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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Experimental and Modeled Performance of a Ground Penetrating Radar Antenna in Lossy Dielectrics
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Experimental and Modeled Performance of a Ground Penetrating Radar Antenna in Lossy Dielectrics

机译:有损耗电介质中探地雷达天线的实验和建模性能

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The way in which electromagnetic fields are transmitted and received by ground penetrating radar (GPR) antennas is crucial to the performance of GPR systems. Simple antennas have been characterized by analyzing their radiation patterns and directivity. However, there have been limited studies that combine real GPR antennas with realistic environments, which is essential to capture the complex interactions between the antenna and surroundings. We have investigated the radiation characteristics and sensitivity of a GPR antenna in a range of lossy dielectric environments using both physical measurements and a three-dimensional (3-D) finite-difference time-domain (FDTD) model. Experimental data were from measured responses of a target positioned at intervals on the circumference of a circle surrounding the H-plane of the antenna. A series of oil-in-water emulsions as well as tap water were used to simulate homogeneous materials with different permittivities and with complex conductivities. Numerical radiation patterns were created utilizing a detailed 3-D FDTD model of the antenna. Good correlation was shown between the experimental results and modeled data with respect to the strength of the main lobe within the critical angle window. However, there are discrepancies in the strength of main lobe at shallow angles. In all the dielectrics, the main lobes are generally broad due to the near-field observation distance but, as expected, become narrower with increasing permittivity. These results provide confidence for further use of the FDTD antenna model to investigate scenarios such as larger observation distances and heterogeneous environments that are difficult to study experimentally.
机译:探地雷达(GPR)天线发送和接收电磁场的方式对于GPR系统的性能至关重要。简单天线通过分析其辐射方向图和方向性来表征。然而,有限的研究将真实的GPR天线与现实环境结合起来,这对于捕获天线与周围环境之间的复杂相互作用至关重要。我们已经使用物理测量和三维(3-D)时域有限差分(FDTD)模型研究了有损介电环境中GPR天线的辐射特性和灵敏度。实验数据来自目标物的测量响应,该目标物以一定间隔位于围绕天线H面的圆的圆周上。一系列水包油乳液和自来水被用来模拟具有不同介电常数和复杂电导率的均质材料。利用天线的详细3-D FDTD模型创建了数值辐射图。关于临界角窗口内主瓣的强度,实验结果和建模数据之间显示出良好的相关性。但是,在浅角度时主瓣的强度存在差异。在所有电介质中,由于近场观察距离,主瓣通常较宽,但正如所料,随着介电常数的增加,其主瓣变窄。这些结果为进一步使用FDTD天线模型来研究诸如较大的观察距离和难以通过实验研究的异构环境等场景提供了信心。

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