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OPTIMAL ALLOCATION OF MULTIPLE DG IN RDS USING PSO AND ITS IMPACT ON SYSTEM RELIABILITY

机译:使用PSO的RDS中多DG的最佳分配及其对系统可靠性的影响

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This article presents the distributed generator (DG) integration in a radial distribution system (RDS). The DG penetration changes the single power source to multiple power sources and bidirectional load flow which enhances the system reliability and reduces system power losses. The particle swarm optimization and gravitational search algorithm are implemented for the optimal siting and sizing of one and three DG units in the RDS to examine its impact on system reliability and loss reduction. The types of DGs considered are Type I (injects real power) and Type IV (injects reactive and real power). The constant power is the chosen load model. The reliability indices taken for the analysis of system reliability are Average Energy Not Supplied, Total Energy Not Supplied and Average System Interruption Duration Index. The efficacy of the proposed method is validated on 33-bus in the presence of single and multiple DGs. The significant decrease in system power losses with the upgraded bus voltage profile, system reliability and remarkable annual loss saving is analyzed for Type IV DG over Type I DG. The results determined are compared to other meta-heuristic approaches as well as analytical techniques to demonstrate the superiority of the proposed methodology. The results are also statistically verified.
机译:本文介绍了径向分布系统(RDS)中的分布式发电机(DG)集成。 DG渗透将单电源改变为多个电源和双向载荷流​​,这提高了系统可靠性并降低了系统功率损耗。粒子群优化和重力搜索算法用于RDS中的一个和三个DG单元的最佳选址和尺寸,以检查其对系统可靠性和损耗的影响。所考虑的DG的类型是I类型(注入实际功率)和IV型(注入反应和实际功率)。恒定功率是所选的负载模型。用于分析系统可靠性的可靠性指标是未提供的平均能量,未提供总能量和平均系统中断持续时间指数。在单一和多个DG的存在下,在33母线上验证了所提出的方法的功效。通过升级的总线电压曲线,系统可靠性和显着的年损耗节省系统功率损耗的显着降低,可用于IV型I DG型IV DG。确定的结果与其他元启发式方法以及分析技术进行比较,以证明所提出的方法的优越性。结果也在统计上核实。

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