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    • 1. 发明授权
    • Information processing device and method, and program
    • 信息处理装置及方法,程序
    • US08340350B2
    • 2012-12-25
    • US12398688
    • 2009-03-05
    • Tetsujiro KondoKenji TakahashiTomoyuki OtsukiKunio KawaguchiKoichi Fujishima
    • Tetsujiro KondoKenji TakahashiTomoyuki OtsukiKunio KawaguchiKoichi Fujishima
    • G06K9/00
    • G06T7/246G06T7/223G06T2207/10016
    • An information processing device for tracking the image of a tracking point within a moving image wherein contents, of multiple images which are continuous temporally, are discontinuous temporally, includes: a block-matching unit for performing block matching within the moving image, wherein a processed image and an image prior to the processed image are compared to determine the position of the tracking point within the processed image; an interpolation unit for performing interpolation processing wherein the position of the tracking point within an image not subjected to the block matching, which is an image before or after the processed image within the moving image, is determined as the position of the tracking point within the processed image; and a motion-vector calculating unit for obtaining the motion vector of the tracking point based on the position of the tracking point within the processed image determined by the block-matching unit or interpolation unit.
    • 一种信息处理装置,用于跟踪运动图像内的跟踪点的图像,其中在时间上连续的多个图像的内容在时间上是不连续的,包括:块匹配单元,用于在运动图像内执行块匹配,其中处理 比较处理图像之前的图像和图像,以确定处理图像内的跟踪点的位置; 用于执行内插处理的内插单元,其中将未被进行块匹配的图像中的跟踪点的位置确定为在运动图像内的处理图像之前或之后的图像,作为跟踪点在 处理图像; 以及运动矢量计算单元,用于基于由块匹配单元或内插单元确定的处理图像内的跟踪点的位置来获得跟踪点的运动矢量。
    • 5. 发明授权
    • Image signal interpolating apparatus
    • 图像信号内插装置
    • US06285714B1
    • 2001-09-04
    • US08562429
    • 1995-11-24
    • Kunio KawaguchiTetsujiro Kondo
    • Kunio KawaguchiTetsujiro Kondo
    • H04N718
    • H04N19/98H04N19/587H04N19/593
    • An image signal interpolation apparatus converts an image signal having a first resolution into a second image signal having a second resolution that is greater than the first resolution. A characteristic, e.g., a degree of flatness, of an area in the image signal surrounding a picture element to be interpolated is detected, and various picture elements surrounding the picture element to be interpolated are selected based on the amount of the characteristic, e.g., the degree of flateness. A class of the picture element to be interpolated is generated using the values of the selected picture elements, predicted data are generated from the determined class and a reference image signal having the greater resolution, and the picture element to be interpolated is produced from the predicted data.
    • 图像信号插值装置将具有第一分辨率的图像信号转换为具有大于第一分辨率的第二分辨率的第二图像信号。 检测周边要被内插的像素的图像信号中的区域的特性,例如平坦度,并且基于特征量来选择围绕要内插的像素的各种图像元素,例如, 平整度。 使用所选择的图像元素的值生成待内插的图像元素的类别,从所确定的类别生成预测数据,并且生成具有更高分辨率的参考图像信号,并且从预测的图像元素生成待内插的图像元素 数据。
    • 9. 发明授权
    • Image signal converting apparatus
    • 图像信号转换装置
    • US5666164A
    • 1997-09-09
    • US284560
    • 1994-10-24
    • Tetsujiro KondoMasashi UchidaKunio Kawaguchi
    • Tetsujiro KondoMasashi UchidaKunio Kawaguchi
    • H04N7/01H04N7/12H04N7/26H04N11/20
    • H04N7/0135H04N19/98H04N7/0125H04N7/125
    • An input digital image signal (SD signal) is converted into a high resolution digital video signal (HD signal). A considered pixel is categorized as a class corresponding to a one-dimensional, two-dimensional, or three-dimensional level distribution of a plurality of reference pixels of the SD signal. A predicted value of the considered pixel is generated by linear combination of values of a plurality of pixels of the SD signal adjacent to the considered pixel of the HD signal and predicted coefficients that have been learnt. In the learning process, predicted coefficients are determined by linear combination of the values of pixels of the SD signal and the predicted coefficients so that the sum of squares of the predicted value and the true value is minimized. Instead of the predicted coefficients, representative values may be determined for each class. In this case, the representative values are used as predicted values corresponding to the class of the input SD signal. Examples of the representative values are a base value of a block and a value normalized by dynamic range DR.
    • PCT No.PCT / JP93 / 01786 Sec。 371日期:1994年10月24日 102(e)日期1994年10月24日PCT 1993年12月9日PCT公布。 出版物WO94 / 14278 日期1994年6月23日输入数字图像信号(SD信号)被转换为高分辨率数字视频信号(HD信号)。 所考虑的像素被分类为与SD信号的多个参考像素的一维,二维或三维水平分布相对应的类。 所考虑的像素的预测值通过与所考虑的HD信号的像素相邻的SD信号的多个像素的值和已经学习的预测系数的值的线性组合来生成。 在学习过程中,通过SD信号的像素值和预测系数的线性组合来确定预测系数,使得预测值和真实值之间的平方和最小化。 代替预测的系数,可以为每个类别确定代表值。 在这种情况下,代表值被用作对应于输入SD信号的类别的预测值。 代表值的示例是块的基值和由动态范围DR归一化的值。
    • 10. 发明授权
    • Image processing apparatus and method, learning apparatus and method, and program
    • 图像处理装置和方法,学习装置和方法以及程序
    • US08331710B2
    • 2012-12-11
    • US12257834
    • 2008-10-24
    • Tomonori KawaseKunio KawaguchiTakeharu NishikataYasuaki TakahashiTetsujiro Kondo
    • Tomonori KawaseKunio KawaguchiTakeharu NishikataYasuaki TakahashiTetsujiro Kondo
    • G06K9/40
    • G06T3/4007H04N7/0127H04N7/0145
    • An image processing method includes determining whether an image is corrupted, extracting class taps used for classification of a pixel to be generated, performing classification of the pixel to be generated by using the class taps, extracting prediction taps used for prediction of the pixel to be generated, and generating an image by predictively calculating a pixel value of the pixel to be generated by using the prediction taps and prediction coefficients for the class of the pixel among a first prediction coefficient set if the subject pixel is determined as a pixel representing a corrupted image, and by predictively calculating a pixel value of the pixel to be generated by using the prediction taps and prediction coefficients for the class of the pixel to be generated among a second prediction coefficient set if the subject pixel is determined as a pixel representing an uncorrupted image.
    • 一种图像处理方法,包括:确定图像是否被破坏,提取用于分类要生成的像素的类别抽头,通过使用类别抽头执行要生成的像素的分类,提取用于预测像素的预测抽头 通过使用第一预测系数组中的像素类别的预测抽头和预测系数来预测性地计算要生成的像素的像素值,并且如果将对象像素确定为表示被破坏的像素的像素,则生成图像 并且通过使用预测抽头和第二预测系数组中要生成的像素的类别的预测系数来预测计算要生成的像素的像素值,如果对象像素被确定为表示未被破坏的像素的像素 图片。