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    • 82. 发明授权
    • Image processing apparatus
    • 图像处理装置
    • US07859552B2
    • 2010-12-28
    • US11656938
    • 2007-01-24
    • Yasunari HatasawaShinichiro GomiMasami Ogata
    • Yasunari HatasawaShinichiro GomiMasami Ogata
    • G09G5/00
    • G06T3/4053
    • A image processing apparatus includes a first image converting section for converting an original image into an output resolution image, a second image converting section for converting the original image into an intermediate resolution image, a similarity information generating section for detecting a plurality of similar areas, in a block in the intermediate resolution image corresponding to a predetermined partial area in the output resolution image, that resemble the partial area, and for generating similarity information including a position of each of the plurality of similar areas in the intermediate resolution image and a weight of the position, a texture generating section for generating a texture image by combining high-frequency components of the intermediate resolution image at the position according to the weight, and a texture blending section for blending the output resolution image and the texture image to generate output image.
    • 一种图像处理装置,包括用于将原始图像转换为输出分辨率图像的第一图像转换部分,用于将原始图像转换成中间分辨率图像的第二图像转换部分,用于检测多个相似区域的相似度信息产生部分, 在对应于输出分辨率图像中的预定部分区域的中间分辨率图像的块中,类似于部分区域,并且用于生成包括中间分辨率图像中的多个相似区域中的每一个的位置的相似度信息和权重 所述纹理生成部通过将根据所述权重的所述位置的所述中分辨率图像的高频分量组合而生成纹理图像,以及纹理混合部,用于混合所述输出分辨率图像和所述纹理图像,以生成输出 图片。
    • 83. 发明申请
    • Stereoscopic Image Generation Apparatus, Stereoscopic Image Generation Method, and Program
    • 立体图像生成装置,立体图像生成方法和程序
    • US20100201783A1
    • 2010-08-12
    • US12671367
    • 2009-06-02
    • Kazuhiko UedaMasami OgataYasunari HatasawaShinichiro GomiYusuke Nakamura
    • Kazuhiko UedaMasami OgataYasunari HatasawaShinichiro GomiYusuke Nakamura
    • G06K9/00
    • G02B27/2228G06T15/20H04N13/302H04N13/363H04N13/373
    • Influences of physiological stereoscopic elements are removed by image processing using projection transformation. A horopter-plane image projection unit 311 is designed to project a non-stereo image supplied via a signal line 129 onto a cylindrical plane (horopter plane) including a horopter circle. The size of the horopter circle is specified using, for example, the radius as horopter circle information. Additionally, the relationship with two eyes is specified by the interocular distance. A display surface right-eye projection unit 316 is designed to project an image projected on the horopter plane onto a display surface for the right eye. A display surface left-eye projection unit 317 is designed to project the image projected on the horopter plane onto a display surface for the left eye. Therefore, retinal images that are identical to each other are supplied to the two eyes to remove influences of physiological stereoscopic elements, and stereoscopic depth is given.
    • 通过使用投影变换的图像处理去除生理立体元素的影响。 双平面图像投影单元311被设计成将经由信号线129提供的非立体声图像投影到包括双眼立方圆的圆柱面(双眼飞机平面)上。 使用例如半径作为双眼圆圈信息来指定双眼轮的大小。 另外,两只眼睛之间的关系由眼间距离指定。 显示表面右眼投影单元316被设计成将投影在双眼器飞机上的图像投影到用于右眼的显示表面上。 显示表面左眼投影单元317被设计成将投影在双眼器平面上的图像投影到用于左眼的显示表面上。 因此,将彼此相同的视网膜图像提供给两只眼睛以去除生理立体元件的影响,并给出立体深度。
    • 84. 发明申请
    • Image Processing Apparatus, Image Processing Method, and Program
    • 图像处理装置,图像处理方法和程序
    • US20100074521A1
    • 2010-03-25
    • US12561566
    • 2009-09-17
    • Shinichiro GomiYasunari HatasawaMasami Ogata
    • Shinichiro GomiYasunari HatasawaMasami Ogata
    • G06K9/40G06K9/00
    • H04N13/261H04N13/122H04N13/128H04N2213/003
    • An image processing apparatus includes: means for extracting, for each pixel of an image, a high-frequency component as focus information from a brightness signal for a neighboring pixel; means for integrating, for each pixel, the focus information on the neighboring pixel; means for replacing the focus information on each pixel with a value obtained using the focus information on the neighboring pixel greater than the focus information on that pixel to generate dark area focus information; means for integrating the brightness signals of each pixel and the neighboring pixel to extract an illumination component; means for calculating a depth value of each pixel using a coefficient based on the illumination component; means for normalizing the depth value of each pixel; means for controlling the normalized depth value using a tone curve; means for detecting a saturation of each pixel; and means for controlling the controlled depth value using the saturation.
