802.11ac中SU-MIMO和MU-MIMO的性能分析及模式选择

A. P. Theeksha, S. Srikanth
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引用次数: 4

摘要

IEEE 802.11ac,也称为千兆Wi-Fi,是最新和新兴的无线局域网(WLAN)标准。与之前的802.11n标准相比,Gbps量级的极高吞吐量(VHT)主要通过两个重要的修改来实现。第一个是增加了空间流的数量(与11n标准中的4个相比增加了8个),第二个是支持多用户多输入多输出(MU-MIMO)。本文给出了与这两个目标相关的关键讨论和仿真结果。它还比较了MU-MIMO和单用户多输入多输出(SU-MIMO)预编码技术的性能,假设发射机(CSIT)具有完美的信道状态信息,适用于高相关信道和低相关信道。在容量计算的数学背景下,提出了一种通过减少计算量来优化各种预编码算法的新算法。通过分析SU-MIMO和MU-MIMO所采用的各种预编码方案的性能,找出模式切换信噪比。这种信噪比的定量测量无疑是在SU和MU-MIMO之间进行选择的有力措施,也可以最大限度地为所有用户服务。此外,该算法以非常少的计算量进行模式选择的估计,突出了该算法相对于现有算法的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis and mode selection of SU-MIMO and MU-MIMO in 802.11ac
IEEE 802.11ac, also known as gigabit Wi-Fi is the latest and emerging wireless local area network (WLAN) standard. The Very High Throughput (VHT) of the order of Gbps can be achieved primarily with two important modifications when compared with the previous 802.11n standard. The first one is the increased number of spatial streams (8 as compared to 4 in 11n standard) and the second one is the support for multi user - multiple input multiple output (MU-MIMO). This paper places key discussions and simulation results pertaining to these two objectives. It also compares the performance of MU-MIMO and single user - multiple input multiple output (SU-MIMO) precoding techniques assuming perfect Channel State Information at the Transmitter (CSIT) for both high and low correlation channels. The paper also introduces a novel algorithm that optimizes the various precoding algorithms by reducing the computational calculations with the mathematical background for the capacity calculations. By analyzing the performances of various precoding schemes used for SU-MIMO and MU-MIMO, the mode switching SNR can be found out. This quantitative measure of SNR is certainly a powerful measure to choose between SU and MU-MIMO and also to serve all the users to the best possible extent. Also, estimation of the mode selection with very less computational effort highlights the advantages of the algorithm over the existing algorithms.
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