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Original Articles

Denoising in digital speckle pattern interferometry using fast discrete curvelet transform

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Pages 106-110 | Received 09 Jul 2012, Accepted 11 Sep 2012, Published online: 06 Dec 2013
 

Abstract

In digital speckle pattern interferometry, the denoising of speckle fringe patterns is of vital importance for quantitative extraction of phase distribution. A filtering method of fast discrete curvelet transform based on weighted average thresholding technique is proposed in this paper for noise removal in speckle fringe patterns. Both computer-simulated and experimental digital speckle pattern interferometry fringe patterns are adopted to evaluate the performance of the proposed filtering method. In addition, a widely used and representative filtering method, windowed Fourier filter, is introduced for making a comparison and validation in the image processing effect, and the parameter of peak signal noise ratio is also used for assessment of denoising effect. It is shown from the filtered results that the filtering method of fast discrete curvelet transform is effecitve to remove speckle noises and simultaneously preserve fringe structure information.

Acknowledgements

This work was supported by the Fundamental Research Funds for the Central Universities and the Funding for Outstanding Doctoral Dissertation in NUAA under Grant No. BCXJ11-01.

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