Research on Image Defect Detection of Silicon Panel Based on Prewitt and Canny Operator

Author:

Zhang Yifeng,Wang Zhiwen,Wang Yuhang,Zhang Canlong,Zhao Biao

Abstract

The silicon panel is the core component of photovoltaic power generation, whose surface quality is related to its service life and power generation efficiency. However, microcracks, fragments, incomplete welding, broken grids, and other defects often occur in industrial production. The edge detection algorithm is usually used to detect defects in silicon panels, but the common edge detection algorithm has an impact on defect detection because of the grid shadow of the panel. The current mainstream defect detection algorithm based on convolutional neural network requires a large number of positive and negative samples of image data sets for pretraining the model, which consumes a lot of time and GPU computing power, and the steps are cumbersome. To solve the problem, a defect detection method based on Prewitt and Canny operators is proposed in this article. In this method, Prewitt and Canny operators are combined to eliminate the effect of grids on the detection. The microcrack defects and their specific positions can be detected efficiently and intuitively, therefore improving the detection accuracy. The experimental results indicate that the purity and integrity of the defect profile of the image processed by the algorithm are greatly improved. The foreground edge is clear, and the defect recognition accuracy is higher, which effectively prevent the impact of grid shadow on weld testing.

Funder

Foundation for Innovative Research Groups of the National Natural Science Foundation of China

Guangxi Key Research and Development Program

Publisher

Frontiers Media SA

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics,Materials Science (miscellaneous),Biophysics

Reference24 articles.

1. Texture Defect Inspection for Silicon Solar Cell;Zhang;J Comput Appl,2010

2. Surface-Based Detection and 6-DoF Pose Estimation of 3-D Objects in Cluttered Scenes[J];Zhou;IEEE Trans Robotics,2016

3. Fourier Transform Infrared Difference and Time-Resolved Infrared Detection of the Electron and Proton Transfer Dynamics in Photosynthetic Water Oxidation;Noguchi;Biochim Biophys Acta (Bba)–Bioenerg,2015

4. Circularity Measuring in Linear Time;Nguyen,2010

5. Resonance Ultrasonic Vibration Diagnostics of Elastic Stress in Full-Size Silicon Wafers;Belyaev;Semicond Sci Technol,2006

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