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Comparative Analysis of Photovoltaic Faults and Performance Evaluation of its Detection Techniques

机译:光伏断层的比较分析及其检测技术的性能评价

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摘要

Faults detection and analysis in PV system are considered critical for ensuring safety and increasing output power of PV arrays. PV faults do not only reduce output power and efficiency but also lessen the working life time of a system. Most common and chronic PV faults are line to line, line to ground, shadowing fault, and arc fault while less common and acute faults are hotspot, degradation, bypass diode, and connection faults. Event of PV fault detection failures, such as most recent in Mount Holly, USA in 2011 evinced the improvement in current fault detection and mitigation techniques to shrink such failures. There are various limitations in the existing fault detection techniques, as identified in this paper, which may cause misdetection of the faults. This paper is focused on mathematical formulation of various PV faults and lead to the latter's critical analysis in terms of efficiency, accuracy, complexity, and reliability. The presented work also helps to identify nature and causes of occurrence of a PV fault. This research work serves as a special set of references and recommendations for researchers and PV manufacturing industry to improve fault detection prospects in solar PV systems.
机译:PV系统中的故障检测和分析被认为是确保PV阵列的安全性和增加输出功率的关键。光伏故障不仅降低了输出功率和效率,还减少了系统的工作寿命。最常见和慢性光伏故障是线路,线路到地,阴影故障和电弧故障,同时较少的常见和急性故障是热点,劣化,旁路二极管和连接故障。光伏故障检测故障的事件,如2011年美国的最近在霍莉山上的最新事件表现出电流故障检测和缓解技术的改进,以缩小此类故障。现有故障检测技术存在各种局限性,如本文所识别的,这可能导致故障误入歧途。本文专注于各种光伏故障的数学制定,并在效率,准确性,复杂性和可靠性方面导致后者的关键分析。所呈现的工作还有助于识别PV故障发生的性质和原因。该研究工作是研究人员和光伏制造业的特殊参考和建议,以改善太阳能光伏系统中的故障检测前景。

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