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Gain-Control-Free Blind Carrier Frequency Offset Acquisition for QAM Constellations

机译:QAM星座的无增益控制盲载波频率偏移采集

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This paper introduces a novel blind frequency offset estimator for quadrature amplitude modulated (QAM) signals. Specifically, after a preliminary frequency compensation, the estimator is based on the ¿/2-folded phase histogram of the received data. Then, the frequency offset estimate is taken as the frequency compensation value that minimizes the mean square error between the phase histogram measured on the received samples and the reference phase probability density function analytically calculated in the case of zero frequency offset. The ¿/2 -folded phase histogram of the received data is here called Constellation Phase Signature, since it definitively characterizes the phase distribution of signal samples belonging to a particular QAM constellation, and it has already been employed to develop a gain-control-free phase estimator that well performs both for square and cross constellations. Also the here described frequency offset estimator has the remarkable property to be gain-control-free and, thus, it can be fruitfully employed in frequency acquisition stages. The asymptotic performance of the estimator has been analytically evaluated and assessed by numerical simulations. Theoretical analysis and numerical results show that the novel frequency offset estimator outperforms state-of-the art estimators in a wide range of signal-to-noise ratio (SNR) values.
机译:本文介绍了一种新颖的用于正交幅度调制(QAM)信号的盲频偏估计器。具体来说,在初步的频率补偿之后,估计器基于接收数据的/ 2折叠相位直方图。然后,将频率偏移估计值用作频率补偿值,该值使在接收到的样本上测得的相位直方图与在零频率偏移的情况下分析计算出的参考相位概率密度函数之间的均方误差最小。接收到的数据的/ 2折叠相位直方图在这里称为星座相位签名,因为它明确地描述了属于特定QAM星座的信号样本的相位分布,并且已经被用于开发增益控制电路。自由相位估计器,可以很好地执行正方形和交叉星座。另外,这里描述的频率偏移估计器具有非增益控制的显着特性,因此,它可以在频率获取阶段被有效地采用。估计器的渐近性能已通过数值模拟进行了分析评估和评估。理论分析和数值结果表明,新型的频偏估计器在宽范围的信噪比(SNR)值方面优于最新的估计器。

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