Design Considerations of An Inductive Power Transfer System for Rail Application

Xiwen Xu, Luocheng Wang, K. Lin, Tiefu Zhao, Shen-En Chen, D. Cook, D. Ward
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引用次数: 3

Abstract

Inductive power transfer (IPT) technology has been extensively studied for electric vehicles (EV) in the past decades. However, it has not drawn much attention in railway application. Due to the unique requirements of the railway system, most of the EV coupler designs are not directly compatible with wireless charging applications for a train. To fill this technical gap, this paper discusses the design considerations for railway application and introduces a design of a modular 5-kW IPT system for rail locomotives. According to the design constraints, a novel W-I coupler is proposed for the 5-kW IPT system and the system is optimized via ANSYS Maxwell. A prototype of the proposed IPT system is developed at an airgap of 5 inches and 85 kHz operating frequency. The prototype has been validated in a 1.7 kW output power supply with a DC to DC efficiency of 85.6%. The experimental results validate the feasibility of the IPT system design for rail application.
铁路用感应输电系统的设计考虑
在过去的几十年里,电动汽车的感应功率传输技术得到了广泛的研究。然而,在铁路上的应用并没有引起人们的重视。由于铁路系统的独特要求,大多数EV耦合器的设计不能直接兼容火车的无线充电应用。为了填补这一技术空白,本文讨论了铁路应用的设计考虑,并介绍了一种用于铁路机车的模块化5kw IPT系统的设计。根据设计约束,提出了一种适用于5kw IPT系统的新型W-I耦合器,并利用ANSYS Maxwell软件对系统进行了优化。所提出的IPT系统的原型在5英寸的气隙和85千赫的工作频率下开发。该原型已在1.7 kW输出电源中进行了验证,直流效率为85.6%。实验结果验证了IPT系统设计用于铁路应用的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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