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    • 1. 发明授权
    • Image capture device including edge direction determination unit, and image processing method for the same
    • 图像采集装置包括边缘方向确定单元,以及图像处理方法
    • US08253828B2
    • 2012-08-28
    • US12511696
    • 2009-07-29
    • Katsuhiro Nishiwaki
    • Katsuhiro Nishiwaki
    • H04N9/64
    • H04N5/3675H04N9/045
    • The image capture device includes pixel data acquisition unit for acquiring pixel data of a pixel of interest and neighboring pixels from an image capture element; an edge direction determination unit for determining whether a pattern such as an edge is defined by neighboring pixels centered on the pixel of interest; correction unit; and color interpolation unit. When a pixel of interest is determined by a defective pixel determination unit to be a defective pixel, and is moreover determined by the edge direction determination unit not to lie in an edge direction, the correction unit will correct the pixel of interest to a correction value derived from pixel data of neighboring pixels in a symmetrical array centered thereon. For a pixel of interest that has not been corrected, color interpolation according to the direction the edge will be carried out by the color interpolation unit, using the determination outcome of the edge direction determination unit.
    • 图像捕获装置包括像素数据获取单元,用于从图像捕获元件获取感兴趣像素和相邻像素的像素数据; 边缘方向确定单元,用于确定诸如边缘的图案是否以关注像素为中心的相邻像素定义; 校正单位 和颜色插值单元。 当感兴趣像素由缺陷像素确定单元确定为缺陷像素,并且还由边缘方向确定单元确定为不位于边缘方向时,校正单元将感兴趣像素校正为校正值 衍生自以对称阵列为中心的相邻像素的像素数据。 对于未被校正的感兴趣的像素,使用边缘方向确定单元的确定结果,根据颜色插值单元将根据边缘的方向执行颜色插值。
    • 2. 发明申请
    • INFORMATION PROVIDING DEVICE
    • 信息提供设备
    • US20120139836A1
    • 2012-06-07
    • US13311889
    • 2011-12-06
    • Yu NaitoYasushi Suda
    • Yu NaitoYasushi Suda
    • G09G5/08
    • G06F3/038G06F3/04883G06F3/1454G06F2203/0382H04N1/00129H04N1/00241H04N1/00392H04N1/19594H04N1/32144H04N2201/0084H04N2201/0436H04N2201/3245H04N2201/3273
    • An information providing apparatus equipped with a camera includes: an imaging unit configured to take an image of a preset area with the camera and obtain the taken image; a display output module configured to display the taken image as a displayed image on an image display device; a receiver configured to wirelessly receive operating information, which regards a user's operation performed via a pointing device and includes at least coordinates-related information, from the pointing device; and an operating information processor configured to perform processing based on the received operating information and display result of the processing to be superimposed on the displayed image, wherein the imaging unit, the display output module, the receiver and the operating information processor are all accommodated in a single housing.
    • 配备有照相机的信息提供装置包括:成像单元,被配置为用相机拍摄预设区域的图像并获得拍摄图像; 显示输出模块,被配置为将图像作为显示图像显示在图像显示装置上; 接收器,被配置为无线地接收操作信息,所述操作信息涉及通过指示设备执行的用户的操作并且至少包括坐标相关信息; 以及操作信息处理器,被配置为基于所接收的操作信息和要显示的图像上叠加的处理的显示结果执行处理,其中所述成像单元,显示输出模块,接收器和操作信息处理器都被容纳在 单一住房。
    • 3. 发明授权
    • Imaging device and autofocusing method
    • 成像装置和自动对焦方法
    • US08040427B2
    • 2011-10-18
    • US11946180
    • 2007-11-28
    • Masaaki Toguchi
    • Masaaki Toguchi
    • H04N5/232
    • G03B3/10G02B7/36
    • In a digital video camera according to one aspect of the invention, a black level of a video signal is specified during an initialization process. An autofocusing process obtains an AF evaluation value and a brightness evaluation value at each current position of a compensator lens and updates a maximum AF evaluation value and a corresponding position of the compensator lens based on the obtained data. The autofocusing process also detects an AGC gain, computes an offset value of the AF evaluation value from the detected AGC gain, the obtained brightness evaluation value, and the specified black level, and calculates a threshold value from the computed offset value and the updated maximum AF evaluation value. When the obtained AF evaluation value is less than the calculated threshold value, the lens position corresponding to the maximum AF evaluation value is specified as the focus position. When the obtained AF evaluation value is not less than the calculated threshold value, on the other hand, this series of processing is repeated with a position shift of the compensator lens by a preset number of steps. This arrangement ensures efficient and precise hill-climbing autofocus control in view of the potential influence of high frequency noise in the digital video camera or another electronic camera.
