Impact of shunt capacitor penetration level in radial distribution system considering techno-economic benefits

S. Salimon, G. Adepoju, I. Adebayo, S. O. Ayanlade
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引用次数: 2

Abstract

Shunt Capacitor (SC) integration in radial distribution networks is a method utilized to minimize power losses and huge voltage drops. In other to obtain these maximum benefits, they should be optimally allocated. To this effect, researchers have used various optimization methods for solving SC allocation problems but most have not considered how the penetration level of SC into the radial distribution system affects these benefits. The goal of the paper, therefore, is to determine the most sensitive buses to reactive compensation and investigate the effect of the penetration level of SC on the techno-economic benefits. Load flow was performed for the base case to determine the steady-state performance of the system and the most sensitive buses were selected using New Voltage Stability Index (NVSI) technique. The size of the SC was increased in step of these buses, in turn, to determine SC penetration level impact on the techno-economic benefits. The approach was implemented on IEEE 33-bus and practical Nigerian radial distribution networks. The results showed that appropriate penetration of SC on networks leads to reduction of power losses, voltage profile improvement as well cost reduction resulting in high net savings.
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考虑技术经济效益的径向配电系统并联电容器渗透水平的影响
径向配电网中的并联电容器(SC)集成是一种用于最小化功率损耗和巨大电压降的方法。另一方面,为了获得这些最大利益,应该对其进行最佳分配。为此,研究人员使用了各种优化方法来解决供应链分配问题,但大多数人没有考虑供应链对径向分配系统的渗透水平如何影响这些效益。因此,本文的目标是确定对无功补偿最敏感的母线,并研究SC的渗透率水平对技术经济效益的影响。对基本情况进行了潮流分析,以确定系统的稳态性能,并使用新的电压稳定性指数(NVSI)技术选择了最敏感的母线。SC的规模随着这些公交车的步伐而增加,以确定SC渗透率水平对技术经济效益的影响。该方法已在IEEE 33总线和尼日利亚实际径向配电网上实现。结果表明,SC在网络中的适当渗透可以降低功率损耗,改善电压分布,降低成本,从而实现高净节省。
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来源期刊
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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