Li Jie, Fan Runzhe, He Qingyu, Luo Ming, Li Xiang
Opt Lett. 2024 Sep 15;49(18):5127-5130. doi: 10.1364/OL.536923.
Time and frequency division multiplexing (TFDM) coherent passive optical networks (PONs) are considered as a promising candidate for future optical access networks due to the advantage of high sensitivity, high spectral efficiency, and flexibility. We propose a novel, to our knowledge, bidirectional TFDM 200-Gb/s coherent PON architecture based on the digital subcarrier multiplexing (DSCM) technology. A polarization-insensitive simplified coherent receiver is achieved at the ONU side by Alamouti coding and heterodyne detection. We experimentally demonstrate this bidirectional coherent PON with a 50-Gbaud Alamouti 16 quadrature amplitude modulation (QAM) signal transmitted downstream and a 25-Gbaud dual polarization (DP)-16QAM signal transmitted upstream. By using a single sideband modulated transmitter, only one laser source is required at the optical network unit (ONU) side. The power budgets can reach 30 and 33 dB for the downstream and upstream, respectively, after the 20-km transmission over a standard single-mode fiber (SSMF).
时分频分复用(TFDM)相干无源光网络(PON)由于具有高灵敏度、高光谱效率和灵活性等优点,被认为是未来光接入网络的一个有前途的候选方案。据我们所知,我们提出了一种基于数字子载波复用(DSCM)技术的新型双向TFDM 200 Gb/s相干PON架构。通过Alamouti编码和外差检测,在光网络单元(ONU)侧实现了对偏振不敏感的简化相干接收机。我们通过实验演示了这种双向相干PON,下行传输50 Gbaud Alamouti 16正交幅度调制(QAM)信号,上行传输25 Gbaud双偏振(DP)-16QAM信号。通过使用单边带调制发射机,在光网络单元(ONU)侧仅需要一个激光源。在标准单模光纤(SSMF)上传输20公里后,下行和上行的功率预算分别可以达到30 dB和33 dB。