Characterization of buried objects using wideband signals

C. Fossati, Dong Han, S. Bourennane
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Abstract

This paper deals with buried object localization using a towed flexible array of sensors. We consider a new model by taking into account both the reflection and the refraction of wave at water-sediment interface. A new directional vector containing the bearings and the ranges of objects is proposed instead of classical plane wave used in MUSIC algorithm. To decorrelate the received signals and to estimate the coherent signal subspace a fast focusing operator is proposed. The robust DIRECT (DIviding RECTangles) method accelerated by spline interpolation is applied to estimate simultaneously the bearings and the ranges in the presence of phase errors. The performance of the developed methods is investigated on experimental data recorded during underwater acoustics experiments.
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本文研究了利用拖曳式柔性传感器阵列进行地埋目标定位的方法。我们考虑了波在水-沉积物界面的反射和折射,建立了一个新的模型。提出了一种新的包含目标方位和距离的方向矢量,取代了MUSIC算法中使用的经典平面波。为了实现接收信号的去相关和相干信号子空间的估计,提出了一种快速聚焦算子。采用样条插值加速的鲁棒DIRECT(划分矩形)方法,在存在相位误差的情况下同时估计轴承和距离。利用水声实验记录的实验数据对所提出的方法进行了性能分析。
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