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    • 3. 发明授权
    • Multi-display device and multi-display system
    • 多显示设备和多显示系统
    • US06513938B2
    • 2003-02-04
    • US09803710
    • 2001-03-09
    • Akihiro KubotaYasuhiro KomiyaMasaki Higurashi
    • Akihiro KubotaYasuhiro KomiyaMasaki Higurashi
    • G03B2126
    • G03B21/10H04N9/3147
    • The present invention provides a multi-display device that has a plurality of projectors and constructs one image as a whole. Partial images projected on a screen from the projectors overlap to have the edges thereof superposed on edges of adjoining partial images in shared fields on the screen. A sheet interceptor intercepts part of light to be projected on a shared field so that the luminance level in the shared field will agree with the luminance levels in the other fields except the shared fields. An interceptor portion of the sheet interceptor, which intercepts light from the right-hand side of a range on the screen within which a partial image is projected, can be displaced horizontally relative to an interceptor portion thereof that intercepts light from the left-hand side thereof. Likewise, an interceptor portion of the sheet interceptor that intercepts light from the upper side of the projected range can be displaced vertically relative to an interceptor portion thereof that intercepts light from the lower side thereof.
    • 本发明提供一种多显示装置,其具有多个投影仪并构成一个图像作为整体。 从投影仪投影在屏幕上的部分图像重叠,使其边缘叠加在屏幕上的共享字段中的相邻部分图像的边缘上。 薄片拦截器拦截要投射在共享场上的光的一部分,使得共享字段中的亮度级别与除了共享字段之外的其他字段中的亮度级别一致。 拦截来自屏幕上的范围右侧的光的拦截器部分可以相对于其拦截来自左侧的光的拦截器部分水平移位 其中。 同样地,拦截来自投影范围的上侧的光的片材拦截器的拦截器部分可以相对于其截取来自其下侧的光的拦截器部分垂直移位。
    • 4. 发明授权
    • Image calibration device and image calibration method
    • 图像校准装置和图像校准方法
    • US06771307B2
    • 2004-08-03
    • US09797103
    • 2001-03-01
    • Mitsuji WakiTadashi NishioAkihiro KubotaMasaki Higurashi
    • Mitsuji WakiTadashi NishioAkihiro KubotaMasaki Higurashi
    • H04N1700
    • H04N9/3147
    • In an image calibration device 10, a calibration pattern is projected onto a screen 4 from each projector 3 under control of a personal computer or other calibration device 10a, pictures are taken by a digital camera or other image pick-up device 11, and the results are supplied to the calibration device 10a. The calibration device 10a uses the supplied picture data to calculate parameters in order to perform picture positioning, color adjustment, brightness adjustment and other adjustments and corrections, and based on the calculation results transforms the original picture data, generates and supplies signals indicating projection conditions to each of the projectors 3, and performs image calibration control of the pictures projected by each projector 3. Here at the time of taking pictures, by installing on the image pick-up device 11 a shielding member 12 formed into a tetragonal pyramid shape, the light-receiving part of the image pick-up device 11 and the screen are completely shielded from ambient external light. By this means, the measurement precision of the image pick-up device 11 is improved, and accurate and reliable image calibration is performed.
