首页> 外文会议>Sensors, and Command, Control, Communications, and Intelligence(C3I) Technologies for Homeland Security and Homeland Defense IV pt.1 >Through-wall imaging and characterization of human activity using ultrawideband (UWB) random noise radar
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Through-wall imaging and characterization of human activity using ultrawideband (UWB) random noise radar

机译:使用超宽带(UWB)随机噪声雷达对人体活动进行穿墙成像和表征

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Recent terrorist activities and law-enforcement situations involving hostage situations underscore the need for effective through-wall imaging. Current building interior imaging systems are based on short-pulse waveforms, which require specially designed antennas to subdue unwanted ringing. In addition, periodically transmitted pulses of energy are easily recognizable by the intelligent adversary who may employ appropriate countermeasures to confound detection. A coherent polarimetric random noise radar architecture is being developed based on UWB technology and software defined radio, which has great promise in its ability to covertly image obscured targets. The main advantages of the random noise radar lie in two aspects: first, random noise waveform has an ideal "thumbtack" ambiguity function, i.e., its down range and cross range resolution can be separately controlled, thus providing unambiguous high resolution imaging at any distance; second, random noise waveform is inherently low probability of intercept (LPI) and low probability of detection (LPD), i.e., it is immune from detection, jamming, and interference. Thus, it is an ideal candidate sensor for covert imaging of obscured regions in hostile environments. The coherency in the system can be exploited to field a fully-polarimetric system that can take advantage of polarization features in target recognition. Moving personnel can also be detected using Doppler processing. Simulation studies are used to analyze backscattered signals from the walls, and humans and other targets behind the walls. Real-time data processing shows human activity behind the wall and human target tracking. The high resolution provides excellent multipath and clutter rejection.
机译:最近的恐怖活动和涉及人质的执法情况突显了对有效穿墙成像的需求。当前的建筑物内部成像系统基于短脉冲波形,短脉冲波形需要专门设计的天线来抑制不必要的振铃。此外,聪明的对手很容易识别周期性发送的能量脉冲,他们可能会采取适当的对策来混淆检测。基于UWB技术和软件定义的无线电,正在开发一种相干的极化随机噪声雷达架构,这在隐蔽地对被遮挡的目标成像方面具有很大的希望。随机噪声雷达的主要优点有两个方面:首先,随机噪声波形具有理想的“ thumbtack”歧义函数,即,其下射程和跨射程分辨率可以单独控制,因此可在任何距离提供清晰的高分辨率成像;第二,随机噪声波形本来就具有较低的拦截概率(LPI)和较低的检测概率(LPD),即不受检测,干扰和干扰的影响。因此,它是在敌对环境中对隐蔽区域进行隐蔽成像的理想候选传感器。可以利用系统中的相干性来部署全极化系统,该系统可以在目标识别中利用极化特征。移动人员也可以使用多普勒处理进行检测。仿真研究用于分析墙壁,人和墙壁后面的其他目标的反向散射信号。实时数据处理显示了墙后的人类活动和目标追踪。高分辨率可提供出色的多径和杂波抑制。

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