Kiem Nguyen Hong, Q. Nguyen-The, Binh Nguyen Duc, H. N. Tan, Dien Nguyen Van, Tuan Nguyen-Van, Phuoc Vuong Quang, D. Nguyen
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引用次数: 1
摘要
由于用户需求的快速增长,接入传输网络目前面临着流量拥塞问题。未来的第五代(5G)及以上网络必须克服这一问题,以确保最终用户能够访问高速网络,特别是在物联网(iot)、大数据等领域。自由空间光通信是利用光在自由空间中的传播,将大带宽的信号进行无线传输的技术,使这一问题得以实现。本文研究了接入网的结构,即发射机到SSMF/FSO混合信道,再到接收机。分析和评估了双极化复用16正交调幅(DP-16QAM)信号在晴空、降雨和恶劣天气等大气条件下SSMF和FSO链路混合配置的系统性能q因子。在恶劣天气条件下(25mm /h),通过混合80 km SSMF和1 km FSO链路,DP-16QAM信号的最低带宽为40 Gbaud。同时,对SSMF的传输距离、FSO距离、波束发散和接收机孔径进行了优化。
Performance analysis and optimization of hybrid fiber/FSO dual-polarization 16-QAM data link under different weather conditions
The access transport networks are currently facing the traffic congestion problem due to rapid growth of user’s needs. The future fifth generation (5G) and beyond networks must overcome this issue to ensure that end-users have access to high-speed networks, especially in the ace of internet of things (IoTs), big data and so on. In particular, free-space optical (FSO) communication is technology that transmit large bandwidth’s signal wirelessly by using light propagating in free space and enables to realize this existing problem. In this paper, the access network configuration, i.e. transmitter to hybrid SSMF/FSO channel then to receiver, has been studied. We analyzed and evaluated system performance Q-factor of the dual polarization multiplexed 16 quadrature amplitude modulation (DP-16QAM) signal with hybrid configuration of SSMF and FSO links under atmospheric conditions such as clear air, rain and heavy weather. The lowest bandwidth of signal DP-16QAM through hybrid 80 km SSMF and 1 km FSO link in heavy weather conditions (25 mm/h) is 40 Gbaud. At the same time, the transmission distance of SSMF, FSO range, beam divergence, and receiver aperture diameter is optimized.