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A self-calibrating phase-shifting algorithm based on the natural demodulation of two-dimensional fringe patterns
Author(s) -
Kieran G. Larkin
Publication year - 2001
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.9.000236
Subject(s) - demodulation , optics , phase modulation , algorithm , offset (computer science) , phase retrieval , modulation (music) , fourier transform , phase (matter) , computer science , hilbert transform , continuous phase modulation , frame (networking) , spatial frequency , physics , phase noise , spectral density , telecommunications , acoustics , channel (broadcasting) , quantum mechanics , programming language
A new method of estimating the phase-shift between interferograms is introduced. The method is based on a recently introduced two-dimensional Fourier-Hilbert demodulation technique. Three or more interferogram frames in an arbitrary sequence are required. The first stage of the algorithm calculates frame differences to remove the fringe pattern offset; allowing increased fringe modulation. The second stage is spatial demodulation to estimate the analytic image for each frame difference. The third stage robustly estimates the inter-frame phase-shifts and then uses the generalised phase-shifting algorithm of Lai and Yatagai to extract the offset, the modulation and the phase exactly. Initial simulations of the method indicate that high accuracy phase estimates are obtainable even in the presence of closed or discontinuous fringe patterns.

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