MIMO ARQ信道中的分集-复用-延迟权衡

H. E. Gamal, G. Caire, M. O. Damen
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引用次数: 18

摘要

在本文中,我们探讨了延迟限制多输入多输出(MIMO)自动重传请求(ARQ)信道的基本性能权衡。特别是,我们将Zheng和Tse在具有相干检测的标准延迟限制MIMO信道中研究的分集-复用权衡扩展到ARQ场景。我们建立了可靠性(即分集)、吞吐量(即多路复用增益)和延迟(即最大重传次数)之间的三维权衡。这种权衡量化了通过利用重传延迟来提高给定复用增益的可靠性而获得的ARQ分集增益。有趣的是,即使在所有重传都发生在同一信道状态的长期静态信道中,ARQ分集也会出现。此外,通过放宽输入功率限制,允许在不同的重传中改变功率水平,我们表明功率控制可以用于显着增加分集优势。我们的分析揭示了一些关于慢衰落MIMO信道中ARQ的好处的重要见解。特别是,我们表明:1)允许足够大的重传延迟导致几乎平坦的分集复用权衡,因此,在高复用增益下操作更有利;2)采用功率控制时,MIMO ARQ通道迅速接近遍历极限
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The diversity-multiplexing-delay tradeoff in MIMO ARQ channels
In this paper, we explore the fundamental performance tradeoff of the delay-limited multi-input-multi-output (MIMO) automatic retransmission request (ARQ) channel. In particular, we extend the diversity-multiplexing tradeoff investigated by Zheng and Tse in standard delay-limited MIMO channels with coherent detection to the ARQ scenario. We establish the three-dimensional tradeoff between reliability (i.e. diversity), throughput (i.e., multiplexing gain), and delay (i.e., maximum number of retransmissions). This tradeoff quantifies the ARQ diversity gain obtained by leveraging the retransmission delay to enhance the reliability for a given multiplexing gain. Interestingly, ARQ diversity appears even in long-term static channels where all the retransmissions take place in the same channel state. Furthermore, by relaxing the input power constraint allowing variable power levels in different retransmissions, we show that power control can be used to dramatically increase the diversity advantage. Our analysis reveals some important insights on the benefits of ARQ in slow fading MIMO channels. In particular, we show that: 1) allowing for a sufficiently large retransmission delay results in an almost flat diversity-multiplexing tradeoff, and hence, renders operating at high multiplexing gain more advantageous; 2) MIMO ARQ channels quickly approach the ergodic limit when power control is employed
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