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Cyclostationarity-Based Frequency Synchronization for OFDM Systems Over Doubly-Selective Fading Channels

机译:双选择性衰落信道上OFDM系统基于循环平稳性的频率同步

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摘要

Orthogonal frequency division multiplexing (OFDM) systems are highly sensitive to carrier frequency offset (CFO), especially in doubly-selective fading environment. Cyclostationarity-based blind synchronization methods are appealing in high-data-rate applications and low signal-to-noise regions. However, the cyclostationarity has not been exploited for frequency synchronization of OFDM systems under doubly-selective fading channels. In this paper, we derive the close-form second order cyclic statistics of the received OFDM signal in presence of CFO, by modeling the doubly-selective fading channel with basis expansion model. Both transmitter-induced cyclostationarity and doubly-selective channel information are contained in the derived cyclic moments, and they are efficiently utilized for CFO estimation. Simulation results demonstrate that the proposed estimator provides significant improvements on frequency synchronization performance.
机译:正交频分复用(OFDM)系统对载波频率偏移(CFO)高度敏感,尤其是在双选衰落环境中。基于循环平稳性的盲同步方法在高数据速率应用和低信噪比区域中颇受欢迎。但是,循环平稳性尚未被用于双选择衰落信道下的OFDM系统的频率同步。在本文中,我们通过使用基本扩展模型对双选衰落信道进行建模,得出了存在CFO时接收到的OFDM信号的闭式二阶循环统计量。发射机引起的循环平稳性和双选信道信息都包含在导出的循环矩中,它们可有效地用于CFO估计。仿真结果表明,所提出的估计器对频率同步性能提供了显着的改进。

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