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LOCATION ESTIMATION USING A BROADBAND ELECTROMAGNETIC INDUCTION ARRAY

机译:使用宽带电磁感应阵列的位置估计

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摘要

A broadband quadrapole electromagnetic induction (EMI) array with one transmitter and three receiver coils is built for detecting buried metallic targets. In this paper, it is shown that the locations of multiple metallic targets including their depth and cross-range position can be estimated accurately with the EMI array using an orthogonal matching pursuit (OMP) approach. Conventional OMP approaches use measurement dictionaries generated for each possible target space point which results in huge dictionaries for the 3D location problem. This paper exploits the inherent shifting properties of the scanning system to reduce the size of the dictionary used in OMP and to lower the computation cost for possibly a real-time EMI location estimation system. The method is tested on both simulated and experimental data collected over metal spheres at different depths and accurate location estimates were obtained. This method allows EMI to be used as a pre-screener and results in valuable location estimates that could be used by a multi-modal GPR or other sensor for enhanced operation.
机译:建立了一个带一个发射器和三个接收器线圈的宽带四极电磁感应(EMI)阵列,用于检测掩埋的金属目标。本文表明,使用正交匹配追踪(OMP)方法可以通过EMI阵列准确估计多个金属目标的位置,包括其深度和跨范围位置。传统的OMP方法使用为每个可能的目标空间点生成的测量字典,这将导致3D位置问题的字典庞大。本文利用扫描系统的固有移位特性来减少OMP中使用的字典的大小,并降低可能用于实时EMI位置估计系统的计算成本。在不同深度的金属球上收集的模拟和实验数据上测试了该方法,并获得了准确的位置估计。这种方法允许将EMI用作预屏蔽器,并产生有价值的位置估计值,该估计值可以由多模式GPR或其他传感器用于增强操作。

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