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Novel method for real time overhead power line segments high frequency impedance measurement based on signal injection

机译:基于信号注入的实时架空电力线段高频阻抗测量新方法

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The overhead power line plays a vital role in transmission and distribution networks. Continuous operation of the overhead power line is a necessity for a reliable power grid. The condition of the power line such as failure and aging can be monitored through its high frequency impedance characteristics. Continuous measurement of power line impedance at high frequencies is quite challenging. The high frequency impedance model of the overhead power line requires variety of network behaviors and parameters. Existing high frequency impedance measurement techniques cannot measure the impedance of specific segment of the energized overhead power line. In this paper, a novel real time impedance measurement technique to measure a desired segment of overhead power line impedance at high frequencies is presented. The new method is based on the high frequency signal injection into the middle section of the desired segment with one unit and blocking the injected signal with two other units at opposing ends of the segment. The proposed blocking topology is based on the non-intrusive active clamp filter (NIACF), which is capable of blocking a specific frequency in the power line using control techniques. The proposed blocking and impedance measurement methods are tested and validated through experimental studies.
机译:架空电力线在输配电网络中起着至关重要的作用。高架电力线的连续运行是可靠电网的必要条件。电力线的状态,例如故障和老化,可以通过其高频阻抗特性进行监控。在高频下连续测量电源线阻抗非常具有挑战性。架空电力线的高频阻抗模型需要各种网络行为和参数。现有的高频阻抗测量技术无法测量通电架空电力线特定段的阻抗。在本文中,提出了一种新颖的实时阻抗测量技术,可以在高频下测量架空电力线阻抗的所需部分。新方法是基于将高频信号以一个单位注入到所需段的中间部分,并在该段的相对端用另外两个单元阻止注入的信号。提出的阻塞拓扑基于非侵入式有源钳位滤波器(NIACF),它能够使用控制技术来阻塞电力线中的特定频率。通过实验研究对提出的阻塞和阻抗测量方法进行了测试和验证。

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