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Experimental implementation and assessment of two polarimetric calibration approaches applied for a fully polarimetric borehole radar

机译:用于全极化井眼雷达的两种极化校准方法的实验实现和评估

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摘要

A fully polarimetric borehole radar system with four combinations of dipole and cylindrical slot antennas was developed to acquire fully polarimetric datasets in drilled boreholes. This system in conjunction with several radar polarimetry techniques has proved to be a good alternative to physical subsurface fracture characterization. Furthermore, such polarimetry techniques, namely Pauli decomposition, eigenvector-based decomposition, Durden-Freeman decomposition and polarimetric anisotropy parameter methods, can provide comparable performances in terms of fracture characterization and classification. Polarimetric calibration to determine a scattering matrix (Sinclare matrix) is the foremost procedure in the radar polarimetry processing chain. In this paper, we experimentally implement and evaluate two polarimetric calibration approaches, namely (1) cross-hole polarimetric calibration and (2) single-hole polarimetric calibration, utilizing fully polarimetric datasets acquired at a specific borehole test site. Both polarimetric calibration approaches can guarantee the further implementation of radar polarimetry techniques, and especially, the single-hole polarimetric calibration will be very meaningful to practical applications.
机译:开发了具有偶极子和圆柱形缝隙天线的四种组合的全极化钻孔雷达系统,以获取钻孔中的全极化数据集。该系统结合几种雷达极化技术已被证明是物理地下裂缝表征的良好替代方案。此外,这样的极化技术,即Pauli分解,基于特征向量的分解,Durden-Freeman分解和极化各向异性参数方法,可以在断裂特征和分类方面提供可比的性能。极化校准以确定散射矩阵(Sinclare矩阵)是雷达极化处理链中最重要的过程。在本文中,我们利用在特定井眼测试地点获得的全极化数据集,实验性地实施和评估两种极化校准方法,即(1)跨孔极化校准和(2)单孔极化校准。两种极化校准方法都可以保证雷达极化技术的进一步实施,尤其是单孔极化校准对实际应用将非常有意义。

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