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Novel multi-objective optimization method of electric and magnetic field emissions from double-circuit overhead power line

机译:双回架空电力线电磁辐射的多目标优化新方法

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摘要

This paper proposes a novel method for determining optimal arrangements of overhead double-circuit power line conductors aimed to reduce electric and magnetic field emissions. Extremely low frequency electric and magnetic field optimization problems have multiple objectives. Multiple-objective optimization allows the simultaneous optimization of two or more conflicting objectives and determination of mutually non-dominated solutions. The multi-objective optimization technique used in this paper is based on Genetic Algorithm to obtain a set of mutually non-dominated solutions (Pareto optimal set) for the two objectives: the electric and magnetic ield strengths near overhead double-circuit power line. Also, additional assessment criteria were deined for the selection of several decision scenarios from the Pareto optimal set. The results and practical aspects of the proposed methodology are demonstrated on two typical 400-kV double-circuit overhead power lines. The eficiency of the proposed multiple-objective optimization method is compared with the existing one based on single-objective optimization function. Copyright © 2016 John Wiley & Sons, Ltd.
机译:本文提出了一种用于确定架空双回路电力线导体最佳布置的新颖方法,旨在减少电场和磁场的辐射。极低频电场和磁场优化问题有多个目标。多目标优化可同时优化两个或多个相互冲突的目标,并确定互不主导的解决方案。本文使用的多目标优化技术基于遗传算法,获得了一组互不占主导的解(帕累托最优集),以解决两个目标:架空双回输电线附近的电场和磁场强度。此外,还定义了其他评估标准,以从帕累托最优集合中选择几种决策方案。在两条典型的400 kV双回路架空电力线上展示了所提出方法的结果和实际方面。将所提出的多目标优化方法的效率与现有的基于单目标优化函数的效率进行比较。版权所有©2016 John Wiley&Sons,Ltd.

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