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Distributed/embedded sub-surface sensors for imaging buried objects with reduced mutual coupling and suppressed electromagnetic emissions

机译:分布式/嵌入式地下传感器,用于以相互耦合减少和电磁辐射抑制的方式对掩埋物体成像

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The proliferation of strategic subsurface targets has increased the need for remote sensing techniques providing for the accurate detection and identification of deeply buried objects. A new RF Tomographic Technique is proposed in this concept paper for developing RF CAT Scans of buried objects using spectral, spatial/angular, and polarization diversity. This tomographic imaging technique, developed by Wicks and presented in GPR 2004 [1], uses embedded subsurface radiators, delivered by earth-penetrating non-explosive, electronic “e-bombs”, as the source of strong underground radiated transmissions. Distributed surface-contact sensors are used to collect the tomographic data for relay to a UAV and transmission to a remote site. Three-dimensional imaging algorithms have been developed to detect, image, and characterize deeply buried targets. By embedding the transmitters underground, reduced mutual coupling and EM emissions, and improved signal-to-noise ratios can be achieved. Simple surface SAR experiments over deep mine shafts have been performed to validate the 3D processing algorithms using 2D surface SAR sensor data. WIPL-D models have also been used to simulate the embedded and distributed sensors and to verify the significant enhancement in the received signal-to-noise ratio obtained by burying radiators under the surface.
机译:战略性地下目标的激增增加了对遥感技术的需求,这些技术可提供对深埋物体的准确检测和识别。在此概念文件中提出了一种新的RF层析成像技术,该技术可利用光谱,空间/角度和极化分集来开发掩埋物体的RF CAT扫描。由Wicks开发并在2004年GPR [1]中提出的这种断层成像技术,使用了埋入地下的辐射器,这些辐射器是通过穿透地球的非爆炸性电子“电子炸弹”提供的,作为强大的地下辐射传输的来源。分布式表面接触传感器用于收集断层图像数据,以中继到无人机并传输到远程站点。已经开发了三维成像算法来检测,成像和表征深埋目标。通过将变送器嵌入地下,可以减少相互耦合和EM辐射,并提高信噪比。已经执行了在深部矿井上的简单表面SAR实验,以验证使用2D表面SAR传感器数据的3D处理算法。 WIPL-D模型也已用于模拟嵌入式和分布式传感器,并验证通过将辐射体埋在地下而获得的接收信噪比的显着提高。

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