UFMC系统中一种有效的基于前导的CFO同步

Qiang Liu, Gao Kai
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引用次数: 3

摘要

通用滤波多载波(UFMC)是一种适用于5G无线通信的新型多载波调制技术,适用于短分组和低延迟传输。此外,与正交频分复用(OFDM)相比,UFMC对同步误差的敏感性较低,但同步仍然是基于UFMC的系统的一个重要问题。本文首先为基于UFMC的系统设计了一种基于Zadoff Chu (ZC)序列的引言结构。在此基础上,提出了一种有效的载波频偏估计方案。该方案主要分为两个步骤。首先,阐述了一种基于极大似然(ML)算法的粗载波频偏估计方法,并讨论了该方法的搜索步骤,使计算相对简单。其次,根据前导结构,对补偿前导进行相关,以估计精细残差CFO。通过大量的仿真,验证了该方案在多径衰落信道下具有较大的估计范围和准确的CFO估计。
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An Effective Preamble-based CFO Synchronization for UFMC Systems
Universal-filtered multi-carrier (UFMC) is a novel multi-carrier modulation technique for 5G wireless communication, which is suitable for short packet and low latency transmissions. In addition, UFMC has a lower sensitivity to synchronization errors compared with orthogonal frequency division multiplexing (OFDM), however synchronization is still an important problem for UFMC-based systems. In this paper, a new preamble structure based on Zadoff Chu (ZC) sequence is devised first for UFMC based systems. Then, an efficient carrier frequency offset (CFO) estimation scheme based on the preamble is proposed. The scheme is primarily divided into two steps. To begin with, based on Maximum likelihood (ML) algorithm, a coarse carrier frequency offset estimation approach is expounded and the searching step of this approach is discussed for a relatively simple calculation. Next, according to the preamble structure, compensated preamble is correlated for fine residual CFO estimation. Through numerous simulations, it is verified that the scheme has a large estimation range and accurate CFO estimation in multipath fading channels.
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