Lima Eduardo Saia, Borges Ramon Maia, Andriolli Nicola, Conforti Evandro, Contestabile Giampiero, Sodré Arismar Cerqueira
Laboratório WOCA, (Inatel), Santa Rita do Sapucaí, Brazil.
Institute of Systems Engineering and Information Technology, Federal University of Itajubá (UNIFEI), Itajubá, Brazil.
Sci Rep. 2022 Sep 30;12(1):16421. doi: 10.1038/s41598-022-20553-5.
We experimentally demonstrate the use of optical frequency combs (OFCs), generated by a photonic integrated circuit (PIC), in a flexible optical distribution network based on fiber-optics and free-space optics (FSOs) links, aimed at the fifth generation of mobile network (5G) Xhauls. The Indium Phosphide (InP) monolithically integrated OFC is based on cascaded optical modulators and is broadly tunable in terms of operating wavelength and frequency spacing. Particularly, our approach relies on applying the PIC in a centralized radio access network (C-RAN) architecture, with the purpose of optically generating two low-phase noise mm-waves signals for simultaneously enabling a 12.5-km of single-mode fiber (SMF) fronthaul and a 12.5-km SMF midhaul, followed by a 10-m long FSO fronthaul link. Moreover, the demonstrator contemplates two 10-m reach 5G wireless access networks operating in the 26 GHz band, i.e. over the frequency range 2 (FR2) from the 5G NR standard. The proposed integrated OFC-based 5G system performance is in accordance to the 3rd Generation Partnership Project (3GPP) Release 15 requirements, achieving a total wireless throughput of 900 Mbit/s.
我们通过实验证明了由光子集成电路(PIC)产生的光学频率梳(OFC)在基于光纤和自由空间光学(FSO)链路的灵活光分配网络中的应用,该网络旨在用于第五代移动网络(5G)前传。磷化铟(InP)单片集成OFC基于级联光学调制器,在工作波长和频率间隔方面具有广泛的可调性。特别地,我们的方法依赖于将PIC应用于集中式无线接入网络(C-RAN)架构,目的是光学产生两个低相位噪声毫米波信号,以同时实现12.5公里的单模光纤(SMF)前传和12.5公里的SMF中传,随后是10米长的FSO前传链路。此外,演示器考虑了两个在26GHz频段运行的10米覆盖范围的5G无线接入网络,即5G NR标准中的频率范围2(FR2)。所提出的基于集成OFC的5G系统性能符合第三代合作伙伴计划(3GPP)Release 15要求,实现了900Mbit/s的总无线吞吐量。