Methodology for Estimating Communication Reliability in Shortwave Radio-Frequency Transmission Channels with Rician Fading Given Ionospheric Diffusivity

V. Pashintsev, D. A. Belokon, S. Koval’, A. Skorik
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Abstract

Introduction. There exists a technique for estimating the dependence of communication reliability in a shortwave radio-frequency transmission channel (SWRC) with a single discrete beam and diffuse wave scattering across small-scale ionospheric inhomogeneities on the selected operating frequency taking into account the given signal-to-noise ratio and ionospheric diffusivity. In this technique, the Nakagami m-distribution is used to describe interference fading of the received signal. However, in a single-beam SWRC, fading signal amplitudes are described by the Rician or generalized Rayleigh, rather than by Nakagami, distribution in 90 % of all cases. At the same time, the results obtained using the Nakagami distribution to approximate fading and to assess its effect on communication quality agrees well with those obtained by the Rician distribution only in two cases: the presence of Rayleigh distribution or the complete absence of fading.Aim. To develop a methodology for estimating communication reliability in a single-beam SWRC with Rician fading and to compare its results with that under Nakagami fading.Materials and methods. The effect of operating frequency and ionospheric diffusivity on fading distribution parameters in a single-beam SWRC was estimated by simulating transionospheric communication channels based on a radio-physical phase screen method. The effect of Rician fading parameters on communication reliability was simulated in the MatLab environment. The initial data on ionospheric parameters were obtained using the IRI-2016 model.Results. A three-stage methodology for estimating communication reliability in a single-beam SWRC with Rician fading was developed; its results were compared with that under Nakagami fading. Dependencies were obtained to describe communication reliability in a single-beam SWRC during the day and at night on the selected operating frequency relative to the maximum applicable frequency and on the level of ionospheric diffusivity during Rician and Nakagami fading.Conclusion. The conducted analysis showed that, at different levels of ionospheric diffusivity, communication reliability in a single-beam SWRC with Nakagami fading can be significantly overestimated (up to 12 %), compared to that under Rician fading.
考虑电离层扩散系数的时域衰落短波射频传输信道通信可靠性估计方法
介绍。在考虑给定信噪比和电离层扩散系数的情况下,存在一种估算具有单个离散波束和漫射波散射的小尺度电离层不均匀性的短波射频传输信道(SWRC)中通信可靠性与所选工作频率的依赖关系的技术。在该技术中,使用了Nakagami m分布来描述接收信号的干扰衰落。然而,在单波束SWRC中,衰减信号的幅度在90%的情况下都是用瑞利或广义瑞利分布来描述的,而不是用Nakagami分布。同时,只有在存在瑞利分布和完全不存在衰落两种情况下,用Nakagami分布近似衰落和评价衰落对通信质量的影响的结果与用ricar分布得到的结果比较吻合。建立了一种估算具有瑞氏衰落的单波束SWRC通信可靠性的方法,并将其结果与在Nakagami衰落下的结果进行了比较。材料和方法。采用基于无线电物理相位屏的方法模拟跨层通信信道,估计了工作频率和电离层扩散率对单波束SWRC衰落分布参数的影响。在MatLab环境下仿真了衰落参数对通信可靠性的影响。电离层参数初始数据采用IRI-2016模式获取。提出了一种分三阶段估计具有时域衰落的单波束SWRC通信可靠性的方法;并与中上衰落下的结果进行了比较。得到了单波束SWRC白天和夜间通信可靠性与所选工作频率相对于最大适用频率和电离层扩散系数水平之间的依赖关系。所进行的分析表明,在不同电离层扩散系数水平下,单波束SWRC中agami衰落的通信可靠性与中agami衰落相比可被显著高估(高达12%)。
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