Sine-Cosine Algorithm for Optimal Capacitor Allocation in Distribution Systems Operating Under Non-Sinusoidal Conditions

B. G. Mahmoud, S. H. A. Abdel Aleem, M. Sayed
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引用次数: 1

Abstract

The rapid increase in the use of nonlinear loads that inject harmonics into electrical distribution systems causes many power quality problems. A practical method to mitigate harmonic distortion and improve the system's technical performance is optimal capacitor allocation. This method aims to get the best value of installed shunt capacitors and also the best location of them while putting the financial aspect into consideration. To accurately optimize these shunt capacitors' size and location, achieving the minimum annual cost and considering IEEE Std. 519™-2014 constraints in distorted systems, optimization problem formulation, is needed. In the literature, many studies discussed this problem. However, most of them formulated their optimization technique based on the fundamental load flow while assuming that the distribution system's loads are operating at sinusoidal conditions, leading to inaccurate analysis of the system and erroneous actions. In this paper, the decoupled harmonic power flow approach (DHPF) is considered the base of the optimization problem, in which the so-called sine-cosine algorithm (SCA) is employed in this work on an 18-bus system working at non-sinusoidal conditions. The results obtained have been compared to obtained results by other optimization techniques to verify the algorithm's effectiveness.
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非正弦条件下配电系统电容优化配置的正弦余弦算法
向配电系统注入谐波的非线性负荷的使用迅速增加,引起了许多电能质量问题。优化电容器配置是缓解谐波失真、提高系统技术性能的一种实用方法。该方法的目的是在考虑经济因素的情况下,确定并联电容器的最佳安装价值和最佳安装位置。为了精确优化这些并联电容器的尺寸和位置,实现最小的年成本,并考虑扭曲系统中的IEEE Std. 519™-2014约束,需要制定优化问题。在文献中,很多研究都讨论了这个问题。然而,他们大多基于基本潮流来制定优化技术,并假设配电系统的负荷在正弦状态下运行,导致系统分析不准确和错误的行为。本文将解耦谐波潮流方法(DHPF)视为优化问题的基础,其中在非正弦条件下工作的18母线系统中采用了所谓的正弦-余弦算法(SCA)。将所得结果与其他优化方法的结果进行了比较,验证了算法的有效性。
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