    • 在图像校准装置10中,在个人计算机或其他校准装置10a的控制下,将校准图案投影到来自每个投影仪3的屏幕4上,图像由数码相机或其他图像拾取装置11拍摄,并且 结果被提供给校准装置10a。 校准装置10a使用所提供的图像数据来计算参数以执行图像定位,颜色调整,亮度调整和其他调整和校正,并且基于计算结果,转换原始图像数据,生成并提供指示投影条件的信号 每个投影仪3,并且对每个投影仪3投射的图像执行图像校准控制。这里,在拍摄时,通过在摄像装置11上安装形成四边形棱锥形的遮光构件12, 图像拾取装置11的光接收部分和屏幕完​​全屏蔽环境外部光。 通过这种方式,提高了图像拾取装置11的测量精度,并且执行了精确和可靠的图像校准。
    • 7. 发明授权
    • Image display device
    • 图像显示装置
    • US06674415B2
    • 2004-01-06
    • US09809140
    • 2001-03-15
    • Tomoyuki NakamuraSusumu KobayashiAkihiro KubotaHiroyoshi Kobayashi
    • Tomoyuki NakamuraSusumu KobayashiAkihiro KubotaHiroyoshi Kobayashi
    • G09G330
    • H04N9/3138G02B26/125H04N5/7441H04N9/12H04N9/3117H04N9/3147H04N9/3185H04N9/3194
    • Three lines' worth of an image are displayed on a columnar display unit 11 comprising a plurality (for example, three) of one-dimensional display devices; this image light beam is made incident on perpendicular deflection means 14, and using the perpendicular deflection means 14, this image light beam is deflected and scanned at high speed in directions perpendicular to the longitudinal direction of the columnar display unit 11 to obtain a two-dimensional image. A plurality of one-dimensional display devices is used, so that compared with conventional devices in which only a single one-dimensional display device is used, even if the rewrite speed (scanning speed) per one-dimensional display device is slow, good image quality free of flicker can be obtained. By further extending this in a configuration using a plurality of columnar display units, a single image can be divided into a plurality of images and displayed in a row on a screen. In order to prevent seams in this juxtaposed display of a plurality of images from being conspicuous, when overlapping parts are provided in the scanned range of the plurality of images, a correction image capture member 47, correction computation member 48, and correction processing member 49 can be used to correct the brightness of the overlapping parts, enabling display of a single high-resolution, large-screen image.
    • 三行的图像显示在包括多个(例如三个)一维显示装置的柱状显示单元11上; 该图像光束入射到垂直偏转装置14上,并且使用垂直偏转装置14,该图像光束在垂直于柱状显示单元11的纵向的方向上以高速偏转和扫描, 三维图像。 使用多个一维显示装置,与仅使用单个一维显示装置的现有装置相比,即使每一维显示装置的重写速度(扫描速度)较慢,也可以使用良好的图像 可以获得无闪烁的质量。 通过使用多个柱状显示单元在配置中进一步扩展它,可以将单个图像划分为多个图像并在屏幕上以行显示。 为了防止多个图像的并列显示中的接缝显眼,当在多个图像的扫描范围中设置重叠部分时,校正图像捕获部件47,校正计算部件48和校正处理部件49 可用于校正重叠部分的亮度,可显示单个高分辨率大屏幕图像。
    • 9. 发明申请
    • Imaging device
    • 成像设备
    • US20050219378A1
    • 2005-10-06
    • US11089775
    • 2005-03-25
    • Akihiro KubotaShinzo Matsui
    • Akihiro KubotaShinzo Matsui
    • H04N5/232H04N5/228H04N7/01
    • H04N7/0135H04N7/0105H04N7/0112
    • This imaging device includes an imaging element, a field rate conversion processing section, and a frame rate conversion processing section. The imaging element converts an image of a photoelectric subject photographically, and outputs a picture image signal which consists of frames at a first frame rate. The field rate conversion processing section converts the picture image signal at the first frame rate into a television signal at a second frame rate which is smaller than the first frame rate. The frame rate conversion processing section converts the picture image signal at the first frame rate into a cinema film signal at a third frame rate which is smaller than the first frame rate, and which is different from the second frame rate.
    • 该成像装置包括成像元件,场速率转换处理部分和帧速率转换处理部分。 成像元件照相机转换光电对象的图像,并以第一帧速率输出由帧组成的图像信号。 场速转换处理部分以比第一帧速率低的第二帧速率将第一帧速率的图像信号转换成电视信号。 帧速率转换处理部分将第一帧速率的图像信号以比第一帧速率小的第三帧速率转换成电影胶片信号,并且与第二帧率不同。