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    • 57. 发明申请
    • NIGHT VISION DETECTION ENHANCEMENTS IN A DISPLAY SYSTEM
    • 显示系统中的夜视觉检测增强
    • WO2016154712A1
    • 2016-10-06
    • PCT/CA2015/000208
    • 2015-03-31
    • CAE INC.
    • LASNIER, Sylvain
    • G02B23/12G02B27/01G06F19/00G09G5/06H04N19/597H04N13/02
    • G09G5/06G02B23/125G02B27/01
    • A method and a display system for dynamically activating a night-vision mode comprising. The display system comprises a processor module that further comprises an image generator module. The processor module is for determining at least a head position of a user in the display system, the head position being used at least for geometry-correction purposes and, while determining the head position, determining that a night-vision-enhancer device is activated by the user. The processor module is further for activating the night-vision mode of the display system and the image generator module, upon activation of the night-vision mode of the display system, renders night-vision-enhanced images of a computer generated environment for display. The night-vision-enhanced images present a night-mode-adapted wavelength spectrum.
    • 一种用于动态激活夜视模式的方法和显示系统,包括: 显示系统包括进一步包括图像发生器模块的处理器模块。 处理器模块用于确定显示系统中用户的至少头部位置,至少用于几何校正目的使用头部位置,并且在确定头部位置的同时确定夜视增强器设备被激活 由用户 处理器模块还用于在显示系统的夜视模式激活时激活显示系统和图像发生器模块的夜视模式,从而使计算机生成的环境的夜视增强图像显示。 夜视增强图像呈现夜间模式适应的波长谱。
    • 59. 发明申请
    • REMOVABLE DISPLAY FOR OPTICAL DEVICE
    • 用于光学设备的可拆卸显示器
    • WO2014126721A1
    • 2014-08-21
    • PCT/US2014/013802
    • 2014-01-30
    • EXELIS INC.
    • FATHALIPOUR, ParissaBROWN, Rawlin, H.BANDY, Gregory, S.GARRIS, Eric
    • G02B27/01G02B7/02G02B23/12
    • G02B27/0149G02B7/022G02B7/026G02B23/125G02B2027/0156
    • An optical apparatus for viewing one or more images including (i) an optical device for enhancing the one or more images and having a surface defining mechanical threads; (ii) a display device having a display for presenting information that is removably attached to the optical device, the display device including a surface defining mechanical threads for mating with the mechanical threads of the optical device; and (iii) a lock ring that is mounted to the mechanical threads of the optical device, said lock ring being positioned between the display device and the optical device, wherein the lock ring is rotatably positioned on the mechanical threads of the optical device to move toward and bear on a surface of the display device in order to either limit or prevent the display device from further rotation on the mechanical threads of the optical device.
    • 一种用于观看一个或多个图像的光学装置,包括(i)用于增强一个或多个图像并具有限定机械螺纹的表面的光学装置; (ii)显示装置,具有用于显示可移除地附接到所述光学装置的信息的显示器,所述显示装置包括限定用于与所述光学装置的机械螺纹配合的机械螺纹的表面; 和(iii)安装在所述光学装置的机械螺纹上的锁定环,所述锁定环位于所述显示装置和所述光学装置之间,其中所述锁定环可旋转地定位在所述光学装置的机械螺纹上以移动 朝向并承载在显示装置的表面上,以便限制或防止显示装置在光学装置的机械螺纹上进一步旋转。
    • 60. 发明申请
    • APERTURE MECHANISM FOR NIGHT VISION GOGGLES FOR USE IN AIRCRAFT SIMULATOR OR OTHER SIMULATORS
    • 用于飞机模拟器或其他模拟器的夜视镜的光学机构
    • WO2014051844A3
    • 2014-06-26
    • PCT/US2013052168
    • 2013-07-26
    • VERAXX ENGINEERING CORP
    • SMITH CHARLES
    • G02B23/12
    • G02B5/005G02B23/125G09B9/00G09B9/003
    • An aperture mechanism for night vision goggles (NVG) has a first end, a second end, a lens engaging portion, and a cone portion. A lens engaging portion has a recession allowing attachment of the aperture mechanism to a light admitting end of the NVG. A cone portion is opposite the lens engaging portion. Together the lens engaging portion and the cone portion form an aperture. The aperture mechanism increases the depth of field of the NVG for applications involving small object-to-goggle distances, such as in simulators or simulator environments. In a simulator system, the aperture mechanism can be attached to NVG such that at least a portion of light from a display screen is blocked. The light output of the display screen can be increased such that the depth of field remains higher but the image produced does not become darker.
    • 用于夜视镜(NVG)的光圈机构具有第一端,第二端,透镜接合部分和锥形部分。 透镜接合部分具有允许孔径机构附接到NVG的光入射端的凹陷。 锥形部分与透镜接合部分相对。 透镜接合部分和锥体部分一起形成孔。 孔径机构增加了涉及小对象到护目镜距离的应用的NVG的景深,例如在模拟器或模拟器环境中。 在模拟器系统中,光阑机构可以附接到NVG,使得来自显示屏的光的至少一部分被阻挡。 可以增加显示屏幕的光输出,使得景深保持较高,但是所产生的图像不会变暗。