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On the design of MIMO block-fading channels with feedback-link capacity constraint

机译:具有反馈链路容量约束的MIMO块衰落信道的设计

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摘要

In this paper, we propose a combined adaptive power control and beamforming framework for optimizing multiple-input/multiple-output (MIMO) link capacity in the presence of feedback-link capacity constraint. The feedback channel is used to carry channel state information only. It is assumed to be noiseless and causal with a feedback capacity constraint in terms of maximum number of feedback bits per fading block. We show that the hybrid design could achieve the optimal MIMO link capacity, and we derive a computationally efficient algorithm to search for the optimal design under a specific average power constraint. Finally, we shall illustrate that a minimum mean-square error spatial processor with a successive interference canceller at the receiver could be used to realize the optimal capacity. We found that feedback effectively enhances the forward channel capacity for all signal-to-noise ratio (SNR) values when the number of transmit antennas (n/sub T/) is larger than the number of receive antennas (n/sub R/). The SNR gain with feedback is contributed by focusing transmission power on active eigenchannel and temporal power waterfilling . The former factor contributed, at most, 10log/sub 10/(n/sub T//sub R/) dB SNR gain when n/sub T/
机译:在本文中,我们提出了一种组合的自适应功率控制和波束成形框架,用于在存在反馈链路容量约束的情况下优化多输入/多输出(MIMO)链路容量。反馈信道仅用于承载信道状态信息。就每个衰落块的最大反馈比特数而言,它被认为是无噪声且具有反馈容量约束的因果关系。我们证明了混合设计可以实现最佳的MIMO链路容量,并推导了一种计算有效的算法,可以在特定的平均功率约束下搜索最佳设计。最后,我们将说明在接收器处具有连续干扰消除器的最小均方误差空间处理器可用于实现最佳容量。我们发现,当发射天线的数量(n / sub T /)大于接收天线的数量(n / sub R /)时,反馈可有效提高所有信噪比(SNR)值的前向信道容量。具有反馈的SNR增益是通过将传输功率集中在有源特征信道和瞬时功率充水上来贡献的。当n / sub T /

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