• Title/Summary/Keyword: traction performances

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A Traction System Control Method for 2 Motor Driven Electric Vehicle (독립 구동형 전기자동차의 추진 시스템 제어 기법)

  • 박정우;하회두;김흥근
    • The Transactions of the Korean Institute of Power Electronics
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    • v.4 no.4
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    • pp.357-367
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    • 1999
  • When traction system of 2-motor driven electric vehicle(EV) is consisted of two motors (IPMSM) . two inverters. and one traction controller, control performances of IPMSM for an electric vehicle is affected by parameter variation b because of large current magnitude and wide current phase angle. To solve this problem, new parameter estimator for L Ld and Lq is constructed by neu때 network technique. And new vector control algorithm with parameter estimator by n neural network is proposed for IPMSM.And also. an advanced traction control algorithm is proposed using fuzzy c controller in order to enhance the driveability oftwo-wheel drive EVs with fitted with a traction control system Performances of the proposed algorithm are examined by simulations and the experimental resul않 with respect to t the prototype IPMSM and EV.

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Design and Driving Characteristic of SRM for Traction Drive (견인구동용 SRM의 설계 및 구동특성(I))

  • Moon, Jae-Won;Kim, Tae-Hyoung;Ahn, Jin-Woo
    • The Transactions of the Korean Institute of Power Electronics
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    • v.11 no.4
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    • pp.378-384
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    • 2006
  • In this paper, the design and performance analysis of switched reluctance motor(SRM) according to the design parameters are researched for a traction drive. The parameters which are sensitive to the performance are examined and selected to have good performances. For the high performance of traction drive, some effective guide lines to have a good performance motor are suggested. The prototype machine is constructed to compare with the simulated and tested for the comparison of design results.

Development of Measurement System for Traction and Braking (견인제동 계측시스템 개발)

  • Kim, Seog-Won;Han, Young-Jae;Choe, Kang-Youn;Kim, Young-Guk;Kim, Jong-Young;Park, Tae-Won
    • Journal of Sensor Science and Technology
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    • v.13 no.4
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    • pp.270-276
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    • 2004
  • In this paper, we introduce the software and hardware of the measuring system for on-line test and performances evaluation of traction and braking in KTX(Korea Train Express). The measuring system focuses on the verification of the performance and acquisition of test data. The hardware is connected many kinds of sensors, such as speed sensor, thermocouple. The software controls the hardware of the measuring system, performs the analysis and calculation of measurement data and acts as interface between users and the hardware. For this purpose, three programs, such as a measuring program, a back-up program and a analysis program, have developed.

Vehicle traction control using fuzzy logic algorithm (퍼지 로직 알고리듬을 이용한 차량 구동력 제어)

  • 박성훈;권동수
    • 제어로봇시스템학회:학술대회논문집
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    • 1996.10b
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    • pp.680-683
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    • 1996
  • The dynamics of the vehicle system has highly nonlinear components such as an engine, a torque converter and variable road condition. This thesis proposes a Fuzzy Logic Algorithm that shows better control performance than Antiwindup PI in the highly nonlinear vehicle system. Traction Control System(TCS), which adjusts throttle valve opening by Fuzzy Logic Algorithm improves vehicle drivability, steerability and stability when vehicle is starting and cornering. When a throttle valve is opened at large degree, Fuzzy Logic Algorithm shows better performances like a small settling time and a small oscillation than Antiwindup PI in simulation. The decreased desired slip ratio improves steerability in the simulation when a vehicle is cornering. The Fuzzy Logic Algorithm has been tested by a 1/5-scale vehicle for tracking the constant desired velocity.

