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    • 1. 发明授权
    • Techniques to suppress noises in an image to precisely extract shapes and edges
    • 抑制图像噪声以精确提取形状和边缘的技术
    • US09092870B2
    • 2015-07-28
    • US13061270
    • 2009-08-28
    • Nao MishimaKenzo IsogawaRyusuke HiraiGoh Itoh
    • Nao MishimaKenzo IsogawaRyusuke HiraiGoh Itoh
    • G09G5/00G06T7/00
    • G06T7/0085G06T7/13
    • An image processing apparatus includes an operating unit configured to calculate a tangent-line direction of an edge and a normal-line direction of the edge by using a vertical-direction derivative value and a horizontal-direction derivative value of a pixel value of a pixel in an input image; a converting unit configured to convert local coordinates positioned within a predetermined area with respect to a target pixel in the input image into rotated coordinates, by rotating the local coordinates according to an angle formed by the horizontal direction and the tangent-line direction of the edge; and a fitting unit configured to perform, at the rotated coordinates, a fitting process that employs a least-squares method by using a curved surface model expressed with the pixel value of the target pixel in the input image.
    • 一种图像处理装置,包括:操作单元,被配置为通过使用垂直方向导数值和像素的像素值的水平方向导数值来计算边缘的切线方向和边缘的法线方向 在输入图像中; 转换单元,被配置为通过根据由水平方向和边缘的切线方向形成的角度旋转局部坐标,将位于输入图像中的目标像素的预定区域内的局部坐标转换为旋转坐标 ; 以及装配单元,被配置为在旋转的坐标处执行使用通过使用由输入图像中的目标像素的像素值表示的曲面模型而采用最小二乘法的拟合处理。
    • 2. 发明授权
    • Super-resolution device and method
    • 超分辨率设备和方法
    • US08170376B2
    • 2012-05-01
    • 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。
    • 3. 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。
    • 6. 发明申请
    • DISPLAY PROCESSING APPARATUS AND DISPLAY PROCESSING METHOD
    • 显示处理装置和显示处理方法
    • US20130120549A1
    • 2013-05-16
    • US13542012
    • 2012-07-05
    • Yoshiharu MomonoiKazuyasu OhwakiKenzo IsogawaMiki Yamada
    • Yoshiharu MomonoiKazuyasu OhwakiKenzo IsogawaMiki Yamada
    • H04N7/18
    • G06K9/00597H04N1/00251H04N21/44218H04N21/4854H04N2013/40
    • According to one embodiment, a display processing apparatus includes: a recognizes configured to recognize a viewer; an eyeball characteristic acquisition module configured to acquire an eyeball characteristic indicating visibility in eyes of each viewer recognized from eyeball characteristic information in which the eyeball characteristic of the viewer is recorded; a viewing distance acquisition module configured to acquire a viewing distance between the viewer recognized and a display configured to display an image; an image generator configured to generate a first image in which deterioration due to the eyeball characteristic of the viewer recognized when the viewer views the image displayed on the display at the viewing distance is compensated based on the viewing distance acquired and the eyeball characteristic of the viewer recognized; and a display controller configured to control the display to display the first image generated.
    • 根据一个实施例,显示处理装置包括:识别器,被配置为识别观看者; 眼球特征获取模块,被配置为从记录了观看者的眼球特征的眼球特征信息中获取指示每个观众的眼睛中的可视性的眼球特征; 视觉距离获取模块,被配置为获取被识别的观看者和被配置为显示图像的显示器之间的观看距离; 图像生成器被配置为基于所获取的观看距离和观看者的眼球特征,生成第一图像,其中,当观看者观看在观看距离处显示在显示器上的图像时,由观看者的眼球特征导致的劣化被补偿 认可的 以及显示控制器,被配置为控制显示器以显示所生成的第一图像。
    • 8. 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。
    • 9. 发明申请
    • IMAGE PROCESSING APPARATUS, IMAGE PROCESSING METHOD, AND COMPUTER PROGRAM PRODUCT
    • 图像处理设备,图像处理方法和计算机程序产品
    • US20100054606A1
    • 2010-03-04
    • US12544356
    • 2009-08-20
    • Nao MishimaKenzo IsogawaRyusuke HiraiGoh Itoh
    • Nao MishimaKenzo IsogawaRyusuke HiraiGoh Itoh
    • G06K9/32
    • G06T7/13
    • An image processing apparatus includes an operating unit that calculates a tangent-line direction of an edge and a normal-line direction of the edge by using a vertical-direction derivative value and a horizontal-direction derivative value of a pixel value of a pixel in an input image; a converting unit that converts local coordinates positioned within a predetermined area with respect to a target pixel in the input image into rotated coordinates, by rotating the local coordinates according to an angle formed by the horizontal direction and the tangent-line direction of the edge; and a fitting unit that performs, at the rotated coordinates, a fitting process that employs a least-squares method by using a curved-plane model expressed with the pixel value of the target pixel in the input image.
    • 图像处理装置包括:操作单元,其通过使用垂直方向导数值和像素的像素值的水平方向导数值来计算边缘的切线方向和边缘的法线方向 输入图像; 转换单元,通过根据由边缘的水平方向和切线方向形成的角度旋转局部坐标,将位于输入图像中的目标像素的预定区域内的局部坐标转换为旋转坐标; 以及拟合单元,其通过使用由输入图像中的目标像素的像素值表示的曲面模型,以旋转的坐标进行采用最小二乘法的拟合处理。