Photonic Wireless Links for 5G Broadband Access Networks

K. Zeb, Zhenguo Lu, Jiaren Liu, Y. Mao, M. Rahim, P. Poole, P. Barrios, Guocheng Liu, G. Pakulski, Weihong Jiang, M. Vachon, Xiupu Zhang
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Abstract

This paper presents a real-time demonstration of all-optical broadband photonic wireless downlink and uplink transmissions at the K-band with data rates of 16-Gb/s and 4 to 12-Gb/s, respectively. The experimental configuration is comprised of optical fiber and RF wireless channel with a successful transmission and detection of 4 GHz 16-quadrature amplitude modulated (QAM) wireless signals at 25 GHz over 2-m of wireless distance in the downlink using photonic heterodyning of a low noise monolithic quantum dash (QD) passively mode-locked laser (MLL), whereas in the uplink, a single wavelength laser is employed together with an optical intensity modulator to transmit 4/16/64-QAM signals with 2 GHz bandwidth. For both downlink and uplink, error vector magnitude (EVM) of lower than the standard requirements of 17.5%, 12.5% and 8% is achieved for 4, 16, and 64-QAM signals, respectively.
5G宽带接入网的光子无线链路
本文给出了k波段全光宽带光子无线下行和上行传输的实时演示,数据速率分别为16gb /s和4 ~ 12gb /s。实验配置由光纤和射频无线信道组成,在下行链路中,利用低噪声单片量子dash (QD)被动锁模激光器(MLL)的光子外差,成功地在2米无线距离上传输和检测了25 GHz的4 GHz 16正交调幅(QAM)无线信号。采用单波长激光器和光强调制器,传输带宽为2ghz的4/16/64-QAM信号。对于下行和上行,4、16和64-QAM信号的误差矢量幅度(EVM)分别低于17.5%、12.5%和8%的标准要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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