Affiliation:
1. School of Electronics and Information Technology, Sun Yat-sen University, Guangzhou, Guangdong, People’s Republic of China
Abstract
In recent years, the application of two-dimensional (2D) barcode is more and more extensive and has been used as landmarks for robots to detect and peruse the information. However, it is hard to obtain a sharp 2D barcode image because of the moving robot, and the common solution is to deblur the blurry image before decoding the barcode. Image deblurring is an ill-posed problem, where ringing artifacts are commonly presented in the deblurred image, which causes the increase of decoding time and the limited improvement of decoding accuracy. In this article, a novel approach is proposed using blur-invariant shape and geometric features to make a blur-readable (BR) 2D barcode, which can be directly decoded even when seriously blurred. The finder patterns of BR code consist of two concentric rings and five disjoint disks, whose centroids form two triangles. The outer edges of the concentric rings can be regarded as blur-invariant shapes, which enable BR code to be quickly located even in a blurred image. The inner angles of the triangle are of blur-invariant geometric features, which can be used to store the format information of BR code. When suffering from severe defocus blur, the BR code can not only reduce the decoding time by skipping the deblurring process but also improve the decoding accuracy. With the defocus blur described by circular disk point-spread function, simulation results verify the performance of blur-invariant shape and the performance of BR code under blurred image situation.
Funder
Science and Technology Planning Project of Guangdong Province
Subject
Artificial Intelligence,Computer Science Applications,Software
Cited by
2 articles.
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1. Classification Assistance Based Image Inpainting for BR code;2024 5th International Conference on Information Science, Parallel and Distributed Systems (ISPDS);2024-05-31
2. Fast Image Process and Detection of Distorted Blur-readable 2D Barcode;2022 7th International Conference on Signal and Image Processing (ICSIP);2022-07-20