A novel ultrawideband FDTD numerical modeling of ground penetrating radar on arbitrary dispersive soils

L. Mescia, P. Bia, D. Caratelli
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引用次数: 0

Abstract

A novel two-dimensional (2-D) finite-difference time-domain algorithm for modeling ultrawideband pulse propagation in arbitrary dispersive soils is presented. The soil dispersion is modeled by general power law series representation, accounting for multiple higher order dispersive relaxation processes and ohmic losses, and incorporated into the FDTD scheme by using the fractional derivative operators. The dispersive soil parameters are obtained by fitting the reported experimental data. Moreover, dedicated uniaxial perfectly matched layer for matching dispersive media are derived and implemented in combination with the basic time-marching scheme. Examples are given to verify the numerical solution and demonstrate its applications. The proposed technique features a significantly enhanced accuracy in the solution of complex electromagnetic propagation problems typically encountered in geoscience applications.
任意色散土壤上探地雷达超宽带时域有限差分数值模拟
提出了一种新的二维时域有限差分算法,用于模拟任意色散土壤中的超宽带脉冲传播。土壤色散采用一般幂律级数表示,考虑了多个高阶色散松弛过程和欧姆损耗,并通过分数阶导数算子纳入FDTD格式。通过拟合已报道的实验数据,得到了分散土的参数。结合基本时间推进方案,推导并实现了用于色散介质匹配的专用单轴完美匹配层。算例验证了数值解的正确性和应用。所提出的技术在解决地球科学应用中通常遇到的复杂电磁传播问题时具有显着提高的准确性。
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