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An innovative approach for performance enhancement of 320 Gbps free space optical communication system over turbulent channel

机译:一种用于在湍流信道上增强320 Gbps自由空间光通信系统性能的创新方法

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Free space optical (FSO) communication systems have recently gained huge attention as possible last mile solution in delivering high speed data services for terrestrial applications. However the FSO link performance, particularly the link range is significantly limited by the severity of atmospheric adversities affecting the channel. In this paper we advocate the use of multi-hop relay techniques to transmit wavelength division multiplexed (WDM) signal over the FSO channel. Since weather induced impairments in FSO links are distance dependent phenomena, hence relay transmission allows substantial performance enhancement by alleviating channel losses while, WDM provides cost effective solution in improving the transmission capacity. With aggregate link losses as high as 40 dB/km, the proposed 32 channel-10 Gbps (320 Gbps) FSO link has been evaluated by comparing bit error rate (BER) performances and eye patterns over different turbulent regimes. Gain optimized EDFA amplification and conventional electrical amplification have been employed to realize amplify-and-forward (A-F) multi-hop transmission in the proposed link with the former delivering more inspiring BER performance of over the latter. Our simulation results indicate that for receiver SNR of 35 dB, BER improvement up to five orders of magnitude can achieved using triple relay FSO link in contrast to direct link operating under similar conditions. Additionally, it is also observed during the analysis that for target BER of 10(-5), incorporation of triple relay enhances the link range by approximately 1200 m over direct link. However on the flip side, our investigations also revealed that as the number of relay nodes is increased, the SNR gain for specified BER does increase but the magnitude of gain declines. The proposed link was designed and investigated using OptiSystem (TM) 14.2.
机译:自由空间光(FSO)通信系统最近作为为地面应用提供高速数据服务的最后一英里解决方案而引起了广泛关注。但是,FSO链路性能,特别是链路范围受到影响通道的大气逆境的严重性的显着限制。在本文中,我们提倡使用多跳中继技术在FSO信道上传输波分复用(WDM)信号。由于FSO链路中由天气引起的损害是距离相关的现象,因此中继传输可以通过减轻信道损耗来显着提高性能,而WDM在提高传输容量方面提供了具有成本效益的解决方案。在总链路损耗高达40 dB / km的情况下,通过比较不同湍流状态下的误码率(BER)性能和眼图,对建议的32通道10 Gbps(320 Gbps)FSO链路进行了评估。增益优化的EDFA放大和传统的电放大已被用于实现所提出的链路中的放大转发(A-F)多跳传输,前者提供了比后者更令人振奋的BER性能。我们的仿真结果表明,对于35 dB的接收器SNR,与在类似条件下的直接链路相比,使用三重中继FSO链路可以将BER提高多达五个数量级。此外,在分析过程中还观察到,对于10(-5)的目标BER,三重中继的加入使链路范围比直接链路增加了约1200 m。但是,另一方面,我们的研究也表明,随着中继节点数量的增加,指定BER的SNR增益确实增加了,但增益的幅度却下降了。所建议的链接是使用OptiSystem(TM)14.2设计和研究的。

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