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An asymptotic three-dimensional technique to study radio wave propagation in the presence of a localized perturbation of environment

机译:一种在环境局部扰动存在下研究无线电波传播的渐近三维技术

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摘要

This paper presents an analytical-numerical approach to model problems that are ubiquitous in the theory of radio wave propagation. The method is particularly efficient for considering three-dimensional diffraction by a localized perturbation of the environment. Here we are concerned with VLF and LF (less than 100 kHz) radio wave propagation in the presence of an irregularity of finite lateral extent (ionospheric disturbance or Earth's surface inhomogeneity). The surface impedance concept is used to model the Earth-ionosphere waveguide. Our approach is based on preliminary asymptotic integration of the rigorous two-dimensional integral equation in order to facilitate its further numerical handling. An original computational algorithm is proposed to invert an approximate equation. By reducing CPU time, the developed procedure enables study of both small and comparatively large irregularities. In spite of accepted asymptotic compromises, most of the three-dimensional effects that are intrinsic to similar problems are obtained during numerical simulations.
机译:本文提出了一种分析数值方法来对无线电波传播理论中普遍存在的问题进行建模。该方法对于通过环境的局部扰动来考虑三维衍射特别有效。在此,我们关注的是在存在有限的横向范围不规则性(电离层扰动或地球表面不均匀性)的情况下的VLF和LF(小于100 kHz)无线电波传播。表面阻抗概念用于对地球电离层波导进行建模。我们的方法基于严格的二维积分方程的初步渐近积分,以便于对其进行进一步的数值处理。提出了一种原始的计算算法来求逆近似方程。通过减少CPU时间,开发的过程可以研究较小和相对较大的不规则性。尽管接受了渐近折衷方案,但在数值模拟过程中仍获得了类似问题固有的大多数三维效果。

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