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Comparison of FDTD and TDWP Methods for Simulating Electromagnetic Wave Propagation above Terrains

机译:FDTD和TDWP方法在地形上方模拟电磁波传播的比较

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Researchers have always been in face of path loss calculation in different media for applications such as telecommunication link design. Wave propagation calculations in large spaces using the FDTD method is time-consuming and imposes a great computational burden. For this reason, to replace the classical FDTD method for wave propagation simulation and path loss calculation in large spaces, optimized methods, namely TDWP, have been provided. In this paper, the use of the TDWP method for wave propagation simulation and path loss calculation above a terrain is investigated. Longitudinal components of ground-waves are taken into account (including direct waves, ground reflections, and surface waves). Propagation space is longitudinally divided into smaller FDTD windows with finite length. The electromagnetic pulse travels through these windows from left to right to the desired point. But despite its capability in reducing computational burden and increasing processing speed, TDWP has lower precision in instantaneous field simulation and calculation of propagation coefficients, so that results obtained from FDTD and TDWP are clearly different. In this paper, some efficient methods are proposed, which yield an increase in method accuracy.
机译:对于电信链路设计等应用,研究人员一直面临着不同媒体中路径损耗计算的问题。使用FDTD方法在大空间中进行波传播计算既费时,又增加了计算负担。因此,为了代替传统的FDTD方法进行大空间中的波传播仿真和路径损耗计算,已提供了优化方法TDWP。本文研究了TDWP方法在地形上方的波传播模拟和路径损耗计算中的应用。考虑了地波的纵向分量(包括直接波,地面反射和表面波)。传播空间在纵向上分为有限长度的较小FDTD窗口。电磁脉冲从左到右穿过这些窗口到达所需点。但是,尽管TDWP具有减轻计算负担和提高处理速度的能力,但它在瞬时场仿真和传播系数计算中的精度较低,因此从FDTD和TDWP获得的结果明显不同。本文提出了一些有效的方法,这些方法提高了方法的准确性。

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