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首页> 外文期刊>Annals of Operations Research >Interior/exterior-point methods with inertia correction strategy for solving optimal reactive power flow problems with discrete variables
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Interior/exterior-point methods with inertia correction strategy for solving optimal reactive power flow problems with discrete variables

机译:具有惯性校正策略的内/外点方法,用于解决具有离散变量的最优无功潮流问题

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摘要

Interior/exterior-point methods have been widely used for solving Optimal Reactive Power Flow problems (ORPF). However, the utilization of such methods becomes difficult when transformer taps and/or capacitor/reactor banks are more rigorously represented in the problem formulation by means of discrete control variables. This work investigates the solution of the ORPF problem when transformer tap ratios are modeled as discrete variables. The solution method proposed handles discrete variables by means of sinusoidal penalty function, while the penalized problems are solved by an exterior-point method. An inertia correction strategy is proposed in order to assure that only local minima are obtained for the penalized problems. New search directions are also investigated that combine predictor and corrector directions. Numerical simulations are performed involving the IEEE 14, 30 and 57 bus systems. The results show the efficiency of the proposed inertia correction strategy and also reveals that the proposed exterior-point method outperforms traditional interior-point methods in terms of the number of iterations and computation times.
机译:内部/外部方法已广泛用于解决最佳无功潮流问题(ORPF)。但是,当通过离散控制变量在问题表述中更严格地表示变压器抽头和/或电容器/电抗器组时,使用此类方法变得困难。这项工作研究了将变压器抽头比率建模为离散变量时ORPF问题的解决方案。所提出的求解方法通过正弦惩罚函数处理离散变量,而罚分问题则通过外点法解决。提出了惯性校正策略,以确保对于受罚问题仅获得局部最小值。还研究了结合预测器和校正器方向的新搜索方向。进行涉及IEEE 14、30和57总线系统的数值模拟。结果表明,所提出的惯性校正策略是有效的,并且还表明,所提出的外点方法在迭代次数和计算时间方面均优于传统的内点方法。

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