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RF Tomography of Metallic Objects in Free Space: Preliminary Results

机译:自由空间中金属物体的RF层析成像:初步结果

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RF tomography has great potential in defense and homeland security applications. A distributed sensing research facility is under development at Air Force Research Lab. To develop a RF tomographic imaging system for the facility, preliminary experiments have been performed in an indoor range with 12 radar sensors distributed on a circle of 3m radius. Ultra-wideband pulses are used to illuminate single and multiple metallic targets. The echoes received by distributed sensors were processed and combined for tomography reconstruction. Traditional matched filter algorithm and truncated singular value decomposition (SVD) algorithm are compared in terms of their complexity, accuracy, and suitability for distributed processing. A new algorithm is proposed for shape reconstruction, which jointly estimates the object boundary and scatter points on the waveform's propagation path. The results show that the new algorithm allows accurate reconstruction of object shape, which is not available through the matched filter and truncated SVD algorithms.
机译:射频层析成像在国防和国土安全应用中具有巨大的潜力。空军研究实验室正在开发一种分布式传感研究设施。为了开发用于该设施的RF断层成像系统,已经在室内范围内进行了初步实验,其中12个雷达传感器分布在3m半径的圆上。超宽带脉冲用于照亮单个和多个金属目标。分布式传感器接收到的回波经过处理后再进行层析重建。比较了传统的匹配滤波器算法和截断奇异值分解(SVD)算法的复杂性,准确性和对分布式处理的适用性。提出了一种新的形状重构算法,该算法可以共同估计物体边界和波形传播路径上的散射点。结果表明,该新算法可以准确地重建对象形状,而通过匹配的滤波器和截短的SVD算法则无法实现。

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