Modelling of multi-pick-up bi-directional Inductive Power Transfer systems

A. Swain, Srikanth Devarakonda, U. Madawala
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引用次数: 8

Abstract

Bi-directional Inductive Power Transfer (IPT) systems allow contactless power transfer between two sides and across an air-gap, through weak magnetic coupling. These systems essentially constitute high order resonant circuit and their complexity increases with increasing number of pick-ups. A mathematical model which provides an insight into the behaviour of bi-directional IPT systems with multiple pick-ups would therefore be invaluable at design stage. This paper develops a multivariable dynamic model for bi-directional IPT system with multiple pick-ups. A 1.5 kW bi-directional IPT system with 3 pick-ups is simulated in PLECS and the results are presented with comparisons to demonstrate the validity of the proposed model. Results of the simulation indicate that the proposed model accurately predicts the behaviour of bi-directional IPT system with multiple pick-ups and can therefore be used as a valuable tool for both dynamic analysis and controller design.
多拾取器双向感应电力传输系统的建模
双向感应功率传输(IPT)系统允许通过弱磁耦合在两侧和气隙之间进行非接触功率传输。这些系统本质上构成了高阶谐振电路,其复杂性随着拾取器数量的增加而增加。因此,在设计阶段,能够深入了解具有多个拾取器的双向IPT系统行为的数学模型将是非常宝贵的。本文建立了一个具有多个拾取器的双向IPT系统的多变量动态模型。在PLECS中模拟了一个1.5 kW具有3个拾取器的双向IPT系统,并将结果进行了比较,以验证所提出模型的有效性。仿真结果表明,所提出的模型能够准确预测具有多个拾取器的双向IPT系统的行为,因此可以作为动态分析和控制器设计的有价值的工具。
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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