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Photovoltaic Module Current Mismatch Fault Diagnosis Based on I-V Data

机译:基于I-V数据的光伏模块电流不匹配故障诊断

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摘要

Frequent faults of photovoltaic (PV) modules will affect the power generation efficiency and service life of the system. In particular, PV module current mismatch faults will cause the output current of the module to decrease, and the I-V curve will have a step, which will seriously affect the output power and even cause a series of safety problems. This article focuses on the current mismatched fault, that is, partial shadow, hot spot, and cell cracks. Through field investigation, faulty PV modules in multiple PV power plants are collected, the I-V characteristics of a large number of faulty PV modules are tested, and the fault characteristics of different fault type modules are first extracted. A novel fault diagnosis method based on I-V data is then proposed. This method determines the step and inflection point of the I-V curve by detecting the concave and convexity of the I-V data. The fault characteristic value is further amplified by the Exp-exponential function. In order to further confirm the specific fault, according to the characteristics of the step, the combination of the slope of the step segment is used to decouple shadow, hot spot, and cell cracks faults. The experimental verifications from the actual PV power plant are demonstrated to show the effectiveness of the proposed fault diagnosis method for the above faults.
机译:光伏(PV)模块的频繁故障会影响系统的发电效率和使用寿命。特别是,PV模块电流不匹配故障将导致模块的输出电流减小,并且I-V曲线将具有一步,这将严重影响输出功率,甚至导致一系列安全问题。本文侧重于当前的不匹配故障,即部分阴影,热点和细胞裂缝。通过现场调查,收集了多个PV发电厂中有故障的PV模块,测试了大量故障PV模块的I-V特性,首先提取不同故障型模块的故障特性。然后提出了一种基于I-V数据的新型故障诊断方法。该方法通过检测I-V数据的凹形和凸起来确定I-V曲线的步骤和拐点。通过EXP指数函数进一步放大故障特征值。为了进一步确认特定的故障,根据步骤的特征,步进段的斜率的组合用于分离阴影,热点和细胞裂缝故障。实际PV发电厂的实验验证被证明是为了显示上述故障所提出的故障诊断方法的有效性。

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