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Rf-pilot phase noise compensation for long-haul coherent optical OFDM systems

机译:远程相干光OFDM系统的射频导频相位噪声补偿

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Long-haul optical transmission systems employing coherent optical orthogonal frequency division multiplexing (CO-OFDM) are sensitive to laser phase noise. This causes a common phase rotation and inter-carrier interference. An effective method to compensate for the phase noise is to insert an RF-pilot tone in the middle of the OFDM signal. This RF-pilot is used to reverse the phase distortion at the receiver. This paper presents a performance analysis of the RF-pilot phase noise compensation scheme in a simulated 64 Gb/s CO-OFDM system. The effects of various parameters including laser linewidth, Mach-Zehnder modulator drive power, pilot-to-signal ratio, and fiber launch power are investigated. A comparison with the pilot-aided common phase error compensation method is provided to show the differences in the BER performance with respect to the required overhead.
机译:采用相干光正交频分复用(CO-OFDM)的长距离光传输系统对激光相位噪声敏感。这导致共同的相位旋转和载波间干扰。补偿相位噪声的有效方法是在OFDM信号的中间插入RF导频音。该RF导频用于在接收器处反转相位失真。本文介绍了在模拟的64 Gb / s CO-OFDM系统中RF导频相位噪声补偿方案的性能分析。研究了各种参数的影响,包括激光线宽,Mach-Zehnder调制器驱动功率,导频信号比和光纤发射功率。提供了与导频辅助的公共相位误差补偿方法的比较,以显示BER性能相对于所需开销的差异。

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