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Research on adaptive niche differential evolution algorithm for reactive power optimization

机译:无功优化自适应利基差分演化算法研究

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Reactive power optimization which is the foundation for optimal control of voltage and reactive power is a very complex non-linear mixed integer programming problem. To deal with this optimization problem, an Adaptive Niche Differential Evolution algorithm (ANDE) is presented to avoid the premature phenomenon in DE. To maintain the population diversity, niche-sharing mechanism is adopted. To improve the rate of convergence, penalty function is used by niche-eliminating mechanism to deal with some low fitness individuals. To improve searching capability of algorithm, niching radius can also be adjusted adaptively on the basis of the relative distance between individuals which reflect the aggregation of population. Using the above method, the global searching ability of this algorithm could be improved. The proposed algorithm has been tested on IEEE-6, IEEE-30 and IEEE-118 bus systems and the calculation proves the effectiveness and practicability of the above algorithm.
机译:无功功率优化是电压和无功功率的最佳控制的基础是一个非常复杂的非线性混合整数编程问题。为了处理这种优化问题,提出了一种自适应的利基差分演进算法(ANDE)以避免DE的过早现象。为了维持人口多样性,采用了利基共享机制。为了提高收敛速度,利基消除机制使用惩罚功能来处理一些低健身的个体。为了提高算法的搜索能力,也可以基于反映群体聚集的个体之间的相对距离自适应地调整抗性半径。使用上述方法,可以提高该算法的全局搜索能力。在IEEE-6,IEEE-30和IEEE-118总线系统上测试了所提出的算法,并且计算证明了上述算法的有效性和实用性。

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