Optimal Dispatchable DG Location and Sizing with an Analytical Method, based on a New Voltage Stability Index

M. Aryanfar
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引用次数: 1

Abstract

Article history: Received 18 January 2022 Received in revised form 30 April 2022 Accepted 08 May 2022 With the high penetration of DGS in the distribution network and its impact on the power loss and voltage profile of the network, the choice of location and the optimal size of the DG has become a challenge for utility companies. In this paper, a method for determining the optimal location and size of dispatchable DG at different load levels for optimal utilization of the distribution network is presented. The goal is to reduce active power losses and improve voltage profiles for stable system performance. The average daily load demand is considered as the load demand profile. The optimal location of DG is determined by sensitivity analysis based on a new voltage stability index. The voltage stability index is based on the voltage breakdown feature and provides an overview of the network voltage stability so that it can show the effect of DG installation location on network voltage stability. DG provides loads at different levels, then by selecting the appropriate bus from the most important buses in terms of index, the optimal size of DG is determined using a search algorithm and based on the lowest active power losses for different load levels. The proposed method on IEEE 33 bus network has been tested using MATLAB software, and its results have been compared with other available methods. The results show the effectiveness of the proposed method in reducing active power losses and improving the voltage profile compared to other available methods.
基于新电压稳定指标的可调度DG最优选址与调度分析方法
随着分布式配电系统在配电网中的高渗透率及其对电网的功率损耗和电压分布的影响,分布式配电系统的位置选择和最佳规模已成为公用事业公司面临的挑战。本文提出了一种确定不同负荷水平下可调度DG的最优位置和规模的方法,以实现配电网的最优利用。目标是减少有功功率损耗,改善电压分布,以实现稳定的系统性能。平均日负荷需求被认为是负荷需求曲线。基于新的电压稳定指标,通过灵敏度分析确定了DG的最佳位置。电压稳定指标是基于电压击穿特征,对电网电压稳定性进行概述,可以反映DG安装位置对电网电压稳定性的影响。DG提供不同级别的负载,然后通过从索引最重要的母线中选择合适的母线,使用搜索算法并基于不同负载级别的最低有功功率损耗确定DG的最佳尺寸。该方法在IEEE 33总线网络上进行了MATLAB测试,并与其他方法进行了比较。结果表明,与现有方法相比,该方法在降低有功功率损耗和改善电压分布方面是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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