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    • 1. 发明授权
    • Head-mounted image display apparatus
    • 头戴式图像显示装置
    • US6144347A
    • 2000-11-07
    • US170095
    • 1998-10-13
    • Motoshi MizoguchiMasahiko Ito
    • Motoshi MizoguchiMasahiko Ito
    • G02B7/12G02B27/00G02B27/01H04N13/00G09G5/00
    • H04N13/044G02B27/0172G02B27/0176G02B2027/0127G02B2027/0132G02B2027/0136G02B2027/0154G02B2027/0156G02B2027/0159G02B2027/0178G02B27/017G02B7/12H04N13/0425H04N13/0436
    • A head-mounted image display apparatus includes optical visual units mounted on a laterally disposed shaft and adjustable so as to be movable toward and away from each other for establishing a correct eye spacing for a user. LCD display panels are mounted within the optical visual units so as to be vertically movable while ocular lenses onto which images displayed by the LCDs are projected via an obliquely arranged mirror are positionally fixed relative the eyes of the user such that focus adjustment will not cause image dropout and so that focus and eye spacing may be established independently of each other. Sliders provided for effecting focus and eye spacing adjustment are mounted such that frictional force is applied thereto for providing smooth but sure movement of the sliders so that a set position of the sliders may be reliably maintained. The sliders may be mounted via a self lubricating mounting to improve adjustment smoothness and slide characteristics.
    • 头戴式图像显示装置包括安装在横向设置的轴上的可调节的光学可视单元,以便可以彼此移动和移开,以便为用户建立正确的眼睛间隔。 液晶显示面板安装在光学可视单元内,以便可以垂直移动,而由LCD显示的图像经由倾斜布置的反射镜投射到的眼镜片相对于用户的眼睛位置固定,使得聚焦调节不会引起图像 从而可以彼此独立地建立焦点和眼睛间隔。 设置用于实现焦点和眼睛间距调整的滑动件被安装成使得摩擦力被施加到其上以提供滑块的平滑但可靠的移动,使得可以可靠地保持滑块的设定位置。 滑块可以通过自润滑安装来安装,以提高调节平滑度和滑动特性。
    • 4. 发明授权
    • Stereoscopic user interface method and apparatus
    • 立体用户界面方法和装置
    • US6064354A
    • 2000-05-16
    • US108814
    • 1998-07-01
    • Michael Joseph DeLuca
    • Michael Joseph DeLuca
    • G02B27/22G06F3/00G06F3/01G06F3/033G06F3/042G06K9/00G09G5/14H04N13/00G09G5/00
    • G06F3/011G02B27/22G06F3/0304G06K9/00335G09G5/14H04N13/004H04N13/0278H04N13/0472H04N13/0475H04N13/0497G09G2340/10H04N13/0289H04N13/0402H04N13/0422H04N13/0425H04N13/0431H04N13/0434H04N13/0438H04N13/044H04N13/0459
    • A computer system stereoscopically projects a three dimensional object having an interface image in a space observable by a user. The user controls the movement of a physical object within the space while observing both the three dimensionally projected object and the physical object. The computer system monitors the position of the user to determine the position of the interface image within the space and further monitors the movement of the physical object to determine its position. A control signal is generated in response to the position of the physical object intersecting the position of the interface image. For example, a word processing program is indicated by an interface image such as an icon including the letter "W" three dimensionally projected within the space. The word processing program is activated when the user's finger moves within the space to touch the projected icon. The interface allows the user to observe the projected icon, physical finger and their intersection within the space. The physical object may also be extended with a stereoscopic extension image generated by the computer system in response to determining the position and orientation of the physical object.
    • 计算机系统立体地将具有接口图像的三维物体投射到用户可观察到的空间中。 用户在观察三维投影的物体和物体的同时控制物体在空间内的移动。 计算机系统监视用户的位置以确定该空间内的界面图像的位置,并进一步监视物理对象的移动以确定其位置。 响应于与接口图像的位置相交的物理对象的位置而产生控制信号。 例如,文字处理程序由在空间内三维投影的包括字母“W”的图标的界面图像表示。 当用户的手指在空间内移动以触摸投影图标时,字处理程序被激活。 该界面允许用户在空间内观察投影图标,物理手指及其交叉点。 响应于确定物理对象的位置和取向,物理对象也可以由计算机系统产生的立体扩展图像扩展。
    • 7. 发明授权
    • System for viewing stereoscopic images
    • 用于观看立体图像的系统
    • US5854706A
    • 1998-12-29
    • US730402
    • 1996-10-15
    • Cristian I. Alb
    • Cristian I. Alb
    • G02B27/26H04N13/00
    • H04N13/0434G02B27/26H04N13/0239H04N13/0285H04N13/0425H04N13/0459H04N13/0497
    • An improved stereoscopic image displaying system is disclosed. A pair of adjacent image displaying means generate a stereoscopic pair of images. A semitransparent mirror and two polarizing filters merge the two images in the same virtual space and impart distinctive polarization to light rays carrying the two images displayed. A louver type filter suppresses the residual view generated by one of the displaying means. The louvers will allow only the image reflected on said semitransparent mirror to pass. A second louver type filter compensates the attenuation that the first louver type filter has introduced, in such a way that the two combined images are of adequately similar intensity. A user wearing polarizing spectacles can see a clear stereoscopic image from a variety of angles.
    • 公开了一种改进的立体图像显示系统。 一对相邻的图像显示装置产生立体图像对。 半透明镜和两个偏振滤光片将两个图像合并在相同的虚拟空间中,并赋予携带显示的两个图像的光线具有鲜明的极化。 百叶窗型过滤器抑制由显示装置之一产生的残差。 百叶窗只允许所述半透明镜反射的图像通过。 第二百叶窗型滤波器以这样的方式补偿第一百叶窗型滤波器引入的衰减,使得两个组合的图像具有足够相似的强度。 佩戴偏振眼镜的用户可以从各种角度看到清晰的立体图像。
    • 9. 发明授权
    • Full color three dimensional projector
    • 全彩三维投影机
    • US5575548A
    • 1996-11-19
    • US508447
    • 1995-07-28
    • Dong-Hee Lee
    • Dong-Hee Lee
    • G03B33/12G02B27/26H04N5/74H04N9/31H04N13/00H04N15/00G03B35/22G03B21/28
    • H04N13/0422H04N13/0434H04N13/0459H04N9/3105H04N9/3167H04N13/0425
    • Disclosed is a full color three dimensional projector comprising a light source for emitting light, a condensing means for condensing the emitted light and converting the light into a parallel light, a color separating means for separating the parallel light into red, blue and green color components, a first means for splitting the red component into polarized beams and for forming the optical image of the red component, a second means for splitting the blue component into polarized beams and for forming the optical image of the blue component and a third means for splitting the green component into polarized beams and for forming the optical image of the green component. The total size of the system can be reduced and the heat loss can be largely reduced.
    • 公开了一种全色三维投影仪,其包括用于发光的光源,用于聚集发射的光并将光转换成平行光的聚光装置,用于将平行光分离成红色,蓝色和绿色成分的分色装置 用于将红色分量分解为偏振光束并形成红色分量的光学图像的第一装置,用于将蓝色分量分解成偏振光束并用于形成蓝色分量的光学图像的第二装置和用于分割的第三装置 将绿色分量转换为偏振光束并形成绿色分量的光学图像。 可以减小系统的总体尺寸,大大减少热损失。