Energy-efficient cross-layer design of delay-aware MIMO systems

Kunlun Wang, Wen Chen, M. Tao
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Abstract

In this paper, we propose a cross-layer design model for multiple input and multiple output (MIMO) cellular systems, to solve the problem of energy efficient communications with delay demand. We first investigate the energy efficient multiple quadrature amplitude modulation (MQAM) constellation size for each transmission stream. With the demand of the packet delay, then we propose an adaptive MIMO/SIMO transmission mode by exploiting the intrinsic relationship between the upper layer packet delay and the constellation size, the symbol error rate (SER) from the physical layer. Simulations show that in order to maximize the energy efficiency and offer different Quality of Service (QoS) of delay simultaneously, a user should adaptively choose the constellation size as well as the transmission mode. In this framework, the tradeoff between energy efficiency and delay demand are well demonstrated.
延迟感知MIMO系统的节能跨层设计
本文提出了一种多输入多输出(MIMO)蜂窝系统的跨层设计模型,以解决具有延迟需求的高能效通信问题。我们首先研究了每个传输流的高能效多重正交调幅(MQAM)星座大小。针对分组时延的需求,利用上层分组时延与物理层星座大小、符号误码率(SER)之间的内在关系,提出了一种自适应MIMO/SIMO传输模式。仿真结果表明,为了最大限度地提高能源效率,同时提供不同的时延服务质量(QoS),用户需要自适应地选择星座大小和传输模式。在这个框架中,很好地证明了能源效率和延迟需求之间的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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