Systematic design of unitary space-time constellations

B. Hochwald, T. Marzetta, T. Richardson, W. Sweldens, R. Urbanke
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引用次数: 746

Abstract

We propose a systematic method for creating constellations of unitary space-time signals for multiple-antenna communication links. Unitary space-time signals, which are orthonormal in time across the antennas, have been shown to be well-tailored to a Rayleigh fading channel where neither the transmitter nor the receiver knows the fading coefficients. The signals can achieve low probability of error by exploiting multiple-antenna diversity. Because the fading coefficients are not known, the criterion for creating and evaluating the constellation is nonstandard and differs markedly from the familiar maximum-Euclidean-distance norm. Our construction begins with the first signal in the constellation-an oblong complex-valued matrix whose columns are orthonormal-and systematically produces the remaining signals by successively rotating this signal in a high-dimensional complex space. This construction easily produces large constellations of high-dimensional signals. We demonstrate its efficacy through examples involving one, two, and three transmitter antennas.
统一时空星座的系统设计
我们提出了一种系统的方法来创建多天线通信链路的统一时空信号星座。统一的时空信号,在时间上是正交的,已经被证明可以很好地适应瑞利衰落信道,在这种信道中,发射器和接收器都不知道衰落系数。利用多天线分集可以实现信号的低概率误差。由于衰落系数不知道,星座的建立和评价准则是非标准的,与我们所熟悉的最大欧几里得距离范数有很大的不同。我们的构造从星座中的第一个信号(一个列正交的长方形复值矩阵)开始,并通过在高维复空间中连续旋转该信号,系统地产生剩余的信号。这种结构很容易产生大量的高维信号。我们通过涉及一个,两个和三个发射机天线的例子来证明其有效性。
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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