Dual Polarization DQPSK ROF System with Duo Binary Precoding and Hybrid Amplification for Effective Hybrid SMF FSO Transmission Medium

Esra Al Bayati, R. Ngah, Nurul Ashikin Binti Daud
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Abstract

This article demonstrates the utilization of a hybrid amplification technique on the transmission part of the proposed hybrid medium transmission system which includes both using Single Mode Fiber (SMF) with 60 km and Free Space Optic (FSO) with a range between 5 km and 25 km. It has included four weather situations with an investigation of the FSO medium-based system performance. The system uses 64 channels based on Dual Polarization-Differential Quadratic Phase Shift Keying (DP-DQPSK) Dense Wavelength Division Multiplexing (DWDM) for the Radio over Fiber (RoF) system using the Duo Binary coding scheme to improve the system efficiency in general and the cross-talk in particular. The investigations will include using the hybrid amplifiers of Erbium Doped Fiber Amplifier (EDFA) and Optical Amplifier (OA) for transmission. The analysis results show that using the hybrid amplification could improve the transmission to reach 25 km for light air case, meanwhile, for light haze, it could reach up to 20 km. Moderate haze could improve transmission efficiency for a distance of 7 km. Finally, for moderate rain situations, the transmission could be further improved to cover a distance of up to 5 km.
有效混合SMF FSO传输介质的双二进制预编码和混合放大双极化DQPSK ROF系统
本文演示了混合放大技术在混合介质传输系统的传输部分的应用,该系统包括使用60公里的单模光纤(SMF)和范围在5公里到25公里之间的自由空间光纤(FSO)。它包括四种天气情况,并对FSO中型系统性能进行了调查。该系统采用基于双偏振差分二次相移键控(DP-DQPSK)的64通道密集波分复用(DWDM)的光纤无线电(RoF)系统,采用双二进制编码方案,以提高系统总体效率,特别是串扰。研究将包括使用掺铒光纤放大器(EDFA)和光放大器(OA)的混合放大器进行传输。分析结果表明,在空气稀薄的情况下,使用混合放大可以提高传输距离,达到25 km,而在雾霾的情况下,传输距离可达到20 km。中度雾霾可以提高7公里范围内的传输效率。最后,在中雨的情况下,传输可以进一步改善,覆盖长达5公里的距离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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