用集总元件电路表示变压器的电气特性:一种全局物理方法

A. Schellmanns, J. Keradec, J. Schanen, K. Berrouche
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引用次数: 20

摘要

本文提出了表示多绕组变压器外部电行为的等效电路。线性行为的所有方面,包括共振和绕组间器件到电流,都被考虑在内。全局物理组件方法导致一般的集总元件电路,这样从一个组件到另一个组件只有元素值改变。所提出的电路的所有元件值都可以从外部电气测量中推导出来,不需要关于形状、尺寸、使用的技术甚至匝数的额外信息。本文包括两个部分。第一个重点是线性无损耗磁耦合的表示。如何表示多绕组变压器的漏损以及选择何种测量方法来全面、准确地表征磁耦合是研究的课题之一。在第二部分,研究了杂散电容的表示:如何表示多绕组变压器的静电行为,以及选择什么测量来全面准确地表征这些元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Representing electrical behaviour of transformers by lumped element circuits: a global physical approach
This paper proposes equivalent circuits to represent the external electrical behaviour of multiwinding transformers. All aspects of the linear behaviour, including resonances and inter-winding devices to currents, are taken into account. The global physical components approach leads to general lumped element circuits such that only element values change from one component to another. All the element values of the proposed circuits are deducible from external electrical measurements with no need for extra information regarding shape, size, used technology and, even, turn numbers. This paper includes two parts. The first one focus on the representation of linear loss free magnetic coupling. How to represent leakage of multi-winding transformers and what measurements to choose to fully and accurately characterise magnetic coupling are among the investigated subjects. In the second part, representation of stray capacitors is studied: how to represent the electrostatic behaviour of multi-winding transformers and what measurements to choose to fully and accurately characterise these components.
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