A synchronization algorithm based on cyclostationarity and pilots in OFDM systems

Liting Guo, Sujun Zhu
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Abstract

The range of the frequency offset estimation algorithms using pilots only proposed in earlier papers is limited unless initial acquisition is assisted. So in this paper, we propose a new, semi-blind algorithm based on pilots and cyclostationarity. First, the cyclostationarity of the OFDM signal which contains pilots is proved. Then the algorithm for estimating the carrier frequency offset based on the cyclic autocorrelation function of the cyclostationary signal is proposed. Compared with those algorithms using pilots directly, this new algorithm can get larger frequency offset estimation up to half of the bandwidth of the OFDM system without initial acquisition, and the symbol timing can be estimated as well.
OFDM系统中基于循环平稳和导频的同步算法
在早期的论文中仅提出的使用导频的频率偏移估计算法的范围是有限的,除非辅助初始采集。因此,本文提出了一种新的基于导频和循环平稳性的半盲算法。首先,证明了含导频OFDM信号的循环平稳性。然后提出了基于循环平稳信号的循环自相关函数估计载波频偏的算法。与直接使用导频的算法相比,该算法可以在不进行初始采集的情况下获得更大的频偏估计,达到OFDM系统带宽的一半,并且可以估计符号时序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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