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    • 14. 发明授权
    • Image processing apparatus and method, recording medium, and program
    • 图像处理装置和方法,记录介质和程序
    • US07362379B2
    • 2008-04-22
    • US11090738
    • 2005-03-25
    • Xavier MichelKazuhiko NishiboriKoji AoyamaMasuyoshi Kurokawa
    • Xavier MichelKazuhiko NishiboriKoji AoyamaMasuyoshi Kurokawa
    • H04N7/01H04N11/20
    • G06T7/223
    • Inter-field-interpolation spatial transition is calculated based on the sum of absolute values of differences between pixel values of an inter-field-interpolated pixel and adjacent pixels on the same field. Inter-field-interpolation temporal transition is calculated based on the sum of absolute values of differences between pixel values of the inter-field-interpolated pixel and pixels at corresponding positions on previous delayed field and present field. Intra-field-interpolation temporal transition is calculated based on the sum of absolute values of differences between pixel values of an intra-field-interpolated pixel and the pixels at the corresponding positions on the previous delayed field and the present field. The amounts of error in the interpolated pixels are calculated based on information of the inter-field-interpolation spatial transition, inter-field-interpolation temporal transition, and intra-field-interpolation temporal transition, and a pixel is generated by switching between inter-field interpolation and intra-field interpolation accordingly.
    • 基于场间插值像素的像素值和同一场的相邻像素之间的差的绝对值的和来计算场间插值空间转换。 基于场间插值像素的像素值与先前延迟场和当前场上对应位置处的像素之间的差异的绝对值的和来计算场间插值时间转换。 基于场内插值像素的像素值与先前延迟场和当前场上的相应位置处的像素之间的差异的绝对值的和来计算场内插值时间转换。 基于场间插值空间转移,场间插值时间转移和场内插值时间转移的信息计算内插像素中的误差量,并且通过在帧间插值空间转换, 场插值和场内插值。
    • 17. 发明申请
    • Image processing apparatus and method, recording medium, and program
    • 图像处理装置和方法,记录介质和程序
    • US20050212974A1
    • 2005-09-29
    • US11090738
    • 2005-03-25
    • Xavier MichelKazuhiko NishiboriKoji AoyamaMasuyoshi Kurokawa
    • Xavier MichelKazuhiko NishiboriKoji AoyamaMasuyoshi Kurokawa
    • H04N7/01G06T7/20H04N9/64
    • G06T7/223
    • Inter-field-interpolation spatial transition is calculated based on the sum of absolute values of differences between pixel values of an inter-field-interpolated pixel and adjacent pixels on the same field. Inter-field-interpolation temporal transition is calculated based on the sum of absolute values of differences between pixel values of the inter-field-interpolated pixel and pixels at corresponding positions on previous delayed field and present field. Intra-field-interpolation temporal transition is calculated based on the sum of absolute values of differences between pixel values of an intra-field-interpolated pixel and the pixels at the corresponding positions on the previous delayed field and the present field. The amounts of error in the interpolated pixels are calculated based on information of the inter-field-interpolation spatial transition, inter-field-interpolation temporal transition, and intra-field-interpolation temporal transition, and a pixel is generated by switching between inter-field interpolation and intra-field interpolation accordingly.
    • 基于场间插值像素的像素值和同一场的相邻像素之间的差的绝对值的和来计算场间插值空间转换。 基于场间插值像素的像素值与先前延迟场和当前场上对应位置处的像素之间的差异的绝对值的和来计算场间插值时间转换。 基于场内插值像素的像素值与先前延迟场和当前场上的相应位置处的像素之间的差异的绝对值的和来计算场内插值时间转换。 基于场间插值空间转移,场间插值时间转移和场内插值时间转移的信息计算内插像素中的误差量,并且通过在帧间插值空间转换, 场插值和场内插值。
    • 18. 发明授权
    • Image processing device and image processing method
    • 图像处理装置及图像处理方法
    • US07379120B2
    • 2008-05-27
    • US11130530
    • 2005-05-17
    • Makoto KondoKazuhiko Nishibori
    • Makoto KondoKazuhiko Nishibori
    • H04N7/01
    • H04N7/012H04N7/0112H04N7/0137
    • To provide an image processing device able to generate a progressive image signal in high quality based on an interlaced image signal and an image processing method for the same, wherein a continuity detection circuit detects continuities in the interlaced image signal and to the field image signal, a moving circuit moves one of the field image signals before and behind one field based on a motion vector between the field image signals before and behind one field to generate a first field image signal, and an image signal generation circuit decides a mixture ratio based on the continuity and mixes the first field image signal and a second field image signal based on a line in the field image signal at the mixture ratio to generate a third field image signal included in the progressive signal.
