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    • 21. 发明授权
    • Super-resolution device and method
    • 超分辨率设备和方法
    • US08014632B2
    • 2011-09-06
    • US11828397
    • 2007-07-26
    • Nobuyuki MatsumotoTakashi IdaHidenori TakeshimaYasunori TaguchiKenzo Isogawa
    • Nobuyuki MatsumotoTakashi IdaHidenori TakeshimaYasunori TaguchiKenzo Isogawa
    • G06K9/32
    • H04N7/0125G06T3/4069
    • A super-resolution device and method for setting at least one of a plurality of pixels included in image data as target pixels, the image data including pixels arranged in a screen and pixel values representing brightness, an area including the target pixel and peripheral pixels as a target area, and an area for searching pixel value change patterns in the target pixel area; calculating a difference between a first change pattern and second change pattern; comparing a difference between the first and second change patterns; calculating a pixel value of a super-resolution image having a number of pixels larger than a number of pixels included in the image data on the basis of a decimal-accuracy-vector, an extrapolated vector, and pixel values obtained from the image data.
    • 一种超分辨率装置和方法,用于将包括在图像数据中的多个像素中的至少一个设置为目标像素,所述图像数据包括布置在屏幕中的像素和表示亮度的像素值,包括目标像素和外围像素的区域为 目标区域和用于搜索目标像素区域中的像素值改变图案的区域; 计算第一改变模式和第二改变模式之间的差; 比较第一和第二变化模式之间的差异; 基于从图像数据获得的十进制精度矢量,外推矢量和像素值,计算具有大于包括在图像数据中的像素数量的像素数的像素值的超分辨率图像的像素值。
    • 22. 发明申请
    • SUPER-RESOLUTION DEVICE AND METHOD
    • 超分辨率设备和方法
    • US20110268370A1
    • 2011-11-03
    • US13178290
    • 2011-07-07
    • Nobuyuki MATSUMOTOTakashi IdaHidenori TakeshimaYasunori TaguchiKenzo Isogawa
    • Nobuyuki MATSUMOTOTakashi IdaHidenori TakeshimaYasunori TaguchiKenzo Isogawa
    • G06K9/32
    • H04N7/0125G06T3/4069
    • A super-resolution device and method for setting at least one of a plurality of pixels included in image data as target pixels, the image data including pixels arranged in a screen and pixel values representing brightness, an area including the target pixel and peripheral pixels as a target area, and an area for searching pixel value change patterns in the target pixel area; calculating a difference between a first change pattern and second change pattern; comparing a difference between the first and second change patterns; calculating a pixel value of a super-resolution image having a number of pixels larger than a number of pixels included in the image data on the basis of a decimal-accuracy-vector, an extrapolated vector, and pixel values obtained from the image data.
    • 一种超分辨率装置和方法,用于将包括在图像数据中的多个像素中的至少一个设置为目标像素,所述图像数据包括布置在屏幕中的像素和表示亮度的像素值,包括目标像素和外围像素的区域为 目标区域和用于搜索目标像素区域中的像素值改变图案的区域; 计算第一改变模式和第二改变模式之间的差; 比较第一和第二变化模式之间的差异; 基于从图像数据获得的十进制精度矢量,外推矢量和像素值,计算具有大于包括在图像数据中的像素数量的像素数的像素值的超分辨率图像的像素值。
    • 23. 发明申请
    • SUPER-RESOLUTION DEVICE AND METHOD
    • 超分辨率设备和方法
    • US20080107356A1
    • 2008-05-08
    • US11828397
    • 2007-07-26
    • Nobuyuki MatsumotoTakashi IdaHidenori TakeshimaYasunori TaguchiKenzo Isogawa
    • Nobuyuki MatsumotoTakashi IdaHidenori TakeshimaYasunori TaguchiKenzo Isogawa
    • G06T5/50
    • H04N7/0125G06T3/4069
    • A super-resolution device and method for setting at least one of a plurality of pixels included in image data as target pixels, the image data including pixels arranged in a screen and pixel values representing brightness, an area including the target pixel and peripheral pixels as a target area, and an area for searching pixel value change patterns in the target pixel area; calculating a difference between a first change pattern and second change pattern; comparing a difference between the first and second change patterns; calculating a pixel value of a super-resolution image having a number of pixels larger than a number of pixels included in the image data on the basis of a decimal-accuracy-vector, an extrapolated vector, and pixel values obtained from the image data.
