Hemispherical confocal imaging using turtleback reflector

We propose a new imaging method called hemispherical confocal imaging to clearly visualize a particular depth in a 3-D scene. The key optical component is a turtleback reflector which is a specially designed polyhedral mirror. By combining the turtleback reflector with a coaxial pair of a camera and...

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Bibliographic Details
Main Authors: Mukaigawa, Yasuhiro (Contributor), Tagawa, Seiichi (Author), Kim, Jaewon (Contributor), Raskar, Ramesh (Contributor), Matsushita, Yasuyuki (Author), Yagi, Yasushi (Author)
Other Authors: Massachusetts Institute of Technology. Media Laboratory (Contributor), Program in Media Arts and Sciences (Massachusetts Institute of Technology) (Contributor)
Format: Article
Language:English
Published: Springer, 2011-09-28T20:50:09Z.
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Summary:We propose a new imaging method called hemispherical confocal imaging to clearly visualize a particular depth in a 3-D scene. The key optical component is a turtleback reflector which is a specially designed polyhedral mirror. By combining the turtleback reflector with a coaxial pair of a camera and a projector, many virtual cameras and projectors are produced on a hemisphere with uniform density to synthesize a hemispherical aperture. In such an optical device, high frequency illumination can be focused at a particular depth in the scene to visualize only the depth with descattering. Then, the observed views are factorized into masking, attenuation, and texture terms to enhance visualization when obstacles are present. Experiments using a prototype system show that only the particular depth is effectively illuminated and hazes by scattering and attenuation can be recovered even when obstacles exist.
Microsoft Research
Japan Society for the Promotion of Science (Grants-in-Aid For Scientific Research 21680017)
Japan Society for the Promotion of Science (Grants-in-Aid For Scientific Research 21650038)