Modeling of Millimeter-Wave Propagation in Tunnels with Split-Step Parabolic Equation Method

Hao Qin, Xingqi Zhang
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引用次数: 1

Abstract

Radio wave propagation modeling in tunnels plays an important role in the deployment of modern train communication systems. The parabolic equation method has proven to be a powerful numerical technique for propagation modeling in long guiding structures. However, its computational efficiency is significantly compromised at millimeter-wave frequencies. This paper presents a split-step Fourier transform based parabolic equation model, which can achieve superior performance at the millimeter-wave bands. Numerical results are validated against analytical solutions in a waveguide example, as well as experimental measurements in an actual tunnel.
分步抛物方程法模拟隧道中毫米波传播
隧道无线电波传播建模在现代列车通信系统的部署中起着重要作用。抛物方程法已被证明是求解长导向结构传播模型的一种有效的数值方法。然而,在毫米波频率下,其计算效率显著降低。本文提出了一种基于分步傅里叶变换的抛物方程模型,该模型在毫米波波段具有优异的性能。数值结果与波导实例的解析解和实际隧道的实验测量结果相吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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