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    • 2. 发明申请
    • REGION SELECTION FOR IMAGE COMPOSITING
    • 区域选择图像组成
    • US20080120560A1
    • 2008-05-22
    • US11561407
    • 2006-11-19
    • Michael CohenMatthew T. UyttendaeleR. Alex Colburn
    • Michael CohenMatthew T. UyttendaeleR. Alex Colburn
    • G06F3/048
    • G06T11/60
    • A technique for image compositing which allows a user to select the best image of an object, such as for example a person, from a set of images interactively and see how it will be assembled into a final photomontage. A user can select a source image from the set of images as an initial composite image. A region, representing a set of pixels to be replaced, is chosen by the user in the composite image. A corresponding same region is reflected in one or more source images, one of which will be selected by the user for painting into the composite image. The technique optimizes the selection of pixels around the user-chosen region or regions for cut points that will be least likely to show seams where the source images are merged in the composite image.
    • 一种用于图像合成的技术,其允许用户以交互方式从一组图像中选择对象(例如,人)的最佳图像,并且看到它将如何组装成最终的照片蒙版。 用户可以从图像集中选择源图像作为初始合成图像。 表示要替换的像素集合的区域由用户在合成图像中选择。 相应的相同区域被反映在一个或多个源图像中,其中一个源图像将由用户选择以绘制到合成图像中。 该技术优化了围绕用户选择的区域或区域的像素的选择,用于切割点,其将最不可能显示在合成图像中合并源图像的接缝。
    • 4. 发明授权
    • Panoramic video
    • 全景视频
    • US06788333B1
    • 2004-09-07
    • US09611646
    • 2000-07-07
    • Matthew T. UyttendaeleRichard S. Szeliski
    • Matthew T. UyttendaeleRichard S. Szeliski
    • H04N700
    • H04N5/23238G03B37/04G06T7/30G06T7/80G06T2200/32H04N17/002
    • A system and process for generating a panoramic video. Essentially, the panoramic video is created by first acquiring multiple videos of the scene being depicted. Preferably, these videos collectively depict a full 360 degree view of the surrounding scene and are captured using a multiple camera rig. The acquisition phase also includes a calibration procedure that provides information about the camera rig used to capture the videos that is used in the next phase for creating the panoramic video. This next phase, which is referred to as the authoring phase, involves mosaicing or stitching individual frames of the videos, which were captured at approximately the same moment in time, to form each frame of the panoramic video. A series of texture maps are then constructed for each frame of the panoramic video. Each texture map coincides with a portion of a prescribed environment model of the scene. The texture map representations of each frame of the panoramic video are encoded so as to facilitate their transfer and viewing. This can include compressing the panoramic video frames. Such a procedure is useful in applications where the panoramic video is to be transferred over a network, such as the Internet.
    • 用于生成全景视频的系统和过程。 本质上,通过首先获取所描绘的场景的多个视频来创建全景视频。 优选地,这些视频共同地描绘了周围场景的完整360度视图,并且使用多个相机钻机来捕获。 采集阶段还包括一个校准程序,该程序提供有关用于捕获下一阶段中用于创建全景视频的视频的摄像机的信息。 这个下一个阶段(被称为创作阶段)涉及拼接或缝合在大约相同的时刻被捕获的视频的各个帧,以形成全景视频的每个帧。 然后为全景视频的每个帧构建一系列纹理贴图。 每个纹理贴图与场景的规定环境模型的一部分重合。 对全景视频的每个帧的纹理映射表示进行编码,以便于它们的传送和观看。 这可以包括压缩全景视频帧。 这样的程序在通过诸如因特网的网络传输全景视频的应用中是有用的。
    • 7. 发明授权
    • Joint bilateral upsampling
    • 联合双边采样
    • US07889949B2
    • 2011-02-15
    • US11742325
    • 2007-04-30
    • Michael F. CohenMatthew T. UyttendaeleDaniel LischinskiJohannes Kopf
    • Michael F. CohenMatthew T. UyttendaeleDaniel LischinskiJohannes Kopf
    • G06K9/32
    • G06T3/4007
    • A “Joint Bilateral Upsampler” uses a high-resolution input signal to guide the interpolation of a low-resolution solution set (derived from a downsampled version of the input signal) from low-to high-resolution. The resulting high-resolution solution set is then saved or applied to the original input signal to produce a high-resolution output signal. The high-resolution solution set is close to what would be produced directly from the input signal without downsampling. However, since the high-resolution solution set is constructed in part from a downsampled version of the input signal, it is computed using significantly less computational overhead and memory than a solution set computed directly from a high-resolution signal. Consequently, the Joint Bilateral Upsampler is advantageous for use in near real-time operations, in applications where user wait times are important, and in systems where computational costs and available memory are limited.
    • “联合双边上行采样器”使用高分辨率输入信号来引导低分辨率解集(从输入信号的下采样版本导出)的内插从低到高分辨率。 然后将所得到的高分辨率解决方案集保存或应用于原始输入信号以产生高分辨率输出信号。 高分辨率解决方案集合接近于直接从输入信号产生的,而无需采样。 然而,由于高分辨率解集合部分地由输入信号的下采样版本构成,所以与直接从高分辨率信号计算的解集相比,使用显着更少的计算开销和存储器来计算。 因此,联合双边上行采样器在用户等待时间重要的应用中以及在计算成本和可用存储器受到限制的系统中有利于近实时操作。
    • 8. 发明授权
    • Automatic digital image grouping using criteria based on image metadata and spatial information
    • 使用基于图像元数据和空间信息的标准自动数字图像分组
    • US07580952B2
    • 2009-08-25
    • US11069662
    • 2005-02-28
    • Ronald K. LoganRichard S. SzeliskiMatthew T. Uyttendaele
    • Ronald K. LoganRichard S. SzeliskiMatthew T. Uyttendaele
    • G06F17/00
    • G06F17/30265Y10S707/99942Y10S707/99943Y10S707/99945Y10S707/99948Y10S707/99953
    • An automatic digital image grouping system and method for automatically generating groupings of related images based on criteria that includes image metadata and spatial information. The system and method takes an unordered and unorganized set of digital images and organizes and groups related images into image subsets. The criteria for defining an image subset varies and can be customized depending on the needs of the user. Metadata (such as EXIF tags) already embedded inside the images is used to extract likely image subsets. This metadata may include the temporal proximity of images, focal length, color overlap, and geographical location. The first component of the automatic image grouping system and method is a subset image stage that analyzes the metadata and generates potential image subsets containing related images. The second component is an overlap detection stage, where potential image subset is analyzed and verified by examining pixels of the related images.
    • 一种基于包括图像元数据和空间信息的标准自动生成相关图像分组的自动数字图像分组系统和方法。 该系统和方法采用无序和无组织的数字图像集,将相关图像组织并组合成图像子集。 定义图像子集的标准不同,可以根据用户的需要进行定制。 已经嵌入图像内的元数据(例如EXIF标签)用于提取可能的图像子集。 该元数据可以包括图像的时间接近,焦距,颜色重叠和地理位置。 自动图像分组系统和方法的第一个组件是分析元数据并生成包含相关图像的潜在图像子集的子集图像阶段。 第二部分是重叠检测阶段,其中通过检查相关图像的像素来分析和验证潜在图像子集。