Intelligent reflecting surface (IRS) is an emerging key technology for the fifth-generation (5G) and beyond wireless communication systems to provide more robust and reliable communication links. In this paper, we propose a mixed dual-hop free-space optical (FSO)-radio frequency (RF) communication system that serves the end user via a decode-and-forward (DF) relay employing hybrid automatic repeat request (HARQ) protocols on both hops. Novel closed-form expressions of the probability density function (PDF) and cumulative density function (CDF) of the equivalent end-to-end signal-to-noise ratio (SNR) are computed for the considered system. Utilizing the obtained statistics functions, we derive the outage probability (OP) and packet error rate (PER) of the proposed system by considering generalized detection techniques on the source-to-relay (S-R) link with H-ARQ protocol and IRS having phase error. We obtain useful insights into the system performance through the asymptotic analysis which aids to compute the diversity gain. The derived analytical results are validated using Monte Carlo simulation.
翻译:智能反射表面(IRS)是第五代(5G)和无线通信系统以外的一种新兴关键技术,可以提供更可靠和可靠的通信连接。在本文件中,我们提议建立一个混合的双速自由空间光学(FSO)-无线电频率(RF)通信系统,通过解码和前方(DF)中继为终端用户服务,在两个跳上采用混合自动重复请求(HARQ)协议。关于概率密度函数(PDF)和等值终端至终端信号对音频比率(CDF)的封闭式表达方式为考虑的系统计算。我们利用获得的统计功能,通过考虑源到中连接(S-R)与H-ARQ协议(H-ARQ协议)的通用检测技术以及有阶段错误的IRS,得出拟议系统的断流概率(OP)和包误率(PER)。我们通过有助于计算多样性增益的微分析获得系统性能的有用见解。我们利用蒙特卡洛模拟对导出的分析结果进行验证。