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    • 1. 发明申请
    • CONTROLLABLE STILL FRAME VIDEO TRANSMISSION SYSTEM
    • 可控静态帧视频传输系统
    • WO1999011069A1
    • 1999-03-04
    • PCT/CA1997000603
    • 1997-08-25
    • DIGITAL SECURITY CONTROLS LTD.PARKER, James
    • DIGITAL SECURITY CONTROLS LTD.
    • H04N07/18
    • H04N7/181
    • A video capture controller for selective capture of video images from a plurality of video cameras, the capture controller having multiple video signal inputs for receiving signals from video source devices, an arrangement for receiving input signals from a security system, a processor for processing the received input signals of such arrangement and comparing the received signals with a predetermined set of possible received signals and, based thereon, determining a particular video capture protocol from a set of video capture protocols associated with the set of possible received signals, and a controller associated with the multiple video signal inputs and the processor, the controller having a video output, the controller selectively connecting the multiple video inputs with the video output based on the particular protocol determined by the processor.
    • 一种用于从多个摄像机选择性地捕获视频图像的视频捕获控制器,所述捕获控制器具有用于从视频源设备接收信号的多个视频信号输入,用于从安全系统接收输入信号的装置,用于处理所接收的 输入信号,并将接收到的信号与预定的一组可能的接收信号进行比较,并且基于此,从与该组可能的接收信号相关联的一组视频捕获协议中确定特定的视频采集协议, 所述多个视频信号输入和所述处理器,所述控制器具有视频输出,所述控制器基于由所述处理器确定的特定协议,选择性地将所述多个视频输入与所述视频输出连接。
    • 4. 发明申请
    • WIDE VISUAL-FIELD RECOGNIZING SYSTEM
    • 宽视场识别系统
    • WO1997031484A1
    • 1997-08-28
    • PCT/JP1997000480
    • 1997-02-21
    • KABUSHIKI KAISHA YOKOTA SEISAKUSHOYOKOTA, Hiroshi
    • KABUSHIKI KAISHA YOKOTA SEISAKUSHO
    • H04N07/18
    • H04N7/181
    • A wide visual-field recognizing system that can easily recognize the approximate original image of an object by accepting the image distortion at an object image pickup step and then performing an image distortion correcting process, thus solving the disadvantage due to a blind spot in a conventional recognizing device. The recognizing system includes an image pickup unit (1) having a wide-angle lens, an image processing unit (2) for correcting a picked image to an image analogous to the original image through an arithmetic processing, and a display (3) for displaying the output image from the image processing unit (2). The image processing unit (2) selects an interesting area of a pickup image and then performs and image processing to correct the image distortion of the area, to provide a three-dimensional image based on images picked up by a plurality of image pickup devices at the same time, and to reconfigure an image having a wider image area, thus easily recognizing an approximate original image of an object.
    • 一种宽视觉识别系统,其可以通过接受对象图像拾取步骤中的图像失真并且然后执行图像失真校正处理来容易地识别对象的近似原始图像,从而解决了常规的盲点的缺点 识别装置。 识别系统包括具有广角镜头的图像拾取单元(1),用于通过算术处理将采集图像校正为与原始图像类似的图像的图像处理单元(2),以及用于 从图像处理单元(2)显示输出图像。 图像处理单元(2)选择拾取图像的感兴趣区域,然后执行和图像处理以校正区域的图像失真,以基于由多个图像拾取装置拾取的图像提供三维图像 同时重新配置具有更宽图像区域的图像,从而容易地识别对象的近似原始图像。
    • 5. 发明申请
    • DIRECT DIGITAL AIRBORNE PANORAMIC CAMERA SYSTEM AND METHOD
    • 直接数字空中全景相机系统及方法
    • WO1996038003A1
    • 1996-11-28
    • PCT/US1996006771
    • 1996-05-13
    • OMNI SOLUTIONS INERNATIONAL, LTD.
    • OMNI SOLUTIONS INERNATIONAL, LTD.HEDGES, Thomas, M.WEIR, David, G.SPEASL, Jerry, A.
    • H04N07/18
    • H04N5/23274G01C11/025G01V8/10H04N5/23248H04N5/23258H04N5/33H04N5/332
    • The present invention relates to an improved airborne, direct digital panoramic camera system and method in which an in-line electro-optical sensor (80) operating in conjunction with a data handling unit (82), a controller unit (84), and real time archive unit (86), eliminates the need for photographic film and film transport apparatus normally associated with prior art airborne reconnaissance cameras and yet still retains the very high image resolution quality which is so important in intelligence operations and commercial geographic information systems (GIS), mapping and other remote sensing applications. Precise geographic data for the system is provided by the use of navigation aids which include the Global Positioning Satellite (GPS) System (14) and an airborne platform carried GPS receiver (85). The present invention provides a simpler, more efficient and less costly panoramic camera by utilizing a simpler and less expensive line-focus type of lens in conjunction with an electro-optical line array sensor.
    • 本发明涉及一种改进的机载的直接数字全景照相机系统和方法,其中与数据处理单元(82),控制器单元(84)和实际相结合的串联电光传感器(80) 时间归档单元(86),消除了对通常与现有技术的机载侦察摄像机相关联的摄影胶片和胶片传输设备的需要,并且仍然保持在智能操作和商业地理信息系统(GIS)中如此重要的非常高的图像分辨率质量, 映射和其他遥感应用。 通过使用包括全球定位卫星(GPS)系统(14)和机载平台携带的GPS接收机(85)的导航设备提供了系统的精确地理数据。 本发明通过结合电光线阵列传感器利用更简单且更便宜的线对焦类型的透镜来提供更简单,更有效和更便宜的全景照相机。
    • 9. 发明申请
    • THREE-DIMENSIONAL PHENOTYPIC MEASURING SYSTEM FOR ANIMALS
    • 动物三维平面测量系统
    • WO1995028807A1
    • 1995-10-26
    • PCT/US1995004370
    • 1995-04-10
    • PHENO IMAGING, INC.
    • PHENO IMAGING, INC.ELLIS, James, S.
    • H04N07/18
    • H04N7/18A01K11/006A01K29/005G01B11/002G01B11/24
    • A system (132, 136) measures the three-dimensional phenotypic characteristics of an animal (108), such as a dairy cow. The system uses a large number of modulated laser light beams (111) from a laser camera (132) to measure approximately 100 points per square inch of the animal. Each laser beam measures intensity, horizontal, vertical, and depth dimensions, and by combining the measurements, the system composes a very accurate three-dimensional image of the animal. The system (132, 136) calculates the desired phenotypic measurements for conformation of the animal by combining measurements of selected points on the animal. The system then stores the measurements for each animal in a computer data base (412) for later use. The system also stores a light intensity image of the animal's markings which is compared to other stored images.
    • 系统(132,136)测量动物(108)(例如奶牛)的三维表型特征。 该系统使用大量来自激光照相机(132)的调制激光束(111)来测量动物的每平方英寸大约100点。 每个激光束测量强度,水平,垂直和深度尺寸,通过组合测量,系统构成动物的非常准确的三维图像。 系统(132,136)通过组合动物上的选定点的测量来计算用于动物构象的期望的表型测量。 然后,该系统将每个动物的测量值存储在计算机数据库(412)中供以后使用。 该系统还存储与其他存储的图像相比较的动物标记的光强度图像。