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    • 11. 发明授权
    • Image processing device, image processing method, and program
    • 图像处理装置,图像处理方法和程序
    • US08014626B2
    • 2011-09-06
    • US11553280
    • 2006-10-26
    • Takuya Chiba
    • Takuya Chiba
    • G06K9/40
    • H04N5/243H04N5/2351H04N9/045H04N9/68
    • An image processing device to correct chromatic aberration of image data is provided. The image processing device includes an overexposed pixel detecting unit configured to detect overexposed pixels by using a luminance signal of the image data; an overexposure distribution information generating unit configured to generate overexposure distribution information indicating distribution of the overexposed pixels detected by the overexposed pixel detecting unit; and a chromatic aberration amount calculating unit configured to calculate the amount of chromatic aberration of each pixel by using the overexposure distribution information generated by the overexposure distribution information generating unit and chromatic aberration amount distribution information indicating distribution of the amount of chromatic aberration, which is the amount of correction regarding chromatic aberration of nearby pixels due to overexposure of a target pixel.
    • 提供了一种用于校正图像数据色差的图像处理装置。 图像处理装置包括:曝光过度的像素检测单元,被配置为通过使用图像数据的亮度信号来检测曝光过度的像素; 曝光分布信息生成部,其生成表示由所述曝光过度的像素检测部检测出的曝光过度的像素的分布的曝光过度分布信息; 以及色差量计算单元,被配置为通过使用由过度曝光分布信息生成单元生成的过度曝光分布信息和色差量分布信息来计算每个像素的色差量,所述色差量分布信息表示色差量的分布, 由于目标像素的过度曝光引起的邻近像素的色差校正量。
    • 12. 发明授权
    • Image device and associated methodology of adjusting a flash exposure operation
    • 调整闪光曝光操作的图像设备和相关方法
    • US07589784B2
    • 2009-09-15
    • US10567578
    • 2005-06-08
    • Takuya ChibaKazato TanakaNaoki Hayashi
    • Takuya ChibaKazato TanakaNaoki Hayashi
    • H04N5/222H04N3/14H04N5/335G03B15/03
    • G03B15/05G03B2215/05H04N5/2354
    • An image pickup device and associated methodology are provided. The image pickup device is formed from a plurality of pixels, each of which can perform any of an exposure operation and a reading operation thereof at a timing different from that of the other, an imaging apparatus is provided, which can determine the amount of main-flashing light based on pre-flashing by a flash highly accurately. Before and during a preflash operation by a flash unit, an exposure operation is started simultaneously for all the pixels of the image pickup device 14 to form an image before and during the preflash to obtain a detected value by a detector before and during the preflash, respectively. A computation circuit computes a differential detected value obtained by subtracting the before-preflash detected value from the during-preflash detected value. The differential detected value is a detected value containing only pre-flashed light with ambient light excluded. An amount of light for main flashing is computed on the basis of the differential detected value.
    • 提供了图像拾取装置和相关联的方法。 图像拾取装置由多个像素形成,每个像素可以以与另一个不同的时间进行曝光操作和读取操作中的任何一个,提供成像装置,其可以确定主要的量 基于闪光灯预闪的高亮度闪光灯。 在闪光单元的预闪动操作之前和期间,对于图像拾取装置14的所有像素同时开始曝光操作,以在预闪光之前和期间形成图像,以在预闪光之前和期间通过检测器获得检测值, 分别。 计算电路计算通过从预闪光检测值减去前置预闪光检测值而获得的差分检测值。 差分检测值是仅包含预先闪烁的光的检测值,其中不包括环境光。 基于差分检测值计算用于主闪光的光量。
    • 13. 发明授权
    • Imaging apparatus and imaging methods
    • 成像设备和成像方法
    • US07532240B2
    • 2009-05-12
    • US11117295
    • 2005-04-29
    • Takuya ChibaAkira HamanoKenji Tanaka
    • Takuya ChibaAkira HamanoKenji Tanaka
    • H04N9/64
    • H04N5/23245H04N5/343H04N5/3532H04N5/367H04N5/3675
    • A signal detection circuit and a controller receive signals from an imaging device, determine pixels having signal levels that exceed a predetermined defect determination level as defective pixels, and store the addresses of the defective pixels corresponding to read methods. When the imaging device images an object, a defect compensation circuit reads the addresses of the defective pixels that have been stored corresponding to the read methods and performs a predetermined compensation process for the defective pixels. A controller stores the signal levels of the defective pixels and converts the signal levels corresponding to the read methods. As a result, when defective pixels are detected in one read method, the defective pixels can be compensated in a plurality of read methods.
