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首页> 外文期刊>Communications, IET >Power-constrained, spectral efficiency-optimal, green cooperative device-to-device communication systems
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Power-constrained, spectral efficiency-optimal, green cooperative device-to-device communication systems

机译:功率受限的频谱效率最优的绿色协作设备间通信系统

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摘要

The author consider a relay-assisted, two hop, cooperative device-to-device (D2D) communication system where a source device transmits data to a destination device using a non-regenerative cooperative relay whose average transmit power is constrained. For the cooperative D2D system, the author consider the problem of optimally adapting the relay gain as a function of fading gains of - and - links to maximise fading-averaged spectral efficiency. The author derive the spectral efficiency-optimal relay gain adaptation policy (SERGAP), which determines optimal gain for the relay, and, analyse the fading-averaged spectral efficiency of SERGAP. To gain more insights, the author derive upper bounds on the average spectral efficiency, and, also investigate its asymptotic behaviour using an insightful analysis. Furthermore, the author extend the fading-averaged analysis to a system having multiple relays. The author also present numerical results for single relay and multiple relay systems and benchmark the proposed policy's performance with conventional and suboptimal relaying policies. The author show that SERGAP delivers higher average spectral efficiency than conventional relaying policies. Finally, spectral efficiency-optimal relay placement for the proposed policy is also investigated via simulations, and, the author find that it is different from the suboptimal relaying policies.
机译:作者考虑了一种中继辅助的两跳协作设备到设备(D2D)通信系统,其中源设备使用平均发射功率受到限制的非再生协作中继将数据传输到目标设备。对于协作D2D系统,作者考虑了根据-和-链路的衰落增益来最佳地调整中继增益以最大化衰落平均频谱效率的问题。作者推导了频谱效率最佳中继增益自适应策略(SERGAP),该策略确定了中继的最佳增益,并分析了SERGAP的衰落平均频谱效率。为了获得更多的见解,作者得出了平均频谱效率的上限,并且还使用有见地的分析研究了其渐近行为。此外,作者将衰落平均分析扩展到具有多个继电器的系统。作者还提供了单中继和多中继系统的数值结果,并用常规和次优中继策略对建议策略的性能进行了基准测试。作者表明,SERGAP比常规中继策略具有更高的平均频谱效率。最后,还通过仿真研究了所提出策略的频谱效率最优中继放置,发现与次优中继策略不同。

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