• Title/Summary/Keyword: LIM(Linear Induction Motor)

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Effect on characteristics of thrust forte using arc type tester in linear induction motor (선형 유도 전동기의 회전형 시험기가 추력 특성에 미치는 영향)

  • Ham, Sang-Hwan;Lee, Sung-Gu;Lee, Hyung-Woo;Lee, Ju
    • Proceedings of the KSR Conference
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    • 2009.05a
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    • pp.1661-1666
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    • 2009
  • This paper is analyzed the effect on characteristics of thrust force of linear induction motor(LIM) by arc type tester. Many kinds of tester have a rotational shape because of a finite length of railroad. Whereas effects by using rotational type tester are generally unknown. For reason of that, this paper is analyzed the effect on characteristics by rotational type tester using 2D finite element method(FEM), and then is compared a thrust force between linear type tester and rotational type tester. Analysis model is decided by numerical modeling for fitting the LIM for propulsion system of light rail, and it is changed to proper arc model. And then we analyzed the arc and the linear model. Consequently, arc type tester is not only useful experiment but also efficient simulation method, and small error is occurred between linear and arc model.

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The Characteristic Analysis of Vector Control in a Linear Induction Motor Considering Static and Dynamic End Effects (정적 및 동적 단부효과를 고려한 선형 유도 전동기의 벡터제어 특성해석)

  • Kim, Dae-Gyeong;Gwon, Byeong-Il;U, Gyeong-Il
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.51 no.8
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    • pp.413-424
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    • 2002
  • Recently, in the linear motion system, high performances are required In dynamic characteristics. Vector control method is capable of instantaneous thrust control can meet these high performance requirements. Linear induction motor(LIM) have static and dynamic end effects due to its finite core length, so that per-phase impedances are asymmetric and an air gap flux distribution is distorted. These points of the d-q axis equivalent circuit model considering both end effects is more complicated. This paper proposes the d-q axis equivalent circuit and the vector control method considering both static and dynamic end effects of the LIM. As a result, it is shown that the results of the equivalent circuit method(ECM) have a good agreement with those of the finite element method(FEM).

Air Gap Change of a Maglev Vehicle at the Moment a Linear Induction Motor Runs (자기부상열차 가속 순간 부상공극 변화)

  • Shin, Hyeon-Jae;Han, Hyung-Suk;Kim, Dong-Sung;Kim, Bong-Seup
    • Proceedings of the KSR Conference
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    • 2009.05a
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    • pp.1218-1223
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    • 2009
  • LIM(Linear induction motor)s are the main type of motors used for urban Maglev vehicles because they are less expensive to operate at a lower speed than linear synchronous motors. An LIM generates an attraction force while running, which perturbs the air gap of the electromagnet. This undesirable air gap variation could result in the mechanical contact of an electromagnet with the reaction plate. For this reason, the magnitude of the air gap variation must be limited within a certain range. The air gap changes when running the 1/2 vehicle under development for testing are analyzed through a test on the test track at KIMM. The results from this study could be used to minimize the air gap variations due to attraction force from LIM.

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Speed Control of Linear Induction Motor with Cage-type Secondary Using Direct Thrust Control (직접 추력 제어에 의한 농형 선형 유도 전동기의 속도 제어)

  • Kim Kyung-Min;Park Seung-Chan
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.920-922
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    • 2004
  • This paper presents a speed control system for a linear induction motor(LIM) with cage-type secondary using direct thrust control(DTC). The actual speed of the LIM is detected by the linear scale with the resolution of $100{\mu}m$. Thrust correction coefficient due to the end effect of the LIM is utilized in estimating actual thrust. As a result, responses of the thrust, current, speed, and flux are shown.

