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Voltage Profile Enhancement Using Multi-Objective Sine Cosine Algorithm for Optimal Installation of DSTACOMs into Distribution Systems

机译:使用多目标正弦余弦算法的电压曲线增强,以便最佳地安装Dstacoms转化为分配系统

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In this paper, a Multi-Objective optimization technique based on Sine Cosine Algorithm (MOSCA) combined with fuzzy logic decision making is implemented for optimal installation of multiple Distribution STATic COMpensators (DSTATCOMs) in distribution networks. The optimization procedure is carried out to determine the optimum size and location of DSTATCOMs that leads to minimize the power losses, Voltage Deviation (VD), in addition, maximize the Voltage Stability Index (VSI) of the radial distribution system. The fuzzy logic controller is built to express the decision maker preferences among the three objective functions where each objective function is fuzzed and represented by a certain membership function. To prove the effectiveness of MOSCA, a comprehensive comparison is performed with well-known MOPSO and the other optimization method used in the same issue. All simulations are achieved using the IEEE-33 bus and IEEE-69 bus distribution systems in MATLAB environment.
机译:本文采用了一种基于正弦余弦算法(MOSCA)的多目标优化技术与模糊逻辑决策相结合,实现了分发网络中多分布静态补偿器(DSTATCOM)的最佳安装。进行优化过程以确定DSTATCOM的最佳尺寸和位置,从而导致最小化电力损耗,电压偏差(VD),最大化径向分布系统的电压稳定性指数(VSI)。模糊逻辑控制器建立在三个客观函数中,以表达决策制造商首选项,其中每个客观函数被模糊并由某个隶属函数表示。为了证明莫斯卡的有效性,通过众所周知的MOPSO和同一问题使用的其他优化方法进行全面的比较。所有模拟都是使用Matlab环境中的IEEE-33总线和IEEE-69总线分配系统实现的。

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