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基于子星座重叠星座整形技术在16公里实地部署的7芯光纤上实现116.66太比特/秒的波分复用传输。

116.66-Tb/s WDM transmission over 16 Km field deployed 7-core fiber based on sub-constellations overlap constellation shaping.

作者信息

Zhao Jianye, Ren Jianxin, Liu Bo, Mao Yaya, Ullah Rahat, Wu Xiangyu, Chen Shuaidong, Wu Yongfeng, Zhao Lilong, Li Zhaohui

出版信息

Opt Express. 2023 Aug 14;31(17):28355-28369. doi: 10.1364/OE.497946.

Abstract

Constellation shaping (CS) has always been a popular research hotspot in optical communication. Recently, most researchers have focussed on using constellation-shaping technology to improve the system's performance, ignoring the additional penalty it brings to the coherent system. This paper proposes a method of constellation truncation using sub-constellation overlap to perform CS on quadrature amplitude modulation (QAM). The experimental results show that compared with the traditional probabilistic shaping 16QAM, the proposed scheme can effectively avoid the extra penalty brought by CS and achieve a gain from 0.5 to 1.5 dB in optical signal-to-noise ratio. To practically verify the proposed scheme's performance, 7-core 16 km fiber span is deployed in the field to experimentally perform space division multiplexed coherent transmission. The wavelength division multiplexing (WDM) of 93 carriers was used to achieve coherent transmission at a net rate of 116.66-Tb/s.

摘要

星座整形(CS)一直是光通信领域一个热门的研究热点。最近,大多数研究人员都专注于使用星座整形技术来提高系统性能,却忽略了它给相干系统带来的额外代价。本文提出了一种利用子星座重叠进行星座截断的方法,以在正交幅度调制(QAM)上执行CS。实验结果表明,与传统的概率整形16QAM相比,该方案能够有效避免CS带来的额外代价,并在光信噪比方面实现0.5至1.5 dB的增益。为了实际验证所提方案的性能,在现场部署了7芯16 km的光纤跨度,以实验方式进行空分复用相干传输。采用93个载波的波分复用(WDM)实现了116.66-Tb/s净速率的相干传输。

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