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Performance analysis of PPM modulation in multihop FSO system over gamma gamma channel

机译:伽玛伽马通道多跳FSO系统中PPM调制的性能分析

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Atmospheric turbulence induced fading is one of the main impairments affecting the operation of free-space optical (FSO) communication systems. In this work, the average symbol error rate (SER) of M-ary pulse position modulation (PPM) is analyzed under Gamma-Gamma fading channel. Using the characteristics of Meijer G function, Closed-form expression for average SER is derived. In this paper, we analyze the performance of detect and forward relay or/and amplify and forward three-hop FSO systems over strong atmospheric turbulence channels. In our analysis, turbulence channels are modeled by Gamma-Gamma distribution and the AF transmission is based on optical amplify-and forward (OAF) technique. The DF relay refers to detect and forward protocol. We look for symbol-error probability (SEP) of dual-hop PPM modulated FSO systems taking into account the effects of various noises as well as path loss and geometric spreading of optical beam. The numerical results show that strong turbulence has a severe effect on the performance of FSO systems. we employ PPM modulation to improve the system's performance.
机译:大气湍流引起的衰落是影响自由空间光学(FSO)通信系统运行的主要障碍之一。在这项工作中,在Gamma-Gamma衰落信道下分析了M进制脉冲位置调制(PPM)的平均符号错误率(SER)。利用Meijer G函数的特征,得出平均SER的闭式表达式。在本文中,我们分析了在强大气湍流通道上探测和转发中继或/和放大和转发三跳FSO系统的性能。在我们的分析中,湍流通道通过Gamma-Gamma分布建模,而AF传输基于光学放大和前向(OAF)技术。 DF中继引用检测和转发协议。考虑到各种噪声以及光束的路径损耗和几何扩展的影响,我们寻找双跳PPM调制FSO系统的符号错误概率(SEP)。数值结果表明,强湍流对FSO系统的性能有严重影响。我们采用PPM调制来提高系统性能。

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