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US Patent 11941833 Systems and methods for estimating depth and visibility from a reference viewpoint for pixels in a set of images captured from different viewpoints

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Contents

Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119418330
Patent Inventor Names
Gabriel Molina0
Dan Lelescu0
Kartik Venkataraman0
Florian Ciurea0
Date of Patent
March 26, 2024
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Patent Application Number
171625420
Date Filed
January 29, 2021
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Patent Citations
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US Patent 9826212 Method of encoding a video data signal for use with a multi-view rendering device
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US Patent 10547772 Systems and methods for reducing motion blur in images or video in ultra low light with array cameras
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US Patent 10560684 System and methods for calibration of an array camera
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US Patent 10574905 System and methods for depth regularization and semiautomatic interactive matting using RGB-D images
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US Patent 10638099 Extended color processing on pelican array cameras
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US Patent 10674138 Autofocus system for a conventional camera that uses depth information from an array camera
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US Patent 10694114 Capturing and processing of images including occlusions focused on an image sensor by a lens stack array
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US Patent 10708492 Array camera configurations incorporating constituent array cameras and constituent cameras
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Patent Primary Examiner
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CongVan Tran
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CPC Code
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H04N 2013/0081
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G02B 27/0075
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G06T 15/20
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G06T 7/593
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G06T 7/85
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G06T 7/557
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H04N 2013/0088
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G06T 2207/10052
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Patent abstract

Systems in accordance with embodiments of the invention can perform parallax detection and correction in images captured using array cameras. Due to the different viewpoints of the cameras, parallax results in variations in the position of objects within the captured images of the scene. Methods in accordance with embodiments of the invention provide an accurate account of the pixel disparity due to parallax between the different cameras in the array, so that appropriate scene-dependent geometric shifts can be applied to the pixels of the captured images when performing super-resolution processing. In a number of embodiments, generating depth estimates considers the similarity of pixels in multiple spectral channels. In certain embodiments, generating depth estimates involves generating a confidence map indicating the reliability of depth estimates.

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