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用于相干光正交频分复用(CO-OFDM)的基于伪导频辅助高斯基扩展的相位噪声抑制方案的实验验证

Experimental demonstration of pseudo-pilots-aided Gaussian basis expansion-based phase noise suppression scheme for CO-OFDM.

作者信息

Chen Yuanxiang, Huang Yongtao, Han Ying, Fu Jia, Yu Jianguo

出版信息

Opt Express. 2021 Apr 12;29(8):11750-11759. doi: 10.1364/OE.416153.

DOI:10.1364/OE.416153
PMID:33984950
Abstract

In this paper, we propose a novel phase noise suppression scheme called pseudo-pilots-aided Gaussian basis expansion (PS-GBE) for coherent optical orthogonal frequency division multiplexing (CO-OFDM) system. Integrating with the pseudo-pilots, the Gaussian basis can suppress and fit phase noise effectively with high spectral efficiency (SE). We experimentally demonstrate the proposed scheme in 200-Gb/s optical QPSK-OFDM superchannel and 400-Gb/s optical 16QAM-OFDM superchannel. According to the experimental results, the proposed PS-GBE has a phase noise suppression performance similar to the GBE scheme. However, different from the GBE scheme, fewer pilots are needed for phase noise estimation in PS-GBE. Hence, the proposed PS-GBE can achieve higher SE. Compared to the pseudo-pilots-aided orthogonal basis expansion-based (PS-OBE) phase noise suppression and traditional common phase noise compensation (CPEC) methods, the proposed PS-GBE can get a significant performance enhancement. In the QPSK-OFDM system, a Q-factor improvement of 1.1 dB is obtained compared to the PS-OBE method. In the 16QAM-OFDM system, the BER is enhanced from 1.00E-03 to 2.05E-04. Further simulation results indicate that our proposed PS-GBE scheme can effectively increase laser linewidth tolerance. The proposed scheme can be applied to CO-OFDM and extended to coherent optical filterbank multicarrier (CO-FBMC) and coherent optical single carrier frequency domain multiplexing (CO-SCFDM) transmission system.

摘要

在本文中,我们为相干光正交频分复用(CO-OFDM)系统提出了一种名为伪导频辅助高斯基扩展(PS-GBE)的新型相位噪声抑制方案。高斯基与伪导频相结合,能够以高光谱效率(SE)有效抑制和拟合相位噪声。我们在200-Gb/s光QPSK-OFDM超信道和400-Gb/s光16QAM-OFDM超信道中对所提出的方案进行了实验验证。根据实验结果,所提出的PS-GBE具有与GBE方案相似的相位噪声抑制性能。然而,与GBE方案不同的是,PS-GBE在相位噪声估计中所需的导频较少。因此,所提出的PS-GBE能够实现更高的光谱效率。与伪导频辅助的基于正交基扩展(PS-OBE)的相位噪声抑制和传统的公共相位噪声补偿(CPEC)方法相比,所提出的PS-GBE能够实现显著的性能提升。在QPSK-OFDM系统中,与PS-OBE方法相比,Q因子提高了1.1 dB。在16QAM-OFDM系统中,误码率从1.00E-03提高到2.05E-04。进一步的仿真结果表明,我们所提出的PS-GBE方案能够有效提高激光线宽容限。所提出的方案可应用于CO-OFDM,并可扩展到相干光滤波器组多载波(CO-FBMC)和相干光单载波频域复用(CO-SCFDM)传输系统。

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