    • 信号检测电路和控制器从成像装置接收信号,确定具有超过作为缺陷像素的预定缺陷确定等级的信号电平的像素,并存储与读取方法对应的缺陷像素的地址。 当成像装置对对象进行成像时,缺陷补偿电路根据读取方法读取已经存储的缺陷像素的地址,并对缺陷像素执行预定的补偿处理。 控制器存储缺陷像素的信号电平并转换与读取方法对应的信号电平。 结果,当以一种读取方法检测到缺陷像素时,可以以多种读取方法补偿缺陷像素。
    • 14. 发明申请
    • Imaging Device
    • 成像设备
    • US20080165265A1
    • 2008-07-10
    • US10567578
    • 2005-06-08
    • Takuya ChibaKazato TanakaNaoki Hayashi
    • Takuya ChibaKazato TanakaNaoki Hayashi
    • H04N5/335H04N5/222
    • G03B15/05G03B2215/05H04N5/2354
    • For an image pickup device formed from a plurality of pixels, each of which can perform any of an exposure operation and a reading operation thereof at a timing different from that of the other, an imaging apparatus is provided, which can determine the amount of main-flashing light based on pre-flashing by a flash highly accurately.Before and during a preflash operation by the flash 21, an exposure operation is started simultaneously for all the pixels of the image pickup device 13 to form an image before and during the preflash to obtain a detected value by the detector circuit 17 before and during the preflash, respectively. The computation circuit 18 computes a differential detected value obtained by subtracting the before-preflash detected value from the during-preflash detected value. The differential detected value is a detected value containing only pre-flashed light with ambient light excluded. An amount of light for main flashing is computed on the basis of the differential detected value.
    • 对于由多个像素形成的图像拾取装置,每个像素可以以与另一个不同的时间进行曝光操作和读取操作中的任何一个,提供可以确定主要量的成像装置 基于闪光灯预闪的高亮度闪光灯。 在闪光灯21的预闪动操作之前和期间,对于图像拾取装置13的所有像素同时开始曝光操作,以在预闪光之前和期间形成图像,以在检测器电路17之前和期间获得检测值 预闪,分别。 计算电路18计算通过从预闪光检测值减去预先闪光检测值而获得的差分检测值。 差分检测值是仅包含预先闪烁的光的检测值,其中不包括环境光。 基于差分检测值计算用于主闪光的光量。
    • 16. 发明授权
    • Image processing apparatus and image processing method
    • 图像处理装置和图像处理方法
    • US08081239B2
    • 2011-12-20
    • US12290229
    • 2008-10-28
    • Jing ZhangSeijiro InabaTakuya Chiba
    • Jing ZhangSeijiro InabaTakuya Chiba
    • H04N5/217H04N5/202
    • G06T5/002G06T5/009G06T7/90G06T2207/10024H04N1/58H04N1/62H04N1/628H04N5/217H04N9/045H04N9/646H04N2101/00
    • An image processing apparatus includes a gradation correction unit configured to multiply input image data by a gradation correction value appropriate for the input image data so as to obtain gradation corrected image data; and a noise suppression unit configured to suppress noise of the gradation corrected image data on the basis of a noise model of the input image data to obtain output image data. The noise suppression unit includes a parameter generator configured to generate a noise suppression parameter in accordance with the gradation corrected image data by using the noise model; a parameter correction unit configured to multiply the noise suppression parameter by the gradation correction value to correct the noise suppression parameter; and a low-pass filter configured to vary characteristics thereof in accordance with the noise suppression parameter corrected by the parameter correction unit and to suppress noise of the gradation corrected image data.
    • 图像处理装置包括:灰度校正单元,被配置为将输入的图像数据乘以适合于输入图像数据的灰度校正值,以获得灰度校正图像数据; 以及噪声抑制单元,被配置为基于输入图像数据的噪声模型来抑制灰度校正图像数据的噪声,以获得输出图像数据。 噪声抑制单元包括:参数发生器,被配置为通过使用噪声模型来生成根据灰度校正图像数据的噪声抑制参数; 参数校正单元,被配置为将噪声抑制参数乘以灰度校正值以校正噪声抑制参数; 以及低通滤波器,其被配置为根据由参数校正单元校正的噪声抑制参数来改变其特性并且抑制灰度校正图像数据的噪声。
    • 17. 发明授权
    • Apparatus, method, and computer program for processing information
    • 用于处理信息的装置,方法和计算机程序
    • US07893974B2
    • 2011-02-22
    • US11553221
    • 2006-10-26
    • Takuya Chiba
    • Takuya Chiba
    • H04N5/208
    • H04N9/646H04N9/71H04N9/77
    • An information processing apparatus for correcting chromatic aberration of video data, includes a white saturation pixel detecting unit for detecting a white saturation pixel having white saturation using a G signal of the video data composed of an RGB signal, a spatial signal processing unit for performing a spatial signal process on the RGB signal across a plurality of lines, a color signal generating unit for generating a color signal from the RGB signal processed by the spatial signal processing unit, a white saturation distribution information generating unit for generating white saturation distribution information representing a distribution of the white saturation pixels detected by the white saturation pixel detecting unit, and a chromatic aberration correcting unit for correcting a chromatic aberration of the color signal generated by the color signal generating unit, using the white saturation distribution information generated by the white saturation distribution information generating unit.
