Despite the promising gains, free-space optical (FSO) communication is severely influenced by atmospheric turbulence and pointing error issues, which make its practical design a bit challenging. In this paper, with the aim to increase the communication coverage and improve the system performance, reconfigurable intelligent surfaces (RISs) are considered in an FSO communication setup, in which both atmospheric turbulence and pointing errors are considered. Closed-form expressions for the outage probability, average bit error rate, and channel capacity are derived assuming large number of reflecting elements at the RIS. Specifically, according to central limit theorem (CLT), while assuming multiple reflecting elements approximate expressions are proposed. It is shown that the respective accuracies increase as the number of elements at the RIS increases. Illustrative numerical examples are shown along with insightful discussions. Finally, Monte Carlo simulations are presented to verify the correctness of the analytical results.
翻译:尽管取得了可喜的成绩,但自由空间光学(FSO)通信受到大气动荡和点误差问题的严重影响,这使得其实际设计具有一定的难度;在本文件中,为了扩大通信覆盖面和改善系统性能,在FSO通信结构中考虑可重新配置的智能表面,其中既考虑大气动荡,也考虑点误差;断裂概率、平均位误差率和频道容量的封闭式表达方式假定在RIS有大量反映要素。具体地说,根据中央限值(CLT),假设提出了多个反映要素的近似表达方式;表明随着RIS要素数量的增加,相应的偏差也有所增加;在有洞察力的讨论的同时,还展示了典型的数字例子;最后,根据中央限值(CLT),介绍了蒙特卡洛模拟,以核实分析结果的正确性。