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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Diversity analysis, code design, and tight error rate lower bound for binary joint network-channel coding
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Diversity analysis, code design, and tight error rate lower bound for binary joint network-channel coding

机译:二进制联合网络信道编码的分集分析,代码设计和严格的错误率下限

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Joint network-channel codes (JNCC) can improve the performance of communication in wireless networks, by combining, at the physical layer, the channel codes and the network code as an overall error-correcting code. JNCC is increasingly proposed as an alternative to a standard layered construction, such as the OSI-model. The main performance metrics for JNCCs are scalability to larger networks and error rate. The diversity order is one of the most important parameters determining the error rate. The literature on JNCC is growing, but a rigorous diversity analysis is lacking, mainly because of the many degrees of freedom in wireless networks, which makes it very hard to prove general statements on the diversity order. In this article, we consider a network with slowly varying fading point-to-point links, where all sources also act as relay and additional non-source relays may be present. We propose a general structure for JNCCs to be applied in such network. In the relay phase, each relay transmits a linear transform of a set of source codewords. Our main contributions are the proposition of an upper and lower bound on the diversity order, a scalable code design and a new lower bound on the word error rate to assess the performance of the network code. The lower bound on the diversity order is only valid for JNCCs where the relays transform only two source codewords. We then validate this analysis with an example which compares the JNCC performance to that of a standard layered construction. Our numerical results suggest that as networks grow, it is difficult to perform significantly better than a standard layered construction, both on a fundamental level, expressed by the outage probability, as on a practical level, expressed by the word error rate.
机译:联合网络信道代码(JNCC)通过在物理层将信道代码和网络代码组合为整体纠错代码,可以提高无线网络中的通信性能。越来越多地提出JNCC作为标准分层结构(例如OSI模型)的替代方案。 JNCC的主要性能指标是对更大网络的可伸缩性和错误率。分集阶数是确定错误率的最重要参数之一。有关JNCC的文献在不断增长,但是缺乏严格的分集分析,这主要是由于无线网络的自由度很高,这使得很难证明有关分集顺序的一般性陈述。在本文中,我们考虑具有逐渐变化的衰落点对点链路的网络,其中所有源也充当中继,并且可能会出现其他非源中继。我们提出了在这种网络中应用的JNCC的一般结构。在中继阶段,每个中继都传输一组源代码字的线性变换。我们的主要贡献是提出了分集阶数的上限和下限,可伸缩的代码设计以及字错误率的新下限,以评估网络代码的性能。分集阶数的下限仅对中继仅转换两个源代码字的JNCC有效。然后,我们通过一个示例来验证此分析,该示例将JNCC性能与标准分层结构的性能进行了比较。我们的数值结果表明,随着网络的发展,无论是在基本水平(由中断概率表示)还是在实践水平(由字误码率表示)上,都很难比标准的分层结构好得多。

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