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A hybrid channel estimator for MIMO-OFDM system with per-subcarrier transmit antenna selection

机译:具有按副载波发射天线选择的MIMO-OFDM系统的混合信道估计器

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摘要

A novel hybrid channel estimator that gives robust performance with respect to the error in antenna-to-subcarrier assignment (ATSA) for spatially correlated MIMO-OFDM system with per-subcarrier transmit antenna, is proposed. In practice, the antenna selection information is transmitted through a binary symmetric control channel with a crossover probability. Though minimum mean-square error (MMSE) estimator performs well at low signal to noise ratio (SNR), in the presence of antenna selection error it introduces irreducible error at high SNR. In this paper, we have proved that relaxed MMSE estimator overcomes the performance degradation at high SNR, with less computational complexity. The proposed hybrid estimator combines the benefit of MMSE at low SNR and relaxed MMSE estimator at high SNR. Further, an analytical expression for SNR threshold at which the hybrid estimator is to be switched from MMSE to relaxed MMSE is also derived. The simulation results show that the proposed hybrid estimator gives robust performance, irrespective of the ATSA error and power delay profile of the channel.
机译:提出了一种新颖的混合信道估计器,该方法针对具有每个子载波发射天线的空间相关的MIMO-OFDM系统,提供了针对天线到子载波分配(ATSA)中的错误的鲁棒性能。实际上,天线选择信息是通过二进制对称控制信道以交叉概率发送的。尽管最小均方误差(MMSE)估计器在低信噪比(SNR)时表现良好,但在存在天线选择误差的情况下,它会在高SNR时引入不可减少的误差。在本文中,我们证明了宽松的MMSE估计器克服了高SNR时性能下降的问题,并且计算复杂度更低。所提出的混合估计器结合了低信噪比下的MMSE和高信噪比下的宽松MMSE估计器的优点。此外,还导出了SNR阈值的解析表达式,在该表达式下,混合估计器将从MMSE切换到松弛MMSE。仿真结果表明,所提出的混合估计器具有鲁棒的性能,而与ATSA误差和信道的功率延迟曲线无关。

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