Dual-wavelength image-plane digital holography for dynamic measurement

A dual-wavelength image-plane digital holography, combined with a windowed Fourier analysis, is presented for dynamic measurement of a vibrating object. In order to expand the range of the velocity measurement, the object is simultaneously illuminated by two lasers with different wavelengths. A sequ...

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Veröffentlicht in:Optics and lasers in engineering 2009-05, Vol.47 (5), p.552-557
Hauptverfasser: Fu, Yu, Pedrini, Giancarlo, Hennelly, Bryan M., Groves, Roger M., Osten, Wolfgang
Format: Artikel
Sprache:eng
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Zusammenfassung:A dual-wavelength image-plane digital holography, combined with a windowed Fourier analysis, is presented for dynamic measurement of a vibrating object. In order to expand the range of the velocity measurement, the object is simultaneously illuminated by two lasers with different wavelengths. A sequence of digital holograms of a vibrating object is captured by a CCD camera and two wrapped phase maps are retrieved from each digital hologram. At each instant, a new phase distribution with a synthetic wavelength is obtained by subtracting these two wrapped phase maps. A windowed Fourier analysis is then applied spatially and temporally to retrieve the high-precision displacement and velocity of the tested object. Experimental results show the requirement on the camera capture frequency is reduced by the proposed method.
ISSN:0143-8166
1873-0302
DOI:10.1016/j.optlaseng.2008.10.002