Zhang Xuebing, Li Jianping, Li Chao, Luo Ming, Li Haibo, He Zhixue, Yang Qi, Lu Chao, Li Zhaohui
Opt Express. 2014 Sep 22;22(19):22888-94. doi: 10.1364/OE.22.022888.
A pilot-based blind (PBB) phase estimation method for the coherent optical orthogonal frequency-division multiplexing (CO-OFDM) system is demonstrated in this paper. Instead of inserting the pilot-subcarriers that are loaded with the already known information in the OFDM signal, the unknown and specially designed signal is used to replace the signal on the pilot subcarriers to decrease the waste of spectrum and has demonstrated good performance in the phase noise compensation. Therefore, the spectral efficiency (SE) is further improved compared with the conventional pilot-aided (PA) phase noise estimation method. Both the proposed PBB and conventional PA estimation methods are compared in a CO-OFDM transmission experiment, which is modulated by 4 quadrature amplitude modulation (4-QAM) formats and transmitted over 1760-km standard single-mode fiber (SSMF) without optical dispersion compensation. The experimental results show that the proposed PBB method can achieve the similar performance as the conventional PA method.
本文展示了一种用于相干光正交频分复用(CO-OFDM)系统的基于导频的盲(PBB)相位估计方法。该方法不是在OFDM信号中插入加载已知信息的导频子载波,而是使用未知的特殊设计信号来替代导频子载波上的信号,以减少频谱浪费,并且在相位噪声补偿方面表现出良好性能。因此,与传统的导频辅助(PA)相位噪声估计方法相比,频谱效率(SE)得到了进一步提高。在一个CO-OFDM传输实验中对所提出的PBB和传统PA估计方法进行了比较,该实验采用4种正交幅度调制(4-QAM)格式进行调制,并在无光学色散补偿的1760公里标准单模光纤(SSMF)上传输。实验结果表明,所提出的PBB方法能够实现与传统PA方法相似的性能。