Integral imaging (II) – is an autostereoscopic technique, which provides 3D-images that can be viewed in full parallax without special glasses. Obtaining volumetric images consists of pick up part and reconstruction. In this work we study principles of mapping process, using preliminarily generated simple object. On the assumption of mathematical principles of straight line we implemented mapping algorithm and for verification our experiment reconstructed the result.
KEYWORDS: 3D image processing, Imaging arrays, Integral imaging, 3D displays, 3D image reconstruction, Optics manufacturing, 3D acquisition, Optical components, Image processing, Distortion
Integral imaging is a kind of three-dimensional imaging technology, it can be used of micro-lens array recording and displaying 3d objects in the scene. Since there are many shortcomings of traditional optical methods, such as optical components manufacturing process is complex and expensive, the generated images are easily overlapped. We propose a method using computer based on depth information matching method to obtain the elemental images array, this method can quickly get higher-resolution images without distortion. In the final we have reconstructed the elemental images, and have got the original three-dimensional scene and verified the correctness of the proposed method.
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