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Design of a DC Series Arc Fault Detector for Photovoltaic System Protection

机译:用于光伏系统保护的直流串联电弧故障检测仪的设计

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摘要

With the skyrocketing growth in global photovoltaic (PV) power capacity, fault detection of PV systems has gained prodigious importance in recent years. It has been known that in PVsystem the dc series arc fault is more difficult to be detected than the parallel arc fault. With the proposed technologies of characteristic extraction, filtering, and fault identification, a novel efficient detection algorithm protecting a PV system against the dc series arc fault is proposed. The detection algorithm is realized on an arc fault detector (AFD) based on a cost-effective TMS320F28335 digital signal processor. To verify the feasibility and effectiveness of the proposed AFD, a relevant experiment PV system is conducted to compare with two commercial AFDs by various testing states. A great deal of empirical evidence shows that the detection performance of the proposed AFD outperforms that of the commercially available AFDs. The research may be of some reference value for similar works in the future.
机译:随着全球光伏(PV)功率容量的飞速增长,近年来,光伏系统的故障检测变得异常重要。众所周知,在光伏系统中,直流并联电弧故障比并联电弧故障更难检测。利用提出的特征提取,滤波和故障识别技术,提出了一种保护光伏系统免受直流串联电弧故障影响的新型有效检测算法。该检测算法基于具有成本效益的TMS320F28335数字信号处理器在电弧故障检测器(AFD)上实现。为了验证所提出的AFD的可行性和有效性,进行了一个相关的实验PV系统,以通过各种测试状态与两个商用AFD进行比较。大量的经验证据表明,建议的AFD的检测性能优于市售AFD的检测性能。这项研究对以后的类似工作可能具有参考价值。

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