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5G multimedia massive MIMO communications systems

机译:5G多媒体大规模MIMO通信系统

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摘要

In the fifth generation (5G) wireless communication systems, a majority of the traffic demands are contributed by various multimedia applications. To support the future 5G multimedia communication systems, the massive multiple-input multiple-output (MIMO) technique is recognized as a key enabler because of its high spectral efficiency. The massive antennas and radio frequency chains not only improve the implementation cost of 5G wireless communication systems but also result in an intense mutual coupling effect among antennas because of the limited space for deploying antennas. To reduce the cost, an optimal equivalent precoding matrix with the minimum number of radio frequency chains is proposed for 5G multimedia massive MIMO communication systems considering the mutual coupling effect. Moreover, an upper bound of the effective capacity is derived for 5G multimedia massive MIMO communication systems. Two antennas that receive diversity gain models are built and analyzed. The impacts of the antenna spacing, the number of antennas, the quality-of-service (QoS) statistical exponent, and the number of independent incident directions on the effective capacity of 5G multimedia massive MIMO communication systems are analyzed. Comparing with the conventional zero-forcing precoding matrix, simulation results demonstrate that the proposed optimal equivalent precoding matrix can achieve a higher achievable rate for 5G multimedia massive MIMO communication systems. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:在第五代(5G)无线通信系统中,大多数流量需求是由各种多媒体应用程序贡献的。为了支持未来的5G多媒体通信系统,大规模多输入多输出(MIMO)技术由于其高频谱效率而被公认为是关键的推动力。庞大的天线和射频链不仅提高了5G无线通信系统的实施成本,而且由于部署天线的空间有限,还导致天线之间强烈的相互耦合效应。为了降低成本,考虑到相互耦合效应,针对5G多媒体大规模MIMO通信系统,提出了具有最少射频链数的最优等效预编码矩阵。此外,得出了5G多媒体大规模MIMO通信系统的有效容量上限。构建并分析了两个接收分集增益模型的天线。分析了天线间距,天线数量,服务质量(QoS)统计指数以及独立入射方向数量对5G多媒体大规模MIMO通信系统有效容量的影响。仿真结果表明,与传统的迫零预编码矩阵相比,本文提出的最优等效预编码矩阵可以为5G多媒体大规模MIMO通信系统提供更高的可实现率。版权所有(C)2016 John Wiley&Sons,Ltd.

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