On the fading number of multi-antenna systems

A. Lapidoth, S. M. Moser
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引用次数: 10

Abstract

It has recently been shown that at high signal-to-noise ratios (SNR) the capacity of multi-antenna systems over flat fading channels (without receiver or transmitter side-information) typically grows only double-logarithmically in the SNR. Here we further refine the analysis and study the "fading number" /spl chi/, which we define as the limit of the difference between channel capacity and log(1+log(1+SNR)). It is suggested that at high SNR, i.e., at rates that significantly exceed the fading number, a capacity increase of one bit per channel use requires the squaring of the SNR, or equivalently, the doubling of the SNR as expressed in decibels. In this loose sense, the fading number can be viewed as the channel limiting rate for power-efficient communication. Note, however, that the fading number may be negative. While the use of multiple antennas does not typically change the double-logarithmic asymptotic dependence of channel capacity on the SNR, multiple antennas do typically increase the fading number, albeit at times (e.g., in the Rayleigh fading case) only in an additive way that grows only logarithmically with the number of antennas.
多天线系统衰落数研究
最近的研究表明,在高信噪比(SNR)下,多天线系统在平坦衰落信道(没有接收机或发射机侧信息)上的容量通常仅在信噪比中以双对数方式增长。这里我们进一步细化分析并研究了“衰落数”/spl chi/,我们将其定义为信道容量与log(1+log(1+SNR))之差的极限。建议在高信噪比下,即在明显超过衰落数的速率下,每个信道使用一个比特的容量增加需要信噪比的平方,或者等效地,以分贝表示的信噪比的两倍。在这种松散的意义上,衰落数可以看作是节能通信的信道限制速率。但是请注意,衰落数可能是负的。虽然多天线的使用通常不会改变信道容量对信噪比的双对数渐近依赖性,但多天线通常会增加衰落数,尽管有时(例如,在瑞利衰落情况下)只是以一种仅随天线数量对数增长的加性方式。
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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