Space-time codes for high bit rate wireless communications: asymptotic performance of space-time random codes

M. Hayajneh, A. Scaglione
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引用次数: 3

Abstract

To quantify the diversity gain of space-time coding, obtained by increasing the number of transmit and receive antennas, in this paper we use the paradigm of random codes, modelling space-time codes as random matrices with zero mean, equal variance and independent entries having a common arbitrary distribution (discrete or continuous). This framework is especially convenient in this situation because: (i) optimal codes are difficult to identify and, thus, are difficult to test; (ii) the eigenvalues of this type of large matrix converge to a specific distribution, mostly known as the semicircle or circle law. This last observation allows us to derive closed form asymptotic expressions for the probability of error in Rayleigh and Rician fading that can be used to gain insight on how the fading and the number of antennas affect the system performance.
用于高比特率无线通信的空时码:空时随机码的渐近性能
为了量化空时编码的分集增益,通过增加发射和接收天线的数量,在本文中我们使用随机码的范式,将空时编码建模为具有零均值,等方差和具有共同任意分布(离散或连续)的独立条目的随机矩阵。这个框架在这种情况下特别方便,因为:(i)最优代码难以识别,因此难以测试;(ii)这类大矩阵的特征值收敛到一个特定的分布,通常称为半圆定律或圆定律。最后的观察结果使我们能够推导出瑞利衰落和瑞利衰落中误差概率的封闭形式渐近表达式,该表达式可用于深入了解衰落和天线数量如何影响系统性能。
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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