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Balancing Current Distribution in Parallel Windings of Furnace Transformers Using the Genetic Algorithm

机译:遗传算法在炉型变压器并联绕组中平衡电流分布

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摘要

This paper presents a model for calculating and balancing the current distribution in parallel windings of furnace transformers. The proposed model is based on the finite-element method and takes into account the “skin effect” impact on the individual conductor resistances and self inductances. Because of mutual inductive coupling between the parallel windings, electromagnetic forces will cause a nonuniform current distribution in parallel windings. An illustrative example is investigated and uniform configuration is considered for the parallel windings. The obtained numerical results show the current distribution in parallel windings is not uniform in this case. Therefore, an effective technique is proposed for balancing the current distribution using the genetic algorithm. A comprehensive computer program in MATLAB is developed, which can be used to find an optimal solution for the proposed optimization problem. Finally, the proposed approach is verified by experiment and some comparative numerical results are presented.
机译:本文提出了一种用于计算和平衡炉变压器并联绕组中电流分布的模型。所提出的模型基于有限元方法,并考虑了“趋肤效应”对单个导体电阻和自感的影响。由于并联绕组之间的互感耦合,电磁力将导致并联绕组中的电流分布不均匀。研究了示例性示例,并考虑了并联绕组的统一配置。获得的数值结果表明,在这种情况下,并联绕组中的电流分布不均匀。因此,提出了一种有效的利用遗传算法平衡电流分布的技术。开发了MATLAB中的综合计算机程序,可用于为提出的优化问题找到最佳解决方案。最后,通过实验验证了该方法的有效性,并给出了一些比较数值结果。

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