三相变压器铁心优化设计新技术

O. S. Alyozbaky, Mohd Zainal A. Ab Kadir, M. Izadi, C. Gomes, N. Azis, Maryam Bt. Mohd. Isa
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引用次数: 0

摘要

近年来,降低三相变压器的损耗一直是研究人员关注的问题。本文采用粒子群算法对三相变压器铁心t型接头进行了优化设计。利用该技术设计了一种新的接头几何形状,以获得三相变压器中最小的损耗。为了实现这一目标,采用三维有限元方法对所提出的变压器模型进行了仿真。考虑了铁芯损耗和绕组损耗作为热源,并根据变压器厂实测数据对结果进行了验证。结果表明,与普通设计的相应值相比,总损耗降低了10%。此外,与传统设计的类似参数相比,堆芯损耗降低了11%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Optimization Technique to Design the Core of Three-Phase Transformer
Reduction losses in three-phase transformers have drawn the attention of researchers, in the recent years. In this study, an intelligent algorithm employing particle swarm optimization (PSO) has been used to get the optimum T-joint design of a core in a three-phase transformer. This technique was employed to design a new geometry of a joint to obtain the minimum loss in a three-phase transformer. In achieving this target, a 3D finite element method had been used to simulate the proposed transformer model. Power losses in the core and winding losses had been considered as the heat sources, and the results were validated based on the test data obtained from transformer factory. The results presented that the total losses have been decreased up to 10% compared to the corresponding values from common designs. Moreover, the core losses have been reduced in the range of 11% compared to similar parameters in the conventional design.
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