• Title/Summary/Keyword: Traction Motor

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SR Drive System for LSEV (저속 전기자동차용 SRM의 구동특성 향상을 위한 제어시스템)

  • Hwang Hyung-Jin;Lee Dong-Hee;Ahn Jin-Woo
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.1013-1015
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    • 2004
  • SRM (switched reluctance motor) provides an excellent adjustable speed and torque characteristics. SRM has the possibility of maintaining full power over a wide speed range. So, many attempts are being done from home appliances to industrial applications. Especially, a traction drive of an SRM is one of a good application for it's DC-series characteristic. However, because of the switching mechanism and reluctance torque. it has some disadvantage of noise and vibration. It is difficult to adopt to an appliance demanding silency. Performance and noise tests with 6/4 and 12/8 SRM were excuted to compare the characteristics.

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Development of Low Noise SRM Drive for EV Application (소음저감을 위한 EV용 SRM 및 제어기의 개발)

  • Song, Hyun-Soo;Park, Sung-Jun;Ahn, Jin-Woo
    • Proceedings of the KIEE Conference
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    • 2003.07b
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    • pp.753-755
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    • 2003
  • The switched reluctance motor(SRM) drive system provides a good adjustable speed and torque characteristics. SRM has the possibility of maintaining full power over a wide speed range. So, many attempts are being done from home appliances to industrial machinery and tools. Especially, a traction drive of an SRM is one of a good application for it's DC-series characteristic. However, because of the switching mechanism, it has some disadvantage of noise and vibration. It is difficult to adopt to an appliance demanding silency. A noise simulation of 6/4 and 12/8 SRM was done in order to compare each other, and the design was done carefully.

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The Study of Main Circuit System Design and Testing for EMU Tilting Vechile (틸팅열차 주회로시스템 설계 및 검증기술연구)

  • Lee, Su-Gil
    • Proceedings of the KIEE Conference
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    • 2007.11a
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    • pp.200-201
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    • 2007
  • Tilting train has been developed to increase the operational speed of the trains on conventional lines which have many curves. This train are tilted at curves to compensate for unbalanced carbody centrifugal acceleration to a greater extent than compensation produced by the track cant, so that passengers do not feel centrifugal acceleration and thus trains can run at higher speed at curves. This paper show that results of normal capacity calculations of the electrical equipments such as Main transformer, PWM converter, VVVF inverter, traction motor in TTX(tilting train express) with maximum operation speed 180 km/h.

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A Study on the Matlab Modeling and Control Algorithm of 8200 Electric Locomotive (8200대 전기기관차 Matlab 모델링 및 제어 알고리즘에 관한 고찰)

  • Lee, Hwan;Jung, No-Geon;Kim, Jae-Moon
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.66 no.1
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    • pp.216-221
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    • 2017
  • In this paper, the converter and traction system of 8200 electric locomotive is modeled using matlab simulation module. And the characteristic was analyzed through simulation of the combined system of converter and inverter for controling 8200 electric locomotive. The validity of the simulation was proved through performing unit power factor control of converter and speed control of inverter.

A Study on the adhesion characteristic technique for improvement performance of urban rolling stock (도시철도차량의 성능 향상을 위한 점착특성 기법에 관한 연구)

  • Kim, Young-Choon;Chun, Ji-Yong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.2
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    • pp.150-156
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    • 2006
  • It is one of the most effective methods for improving the performance of electric railway vehicles to make better the wheel-rail adhesion characteristics. To study adhesion characteristic is to develop the equivalent reduction machine to experiment on the adhesion system. The experiment system makes it possible to change the wheel-rail adhesion force with various adhesion parameters, and therewith to test the adhesion control system with the reduction machine in a laboratory. In this paper, for improving adhesion performance shows actually control methods.

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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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The Study of Main Circuit System Design for EMU Tilting Vechile (틸팅전동차용 주회로시스템 설계에 관한 연구)

  • Han, Seong-Ho;Lee, Su-Gil;Lee, Eun-Kyu
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1604-1606
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    • 2005
  • Tilting train has been developed to increase the operational speed of the trains on conventional lines which have many curves. This train are tilted at curves to compensate for unbalanced carbody centrifugal acceleration to a greater extent than compensation produced by the track cant, so that passengers do not feel centrifugal acceleration and thus trains can run at higher speed at curves. This paper show that results of normal capacity calculations of the electrical equipments such as Main transformer, PWM converter, VVVF inverter, traction motor in TTX(tilting train express) with maximum operation speed 180 km/h

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Improvement of Re-adhesion Control Performance Using Estimation of Maximum Adhesive Force (최대점착력 추정을 이용한 철도차량의 재정착제어 성능 개선)

  • Kim, Woo-Seok;Kim, Yong-Seok;Sul, Seung-Ki
    • Proceedings of the KIEE Conference
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    • 1998.11a
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    • pp.163-167
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    • 1998
  • In this paper an improved re-adhesion control scheme is proposed for IC4M(1-Controller 4-Motors) traction system. It is well known that the coefficient of adhesion between wheel and rail has a maximum value at a certain slip velocity. In the proposed scheme, maximum adhesive force is estimated by an observer and the driving torque of motor is controlled to set maximum adhesive force. The simulation results are presented.

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The Development of Collision Avoidance Algorithm for Unmanned Vehicle Using Ultrasonic Range Sensors

  • Mohammad, Rahmati;Kim, Jung-Ha
    • 제어로봇시스템학회:학술대회논문집
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    • 2001.10a
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    • pp.23.1-23
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    • 2001
  • The unmanned vehicle is composed of three parts the front & side sensor system for keeping the lane and avoiding obstacles, the acceleration & brake control system for longitudinal motion control, and the steering control system for the lateral motion control. Each system helps the unmanned vehicle of which should take notice of its location and recognize obstacles around the place by itself and make a decision how much fast to proceed according to circumstances. During the operation, the control strategy that the vehicle can detect obstacles and avoid collision on the road involves with vehicle velocity very much. Therefore, We have to define a traction system which is powered by DC motor so that, unmanned vehicle can control its velocity accurately. In this study, we find mechanical and ...

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Analysis on Driving Performance of Linear Induction Motor for Maglev System by Finite Element Method (유한요소법을 이용한 자기부상용 선형유도기의 운전 특성 분석법)

  • Kim, Ki-Chan
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.7
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    • pp.4469-4474
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    • 2014
  • This paper proposes a novel analysis method on the driving performance of LIM (linear induction motor) by FEM (finite element method). First, a linear model was converted with a rotation model to perform the dynamic analysis for a long time. Through the FEM model, the slip parameter for the control algorithm could be induced effectively. The LIM for the traction system was performed at a constant V/f in the region of constant torque, and a constant V and variable f in the region of constant power. Several slip characteristic curves according to the voltage and frequency were calculated by FEM in advance. The driving performance was then induced by interpolating the slip characteristic curves according to the load of the vehicle.