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Differentiating series and parallel photovoltaic arc-faults

机译:区分串联和并联光伏电弧故障

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The 2011 National Electrical Code® requires PV DC series arc-fault protection but does not require parallel arc-fault protection. As a result, manufacturers are creating arc-fault circuit interrupters (AFCIs) which only safely de-energize the arcing circuit when a series arc-fault occurs. Since AFCI devices often use the broadband AC noise on the DC side of the PV system for detection and series and parallel arc-faults create similar frequency content, it is likely an AFCI device will open in the event of either arc-fault type. In the case of parallel arc-faults, opening the AFCI will not extinguish the arc and may make the arc worse, potentially creating a fire. Due to the fire risk from parallel arc-faults, Tigo Energy and Sandia National Laboratories studied series and parallel arc-faults and confirmed the noise signatures from the two arc-faults types are nearly identical. As a result, three alternative methods for differentiating parallel and series arc-faults are presented along with suggestions for arc-fault mitigation of each arc-fault type.
机译:2011年《国家电气法规》要求具有PV DC系列电弧故障保护,但不需要并联电弧故障保护。结果,制造商正在制造电弧故障电路断流器(AFCI),它们仅在发生串联电弧故障时才安全地使电弧放电电路断电。由于AFCI设备通常使用PV系统直流侧的宽带AC噪声进行检测,并且串联和并联电弧故障会产生相似的频率含量,因此,如果出现任何一种电弧故障类型,AFCI设备都可能会打开。在平行电弧故障的情况下,打开AFCI不会熄灭电弧,并且可能使电弧恶化,并有可能引起火灾。由于平行电弧故障会引发火灾,因此Tigo Energy和Sandia国家实验室研究了串联电弧故障和平行电弧故障,并确认两种电弧故障的噪声特征几乎相同。结果,提出了区分并联电弧故障和串联电弧故障的三种替代方法,并提出了减轻每种电弧故障类型的电弧故障的建议。

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