Nguyen Dong-Nhat, Vallejo Luis, Almenar Vincenc, Ortega Beatriz, Tien Dat Pham, Le Son Thai, Bohata Jan, Zvanovec Stanislav
Appl Opt. 2022 Feb 10;61(5):1183-1193. doi: 10.1364/AO.447529.
We propose a stable full-duplex transmission of millimeter-wave signals over a hybrid single-mode fiber (SMF) and free-space optics (FSO) link for the fifth-generation (5G) radio access networks to accelerate the Industry 4.0 transformation. For the downlink (DL), we transmit 39 GHz subcarrier multiplexing (SCM) signals using variable quadrature amplitude modulation (QAM) allocations for multi-user services. As a proof of operation, we experimentally demonstrate the transmission of 3 Gb/s SCM signals (1 Gb/s per user) over a hybrid system consisting of a 10 km SMF and 1.2 m FSO link. For the uplink (UL), satisfactory performance for the transmission of 2.4 Gb/s 5G new radio (NR) signal at 37 GHz over the hybrid system is experimentally confirmed for the first time, to the best of our knowledge. The measured error vector magnitudes for both DL and UL signals using 4/16/64-QAM formats are well below the third generation partnership project (3GPP) requirements. We also further evaluate by simulation the full-duplex transmission over the system in terms of received optical and RF powers and bit error rate performance. A wireless radio distance of approximately 200 m, which is sufficient for 5G small-cell networks, is estimated for both DL and UL direction under the heavy rain condition, based on the available data from Spain. Furthermore, simulation for the DL direction is conducted to verify the superior performance of the system using variable QAM allocation over uniform QAM allocation. Using a variable modulation allocation, up to five users (2 Gb/s per user) can be transmitted over a hybrid 10 km SMF and 150 m FSO link.
我们提出了一种在混合单模光纤(SMF)和自由空间光通信(FSO)链路上实现毫米波信号稳定全双工传输的方案,用于第五代(5G)无线接入网络,以加速工业4.0转型。对于下行链路(DL),我们使用可变正交幅度调制(QAM)分配来传输39 GHz子载波复用(SCM)信号,以提供多用户服务。作为运行验证,我们通过实验证明了在由10 km单模光纤和1.2 m自由空间光通信链路组成的混合系统上传输3 Gb/s SCM信号(每个用户1 Gb/s)。据我们所知,对于上行链路(UL),首次通过实验证实了在混合系统上以37 GHz传输2.4 Gb/s 5G新无线电(NR)信号具有令人满意的性能。使用4/16/64-QAM格式测量的下行链路和上行链路信号的误差矢量幅度均远低于第三代合作伙伴计划(3GPP)的要求。我们还通过仿真进一步评估了系统在接收光功率和射频功率以及误码率性能方面的全双工传输。根据西班牙的可用数据,在暴雨条件下,估计下行链路和上行链路方向的无线传输距离约为200 m,这对于5G小蜂窝网络来说已经足够。此外,还对下行链路方向进行了仿真,以验证使用可变QAM分配的系统比均匀QAM分配具有更优越的性能。使用可变调制分配,最多可在10 km单模光纤和150 m自由空间光通信链路的混合链路上传输五个用户(每个用户2 Gb/s)。