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Enhancement of reflected waves in single-hole polarimetric borehole radar measurement

机译:单孔极化钻孔雷达测量中反射波的增强

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A polarimetric approach is presented to extract information of reflected waves that is masked by the transmitter-receiver directly coupled wave in a single-hole borehole radar measurement. Radar polarimetry theory is expanded to an omnidirectional radar system with electric and magnetic dipoles arranged on the same axis. First, we formulate the transfer functions directly coupled between the antennas for cross-hole and single-hole arrangements in copolarized channels. We found that the theoretical scattering matrices of the direct-wave coupling is identical to the scattering matrix from a dihedral corner reflector. Second, we also consider signals in polarimetric channel of a wave reflected from a plane scatter in single-hole arrangements. As advanced reflection borehole radar measurement, we demonstrate a technique for both reduction of the directly coupled wave and enhancement of the reflected waves from a plane fracture with measured data in dipole-dipole and slot-slot antenna combinations. For quantitative determination of the scattering matrix, we use a technique to compensate the antenna transfer functions by the time derivative of the directly coupled signals in single-hole measurement. Also, we propose a technique to reduce the directly coupled component by adding vertical (VV) and horizontal (HH) signals and we showed that the directly coupled wave is effectively reduced and reflected waves are enhanced with experimental data. Finally, we show that this technique is more useful for near-range reflector detection than a conventional subtraction technique with moving average of the measured waveforms.
机译:提出了一种极化方法来提取反射波的信息,该反射波在单孔井眼雷达测量中被发射器-接收器直接耦合波所掩盖。雷达极化测量理论已扩展为具有在同一轴上排列的电磁偶极子的全向雷达系统。首先,我们制定了直接耦合在同极化信道中的交叉孔和单孔排列天线之间的传递函数。我们发现,直接波耦合的理论散射矩阵与二面角反射器的散射矩阵相同。其次,我们还考虑了单孔排列中从平面散射反射的波的极化通道中的信号。作为先进的反射式井下雷达测量,我们展示了一种技术,该技术既可以减少直接耦合波,又可以利用偶极-偶极天线和缝隙-缝隙天线组合中的测量数据来增强来自平面裂缝的反射波。为了定量确定散射矩阵,我们使用一种技术来通过单孔测量中直接耦合信号的时间导数来补偿天线传递函数。此外,我们提出了一种通过添加垂直(VV)和水平(HH)信号来减少直接耦合分量的技术,并且我们证明了通过实验数据可以有效地减少直接耦合波并增强反射波。最后,我们表明,该技术比起具有测量波形移动平均值的传统减法技术,对近距离反射镜更有用。

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