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Blind carrier frequency offset estimation for single carrier and orthogonal frequency division multiplexing signals using least-order cyclic moments

机译:使用最小阶循环矩估计单载波和正交频分复用信号的盲载波频率偏移

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摘要

A definition of least cyclostationary order (LCO) is proposed based on the inner cyclic period of single carrier and orthogonal frequency division multiplexing (OFDM) signals. The LCOs of single carrier and OFDM signals are derived. Since the LCO has a relationship with the carrier frequency offset (CFO), a blind CFO estimation scheme for single carrier and OFDM signals can be proposed. The novel scheme is entirely blind without any priori information and is proved to be the same as cumulants estimation when the LCO is known. However, the new scheme is superior to the estimation based on cumulant when the LCO is unknown. The mean-square error of -phase shift keying signals approaches the Cramér–Rao bound in additive white Gaussian noise (AWGN) channel. Simulation results are given to verify the effectiveness of the proposed blind estimation scheme in Rician fading channel and in AWGN channel.
机译:基于单载波和正交频分复用(OFDM)信号的内部循环周期,提出了最小循环平稳阶(LCO)的定义。得出单载波和OFDM信号的LCO。由于LCO与载波频率偏移(CFO)有关系,因此可以提出针对单载波和OFDM信号的盲CFO估计方案。该新颖方案完全是盲目的,没有任何先验信息,并且被证明与已知LCO时的累积量估计相同。但是,当LCO未知时,新方案优于基于累积量的估计。相移键控信号的均方误差接近加性高斯白噪声(AWGN)通道中的Cramér-Rao界。仿真结果证明了所提出的盲估计方案在Rician衰落信道和AWGN信道中的有效性。

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