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Accurate and Efficient Computation of the Inductance Matrix of Transformer Windings for the Simulation of Very Fast Transients

机译:变压器绕组电感矩阵的精确高效计算,用于快速瞬态仿真

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摘要

When a transformer is subjected to very fast front transients, the penetration of the magnetic flux into the core becomes, in general, negligible. To represent this phenomenon, it is common practice to compute the winding inductance matrix (turn-to-turn) at very high frequencies using the expressions for air-core inductors. However, since the core becomes a magnetic insulating wall at very high frequencies (MHz), the distribution of the magnetic field is altered because the field cannot enter the region occupied by the core. Therefore, the air-core approximation formulae overestimate the inductance at high frequencies. This is especially true in the region inside the core window. Large errors are found when the inductances are computed with the air-core approximation. This paper presents a technique, based on the application of a multilayer method of images, to take the presence of the core into consideration. The final expressions are very simple, yet they give remarkably accurate results. Comparisons with finite-element analyses prove the excellent accuracy of the technique.
机译:当变压器经受非常快的前瞬变时,磁通量对铁心的渗透通常可以忽略不计。为了表示这种现象,通常的做法是使用空心电感的表达式来计算非常高频率下的绕组电感矩阵(匝数比)。然而,由于芯部在非常高的频率(MHz)下变为磁绝缘壁,因此磁场的分布改变,因为磁场不能进入芯部占据的区域。因此,空心近似公式高估了高频下的电感。在核心窗口内部的区域中尤其如此。用空心近似值计算电感时会发现较大的误差。本文提出了一种基于多层图像方法的技术,该技术将核的存在考虑在内。最终表达式非常简单,但是它们给出了非常准确的结果。与有限元分析的比较证明了该技术的出色准确性。

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