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    • 53. 发明授权
    • Image processing apparatus, image processing method, and providing medium therefor
    • 图像处理装置,图像处理方法及其介质
    • US06285712B1
    • 2001-09-04
    • US09221255
    • 1998-12-28
    • Tetsujiro KondoHideo NakayaKenji Tanaka
    • Tetsujiro KondoHideo NakayaKenji Tanaka
    • H04N712
    • H04N5/145
    • An estimation section calculates the motion vector of each pixel and its reliability from two continuous frames, and generates first-order motion distribution images corresponding to the k-th and (k+1)-th frames with any motion vector and reliability being assigned to each pixel. An update section combines the input first-order motion distribution image corresponding to the (k+1)-th frame and the fourth-order motion distribution image corresponding to the (k+1)-th frame generated from the first-order motion distribution image corresponding to the k-th image to generate the second-order motion distribution image corresponding to the (k+1)-th frame. A prediction section generates the third-order motion distribution image corresponding to the (k+2)-th frame according to the input second-order motion distribution image corresponding to the (k+1)-th frame. An interpolation section interpolates into a blank space of the third-order motion distribution image corresponding to the (k+2)-th frame with the use of unbiased estimate to generate the fourth-order motion distribution image corresponding to the (k+2)-th frame.
    • 估计部分从两个连续帧计算每个像素的运动矢量及其可靠性,并产生与第k和第(k + 1)帧对应的一阶运动分布图像,任何运动矢量和可靠性被分配给 每个像素。 更新部分组合对应于第(k + 1)帧的输入一阶运动分布图像和与从一阶运动分布生成的第(k + 1)帧对应的第四运动分布图像 对应于第k个图像的图像生成对应于第(k + 1)帧的二阶运动分布图像。 预测部根据与第(k + 1)帧对应的输入的二阶运动分布图像,生成与第(k + 2)帧对应的三阶运动分布图像。 使用无偏估计,内插部分内插到与第(k + 2)帧相对应的三阶运动分布图像的空白空间中,以生成与第(k + 2)帧相对应的第四阶运动分布图像, 第一帧。
    • 54. 发明授权
    • Stereoscopic viewing device and stereoscopic viewing method
    • 立体观察装置和立体观赏方法
    • US6078352A
    • 2000-06-20
    • US829728
    • 1997-03-31
    • Hideo NakayaTetsujiro Kondo
    • Hideo NakayaTetsujiro Kondo
    • H04N13/02H04N13/00H04N13/04H04N7/18
    • H04N13/0059H04N13/0051H04N13/0055H04N19/597H04N13/0048H04N13/0239H04N13/0242H04N13/0438H04N13/044H04N13/0497
    • This invention concerns a stereoscopic viewing device and a stereoscopic viewing method, and makes it possible to provide a satisfactory stereoscopic image without increasing of the quantity of recorded information and the quantity of transmitted information. According to the invention, the input television signal is classified respectively on the basis of the level distribution pattern for every pixel in the spatio-temporal region whose center is lying on each attentional pixel, and the input television signal is blocked for every pixel in the spatio-temporal region whose center is lying on each attentional pixel respectively so as to generate the pixel data for predictive calculation, and the predictive calculation of the predictive calculating pixel data is processed utilizing the predictive coefficient which is corresponding to the result of classification obtained from the classifying means out of the predictive coefficients of each set which have been previously prepared, so as to generate the video signal for left eye and the image signal for right eye respectively, and then the stereoscopic image is displayed on the basis of the video signal for left eye and the video signal for right eye; in this way a stereoscopic image can be projected on the displaying means such that a flicker is eliminated and a deterioration of the image quality is prevented.
    • 本发明涉及立体观看装置和立体观看方法,并且可以提供令人满意的立体图像,而不增加记录信息的数量和发送的信息量。 根据本发明,输入电视信号分别基于中心在每个注意像素上的时空区域中的每个像素的电平分布图案分类,并且输入电视信号被阻塞在 中心分别位于每个注意像素上的时空区域,以便产生用于预测计算的像素数据,并且使用与从其获得的分类结果相对应的预测系数来处理预测计算像素数据的预测计算 在预先准备好的各组的预测系数中分类手段,分别生成左眼视频信号和右眼图像信号,然后基于视频信号显示立体图像 左眼和右眼的视频信号; 以这种方式,可以在显示装置上投影立体图像,从而消除闪烁并防止图像质量的劣化。
    • 56. 发明授权
    • Signal converting apparatus and signal converting method
    • 信号转换装置及信号转换方法
    • US5852470A
    • 1998-12-22
    • US654205
    • 1996-05-28
    • Tetsujiro KondoYasuhiro FujimoriHideo NakayaKenji Takahashi
    • Tetsujiro KondoYasuhiro FujimoriHideo NakayaKenji Takahashi
    • H04N7/01H04N7/12
    • H04N7/0125H04N7/0145
    • A signal converting apparatus and a signal converting method which predictively produce highly accurate interpolated pixels in accordance with a classification which precisely reflects a variety of signal characteristics of inputted video signals to provide a high resolution video signal. An activity is evaluated and classified for each block of an inputted video signal (S.sub.1), and stepwise classifications are executed on each block of the inputted video signal (S.sub.1) in accordance with an activity code (c0) obtained as a result of the activity classification. In this way, the accuracy of subsequent classifications can be increased, reflecting the activity characteristic of each block of the inputted video signal (S.sub.1), thus achieving, as a whole, a highly accurate classification of the inputted video signal (S.sub.1). Appropriate prediction coefficients (d1) are read based on the activity code (c0) and a class code (c1) for each block of the inputted video signal (S.sub.1) to produce highly accurate interpolated pixels, thus providing a high resolution video signal (S.sub.2).
    • 一种信号转换装置和信号转换方法,其根据精确地反映输入视频信号的各种信号特性以提供高分辨率视频信号的分类来预测性地产生高精度内插像素。 对输入的视频信号(S1)的每个块进行活动评估和分类,并且根据作为活动的结果获得的活动代码(c0)对输入的视频信号(S1)的每个块执行逐步分类 分类。 以这种方式,可以增加后续分类的精度,反映输入的视频信号的每个块的活动特性(S1),从而总体上实现输入的视频信号的高精度分类(S1)。 基于输入视频信号(S1)的每个块的活动代码(c0)和分类代码(c1)来读取适当的预测系数(d1),以产生高精度的内插像素,从而提供高分辨率视频信号(S2 )。