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Optimal geographical placement of phasor measurement units based on clustering techniques

机译:基于聚类技术的相量测量单元的最优地理位置

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In this paper, we propose an optimal deployment of phasor measurement units (PMUs), devices that allow the measurements of voltage and current parameters in electrical power systems (EPS). We assume a geo-referenced scenery and candidate places for the location of PMU's on each system node. We consider an optimization model to minimize the number of PMU's in the electrical system under a percentage of system observability. We use pseudo-optimal clustering techniques that allow us to contrast with the optimization model where the lowest number of PMUs are activated with the best system observability; therefore, through this research it is proposed an homogeneous group of EPS nodes, considering the minimum and maximum quantity of nodes that belong to the cluster-centroid; furthermore, we consider take the feasible and candidates system nodes, and the maximum link distance is proposed like a restriction, for the PMU placement on each system node, and it is determines which the observability percentage.
机译:在本文中,我们提出了相量测量单元(PMU)的最佳配置,相移测量单元是允许对电力系统(EPS)中的电压和电流参数进行测量的设备。对于每个系统节点上PMU的位置,我们假定有地理参考的风景和候选位置。我们考虑一种优化模型,以在一定百分比的系统可观察性范围内最小化电气系统中PMU的数量。我们使用伪最佳聚类技术,使我们与优化模型形成对比,在优化模型中,激活最少的PMU并具有最佳的系统可观察性。因此,通过这项研究,考虑到属于聚类质心的节点的最小和最大数量,提出了一个均质的EPS节点组。此外,我们考虑采用可行的和候选的系统节点,并针对每个系统节点上的PMU放置提出了最大链路距离(如限制条件),并确定了可观察性百分比。

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