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Design and Loss Analysis of Loosely Coupled Transformer for an Underwater High-Power Inductive Power Transfer System

机译:水下大功率感应电力传输系统松耦合变压器的设计与损耗分析

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摘要

To prevent magnetic flux leakage to the maximal extent, increase the coupling coefficient of high-power inductive power transfer (IPT) system, and reduce the electromagnetic radiation in water medium, a novel underwater loosely coupled transformer (LCT) based on the semiclosed magnetic core structure is proposed in this paper. Power loss of the devised LCT is investigated comparatively in three media including air, freshwater, and seawater. It is shown that winding loss and core loss in the three media are basically identical. However, additional eddy current (AEC) loss in various water media is different for the sake of the difference in conductivity. In particular, AEC loss is extremely low in freshwater and relatively significant in seawater. Furthermore, when the operating frequency exceeds a certain value, AEC loss will be greater than core loss and winding loss, and become the major factor in restricting transmission efficiency of LCT in seawater. Finally, theoretical analysis and simulation are demonstrated by the underwater experiment on an IPT prototype system, which can transfer 10 kW at 91% maximal transmission efficiency and over a 25 mm air gap.
机译:为了最大程度地防止磁通泄漏,增加大功率感应功率传输(IPT)系统的耦合系数,并减少水介质中的电磁辐射,基于半封闭磁芯的新型水下松散变压器(LCT)本文提出了结构。在包括空气,淡水和海水在内的三种介质中,对设计的LCT的功率损耗进行了比较研究。结果表明,三种介质的绕组损耗和铁芯损耗基本相同。但是,由于电导率的不同,各种水介质中的附加涡流(AEC)损耗也不同。特别是,淡水的AEC损失极低,而海水中的AEC损失则相对较大。而且,当工作频率超过一定值时,AEC损耗将大于铁芯损耗和绕组损耗,并成为限制LCT在海水中传输效率的主要因素。最后,通过在IPT原型系统上进行的水下实验证明了理论分析和仿真,该系统可在91%的最大传输效率和25 mm的气隙下传输10 kW功率。

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