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Switch Status Identification in Distribution Networks Using Harmonic Synchrophasor Measurements

机译:使用谐波同步测量分发网络切换状态识别

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Switch status identification (SSI) in distribution networks is a challenging task due to the limited measurement resources and therefore the inevitable need is to use pseudo-measurements that are often inaccurate. To address this issue, a new method is proposed in this article to integrate harmonic synchrophasors into the SSI problem in order to enhance SSI accuracy in distribution networks. In this method, switch status identification is done jointly based on both fundamental synchrophasor measurements and harmonic synchrophasor measurements. This is done by formulating and then solving a mixed-integer linear programming (MILP) problem. Furthermore, an analysis is provided to capture the number of and the location of harmonic sources and sensors that are needed to ensure full observability. The benefits of the proposed SSI scheme are compared against those of the traditional scheme that utilizes only the fundamental measurements. The efficiency of the proposed method is demonstrated through numerical simulations on IEEE 33-Bus and 123-Bus test systems. The results show the advantage of using harmonic information in SSI over the traditional SSI schemes using sole fundamental measurements.
机译:由于测量资源有限,因此,由于测量资源有限,因此不可避免地需要使用通常不准确的伪测量是一个具有挑战性的任务。为了解决这个问题,在本文中提出了一种新方法,将谐波同步素乐队集成到SSI问题中,以提高分销网络的SSI精度。在该方法中,基于基于基础同步素测量和谐波同步素测量来联合完成切换状态识别。这是通过制定然后求解混合整数线性编程(MILP)问题来完成的。此外,提供了一种分析以捕获确保完全可观察性所需的谐波源和传感器的数量和位置。将拟议的SSI方案的好处与传统方案的效益进行比较,只有仅利用基本测量。通过IEEE 33-BUS和123总线测试系统的数值模拟来证明所提出的方法的效率。结果表明,使用唯一的基本测量,在传统的SSI方案中使用SSI中使用谐波信息的优点。

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