用于协作通信的基于速率分割的译码转发协议

Hsiao-feng Lu
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引用次数: 1

摘要

本文首先建立了半双工协作网络中每个节点只有一个天线的通信协议的分集-复用权衡(DMT)的一般性能上界。该边界表明,当复用增益r≤1/2时,动态译码转发(DDF)协议在所有基于译码转发的协议中实现了最优的DMT。其次,当r > 1/2时,它表明对于所有协议和任何数量的中继节点,分集增益必须小于1。我们的边界也意味着除了单中继网络之外,众所周知的基于割集的DMT上界并不紧,并且DDF协议的性能还有改进的空间,从而解决了Azarian等人提出的一个长期悬而未决的问题。针对这一突破,本文提出了一种基于速率分割的新协议。提出了基于速率分割协议的两种动态和非动态变体。结果表明,动态版本比DDF协议更好地实现了DMT,特别是在单中继网络情况下满足切集边界。另一种变体,即非动态的,具有更简单的实现,并且仅在两个通道使用中达到最佳性能。而且,在单中继网络情况下,它满足切集界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rate-split based decode-and-forward protocols for cooperative communications
In this paper we first establish a general performance upper bound on the diversity-multiplexing tradeoff (DMT) for communication protocols for a half-duplex cooperative network where every node has a single antenna. This bound shows that the dynamic-decode-and-forward (DDF) protocol achieves optimal DMT among all variations of decode-and-forward based protocols when multiplexing gain r ≤ 1/2. Secondly, when r > 1/2 it shows that the diversity gain must be less than 1 for all protocols and for any number of relay nodes. Our bound also implies that the well-known cut-set-based DMT upper bound is not tight except for the single-relay network and that there are rooms to improve the performance of DDF protocol, thereby settling a long-time open question raised by Azarian et al.. In light of this breakthrough, a novel protocol based on a rate-split is proposed in this paper. Two variations, dynamic and non-dynamic, of the rate-split-based protocol are also presented. It is shown that the dynamic version achieves a DMT better than the DDF protocol, and in particular, meets the cut-set bound in the case of a single-relay network. The other variation, i.e., the non-dynamic one, has a much simpler implementation and reaches its optimal performance in only two channel uses. Moreover, it meets the cut-set bound in the case of a single-relay network.
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