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    • 21. 发明申请
    • AN APPARATUS AND METHOD FOR ROAD ACCIDENT RISK REDUCTION
    • 一种用于道路风险降低的装置和方法
    • WO2012078028A1
    • 2012-06-14
    • PCT/MY2011/000127
    • 2011-06-22
    • MIMOS BERHADHON, Hock WoonTHEN, Siu Jing
    • HON, Hock WoonTHEN, Siu Jing
    • G08G1/04
    • G08G1/04G08G1/096783G08G1/162
    • The present invention provides a method for monitoring and detecting vehicles at risk of a car accident in a high-risk accident area. The method comprises fusing a motion sensing device on the surface of a road in one moving direction at the high risk- area, wherein the motion sensing device comprising four detection bars operable to detect a passing vehicle based light intensity change detected through the detection bars; acquiring timing information of the passing vehicle passing through each of the four detection bar of the motion-sensing device to interpret velocities and accelerations of the passing vehicle; determining a potential road-accident hazard based on the interpreted velocities and accelerations of the moving vehicle; providing a warning signal for an opposing moving direction when the potential road-accident hazard is determined; and storing the timing information acquired and interpreted in a database of a microcontroller of the motion sensing device.
    • 本发明提供了一种在高风险事故区域内监测和检测车祸风险的方法。 该方法包括在高风险区域沿一个移动方向将运动感测装置熔接在道路表面上,其中运动感测装置包括四个检测杆,可操作以检测通过检测杆检测到的基于车辆的光强变化; 获取通过运动感测装置的四个检测条中的每一个的通过车辆的定时信息,以解释经过车辆的速度和加速度; 基于移动车辆的解释速度和加速度确定潜在的道路交通事故危险; 当确定潜在的道路交通事故危险时,为相反的移动方向提供警告信号; 以及将获取和解释的定时信息存储在运动感测装置的微控制器的数据库中。
    • 27. 发明申请
    • AN ONLINE ORTHOGONAL PROJECTION SYSTEM
    • 在线正交投影系统
    • WO2010147451A1
    • 2010-12-23
    • PCT/MY2010/000091
    • 2010-06-02
    • MIMOS BERHADHON, Hock WoonYONG, Yen san
    • HON, Hock WoonYONG, Yen san
    • G03B21/00G06T1/00H04N9/12
    • H04N9/31G03B21/00G03B37/04G06T3/00H04N9/3147H04N9/3185
    • An online orthogonal projection system (100) is provided that includes at least two imaging input means (103, 105), a storage means (101), wherein the storage means (101) includes radiance, light intensity and geometric distortion factors, an image registration module (107), wherein the at least two imaging inputs (103, 105) are fed into the image registration module (107), at least two geometric transform modules (109, 111), wherein output from the image registration module (107) are fed into the at least two geometric transform modules (109, 111), wherein the storage means (101) is used to process geometric transformation, at least two radiance transform modules (113, 115), wherein output from the geometric transform modules (109, 111) are fed into the at least two radiance transform modules (113, 115), wherein the storage means (101) is used to process radiance transformation and an image splitter (117), wherein the image splitter (117) decomposes a resulting composite image into at least two component images to be displayed in a first projecting device (119) and a second projecting device (121), wherein a combination of both projections result in a final composite image, wherein the system is used with at least two projectors (119, 121) that are disposed such that both projectors (119, 121) are at a predetermined angle range of 85° to 95° from each projector.
    • 提供了一种在线正交投影系统(100),其包括至少两个成像输入装置(103,105),存储装置(101),其中存储装置(101)包括辐射度,光强度和几何失真因子,图像 注册模块(107),其中所述至少两个成像输入(103,105)被馈送到所述图像配准模块(107)中,至少两个几何变换模块(109,111),其中从所述图像配准模块(107) )被馈送到所述至少两个几何变换模块(109,111)中,其中所述存储装置(101)用于处理几何变换,至少两个辐射变换模块(113,115),其中来自所述几何变换模块 (109,111)被馈送到所述至少两个辐射变换模块(113,115)中,其中所述存储装置(101)用于处理辐射变换和图像分离器(117),其中所述图像分离器(117)分解 一个结果合成的图像变成了 要在第一投影设备(119)和第二投影设备(121)中显示的至少两个分量图像,其中两个投影的组合导致最终合成图像,其中该系统与至少两个投影仪(119, 121)被设置为使得两个投影仪(119,121)处于距每个投影仪85°至95°的预定角度范围。
    • 28. 发明申请
    • APPARATUS AND METHOD FOR MULTIPLE-VIEW PANORAMIC IMAGING
    • 用于多视图全景图成像的装置和方法
    • WO2009061170A3
    • 2009-10-15
    • PCT/MY2008000131
    • 2008-11-10
    • MIMOS BERHADHON HOCK WOON
    • HON HOCK WOON
    • H04N5/262H04N5/265H04N9/07
    • H04N13/0221H04N5/2251H04N5/232H04N5/23238H04N13/021H04N13/0296H04N2213/001
    • The present invention relates to apparatus and method for multiple-view panoramic imaging. According to one aspect of the present invention, the apparatus for multiple-view panoramic imaging includes a line-scan camera (107), a rotary stage (103), a capture plane (108), and a controller (111, 112) for each panoramic and multiple-view rotation. The apparatus further includes a frame grabber as signal capturing device (109) and master clock (110) for motion and image synchronization. The method for multiple-view panoramic imaging comprising capturing and generating multiple-view panoramic images using a single line-scan camera (107) wherein the camera (107) has 2 (two) distant centers (104, 105) of rotation enabling multiple-view rotation and panoramic rotation. Panoramic rotation is a rotation of the rotary stage (103) while the multiple-view rotation is a rotation by a capture plane (108).
    • 本发明涉及用于多视野全景成像的设备和方法。 根据本发明的一个方面,用于多视野全景成像的设备包括线扫描照相机(107),旋转台(103),捕捉平面(108)和控制器(111,112),用于 每个全景和多视角旋转。 该设备还包括作为信号捕获设备(109)的帧抓取器和用于运动和图像同步的主时钟(110)。 所述用于多视野全景成像的方法包括使用单个线扫描相机(107)捕获并生成多视野全景图像,其中所述相机(107)具有2个(两个)旋转中心(104,105) 查看旋转和全景旋转。 全景旋转是旋转台(103)的旋转,而多视图旋转是捕捉平面(108)的旋转。