首页> 外文会议>Detection and sensing of mines, explosive objects, and obscured targets XV >Trace detection of explosives using an in-line high volume sampler, preconcentrator and Fido explosives detector
【24h】

Trace detection of explosives using an in-line high volume sampler, preconcentrator and Fido explosives detector

机译:使用在线大容量采样器,预浓缩器和Fido爆炸物检测器对爆炸物进行痕量检测

获取原文
获取原文并翻译 | 示例

摘要

This paper shall demonstrate the results of a prototype system to detect explosive objects and obscured contaminated targets. By combining a high volume sampling nozzle with an inline 2-stage preconcentrator and a Fido, greater standoff is achieved than with the Fido alone. The direct application of this system is on the Autonomous Mine Detection System (AMDS) but could be deployed on a large variety of robotic platforms. It is being developed under the auspices of the U.S. Army RDECOM CERDEC Night Vision and Electronic Sensors Directorate, Countermine Division.rnThis device is one of several detection tools and technologies to be used on the AMDS. These systems will have multiple, and at times, overlapping objectives. One objective is trace detection on the surface of an unknown potential target. By increasing the standoff capabilities of the detector, the fine manipulation of the robot deploying the detector is less critical. Current detectors used on robotic systems must either be directly in the vapor plume or make direct contact with the target. By increasing the standoff, detection is more easily and quickly achieved. The end result detector must overcome cross-contamination, sample throughput, and environmental issues. The paper will provide preliminary results of the prototype system to include data, and where feasible, video of testing results.
机译:本文应证明探测爆炸物和被遮挡的污染目标的原型系统的结果。通过将高容量采样喷嘴与在线两级预浓缩器和Fido结合使用,与单独使用Fido相比,可获得更大的防区隔。该系统的直接应用是在自主排雷检测系统(AMDS)上,但可以部署在各种各样的机器人平台上。该设备是在美国陆军RDECOM CERDEC夜视和反雷司的电子传感器部门的主持下开发的。该设备是AMDS上使用的几种检测工具和技术之一。这些系统将有多个目标,有时还会有重叠的目标。一个目标是在未知潜在目标的表面进行痕量检测。通过增加检测器的隔离能力,对部署检测器的机器人的精细操作就不再那么关键了。机器人系统上使用的电流检测器必须直接位于蒸气羽流中或与目标直接接触。通过增加隔离距离,可以更轻松,快速地实现检测。最终结果检测器必须克服交叉污染,样品通量和环境问题。本文将提供原型系统的初步结果,以包括数据,并在可行的情况下提供测试结果的视频。

著录项

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