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Unified power flow controller based damping controller design: - A hybrid PSO-GSA approach

机译:基于统一潮流控制器的阻尼控制器设计:-混合PSO-GSA方法

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This paper demonstrates a novel approach for the design of Unified power flow controller (UPFC) based damping controller. A damping controller is universally adopted to reduce the low frequency of oscillation in a power system. Finding the controller parameters is considered to be an optimization problem. The estimation of optimum values for a damping controller requires strong and efficient optimization methods. A hybrid algorithm which combines the concept of Particle Swarm Optimization (PSO) and Gravitational Search Algorithm (GSA) termed as hybrid PSOGSA (hPSO-GSA) is used to tune the parameters of the FACT based damping controller. The objective of this algorithm is to integrate the exploitation property of PSO with the exploration property of GSA. The main focus here is, how the system stability can be improved by the optimal settings of the variables of a damping controller that can be obtained by using the hybrid algorithm. In this proposed work, the comparison of the hPSO-GSA algorithm with the GSA and PSO algorithm for the design of UPFC based damping controller is also carried out. The simulation results presented here concludes that the controller design using the proposed hPSO-GSA provides better solutions as compared to other methods.
机译:本文演示了一种用于设计基于统一潮流控制器(UPFC)的阻尼控制器的新颖方法。普遍采用阻尼控制器来减小电力系统中的低频振荡。查找控制器参数被认为是优化问题。阻尼控制器的最佳值的估计需要强大而有效的优化方法。结合了粒子群优化(PSO)和引力搜索算法(GSA)概念(称为混合PSOGSA(hPSO-GSA))的混合算法用于调整基于FACT的阻尼控制器的参数。该算法的目的是将PSO的开发属性与GSA的开发属性相结合。这里的主要焦点是,如何通过使用混合算法获得的阻尼控制器变量的最佳设置来改善系统稳定性。在这项拟议的工作中,还进行了hPSO-GSA算法与GSA和PSO算法的比较,以设计基于UPFC的阻尼控制器。在此给出的仿真结果得出结论,与其他方法相比,使用拟议的hPSO-GSA进行的控制器设计提供了更好的解决方案。

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