The ordinary differential equation (ODE) and partial differential equation (PDE) image-processing methods have been applied to reduce noise and enhance the contrast of electronic speckle pattern interferometry fringe patterns. We evaluate the performance of a few representative PDE denoising models quantitatively with two parameters called image fidelity and speckle index, and then we choose a good denoising model. Combining this denoising model with the ODE enhancement method, we make it possible to perform contrast enhancement and denoising simultaneously. Second, we introduce the delta-mollification method to smooth the unwrapped phase map. Finally, based on PDE image processing, delta mollification and some traditional techniques, an approach of phase extraction from a single fringe pattern is tested for computer-simulated and experimentally obtained fringe patterns. The method works well under a high noise level and limited visibility and can extract accurate phase values. (c) 2006 Optical Society of America.
机构:
College of Precise Instrument and Optical Electronic Engineering,Tianjin University
Key Laboratory of Opto-Electronics Information Technical Science,Ministry of EducationCollege of Precise Instrument and Optical Electronic Engineering,Tianjin University
刘文耀
夏琳
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College of Precise Instrument and Optical Electronic Engineering,Tianjin University
Key Laboratory of Opto-Electronics Information Technical Science,Ministry of EducationCollege of Precise Instrument and Optical Electronic Engineering,Tianjin University
夏琳
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王晋疆
朱越
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机构:
College of Precise Instrument and Optical Electronic Engineering,Tianjin University
Key Laboratory of Opto-Electronics Information Technical Science,Ministry of EducationCollege of Precise Instrument and Optical Electronic Engineering,Tianjin University