    • 一种用于校正视频数据的色差的信息处理装置,包括:白色饱和度像素检测单元,用于使用由RGB信号组成的视频数据的G信号来检测具有白色饱和度的白色饱和度像素;空间信号处理单元, 用于从由空间信号处理单元处理的RGB信号产生彩色信号的彩色信号产生单元,用于生成表示白色饱和度分布信息的白色饱和度分布信息的白色饱和度分布信息生成单元, 由白色饱和度像素检测单元检测的白色饱和度像素的分布,以及色差校正单元,用于校正由色彩信号生成单元生成的彩色信号的色差,使用由白色饱和度分布产生的白色饱和度分布信息 信息 发电机组。
    • 19. 发明授权
    • Image pickup apparatus, color noise reduction method, and color noise reduction program
    • 摄像装置,彩色降噪方法和彩色降噪方案
    • US08363123B2
    • 2013-01-29
    • US12273136
    • 2008-11-18
    • Seijiro InabaTakuya ChibaYutaka Yoneda
    • Seijiro InabaTakuya ChibaYutaka Yoneda
    • G06K9/32G06K9/40H04N5/335
    • H04N9/045G06T3/4015G06T5/002G06T5/20G06T2207/10024H04N2209/046
    • An image pickup apparatus includes an image sensor including a color filter having pixels of different colors arranged in a predetermined order and a demosaic processor. The image sensor receives a subject image and outputs an image signal including color signals of the different colors. The demosaic processor generates color signals of the different colors for each of pixels of the image from the image signal. The demosaic processor includes a generation unit and a noise reduction unit. The generation unit performs computation using a target color signal representing a predetermined target color signal included in the image signal and a predetermined different color signal so as to generate a color-related signal that associates the target color signal with the predetermined different color signal for a pixel of the target color signal. The noise reduction unit performs a noise reduction process on the color-related signal generated by the generation unit.
    • 图像拾取装置包括图像传感器,该图像传感器包括具有以预定顺序布置的不同颜色的像素的滤色器和去马赛克处理器。 图像传感器接收对象图像并输出包括不同颜色的颜色信号的图像信号。 去马赛克处理器根据图像信号为图像的每个像素生成不同颜色的颜色信号。 去马赛克处理器包括生成单元和降噪单元。 生成单元使用表示包括在图像信号中的预定目标颜色信号的目标颜色信号和预定的不同颜色信号来执行计算,以便生成将目标颜色信号与预定的不同颜色信号相关联的颜色相关信号,用于 像素的目标色信号。 降噪单元对由生成单元生成的颜色相关信号进行降噪处理。
    • 20. 发明授权
    • Apparatus and method for capturing an image using a flash and a solid-state image pickup device
    • 使用闪光灯和固态图像拾取装置拍摄图像的装置和方法
    • US07834931B2
    • 2010-11-16
    • US11659234
    • 2005-08-04
    • Kazato TanakaTakuya ChibaNaoki Hayashi
    • Kazato TanakaTakuya ChibaNaoki Hayashi
    • H04N5/222
    • H04N5/2354
    • When flash photography is performed, an exposure time at a time of a preliminary light emission of a flash is set as short as possible so that the appropriate amount of light required for a main light emission of the flash can be accurately computed. Before the main light emission of the flash, an exposure operation prior to preliminary light emission and an exposure operation at the time of preliminary light emission are performed. After each of these exposures, the pixel signals of individual pixels are intermittently read out at predetermined pixel intervals. The brightness levels of images captured in the exposure operation prior to preliminary light emission and the exposure operation at the time of preliminary light emission are individually detected based on the signals. The amount of light required for the main light emission of the flash is computed based on a difference between the brightness levels.
    • 当进行闪光摄影时,将闪光灯的初期发光时的曝光时间设定得尽可能短,使得可以准确地计算出闪光的主发光所需的适当的光量。 在闪光的主发光之前,进行初步发光前的曝光动作和初期发光时的曝光动作。 在这些曝光中的每一个之后,各个像素的像素信号以预定的像素间隔被间歇地读出。 基于该信号,分别检测在初步发光之前的曝光操作中捕获的图像的亮度水平和初步发光时的曝光操作。 基于亮度级之间的差来计算闪光的主发光所需的光量。