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A Framework on the Performance Analysis of Dual-Hop Mixed FSO-RF Cooperative Systems

机译:双跳FSO-RF混合合作系统性能分析框架

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摘要

Free space optical (FSO) communication systems provide line-of-sight wireless connectivity in the unlicensed optical spectrum and achieve higher data rates in comparison to their radio frequency (RF) counterparts. FSO systems are particularly attractive for the last mile access problem by establishing a connectivity bridge between optical fiber-based backbone and RF access networks. To address this practical deployment scenario, there has been an increasing attention on the so-called mixed (dual-hop) FSO-RF systems where FSO transmission is utilized at one hop followed by RF transmission at the other one. In this paper, we investigate the performance of mixed FSO-RF transmission systems where the FSO link is modeled by the double generalized Gamma distribution with generalized pointing error impairments and the RF link experiences the extended generalized-K shadowed fading. For both amplify-and-forward and decode-and-forward relaying, we derive closed-form expressions for outage probability, bit error probability, and ergodic capacity in terms of bivariate Fox-H function. Monte Carlo simulation results are provided to verify the accuracy of derived expressions. We further provide an asymptotic analysis and discuss the achievable diversity orders of mixed FSO-RF systems.
机译:自由空间光学(FSO)通信系统在未经许可的频谱中提供了视距无线连接,并且与射频(RF)同类产品相比,可实现更高的数据速率。 FSO系统通过在基于光纤的骨干网和RF接入网络之间建立连接桥,对于最后一英里接入问题特别有吸引力。为了解决这种实际的部署情况,人们越来越关注所谓的混合(双跳)FSO-RF系统,在该系统中,一跳使用FSO传输,另一跳使用RF传输。在本文中,我们研究了混合FSO-RF传输系统的性能,其中FSO链路由具有广义指向误差的双广义Gamma分布建模,并且RF链路经历了扩展的广义K阴影衰落。对于放大转发和解码转发中继,我们根据双变量Fox-H函数推导了停机概率,误码概率和遍历容量的闭式表达式。提供了蒙特卡罗模拟结果以验证派生表达式的准确性。我们进一步提供了渐近分析,并讨论了混合FSO-RF系统可实现的分集阶数。

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