异步协作通信的分布式高速率全分集空频码

Yabo Li, Wei Zhang, X. Xia
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引用次数: 66

摘要

在用户协作通信中,中继节点通常是异步的。由于意识到频域处理对时域误差不敏感,Mei等人(2005)最近将OFDM技术应用于异步协作通信中,实现了完全合作分集,其中中继节点使用正交空时分组码,特别是Alamouti码,并且假设节点之间的信道平坦衰落。在本文中,我们也考虑了异步协作通信,但假设节点之间的信道是频率选择性衰落。我们使用高速率空频码在中继节点的一些子载波上对正确检测到的信息符号进行编码,以实现异步通信的完全合作分集和完全多径分集,我们表明,如果使用W. Zhang等人(2005)最近构建的高速率空频码,这一点是成立的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributive High-Rate Full-Diversity Space-Frequency Codes for Asynchronous Cooperative Communications
In user cooperative communications, relay nodes are usually asynchronous. By realizing that the processing in the frequency domain is insensitive to the errors in the time domain, Mei et. al., (2005) recently applied the OFDM technique to achieve the full cooperative diversity for asynchronous cooperative communications, where orthogonal space-time block codes, Alamouti code in particular, were used for relay nodes and the channels from nodes to nodes are assumed flat fading. In this paper, we also consider asynchronous cooperative communications, but the channels from nodes to nodes are assumed to be frequency-selective fading. We use high rate space-frequency codes to encode the correctly detected information symbols across some subcarriers at relay nodes to achieve both full cooperative diversity and full multipath diversity for asynchronous communications, which, we show, holds if the recent high rate space-frequency codes constructed in W. Zhang et al., (2005) are used
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