不同大气损耗下psk / qam调制混合光纤与自由空间光系统的研究

Q4 Earth and Planetary Sciences
M. V. Kumar, Vinod Kumar, Rupali Singh
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引用次数: 0

摘要

本研究旨在研究数字调制在最后一英里通信系统中如何有效地通过混合光纤和自由空间光纤(FO-FSO)信道传输数据。所研究的数字调制技术是相移键控(PSK)8-PSK、16-PSK、正交幅度调制(QAM)4-QAM、16-QAM和64-QAM。FSO是一种视距技术,是应对光纤电缆安装挑战的最后一英里通信系统的解决方案。将FSO与光纤技术相结合,避免了弯曲损耗以及光纤电缆在大都市地区和建筑物之间的实施挑战。但是,在自由空间传输数据时,雾霾、雾和雨等大气挑战会导致信号丢失。此外,大气湍流和天线错位也会导致信号误差。本文提出了FO-FSO上QAM和PSK数字调制信号传输的模型,并将其结果与更好的光纤FSO链路进行了比较,以实现最后一英里的通信网络。该光纤和FSO模型针对长达100km的光纤通道和0.4-1.5km的FSO通道进行了分析。将与接收器处的接收功率有关的星座图和误差矢量幅度(EVM)进行比较,以分析各种天气衰减的FSO信道容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INVESTIGATION OF PSK/QAM MODULATED HYBRID FIBER OPTIC AND FREE SPACE OPTIC SYSTEM UNDER VARIOUS ATMOSPHERIC LOSSES
This research aims to investigate how effectively digital modulation performs to transfer data via hybrid fiber optic and free space optic (FO-FSO) channels for last-mile communication systems. Digital modulation techniques investigated are phase-shift keying (PSK) 8-PSK, 16-PSK, quadrature amplitude modulation (QAM) 4-QAM, 16-QAM, and 64-QAM. FSO is line-of-sight technology being a solution to a last-mile communication system for the challenge of fiber optic cables installation. Combining FSO with fiber optic technology avoids bending losses and the implementation challenges of fiber optic cables in metropolitan areas and between buildings. But atmospheric challenges such as haze, fog, and rain cause signal loss while transmitting data in free space. Also, atmospheric turbulence and antenna misalignments lead to signal error. This paper proposed the models of QAM and PSK digital modulated signal transmission over FO-FSO and compared the results to better fiber optic-FSO links to achieve a last-mile communication network. This fiber optic and FSO model is analyzed for the distance up to 100 km of fiber optic channel and 0.4-1.5 km of FSO channel. Constellation diagrams and error-vector magnitude (EVM) concerning received power at the receiver are compared to analyze FSO channel capacity for various weather attenuations.
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来源期刊
ASEAN Engineering Journal
ASEAN Engineering Journal Engineering-Engineering (all)
CiteScore
0.60
自引率
0.00%
发文量
75
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