论文标题
无线光学通信的性能与可重构的智能表面和随机障碍
Performance of Wireless Optical Communication With Reconfigurable Intelligent Surfaces and Random Obstacles
论文作者
论文摘要
由于环境中的障碍阻塞,自由空间光学通信很难在移动通信中应用,这有望通过可重新配置的智能表面技术来解决。可重构的智能表面是一种新型的数字编码元物质,可以实时反映,计算和编程电磁和光波。我们目的是基于光学重新配置的智能表面技术的可控多分支无线光学通信系统。通过在环境中设置多个光学可重构智能表面,可以构建多个人工通道,以提高系统性能并降低中断概率。本文研究了影响通道系数的三个因素,即横梁抖动,可重构智能表面的抖动以及阻塞的可能性。基于该模型,我们得出了通道系数的闭合形式概率密度函数,渐近系统的平均位错误率和单个分支机构的系统的中断概率。据透露,概率密度函数包含脉冲函数,这会导致错误率和中断概率地板。数值结果表明,与具有单个直接路径的自由空间光学通信系统相比,多支球菌系统的性能得到了改善,并降低了中断概率。
It is difficult for free space optical communication to be applied in mobile communication due to the obstruction of obstacles in the environment, which is expected to be solved by reconfigurable intelligent surface technology. The reconfigurable intelligent surface is a new type of digital coding meta-materials, which can reflect, compute and program electromagnetic and optical waves in real time. We purpose a controllable multi-branch wireless optical communication system based on the optical reconfigurable intelligent surface technology. By setting up multiple optical reconfigurable intelligent surface in the environment, multiple artificial channels are built to improve system performance and to reduce the outage probability. Three factors affecting channel coefficients are investigated in this paper, which are beam jitter, jitter of the reconfigurable intelligent surface and the probability of obstruction. Based on the model, we derive the closed-form probability density function of channel coefficients, the asymptotic system's average bit error rate and outage probability for systems with single and multiple branches. It is revealed that the probability density function contains an impulse function, which causes irreducible error rate and outage probability floors. Numerical results indicate that compared with free-space optical communication systems with single direct path, the performance of the multi-branch system is improved and the outage probability is reduced.