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On the achievable sum-rate of correlated mimo multiple access channel with imperfect channel estimation

机译:具有不完善信道估计的相关mimo多址信道的可实现总速率

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摘要

We study upper and lower bounds on the achievable sum-rate of a correlated MIMO MAC with channel estimation error at the receiver when the correlation information is available to the users'' transmitters, and prove that, for Gaussian input signals with arbitrary input covariance matrices, the gap between these bounds does not exceed a limiting value at any input transmit power. We further prove that in systems with uniform input power utilization over the transmit antennas, the gap between the mutual information bounds increases monotonically as the input power of each user increases. Furthermore, we show that in the absence of correlation, the gap between the mutual information bounds is maximum for beamforming and minimum for uniform input power allocation over the transmit antennas. We further prove that utilizing the input power of each user towards the directions of the eigenvectors of its transmit correlation matrix maximizes the mutual information lower bound. Moreover, we derive the transmit directions that maximize the mutual information lower and upper bounds in an uncorrelated MIMO MAC with delayed feedback from the receiver to the transmitters, and characterize the power allocation of this system in terms of its beamforming range. Numerical simulations are conducted to corroborate our theoretical results.
机译:当相关信息可用于用户发射机时,我们研究了在接收机处具有信道估计误差的相关MIMO MAC的可实现总和的上下限,并证明了对于具有任意输入协方差矩阵的高斯输入信号,在任何输入发射功率下,这些边界之间的间隙都不会超过限制值。我们进一步证明,在发射天线上具有统一输入功率利用率的系统中,互信息范围之间的差距随着每个用户的输入功率的增加而单调增加。此外,我们表明,在没有相关性的情况下,互信息边界之间的间隙对于波束成形最大,而对于在发射天线上的均匀输入功率分配则最小。我们进一步证明,利用每个用户朝向其发射相关矩阵特征向量方向的输入功率,可以使互信息下限最大化。此外,我们推导了在不相关的MIMO MAC中最大化互信息下限和上限的发射方向,并具有从接收器到发射器的延迟反馈,并根据其波束形成范围来表征该系统的功率分配。进行数值模拟以证实我们的理论结果。

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