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Optimal reactive power compensation in electrical distribution systems with distributed resources. Review

机译:具有分布式资源的配电系统中的最佳无功补偿。评论

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摘要

In this paper an exhaustive bibliographical revision of the mathematical methods used for the optimal selection and location of reactive power compensating elements is developed, the results obtained by different authors for different objective functions are analyzed and a scientific problem in the conflict that the electric variables show when analyzed individually is identified; thus demonstrating the need to analyze this problem in a multi-criteria way and taking into account topologies of distribution grids with distributed generation and energy storage. This research demonstrates that reactive power compensation in distribution grids with distributed resources is a problem that must be analyzed from multiple criteria that consider several objective functions to be optimized; thus achieving a global solution that contemplates an optimal location and dimensioning of reactive power compensating elements that contribute to the joint improvement of the voltage profiles, minimization of power losses, harmonic mitigation, increased line capacity, voltage stability and power factor improvement, all of them to a minimum investment cost. A theoretical heuristic is also proposed to solve the described problem, based on the multicriteria optimization method.
机译:本文对无功补偿元件的最佳选择和位置的数学方法进行了详尽的书目修订,分析了不同作者针对不同目标函数获得的结果,并解决了电变量显示冲突的科学问题。当确定单独分析时;因此,表明需要以多准则方式分析此问题,并考虑到具有分布式发电和能量存储的配电网拓扑。这项研究表明,具有分布式资源的配电网中的无功补偿是一个必须从考虑多个目标函数进行优化的多个标准进行分析的问题。因此,实现了一种全球解决方案,该方案考虑了无功补偿元件的最佳位置和尺寸,有助于共同改善电压曲线,最小化功率损耗,降低谐波,增加线路容量,提高电压稳定性并改善功率因数,所有这些以最低的投资成本。还提出了一种基于多准则优化方法的理论启发式方法来解决上述问题。

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