首页> 外文会议>SPIE Conference on Chemical, Biological, Radiological, Nuclear, and Explosives CBRNE Sensing >Design of Dual-Road Transportable Portal Monitoring System for Design of Dual-Road Transportable Portal Monitoring System for
【24h】

Design of Dual-Road Transportable Portal Monitoring System for Design of Dual-Road Transportable Portal Monitoring System for

机译:双道运输门户监测系统设计双道可运输门户监测系统设计

获取原文

摘要

The use of radiation sensors as portal monitors is increasing due to heightened concerns over the smuggling of fissile material. Transportable systems that can detect significant quantities of fissile material that might be present in vehicular traffic are of particular interest, especially if they can be rapidly deployed to different locations. To serve this application, we have constructed a rapid-deployment portal monitor that uses visible-light and gamma-ray imaging to allow simultaneous monitoring of multiple lanes of traffic from the side of a roadway. The system operation uses machine vision methods on the visible-light images to detect vehicles as they enter and exit the field of view and to measure their position in each frame. The visible-light and gamma-ray cameras are synchronized which allows the gamma-ray imager to harvest gamma-ray data specific to each vehicle, integrating its radiation signature for the entire time that it is in the field of view. Thus our system creates vehicle-specific radiation signatures and avoids source confusion problems that plague non-imaging approaches to the same problem. Our current prototype instrument was designed for measurement of upto five lanes of freeway traffic with a pair of instruments, one on either side of the roadway. Stereoscopic cameras are used with a third "alignment" camera for motion compensation and are mounted on a 50' deployable mast. In this paper we discuss the design considerations for the machine-vision system, the algorithms used for vehicle detection and position estimates, and the overall architecture of the system. We also discuss system calibration for rapid deployment. We conclude with notes on preliminary performance and deployment.
机译:由于在裂变材料的走私材料上升,因此使用辐射传感器作为门户监测器正在增加。可以检测在车辆交通中可能存在的大量裂变材料的可移动系统特别感兴趣,特别是如果它们可以快速部署到不同的位置。为服务此应用程序,我们构建了一种快速部署门户监视器,使用可见光和伽马射线成像,以便在道路侧同时监控多个交通渠道。系统操作在可见光图像上使用机器视觉方法来检测车辆,然后进入并退出视野并测量它们在每个帧中的位置。可见光和伽马射线摄像机是同步的,其允许伽马射线成像器收获特定于每个车辆的伽马射线数据,整合其辐射签名在其在视野中的整个时间。因此,我们的系统创造了车辆特定的辐射签名,避免了扰乱非成像方法对同一问题的源困惑问题。我们目前的原型仪器专为测量高速公路交通的衡量,乐队在道路两侧。立体相机与第三个“对准”相机一起使用,用于运动补偿,并安装在50英尺可展开的桅杆上。在本文中,我们讨论了机器视觉系统的设计考虑因素,用于车辆检测和位置估计的算法以及系统的整体架构。我们还讨论了快速部署的系统校准。我们通过关于初步表现和部署的说明来结束。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号