Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/2855
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dc.contributor.authorManolache, S-
dc.contributor.authorAggoun, A-
dc.contributor.authorMcCormick, M-
dc.contributor.authorDavies, N-
dc.contributor.authorKung, SY-
dc.coverage.spatial8en
dc.date.accessioned2008-11-27T16:19:39Z-
dc.date.available2008-11-27T16:19:39Z-
dc.date.issued2001-
dc.identifier.citationJournal of Optical Society of America A. 18(8): 1814-1821, Aug 2001en
dc.identifier.other000.4430, 080.2740, 110.2990, 110.4850, 120.4820.-
dc.identifier.urihttp://bura.brunel.ac.uk/handle/2438/2855-
dc.description.abstractA mathematical model for a three-dimensional omnidirectional integral recording camera system that uses either circular- or hexagonal-based spherical surface microlens arrays is derived. The geometry of the image formation and recording process is fully described. Matlab is then used to establish the number of recorded micro-intensity distributions representing a single object point and their dependence on spatial position. The point-spread function for the entire optical process for both close and remote imaging is obtained, and the influence of depth on the point-spread dimensions for each type of microlens and imaging condition is discussed. Comparisons of the two arrangements are made, based on the illustrative numerical results presented.en
dc.format.extent338399 bytes-
dc.format.mimetypetext/plain-
dc.language.isoen-
dc.publisherOptical Scociety of Americaen
dc.relation.ispartof18;8-
dc.subject3D Imagingen
dc.subjectMathematical modelingen
dc.subjectMicrolens arraysen
dc.subjectPoint spread functionen
dc.titleAnalytical model of a three-dimensional integralen
dc.typeResearch Paperen
Appears in Collections:Electronic and Computer Engineering
Dept of Electronic and Electrical Engineering Research Papers

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