用于协调译码转发中继和直接用户的速率区域

C. Thai, P. Popovski
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引用次数: 3

摘要

近年来,无线网络编码(NC)的思想极大地丰富了无线协作/中继领域。它们主要在双向中继的情况下带来频谱效率的实质性提高。受无线NC思想的启发,最近我们提出了协调直接/中继(CDR)传输的技术。利用干扰可以随后取消的事实,这些技术包括直接用户和中继用户之间的通信流之间的干扰。因此,通过允许同时传输,提高了频谱效率。在我们之前的工作中,我们在两种情况下提出了带有解码转发(DF)中继的CDR。在本文中,我们扩展了现有的两种再生CDR方案,并提出了其他两种方案,使所有方案都受益于上述抑制干扰的原则。优化方案中的参数,使其具有最大的速率区域或最高的求和速率。数值结果表明,DF CDR方案优于参考方案,几乎优于AF CDR方案。
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Rate regions for coordination of Decode-and-Forward relays and direct users
Recently, the ideas of wireless network coding (NC) has significantly enriched the area of wireless cooperation/relaying. They bring substantial gains in spectral efficiency mainly in scenarios with two-way relaying. Inspired by the ideas of wireless NC, recently we have proposed techniques for coordinated direct/relay (CDR) transmissions. Leveraging on the fact that the interference can be subsequently canceled, these techniques embrace the interference among the communication flows to/from direct and relayed users. Hence, by allowing simultaneous transmissions, spectral efficiency is increased. In our prior work, we have proposed CDR with Decode-and-Forward (DF) relay in two scenarios. In this paper, we extend the two existing regenerative CDR schemes and proposed for the other two scenarios such that all schemes benefit from the aforementioned principle of containing the interference. The parameters in the schemes are optimized to have the largest rate region or the highest sum-rate. Numerical results show that DF CDR is better than the reference scheme and almost better than AF CDR.
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