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Characteristic Experiment for Direct Vector Control of Linear Induction Motor (선형유도전동기(LIM)의 직접벡터제어 특성 실험)

  • Kwon, Byung-Il;Lee, Sang-Woo;Park, Seung-Chan
    • Proceedings of the KIEE Conference
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    • 1996.07a
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    • pp.25-27
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    • 1996
  • Instantaneous thrust control of linear induction motor(LIM) is needed to control its speed and position more accurately. In the vector control of LIM, it is hard to calculate flux angle exactly because of end effects of LIM. So in this paper direct vector control method is utilized to control speed of LIM. The airgap magnetic flux angle measured by hall sensors is transferred directly into coordinate transformer. As a result, some experimental values of direct vector control using DSP are shown.

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Dynamic Characteristics Analysis of 3D Conveyor System Linear Induction Motor for Control Algorithm Developments (제어알고리즘 개선을 위한 3차원 반송 시스템 선형유도전동기의 동특성 해석)

  • Jeon, Su-Jin;Lee, Jung-Ho
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.56 no.3
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    • pp.514-518
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    • 2007
  • It is necessary to modify the state-of-the-art of speed control theory because of the phase asymmetry in the Linear Induction Motor (LIM)and for the constant speed control of mover using single vector control inverter system, it is important that primary stack is located in appropriated intervals in the 3D conveyer system using LIM. The dynamic characteristic analysis method of the vector controlled LIM using coupled FEM and control algorithm taking into account the movement is proposed. The focus of this paper is the analysis relative to selecting primary stack intervals in order to constant speed control in the 3D conveyer system using LIM.

An Experimental Study on Dynamic Test of Linear Induction Motor( II ) (선형유도전동기의 동특성에 대한 실험적 연구( II ))

  • Kim, Bong-Seop;Chung, Hyun-Kap;Cho, Hung-Je
    • Proceedings of the KIEE Conference
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    • 1997.07a
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    • pp.57-63
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    • 1997
  • In this paper we report test results of the dynamic characteristics of the linear induction motor(LIM) used for propulsion of the UTM-01. To test a vehicle scale LIM, we manufactured a bogie type sled propelled by LIM. In this report, the LIM end effects for both cases when the vehicle is at rest and when the vehicle is running were measured and compared with the calculations. The LIM thrust and the vertical forces were measured by the 3-component load cell and the results were compared with the calculations from measured vertical load and vehicle velocity.

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Development of the High Performance Inverter(300KVA) for Urban Transit Magnetic levitation Vehicles (자기부상열차용 추진용 인버터(300KVA)에 관한 연구)

  • Kim, Suk-Ki;Cho, Sung-Jin;Chung, Jin-Heung;Kim, Bong-Seop
    • Proceedings of the KIEE Conference
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    • 1997.11a
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    • pp.626-629
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    • 1997
  • The urban transit propelled by single sided linear induction motor(SLIM) have been in stage for practical application. Also, the use of the linear induction motor in traction systems enables large forces to be achieved without friction between wheels and rails. In this paper we discuss the linear induction motor (LIM) drive system (300KVA) for magnetic levitation vehicles.

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Analysis and Design of the Sin91e-sided Linear Induction Motor for Transferring Molten Metal (용융금속 이송용 편측식 선형유도전동기의 설계 및 해석)

  • Kim, C.E.;Hong, S.O.;Kim, S.W.;Shim, D.J.
    • Proceedings of the KIEE Conference
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    • 1999.11b
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    • pp.46-48
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    • 1999
  • This paper presents the design and characteristics analysis of a linear induction motor applied to molten metals. A linear induction motor is designed to increased to thrust and is applied to the experimental instrument. The experiment shows the availability of the LIM for transferring the molten metals.

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Dynamic Characteristic Analysis on Linear Induction Motor considering Load Conditions (부하조건을 고려한 직선형 유도전동기의 동특성 해석)

  • Jang, Seok-Myeong;Park, Yu-Seop;Park, Ji-Hoon;Lee, Un-Ho;Lee, Kyoung-Bok
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.808_809
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    • 2009
  • This paper deals with the dynamic characteristic analysis on Linear Induction Motor(LIM) considering load conditions. The analysis on the electromagnetic characteristics is processed to derive circuit parameters, and dynamic modeling for the analysis is performed considering load conditions for speed and thrust dynamic characteristics.

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