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An Improved Split-Step Wavelet Transform Method for Anomalous Radio Wave Propagation Modelling

机译:改进的分步小波变换方法在无线电波传播异常建模中的应用

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摘要

Anomalous tropospheric propagation caused by ducting phenomenon is a major problem in wireless communication. Thus, it is important to study the behavior of radio wave propagation in tropospheric ducts. The Parabolic Wave Equation (PWE) method is considered most reliable to model anomalous radio wave propagation. In this work, an improved Split Step Wavelet transform Method (SSWM) is presented to solve PWE for the modeling of tropospheric propagation over finite and infinite conductive surfaces. A large number of numerical experiments are carried out to validate the performance of the proposed algorithm. Developed algorithm is compared with previously published techniques; Wavelet Galerkin Method (WGM) and Split-Step Fourier transform Method (SSFM). A very good agreement is found between SSWM and published techniques. It is also observed that the proposed algorithm is about 18 times faster than WGM and provide more details of propagation effects as compared to SSFM.
机译:由管道现象引起的对流层异常传播是无线通信中的主要问题。因此,研究对流层导管中无线电波传播的行为很重要。抛物线波动方程(PWE)方法被认为是建模异常无线电波传播的最可靠方法。在这项工作中,提出了一种改进的分步小波变换方法(SSWM)来求解PWE,以对有限和无限导电表面上的对流层传播进行建模。进行了大量的数值实验,以验证所提出算法的性能。将开发的算法与以前发布的技术进行比较;小波Galerkin方法(WGM)和分步傅里叶变换方法(SSFM)。在SSWM和已发布的技术之间找到了很好的协议。还可以观察到,与SSFM相比,该算法比WGM快18倍,并且提供了更多的传播效果细节。

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  • 作者

    Iqbal A.; Jeoti V.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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