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Effective capacity of delay constrained cognitive radio links exploiting primary feedback

机译:利用主要反馈的延迟约束认知无线电链路的有效容量

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In this paper, we analyze the performance of a secondary link in a cognitive radio (CR) system operating under statistical quality of service (QoS) delay constraints. In particular, we quantify analytically the performance improvement for the secondary user (SU) when applying a feedback based sensing scheme under the “SINR Interference” model. We leverage the concept of effective capacity (EC) introduced earlier in the literature to quantify the wireless link performance under delay constraints, in an attempt to opportunistically support real-time applications. Towards this objective, we study a two-link network, a single secondary link and a primary network abstracted to a single primary link, with and without primary feedback exploitation. We analytically prove that exploiting primary feedback at the secondary transmitter improves the EC of the secondary user and decreases the secondary user average transmitted power. Finally, we present numerical results that support our analytical results.
机译:在本文中,我们分析了在统计服务质量(QoS)延迟约束下运行的认知无线电(CR)系统中辅助链路的性能。特别是,当在“ SINR干扰”模型下应用基于反馈的感知方案时,我们分析性地量化了二级用户(SU)的性能改进。我们利用早期文献中介绍的有效容量(EC)的概念来量化在延迟约束下的无线链路性能,以尝试机会性地支持实时应用。为了实现这一目标,我们研究了有无主反馈利用的双链路网络,单个辅助链路和抽象为单个主链路的主网络。我们通过分析证明,在辅发射机处利用主反馈可改善辅用户的EC,并降低辅用户的平均发射功率。最后,我们提出了支持我们的分析结果的数值结果。

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