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A Fast and Efficient Frequency Offset Correction Technique for Coherent Optical Orthogonal Frequency Division Multiplexing

机译:相干光正交频分复用的快速高效频偏校正技术

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A wide-range frequency offset correction is an essential function in the coherent-detection optical (CO) orthogonal frequency division multiplexing (OFDM) system. However, unlike conventional radio-frequency OFDM systems, the frequency offsets of CO systems come from the laser instability and bring much higher randomness and uncertainty between the local oscillation source and the incoming signal. Therefore, it is difficult to achieve low complexity and high precision for the frequency offset estimation at the same time. To fulfill the requirement of the CO-OFDM transmission system, we propose a novel algorithm using sample-shifted training symbols for the fast acquisition of the frequency offset in the CO-OFDM system. Based on the characteristics of optical coherency and the CO-OFDM symbol interval, the dynamic tracking of the frequency offset variation can also be simplified by using the OFDM pilot subcarriers.
机译:在相干检测光学(CO)正交频分复用(OFDM)系统中,宽频偏校正是一项重要功能。但是,与常规射频OFDM系统不同,CO系统的频率偏移来自激光器的不稳定性,并在本地振荡源和输入信号之间带来更高的随机性和不确定性。因此,难以同时实现低复杂度和高精度的频率偏移估计。为了满足CO-OFDM传输系统的要求,我们提出了一种使用样本移位训练符号的新算法,用于在CO-OFDM系统中快速获取频率偏移。根据光学相干性和CO-OFDM符号间隔的特性,还可以通过使用OFDM导频子载波来简化频率偏移变化的动态跟踪。

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