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    • 2. 发明申请
    • Stereoscopic Video Display Apparatus and Display Method
    • 立体视频显示装置及显示方法
    • US20120033054A1
    • 2012-02-09
    • US13044416
    • 2011-03-09
    • Himio YamauchiMasatoshi SanoRitsuo YoshidaMichihiro FukushimaMasahiro Yamada
    • Himio YamauchiMasatoshi SanoRitsuo YoshidaMichihiro FukushimaMasahiro Yamada
    • H04N13/04
    • H04N13/351H04N13/305H04N13/317H04N13/324
    • In one embodiment, a stereoscopic video display apparatus includes: a plane display unit including a display screen in which first to third subpixels having respectively different color components are arranged in a matrix form; and an optical plate. The plane display unit includes a configuration obtained by arranging a first subpixels and the second subpixels alternately on a first subpixel row, arranging the third subpixels on a second subpixel row adjacent to the first subpixel row, arranging the first subpixels and the second subpixels alternately on a third subpixel row adjacent to the second subpixel row to have a sequence opposite to that on the first subpixel row, arranging the third subpixels on a fourth subpixel row adjacent to the third subpixel row, and arranging a set of the first to fourth subpixel rows in the column direction of subpixels on the display screen repeatedly.
    • 在一个实施例中,立体视频显示装置包括:平面显示单元,包括显示屏,其中分别具有不同颜色分量的第一至第三子像素以矩阵形式排列; 和光学板。 平面显示单元包括通过在第一子像素行上交替布置第一子像素和第二子像素而获得的配置,将第三子像素排列在与第一子像素行相邻的第二子像素行上,交替地布置第一子像素和第二子像素 与第二子像素行相邻的第三子像素行,具有与第一子像素行相反的序列,将第三子像素排列在与第三子像素行相邻的第四子像素行上,并且配置第一至第四子像素行的集合 在显示屏幕上的子像素的列方向上重复。
    • 3. 发明授权
    • Stereoscopic video display apparatus and display method
    • 立体视频显示装置及显示方法
    • US08537205B2
    • 2013-09-17
    • US13044416
    • 2011-03-09
    • Himio YamauchiMasatoshi SanoRitsuo YoshidaMichihiro FukushimaMasahiro Yamada
    • Himio YamauchiMasatoshi SanoRitsuo YoshidaMichihiro FukushimaMasahiro Yamada
    • H04N13/00H04N15/00
    • H04N13/351H04N13/305H04N13/317H04N13/324
    • In one embodiment, a stereoscopic video display apparatus includes: a plane display unit including a display screen in which first to third subpixels having respectively different color components are arranged in a matrix form; and an optical plate. The plane display unit includes a configuration obtained by arranging a first subpixels and the second subpixels alternately on a first subpixel row, arranging the third subpixels on a second subpixel row adjacent to the first subpixel row, arranging the first subpixels and the second subpixels alternately on a third subpixel row adjacent to the second subpixel row to have a sequence opposite to that on the first subpixel row, arranging the third subpixels on a fourth subpixel row adjacent to the third subpixel row, and arranging a set of the first to fourth subpixel rows in the column direction of subpixels on the display screen repeatedly.
    • 在一个实施例中,立体视频显示装置包括:平面显示单元,包括显示屏,其中分别具有不同颜色分量的第一至第三子像素以矩阵形式排列; 和光学板。 平面显示单元包括通过在第一子像素行上交替布置第一子像素和第二子像素而获得的配置,将第三子像素排列在与第一子像素行相邻的第二子像素行上,交替地布置第一子像素和第二子像素 与第二子像素行相邻的第三子像素行,具有与第一子像素行相反的序列,将第三子像素排列在与第三子像素行相邻的第四子像素行上,并且配置第一至第四子像素行的集合 在显示屏幕上的子像素的列方向上重复。
    • 5. 发明授权
    • Stereoscopic video display apparatus and display method
    • 立体视频显示装置及显示方法
    • US08605139B2
    • 2013-12-10
    • US13046327
    • 2011-03-11
    • Himio YamauchiMasatoshi SanoRitsuo YoshidaMichihiro FukushimaMasahiro Yamada
    • Himio YamauchiMasatoshi SanoRitsuo YoshidaMichihiro FukushimaMasahiro Yamada
    • H04N13/04
    • G02B27/2214G03B35/24H04N13/305H04N13/31H04N13/324H04N13/351
    • In one embodiment, a stereoscopic video display apparatus includes: a plane display unit including a display screen in which first to third subpixels having respectively different color components are arranged in a matrix form; and an optical plate disposed to be opposed to the plane display unit and having a plurality of optical aperture parts. The plane display unit includes a configuration obtained by arranging the first subpixels on a first subpixel row, arranging the third subpixels on a second subpixel row adjacent to the first subpixel row, arranging the second subpixels on a third subpixel row adjacent to the second subpixel row, arranging the third subpixels on a fourth subpixel row adjacent to the third subpixel row, and arranging a set of the first to fourth subpixel rows in the column direction of subpixels on the display screen repeatedly.
