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Review and Performance Evaluation of Photovoltaic Array Fault Detection and Diagnosis Techniques

机译:光伏阵列故障检测与诊断技术的回顾与性能评估

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The environmentally clean nature of solar photovoltaic (PV) technology causes PV power generation to be embraced by all countries across the globe. Consequently, installation and utilization of PV power systems have seen much growth in recent years. Although PV arrays of such systems are robust, they are not immune to faults. To guarantee reliable power supply, economic returns, and safety of both humans and equipment, highly accurate fault detection, diagnosis, and interruption devices are required. In this paper, an overview of four major PV array faults and their causes are presented. Specifically, ground fault, line-line fault, arc fault, and hot spot fault have been covered. Next, conventional and advanced fault detection and diagnosis (FDD) techniques for managing these faults are reviewed. Moreover, a single evaluation metric has been proposed and utilized to evaluate the performances of the advanced FDD techniques. Finally, based on the papers reviewed, PV array fault management future trends and possible recommendations have been outlined.
机译:太阳能光伏(PV)技术的环保性质导致光伏发电由全球各国接受。因此,近年来,光伏电机系统的安装和利用显示得多。虽然这种系统的PV阵列是稳健的,但它们并不对缺陷免疫。为了保证可靠的电源,经济回报和人类和设备的安全性,需要高精度的故障检测,诊断和中断器件。本文介绍了四个主要光伏阵列故障及其原因的概述。具体而言,覆盖了接地故障,线路故障,电弧故障和热点故障。接下来,综述用于管理这些故障的传统和高级故障检测和诊断(FDD)技术。此外,已经提出并利用了单一评估度量来评估先进的FDD技术的性能。最后,根据审查的论文,PV阵列故障管理未来趋势和可能的建议已经概述。

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