The channel capacity of MIMO satellite links in a fading environment: A probabilistic analysis

R. Schwarz, A. Knopp, B. Lankl
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引用次数: 22

Abstract

The impact of atmospheric impairments on the bandwidth efficiency of Multiple-Input Multiple-Output (MIMO) geostationary satellite links is investigated theoretically. In particular we analyze the impairments caused by precipitation because especially rain and wet snow are the most severe atmospheric impact factors degrading the channel capacity. We focus on Line-of-Sight (LOS) MIMO links that are shaped for optimum channel capacity. For that purpose the link optimization suggested in [1] is applied. Our investigations reveal to which extent the MIMO satellite channel capacity is affected by atmospheric signal attenuation and signal phase disturbances, which might reduce the number and strength of spatial subchannels (eigenmodes). Especially the impact of signal attenuation is investigated by means of probabilistic analyses, quantifying the amount and percentage of time which the link capacity degradation exceeds a particular value. Altogether we conclude that, although a loss of capacity cannot be avoided in general, MIMO systems outperform Single-Input Single-Output (SISO) designs by far, not only in terms of bandwidth efficiency but also in link reliability.
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衰落环境下MIMO卫星链路信道容量的概率分析
从理论上研究了大气损伤对多输入多输出(MIMO)同步卫星链路带宽效率的影响。我们特别分析了降水造成的损害,因为特别是雨和湿雪是影响通道容量的最严重的大气影响因素。我们专注于视距(LOS) MIMO链路,其形状为最佳信道容量。为此,我们采用了[1]中提出的链接优化方法。我们的研究揭示了MIMO卫星信道容量在多大程度上受到大气信号衰减和信号相位干扰的影响,这可能会减少空间子信道(特征模)的数量和强度。特别是用概率分析的方法研究了信号衰减的影响,量化了链路容量衰减超过特定值的数量和时间百分比。综上所述,我们得出的结论是,尽管容量损失在一般情况下是无法避免的,但MIMO系统到目前为止不仅在带宽效率方面,而且在链路可靠性方面都优于单输入单输出(SISO)设计。
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