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Drone-Based Daylight Electroluminescence Imaging of PV Modules

机译:基于无人机的光伏模块的日光电致发光成像

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摘要

Electroluminescence (EL) imaging is a photovoltaic (PV) module characterization technique, which provides high accuracy in detecting defects and faults, such as cracks, broken cells interconnections, shunts, among many others; furthermore, the EL technique is used extensively due to a high level of detail and direct relationship to injected carrier density. However, this technique is commonly practiced only indoors-or outdoors from dusk to dawn-because the crystalline silicon luminescence signal is several orders of magnitude lower than sunlight. This limits the potential of such a powerful technique to be used in utility scale inspections, and therefore, the interest in the development of electrical biasing tools to make outdoor EL imaging truly fast and efficient. With the focus of quickly acquiring EL images in daylight, we present in this article a drone-based system capable of acquiring EL images at a frame rate of 120 frames per second. In a single second during high irradiance conditions, this system can capture enough EL and background image pairs to create an EL PV module image that has sufficient diagnostic information to identify faults associated with power loss. The final EL images shown in this work reached representative quality SNRAVG of 4.6, obtained with algorithms developed in previous works. These drone-based EL images were acquired with global horizontal solar irradiance close to one sun in the plane of the array.
机译:电致发光(EL)成像是一种光伏(PV)模块表征技术,可在检测缺陷和故障方面提供高精度,例如裂缝,破碎的细胞互连,分流在许多其他方面;此外,由于细节水平和与注入的载体密度直接关系,EL技术被广泛使用。然而,这种技术通常仅在室内实施 - 或者从黄昏到黎明,因为晶体硅发光信号比阳光低几个数量级。这限制了这种强大的技术在公用事业规模检查中使用的潜力,因此,对电气偏置工具开发的兴趣,使户外EL成像真正快速有效。随着在日光中快速获取EL图像的焦点,我们在本文中存在于基于无人机的系统,能够以每秒120帧的帧速率获取EL图像。在高辐照条件期间的单一的第二个中,该系统可以捕获足够的EL和背景图像对以创建具有足够诊断信息的EL PV模块图像,以识别与功率损耗相关的故障。本工作中所示的最终EL图像达到了4.6的代表性质量SNARAVG,获得了以前的作品中开发的算法。这些基于无人机的EL图像被全局水平太阳辐照度接近阵列平面中的一个太阳。

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