2024-03-29T11:29:18Zhttps://repositori.uji.es/oai/requestoai:repositori.uji.es:10234/882312022-11-08T14:56:55Zcom_10234_43662com_10234_9col_10234_43643
Repositori UJI
author
Latorre Carmona, Pedro
author
Javidi, Bahram
author
Pla, Filiberto
author
Tajahuerce, Enrique
2014-03-21T14:42:10Z
2014-03-21T14:42:10Z
2013
1943-0655
http://hdl.handle.net/10234/88231
http://dx.doi.org/10.1109/JPHOT.2013.2293619
We present an analysis of the recognition performance of 3-D objects reconstructed
from digital holograms recorded under photon counting conditions. The digital
holograms are computed by applying four-step phase-shifting techniques to interferograms
recorded with weak coherent light. Recognition capability is analyzed as a function of the
total number of photons by using a maximum-likelihood approach adapted to one-class
classification problems. The likelihood is modeled assuming a Gaussian distribution, whose
centroid corresponds to the highest value in a mixture of two Gaussian values. The recognition
capability is studied both in terms of the axial distance and the lateral position of the
reconstructed 3-D object.
eng
© Copyright 2014 IEEE - All rights reserved.
Digital holography
Pattern recognition
Photon counting imaging
Threedimensional image processing
Photon Counting 3-D Object Recognition Using Digital Holography
info:eu-repo/semantics/article
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