    • 一种图像处理装置包括:用于针对相邻像素的亮度信号,针对图像的每个像素提取作为聚焦信息的高频分量的装置; 用于针对每个像素对相邻像素上的焦点信息进行积分的装置; 用于使用相对于相邻像素上的焦点信息获得的值获取的每个像素上的焦点信息的装置,该相邻像素大于关于该像素的焦点信息,以产生暗区聚焦信息; 用于对每个像素和相邻像素的亮度信号进行积分以提取照明分量的装置; 使用基于所述照明分量的系数来计算每个像素的深度值的装置; 用于对每个像素的深度值进行归一化的装置; 用于使用色调曲线控制归一化深度值的装置; 用于检测每个像素的饱和度的装置; 以及用于使用饱和度来控制受控深度值的装置。
    • 87. 发明申请
    • NOISE SUPPRESSION METHOD, NOISE SUPPRESSION METHOD PROGRAM, RECORDING MEDIUM RECORDING NOISE SUPPRESSION METHOD PROGRAM, AND NOISE SUPPRESSION APPARATUS
    • 噪声抑制方法,噪声抑制方法程序,记录中等记录噪声抑制方法程序和噪声抑制装置
    • US20070293181A1
    • 2007-12-20
    • US11758749
    • 2007-06-06
    • Seiji KIMURAMasami Ogata
    • Seiji KIMURAMasami Ogata
    • H04B1/18H04B1/10
    • H04N5/21G06T5/002G06T5/50G06T7/223G06T2207/10016G06T2207/20021H04N5/147
    • An apparatus for suppressing noise of a video signal. The apparatus includes: a difference-signal generation section generating a difference signal being a field or frame difference between the input and the output video signals; a noise compensation-signal generation section generating a noise compensation signal; a noise-compensation signal subtraction section; and a feedback-ratio control section, wherein the feedback-ration control section includes a signal-level determination section determining a signal level of the difference signal for each area and detecting an abrupt change in an input signal, a count section counting the number of input fields or frames from the time of an abrupt change in a signal level to the subsequent abrupt change, and a feedback-ration setting section setting a feedback ration for the area in accordance with a count value, wherein the feedback-ratio setting section sets the feedback ratio such that the ratio gradually increases as the count value increases.
    • 一种用于抑制视频信号的噪声的装置。 该装置包括:差分信号产生部分,产生作为输入和输出视频信号之间的场或帧差的差分信号; 生成噪声补偿信号的噪声补偿信号生成部; 噪声补偿信号减法部; 以及反馈比控制部,其中,所述反馈比对控制部包括:信号电平确定部,确定每个区域的差分信号的信号电平,并检测输入信号的突然变化;计数部分 从信号电平突然变化到后续突然变化的时间的输入字段或帧,以及反馈比例设定部分,根据计数值设置该区域的反馈比例,其中反馈比设定部分设定 反馈比使得该比率随着计数值的增加而逐渐增加。
    • 88. 发明申请
    • Image processing apparatus, image processing method, program, and recording medium therefor
    • 图像处理装置,图像处理方法,程序及其记录介质
    • US20060291741A1
    • 2006-12-28
    • US11352150
    • 2006-02-10
    • Shinichiro GomiMasami Ogata
    • Shinichiro GomiMasami Ogata
    • G06K9/48G06K9/40
    • G06T3/403G06T5/002G06T5/003G06T5/20G06T2207/20192
    • An image processing apparatus for processing input-image data to output output-image data. The apparatus includes a plurality of image processing units operable to detect an edge-gradient direction having a largest gradient of a pixel value and an edge direction orthogonal to the edge-gradient direction for each pixel of the input-image data, to perform edge-enhancement processing on the input-image data in the edge-gradient direction, and to perform smoothing processing on the input-image data in the edge direction; and an integration unit operable to integrate the image data output from the plurality of image processing units to generate the output-image data. The plurality of image processing units have different characteristics set for use with detecting the edge-gradient direction and the edge direction.
    • 一种用于处理输入图像数据以输出输出图像数据的图像处理装置。 该装置包括多个图像处理单元,用于检测对输入图像数据的每个像素具有像素值的最大斜率和与边缘梯度方向正交的边缘方向的边缘梯度方向, 对边缘梯度方向上的输入图像数据进行增强处理,并且对边缘方向上的输入图像数据执行平滑处理; 以及集成单元,其可操作以集成从多个图像处理单元输出的图像数据,以生成输出图像数据。 多个图像处理单元具有设置用于检测边缘梯度方向和边缘方向的不同特性。