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An efficient method to compute transfer function of a transformer from its equivalent circuit

机译:一种从等效电路计算变压器传递函数的有效方法

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摘要

The dynamics of an electrical network can completely be described from the knowledge of its poles and zeros. Computation of poles and zeros of the transfer function (TF) of a transformer winding, represented as a coupled ladder network, involves solution of a large-sized equivalent circuit. This paper presents a novel solution based on state space analysis approach. It is shown, how the linearly transformed state space formulation, together with algebraic manipulations, can become useful. In the proposed formulation, symbolic variables (i.e., Laplace variable, s) are suitably manipulated, so as to render computations purely numerical. With this feature, there is practically no limit on the size of networks and topologies (including resistances to model losses) that can be represented. So, virtually any number of windings of a transformer can be considered, permitting a comprehensive analysis of winding behavior and its interactions, that was until now severely limited, by the simplifying assumptions imposed by existing methods.
机译:电网的动力学可以完全根据其零点和零点来描述。表示为耦合梯形网络的变压器绕组的传递函数(TF)的极点和零点的计算涉及到大型等效电路的解决方案。本文提出了一种基于状态空间分析方法的新颖解决方案。结果表明,线性变换的状态空间公式以及代数运算如何可以变得有用。在提出的公式中,对符号变量(即Laplace变量s)进行了适当的操纵,以使计算成为纯数字形式。使用此功能,实际上可以表示的网络和拓扑的大小(包括对模型损失的抵抗力)没有限制。因此,实际上可以考虑使用任何数量的变压器绕组,从而可以对绕组行为及其相互作用进行全面的分析,而到目前为止,由于现有方法所施加的简化假设,绕组行为及其相互作用得到了严格的限制。

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