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A Study on Running Characteristic of High-Speed Train (고속철도차량의 주행 특성에 관한 연구)

  • Han, Young-Jae;Kim, Ki-Hwan;Park, Chan-Kyoung;Park, Choon-Soo;Han, Seong-Ho;Kim, Jong-Young
    • Proceedings of the KIEE Conference
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    • 2004.04a
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    • pp.266-268
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    • 2004
  • In this study, on-line measuring system were developed to verify performances and functions of traction system that are used in KTX(Korea Train eXpress) synthetically and efficiently, and have been measuring electric signals of vehicle as well as mechanical signals up to the present. Running-braking measuring equipment was constructed in vehicle to optimize signal acquisition and analysis ability of the measuring system. Measurement data of signal were performed acquisition, analysis and evaluation using this equipment. KRRI(Korea Railroad Research Institute) described about main specifications of measuring equipment. Also, the structure and principles as well as main circuit system were explained in brief. KRRI analyzed the characteristics comparing design values with experimental values about running distance, running time and positive acceleration for KTX is running in full traction. We analyzed the distance and time according to number of motor block. In result, running characteristics of traction system in KTX were verified and could be evaluated.

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A High Performance AC Propulsion System for Electric Car (전동차용 고성능 AC구동시스템의 개발)

  • Jung, K.C.;Bang, L.S.;Kim, D.S.;Seo, K.D.;Kim, N.H.
    • Proceedings of the KIEE Conference
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    • 1996.07a
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    • pp.278-280
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    • 1996
  • This paper presents a high performance AC propulsion system for electric car to improve traction capability. The presented VVVF inverter was composed of as GTO thyristor and the the controller was fully digitalized by using 32bit DSP. The improved PWM algorithms and the new adhesion control were adapted to improve traction characteristics. This system could be possible the higher reliability and flexibility. The field test results showed the higher performances characteristics of the presented system.

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Development of a Matlab Toolbox for Guidance & Traction Control Designs of an Articulated Transportation Vehicle (굴절차량의 안내/추진 제어 설계용 Toolbox)

  • Min, Kyung-Deuk;Yun, Kyoung-Han;Kim, Young Chol;Byun, Yeun-Sub
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.11
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    • pp.2074-2079
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    • 2008
  • This paper presents a software toolbox with $Matlab^{(R)}$ developed for the various performance analysis of an automatic guidance system of the Bimodal Tram. The Bimodal Tram is a new kind of transportation vehicle which could be an all-wheel steered multiple-articulated vehicle. This vehicle has to be equipped with an automatic guidance, traction/braking, and docking system, In the stage of developing such a system, its validities and performances should be verified under various operation conditions. For the purpose of doing these things through simulation, this toolbox has been developed and demonstrated well by applying it to the KRRI model.

Fuzzy Logic Speed Control Stability Improvement of Lightweight Electric Vehicle Drive

  • Nasri, Abdelfatah;Hazzab, Abdeldjabar;Bousserhane, Ismail.K;Hadjeri, Samir;Sicard, Pierre
    • Journal of Electrical Engineering and Technology
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    • v.5 no.1
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    • pp.129-139
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    • 2010
  • To be satisfied with complex load condition of electric vehicle, fuzzy logic control (FLC) is applied to improve speed response and system robust performance of induction traction machine based on indirect rotor field orientation control. The proposed propulsion system consists of two induction motors (IM) that ensure the drive of the two back driving wheels of lightweight electric vehicle by means the vehicle used for passenger transportation. The electronic differential system ensures the robust control of the vehicle behavior on the road. It also allows controlling, independently, every driving wheel to turn at different speeds in any curve. Our electric vehicle fuzzy inference system control's simulated in Matlab SIMULINK environment, the results obtained present the efficiency and the robustness of the proposed control with good performances compared with the traditional PI speed control, the FLC induction traction machine presents not only good steady characteristic, but with no overshoot too.

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.

Train Performance Simulation and Evaluation for Korea High Speed Train (한국형 고속전철 개발열차 열차성능해석 및 평가)

  • 이태형;박춘수;신중린
    • Journal of the Korean Society for Railway
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    • v.7 no.2
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    • pp.120-124
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    • 2004
  • Computer aided simulation is an essential part in planning, design, and operation of railway systems. To determine the adequate performance and specification of railway system, it is necessary to calculate train performances such as distance, speed, power during train's running. This paper presents result of train performance simulation using the program that developed for Korea high speed train. To verify result of simulation, we have compared that with experiment data.