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Development of Novel Solar Cell Micro Crack Detection Technique

机译:新型太阳能电池微裂纹检测技术的发展

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This paper presents the development of a solar cell inspection manufacturing execution system (MES). The main objective of the MES is to detect micro cracks in the manufacturing process of solar cells. Hence, to accept or reject a solar cell during the assembling unit. The proposed MES consists of three stages, at first stage, the inspection system will be placed on the manufacturing process of the solar cell. After the solar cell has been manufactured, it will pass under an in-line electroluminescent (EL) system. At this stage, an OR operation between a healthyo-crack and the inspected solar cell image will be obtained. This OR operation will generate a better calibration for the cracks in the photovoltaic solar cell image. The final calibrated image presents a high quality, and low noise structure, thus easier to identify the micro cracks size, location, and orientation. The last stage evaluates the calibrated image using the plot profile which is well known as the distance in pixels versus the gray level of the image. The plot profile will indicate whether to accept or reject the solar cell, 10% confidence interval for the gray level was used to identify the upper and lower detection limits.
机译:本文介绍了太阳能电池检查制造执行系统(MES)的开发。 MES的主要目的是检测太阳能电池制造过程中的微裂纹。因此,在组装单元期间接受或拒绝太阳能电池。拟议的MES包括三个阶段,第一阶段,检查系统将放置在太阳能电池的制造过程中。太阳能电池制造完成后,它将通过在线电致发光(EL)系统。在这一阶段,将获得健康/无裂纹与检查的太阳能电池图像之间的或运算。该“或”操作将为光伏太阳能电池图像中的裂缝生成更好的校准。最终的校准图像呈现出高质量,低噪声的结构,因此更易于识别微裂纹的尺寸,位置和方向。最后一个阶段使用绘图轮廓评估校准后的图像,这被称为像素距离与图像灰度之间的距离。曲线图将指示是否接受或拒绝太阳能电池,灰度等级的10%置信区间用于识别检测上限和下限。

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