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Constellation constrained multiuser multiple-input multiple-output for high capacity and error performance over correlated fading channels

机译:星座图约束多用户多输入多输出,在相关的衰落信道上具有高容量和错误性能

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摘要

Channels' correlation has direct impact to degrade the capacity and reliability of multiple-input multiple-output (MIMO) systems considerably. In this paper, new signal constellation designs are investigated to mitigate fading correlation and maximize the capacity and error performance of multiuser MIMO (MU-MIMO) over correlated channels, which is a major research challenge. Two methods are studied in a novel constellation constrained MU-MIMO approach, namely, unequal power allocation and rotated constellation. Based on principles of maximizing the minimum Euclidean distance (d(min)) of composite received signals, users' data can be recovered using maximum likelihood joint detection irrespective of correlation values. Compared with the identical constellation scenario in conventional MU-MIMO, it is shown that constellation rearrangement of transmitted signals has direct impact to resolve the detection ambiguity when the channel difference is not sufficient, particularly in moderate to high correlations. Extensive analysis and simulation results demonstrate the superiority of proposed technique to capture most of the promised gains of multiantenna systems and application for future wireless communications. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:通道的相关性会直接影响多输入多输出(MIMO)系统的容量和可靠性。本文研究了新的信号星座图设计,以减轻衰落相关性并在相关信道上最大化多用户MIMO(MU-MIMO)的容量和错误性能,这是一个主要的研究挑战。在一种新颖的星座约束MU-MIMO方法中研究了两种方法,即不相等的功率分配和旋转的星座。基于最大化复合接收信号的最小欧几里德距离(d(min))的原理,可以使用最大似然联合检测来恢复用户数据,而无需考虑相关值。与常规MU-MIMO中相同的星座方案相比,可以看出,当信道差异不足时,尤其是在中到高相关性时,发射信号的星座重排对解决检测歧义具有直接影响。大量的分析和仿真结果证明了所提出技术的优越性,该技术可捕获多天线系统的大部分有望实现的收益以及在未来无线通信中的应用。版权所有(c)2014 John Wiley&Sons,Ltd.

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