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SNR-based selective relaying schemes in network-coded two-way relay channels

机译:网络编码的双向中继信道中基于SNR的选择性中继方案

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摘要

In this study, for a network-coded two-way relay channel (TWRC), the authors propose three different relaying schemes that satisfy certain quality of service requirements at both transceivers. In these schemes, the relay decides independently whether to help each transceiver or not based on the instantaneous signal-to-noise ratios received from the transceivers. Under the assumption of error propagation, they analyse the performance of the system in terms of the end-to-end bit error rate (BER), the outage probability , the average spectral efficiency (ASE) and the diversity order. All of these performance measures depend on two thresholds employed by the relay node. By optimising these thresholds under three different criteria, they achieve three different relaying schemes: (i) the BER­ optimal scheme that minimises the end-to-end BER; (ii) the outage-constrained scheme that minimises the end-to­ end BER under an outage probability constraint; and (iii) the BER-constrained scheme that maximises the ASE under an end-to-end BER constraint. The analysis of the system shows that the BER-optimal scheme guarantees the full diversity gain at both transceivers; the outage-constrained scheme results in a bidirectional relaying scheme with a constant outage probability; and the BER-constrained scheme makes use of spectrum as efficiently as possible while maintaining the target BER.
机译:在这项研究中,对于网络编码的双向中继信道(TWRC),作者提出了三种不同的中继方案,可以满足两个收发器的某些服务质量要求。在这些方案中,中继根据从收发器接收的瞬时信噪比,独立决定是否帮助每个收发器。在错误传播的假设下,他们根据端到端误码率(BER),中断概率,平均频谱效率(ASE)和分集阶数来分析系统的性能。所有这些性能指标都取决于中继节点采用的两个阈值。通过在三种不同的标准下优化这些阈值,它们实现了三种不同的中继方案:(i)使端到端BER最小化的BER­优化方案; (ii)在中断概率约束下使端到端BER最小化的中断约束方案; (iii)在端到端BER约束下最大化ASE的BER约束方案。系统分析表明,BER最优方案保证了两个收发器的全分集增益。中断约束方案导致了具有恒定中断概率的双向中继方案; BER受限制的方案在保持目标BER的同时尽可能有效地利用频谱。

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  • 来源
    《Communications, IET》 |2016年第8期|891-903|共13页
  • 作者

    Ali H. Bastami;

  • 作者单位

    K.N. Toosi University of Technology, Iran;

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  • 正文语种 eng
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