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首页> 外文期刊>International journal of electrical power and energy systems >Fault location determination in three-terminal transmission lines connected to industrial microgrids without requiring fault classification data and independent of line parameters
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Fault location determination in three-terminal transmission lines connected to industrial microgrids without requiring fault classification data and independent of line parameters

机译:在连接到工业微电网的三端传输线中的故障位置确定,无需故障分类数据并独立于线路参数

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摘要

The connection of large industrial microgrids to three-terminal transmission lines greatly complicates the protection scheme of the lines due to the uncertainty in generating renewable energy sources, the probability of unintentional islanding, the abrupt switching of sensitive and critical loads, the influence of supply and demand management programs, and bidirectional active and reactive power flow. This paper presents a fault location algorithm for three-terminal transmission lines connected to an industrial microgrid that does not need the detection of faulty section, fault classification, and transmission line parameters. The proposed method uses voltage and current phasors of transmission lines measured by phasor measurement units (PMUs). One of the salient features of the proposed algorithm is that it does not need to determine the faulty section before the fault location operation. Furthermore, since power transmission lines are always exposed to changing climatic conditions and aging, their electrical characteristics vary over time in the long run compared to their rated value. Hence, this leads to the malfunction of protection schemes. This is solved in this study as the proposed fault location algorithm is independent of line impedances. On the other hand, the dependence of conventional fault location algorithms on fault classification data reduces the reliability of fault location schemes, making these algorithms dependent on fault classification data. However, the present study overcomes this problem as the algorithm is independent of the data of the faulty phase(s) detection. The proposed scheme is fully implemented in the MATLAB software environment, and the performance of the algorithm is analyzed for various fault types under different conditions. The validity of the algorithm is shown by various tests and sensitivity analyses.
机译:大型工业微电网与三端传输线的连接大大复杂化了线条保护方案,因为产生可再生能源的不确定性,无意岛屿的概率,敏感的敏感性和临界负荷的突然切换,供应的影响需求管理程序,双向主动和无功功率流。本文介绍了连接到工业微电网的三端传输线的故障定位算法,不需要检测故障部分,故障分类和传输线参数。所提出的方法使用通过相位测量单元(PMU)测量的传输线的电压和电流相位。所提出的算法的突出特征之一是它不需要在故障定位操作之前确定故障部分。此外,由于电力传输线总是暴露于改变的气候条件和老化,因此与额定值相比,它们的电气特性随着时间的推移而变化。因此,这导致了保护方案的故障。在本研究中解决了这一点,因为所提出的故障定位算法与线路阻抗无关。另一方面,传统故障定位算法对故障分类数据的依赖性降低了故障定位方案的可靠性,使这些算法依赖于故障分类数据。然而,本研究克服了这个问题,因为算法与故障阶段检测的数据无关。所提出的方案在MATLAB软件环境中完全实现,在不同条件下分析了算法的性能。各种测试和敏感性分析显示了算法的有效性。

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