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Optimal integration of shunt capacitor banks in distribution networks for assessment of techno-economic asset

机译:分销网络分流电容器库的优化集成技术经济资产评估

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This article presents optimal incorporation of shunt capacitor banks in distribution feeders for the purpose of reduction of power loss, total annual expenses and voltage deviations. Additionally, it improves the voltage level, power factor and voltage stability of the network. To attain these proposed goals, a new multi-objective function has been formulated subjected to some operating constraints. This problem has been solved through Modified Gbest-guided Artificial Bee Colony (MGABC) meta-heuristic optimization technique. This proposed methodology is divided into two parts. In first part, the sensitivity buses are determined using Loss Sensitivity Factor (LSF) approach. In second, the optimization algorithm identifies the optimal buses from derived sensitive buses along with optimal size of shunt capacitors. This proposed methodology is implemented on standard 34-bus and 118-bus distribution feeders. In addition, the achieved numerical outcomes have been compared to the various intelligent approaches for showing the viability and effectiveness of the proposed approach.
机译:本文介绍了分配馈线中的分流电容器组的最佳结合,以减少功率损耗,总年度费用和电压偏差。另外,它可以提高网络的电压电平,功率因数和电压稳定性。为了获得这些拟议的目标,已经制定了一些新的多目标函数受到一些操作系统的影响。通过改进的GBEST引导的人造蜂菌落(MGABC)元启发式优化技术解决了这个问题。该提出的方法分为两部分。在第一部分中,使用损耗灵敏度因子(LSF)方法来确定灵敏度总线。第二,优化算法识别来自导出的敏感总线的最佳总线以及并联电容器的最佳尺寸。该提出的方法是在标准34公交总线和118母线分配馈线上实现的。此外,已经将实现的数值结果与各种智能方法进行了比较,以显示所提出的方法的生存能力和有效性。

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