利用遗传算法对变压器油击穿电压影响因素进行优化

H. Nazar, Abdur Rashid, Mohsin Shahzad, Faisal Khan, Bilal Khan
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引用次数: 0

摘要

以往对变压器油击穿电压的影响因素进行了大量的实验研究,但近年来软件优化技术得到了广泛的关注。其基本目的是分析影响击穿电压的特性的行为,根据要求优化结果,使研究人员能够在实验工作之前预测结果。我们知道,只要外加电场在几纳秒内超过一定的极限,就会导致变压器油的击穿。变压器油的击穿强度受到一定的因素和介电性质的影响,从而影响电力系统的吞吐量。用于此目的的优化技术是遗传算法,因为它效果好,简单,易于使用。它可以一次处理多个变量。考虑影响击穿电压的因素有温度、介电常数、tan δ、粘度、粒子速度。假设间隙长度为10mm,各因素在击穿电压为50KV时进行优化。一般情况下,击穿小于50KV的油需要进行油的再处理。考虑到这些因素,进而分析影响击穿电压的许多其他因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of the factors affecting the breakdown voltage of the transformer oil using genetic algorithm
In previous years, a lot of experimental work was done on the factors that affect the breakdown voltage of transformer oil but recently software techniques for optimization gained so much attention. The basic purpose is to analyze the behavior of the properties that affect the breakdown voltage, to optimize the results according to the requirement and to enable the researcher to predict results before the experimental work. As we know, if the applied electric field is provided above a certain limit even for few nano-seconds it could lead to the breakdown of transformer oil. There are certain factors and dielectric properties that affect the breakdown strength of transformer oil and compromising the throughput of the electrical system. The optimization technique used for this purpose is Genetic Algorithm because of its good results, simplicity, and ease of use. It can deal with multiple variables at a time. The considered factors that affect the breakdown voltages are temperature, permittivity, tan δ, viscosity, velocity of the particles. The gap length is considered as 10mm and the factors are optimized around breakdown voltage of 50KV. Generally, oil having breakdown less than 50KV requires oil reconditioning. Considering these factors are leads to analyze many other factor affecting the breakdown voltage.
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