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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Performance Analysis of MIMO Systems in Spatially Correlated Fading Using Matrix-Monotone Functions
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Performance Analysis of MIMO Systems in Spatially Correlated Fading Using Matrix-Monotone Functions

机译:基于矩阵单调函数的空间相关衰落下MIMO系统的性能分析

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摘要

The average performance of a single-user MIMO system under spatially correlated fading and with different types of CSI at the transmitter and with perfect CSI at the receiver was studied in recent work. In contrast to analyzing a single performance metric, e.g. the average mutual information or the average bit error rate, we study an arbitrary representative of the class of matrix-monotone functions. Since the average mutual information as well as the average normalized MSE belong to that class, this universal class of performance functions brings together the information theoretic and signal processing performance metric. We use Lowner's representation of operator monotone functions in order to derive the optimum transmission strategies as well as to characterize the impact of correlation on the average performance. Many recent results derived for average mutual information generalize to arbitrary matrix-monotone performance functions, e.g. the optimal transmit strategy without CSI at the transmitter is equal power allocation. The average performance without CSI is a Schur-concave function with respect to transmit and receive correlation. In addition to this, we derive the optimal transmission strategy with long-term statistics knowledge at the transmitter and propose an efficient iterative algorithm. The beamforming-range is the SNR range in which only one data stream spatially multiplexed achieves the maximum average performance. This range is important since it has a simple receiver structure and well known channel coding. We entirely characterize the beamforming-range. Finally, we derive the generalized water-filling transmit strategy for perfect CSI and characterize its properties under channel correlation.
机译:在最近的工作中,研究了在空间相关的衰落下,发射机具有不同类型的CSI,接收机具有理想的CSI的单用户MIMO系统的平均性能。与分析单个性能指标相反,例如根据平均互信息或平均误码率,我们研究矩阵单调函数类别的任意代表。由于平均互信息以及平均归一化MSE都属于该类,因此性能函数的这种通用类将信息理论和信号处理性能度量结合在一起。我们使用运营商单调函数的Lowner表示法来推导最佳传输策略,以及表征相关性对平均性能的影响。针对平均互信息而获得的许多最新结果普遍适用于任意矩阵单调性能函数,例如发射器上没有CSI的最佳发射策略是相等的功率分配。就发送和接收相关而言,没有CSI的平均性能是舒尔凹面函数。除此之外,我们在发射机处获得具有长期统计知识的最佳传输策略,并提出了一种有效的迭代算法。波束成形范围是SNR范围,在该SNR范围内,只有一个数据流在空间上进行多路复用才能获得最大的平均性能。该范围很重要,因为它具有简单的接收器结构和众所周知的信道编码。我们完全表征了波束形成范围。最后,我们推导了用于理想CSI的广义注水传输策略,并在信道相关性下表征了其性能。

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