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Assessment and Performance Comparison of Positive Feedback Islanding Detection Methods in DC Distribution Systems

机译:直流配电系统中正反馈孤岛检测方法的评估与性能比较

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摘要

Due to the high penetration level of dc-based distributed generators (DGs) and dc loads, dc distribution systems are gaining widespread acceptance in modern power grids. Therefore, dc distribution systems are expected to operate parallel to the existing ac ones. However, the techniques of islanding detection in dc grids have not been fully studied in the current literature. This paper presents a detailed analysis, performance comparison, and design guidelines of four different positive feedback islanding detection methods in dc distribution systems. In each method, the range of control parameters that guarantee system stability is analytically obtained. The effects of system parameters, such as the dc system resistance and inductance, DG filter capacitance, and local load resistance, on each islanding detection method, are thoroughly addressed. Furthermore, the interactions between DGs connected at different locations of the distribution feeder and equipped with positive feedback islanding detection methods are studied and characterized. Detailed time-domain nonlinear simulations and experimental results validate the analytical results.
机译:由于基于DC的分布式发电机(DG)和DC负载的渗透率很高,因此DC配电系统在现代电网中得到了广泛的接受。因此,直流配电系统有望与现有的交流配电系统并行运行。然而,在当前文献中,尚未充分研究直流电网中的孤岛检测技术。本文介绍了直流配电系统中四种不同的正反馈孤岛检测方法的详细分析,性能比较和设计指南。在每种方法中,可以解析地获得保证系统稳定性的控制参数范围。彻底解决了系统参数(例如直流系统电阻和电感,DG滤波器电容和局部负载电阻)对每种孤岛检测方法的影响。此外,研究和表征了分布在馈线不同位置并配备了正反馈孤岛检测方法的DG之间的相互作用。详细的时域非线性仿真和实验结果验证了分析结果。

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