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    • 1. 发明申请
    • Image-Shooting Apparatus
    • 图像拍摄装置
    • US20100033602A1
    • 2010-02-11
    • US12537518
    • 2009-08-07
    • Seiji OKADAAkihiro MAENAKAMitsuaki KUROKAWASatoru TAKEUCHI
    • Seiji OKADAAkihiro MAENAKAMitsuaki KUROKAWASatoru TAKEUCHI
    • H04N5/217H04N5/225
    • H04N5/232H04N5/23229H04N5/23232
    • A super-resolution processing portion has a high-resolution image generation portion that fuses a plurality of first input images together to generate a high-resolution image. The first input images are shot at a shutter speed equal to or faster than the super-resolution limit shutter speed, which is the lower-limit shutter speed that enables super-resolution processing to make the resolution of the output image equal to or higher than that of the input images. According to the amount of exposure, one of the following different methods for super-resolution processing is selected: a first method that yields as the output image the high-resolution image; a second method that yields as the output image a weighted added image resulting from weighted addition of the high-resolution image and an image based on an averaged image; and a third method that yields as the output image a weighted added image resulting from weighted addition of the high-resolution image and an image based on a second input image.
    • 超分辨率处理部分具有将多个第一输入图像融合在一起以产生高分辨率图像的高分辨率图像生成部分。 以与超分辨率限制快门速度相同或更快的快门速度拍摄第一输入图像,该超分辨率限制快门速度是能够进行超分辨率处理以使输出图像的分辨率等于或高于的分辨率的下限快门速度 输入图像的。 根据曝光量,选择以下不同的超分辨率处理方法之一:第一种产生高分辨率图像作为输出图像的方法; 产生作为输出图像的加权相加图像的第二方法,所述加权相加图像是基于平均图像的高分辨率图像和图像的加权相加产生的; 以及第三种方法,其产生由高分辨率图像的加权相加和基于第二输入图像的图像而产生的加权相加图像作为输出图像。
    • 3. 发明申请
    • IMAGE SENSING APPARATUS
    • 图像感应装置
    • US20110080503A1
    • 2011-04-07
    • US12896516
    • 2010-10-01
    • Seiji OKADAYou TOSHIMITSUAkihiro MAENAKA
    • Seiji OKADAYou TOSHIMITSUAkihiro MAENAKA
    • H04N9/68H04N5/335
    • H04N5/345H04N5/347
    • An image sensing apparatus includes an image sensor constituted of a light receiving pixel group which performs photoelectric conversion of an optical image of a subject, and a read control unit which performs switching between skip reading for thinning a part of the light receiving pixel group while reading an output signal of the light receiving pixel group, and addition reading for adding output signals of a plurality of light receiving pixels included in the light receiving pixel group while reading the same, for taking an image. The read control unit performs the switching between the skip reading and the addition reading while one moving image is being taken.
    • 图像感测装置包括:由进行被摄体的光学图像的光学转换的受光像素组构成的图像传感器;以及读取控制单元,该读取控制单元在读取期间进行用于使一部分受光像素组变薄的跳过读取 光接收像素组的输出信号,以及用于在读取该光接收像素组时将包括在光接收像素组中的多个光接收像素的输出信号相加的加法读取用于拍摄图像。 读取控制单元在拍摄一个运动图像时执行跳过读取和加法读取之间的切换。
    • 4. 发明申请
    • Image Sensing Device And Image Processing Device
    • 图像传感装置及图像处理装置
    • US20100020210A1
    • 2010-01-28
    • US12509206
    • 2009-07-24
    • Norikazu TSUNEKAWASeiji OKADAAkihiro MAENAKA
    • Norikazu TSUNEKAWASeiji OKADAAkihiro MAENAKA
    • H04N5/335
    • H04N5/232H04N5/23232H04N19/33H04N19/48H04N19/59H04N19/61H04N19/85
    • There is provided an image sensing device including: an image acquisition portion that switches between a plurality of reading methods in which pixel signals of a group of light receiving pixels arranged in an image sensor are read and that thereby acquires, from the image sensor, a first image sequence formed such that a plurality of first images having a first resolution are arranged chronologically and a second image sequence formed such that a plurality of second images having a second resolution higher than the first resolution are arranged chronologically; and an output image sequence generation portion that generates, based on the first and second image sequences, an output image sequence formed such that a plurality of output images having the second resolution are arranged chronologically, in which a time interval between sequentially adjacent two output images among the plurality of output images is shorter than a time interval between sequentially adjacent two second images among the plurality of second images.
    • 提供了一种图像感测装置,包括:图像获取部分,其在读取布置在图像传感器中的一组光接收像素的像素信号并从而从图像传感器获取的多个读取方法之间切换 第一图像序列被形成为使得具有第一分辨率的多个第一图像按时间顺序排列,并且第二图像序列形成为使得具有比第一分辨率高的第二分辨率的多个第二图像按时间顺序排列; 以及输出图像序列生成部,其基于第一和第二图像序列生成输出图像序列,其形成为使得具有第二分辨率的多个输出图像按时间顺序排列,其中顺序相邻的两个输出图像之间的时间间隔 所述多个输出图像之间的间隔小于所述多个第二图像中顺序相邻的两个第二图像之间的时间间隔。
    • 5. 发明申请
    • Image Processing Apparatus And Method, And Electronic Appliance
    • 图像处理装置及方法及电子电器
    • US20090033792A1
    • 2009-02-05
    • US12183554
    • 2008-07-31
    • Hiroshi KANOAkihiro MAENAKANorikazu TSUNEKAWA
    • Hiroshi KANOAkihiro MAENAKANorikazu TSUNEKAWA
    • H04N7/01
    • H04N5/145H04N5/232H04N5/23232
    • An image processing apparatus includes a high resolution processing portion for generating a high-resolution image from a first low-resolution image to be a datum frame and M (M is an integer of one or larger) second low-resolution images, the high-resolution image having a higher resolution than the low-resolution images, and a region cutting out portion for setting a first target region in an image region of the first low-resolution image and for setting a second target region in an image region of the second low-resolution image. The high resolution processing portion calculates a pixel value of a region corresponding to the first target region in an image region of the high-resolution image based on pixel values of the first and the second target regions set by the region cutting out portion. The region cutting out portion scans the position of the first target region to be set in the first low-resolution image and sets the second target region at a position corresponding to the position of the first target region after the scan every time when the high resolution processing portion calculates the pixel value of the high-resolution image.
    • 一种图像处理装置包括:高分辨率处理部分,用于从第一低分辨率图像生成作为基准帧的高分辨率图像,并且M(M是一个或更多个)第二低分辨率图像的整数, 分辨率高于低分辨率图像的分辨率图像,以及用于设置第一低分辨率图像的图像区域中的第一目标区域并用于在第二低分辨率图像的图像区域中设置第二目标区域的区域切除部分 低分辨率图像。 高分辨率处理部分基于由区域切出部分设置的第一和第二目标区域的像素值来计算与高分辨率图像的图像区域中的第一目标区域相对应的区域的像素值。 区域切除部分扫描要设置在第一低分辨率图像中的第一目标区域的位置,并将第二目标区域设置在与扫描之后的第一目标区域的位置相对应的位置,每当高分辨率 处理部分计算高分辨率图像的像素值。