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Asymptotically Efficient Reduced Complexity Frequency Offset and Channel Estimators for Uplink MIMO-OFDMA Systems

机译:渐进有效的降低复杂度的频率偏移和上行链路MIMO-OFDMA系统的信道估计器

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In this paper, we address the joint data-aided estimation of frequency offsets and channel coefficients in uplink multiple-input multiple-output orthogonal frequency-division multiple access (MIMO-OFDMA) systems. As the maximum- likelihood (ML) estimator is impractical in this context, we introduce a family of suboptimal estimators with the aim of exhibiting an attractive tradeoff between performance and complexity. The estimators do not rely on a particular subcarrier assignment scheme and are, thus, valid for a large number of OFDMA systems. As far as complexity is concerned, the computational cost of the proposed estimators is shown to be significantly reduced compared to existing estimators based on ML. As far as performance is concerned, the proposed suboptimal estimators are shown to be asymptotically efficient, i.e., the covariance matrix of the estimation error achieves the CramÉr–Rao bound when the total number of subcarriers increases. Simulation results sustain our claims.
机译:在本文中,我们解决了上行链路多输入多输出正交频分多址(MIMO-OFDMA)系统中频偏和信道系数的联合数据辅助估计。由于在这种情况下最大似然(ML)估计器不切实际,因此我们引入了一系列次优估计器,目的是在性能和​​复杂性之间取得有吸引力的折衷。估计器不依赖于特定的子载波分配方案,因此对于大量的OFDMA系统是有效的。就复杂性而言,与基于ML的现有估计器相比,拟议的估计器的计算成本已显示出显着降低。就性能而言,建议的次优估计量被证明是渐近有效的,即,当子载波总数增加时,估计误差的协方差矩阵达到CramÉr-Rao界。仿真结果支持了我们的主张。

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