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Asymptotic Performance Analysis of Spatially Reconfigurable Antenna Arrays

机译:空间可重构天线阵列的渐近性能分析

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A spatially reconfigurable antenna arrays consists of an antenna array of finite length and fixed geometry which is displaced within a given area. Using these reconfigurable components, the performance of MIMO systems is remarkably improved by effectively positioning the array in its displacement area. This paper studies the large-system performance of MIMO setups with spatially reconfigurable antenna arrays when the displacement area is large. Considering fading channels, the distribution of the input-output mutual information is derived, and the asymptotic hardening property is demonstrated to hold. As the size of the displacement area grows large, the mutual information is shown to converge in distribution to a type-one Gumbel random variable whose mean grows large proportional to the displacement size, and whose variance tends to zero. Our numerical investigations depict that the type-one Gumbel approximation closely tracks the empirical distribution even for a finite displacement size.
机译:空间可重构天线阵列由有限长度和固定几何形状的天线阵列组成,该天线阵列在给定区域内位移。使用这些可重新配置的组件,通过将阵列有效地放置在其位移区域中,可以显着提高MIMO系统的性能。本文研究了当位移区域较大时具有空间可重配置天线阵列的MIMO设置的大型系统性能。考虑衰落信道,推导了输入输出互信息的分布,并证明了渐近硬化性质的保持。随着位移区域的大小变大,互信息被显示为收敛于一个类型为1的Gumbel随机变量,该变量的平均值与位移大小成正比,并且方差趋于零。我们的数值研究表明,即使对于有限的位移大小,一类Gumbel逼近也紧密跟踪了经验分布。

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