Free-space optical communications using all-optical relays over weak turbulence channels with pointing errors

Jin-yuan Wang, Jun-Bo Wang, Ming Chen, Qing-Song Hu, Nuo Huang, Rui Guan, Linqiong Jia
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引用次数: 6

Abstract

In this paper, the outage performance of a free-space optical (FSO) communication system with parallel all-optical relays is investigated by employing the photon counting methodology. Initially, a composite channel model is considered which includes atmospheric loss, pointing error and weak atmospheric turbulence. To show the impacts of the channel state information (CSI) on system performance, either full CSI or semi-blind CSI at the relay nodes is considered. Based on the channel model, the approximate expressions of the outage probability for both full CSI relaying and semi-blind CSI relaying are derived, respectively. Numerical results substantiate that the derived expressions can provide sufficient precision for evaluating the outage performance of FSO communication systems. Moreover, for the scenario we considered, semi-blind CSI relaying can provide nearly identical performance to its full CSI counterpart.
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在带有指向误差的弱湍流信道上使用全光中继的自由空间光通信
本文采用光子计数方法研究了具有并行全光中继的自由空间光通信系统的中断性能。首先考虑了考虑大气损失、指向误差和弱大气湍流的复合信道模型。为了显示信道状态信息(CSI)对系统性能的影响,在中继节点上考虑了全CSI或半盲CSI。在信道模型的基础上,分别推导了全CSI继电器和半盲CSI继电器的中断概率近似表达式。数值结果表明,所导出的表达式可以为FSO通信系统的中断性能评估提供足够的精度。此外,对于我们考虑的场景,半盲CSI中继可以提供几乎相同的性能,其完全CSI对应。
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