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    • 11. 发明授权
    • Image reading apparatus and method
    • 图像读取装置及方法
    • US07551328B2
    • 2009-06-23
    • US10471344
    • 2003-01-08
    • Tetsujiro KondoTakashi SawaoJunichi IshibashiTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • Tetsujiro KondoTakashi SawaoJunichi IshibashiTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • H04N1/04
    • H04N1/191H04N1/028H04N1/1013
    • The present invention enables image data with good S/N and high resolution to be obtained reliably in a short reading time. A CCD 102 is formed by arranging line sensors, in which detecting elements having a time integration effect are arranged in a direction orthogonal to a relative movement direction in which the CCD 102 moves relative to an original, in a plurality of columns in the relative movement direction. A signal processing unit 107 detects pixel components on the basis of a model for separating first pixel values obtained in a processing unit time by the CCD 102 into a plurality of the pixel components corresponding to detection positions of the object being detected, and generates second pixel values corresponding to the detection positions of the object being detected on the basis of the detected pixel components. The present invention is applicable to scanners.
    • 本发明能够在短的读取时间内可靠地获得具有良好S / N和高分辨率的图像数据。 通过布置线传感器形成CCD 102,其中具有时间积分效应的检测元件在与CCD 102相对于原稿移动的相对移动方向正交的方向上以相对运动的多列排列 方向。 信号处理单元107基于用于将由CCD 102在处理单元时间中获得的第一像素值分离成与被检测对象的检测位置相对应的多个像素分量的模型来检测像素分量,并且生成第二像素 基于检测到的像素分量对应于被检测物体的检测位置的值。 本发明适用于扫描仪。
    • 12. 发明授权
    • Image processing apparatus and method and image pickup apparatus
    • 图像处理装置和方法以及图像拾取装置
    • US07511730B2
    • 2009-03-31
    • US10362792
    • 2002-06-26
    • Tetsujiro KondoJunichi IshibashiTakashi SawaoTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • Tetsujiro KondoJunichi IshibashiTakashi SawaoTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • H04N13/00H04N15/00
    • H04N13/261H04N13/122H04N13/128H04N13/189H04N13/194H04N13/221H04N13/275H04N2013/0081H04N2013/0092
    • A system to generate a three-dimensional image from a two-dimensional image in accordance with the mixture state of images. A foreground/background component image generator generates, from image data including a foreground area consisting of only foreground object components, a background area consisting of only background object components, and a mixed area in which the foreground object components and the background object components are mixed, a foreground component image consisting of only the foreground object components and a background component image consisting of only the background object components. A foreground-parallax-image generator generates a right-eye foreground parallax image by adding the parallax to the foreground component image, and also generates a left-eye foreground parallax image by adding the parallax to the foreground component image. A synthesizer generates a right-eye parallax image by combining the right-eye foreground parallax image with a background image, and a synthesizer generates a left-eye parallax image by combining the left-eye foreground parallax image with the background image.
    • 根据图像的混合状态从二维图像生成三维图像的系统。 前景/背景分量图像生成器从包括仅前景对象分量的前景区域,仅由背景对象分量构成的背景区域和混合前景对象分量和背景对象分量的混合区域的图像数据生成 ,仅由前景对象分量组成的前景分量图像和仅由背景对象分量组成的背景分量图像。 前景视差图像生成器通过将视差加到前景分量图像来产生右眼前景视差图像,并且还通过将视差加到前景分量图像来产生左眼前景视差图像。 合成器通过将右眼前景视差图像与背景图像组合来生成右眼视差图像,并且合成器通过将左眼前景视差图像与背景图像组合来生成左眼视差图像。
    • 13. 发明授权
    • Image processing device, method, and program
    • 图像处理装置,方法和程序
    • US07447378B2
    • 2008-11-04
    • US10546510
    • 2004-02-13
    • Tetsujiro KondoTakashi SawaoJunichi IshibashiTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • Tetsujiro KondoTakashi SawaoJunichi IshibashiTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • G06K9/40
    • G06T3/403
    • The present invention enables processing results which are more accurate and which have higher precision as to events of the real world to be obtained. (An inverse gamma correction unit 5001 applies inverse gamma correction to an input image wherein light signals of the actual world have been projected and a part of the continuity of the light signals of the actual world has been lost, and which has been subjected to gamma correction. A data continuity detecting unit 101 detects, in the input image subjected to inverse gamma correction, data continuity corresponding to the continuity of light signals of the real world. An actual world estimating unit 102 estimates the light signals by estimating the continuity of the light signals of the real world, based on the data continuity. An image generating unit 103 generates an output image from the estimated light signals. A presentation system property correcting unit 5002 applies correction corresponding to the properties of the presentation system to the output image that has been generated. The present invention can be applied to an image processing device for generating images with higher resolution.
    • 本发明使处理结果更准确,并且对于要获得的真实世界的事件具有更高的精度。 (反伽马校正单元5001对输入图像进行反伽马校正,其中实际世界的光信号已被投影,并且实际世界的光信号的连续性的一部分已经丢失,并且已经经受伽马 数据连续性检测单元101在进行反伽马校正的输入图像中检测对应于现实世界的光信号的连续性的数据连续性,实际世界估计单元102通过估计光信号的连续性来估计光信号 基于数据连续性的现实世界的光信号,图像生成单元103从估计的光信号生成输出图像,呈现系统特性校正单元5002将对应于呈现系统的属性的校正应用于输出图像, 本发明可以应用于用于产生高图像的图像处理装置 呃决议。
    • 19. 发明授权
    • Image processing device
    • 图像处理装置
    • US07139019B2
    • 2006-11-21
    • US10343675
    • 2002-05-24
    • Tetsujiro KondoJunichi IshibashiTakashi SawaoTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • Tetsujiro KondoJunichi IshibashiTakashi SawaoTakahiro NaganoNaoki FujiwaraToru MiyakeSeiji Wada
    • H04N5/14
    • G06T7/20
    • The present invention enables a movement vector of a moving object to the detected, by detecting a mixture ratio indicating the proportion of mixing with an image, or taking into consideration a region mixed with the image. A weighted frame difference computation unit 3423 outputs weighted difference. A movement compensation unit 3424 and a correlation value computing unit 3427 compute the correlation between a block of interest containing each pixel of interest of weighted difference image data, and a corresponding block of weighted difference image data of an adjacent frame. A maximum value judgment unit 3428 detects at least one of weight and a movement vector wherein correlation between weighted difference image data is greatest. The present invention can be applied to signals processing device s for processing images.
    • 本发明通过检测表示与图像混合的比例的混合比,或考虑到与图像混合的区域,能够使运动对象的运动矢量与检测到的运动矢量相关。 加权帧差计算单元3423输出加权差。 移动补偿单元3424和相关值计算单元3427计算包含加权差分图像数据的感兴趣的每个像素的感兴趣块与相邻帧的相应加权差分图像数据块之间的相关性。 最大值判断单元3428检测加权差分图像数据之间的相关性最大的权重和运动矢量中的至少一个。 本发明可以应用于处理图像的信号处理装置。