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Subsurface target identification using phase profiling of impulse GPR data

机译:使用脉冲GPR数据的相位分析识别地下目标

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The problem of target discrimination in ground penetrating radar data (GPR) is addressed in this study. Formerly developed frequency-domain technique based on building separate amplitude and phase profiles for every A-scan has been modified to be suitable also for impulse GPR data. To this end, impulse radar data have been preprocessed and transformed to frequency domain. The rest of the algorithm is rather similar to the case of frequency-domain radar data. The method yields a phase profile as a function of depth that is related to the phase shift occurring in the act of reflection of the wave from inhomogeneity existing at given depth. This phase shift depends on the contrast between the target and surrounding medium and thus can be used for target characterization. The technique was used to interpret data collected over a test site, where metal bars and a plastic pipe were buried inside sand and gravel. The radar data was collected with Malâ''s CX11 Concrete Imaging System operating at the 1600 MHz central frequency. The images built with the use of the novel signal processing technique demonstrate its validity for recognition of some buried objects.
机译:这项研究解决了地面穿透雷达数据(GPR)中目标识别的问题。以前开发的基于为每个A扫描建立单独的幅度和相位分布图的频域技术已被修改为也适用于脉冲GPR数据。为此,脉冲雷达数据已经过预处理并转换到频域。该算法的其余部分与频域雷达数据的情况非常相似。该方法产生作为深度的函数的相位轮廓,该轮廓与在给定深度处存在的不均匀性引起的波的反射动作中发生的相移有关。该相移取决于目标与周围介质之间的对比度,因此可用于目标表征。该技术用于解释在测试现场收集的数据,在测试现场,金属棒和塑料管埋在沙子和砾石中。雷达数据是通过在1600 MHz中心频率下运行的Mal’CX11混凝土成像系统收集的。使用新型信号处理技术构建的图像证明了其对于识别某些掩埋物体的有效性。

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