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Large deviation delay analysis of queue-aware multi-user MIMO systems with two timescale mobile-driven feedback

机译:具有两个时标移动驱动反馈的感知队列的多用户MIMO系统的大​​偏差延迟分析

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Multi-user multi-input-multi-output (MU-MIMO) systems usually require users to feedback the channel state information (CSI) for scheduling. Most of the existing literature on the reduced feedback user scheduling focused on the throughput performance and the queueing delay was usually ignored. As the delay is important for real-time applications, it is desirable to have a low feedback queue-aware user scheduling algorithm for MU-MIMO systems. This paper proposes a two timescale queue-aware user scheduling algorithm, which consists of a queue-aware mobile-driven feedback filtering stage and a SINR-based user scheduling stage. The feedback policy is obtained by solving a queue-weighted optimization problem. In addition, we evaluate the associated queueing delay performance by using the large deviation analysis. The large deviation decay rate for the proposed algorithm is shown to be much larger than the CSI-only scheduling algorithm. Numerical results demonstrate the large performance gain of the proposed algorithm over the CSI-only algorithm, while the proposed one requires only a small amount of feedback.
机译:多用户多输入多输出(MU-MIMO)系统通常要求用户反馈信道状态信息(CSI)以进行调度。现有的有关减少反馈的用户调度的文献大多集中在吞吐量性能上,而排队延迟通常被忽略。由于延迟对于实时应用很重要,因此希望有一种用于MU-MIMO系统的低反馈队列感知用户调度算法。本文提出了两种基于时间尺度的队列感知用户调度算法,该算法包括一个队列感知移动驱动反馈过滤阶段和一个基于SINR的用户调度阶段。通过解决队列加权优化问题来获得反馈策略。此外,我们通过使用大偏差分析来评估相关的排队延迟性能。所提出的算法的大偏差衰减率显示出比仅CSI调度算法大得多。数值结果表明,与仅基于CSI的算法相比,所提出的算法具有较大的性能增益,而所提出的算法仅需要少量的反馈。

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