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基于弱耦合多环芯少模光纤的长距离多式联运无多输入多输出中距离色散补偿传输。

Long-haul intermodal-MIMO-free MDM transmission based on a weakly coupled multiple-ring-core few-mode fiber.

作者信息

Zuo Mingqing, Ge Dawei, Liu JiaXin, Gao Yuyang, Shen Lei, Lan Xiaobo, Chen Zhangyuan, He Yongqi, Li Juhao

出版信息

Opt Express. 2022 Feb 14;30(4):5868-5878. doi: 10.1364/OE.451971.

Abstract

Mode-division multiplexing (MDM) technique based on few-mode fibers (FMFs) can achieve multiplicative growth in single-fiber capacity by using different linearly polarized (LP) modes or mode groups as spatial channels. However, its deployment is seriously impeded because multiple-input multiple-output digital signal processing (MIMO-DSP) with huge computational load must be adopted to combat intermodal crosstalk for long-haul FMF transmission. In this paper, we present an intermodal-MIMO-free MDM transmission scheme based on weakly coupled multiple-ring-core FMF, which achieves ultralow distributed modal crosstalk (DMC) so that the signal in each LP mode can be independently received by single-LP-mode MIMO-DSP even after hundreds-of-kilometer transmission. Evaluation method for the required DMC levels is proposed and different transmission reaches are investigated by simulation. By adopting an improved method for quantitative DMC measurement, we show that the required DMC level for long-haul transmission is feasible. Finally, we experimentally demonstrate 1800-km LP/LP multiplexed transmission and 525-km LP/LP/LP multiplexed transmission only adopting 2×2 or 4×4 MIMO-DSP. The proposed scheme may pave the way to practical applications of long-haul MDM techniques for the first time.

摘要

基于少模光纤(FMF)的模式分割复用(MDM)技术,可通过将不同的线偏振(LP)模式或模式组用作空间信道,实现单光纤容量的成倍增长。然而,其部署受到严重阻碍,因为对于长距离FMF传输,必须采用具有巨大计算负载的多输入多输出数字信号处理(MIMO-DSP)来对抗模式间串扰。在本文中,我们提出了一种基于弱耦合多环芯FMF的无模式间MIMO的MDM传输方案,该方案实现了超低的分布式模式串扰(DMC),使得即使经过数百公里的传输,每个LP模式中的信号也能由单LP模式MIMO-DSP独立接收。提出了所需DMC电平的评估方法,并通过仿真研究了不同的传输距离。通过采用一种改进的定量DMC测量方法,我们表明长距离传输所需的DMC电平是可行的。最后,我们仅采用2×2或4×4 MIMO-DSP,通过实验演示了1800公里的LP/LP复用传输和525公里的LP/LP/LP复用传输。所提出的方案可能首次为长距离MDM技术的实际应用铺平道路。

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