduce voltage drop and to use regeneration power without additional inverter. This paper analyse on improved voltage profile and cost of substation with PWM rectifier. The analysis of voltage profile use PSIM, and the installation cost of substation with PWM rectifier is compared to substation with diode rectifier.

Development of High-speed Elevator Drive System using Permanent-magnet Synchronous Motor (영구 자석형 동기 전동기를 이용한 고속 엘리베이터 구동 시스템 개발)

  • Ryu Hyung-Min;Kim Sung-Jun;Sul Seung-Ki;Kwon Tae-Seok;Kim Ki-Su;Shim Young-Seok;Seok Ki-Riong
    • Proceedings of the KIPE Conference
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    • 2001.07a
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    • pp.385-388
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    • 2001
  • In this paper, the gearless traction machine drive system using a permanent-maget motor for high-speed elevators is addressed. This application of permanent-magnet motor to the elevator traction machine enables several improvements including higher efficiency, better ride comfort, smaller size and weight, and so on. PWM boost converter is also adopted so that DC-link voltage regulation, hi-directional power flow, and controllable power factor with reduced input current harmonics are possible. To increase reliability and performance, the control board, which can include the car and group controller as well as PWM converter and inverter controller, is designed based on TMS320VC33 DSP The simulator system for high-speed elevators has been developed so that the drive system of high-speed elevator can be tested without my limitation on ride distance and the load condition. Some experimental results are given to verify the effectiveness of the developed system.

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Development of Driving System for Railway Vehicle using Vector Control (백터제어를 적용한 전동차 구동 시스템 개발)

  • 김상훈;배본호;설승기
    • The Transactions of the Korean Institute of Power Electronics
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    • v.6 no.2
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    • pp.125-131
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    • 2001
  • This paper presents a application of vector control strategy to 1.2MVA traction drive for railway vehicle. The vector control required the control of the phase and amplitude of output voltage vector. But in case of traction system for railway vehicle, the one-pulse mode is used at high speed region in order to utilize the link voltage fully. So it is impossible to control the flux and torque axis current instantaneously and independently in the region. So this paper proposes a mixed control algorithm, where the vector control strategy at low speed region and slip-frequency control strategy at high speed region is used. And precise switching technique between the two different control strategy is proposed. The proposed strategy is verified by experimental results with a 1.2MVA traction drive system with four 210kW induction motors.

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