Low-rate multi-dimensional space-time codes for both slow and rapid fading channels

V. Tarokh, A. Naguib, N. Seshadri, A. Calderbank
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引用次数: 14

Abstract

We consider the design of channel codes for improving the data rate and/or the reliability of communications using multiple transmit antennas over a fading channel. It is assumed that the transmitter does not know the channel but seeks to choose a codebook that guarantees a diversity gain of r/sub 1/ when there is no mobility and a diversity gain of r/sub 2//spl ges/r/sub 1/ when the channel is fast fading. A solution to this problem is unveiled in this paper. Here, the encoded data is split into n streams that are simultaneously transmitted using n transmit antennas. The signal received at each receive antenna is a superposition of the faded versions of the n transmitted signals. We derive performance criteria for designing codes having the aforementioned properties. Performance is shown to be determined by diversity advantage quantified by a rank/distance and coding advantage quantified by a determinant/product criterion. The criteria is used to design codes for both slow and rapid fading channels. The constructed codes have remarkable performance in low signal to noise ratios and are suitable for improving the frequency reuse factor under a variety of mobility conditions.
慢速和快速衰落信道的低速率多维空时码
我们考虑了信道编码的设计,以提高在衰落信道上使用多个发射天线的数据速率和/或通信的可靠性。假设发射机不知道信道,但寻求选择一个码本,保证在没有移动时分集增益为r/sub 1/,在信道快速衰落时分集增益为r/sub 2//spl ges/r/sub 1/。本文提出了一种解决这一问题的方法。在这里,编码的数据被分成n个流,同时使用n个发射天线传输。每个接收天线接收到的信号是n个发射信号的褪色版本的叠加。我们导出了设计具有上述属性的代码的性能标准。表现是由由等级/距离量化的多样性优势和由行列式/乘积标准量化的编码优势决定的。该准则用于设计慢衰落信道和快速衰落信道的编码。所构建的码在低信噪比下具有显著的性能,适用于提高各种迁移条件下的频率复用系数。
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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