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Finite Rate Channel Feedback Design for Multiuser MIMO Downlink Beamforming Systems

机译:多用户MIMO下行链路波束形成系统有限速率信道反馈设计

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An efficient finite rate channel feedback design for multiuser multi-input multi-output (MEMO) downlink beam-forming systems with individual signal-to-interference-plus-noise ratio (SINR) constraints is proposed. We find that part of the decomposed channel matrix is irrelevant to the performance, and can be discarded to reduce the feedback load. The remaining information is further decomposed into two parts, and we find that unevenly quantizing these two parts is better than traditionally quantizing the whole matrix evenly. We then show that linearly scaling the number of quantization bits for only one of these two parts is sufficient to maintain a bounded system performance loss. Thus quantization bit allocation between these two parts can be easily done for different signal-to-noise ratios (SNR). Simulation results verify our analysis and show that the proposed design outperforms the existing scheme.
机译:提出了一种高效的有限速率通道反馈设计,用于多用户多输入多输出(备忘录)下行链路波束形成系统,具有各自的信号到干扰和噪声比(SINR)约束。我们发现分解信道矩阵的一部分与性能无关,并且可以丢弃以减少反馈负载。其余信息进一步分解成两部分,我们发现这两个部分不均匀地量化了这两个部分均匀地量化整个基质。然后,我们示出线性缩放这两部分中只有一个的量化比特数足以保持有界系统性能损耗。因此,对于不同的信噪比(SNR),可以容易地完成这两个部分之间的量化比特分配。仿真结果验证了我们的分析,并表明所提出的设计优于现有方案。

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