Efficiency Maximization of Inductive Power Transfer System by Impedance and Switching Frequency Control in Secondary-side Converter

Ryosuke Ota, D. S. Nugroho, N. Hoshi
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引用次数: 3

Abstract

Many of previous studies have focused on the efficiency of only one component of inductive power transfer (IPT) system, so the efficiency improvement of multiple components of the system has not been considered sufficiently. Therefore, this paper focuses on multiple components, which are the resonant circuit and the secondary-side converter, and proposes a control method to improve the efficiency of these components. As a result, the overall system efficiency is improved. To improve the multiple components’ efficiency, the load impedance control for resonant circuit and switching frequency control to the secondary-side converter were applied. As a result, the combined efficiency of the resonant circuit and the secondary-side converter was raised at the maximum of 1.2 points or 1.3 points with the proposed control where the resonant coil coupling factor was 0.3 or 0.2.
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二次侧变换器阻抗和开关频率控制下感应功率传输系统效率最大化
以往的许多研究都只关注感应功率传输系统中单个元件的效率,对系统中多个元件的效率提高考虑不够。因此,本文重点研究了谐振电路和二次侧变换器这两个多部件,并提出了一种提高这些部件效率的控制方法。因此,提高了系统的整体效率。为了提高多元件效率,对谐振电路进行了负载阻抗控制,对二次侧变换器进行了开关频率控制。结果表明,当谐振线圈耦合系数为0.3或0.2时,谐振电路和二次侧变换器的综合效率最高可提高1.2点或1.3点。
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