Theoretical and experimental study on PMD-supported transmission using polarization diversity in coherent optical OFDM systems.

Theoretical and experimental study on PMD-supported transmission using polarization diversity in coherent optical OFDM systems.
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DOI:
10.1364/oe.15.009936
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发表时间:
2007-08
期刊:
影响因子:
3.8
通讯作者:
William Shieh;Xingwen Yi;Yiran Ma;Yan Tang
William Shieh;Xingwen Yi;Yiran Ma;Yan Tang
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
William Shieh;Xingwen Yi;Yiran Ma;Yan Tang

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本文对相干光正交频分复用(CO-OFDM)系统中偏振模色散(PMD)支持的传输进行了理论和实验研究。首先,我们提出了模型的光纤通信信道中存在的偏振效应。结果表明,光纤信道模型可以看作是一种特殊的多输入多输出(MIMO)模型,即一种二输入二输出(蒂托)模型,它本质上是由光通信界所熟悉的二元琼斯矢量表示的。详细讨论了各种相干光MIMO-OFDM(CO-MIMO-OFDM)模型。此外,我们展示了第一个实验的极化分集检测的CO-OFDM系统。特别地,在10.7 Gb/s的CO-OFDM信号在900 ps的差分群延迟(DGD)和1000 km的传输之后通过SSMF光纤在没有光色散补偿的情况下被成功地恢复。高阶PMD的传输实验进一步证实了CO-OFDM信号在传输光纤中对PMD的免疫性。还报道了PMD支持的传输的非线性性能。首次在CO-OFDM传输中,实验证明了基于接收机数字信号处理的非线性相位噪声抑制。
In this paper, we conduct theoretical and experimental study on the PMD-supported transmission with coherent optical orthogonal frequency-division multiplexing (CO-OFDM). We first present the model for the optical fiber communication channel in the presence of the polarization effects. It shows that the optical fiber channel model can be treated as a special kind of multiple-input multiple-output (MIMO) model, namely, a two-input two-output (TITO) model which is intrinsically represented by a two-element Jones vector familiar to the optical communications community. The detailed discussions on various coherent optical MIMO-OFDM (CO-MIMO-OFDM) models are presented. Furthermore, we show the first experiment of polarization-diversity detection in CO-OFDM systems. In particular, a CO-OFDM signal at 10.7 Gb/s is successfully recovered after 900 ps differential-group-delay (DGD) and 1000-km transmission through SSMF fiber without optical dispersion compensation. The transmission experiment with higher-order PMD further confirms the immunity of the CO-OFDM signal to PMD in the transmission fiber. The nonlinearity performance of PMD-supported transmission is also reported. For the first time, nonlinear phase noise mitigation based on receiver digital signal processing is experimentally demonstrated for CO-OFDM transmission.