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Throughput-Optimal Precoding and Rate Allocation for MISO Systems With Noisy Feedback Channels

机译:具有噪声反馈通道的MISO系统的吞吐量优化的预编码和速率分配

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A throughput metric is considered for a multiple- input single-output (MISO) system with noisy feedback of channel state information (CSI). The goal is to optimize a precoding matrix with a medium-access control layer metric. The problem is a nonlinear multidimensional optimization. Results show that the optimal precoding turns into beamforming when the signal- to-noise ratio (SNR) of CSI feedback is sufficiently large. A necessary condition for the optimality of beamforming under the throughput metric is determined, and the necessary and sufficient condition is numerically found based on the Gauss–Chebyshev Quadrature method. Next, the rate allocation for beamforming and spatial diversity is analyzed. Then, a two-mode transmission scheme is proposed such that the transmitter is engaged in either the beamforming mode or the spatial diversity mode depending on the SNR of the CSI feedback. It is shown that at a fairly high SNR of CSI feedback, the rate allocation needs to be reduced, while at a low SNR of CSI feedback, the allocated rate should be increased. It is shown that when the SNR of CSI feedback is lower than a threshold, there always exists an SNR of the transmitted signal such that the CSI feedback can be viewed as the real CSI solely for the purpose of rate allocation. The result also shows that the throughput of two-mode transmission is almost the same as the throughput of the optimal precoding scheme, even with a low SNR and large feedback delay.
机译:对于具有信道状态信息(CSI)噪声反馈的多输入单输出(MISO)系统,应考虑吞吐量度量。目标是使用媒体访问控制层指标优化预编码矩阵。问题是非线性多维优化。结果表明,当CSI反馈的信噪比(SNR)足够大时,最佳预编码会变成波束成形。确定了通过量度量下波束成形最佳化的必要条件,并基于高斯-切比雪夫正交方法在数值上找到了必要和充分条件。接下来,分析用于波束成形和空间分集的速率分配。然后,提出了一种双模式传输方案,以使发射机根据CSI反馈的SNR处于波束形成模式或空间分集模式。结果表明,在CSI反馈的SNR较高的情况下,需要降低速率分配,而在CSI反馈的SNR较低的情况下,应该提高分配的速率。示出了当CSI反馈的SNR低于阈值时,总是存在发送信号的SNR,使得仅出于速率分配的目的,CSI反馈可以被视为真实CSI。结果还表明,即使具有低SNR和较大的反馈延迟,双模式传输的吞吐量也几乎与最佳预编码方案的吞吐量相同。

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