    • 为了提供能够基于隔行扫描图像信号及其图像处理方法生成高品质的逐行图像信号的图像处理装置,其中连续性检测电路检测隔行扫描图像信号和场图像信号的连续性, 移动电路基于一场之前和之后的场图像信号之间的运动矢量移动一场之前和之后的场图像信号之一,以产生第一场图像信号,并且图像信号产生电路基于 连续性并且以混合比基于场图像信号中的线混合第一场图像信号和第二场图像信号,以产生包括在逐行信号中的第三场图像信号。
    • 19. 发明申请
    • Image processing device and image processing method
    • 图像处理装置及图像处理方法
    • US20050270418A1
    • 2005-12-08
    • US11130530
    • 2005-05-17
    • Makoto KondoKazuhiko Nishibori
    • Makoto KondoKazuhiko Nishibori
    • H04N7/01H04N11/20
    • H04N7/012H04N7/0112H04N7/0137
    • To provide an image processing device able to generate a progressive image signal in high quality based on an interlaced image signal and an image processing method for the same, wherein a continuity detection circuit detects continuities in the interlaced image signal and to the field image signal, a moving circuit moves one of the field image signals before and behind one field based on a motion vector between the field image signals before and behind one field to generate a first field image signal, and an image signal generation circuit decides a mixture ratio based on the continuity and mixes the first field image signal and a second field image signal based on a line in the field image signal at the mixture ratio to generate a third field image signal included in the progressive signal.
    • 为了提供能够基于隔行扫描图像信号及其图像处理方法生成高品质的逐行图像信号的图像处理装置,其中连续性检测电路检测隔行扫描图像信号和场图像信号的连续性, 移动电路基于一场之前和之后的场图像信号之间的运动矢量移动一场之前和之后的场图像信号之一,以产生第一场图像信号,并且图像信号产生电路基于 连续性并且以混合比基于场图像信号中的线混合第一场图像信号和第二场图像信号,以产生包括在逐行信号中的第三场图像信号。
    • 20. 发明授权
    • Image processing apparatus, method, and program for detecting still-zone area
    • 用于检测静态区域的图像处理装置,方法和程序
    • US08411974B2
    • 2013-04-02
    • US12634866
    • 2009-12-10
    • Shintaro OkadaKazuhiko Nishibori
    • Shintaro OkadaKazuhiko Nishibori
    • G06K9/36
    • H04N19/85H04N19/132H04N19/17H04N19/503H04N19/55H04N19/587H04N19/80
    • An image processing apparatus detecting, from an input image, a still-zone area disposed at an edge of the input image and displaying a same image continuously, the apparatus including: a difference calculation mechanism calculating a difference between pixel values of pixels located at a same position of the input image in different frames with each other for each pixel of the input image; a pixel-motion-information generation mechanism generating pixel-motion information indicating whether there is a change in the pixel values of the pixels of the input image on the basis of the difference; and a first detection mechanism comparing the pixel-motion information of a plurality of the pixels arranged in a first direction in the input image, and detecting a boundary position in the first direction between the still-zone area and an effective area excluding the still-zone area in the input image.
    • 一种图像处理装置,从输入图像检测设置在所述输入图像的边缘的静止区域并连续显示相同的图像,所述装置包括:差分计算机构,其计算位于所述输入图像的像素的像素值之间的差异 对于输入图像的每个像素,输入图像在不同帧中的相同位置; 像素运动信息生成机构,根据该差分生成表示输入图像的像素的像素值是否有变化的像素运动信息; 以及第一检测机构,比较输入图像中沿第一方向布置的多个像素的像素运动信息,以及检测静止区域和除静止区域之外的有效区域之间的第一方向上的边界位置, 输入图像中的区域区域。