    • 在一个实施例中,立体视频显示装置包括:平面显示单元,包括显示屏,其中分别具有不同颜色分量的第一至第三子像素以矩阵形式排列; 以及设置成与平面显示单元相对并具有多个光学孔部分的光学板。 平面显示单元包括通过将第一子像素排列在第一子像素行上而将第三子像素排列在与第一子像素行相邻的第二子像素行上而获得的配置,将第二子像素排列在与第二子像素行相邻的第三子像素行上 将第三子像素排列在与第三子像素行相邻的第四子像素行上,并且在显示画面上重复地在子像素的列方向上排列第一至第四子像素行的集合。
    • 7. 发明授权
    • Interpolation frame generation apparatus, interpolation frame generation method, and broadcast receiving apparatus
    • 内插帧生成装置,内插帧生成方法以及广播接收装置
    • US08432973B2
    • 2013-04-30
    • US12817925
    • 2010-06-17
    • Masaya YamasakiKo SatoKeiko HirayamaYohei HamakawaHimio Yamauchi
    • Masaya YamasakiKo SatoKeiko HirayamaYohei HamakawaHimio Yamauchi
    • H04B1/66
    • H04N7/0132H04N7/014
    • According to one embodiment, an interpolation frame generation apparatus generates an interpolation frame image to be inserted between continuous frame images. The interpolation frame generation apparatus includes a motion vector detection module and a generation module. The motion vector detection module is configured to execute block matching processing in each of a plurality of blocks included in the continuous frame images and specify one motion vector on an interpolation frame. The generation module is configured to, for an interpolation block in which the motion vector detection module specifies one motion vector, generate an interpolation frame image based on the motion vector, and for an interpolation block in which the motion vector detection module does not specify one motion vector, generate an interpolation frame image based on the frame image containing no motion vector component.
    • 根据一个实施例,插值帧生成装置生成要插入连续帧图像之间的插值帧图像。 内插帧生成装置包括运动矢量检测模块和生成模块。 运动矢量检测模块被配置为在连续帧图像中包括的多个块中的每一个块中执行块匹配处理,并且在内插帧上指定一个运动矢量。 生成模块被配置为对于其中运动矢量检测模块指定一个运动矢量的内插块,基于运动矢量生成内插帧图像,并且对于其中运动矢量检测模块未指定一个的内插块 运动矢量,基于不包含运动矢量分量的帧图像生成插值帧图像。
    • 8. 发明授权
    • Progressive scanning conversion apparatus and progressive scanning conversion method
    • 逐行扫描转换装置和逐行扫描转换方法
    • US08345156B2
    • 2013-01-01
    • US11843842
    • 2007-08-23
    • Himio Yamauchi
    • Himio Yamauchi
    • H04N7/01
    • H04N7/012
    • According to one embodiment, a progressive scanning conversion apparatus comprising: a motion detecting unit that detects a motion during one frame for each pixel and that outputs an output value between a still image determination value and a moving image determination value; a still image interpolation pixel generating unit that generates still image interpolation pixels from at least one of a preceding field signal and a following field signal; a moving image interpolation pixel generating unit that generates moving image interpolation pixels from at least one of a current field signal, the preceding field signal and the following field signal; an interpolation pixel mixing generating unit that mixes the still image interpolation pixels to the moving image interpolation pixels at an adjustable mixing ratio; an inter-field zero vector correlation detecting unit that detects correlation of corresponding small regions in a current field and a preceding field or in the current field and a following field, the corresponding small regions occupying the same area in an entire screen; and a motion detection correcting unit that corrects the output value to be closer to the moving image determination value when the correlation detected by the inter-field zero vector correlation detecting unit is lower; wherein, when the corrected output value is closer to the still image determination value, the interpolation pixel mixing generating unit increases the adjustable mixing ratio; and wherein, when the corrected output value is closer to the moving image determination value, the interpolation pixel mixing generating unit decreases the adjustable mixing ratio.
    • 根据一个实施例,一种逐行扫描转换装置,包括:运动检测单元,其针对每个像素检测一帧期间的运动,并且输出静止图像确定值和运动图像确定值之间的输出值; 静止图像插值像素生成单元,其从前一场信号和后一场信号中的至少一个产生静止图像插值像素; 运动图像插值像素生成单元,其从当前场信号,前一场信号和随后的场信号中的至少一个生成运动图像插值像素; 插值像素混合生成单元,以可调节的混合比率将静止图像插值像素与运动图像内插像素混合; 场内零矢量相关检测单元,其检测当前场和前一场或当前场中的相应小区域的相关性,以及跟随场,在整个屏幕中占据相同区域的相应小区域; 以及运动检测校正单元,当由场间零矢量相关检测单元检测到的相关性较低时,校正输出值更接近运动图像确定值; 其中,当所述校正输出值更接近所述静止图像确定值时,所述内插像素混合生成单元增加所述可调混合比; 并且其中,当所述校正输出值更接近所述运动图像确定值时,所述内插像素混合生成单元减小所述可调混合比。
    • 9. 发明授权
    • Motion prediction apparatus and motion prediction method
    • 运动预测装置和运动预测方法
    • US08243801B2
    • 2012-08-14
    • US12113853
    • 2008-05-01
    • Himio Yamauchi
    • Himio Yamauchi
    • H03K7/08
    • G06T7/223
    • According to one embodiment, a motion prediction apparatus includes: a similarity detector that detects block similarities indicating degree of similarities between a pixel block in a current frame and pixel blocks in a next frame; a smoothness detector that detects smoothness level of the pixel block in the current frame, the smoothness level indicating smallness of an image variance of the pixel block; a weighting unit that applies weights to each of the block similarities based on the smoothness level; and a motion vector determination unit that determines a motion vector of the pixel block in the current frame based on the weighted block similarities.
    • 根据一个实施例,运动预测装置包括:相似度检测器,其检测指示当前帧中的像素块与下一帧中的像素块之间的相似度的块相似度; 平滑度检测器,其检测当前帧中的像素块的平滑度,所述平滑度指示像素块的图像方差的较小; 加权单元,其基于平滑度级别对每个块相似度应用权重; 以及运动矢量确定单元,其基于加权块相似度来确定当前帧中的像素块的运动矢量。