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Non-dominated sorting genetic algorithm-II for robust multi-objective optimal reactive power dispatch

机译:鲁棒多目标最优无功调度的非支配排序遗传算法-II

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The concept of robust optimal solution is incorporated into multi-objective optimal reactive power dispatch (MORPD) for the consideration of uncertain load perturbations during system operations. Robust MORPD searches for solutions that are immune to parameter drifts and load changes. It uses information of load-increase directions to promote the stability of optimal solutions in the presence of load perturbations. Non-dominated sorting genetic algorithm-II (NSGA-II) is adopted to search for the robust Pareto solutions on a standard IEEE 118-bus system. The simulation validated the effectiveness of NSGA-II for robust MORPD. NSGAII obtained Pareto solutions over the trade-off surface. The experimental results also indicated that the robust Pareto solutions are comparatively less sensitive to load perturbations in their neighbourhoods and can maintain their objective values against uncertain load perturbations. Robust MORPD can provide optimal solutions with a higher degree of stability in the face of perturbations and can be more practical in reactive power optimisation of the real-time operation systems.
机译:鲁棒最优解决方案的概念已纳入多目标最优无功功率分配(MORPD)中,以考虑系统运行期间不确定的负载扰动。稳健的MORPD搜索可避免参数漂移和负载变化的解决方案。它使用载荷增加方向的信息来提高存在载荷扰动时最优解的稳定性。采用非支配排序遗传算法II(NSGA-II)在标准IEEE 118总线系统上搜索鲁棒的Pareto解决方案。该仿真验证了NSGA-II对于稳健MORPD的有效性。 NSGAII在折衷方案上获得了Pareto解决方案。实验结果还表明,鲁棒的帕累托解对邻域的载荷扰动相对较不敏感,可以针对不确定的载荷扰动保持其目标值。面对扰动,鲁棒的MORPD可以提供具有更高稳定性的最佳解决方案,并且在实时操作系统的无功优化中可能更加实用。

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