    • 在根据本发明的一个方面的数字摄像机中,在初始化处理期间指定视频信号的黑电平。 自动对焦处理在补偿透镜的每个当前位置处获得AF评估值和亮度评估值,并且基于获得的数据更新补偿透镜的最大AF评估值和相应位置。 自动对焦过程还检测AGC增益,从检测到的AGC增益,所获得的亮度评估值和指定的黑色电平计算AF评估值的偏移值,并根据计算的偏移值和更新的最大值计算阈值 AF评估值。 当获得的AF评价值小于计算出的阈值时,将与最大AF评价值对应的透镜位置指定为聚焦位置。 当所获得的AF评估值不小于计算的阈值时,另一方面,通过补偿透镜的位置偏移预定的步数来重复该系列处理。 考虑到数字摄像机或其他电子照相机中高频噪声的潜在影响,这种布置确保了高效和精确的爬山自动对焦控制。
    • 4. 发明授权
    • Imaging device
    • 成像设备
    • US07343091B2
    • 2008-03-11
    • US11194026
    • 2005-07-28
    • Kazuhiro SukenariHiroshi Yamakose
    • Kazuhiro SukenariHiroshi Yamakose
    • G03B15/03
    • H04N1/04G03B15/03G03B17/561G03B27/54H04N5/2256H04N2201/0418H04N2201/0422H04N2201/0436
    • To provide an imaging device that can use a single illumination device to offer a light source suitable for imaging a translucent target object, while also enabling the imaging device to be mounted on a platform such as a desk.In case of slide film imaging, an illumination unit holding arm 150 is rotated into a position at a table side and an illumination unit 130 is brought into a sub illuminating attitude where the illumination unit 130 is laid over a top surface of the table 110. On that condition, a film stage 200 is mounted on the table 110 in a manner opposed to a camera head 120, and front end of a stage 202 is overlapped with and engaged to upper end of a casing of the illumination unit 130 that takes the sub illuminating attitude. Light irradiated by the illumination unit 130 in this state enters a region under the stage 202 of the film stage 200, goes through an opening 210 of the stage 202, and at last reaches the camera head 120.
    • 为了提供可以使用单个照明装置来提供适于对半透明目标物体进行成像的光源的成像装置,同时还使成像装置能够安装在诸如桌子的平台上。 在幻灯片成像的情况下,照明单元保持臂150旋转到台面的位置,并且照明单元130进入副照明姿势,其中照明单元130放置在桌子110的顶表面上。 在这种情况下,胶片台200以与相机头120相对的方式安装在桌子110上,舞台202的前端与照明单元130的壳体的上端重叠并与其接合, 分明亮的态度。 在这种状态下由照明单元130照射的光进入胶片台200的台202下方的区域,穿过台202的开口210,并且最后到达相机头120。
    • 5. 发明申请
    • Imaging device
    • 成像设备
    • US20070003274A1
    • 2007-01-04
    • US11274852
    • 2005-11-14
    • Kazuhiro Sukenari
    • Kazuhiro Sukenari
    • G03B17/00
    • F16M11/2021F16M11/10F16M2200/041G03B17/561Y10T16/54
    • To make more effective use of the circumference of arm rotation while assisting the arm rotation in terms of the rotatability of an arm that holds a camera head, resulting in a more compact device. The imaging device 100 holds a camera head 120 against a table 110 by means of a camera holding arm 140, and the camera holding arm 140 is axially supported rotatably so that the degree of incline relative to the table 110 is variable. A coil spring 260 is incorporated in a through hole 203b, as well as a recess 143k continuous therewith, about the axis of a first subaxial pin 220 aligned with the axis of the arm axial support. The coil spring 260 assists rotation by building up coil spring stress while the camera holding arm 140 (base 143) rotates toward the table 110, and by allowing the coil spring stress to be exerted in the form of assisting force on the arm when the base 143 rotates in such a way that the angle of incline with the table 110 expands.
    • 为了更有效地利用臂旋转的周边,同时在保持摄像头的臂的可旋转性方面辅助臂旋转,导致更紧凑的装置。 成像装置100通过照相机保持臂140将相机头120保持抵靠桌子110,并且照相机保持臂140被可旋转地轴向支撑,使得相对于桌子110的倾斜度是可变的。 螺旋弹簧260围绕与臂轴向支撑件的轴线对准的第一子轴销220的轴线并入通孔203b以及与其连续的凹槽143k。 螺旋弹簧260通过在照相机保持臂140(基座143)朝向工作台110旋转的同时通过建立螺旋弹簧应力来辅助旋转,并且通过使得当基座上的螺旋弹簧应力以辅助力的形式施加在臂上时 143以这样的方式旋转,使得与桌子110的倾斜角度膨胀。