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Joint IQ imbalance compensation and channel estimation in coherent optical OFDM systems

机译:相干光OFDM系统中的联合IQ不平衡补偿和信道估计

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Coherent optical orthogonal frequency division multiplexing (CO-OFDM) is considered to be promising technique for meeting the ever increasing demand of data rate. It exhibits many advantages of coherent detection and OFDM, making the optical transmission over fiber extremely robust against distortions such as chromatic dispersion and polarisation mode dispersion. However, CO-OFDM is sensitive to IQ imbalance, in particular, when a homodyne (or direct down-conversion) receiver is used. In this paper, we study the impact of transmitter and receiver side IQ imbalance on coherent optical transmission over a single-mode fiber. Moreover, we investigate different methods, particularly in the frequency domain, to jointly compensate the IQ imbalance and to equalize the optical fiber channel, taking the effect of chromatic dispersion into account. The proposed minimum mean square error (MMSE) compensation algorithm shows superior performance, compared to conventional method. Furthermore, an optimum design of training sequence is derived and expressed in a closed-form, which provides significant performance gains even without applying IQ imbalance compensation.
机译:相干光正交频分复用(CO-OFDM)被认为是满足不断增长的数据速率需求的有前途的技术。它具有相干检测和OFDM的许多优点,从而使光纤上的光传输极强健,可抵抗诸如色散和偏振模色散之类的失真。但是,特别是在使用零差(或直接下变频)接收机时,CO-OFDM对IQ不平衡敏感。在本文中,我们研究了发射器和接收器IQ失衡对单模光纤上相干光传输的影响。此外,我们考虑了色散的影响,研究了不同的方法,特别是在频域中,以联合补偿IQ不平衡并均衡光纤通道。与传统方法相比,所提出的最小均方误差(MMSE)补偿算法显示出卓越的性能。此外,得出了训练序列的最佳设计并以封闭形式表示,即使不应用IQ不平衡补偿也可以提供显着的性能提升。

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