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公开(公告)号:US10055881B2
公开(公告)日:2018-08-21
申请号:US15096024
申请日:2016-04-11
CPC分类号: G06T15/506 , G06T5/002 , G06T5/50 , G06T7/40 , G06T15/04 , G06T2200/04 , G06T2200/08 , G06T2207/10004 , G06T2207/10016 , G06T2207/10028 , G06T2215/16
摘要: A method for virtual, three-dimensional modeling of a subject using a depth-imaging camera operatively coupled to a modeling computer. A brightness image and a coordinate depth image of the subject acquired from each of a plurality of inequivalent vantage points are received from the depth-imaging camera. An angle-dependent reflectance is determined based on the brightness and coordinate depth images acquired from each of the vantage points.
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公开(公告)号:US20160014392A1
公开(公告)日:2016-01-14
申请号:US14553912
申请日:2014-11-25
CPC分类号: G06T11/60 , G06K9/00201 , G06K9/00234 , G06K9/4619 , G06T7/11 , G06T7/162 , G06T2207/10024 , G06T2207/10028 , G06T2207/30201 , H04N7/18 , H04N13/239 , H04N13/271
摘要: A method for operating an image processing device coupled to a color camera and a depth camera is provided. The method includes receiving a color image of a 3-dimensional scene from a color camera, receiving a depth map of the 3-dimensional scene from a depth camera, generating an aligned 3-dimensional face mesh from a plurality of color images received from the color camera indicating movement of a subject's head within the 3-dimensional scene and form the depth map, determining a head region based the depth map, segmenting the head region into a plurality of facial sections based on both the color image, depth map, and the aligned 3-dimensional face mesh, and overlaying the plurality of facial sections on the color image.
摘要翻译: 提供一种用于操作耦合到彩色照相机和深度相机的图像处理装置的方法。 该方法包括从彩色摄像机接收三维场景的彩色图像,从深度摄像机接收三维场景的深度图,从从多个彩色摄像机接收的多个彩色图像中生成对准的三维面部网格 彩色摄像机,其指示被摄体的头部在3维场景内的运动并形成深度图,基于深度图确定头部区域,基于彩色图像,深度图和头部区域将头部区域分割成多个面部区段 对齐的三维面部网格,并且在彩色图像上覆盖多个面部部分。
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公开(公告)号:US20170018114A1
公开(公告)日:2017-01-19
申请号:US15096024
申请日:2016-04-11
CPC分类号: G06T15/506 , G06T5/002 , G06T5/50 , G06T7/40 , G06T15/04 , G06T2200/04 , G06T2200/08 , G06T2207/10004 , G06T2207/10016 , G06T2207/10028 , G06T2215/16
摘要: A method for virtual, three-dimensional modeling of a subject using a depth-imaging camera operatively coupled to a modeling computer. A brightness image and a coordinate depth image of the subject acquired from each of a plurality of inequivalent vantage points are received from the depth-imaging camera. An angle-dependent reflectance is determined based on the brightness and coordinate depth images acquired from each of the vantage points.
摘要翻译: 一种使用可操作地耦合到建模计算机的深度成像照相机对被摄体进行虚拟,三维建模的方法。 从深度成像照相机接收从多个不等效视点中的每一个获取的被摄体的亮度图像和坐标深度图像。 基于从每个有利位置获得的亮度和坐标深度图像来确定角度依赖的反射率。
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公开(公告)号:US09767586B2
公开(公告)日:2017-09-19
申请号:US14553912
申请日:2014-11-25
CPC分类号: G06T11/60 , G06K9/00201 , G06K9/00234 , G06K9/4619 , G06T7/11 , G06T7/162 , G06T2207/10024 , G06T2207/10028 , G06T2207/30201 , H04N7/18 , H04N13/239 , H04N13/271
摘要: A method for operating an image processing device coupled to a color camera and a depth camera is provided. The method includes receiving a color image of a 3-dimensional scene from a color camera, receiving a depth map of the 3-dimensional scene from a depth camera, generating an aligned 3-dimensional face mesh from a plurality of color images received from the color camera indicating movement of a subject's head within the 3-dimensional scene and form the depth map, determining a head region based the depth map, segmenting the head region into a plurality of facial sections based on both the color image, depth map, and the aligned 3-dimensional face mesh, and overlaying the plurality of facial sections on the color image.
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公开(公告)号:US10019837B2
公开(公告)日:2018-07-10
申请号:US15169569
申请日:2016-05-31
CPC分类号: G06T17/00 , G01B11/24 , G01B11/2522 , G06K9/2081 , G06K2009/2045 , G06T15/205 , H04N13/211
摘要: A method for generating a three-dimensional virtual representation includes performing a first scan of the physical object while the physical object has a first position. A displayed visualization of the physical object is generated based on the first scan. Aligning input is received that causes increased correspondence between the displayed visualization and a second position of the physical object. A second scan of the physical object is performed while the object is in the second position. Based on the first scan and the second scan, a three-dimensional virtual representation of the physical object is generated.
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