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Full-rate distributed space-time coding for bi-directional cooperative communications

机译:双向协作通信的全速率分布式空时编码

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In this paper, a protocol for bi-directional cooperative communications applying full-rate distributed space-time codes and physical network coding is proposed. This scheme uses L relays to transmit the codewords in a distributed fashion. It takes 3 time slots for two sources to transmit two corresponding codewords by exploiting physical network coding and self-interference cancelation at each source. We prove that this scheme obtains full diversity. The analytical results show that the diversity order of this scheme will be L + 1, where L is the number of relays. In addition, we assess the sum-rate of the bi-directional cooperative communication scheme and reveal that it achieves larger spectral efficiency compared to one-way cooperative communication scheme. We employ Monte Carlo simulations to validate the symbol error rate and the ergodic sum-rate of the scheme.
机译:提出了一种采用全速率分布式时空码和物理网络编码的双向协同通信协议。该方案使用L个中继以分布式方式发送码字。通过利用每个源上的物理网络编码和自干扰消除,两个源需要3个时隙来传输两个相应的码字。我们证明该方案获得了完全的多样性。分析结果表明,该方案的分集阶数将为L + 1,其中L是中继数量。此外,我们评估了双向合作通信方案的总速率,并发现与单向合作通信方案相比,它可实现更大的频谱效率。我们使用蒙特卡洛模拟来验证该方案的符号错误率和遍历总和率。

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