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首页> 外文期刊>IEEE Transactions on Communications >Unified Statistical Channel Model for Turbulence-Induced Fading in Underwater Wireless Optical Communication Systems
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Unified Statistical Channel Model for Turbulence-Induced Fading in Underwater Wireless Optical Communication Systems

机译:水下无线光通信系统中湍流诱导衰落的统一统计信道模型

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摘要

A unified statistical model is proposed to characterize turbulence-induced fading in underwater wireless optical communication (UWOC) channels in the presence of air bubbles and temperature gradient for fresh and salty waters, based on experimental data. In this model, the channel irradiance fluctuations are characterized by the mixture exponential-generalized gamma (EGG) distribution. We use the expectation-maximization algorithm to obtain the maximum likelihood parameter estimation of the new model. Interestingly, the proposed model is shown to provide a perfect fit with the measured data under all channel conditions for both types of water. The major advantage of the new model is that it has a simple mathematical form making it attractive from a performance analysis point of view. Indeed, we show that the application of the EGG model leads to closed-form and analytically tractable expressions for key UWOC system performance metrics such as the outage probability, the average bit-error rate, and the ergodic capacity. To the best of our knowledge, this is the first-ever comprehensive channel model addressing the statistics of optical beam irradiance fluctuations in underwater wireless optical channels due to both air bubbles and temperature gradient.
机译:基于实验数据,提出了一种统一统计模型,以在存在气泡和咸水的温度梯度的情况下在水下无线光通信(UWOC)通道中的湍流引起的衰落。在该模型中,信道辐照度波动的特征在于混合指数广义γ(蛋)分布。我们使用期望最大化算法来获得新模型的最大似然参数估计。有趣的是,所提出的模型被示出为在两种类型的各种频道条件下提供完美拟合。新模型的主要优势在于它具有简单的数学形式,使其可以从性能分析的角度吸引。实际上,我们表明,蛋模型的应用导致封闭式和分析讲解表达式,用于关键UWOC系统性能指标,如中断概率,平均误码率和遍历容量。据我们所知,这是由于气泡和温度梯度的统计,解决了水下无线光学通道中光束辐照度波动的统计的第一个综合渠道模型。

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