Closed-Form Hyper-Rayleigh Mode Analysis of the Fluctuating Double-Rayleigh with Line-of-Sight Fading Channel

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Inventions Pub Date : 2023-07-03 DOI:10.3390/inventions8040087
A. Gvozdarev, T. Artemova, Aleksandra M. Alishchuk, M. Kazakova
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引用次数: 3

Abstract

The research studies hyper-Rayleigh behavior of a wireless communication system functioning in the presence of the generalized multipath fading. Although the initial metric (hyper-Rayleigh mode (HRM)) is quite informative, it is defined only asymptotically (i.e., for the infinitely increasing SNR). In spite of mathematical simplifications brought by such a definition (i.e., in this case most of the performance characteristics defining the HRM can be easily evaluated), it sufficiently limits its applications since, evidently, the real-life systems function in the presence of a finite (and usually not very high) SNR. The study presents a novel approach to the fading channel analysis (i.e., finite signal-to-noise ratio hyper-Rayleigh mode (fHRM)). The proposed metric (fHRM) is studied on the newly presented channel model-fluctuating double-Rayleigh with Line-of-Sight (fdRLoS) fading model. To accomplish this, the novel expressions for two channel-dependent system characteristics (i.e., the Amount of Fading (AoF) and the Outage Probability (OP)) were derived in exact form valid for arbitrary fading parameters. Based on the derived expressions, the finite SNR hyper-Rayleigh map is obtained, which helps to identify the parameters’ values corresponding to the specific propagation scenarios, which were further deployed to analyze the problem of the communication link physical layer security quantified in terms of the probability of strictly positive secrecy capacity (SPSC). Numerical verification of the derived closed-form expressions was performed. Several peculiarities of the system performance are observed and discussed.
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具有视线衰落信道的波动双瑞利的闭式超瑞利模式分析
研究了无线通信系统在广义多径衰落下的超瑞利行为。尽管初始度量(超瑞利模式(HRM))信息量很大,但它只是渐近定义的(即,对于无限增加的SNR)。尽管这种定义带来了数学上的简化(即,在这种情况下,定义HRM的大多数性能特征都可以很容易地评估),但它充分限制了它的应用,因为很明显,现实生活中的系统在有限(通常不是很高)的信噪比下工作。该研究提出了一种新的衰落信道分析方法(即有限信噪比超瑞利模式(fHRM))。在新提出的具有视线的双瑞利波动信道模型(fdRLoS)衰落模型上研究了所提出的度量(fHRM)。为了实现这一点,推导了两个信道相关系统特性(即衰落量(AoF)和中断概率(OP))的新表达式,其精确形式对任意衰落参数有效。基于推导的表达式,得到了有限信噪比超瑞利映射,这有助于识别与特定传播场景相对应的参数值,并将其进一步用于分析通信链路物理层安全问题,该问题根据严格正保密容量(SPSC)的概率进行量化。对导出的闭式表达式进行了数值验证。观察并讨论了系统性能的几个特点。
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来源期刊
Inventions
Inventions Engineering-Engineering (all)
CiteScore
4.80
自引率
11.80%
发文量
91
审稿时长
12 weeks
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