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Qualitative model of spatio-temporal radiation pattern of GPR antenna

机译:GPR天线时空辐射方向图定性模型

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In our recent work, a simple qualitative model of a dipole GPR antenna radiation pattern has been developed. Replacing the real resistively-loaded dipole by an infinite line current source stretched along the ground-air interface reduces derivation to a 2D boundary value problem for a scalar wave equation which admits an exact analytical solution. Using the complex variable technique we express the Green function in terms of elementary functions and obtain the spatio-temporal radiation pattern for an arbitrary current pulse form by Duhamel integral. In spite of this simplification, the constructed solution describes quite well the ultra-wideband (UWB) pulse emitted by a realistic GPR antenna. These analytical results are useful for the interpretation of GPR raw data by giving a full description of the pulse amplitude and waveform dependence on the radiation angle. Moreover, an inverse problem can be solved: to find the unknown antenna current pulse from the signal measured in the air half-space. Two cases are considered: the surface wave and the aerial wave propagating upwards. This information gives the possibility to deconvolve the subsurface probing data thus increasing the GPR resolution.
机译:在我们最近的工作中,已经开发出偶极GPR天线辐射方向图的简单定性模型。用沿地面-空气界面伸展的无限线电流源代替实际的电阻性负载偶极子,可减少对标量波动方程的二维边界值问题的推导,该问题允许采用精确的解析解。使用复变量技术,我们用基本函数表示格林函数,并通过Duhamel积分获得任意电流脉冲形式的时空辐射方向图。尽管进行了这种简化,但是所构造的解决方案很好地描述了实际GPR天线发射的超宽带(UWB)脉冲。这些分析结果通过完整描述脉冲幅度和与辐射角度有关的波形,可用于解释GPR原始数据。此外,可以解决一个反问题:从空气半空间中测得的信号中找出未知的天线电流脉冲。考虑了两种情况:表面波和向上传播的天线波。该信息提供了对地下探测数据进行反卷积的可能性,从而提高了GPR分辨率。

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