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The Implementation of Adaptive Networks with Visible Light Communication Channels Modeled with Gamma-Gamma Turbulence

机译:具有伽马涡轮湍流建模的可见光通信通道的自适应网络的实现

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This paper considers the possibility and the details of implementing adaptive networks with visible light communication technology. Adaptive networks have various indoor and outdoor applications hence, their implementations with light waves face with different problems. Almost all free space optical (FSO)communication systems must deal with two channel deficiencies namely, optical noise and channel turbulence. Both channel noise and turbulence follow certain distributions that we explain in detail. In this paper, we analyze the effects of these disturbances on the estimation performance of incremental adaptive networks and present the results using various simulations. The results are presented by the means of mean square error values. Also, for Gaussian noise and Gamma-Gamma turbulence models we derived the theoretical mean square deviation (MSD)and excess mean square error (EMSE)values and compared them with the simulation outcomes.
机译:本文考虑了实现具有可见光通信技术的自适应网络的可能性和细节。自适应网络具有各种室内和室外应用,因此它们的实施与光波面对不同的问题。几乎所有自由空间光学(FSO)通信系统必须应对两个渠道缺陷即,光学噪声和通道湍流。通道噪声和湍流都遵循我们详细解释的某些分布。在本文中,我们分析了这些干扰对增量自适应网络的估计性能的影响,并使用各种仿真呈现结果。结果通过均方误差值的方式提出。此外,对于高斯噪声和Gamma-gamma湍流模型,我们得出了理论均方偏差(MSD)和多余均方误差(EMSE)值,并与模拟结果进行了比较。

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