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公开(公告)号:US20170352136A1
公开(公告)日:2017-12-07
申请号:US15539744
申请日:2015-12-01
Applicant: Nokia Technologies Oy
Inventor: Mithun Uliyar , Krishna Govindarao , Gururaj Putraya , Basavaraja S V
CPC classification number: G06T5/003 , G01B11/245 , G06T7/292 , G06T2207/10004 , G06T2207/20201 , H04N5/211 , H04N5/247 , H04N5/353
Abstract: In an example embodiment a method, apparatus and computer program product are provided. The method includes determining presence of at least one moving object in a scene based on two or more burst images corresponding to the scene captured by a first camera. One or more portions of the scene associated with the at least one moving object are identified, and, information related to the one or more portions is provided to a second camera. An image of the scene captured by the second camera second camera is received, where a pixel level shutter disposed in front of an image sensor of the second camera is programmed to periodically open and close, throughout a duration of said image capture, for pixels of the image sensor corresponding to the one or more portions of the scene. A deblurred image corresponding to the scene is generated based on the image.
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公开(公告)号:US09836827B2
公开(公告)日:2017-12-05
申请号:US15051616
申请日:2016-02-23
Applicant: Nokia Technologies Oy
Inventor: Gururaj Putraya , Krishna Annasagar Govindarao , Mithun Uliyar , Basavaraja S V
CPC classification number: G06T5/003 , G06T5/006 , G06T5/20 , G06T5/50 , G06T2207/10024 , G06T2207/20024 , G06T2207/20028 , G06T2207/20201
Abstract: In an example embodiment, method, apparatus and computer program product are provided. The method includes facilitating receipt of a deconvolved image including a plurality of component images. A guide image is selected from the component images and a cross-filtering is performed of component images other than the guide image to generate filtered component images. The cross-filtering is performed of a component image by iteratively performing, selecting a pixel and a set of neighboring pixels around the pixel in the guide image, computing a set of weights corresponding to the set of neighboring pixels based at least on spatial differences between the pixel and the set of neighboring pixels, and cross-filtering a corresponding pixel of the pixel in the component image based on the set of weights to generate a filtered corresponding pixel in the component image. The filtered component images form a filtered deconvolved image with reduced chromatic aberration.
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公开(公告)号:US20170330310A1
公开(公告)日:2017-11-16
申请号:US15593143
申请日:2017-05-11
Applicant: Solentim Ltd
Inventor: Aaron Figg , Yonggang Jiang
CPC classification number: G06T5/003 , G06T2207/10056 , G06T2207/20201 , H04N5/23229
Abstract: There is provided an apparatus with a sample holder to hold a sample to be imaged. An image capture device has a field of view and captures an image of the field of view. Also provided is an actuator. A controller controls the actuator to cause relative movement between the sample holder and the image capture device at a given speed and at a given direction during an exposure time of the image capture device such that, in use, the sample moves across at least a portion of the field of view during the exposure time. A processor performs a deblur algorithm to deblur the image using the given speed and the given direction.
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公开(公告)号:US09800787B2
公开(公告)日:2017-10-24
申请号:US15149481
申请日:2016-05-09
Applicant: Fatih M. Ozluturk
Inventor: Fatih M. Ozluturk
CPC classification number: H04N5/23287 , G02B27/646 , G06T5/002 , G06T5/003 , G06T7/20 , G06T2207/10004 , G06T2207/10016 , G06T2207/20024 , G06T2207/20201 , G06T2207/20212 , H04N5/23216 , H04N5/23229 , H04N5/23248 , H04N5/23251 , H04N5/23254 , H04N5/23258 , H04N5/23267 , H04N5/23293 , H04N5/265
Abstract: The effect of camera shake in digital video is corrected using signal processing techniques. The digital video is a sequence of digital images. When the sequence of digital images are being captured, movement of the imaging device causes the images to shift on the image sensor of the imaging device and affects the quality of the eventual video. Movement of the imaging device is detected while the video is being captured, and a motion information representing the motion is recorded. A processor determines a correcting filter based on the motion information and user input. The processor modifies the sequence of images captured according to the correcting filter and obtains a final corrected video. Corrected video is displayed in a viewfinder.
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公开(公告)号:US09799105B2
公开(公告)日:2017-10-24
申请号:US15003849
申请日:2016-01-22
Applicant: FUJIFILM Corporation
Inventor: Masahiko Sugimoto , Kenkichi Hayashi , Yousuke Naruse , Kosuke Irie
CPC classification number: G06T5/003 , G06T5/20 , G06T5/50 , G06T7/20 , G06T2207/10016 , G06T2207/20192 , G06T2207/20201 , H04N5/225 , H04N5/23229
Abstract: Disclosed are an image processing device, an imaging device, an image processing method, and a program capable of acquiring a moving image with excellent image quality while maintaining continuity of a restoration process between frames even if there is a rapid change of a photographing environment in a moving image. An image processing device includes a restoration control processing unit 36 which subjects a moving image including a plurality of frames acquired by photographing using an optical system to a restoration process based on a point spread function of the optical system to acquire recovered image data. The restoration control processing unit 36 controls the restoration process for a frame to be processed among a plurality of frames based on imaging information of a reference frame including a frame after the frame to be processed in a time series.
