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Massive MIMO for next generation wireless systems

机译:适用于下一代无线系统的大规模MIMO

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Multi-user MIMO offers big advantages over conventional point-to-point MIMO: it works with cheap single-antenna terminals, a rich scattering environment is not required, and resource allocation is simplified because every active terminal utilizes all of the time-frequency bins. However, multi-user MIMO, as originally envisioned, with roughly equal numbers of service antennas and terminals and frequency-division duplex operation, is not a scalable technology. Massive MIMO (also known as large-scale antenna systems, very large MIMO, hyper MIMO, full-dimension MIMO, and ARGOS) makes a clean break with current practice through the use of a large excess of service antennas over active terminals and time-division duplex operation. Extra antennas help by focusing energy into ever smaller regions of space to bring huge improvements in throughput and radiated energy efficiency. Other benefits of massive MIMO include extensive use of inexpensive low-power components, reduced latency, simplification of the MAC layer, and robustness against intentional jamming. The anticipated throughput depends on the propagation environment providing asymptotically orthogonal channels to the terminals, but so far experiments have not disclosed any limitations in this regard. While massive MIMO renders many traditional research problems irrelevant, it uncovers entirely new problems that urgently need attention: the challenge of making many low-cost low-precision components that work effectively together, acquisition and synchronization for newly joined terminals, the exploitation of extra degrees of freedom provided by the excess of service antennas, reducing internal power consumption to achieve total energy efficiency reductions, and finding new deployment scenarios. This article presents an overview of the massive MIMO concept and contemporary research on the topic.
机译:与传统的点对点MIMO相比,多用户MIMO具有很大的优势:它可与廉价的单天线终端一起使用,不需要丰富的散射环境,并且由于每个活动终端都利用了所有时频频段,因此简化了资源分配。然而,如最初所设想的那样,具有大致相等数量的服务天线和终端以及频分双工操作的多用户MIMO并非可扩展技术。大规模MIMO(也称为大型天线系统,超大型MIMO,超MIMO,全尺寸MIMO和ARGOS)通过在活动终端上使用大量过量的服务天线和时间间隔,彻底打破了目前的做法。分区双工操作。额外的天线通过将能量集中到越来越小的空间中来提供帮助,从而极大地提高了吞吐量和辐射能效。大规模MIMO的其他好处包括广泛使用廉价的低功耗组件,减少了延迟,简化了MAC层以及针对故意干扰的鲁棒性。预期的吞吐量取决于向终端提供渐近正交信道的传播环境,但是到目前为止,实验还没有公开这方面的任何限制。大规模MIMO使得许多传统的研究问题变得无关紧要,但它揭示了迫切需要关注的全新问题:使许多低成本,低精度的组件能够有效地协同工作,新加入的终端的采集和同​​步,额外程度的利用等挑战。多余的服务天线提供的自由度,减少内部功耗以实现总能效的降低以及寻找新的部署方案。本文概述了大规模MIMO概念以及有关该主题的当代研究。

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    《IEEE Communications Magazine》 |2014年第2期|186-195|共10页
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