Title :
Barcode-based calibration of a 1-D blur restoration pipeline
Author :
Gaubatz, Matthew D. ; Simske, Steven J.
Abstract :
In high-speed printed media inspection environments, image restoration pipelines play a critical role in establishing and continually evaluating performance. A key role of such systems is to understand, mitigate (and possibly remove) artifacts introduced by motion blur. An approach is proposed that uses barcodes to help calibrate a one-dimensional blur restoration pipeline. Techniques are demonstrated whereby the structure of barcode markings may be leveraged to estimate motion blur parameters, even under extreme blur conditions or when the barcode is unknown. In addition, a framework for comparing blur estimation procedures based on barcode readability is introduced. These techniques can be applied independently of one another, but together form a set of useful tools for blur restoration pipeline calibration. Within this framework, it is shown that a low-complexity blur estimation strategy demonstrates performance competitive with state-of-the-art approaches in term of speed and accuracy.
Keywords :
bar codes; calibration; image motion analysis; image restoration; parameter estimation; pipeline processing; printing; 1D blur restoration pipeline; barcode marking; barcode-based calibration; high-speed printed media inspection; image restoration pipeline; motion blur parameter estimation; one-dimensional blur restoration pipeline; Bars; Estimation; Image restoration; Image segmentation; Inspection; Noise; Pipelines; Quality assurance; barcodes; blur estimation; functional imaging; structured printing;
Conference_Titel :
Image Processing (ICIP), 2010 17th IEEE International Conference on
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4244-7992-4
Electronic_ISBN :
1522-4880
DOI :
10.1109/ICIP.2010.5651946