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Application of Multi-Static Inversion Algorithms to Landmine Detection

机译:多静态反演算法在地雷探测中的应用

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Multi-static ground-penetrating radar (GPR) uses an array of antennas to conduct a number of bistatic operations simultaneously. The multi-static GPR is used to obtain more information on the target of interest using angular diversity. An entirely computer controlled, multi-static GPR consisting of a linear array of six resistively-loaded vee dipoles (RVDs), a network analyzer, and a microwave switch matrix was developed to investigate the potential of multi-static inversion algorithms. The performance of a multi-static inversion algorithm is evaluated for targets buried in clean sand, targets buried under the ground covered by rocks, and targets held above the ground (in the air) using styrofoam supports. A synthetic-aperture, multi-static, time-domain GPR imaging algorithm is extended from conventional mono-static back-projection techniques and used to process the data. Good results are obtained for the clean surface and air targets; however, for targets buried under rocks, only the deeply buried targets could be accurately detected and located.
机译:多静电探地雷达(GPR)使用天线阵列同时进行许多双基地操作。多静态GPR用于通过角度分集获得有关目标目标的更多信息。为了研究多静态反演算法的潜力,开发了一种完全由计算机控制的多静态GPR,该GPR由六个电阻负载vee偶极子(RVD)的线性阵列,网络分析仪和微波开关矩阵组成。使用聚苯乙烯泡沫塑料支撑物评估埋在干净沙子中的目标,埋在被岩石覆盖的地下之下的目标以及保持在地面上方(空中)的目标的多静态反演算法的性能。合成孔径,多静态,时域GPR成像算法是从传统的单静态反投影技术扩展而来的,用于处理数据。清洁的表面和空气目标获得了良好的结果;但是,对于埋在岩石下的目标,只能准确地检测和定位深埋的目标。

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