Bohata Jan, Komanec Matěj, Spáčil Jan, Ghassemlooy Zabih, Zvánovec Stanislav, Slavík Radan
Opt Lett. 2018 Mar 1;43(5):1035-1038. doi: 10.1364/OL.43.001035.
This Letter outlines radio-over-fiber combined with radio-over-free-space optics (RoFSO) and radio frequency free-space transmission, which is of particular relevance for fifth-generation networks. Here, the frequency band of 24-26 GHz is adopted to demonstrate a low-cost, compact, and high-energy-efficient solution based on the direct intensity modulation and direct detection scheme. For our proof-of-concept demonstration, we use 64 quadrature amplitude modulation with a 100 MHz bandwidth. We assess the link performance by exposing the RoFSO section to atmospheric turbulence conditions. Further, we show that the measured minimum error vector magnitude (EVM) is 4.7% and also verify that the proposed system with the free-space-optics link span of 100 m under strong turbulence can deliver an acceptable EVM of <9% with signal-to-noise ratio levels of 22 dB and 10 dB with and without turbulence, respectively.
本信函概述了光纤无线电与自由空间光通信相结合的无线光通信(RoFSO)以及射频自由空间传输,这对于第五代网络尤为重要。在此,采用24 - 26GHz频段来展示一种基于直接强度调制和直接检测方案的低成本、紧凑且高能效的解决方案。对于我们的概念验证演示,我们使用带宽为100MHz的64正交幅度调制。我们通过将RoFSO部分置于大气湍流条件下来评估链路性能。此外,我们表明测得的最小误差向量幅度(EVM)为4.7%,并且还验证了在强湍流条件下自由空间光链路跨度为100m的所提出系统,在有和没有湍流的情况下,分别在信噪比水平为22dB和10dB时能够提供小于9%的可接受EVM。