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    • 46. 发明授权
    • Image processing device
    • 图像处理装置
    • US07139019B2
    • 2006-11-21
    • US10343675
    • 2002-05-24
    • Tetsujiro KondoJunichi IshibashiTakashi SawaoTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • Tetsujiro KondoJunichi IshibashiTakashi SawaoTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • H04N5/14
    • G06T7/20
    • The present invention enables a movement vector of a moving object to the detected, by detecting a mixture ratio indicating the proportion of mixing with an image, or taking into consideration a region mixed with the image. A weighted frame difference computation unit 3423 outputs weighted difference. A movement compensation unit 3424 and a correlation value computing unit 3427 compute the correlation between a block of interest containing each pixel of interest of weighted difference image data, and a corresponding block of weighted difference image data of an adjacent frame. A maximum value judgment unit 3428 detects at least one of weight and a movement vector wherein correlation between weighted difference image data is greatest. The present invention can be applied to signals processing device s for processing images.
    • 本发明通过检测表示与图像混合的比例的混合比,或考虑到与图像混合的区域,能够使运动对象的运动矢量与检测到的运动矢量相关。 加权帧差计算单元3423输出加权差。 移动补偿单元3424和相关值计算单元3427计算包含加权差分图像数据的感兴趣的每个像素的感兴趣块与相邻帧的相应加权差分图像数据块之间的相关性。 最大值判断单元3428检测加权差分图像数据之间的相关性最大的权重和运动矢量中的至少一个。 本发明可以应用于处理图像的信号处理装置。
    • 48. 发明申请
    • Image processing device and method, learning device and method, recording medium, and program
    • 图像处理装置和方法,学习装置和方法,记录介质和程序
    • US20060146198A1
    • 2006-07-06
    • US10545074
    • 2004-02-13
    • Tetsujiro KondoTakashi SawaoJunichi IshibashiTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • Tetsujiro KondoTakashi SawaoJunichi IshibashiTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • G06K9/56H04N5/21G06K9/46
    • H04N7/0137H04N7/0125H04N7/0145
    • With the present invention, data continuity is used at the time of converting an input image into high-quality image data with higher quality than the input image data, to obtain processing results which are more accurate and have higher precision. A class tap extracting unit (902) and prediction tap extracting unit (906) extract a class tap and prediction tap based on data continuity of multiple perimeter pixels corresponding to a pixel of interest in the input image, detected by a data continuity detecting unit (901). An image synthesizing unit (909) selectively outputs a prediction value of a first pixel of interest and a prediction value of a second pixel of interest, based on the relation between a prediction value, predicted by a pixel value predicting unit (907), of the first pixel of interest, and a second prediction value of the second pixel of interest temporally or spatially adjacent to the first pixel of interest, and the pixel value of a corresponding pixel in the input image situated at a position encompassing at least the first pixel of interest and the second pixel of interest in the temporal direction or spatial direction, which is detected by an integration property determining unit (908).
    • 利用本发明,在将输入图像转换为具有比输入图像数据更高质量的高质量图像数据时,使用数据连续性,以获得更精确和更高精度的处理结果。 类别抽头提取单元(902)和预测抽头提取单元(906)基于由数据连续性检测单元检测到的输入图像中与感兴趣像素相对应的多个周边像素的数据连续性提取类别抽头和预测抽头( 901)。 图像合成部(909)根据由像素值预测部(907)预测的预测值与关注像素的预测值的关系,选择性地输出感兴趣的第一像素的预测值和感兴趣的第二像素的预测值 感兴趣的第一像素以及与感兴趣的第一像素在时间上或空间上相关的第二像素的第二预测值,以及位于至少包含第一像素的位置的输入图像中的对应像素的像素值 和由时间方向或空间方向感兴趣的第二像素,其由积分特性确定单元(908)检测。