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Vector Precoding for Wireless MIMO Systems and its Replica Analysis

机译:无线MIMO系统的矢量预编码及其副本分析

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This paper studies a nonlinear vector precoding scheme which inverts the wireless multiple-input multiple-output (MIMO) channel at the transmitter so that simple symbol-by-symbol detection can be used in lieu of sophisticated multiuser detection at the receiver. In particular, the transmit energy is minimized by relaxing the transmitted symbols to a larger alphabet for precoding, which preserves the minimum signaling distance. The so-called replica method is used to analyze the average energy savings with random MIMO channels in the large-system limit. It is found that significant gains can be achieved with complex-valued alphabets. The analysis applies to a very general class of MIMO channels, where the statistics of the channel matrix enter the result via the R-transform of the asymptotic empirical distribution of its eigenvalues. Moreover, we introduce polynomial-complexity precoding schemes for binary and quadrature phase-shift keying in complex channels by using convex rather than discrete relaxed alphabets. In case the number of transmit antennas is more than twice the number of receive antennas, we show that a convex precoding scheme, despite its polynomial complexity, outperforms NP-hard precoding using the popular Tomlinson-Harashima signaling.
机译:本文研究了一种非线性矢量预编码方案,该方案可以在发射机处对无线多输入多输出(MIMO)信道进行反转,从而可以使用简单的逐符号检测来代替接收机处的复杂多用户检测。特别地,通过将​​发射的符号放宽到较大的字母以进行预编码来最小化发射能量,这保留了最小的信令距离。所谓的复制方法用于分析大型系统限制下随机MIMO信道的平均节能量。发现使用复数值字母可以实现显着的收益。该分析适用于非常通用的MIMO通道类别,其中通道矩阵的统计信息通过特征值的渐近经验分布的R变换输入结果。此外,我们通过使用凸而不是离散的宽松字母,为复杂通道中的二进制和正交相移键控引入了多项式复杂度预编码方案。如果发射天线的数量大于接收天线的数量的两倍,我们将显示凸的预编码方案尽管具有多项式复杂性,但使用流行的Tomlinson-Harashima信号优于NP硬预编码。

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