Analysis of time interpolation for enhanced resolution GPR data

A. Strange
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引用次数: 6

Abstract

In GPR applications where the antenna is subject to fast movement, vibration or rapid changes in the surface properties, it is desirable to decrease the time required to acquire a complete time domain trace to prevent the distortion of subsurface features between traces. One survey practice that can be adopted to minimize this effect is to decrease the number samples per trace during acquisition. This approach, however, decreases the precision of quantitative subsurface layer thickness measurements due to the timing uncertainty between samples. One processing method that can be applied to increase the measurement precision is interpolation along the time axis. Experiments were conducted to quantify the performance of two interpolation methods in which scans were acquired with both low and high number of samples per trace. The low resolution scans were interpolated to match the number of samples of the high resolution traces. The results show that there is a reduction in the target range error when interpolating along the time axis to increase the sampling resolution.
提高分辨率探地雷达数据的时间插值分析
在GPR应用中,天线受到快速运动、振动或表面特性快速变化的影响,需要减少获得完整时域迹线所需的时间,以防止迹线之间的地下特征失真。可以采用一种调查实践来最小化这种影响,即在获取过程中减少每个跟踪的样本数量。然而,由于样品之间的时间不确定性,这种方法降低了定量亚表层厚度测量的精度。一种可用于提高测量精度的处理方法是沿时间轴插值。实验进行了量化两种插值方法的性能,其中扫描获得低和高数量的样品每道。低分辨率扫描被内插以匹配高分辨率轨迹的样本数量。结果表明,沿时间轴插值可以减小目标距离误差,提高采样分辨率。
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