Contactless Energy Transmission using a Transformer with Movable Secondary

M. Stępień
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Abstract

Contactless energy transmission is a very convenient method of energy delivery to loads with variable location in respect of energy source. The most simple and most efficient transfer system is a transformer with an air gap. The paper is focused on analysis of properties of the transformer with relatively large air gap and the secondary winding which is a movable part. The transformer is used to deliver energy to an electronic equipment mounted on the head of drill machine. In order to increase energy efficiency and power density the capacitance compensation system for leakage inductances is applied. Since the secondary is movable, an analysis of generation of the energy resulting from spatial changes of magnetic field is carried out. The analysis presented in the paper is based on ANSYS software and is carried out mostly as harmonic one for linear models.
采用可移动二次变压器的非接触式能量传输
非接触式电能传输是一种非常方便的电能输送方式,可用于能源位置可变的负荷。最简单、最有效的传输系统是带气隙的变压器。本文着重分析了具有较大气隙的变压器和二次绕组为活动部件的变压器的特性。该变压器用于向安装在钻机头上的电子设备输送能量。为了提高能量效率和功率密度,采用了漏感电容补偿系统。由于二次磁体是可动的,因此分析了磁场空间变化引起的能量产生。本文的分析基于ANSYS软件,对线性模型多采用谐波分析。
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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