Loading...
Search for: three-dimensional--3d--image
0.009 seconds

    Diffraction influence on the field of view and resolution of three-dimensional integral imaging

    , Article IEEE/OSA Journal of Display Technology ; Vol. 10, issue. 7 , 2014 , pp. 553-559 Ashari, Z ; Kavehvash, Z ; Mehrany K ; Sharif University of Technology
    Abstract
    The influence of the diffraction limit on the field of view of three-dimensional integral imaging (InI) systems is estimated by calculating the resolution of the InI system along arbitrarily tilted directions. The deteriorating effects of diffraction on the resolution are quantified in this manner. Two different three-dimensional scenes are recorded by real/virtual and focused imaging modes. The recorded scenes are reconstructed at different tilted planes and the obtained results for the resolution and field of view of the system are verified. It is shown that the diffraction effects severely affect the resolution of InI in the real/virtual mode when the tilted angle of viewing is increased.... 

    Improved resolution three-dimensional integral imaging using optimized irregular lens-array structure

    , Article Applied Optics ; Volume 51, Issue 25 , 2012 , Pages 6031-6037 ; 1559128X (ISSN) Kavehvash, Z ; Mehrany, K ; Bagheri, S ; Sharif University of Technology
    Abstract
    A rigorous approach is proposed to improve the resolution of integral imaging (InI) by finding the appropriate form of irregularity in the arrangement of the InI lenslets. The improvement of the resolution is achieved through redistribution of the sampling points in a uniform manner. The optimization process for finding the optimum pattern of the lens-array irregularity is carried out by minimizing a cost function, whose mathematical closed-form expression is provided. The minimization of the proposed cost function ensures the uniform distribution of sampling points and thus improves the resolution within the desired depth of field (DOF) and field of view (FOV). A set of standard resolution... 

    A fast optimization method for extension of depth-of-field in three-dimensional task-specific imaging systems

    , Article IEEE/OSA Journal of Display Technology ; Volume 6, Issue 10 , August , 2010 , Pages 412-421 ; 1551319X (ISSN) Bagheri, S ; Kavehvash, Z ; Mehrany, K ; Javidi, B ; Sharif University of Technology
    2010
    Abstract
    In this paper, we present a novel approach to generate images of extended depth-of-field (DOF) to support realization of three-dimensional (3D) imaging systems such as integral imaging. In our approach in extending the DOF, we take advantage of the spatial frequency spectrum of the object specific to the task in hand. The pupil function is thus engineered in such a fashion that the modulation transfer function (MTF) is maximized only in these selected spatial frequencies. We extract these high energy spatial frequencies using the principal component analysis (PCA) method. Moreover, given the need for many pupil function engineering steps in 3D imaging systems, we have constructed an...