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首页> 外文期刊>Research journal of applied science, engineering and technology >Multiobjective Optimal Reactive Power Dispatch Considering Voltage Stability Using Shuffled Frog Leaping Algorithm
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Multiobjective Optimal Reactive Power Dispatch Considering Voltage Stability Using Shuffled Frog Leaping Algorithm

机译:混合蛙跳算法考虑电压稳定性的多目标最优无功调度

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摘要

This study addresses a shuffled frog leaping algorithm for solving the multi-objective reactive power dispatch problem in a power system. Optimal Reactive Power Dispatch (ORPD) is formulated as a nonlinear, multi-modal and mixed-variable problem. The intended technique is based on the minimization of the real power loss, minimization of voltage deviation and maximization of the voltage stability margin. Generator voltages, capacitor banks and tap positions of tap changing transformers are used as optimization variables of this problem. A memetic meta-heuristic named as shuffled frog-leaping algorithm is intended to solve multi-objective optimal reactive power dispatch problems considering voltage stability margin and voltage deviation. The Shuffled Frog-Leaping Algorithm (SFLA) is a population-based cooperative search metaphor inspired by natural memetics. The algorithm contains elements of local search and global information exchange. The most important benefit of this algorithm is higher speed of convergence to a better solution. The intended method is applied to ORPD problem on IEEE 57 bus power systems and compared with two versions of differential evolutionary algorithm. The simulation results show the effectiveness of the intended method.
机译:这项研究提出了一种改组蛙跳算法,用于解决电力系统中的多目标无功功率分配问题。最佳无功功率分配(ORPD)公式化为非线性,多模式和混合变量问题。预期的技术基于最小的实际功率损耗,最小的电压偏差和最大的电压稳定裕度。发电机电压,电容器组和抽头变换变压器的抽头位置用作此问题的优化变量。拟态元启发式算法被称为随机蛙跳算法,旨在解决考虑电压稳定裕度和电压偏差的多目标最优无功分配问题。随机跳蛙算法(SFLA)是受自然模因启发的基于人群的合作搜索隐喻。该算法包含本地搜索和全局信息交换的元素。该算法最重要的好处是可以更快地收敛到更好的解决方案。该方法适用于IEEE 57总线电源系统上的ORPD问题,并与两种版本的差分进化算法进行了比较。仿真结果表明了该方法的有效性。

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