首页> 外文会议>2011 IEEE International Conference on Technologies for Homeland Security >CSharp: Surreptitious standoff tagging and tracking system using passive nanotechnical transponders: A spiral research, development, test, engineering (RDTE) and production program
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CSharp: Surreptitious standoff tagging and tracking system using passive nanotechnical transponders: A spiral research, development, test, engineering (RDTE) and production program

机译:CSharp:使用被动纳米技术应答器的秘密对峙标记和跟踪系统:螺旋研究,开发,测试,工程(RDTE)和生产程序

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We report the development and successful testing at TRL-5 of a persistent (no-batteries) Surreptitious tagging and tracking system for vehicles, containers and personnel which can be applied and monitored at a distance, requiring no batteries in the target transponder. The system employs a metamaterial consisting of quantities of a novel nanotechnical device (size depending on frequency) in random configuration, with tunable electrodynamic and aerodynamic properties, the latter providing correct geometry and intermolecular (van der Waals) adherence of the transponders to a target. The transponder cluster appears as a smudge of dirt to the naked eye and acts to retroreflect a properly-tuned interrogating laser narrowly to its source, with a brightness measured to exceed a sheet of white paper (a perfect Lambertian reflector) by about 10 dB. Unique ID of the target is feasible using a “bar code” in the wavelength or frequency domain and a multi-wavelength interrogation. CSharp is considered ready for engineering and low-rate initial production (LRIP). Present and future applications include homeland security, intelligence and counterintelligence, counterterrorism and law enforcement, as well as defense. Other applications that have been studied but not tested include “smart chaff” with controlled peek-through and aerodynamic dispersion properties, and application to signaling clouds of frequency-selective obscurants.
机译:我们报告了TRL-5上用于车辆,集装箱和人员的持久(无电池)秘密标记和跟踪系统的开发和成功测试,该系统可以在远距离应用和监控,目标应答器中不需要电池。该系统采用超材料,该材料由大量新颖的纳米技术设备(大小取决于频率)组成,具有随机配置,具有可调节的电动力学和空气动力学特性,后者提供了应答器与目标之间正确的几何形状和分子间(范德华力)附着力。应答器簇在肉眼上看起来像是污垢,并起着将适当调谐的询问激光狭窄地反射回其源的作用,其亮度被测量超过一张白纸(完美的朗伯反射器)约10 dB。使用波长或频域中的“条形码”和多波长询问,可以实现目标的唯一ID。 CSharp被认为可用于工程设计和低速率初始生产(LRIP)。当前和将来的应用包括国土安全,情报和反情报,反恐和执法以及国防。已研究但未经测试的其他应用包括具有可控的透视和空气动力分散特性的“智能谷壳”,以及用于向频率选择性遮盖剂发出信号云的应用。

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