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Some results and insights on the performance gains of MIMO systems

机译:关于MIMO系统性能提升的一些结果和见解

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Multiple-input-multiple-output (MIMO) systems generally fall into two categories, depending on the kind of gain they provide: spatial multiplexing (SM) methods yield capacity gain and diversity methods yield link quality gain [measured here by the post-processing signal-to-noise ratio (SNR)]. We consider a set of systems from each category, quantify their gains analytically or via simulations, and show how these gains vary with the receiver input SNR and the numbers of antennas. The contribution of this work resides in both the closed-form analytical results and the numerical comparisons. We both highlight the benefits of using additional transmit antennas and provide comparisons among diversity-based and SM-based MIMO schemes. The analytical results are for a diversity-based scheme that combines selection diversity at the transmit side with maximum ratio combining (MRC) at the receive side, which we show to upper bound the SNR performance of other diversity-based schemes. We find that, for practical system parameters, the relevant SNR metric is 6-12 dB higher for the diversity-based schemes than for SM-based schemes. At the same time, SM-based schemes yield capacity metrics which range from 30% higher to double that of diversity-based schemes.
机译:多输入多输出(MIMO)系统通常分为两类,具体取决于它们提供的增益类型:空间复用(SM)方法产生容量增益,而分集方法产生链路质量增益[此处通过后处理测量信噪比]。我们考虑来自每个类别的一组系统,通过分析或通过仿真量化其增益,并显示这些增益如何随接收器输入SNR和天线数量而变化。这项工作的贡献在于闭合形式的分析结果和数值比较。我们既强调了使用附加发射天线的好处,又提供了基于分集和基于SM的MIMO方案之间的比较。分析结果是针对基于分集的方案,该方案将发送方的选择分集与接收方的最大比率合并(MRC)结合在一起,我们将其上限显示为其他基于分集的方案的SNR性能。我们发现,对于实际的系统参数,基于分集的方案的相关SNR度量比基于SM的方案高6-12 dB。同时,基于SM的方案产生的容量指标从基于多样性的方案的30%到两倍。

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