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公开(公告)号:US09781381B2
公开(公告)日:2017-10-03
申请号:US15041654
申请日:2016-02-11
Inventor: Faisal M. al-Salem , Andrew E. Yagle
IPC: G06K9/32 , H04N7/01 , G06K9/62 , G06T5/00 , G06T5/50 , H04N7/015 , G06T3/40 , G06T7/70 , G06T7/246 , G06T7/277
CPC classification number: H04N7/0135 , G06K9/3233 , G06K9/6201 , G06K9/6234 , G06K9/6247 , G06K9/6249 , G06K9/6255 , G06T3/4053 , G06T5/002 , G06T5/003 , G06T5/009 , G06T5/50 , G06T7/246 , G06T7/277 , G06T7/70 , G06T2200/12 , G06T2207/20182 , G06T2207/20201 , G06T2207/20208 , G06T2207/20221 , G06T2207/30241 , H04N7/0117 , H04N7/0152
Abstract: Super-resolution of dynamic scenes using sampling rate diversity, processes and systems thereof are provided. The method implementing the processes includes: in a first stage, super-resolving secondary low-resolution (LR) images using a set of primary LR images to create LR dictionaries to represent polyphase components (PPCs) of high resolution (HR) patches of images; and, in a second stage, reverting to a single frame super-resolution (SR) applied to each frame which comprises an entire image, using the HR dictionaries extracted from the super-resolved sequence obtain in the first stage.
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公开(公告)号:US09779489B2
公开(公告)日:2017-10-03
申请号:US15161073
申请日:2016-05-20
Applicant: ADOBE SYSTEMS INCORPORATED
Inventor: Sunghyun Cho , Jue Wang , Jen-Chan Chien , Dong Feng
CPC classification number: G06T5/003 , G06T5/20 , G06T11/001 , G06T2207/10024 , G06T2207/20192 , G06T2207/20201 , G06T2207/20221
Abstract: Embodiments of the present invention provide systems, methods, and computer storage media directed towards automatic selection of regions for blur kernel estimation. In one embodiment, a process divides a blurred image into a regions. From these regions a first region and a second region can be selected based on a number of edge orientations within the selected regions. A first blur kernel can then be estimated based on the first region and a second blur kernel can be estimated for the second region. The first and second blur kernel can then be utilized to respectively deblur a first and second portion of the image to produce a deblurred image. Other embodiments may be described and/or claimed.
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公开(公告)号:US20170264824A1
公开(公告)日:2017-09-14
申请号:US15450622
申请日:2017-03-06
Applicant: CANON KABUSHIKI KAISHA
Inventor: Hiroaki Kuchiki
CPC classification number: H04N5/23267 , G06T7/11 , G06T7/70 , G06T7/97 , G06T2207/10004 , G06T2207/20201 , H04N5/23254 , H04N5/23258 , H04N5/23261
Abstract: An image stabilization apparatus includes: a first calculation unit that calculate an angular velocity; a second calculation unit that calculates a motion vector of an object; a third calculation unit that calculates a current position of an image stabilization unit; a fourth calculation unit that calculates an angular velocity of a motion of the object; and a control unit. The control unit controls, before the image capturing apparatus is released, the image stabilization unit so as to correct an image blur, moves, an output position of an image from the image capturing unit, and controls, after the image capturing unit has started exposure, so as to correct an image blur based on an angular velocity of the image capturing apparatus and an angular velocity of the object.
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公开(公告)号:US20170249724A1
公开(公告)日:2017-08-31
申请号:US15592969
申请日:2017-05-11
Applicant: STMicroelectronics, Inc.
Inventor: Gordon Petrides
CPC classification number: G06T5/003 , G06T5/20 , G06T7/20 , G06T2207/20201 , H04N7/014
Abstract: In one embodiment of the present invention, a method is provided for performing motion compensated interpolation using a previous frame and a current frame of a displayable output, the method comprising: detecting the speed of an object in the displayable output relative to the speed of a background in the displayable output; and blending results from a halo reducing interpolator and a median interpolator, wherein the results of each of the interpolators are weighted based on the speed of the object, to arrive at an interpolated frame using the previous frame and the current frame.
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公开(公告)号:US20170243331A1
公开(公告)日:2017-08-24
申请号:US15051673
申请日:2016-02-24
Applicant: NOVATEK Microelectronics Corp.
Inventor: Kuei-Chung Chang , Shang-I Liu , Pu-Hsien Chang
CPC classification number: G06T5/003 , G06T7/20 , G06T9/00 , G06T2207/20201 , G09G3/3648 , G09G2320/0252 , G09G2320/106 , G09G2340/0435
Abstract: A compensation method for a driving circuit of a display device includes generating a motion vector between a previous frame and a current frame subsequent to the previous frame; generating a first estimation frame according to the current frame and the motion vector; adjusting the first estimation frame according to the difference between the current frame and the first estimation frame, to generate a first overdrive frame; and inserting the first overdrive frame between the current frame and a next frame subsequent to the current frame.
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