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A New Theoretical Approach of Wavelet-Based Multifractal Characterization of HF Channel Scattering Function: Theoretical and Physical Interpretations

机译:基于小波的HF通道散射函数多重分形表征的新理论方法:理论和物理解释

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摘要

In high-frequency (HF) ionospheric communications, the dynamic nature of the high-latitude ionosphere creates small-scale ionospheric irregularities capable of scattering HF radio waves. In addition, there are large-scale irregularities which may be identified using some specific methods. However, small-scale irregularities cannot be easily identified and characterized. The aim of this paper is to introduce a new wavelet-based multifractal dimension mapping approach for the identification and the quantification of the small-scale irregularities. Numerical results show the improvement of the proposed methods compared to those obtained by the classical Legendre multifractal analysis. In our analysis, we have used the scattering function as a tool for the HF channel characterization. Our analysis deals with experimental scattering functions measured during the solar eclipse on August 11, 1999.
机译:在高频(HF)电离层通信中,高纬度电离层的动态特性产生了小规模的电离层不规则结构,能够散射HF无线电波。此外,还可以使用某些特定方法来识别大规模违规行为。但是,小规模的违规行为不容易识别和表征。本文的目的是介绍一种新的基于小波的多重分形维数映射方法,用于小尺度不规则现象的识别和量化。数值结果表明,与传统的Legendre多重分形分析相比,该方法得到了改进。在我们的分析中,我们将散射功能用作HF通道表征的工具。我们的分析涉及1999年8月11日日食期间测得的实验性散射函数。

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