Huang Yongtao, Chen Yuanxiang, Li Kaile, Han Ying, Fu Jia, Ma Jie, Li Yitong, Yu Jianguo, Li Xinguo
Opt Express. 2020 Aug 17;28(17):24343-24352. doi: 10.1364/OE.392917.
In this paper, we propose a novel phase noise suppression method based on Gaussian basis expansion (GBE) for CO-OFDM systems. We analyze the basic phase noise suppression principle of GBE and then demonstrate it in optical OFDM transmission systems. Compared with common phase compensation (CPE), orthogonal basis expansion (OBE) and eigenvector basis expansion (EBE) schemes, the proposed GBE scheme has better phase noise fitting ability with similar computation complexity. Futhermore, no additional back to back (BTB) pre-training is needed for the GBE scheme. Performance improvements by the GBE is experimental validated in the QPSK/16-QAM OFDM system with different transmission scenarios (different number of pilots and input power). In the QPSK-OFDM system, after 160 km SSMF transmission, a Q-factor improvement of 1.7 dB and 0.5 dB are achieved compared with the CPE and OBE schemes at the optimum input power of -4 dBm, respectively. In the 16-QAM-OFDM system, the measured BER improved from 8.21×10 to 2.36×10 with the GBE scheme. To further verify the effectiveness of the GBE scheme, we change the laser linewidth and measure the long transmission distance performance by simulation, the results show that the GBE scheme can effectively increase the laser linewidth tolerance and extend transmission distance. When the linewidth is 2-MHz, the proposed GBE scheme can extend the transmission distance from 1120 km to 1540 km at the BER of 10. Experimental and simulation results show that the proposed GBE scheme is a promising alternative phase noise suppression for CO-OFDM system.
在本文中,我们针对相干光正交频分复用(CO-OFDM)系统提出了一种基于高斯基扩展(GBE)的新型相位噪声抑制方法。我们分析了GBE的基本相位噪声抑制原理,然后在光正交频分复用传输系统中进行了验证。与普通相位补偿(CPE)、正交基扩展(OBE)和特征向量基扩展(EBE)方案相比,所提出的GBE方案在计算复杂度相近的情况下具有更好的相位噪声拟合能力。此外,GBE方案无需额外的背对背(BTB)预训练。GBE在具有不同传输场景(不同导频数量和输入功率)的QPSK/16-QAM OFDM系统中通过实验验证了性能提升。在QPSK-OFDM系统中,经过160 km的单模光纤(SSMF)传输后,在-4 dBm的最佳输入功率下,与CPE和OBE方案相比,Q因子分别提高了1.7 dB和0.5 dB。在16-QAM-OFDM系统中,采用GBE方案时测量的误码率从8.21×10提高到2.36×10。为了进一步验证GBE方案的有效性,我们改变激光线宽并通过仿真测量长传输距离性能,结果表明GBE方案可以有效提高激光线宽容限并扩展传输距离。当线宽为2 MHz时,所提出的GBE方案在误码率为10时可将传输距离从1120 km扩展到1540 km。实验和仿真结果表明,所提出的GBE方案是一种有前途的用于CO-OFDM系统的相位噪声抑制方法。