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Computational Electromagnetic Modeling Simulation of Ultra Wideband Sub-Surface Sensors for the Detection and Imaging of Buried Objects Using Spatial and Spectral Diversity

机译:超宽带子表面传感器的计算电磁建模与埋藏物体检测和成像的超宽带子表面传感器

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摘要

An enhanced remote sensing technique for the detection and identification of deeply buried objects is presented in this paper. A new RF Tomographic Technique is proposed for developing RF CAT Scans of buried objects using spectral and spatial diversity. This imaging technique uses an embedded ring of subsurface radiators as the source of strong underground radiated transmissions. Distributed surface-contact sensors are used to collect the tomographic data for relay to a remote control site. Three-dimensional numerical imaging algorithms have been developed to detect, image, and characterize deeply buried objects. Distributed transmitters and receivers significantly increase unwanted mutual coupling and EM emissions that interfere with signal reception; however, by embedding the transmitters underground, reduced mutual coupling and EM emissions, and improved signal-to-noise ratios, can be achieved. Simple 2D surface SAR experiments over deep mine shafts were performed to validate and verify (V&V) the 3D processing algorithms using 2D surface SAR sensor data. The WIPL-D CEM Code was used to model and simulate (M&S) the embedded and distributed sensors and to verify the significant enhancement in the received signal-to-noise ratio obtained by burying the radiating antennas.
机译:本文介绍了一种增强的遥感技术,用于检测和识别深埋对象。提出了一种新的RF断层技术,用于使用光谱和空间多样性开发埋地物体的RF CAT扫描。该成像技术使用嵌入环的地下散热器作为强大地下辐射传输的源极。分布式表面接触传感器用于收集中继到遥控站点的断层扫描数据。已经开发了三维数值成像算法来检测,图像和表征深埋对象。分布式发射器和接收器显着增加了不希望的相互耦合和混干扰信号接收的排放;然而,通过将发射器嵌入地下,可以实现减少的相互耦合和EM排放和改善的信噪比。简单的2D表面SAR实验在深矿井轴上进行了使用2D表面SAR传感器数据验证和验证(V&V)3D处理算法。 WIPL-D CEM码用于模拟和模拟嵌入式和分布式传感器(M&S)并验证通过掩埋天线而获得的接收的信噪比的显着增强。

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