论文标题
太阳能电池检查的关节超分辨率和纠正
Joint Super-Resolution and Rectification for Solar Cell Inspection
论文作者
论文摘要
太阳能模块的目视检查是光伏发电厂中重要的监测设施。由于对快速CMOS传感器的单一测量在空间分辨率上受到限制,并且通常不足以可靠地检测到小缺陷,因此我们将多帧超分辨率(MFSR)应用于一系列低分辨率测量。另外,晶状体失真的纠正和去除简化了后续分析。因此,我们建议将此预处理与标准MFSR算法融合。这是有利的,因为我们省略了一个单独的处理步骤,因此运动估计变得更加稳定,并且在整流模块图像上的高分辨率(HR)像素的间距变为均匀w。 r。 t。模块平面,无论透视扭曲如何。我们提出了一项全面的用户研究,表明MFSR对人类专家的缺陷识别是有益的,并且所提出的方法的性能要比最新的状态更好。此外,我们应用自动裂纹分割,并表明该方法的性能要比Bicubic UPPLING的表现要好3倍,而2倍进行自动检查的状态,而2倍进行自动检查。
Visual inspection of solar modules is an important monitoring facility in photovoltaic power plants. Since a single measurement of fast CMOS sensors is limited in spatial resolution and often not sufficient to reliably detect small defects, we apply multi-frame super-resolution (MFSR) to a sequence of low resolution measurements. In addition, the rectification and removal of lens distortion simplifies subsequent analysis. Therefore, we propose to fuse this pre-processing with standard MFSR algorithms. This is advantageous, because we omit a separate processing step, the motion estimation becomes more stable and the spacing of high-resolution (HR) pixels on the rectified module image becomes uniform w. r. t. the module plane, regardless of perspective distortion. We present a comprehensive user study showing that MFSR is beneficial for defect recognition by human experts and that the proposed method performs better than the state of the art. Furthermore, we apply automated crack segmentation and show that the proposed method performs 3x better than bicubic upsampling and 2x better than the state of the art for automated inspection.