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    • 6. 发明申请
    • DISPLAY APPARATUS, DISPLAY METHOD, AND DISPLAY SYSTEM
    • 显示装置,显示方法和显示系统
    • US20100091098A1
    • 2010-04-15
    • US12560988
    • 2009-09-16
    • Kazunari YOSHIFUJIIsao OhashiTakuya OoiShuichi Takahashi
    • Kazunari YOSHIFUJIIsao OhashiTakuya OoiShuichi Takahashi
    • H04N13/04
    • H04N13/398H04N13/128H04N13/363
    • A display apparatus includes: a video display unit that converts a video signal containing information indicating the magnitude of disparity between left-eye and right-eye video images into video images and displays the video images on a screen; a projection distance detector that detects a projection distance that is the distance between the video display unit and the screen; a display size calculator that calculates the size of the video images displayed on the screen using the projection distance detected by the projection distance detector; a disparity magnitude detector that detects the information indicating the magnitude of disparity from the video signal; and a disparity magnitude adjuster that adjusts the magnitude of disparity using the size of the video images displayed on the screen and the information indicating the magnitude of disparity detected by the disparity magnitude detector.
    • 显示装置包括:视频显示单元,将包含指示左眼和右眼视频图像的视差大小的信息的视频信号转换为视频图像,并将视频图像显示在屏幕上; 投影距离检测器,其检测作为所述视频显示单元与所述屏幕之间的距离的投影距离; 显示尺寸计算器,使用由投影距离检测器检测到的投影距离来计算显示在屏幕上的视频图像的尺寸; 视差量值检测器,其从视频信号中检测指示视差大小的信息; 以及视差大小调节器,其使用显示在屏幕上的视频图像的大小和指示由视差检测器检测到的视差大小的信息来调整视差的大小。
    • 7. 发明授权
    • Imaging apparatus, imaging method, recording medium, and program
    • 成像装置,成像方法,记录介质和程序
    • US08687079B2
    • 2014-04-01
    • US12663538
    • 2008-06-30
    • Seiji KobayashiIsao OhashiYoshihiko Kuroki
    • Seiji KobayashiIsao OhashiYoshihiko Kuroki
    • H04N5/228
    • H04N9/79H04N5/23245H04N5/2352H04N5/77H04N7/0127H04N7/12
    • An imaging method, a recording medium, and a program which are capable of processing imaging data of a high rate in a manner similar to that of a normal frame rate. Image data captured by a solid-state imaging element capable of performing imaging at a high resolution and a high frame rate is supplied to a memory control unit. The memory control unit, at the same time as writing the imaging data input from the imaging element in a frame memory, reads preceding frames of imaging data that are recorded on the frame memory, and sequentially respectively outputs them in parallel, as video image data items for each frame, to respective camera signal processing units. Then, in the camera signal processing units, a video output unit, a viewfinder output unit, codec units, and recording units, processing similar to that in the case of a frame rate that is ¼ the imaging frame rate is executed.
    • 能够以与正常帧速率相似的方式处理高速率的成像数据的成像方法,记录介质和程序。 由能够以高分辨率和高帧率进行成像的固态成像元件拍摄的图像数据被提供给存储器控制单元。 存储器控制单元在将从帧存储器中的成像元件输入的成像数据写入同时读取记录在帧存储器上的成像数据的先前帧,并且顺序地分别输出它们作为视频图像数据 每个帧的项目,到相应的相机信号处理单元。 然后,在相机信号处理单元中,执行视频输出单元,取景器输出单元,编解码器单元和记录单元,与帧速率为1/4成像帧速率的情况相似的处理被执行。