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A String-Current Behavior and Current Sensing-Based Technique for Line–Line Fault Detection in Photovoltaic Systems

机译:光伏系统中线线故障检测的弦电流行为和基于电流检测技术

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摘要

The normal operation of a photovoltaic (PV) system is undermined by line–line (LL) faults. An LL fault, which establishes an unintentional current path between two points of different potentials, can cause malfunctions and even fire hazards to the PV systems. Although the overcurrent protection devices such as fuses are utilized to terminate the LL faults, the maximum power point tracking (MPPT) controller, partial shading, and blocking diodes are affecting the fault currents and they may be lower than the rated current of the fuse. Therefore, it is necessary to develop an effective LL fault detection technique for the PV systems. In this article, an LL fault detection technique based on the string-current behavior and current sensing is proposed. The characteristics of the LL faults and the string-current behavior under various fault conditions were analyzed to develop the algorithm. The proposed technique could determine the occurrence, type, location, and percentage of the LL faults. It was verified that the fault detection algorithm and current sensors in specific locations could effectively detect the LL faults despite the effects of MPPT, partial shading, and blocking diodes.
机译:光伏(PV)系统的正常运行由线线(LL)故障破坏。 LL故障,在两个不同潜力点之间建立无意的电流路径,可能导致对光伏系统的故障甚至火灾危害。尽管使用诸如保险丝的过电流保护装置来终止LL故障,但是最大功率点跟踪(MPPT)控制器,部分遮蔽和阻塞二极管正在影响故障电流,并且它们可能低于熔丝的额定电流。因此,有必要为光伏系统开发有效的LL故障检测技术。在本文中,提出了一种基于弦电流行为和电流检测的LL故障检测技术。分析了LL故障的特性和各种故障条件下的字符串电流行为以开发算法。所提出的技术可以确定LL故障的发生,类型,位置和百分比。验证了特定位置中的故障检测算法和当前传感器可以有效地检测LL故障,尽管MPPT,部分着色和阻塞二极管效果。

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