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Implementation of ADI-FDTD subgrids in ground penetrating radar FDTD models

机译:探地雷达FDTD模型中ADI-FDTD子网格的实现

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Realistic numerical modeling of ground penetrating radar (GPR) using, the finite-difference time-domain (FDTD) method could greatly benefit from the implementation of subgrids - supporting finer spatial resolution - into the conventional FDTD mesh. This is particularly important, when parts of the computational domain need to be modeled in detail or when there are features or regions in the overall computational mesh with values of high dielectric constant Supporting propagation of waves at very short wavelengths. A scheme that simplifies the process of implementing these subgrids into the traditional FDTD method is presented. This scheme is based oil the combination of the standard HAD method and the unconditionally stable alternating-direction implicit (ADI) FDTD technique. Because ADI-FDTD is unconditionally stable its time-step can be set to ally Value that facilitates the accurate Calculation Of the fields. By doing so, the two grids call efficiently communicate information across their boundary Without requiring to use a costly time-interpolation scheme. This paper discusses the performance of ADI-FDTD subgrids when implemented into the traditional FDTD method, Using different communication schemes for the information exchange at the boundary of the two grids. The developed algorithm, call handle cases where the subgrid crosses dielectrically inhomogeneous media. In addition, results from the comparison between the proposed scheme and a commonly employed purely FDTD subgridding technique are presented.
机译:使用有限差分时域(FDTD)方法对地面穿透雷达(GPR)进行逼真的数值建模,可以大大受益于将子网格实现(支持更精细的空间分辨率)到常规FDTD网格中。当需要对计算域的各个部分进行详细建模时,或者在整个计算网格中存在具有高介电常数值的特征或区域时,这特别重要,这可以支持非常短波长的波的传播。提出了一种简化将这些子网格实现为传统FDTD方法的过程的方案。该方案基于标准HAD方法和无条件稳定交替方向隐式(ADI)FDTD技术的组合。由于ADI-FDTD是无条件稳定的,因此可以将其时间步长设置为盟友值,以利于精确计算字段。这样,两个网格就可以跨边界有效地传达信息,而无需使用昂贵的时间插值方案。本文讨论了将ADI-FDTD子网格实现为传统FDTD方法时的性能,使用不同的通信方案在两个网格的边界进行信息交换。所开发的算法称为处理子网格的情况,其中子网格跨越介电非均匀介质。另外,提出了从所提出的方案和常用的纯FDTD子网格技术之间进行比较的结果。

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