    • 一种超分辨率装置和方法,用于将包括在图像数据中的多个像素中的至少一个设置为目标像素,所述图像数据包括布置在屏幕中的像素和表示亮度的像素值,包括目标像素和外围像素的区域为 目标区域和用于搜索目标像素区域中的像素值改变图案的区域; 计算第一改变模式和第二改变模式之间的差; 比较第一和第二变化模式之间的差异; 基于从图像数据获得的十进制精度矢量,外推矢量和像素值,计算具有大于包括在图像数据中的像素数量的像素数的像素值的超分辨率图像的像素值。
    • 24. 发明申请
    • IMAGE PROCESSING APPARATUS AND IMAGE PROCESSING METHOD
    • 图像处理装置和图像处理方法
    • US20090074328A1
    • 2009-03-19
    • US12048925
    • 2008-03-14
    • Nobuyuki MatsumotoTakashi IdaToshimitsu KanekoHidenori TakeshimaYasunori Taguchi
    • Nobuyuki MatsumotoTakashi IdaToshimitsu KanekoHidenori TakeshimaYasunori Taguchi
    • G06T3/40
    • G06T3/4007
    • An image processing apparatus calculates estimated pixel values of respective pixels of a provisional high-resolution image by interpolation on basis of pixel values in a reference frame, segmentalizes interior of the reference frame into an edge region, a texture region or a flat region and other on basis of pixel values of respective pixels, sets the respective pixels in the reference frame as target pixels one by one in sequence, calculates corresponding positions on the provisional high-resolution image, of the respective target pixels in fractional pixel accuracy on basis of information on the segmented regions including the target values, modifies the estimated pixel values so that difference from the pixel values of the target pixels to provisionally estimated pixel values obtained from the estimated pixel values of the provisional high-resolution image for pixels around the corresponding positions of the target pixels, becomes smaller, and obtains modified pixel values.
    • 图像处理装置基于参考帧中的像素值通过插值来计算临时高分辨率图像的各个像素的估计像素值,将参考帧的内部分割为边缘区域,纹理区域或平坦区域等 基于各像素的像素值,依次将基准帧中的各个像素依次设置为目标像素,基于信息以分数像素精度计算各个目标像素的临时高分辨率图像上的相应位置 在包括目标值的分割区域上,修改估计像素值,使得与目标像素的像素值之间的差异与从临时高分辨率图像的估计像素值获得的临时高分辨率图像的相应位置周围的像素的差异 目标像素变小,得到修正像素值。
    • 25. 发明授权
    • Image processing apparatus and image processing method
    • 图像处理装置和图像处理方法
    • US08233745B2
    • 2012-07-31
    • US12048925
    • 2008-03-14
    • Nobuyuki MatsumotoTakashi IdaToshimitsu KanekoHidenori TakeshimaYasunori Taguchi
    • Nobuyuki MatsumotoTakashi IdaToshimitsu KanekoHidenori TakeshimaYasunori Taguchi
    • G06K9/00G06K9/40G06K9/32H04N7/01H04N1/46
    • G06T3/4007
    • An image processing apparatus calculates estimated pixel values of respective pixels of a provisional high-resolution image by interpolation on basis of pixel values in a reference frame. Interior of the reference frame is segmentalized into an edge region, a texture region or a flat region and others on a basis of pixel values of respective pixels. The respective pixels in the reference frame are set as target pixels one by one in sequence. Corresponding positions on the provisional high-resolution image are calculated, of the respective target pixels in decimal accuracy on a basis of information on the segmented regions including the target values. The estimated pixel values are modified so that differences from the pixel values of the target pixels to provisionally estimated pixel values obtained from the estimated pixel values of the provisional high-resolution image for pixels around the corresponding positions of the target pixels, becomes smaller. Modified pixel values and then obtained.
    • 图像处理装置基于参考帧中的像素值,通过插值来计算临时高分辨率图像的各像素的估计像素值。 基于各像素的像素值将参考帧的内部分割为边缘区域,纹理区域或平坦区域等。 将参考帧中的各像素依次设置为目标像素。 基于包括目标值的分割区域的信息,以十进制精度计算各个目标像素的临时高分辨率图像上的对应位置。 估计的像素值被修改,使得从目标像素的对应位置周围的像素的临时高分辨率图像的估计像素值获得的与目标像素的像素值到临时估计的像素值的差异变小。 修改像素值,然后获得。
    • 30. 发明申请
    • IMAGE PROCESSING SYSTEM AND IMAGE SCANNING APPARATUS
    • 图像处理系统和图像扫描装置
    • US20110228343A1
    • 2011-09-22
    • US12880705
    • 2010-09-13
    • Kenzo IsogawaYasunori TaguchiNao MishimaNobuyuki Matsumoto
    • Kenzo IsogawaYasunori TaguchiNao MishimaNobuyuki Matsumoto
    • H04N1/409H04N1/04
    • H04N1/4092
    • In one embodiment, an image data acquisition unit, a filter setting unit and a filtering processor are provided. The image data acquisition unit acquires pixel data of first image data of an erect image obtained by a line sensor comprising a plurality of light receiving elements. The erect image is formed by a plurality of gradient index lenses of a lens array. The filter setting unit sets sharpening filter coefficients of a filter to be applied to the pixel data of the first image data corresponding to the respective light receiving elements, according to remainder values obtained respectively by dividing positions of the light receiving elements on the line sensor by an interval of a lens arrangement of the lens array. The filtering processor generates second image data sharpened by applying the obtained sharpening filter coefficients to the respective pixel data of the first image data.
    • 在一个实施例中,提供了图像数据获取单元,滤波器设置单元和滤波处理器。 图像数据获取单元获取由包括多个光接收元件的线传感器获得的直立图像的第一图像数据的像素数据。 直立图像由透镜阵列的多个渐变折射率透镜形成。 滤波器设定单元根据通过将线传感器上的受光元件的位置分割为线间传感器的位置而得到的余数值,设定要应用于与各光接收元件对应的第一图像数据的像素数据的滤波器的锐化滤波器系数 透镜阵列的透镜布置的间隔。 滤波处理器通过将获得的锐化滤波器系数应用于第一图像数据的各个像素数据来产生锐化的第二图像数据。