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A fault detection technique based on line parameters in ring-configured DC microgrid

机译:一种基于线路参数的环形配置直流微电网故障检测技术

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摘要

The integration of distributed generation (DG) units into a DC microgrid presents a research challenge in terms of a proper protection scheme. The networkmust be protected due to the sudden change in the amplitude and direction of the fault current. In addition, due to the absence of zero-crossing of the DC fault current, protecting the network from these potential faults is a challenging task. The DC fault can be diagnosed using an appropriate detection technique after monitoring the movement of current. In this paper, a least-square estimation (LSE) technique has been adopted, which has been proven to be able to detect the faulty line strongly, so that the fault is detected by estimated parameters. This fault detection technique has been evaluated on six-lines, with faults analyzed on each line. The six-bus DC microgrid is designed in PSS?SINCAL, and the proposed method is simulated in MATLAB. Two sets of simulations are designed to validate the reliability of the proposed method: (1) pole-ground (P-G) and (2) pole-pole (P-P) fault estimation of inductance and capacitance (C) in a separate line. Simulation results show that the proposed methodology can able to accurately detect (i.e., 95 accuracy) the faulty line in the DC microgrid with respect to designated ‘trip’ value. Thus, the proposed fault detection methodology can be utilized for protection of modern DC microgrids. An experimental PV-batteryload- based fault detection technique has been developed in the laboratory and tested under P-P fault conditions in order to validate the effectiveness of the proposed scheme.
机译:将分布式发电 (DG) 机组集成到直流微电网中,在适当的保护方案方面提出了研究挑战。由于故障电流的幅值和方向的突然变化,必须对网络进行保护。此外,由于直流故障电流没有过零,因此保护网络免受这些潜在故障的影响是一项具有挑战性的任务。在监测电流运动后,可以使用适当的检测技术诊断直流故障。本文采用最小二乘估计(LSE)技术,该技术已被证明能够强力检测故障线路,从而通过估计参数检测故障。这种故障检测技术已在六条线路上进行了评估,每条线路都分析了故障。六母线直流微电网采用PSS设计?SINCAL,并在MATLAB中对所提方法进行了仿真。设计了两组仿真来验证所提方法的可靠性:(1)极地(P-G)和(2)电感和电容(C)的极极-极(P-P)故障估计。仿真结果表明,所提方法能够准确检测(即95%准确率)直流微电网中故障线路的指定“跳闸”值。因此,所提出的故障检测方法可用于现代直流微电网的保护。为了验证所提方案的有效性,在实验室中开发了一种基于光伏电池负载的实验性故障检测技术,并在P-P故障条件下进行了测试。

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