会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 61. 发明公开
    • True-perspective texture/shading processor
    • 用正确的透视纹理阴影处理设备。
    • EP0144924A2
    • 1985-06-19
    • EP84114506.3
    • 1984-11-29
    • GENERAL ELECTRIC COMPANY
    • Sims, Edward MitfordChandler, Jimmy Everett
    • G06F15/72
    • G09B9/301G06T15/50G06T15/80
    • A low cost, true-perspective texture/shading processor (16) for a raster graphics display is based on a mathematical model which defines modulations globally over the entire simulated, visual environment. The mathematical model uses planes defined in three-dimensional space to define the texture modulation. These texture planes are all orthogonal to a single gradient in a flat reference plane and may cut across any number of faces. The texture/shading processor is used in a computer image generator of the type wherein computations are performed in sequence by a plurality of functional groups. The first group (11) manages a visual data base (10) and transfers data to the active environment storage of the second group (12). The first group determines the position of the view point and any moving models in a common coordinate system and generates the trigonometric coefficients required for perspective transformation. The second group reduces the three-dimensional description of the environment supplied by the first group to a two-dimensional description, makes perspective transformation of data into coordinates of a view window and assigns a priority to each surface of the computed scene. The third group reduces the two-dimensional description generated by the second group to a scan line by generating edge data (14) to locate where edges cross the scan line and responds to the assigned priorities (15) to eliminate hidden surfaces and generates the video for display (17) including edge smoothing, shading and texture effects. The second group further includes a face modulation processore (13) for computing data describing each texture and shading model and data describing the plane of each textured or shaded face. The texture/shading processor (16) is in the third group and is responsive to initialization data from the first group and the data computed by the face modulation processor for computing texture and shading modulation signals.
    • 63. 发明公开
    • IMMERSIVE VEHICLE SIMULATOR APPARATUS AND METHOD
    • VERFAHREN独立的FAHRZEUGSIMULATORVORRICHTUNG
    • EP3136372A1
    • 2017-03-01
    • EP15182891.0
    • 2015-08-28
    • BAE Systems PLC
    • The designation of the inventor has not yet been filed
    • G09B9/08G09B9/30
    • G09B9/08G09B9/301G09B9/302G09B9/307
    • A mixed reality vehicle control, e.g. flight, simulator comprising a headset (100) for placing over a user's eyes, in use, said headset including a screen, the simulator further comprising a processor configured to display on said screen a three dimensional environment consisting of virtual scenery, one or more interactive controls (204) for enabling a user (200) to simulate vehicle control actions, said processor being further configured to receive, from said one or more interactive controls, data representative of one or more parameters determinative of vehicle movement and update said scenery displayed on said screen in accordance with said parameters so as to simulate vehicle movement therein.
    • 混合现实车辆控制,例如 飞行模拟器,包括用于在使用中放置在用户的眼睛上的耳机(100),所述耳机包括屏幕,所述耳机包括屏幕,所述模拟器还包括处理器,其被配置为在所述屏幕上显示由虚拟风景组成的三维环境,一个或多个交互式 用于使得用户(200)能够模拟车辆控制动作的控制器(204),所述处理器还被配置为从所述一个或多个交互式控制器接收代表确定车辆运动的一个或多个参数的数据,并且更新所显示的所述风景 所述屏幕根据所述参数,以模拟车辆在其中的移动。
    • 65. 发明公开
    • Apparatus and method for simulating sensor imagery
    • 的装置和方法的图像传感器的模拟
    • EP1369706A3
    • 2010-04-28
    • EP03004024.0
    • 2003-02-24
    • L-3 Communications Corporation
    • Turner, James A.
    • G09B9/00G09B9/30G01S17/02G09B9/40
    • G09B9/301G09B9/40
    • The present invention provides a simulation for displaying a screen formulated from data, such as a FLIR sensor, relying on color definitions that are more readily supported by common image generators, most preferably 8-bit per channel RGB color processing and video output. The system has an image generator that transmits a video signal of at least two digital data channels, and a display system with a combiner circuit and a visual display device. The bit sets of the channels each represent a respective value of the data variable at a resolution for that channel, and the bit sets of the second channel each represent a respective value of the data variable at a second resolution higher than the resolution of the first channel. Combiner circuitry receives the channels of video output and processes these channels to select the channel which represents the accurate data unaffected by clamping. It is preferred to provide at least three channels of pixel data representing the value of the display data, in three different resolutions and ranges, high resolution; middle resolution and low resolution. In the preferred embodiment, the data displayed on the display device are simulated FLIR infra-red intensities, which correlate to the temperatures of the simulated objects being viewed. Preferably, the ranges of different resolution IR data encompass the ambient temperature being simulated, because attenuation of infra-red in reality tends to compress all detected infra-red temperatures to a narrow field around ambient temperature.
    • 66. 发明公开
    • Forward looking virtual imaging
    • Vorwärtsgerichtete virtuelle Bildgebung
    • EP1840861A2
    • 2007-10-03
    • EP07447017.0
    • 2007-03-09
    • Martin, Jose
    • Martin, Jose
    • G09B9/36G09B9/30
    • G09B9/36G01C21/30G01C23/005G09B9/301G09B29/10
    • A method of inputting information from an On-Board Avionics & Instrumentation to a FLVI Engine using a communications interface, determining a navigational state by the FLVI Engine from the information, selecting imagery from a data base, synchronizing the imagery with the navigational state, and outputting the synchronizing images to a display. A forward looking virtual imaging system for an operator of a vehicle having a forward looking virtual imaging engine, where the forward looking virtual imaging engine processes input information, outputs vehicle position data and outputs image data based on the input information and vehicle position data to a display device, and where the display device continuous displays images to the operator in real time that approximates the actual conditions that surround the vehicle.
    • 一种使用通信接口从车载航空电子设备向FLVI引擎输入信息的方法,根据信息确定FLVI引擎的导航状态,从数据库中选择图像,将图像与导航状态同步,以及 将同步图像输出到显示器。 一种用于具有前瞻性虚拟成像引擎的车辆操作者的前瞻性虚拟成像系统,其中前瞻性虚拟成像引擎处理输入信息,输出车辆位置数据,并且基于输入信息和车辆位置数据将图像数据输出到 显示设备,以及显示设备连续地向操作者显示图像,其近似于车辆周围的实际状况。