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Journal ArticleDOI

Digital speckle-pattern interferometry: fringe retrieval for large in-plane deformations with digital speckle photography

Angelica Andersson, +2 more
- 01 Sep 1999 - 
- Vol. 38, Iss: 25, pp 5408-5412
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TLDR
It is shown that the absolute phase change in each pixel may be unwrapped by use of the DSP result as an initial guess for an in-plane deformation, which results in a high fringe contrast even for deformations of several speckle diameters.
Abstract
The compensation of large in-plane motions in digital speckle-pattern interferometry (DSPI) with the use of digital speckle photography (DSP) is demonstrated. Ordinary recordings of DSPI are recombined and analyzed with DSP. The DSP result is used to compensate for the bulk speckle motion prior to calculation of the phase map. This results in a high fringe contrast even for deformations of several speckle diameters. In addition, for the case of an in-plane deformation, it is shown that the absolute phase change in each pixel may be unwrapped by use of the DSP result as an initial guess. The principles of this method and experiments showing the in-plane rotation of a plate and the encounter of two rounded plates are presented.

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Citations
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Journal ArticleDOI

Speckle interferometry: three-dimensional deformation field measurement with a single interferogram.

TL;DR: An electronic speckle interferometer, arranged for out-of-plane sensitivity and with an off-axis reference beam to produce spatial phase bias, is used for three-dimensional deformation field measurements.
Journal ArticleDOI

Pulsed TV Holography Combined with Digital Speckle Photography Restores Lost Interference Phase.

TL;DR: A method to calculate the bulk in-plane motion by DSP from the usual pulsed TV holography recordings and then to use this information to restore the interference phase is proposed, which may be attractive in the study of transient vibrations overlaid on rotating or translating motions.
Journal ArticleDOI

Shape measurement by digital speckle temporal sequence correlation with digital light projector

TL;DR: In this paper, the authors proposed a temporal sequence correlation (TSC) method for 3D shape measurement, in which a random digital speckle is projected on the reference plane, which is moved N times in equal depth-wise steps.
Journal ArticleDOI

Improving the quality of phase maps in phase object digital holographic interferometry by finding the right reconstruction distance

TL;DR: Improved quality of phase maps in pulsed digital holographic interferometry is demonstrated by finding the right reconstruction distance, which resulted in a significant improvement of the visual appearance of the phase maps.
References
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Journal ArticleDOI

Temporal phase-unwrapping algorithm for automated interferogram analysis.

TL;DR: An alternative approach based on one-dimensional unwrapping along the time axis is proposed, applicable to an important subclass of interferometry applications, in which a sequence of incremental phase maps can be obtained leading up to the final phase-difference map of interest.
Journal ArticleDOI

Electronic speckle photography: increased accuracy by nonintegral pixel shifting.

TL;DR: The improved algorithm was found to determine displacement components with an uncertainty of less than 1% of a pixel and with negligible systematic errors in ideal experimental conditions.
Journal ArticleDOI

Speckle interferometry with temporal phase evaluation for measuring large-object deformation

TL;DR: With this method one is capable of measuring deformation sof more than 100 mum, which is not possible using conventionalelectronic speckle pattern interferometry, and the results of the experiments are discussed.
Journal ArticleDOI

Systematic and random errors in electronic speckle photography.

TL;DR: Electronic speckle photography offers a simple and fast technique for measuring in-plane displacement fields in solid and fluid mechanics and random errors are mainly dependent on the effective ƒ-number of the imaging system and Speckle decorrelation introduced by object displacement.
Journal ArticleDOI

Three-dimensional deformation field measurements with simultaneous TV holography and electronic speckle photography.

TL;DR: The ordinary recordings of TV holography, arranged for out-of-plane sensitivity, are recombined and also analyzed by use of electronic speckle photography for simultaneous measurements of all three components of the deformation vector field.
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