Two-way free-space optics-based interface between fibre and 5G communication employing polarisation-orthogonal modulation

Author:

Lu Hai-HanORCID,Huang Xu-Hong,Li Chung-YiORCID,Xu Yan-Zhen,Jin Jia-Lian,Chen Wei-Xiang,Lin Chih-Hong,Wu Tsai-Man

Abstract

AbstractFifth-generation (5G) communication provides a substantial increase in data transmission capacity because of more available bandwidth and advanced communication techniques. It opens the door to a range of new applications, such as 4K/8K video streaming, Internet of Things, autonomous vehicles, unmanned aerial vehicles, and more. However, atmospheric attenuation poses a technical challenge for 5G communication, especially at higher frequencies. Free-space optics (FSO)-based interface between fibre and 5G communication integrates fibre optics, FSO and 5G communications, achieving high-speed and long-distance transmission and providing an alternative for 5G signal transport. Here we report a two-way fibre-FSO-5G wireless communication employing polarisation-orthogonal modulation. After 25-km single-mode fibre, 1-km FSO, and 20-m (millimetre-wave)/10-m (sub-6 GHz) radio-frequency wireless transport, satisfactorily low bit error rates and error vector magnitudes are acquired, meeting the demands of 5G emerging applications.

Funder

Ministry of Science and Technology, Taiwan

Hsinchu Science Park Emerging Technology Application Program (112AO02B) Qualcomm Technologies, Inc.

Publisher

Springer Science and Business Media LLC

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