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Comparing the T and $pi$ Equivalent Circuits for the Calculation of Transformer Inrush Currents

机译:比较T和$ pi $等效电路以计算变压器浪涌电流

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摘要

The most commonly used equivalent circuit for transformers is the traditional (Steinmetz) $T$-equivalent proposed toward the end of the 19th century. This model has two leakage impedance branches and one magnetizing branch. The $T$ model properly represents the terminal behavior of the transformer for most low-frequency operating conditions. Another model derived from the principle of duality between magnetic and electric circuits exists, the $pi$ equivalent circuit, which has two magnetizing branches and one leakage branch. This paper shows that while the two equivalent circuits provide the same accuracy in steady state, better accuracy for the calculation of inrush currents is obtained with the $pi$ -equivalent circuit. Laboratory tests performed on three transformers with different characteristics demonstrate that inrush current simulations with the $T$ equivalent circuit can have errors up to 73%, while the $pi$ equivalent estimates the measurements in every case within a few percent.
机译:变压器最常用的等效电路是19世纪末提出的传统(Steinmetz)T $等效电路。该模型具有两个泄漏阻抗分支和一个磁化分支。在大多数低频工作条件下,$ T $模型可以正确表示变压器的终端行为。存在另一个从磁路与电路对偶原理出发的模型,等效电路,具有两个磁化分支和一个泄漏分支。本文表明,虽然两个等效电路在稳态下提供相同的精度,但使用等效电路π可以获得更高的计算涌入电流的精度。在具有不同特性的三台变压器上进行的实验室测试表明,使用$ T $等效电路进行浪涌电流仿真时,误差最高可达73%,而$ pi $等效值在每种情况下估计的测量结果都在几个百分点之内。

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