Magnetic-Field Analysis on Winding Disposition of Transformer for Distributed High-Speed Train Applications

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WEB OF SCIENCE

6
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11

초록

In a high-speed train application, the modularized traction converter produces the significant harmonic currents caused from the switching behavior of a power converter. These harmonic currents bring the interference among the traction equipment. One way to minimize the interference is to design the secondary windings of a power transformer decoupled magnetically as possible. This paper presents a magnetic-field analysis on a winding disposition to clarify an impact on magnetic decoupling between secondary windings, under a limited height of a train. Two winding dispositions for a single-phase shell-type transformer are constructed and simulated by a three-dimensional finite-elements method (FEM) model. The simulation results with two different winding dispositions are provided and the experiments show good agreement with the simulation results.

키워드

Finite-element methodhigh-speed trainmagnetic decouplingshell-type transformerMagnetic fieldsPower convertersPower transformersRailroad carsRailroad transportationRailroadsTransformer windingsWindingHigh speed train (HST)Magnetic decouplingMagnetic field analysissShell type transformersSwitching behaviorsThree dimensional finite elementsTraction convertersTraction equipmentsFinite element method
제목
Magnetic-Field Analysis on Winding Disposition of Transformer for Distributed High-Speed Train Applications
저자
Park, Byoung-GunKim, Tae-SungLee, Kui-JunKim, Rae-YoungHyun, Dong-Seok
DOI
10.1109/TMAG.2010.2043646
발행일
2010-06
유형
Article
저널명
IEEE Transactions on Magnetics
46
6
페이지
1766 ~ 1769