Incoherent Optical Beamformer for ARoF Fronthaul in Mm-Wave 5G/6G Networks

被引:7
|
作者
Santacruz, Javier Perez [1 ]
Rommel, Simon [1 ]
Roeloffzen, Chris G. H. [2 ]
Timens, Roelof Bernardus [2 ]
van Dijk, Paul W. L. [2 ]
Jurado-Navas, Antonio [3 ]
Monroy, Idelfonso Tafur [1 ]
机构
[1] Eindhoven Univ Technol, Inst Photon Integrat, NL-5600MB Eindhoven, Netherlands
[2] LioniX Int, NL-7521 AN Enschede, Netherlands
[3] Univ Malaga, Inst Univ Invest Telecomunicac TELMA, Wireless Opt Lab, CEI Andalucia TECH ETSI Telecomunicac, Malaga 29010, Spain
关键词
Integrated optics; Array signal processing; Optical crosstalk; Optical attenuators; Optical beams; Optical transmitters; Optical fibers; ARoF; fronthaul; mm-wave; optical beamform- ing; OBFN; true time delay; 5G; 6G; ARRAY;
D O I
10.1109/JLT.2022.3221861
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Analog beamforming is a key technology to enable millimeter-wave (mm-wave) mobile communications. Nonetheless, the most widespread beamforming solutions are based on electrical implementation, which is inefficient in terms of power consumption, signal bandwidth, and losses. Optical beamforming is a promising alternative for future mm-wave mobile communications due to its inherent benefits, such as large bandwidth, low cross -talk, and low losses. Optical beamforming networks (OBFN) are an outstanding technique to simultaneously generate and radiate multiple beams in an effective manner. True time delays (TTDs) based on optical waveguides are an attractive solution since they offer constant delay in the spectrum to avoid beam squint and allow highly scalable OBFN implementation. In this work, for the first time to the best of the authors' knowledge, an incoherent 4x4 OBFN based on optical waveguides and capable of simultaneously gener-ating four beams is presented, including a thorough explanation of its operating principles and providing a detailed characterization. The presented OBFN is fabricated on Si3N4 photonic integrated circuit (PIC), and designed for transmission at 27.5 GHz, within the n257 5G band. Furthermore, the building blocks forming the OBFN PIC are deeply explained, providing their corresponding theoretical formulation and key design parameters. The fabricated PIC is exhaustively characterized through all its building blocks, showing in detail the realized measurement procedure. The ex-perimental measures match the design parameters with minimal error, showing the feasibility of fabricating future OBFNs with the same technology and topology for larger antenna arrays. The experimental results corroborate the viability of the presented OBFN architecture as an excellent technology to consider in future mm-wave 5G/6G networks. The contribution of this work paves the road to turn optical beamforming into a mature, scalable, and efficient technology.
引用
收藏
页码:1325 / 1334
页数:10
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