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The Detection of Series Arc Fault in Photovoltaic Systems Based on the Arc Current Entropy

机译:基于电弧电流熵的光伏系统串联电弧故障检测

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摘要

This paper presents a series arc-fault detection algorithm for photovoltaic (PV) systems, which relies on the quantum probability model theory. The algorithm determines the presence of the arc by calculating the modified Tsallis entropy of the PV panel current. Based on the calculated entropy, the algorithm is able to differentiate an arc state (when the current variations are chaotic) from a no-arc state (when the current variations are ordered). The proposed algorithm enables arc-fault detection on a plug-and-play principle, requiring no prior information about the PV system in which it operates. The operation of the algorithm was first simulated on the prerecorded data from the system with the PV panel simulator and the commercial PV inverter. A laboratory prototype of the detector was then built and tested in a real 1.6-kW grid-connected PV system with different PV inverter, without any additional parameter adjustments. Both the sensitivity and the robustness of the detector were confirmed. The tests have shown that both the sustained series arcs and the small sparking series arcs were successfully detected, and there was no false detection due to the MPP tracker operation, PV current step change, or inverter turn on transient.
机译:本文提出了一种基于量子概率模型理论的光伏系统串联电弧故障检测算法。该算法通过计算PV面板电流的修正Tsallis熵来确定电弧的存在。基于所计算的熵,该算法能够区分电弧状态(当电流变化是混沌时)和无电弧状态(当电流变化有序时)。所提出的算法实现了即插即用原理上的电弧故障检测,不需要有关其运行的PV系统的任何先验信息。首先使用PV面板模拟器和商用PV逆变器根据系统中预先记录的数据对算法的操作进行仿真。然后,在没有任何其他参数调整的情况下,在带有不同PV逆变器的真实1.6 kW并网PV系统中构建并测试了探测器的实验室原型。探测器的灵敏度和坚固性均得到确认。测试表明,成功检测了持续串联电弧和较小的火花串联电弧,并且由于MPP跟踪器操作,PV电流阶跃变化或逆变器瞬态导通而没有错误检测。

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