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    • 4. 发明授权
    • Image-taking apparatus and output image generation method
    • 摄像装置和输出图像生成方法
    • US08363146B2
    • 2013-01-29
    • US11831142
    • 2007-07-31
    • Hiroaki YoshidaYukio MoriYasuhachi HamamotoSeiji OkadaSatoru TakeuchiMasahiro Yokohata
    • Hiroaki YoshidaYukio MoriYasuhachi HamamotoSeiji OkadaSatoru TakeuchiMasahiro Yokohata
    • H04N5/222
    • H04N5/23293H04N5/23219H04N5/23248H04N5/23254H04N5/23296
    • An image-taking apparatus generates an output image from a photographed image obtained by photographing and displays this output image on a display screen of a display section. The image-taking apparatus includes a recognition processing section for recognizing a specific subject (facial region of a person, or a facial component such as eyes) included in the photographed image. Referring to results of this recognition, the image-taking apparatus evaluates the dimension of the specific subject in each photographed image. If the dimension evaluated is relatively large, a relatively small magnification ratio to be employed upon the generation of the output image from the photographed image is provided. If the dimension evaluated is relatively small, a relatively large magnification ratio to be employed upon the generation of the output image from the photographed image is provided. As a result, the dimension of the specific subject in the output image is kept substantially constant.
    • 摄像装置从拍摄得到的拍摄图像中生成输出图像,并在显示部的显示画面上显示该输出图像。 拍摄装置包括:识别处理部,用于识别包含在拍摄图像中的特定被摄体(人脸的面部区域或面部成分,例如眼睛)。 参考该识别的结果,摄像装置评估每个拍摄图像中特定被摄体的尺寸。 如果评估的尺寸相对较大,则提供在从拍摄的图像生成输出图像时采用的相对小的放大率。 如果评估的尺寸相对较小,则在从拍摄的图像生成输出图像时将提供相对较大的放大率。 结果,输出图像中的特定被摄体的尺寸保持基本上恒定。
    • 5. 发明授权
    • Image-shooting apparatus capable of performing super-resolution processing
    • 能够进行超分辨率处理的摄像装置
    • US08294812B2
    • 2012-10-23
    • US12537518
    • 2009-08-07
    • Seiji OkadaAkihiro MaenakaMitsuaki KurokawaSatoru Takeuchi
    • Seiji OkadaAkihiro MaenakaMitsuaki KurokawaSatoru Takeuchi
    • H04N5/235
    • 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等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。
    • 6. 发明授权
    • Image processing device and method, and image sensing apparatus
    • 图像处理装置和方法以及图像感测装置
    • US08315474B2
    • 2012-11-20
    • US12353447
    • 2009-01-14
    • Seiji OkadaSatoru Takeuchi
    • Seiji OkadaSatoru Takeuchi
    • G06K9/40
    • G06T3/4069
    • An image processing device generates a high-resolution image from a plurality of low-resolution images, in which the high-resolution image has a resolution higher than a resolution of the low-resolution images. The image processing device includes a reference image setting portion for selecting a reference image from the plurality of low-resolution images based on image information of the plurality of low-resolution images. The image processing device generates the high-resolution image by performing a resolution increasing process on the plurality of low-resolution images for increasing a resolution with respect to the reference image.
    • 图像处理装置从多个低分辨率图像生成高分辨率图像,其中高分辨率图像的分辨率高于低分辨率图像的分辨率。 图像处理装置包括:参考图像设定部,其基于多个低分辨率图像的图像信息,从多个低分辨率图像中选择参考图像。 图像处理装置通过对多个低分辨率图像执行分辨率增加处理来生成高分辨率图像,以增加相对于参考图像的分辨率。
    • 9. 发明授权
    • Noise reduction circuit and image processing device
    • 降噪电路和图像处理装置
    • US08165420B2
    • 2012-04-24
    • US11959521
    • 2007-12-19
    • Satoru Takeuchi
    • Satoru Takeuchi
    • G06K9/00G06K9/40
    • G06K9/40G06T5/002G06T2207/20012G06T2207/20021
    • A representative-value calculator calculates a representative value of signal values of pixels included in each of divided regions of a neighboring region of a pixel of interest. The divided regions are obtained by dividing the neighboring region into the predetermined number of divisions. The number of divisions is determined based on a frequency band in an input image signal. A difference-absolute-value calculator calculates a difference absolute value between a signal value of the pixel of interest and each of the representative values of the respective divided regions. A weight calculator calculates a weight for each of the representative values of the respective divided regions according to the difference absolute value. A normalization processor normalizes the sum of products of the representative values of the respective divided regions and the weights for the representative values of the respective divided region.
    • 代表值计算器计算包括在感兴趣像素的相邻区域的每个分割区域中的像素的信号值的代表值。 通过将相邻区域划分成预定数量的分割来获得分割区域。 基于输入图像信号中的频带来确定分割数。 差分绝对值计算器计算感兴趣像素的信号值和各个分割区域的每个代表值之间的差绝对值。 权重计算器根据差分绝对值计算各分割区域的每个代表值的权重。 归一化处理器将各分割区域的代表值的乘积和相应分割区域的代表值的权重归一化。
    • 10. 发明申请
    • WORKPIECE TRANSFER APPARATUS AND ELECTRONIC COMPONENT TRANSFER APPARATUS
    • 工作传送装置和电子部件传送装置
    • US20090090601A1
    • 2009-04-09
    • US12246079
    • 2008-10-06
    • Yoshikazu SasaokaSatoru Takeuchi
    • Yoshikazu SasaokaSatoru Takeuchi
    • B65G47/91B65G17/46
    • H05K13/021B65G47/80G01R31/2893
    • An electronic-component conveying apparatus that conveys an electronic component by holding the electronic component in a through hole provided in a conveying table of the apparatus, in which the electronic component can be quickly and reliably dismounted from the through hole by using compressed gas, and undesired popout of the electronic component due to a residual pressure infrequently occurs, whereby the efficiency in the conveying process can be increased. A workpiece conveying apparatus includes a blowhole opening in a conveying surface of a conveying stage and configured such that an electronic component held in a through hole is dismounted by using compressed gas at a position where the through hole overlaps the blowhole while a conveying table is driven, a vacuum groove communicating with the blowhole and provided in a first surface of the conveying table, and an auxiliary blowhole connected to a compressed-gas supply device and opening in the conveying surface such as to be accessible to the vacuum groove.
    • 一种电子部件传送装置,其通过将电子部件保持在设置在设备的传送台中的通孔中来传送电子部件,其中电子部件可以通过使用压缩气体从通孔快速可靠地拆卸;以及 不频繁地发生由于残留压力导致的不希望的电子部件的弹出,从而能够提高输送处理的效率。 工件输送装置包括在输送台的输送面上的气孔开口,并且构造成使得通过在通孔与气孔重叠的位置处使用压缩气体来卸下保持在通孔中的电子部件,同时驱动输送台 与气孔连通并且设置在输送台的第一表面中的真空槽,以及连接到压缩气体供应装置的辅助气孔和在输送表面中的开口,以便能够被真空槽接近。