基于相位的小型地下目标近距离检测及双基地宽波束天线局部粗糙表面表征

B. Sai, L. Ligthart
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引用次数: 1

摘要

提出了一种新的基于多静态相位的探地雷达技术,用于精确表征三维空间中的粗糙表面,并巧妙地检测埋在地空界面下的弱对比散射目标。该技术已通过宽带步进频率探地雷达在复合表面上测量的数据进行了测试,该复合表面由平坦表面,几个小的粗糙表面孤立区域和浅埋塑料物体作为替代地雷的区域组成。粗糙表面的最大高度和埋藏介质物体的最大深度小于一个实际距离分辨率单元。在测量中使用的频率范围内,被埋物体与其周围介质的介电对比度较低。采用宽带天线,具有低增益和宽波束宽度。结果与M14型埋地塑料矿(直径5 cm,高4.2 cm)等离散散射物的实际分布和连续散射物(粗糙表面)的实际形状吻合较好。此外,还提出了一种新的基于空间的降噪处理方法。处理后的结果显示出比先前得到的精度和聚焦模式更好的结果。这种技术既不需要对背景介质的先验知识,也不需要任何纯粹的背景测量。
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Near-range phase-based detection of small subsurface objects and characterization of local rough surfaces with bistatic wide-beamwidth antennas
A new multistatic phase-based GPR technique for precise characterization of rough surfaces in three-dimensional space and for ingenious detection of weak-contrast scattering objects buried beneath the air-ground interface is proposed. The technique has been tested by the data measured using wideband stepped-frequency GPR over the compound surface, which consists of flat surface, several small isolated areas of rough surfaces and areas with shallowly buried plastic objects as surrogate landmines. The maximum height of rough surfaces and the maximum depth of buried dielectric objects are made less than one practical range resolution cell. The buried objects have low dielectric contrast against their surrounding medium in the frequency range used in the measurements. The antennas adopted are broadband, have low gain and wide beamwidth. The results show good agreement with the actual distribution of the discrete scattering objects such as buried plastic M14 type mine (5 cm in diameter and 4.2 cm in height) and with the real shape of continuous scatterers (rough surfaces). Moreover a new spatial-based processing method is described for noise reduction and the measurement errors. The processed results show better accuracy and focusing patterns than those previously obtained. This technique neither requires a priori knowledge about the background medium nor needs any pure background measurement.
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