Reconfigurable intelligent surface (RIS) is a promising technology to avoid signal blockage by creating line-of-sight (LOS) connectivity for free-space optical (FSO) and radio frequency (RF) wireless systems. There is limited research on the use of multiple RIS between a source and destination for wireless communications. This paper analyzes the performance of a RIS-assisted multi-hop transmission for vehicular communications by employing multiple RIS to enable LOS communication and reliable connectivity for a hybrid FSO and RF system. We develop an analytical framework to derive statistical results of the signal-to-noise ratio (SNR) of a multi-RIS communication system over general fading models. We use decode-and-forward (DF) and fixed-gain (FG) relaying protocols to mix multi-RIS transmissions over RF and FSO technologies, and derive probability density and distribution functions for both the relaying schemes by considering independent and non-identical double generalized gamma (dGG) distribution models for vehicular RF transmissions and atmospheric turbulence for FSO system combined with zero-boresight pointing errors. We analyze the performance of a moving vehicle connected to one of the RIS modules by deriving exact analytical expressions of the outage probability, average bit-error rate (BER), and ergodic capacity in terms of Fox's H-function. We present asymptotic analysis and diversity order of the outage probability in the high SNR regime to provide a better insight into the system performance. We use computer simulations to demonstrate the effect of multiple RIS modules, fading parameters, and pointing errors on the RIS-aided multi-hop transmissions for the considered vehicular communication system.
翻译:重新配置智能表面(RIS)是避免信号阻塞的一个大有希望的技术,通过创建自由空间光学(FSO)和无线电频率(RF)无线系统的光学线视(LOS)连接系统,避免信号阻塞。对于无线通信源和目的地之间使用多重RIS的研究有限。本文通过使用多种RIS(LIS)辅助多功能传输功能分析用于车辆通信的多功能传输的性能,从而能够为混合的FSO和RF系统提供远程通信和可靠连接。我们开发了一个分析框架,以得出多功能光学(SNRIS)通信系统多功能对音率(SNR)比(SNR)的逻辑比(SNR),多功能(FD)和固定增益(FG)的传输程序有限。我们通过分析系统(RISRR)的概率分析,通过当前平均RIS(RIS)的概率分析,通过S-RIS(O)的概率分析,通过S-RIS(RIS)系统向目前的平均变压的变换码能力,我们用S-RIS(RIS)的性系统向当前)的性能的性变压的性能的性能和大气波变。