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Carrier phase synchronization of OFDM systems over frequency-selective channels via the EM algorithm

机译:OFDM系统通过EM算法在频率选择通道上的载波相位同步

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In this paper, a computationally efficient algorithm is presented for maximum likelihood (ML) carrier phase estimation of OFDM systems employing M-PSK modulation scheme for transmission over frequency selective channels with additive Gaussiannoise, based on the EM algorithm. A nondata-aided(NDA) carrier phase synchronizer is considered which maximizes the low SNR limit of the likelihood function averaged over the M-PSK signal costellation. For this, an EM algorithm is derived which estimatesthe phase rotations of each subcarriers iteratively and which converges to the true ML estimation of the unknown phases. The algorithm is applied to the QPSK modulated OFDM systems and it is demonstrated by simulation that the phase error variances ofestimated subcarrier phase rotations do not depend on the number of subcarriers. It is concluded that for SNR values greater than 10 dB the convergence is achieved in first iteration and for SNR values less than 10 dB, at most in three iterations. It isalso concluded that the convergence is independent of the initial starting points.
机译:本文介绍了使用M-PSK调制方案的OFDM系统的最大似然(ML)载波相位估计的计算上有效算法,用于基于EM算法,添加到频率选择声道的频率选择声道。考虑一个非数据辅助(NDA)载波相位同步器,其最大化了在M-PSK信号成像化单元上平均的似然函数的低SNR限制。为此,导出EM算法迭代地导出每个子载波的估计相位旋转,并将其收敛于未知阶段的真正ML估计。该算法应用于QPSK调制的OFDM系统,并且通过模拟来证明其误期误差差异的相位误差方差不依赖于子载波的数量。得出结论,对于大于10 dB的SNR值,在第一次迭代中实现了收敛,并且对于小于10 dB的SNR值,最多在三个迭代中。 ISALSO得出结论,收敛与初始起点无关。

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