Truong Tuan-Anh, Arzel Matthieu, Lin Hao, Jahan Bruno, Jezequel Michel
Opt Express. 2014 Jun 16;22(12):14322-40. doi: 10.1364/OE.22.014322.
This paper provides an analysis of the performance of conventional preamble-based time synchronization techniques, which have been proposed for Orthogonal Frequency Division Multiplexing (OFDM) radio transmissions, in the context of optical Intensity Modulated and Direct Detected (IMDD) OFDM transmissions over single-mode fiber. A novel preamble structure along with a two-stage synchronization algorithm is proposed. Thanks to the particular structure of the preamble, a first coarse synchronization metric does not present minor peaks. In addition, without the knowledge of the preamble waveform the receiver can perform both coarse and fine synchronization steps. As maximal delay in arrival time between different frequency components of a signal depends on chromatic dispersion and the signal bandwidth, it is also observed that a slowly time-varying preamble is more robust than a fast time-varying one. By means of numerical simulations, the proposed method is shown to provide better performance when compared to other conventional methods in terms of timing offset variance with reduced receiver complexity. In unamplified transmissions the proposed technique guarantees a quasi-optimal transmission capacity even with a short cyclic prefix.
本文分析了为正交频分复用(OFDM)无线传输所提出的传统基于前导码的时间同步技术在单模光纤上的光强度调制和直接检测(IMDD)OFDM传输中的性能。提出了一种新颖的前导码结构以及一种两阶段同步算法。由于前导码的特殊结构,第一个粗同步度量不存在小峰值。此外,在不知道前导码波形的情况下,接收器可以执行粗同步和精同步步骤。由于信号不同频率分量之间的最大到达时间延迟取决于色散和信号带宽,还观察到缓慢时变的前导码比快速时变的前导码更稳健。通过数值模拟表明,与其他传统方法相比,所提出的方法在定时偏移方差方面具有更好的性能,同时降低了接收器复杂度。在无放大传输中,即使使用短循环前缀,所提出的技术也能保证准最优传输容量。