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一种基于偏振复用解复用的光带通滤波器的基于偏振复用的128Gb/s四电平脉冲幅度调制光纤-自由空间光通信收敛系统。

A PDM-based 128-Gb/s PAM4 fibre-FSO convergent system with OBPFs for polarisation de-multiplexing.

作者信息

Wu Hsiao-Wen, Li Chung-Yi, Lu Hai-Han, Huang Qi-Ping, Tu Shi-Cheng, Huang Yong-Cheng

机构信息

Department of Electronic Engineering, Tungnan University, New Taipei City, 222, Taiwan.

Department of Communication Engineering, National Taipei University, New Taipei City, 237, Taiwan.

出版信息

Sci Rep. 2020 Feb 5;10(1):1872. doi: 10.1038/s41598-020-58558-7.

Abstract

A polarisation-division-multiplexing (PDM)-based four-level pulse amplitude modulation (PAM4) fibre-free-space optical (FSO) convergent system with optical band-pass filters (OBPFs) for polarisation de-multiplexing is feasibly demonstrated for the first time. In a PDM scenario with PAM4 modulation, the transmission capacity of fibre-FSO convergent systems is enhanced four times with an aggregate channel capacity of 128 Gb/s (64 Gb/s PAM4/polarisation × 2 polarisations). With an OBPF, polarisation-tracking free de-multiplexing is attained by eliminating other optical carrier with orthogonal polarisation. An OBPF is a simple polarisation de-multiplexing scheme in which the polarisation-orthogonal carrier can be effectively de-multiplexed and the cross-polarisation interference can be nearly eliminated. Compared with traditional PDM-based fibre-FSO convergent systems with sophisticated polarisation-tracking mechanism and elaborate digital signal processing (DSP) approach, it reveals a noteworthy one with the advantage of simplicity. Through 25 km single-mode fibre transport and 500 m FSO link, sufficiently low bit error rate and qualified PAM4 eye diagrams are attained. This proposed polarisation-tracking free PDM-based fibre-FSO convergent system is notable because it not only incorporates the fibre backbone and optical wireless feeder, but it also simplifies the framework since complicated polarisation-tracking mechanism and DSP approach are not involved.

摘要

首次成功演示了一种基于偏振分复用(PDM)的四电平脉冲幅度调制(PAM4)无光纤自由空间光(FSO)收敛系统,该系统带有用于偏振解复用的光学带通滤波器(OBPF)。在采用PAM4调制的PDM场景中,光纤-FSO收敛系统的传输容量提高了四倍,总信道容量达到128 Gb/s(64 Gb/s PAM4/偏振×2个偏振)。借助OBPF,通过消除具有正交偏振的其他光载波实现了无需偏振跟踪的解复用。OBPF是一种简单的偏振解复用方案,其中偏振正交载波可以被有效解复用,并且交叉偏振干扰几乎可以消除。与具有复杂偏振跟踪机制和精细数字信号处理(DSP)方法的传统基于PDM的光纤-FSO收敛系统相比,它是一个值得注意的系统,具有简单的优点。通过25 km单模光纤传输和500 m FSO链路,实现了足够低的误码率和合格的PAM4眼图。所提出的基于PDM的无需偏振跟踪的光纤-FSO收敛系统值得关注,因为它不仅整合了光纤骨干网和光无线馈线,而且由于不涉及复杂的偏振跟踪机制和DSP方法,还简化了架构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb91/7002554/9e55bde8a7a4/41598_2020_58558_Fig1_HTML.jpg

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