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Opportunistic Spectrum Sharing With Limited Feedback in Poisson Cognitive Radio Networks

机译:泊松认知无线电网络中有限反馈的机会频谱共享

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摘要

In this paper, we propose two limited feedback based underlay spectrum sharing schemes in Poisson cognitive radio networks without and with primary exclusive regions, respectively. Both primary and secondary transmitters are Poisson distributed nodes with limited feedback of channel quality information from their local receivers. The primary transmitters are active if their local primary channels are above a certain threshold. In the opportunistic spectrum sharing scheme without primary exclusive region, the secondary transmitters are elected to transmit if their local channels are above the required threshold. In the opportunistic spectrum sharing scheme with a primary exclusive region, the secondary transmitters transmit if their local channels are above the threshold and they are outside the exclusive regions of the active primary receivers. For both schemes, the optimal secondary node density is analytically derived by maximizing the secondary area spectral efficiency subject to the secondary outage constraint and the primary efficiency loss constraint. Numerical results show that, for a tight secondary outage constraint, it is more beneficial to use the scheme with no primary exclusive region. For relatively loose secondary outage constraint, the scheme with primary exclusive regions is recommended.
机译:在本文中,我们提出了在不具有和具有主要互斥区域的Poisson认知无线电网络中的两种基于有限反馈的底层频谱共享方案。主发送器和辅助发送器都是Poisson分布式节点,其本地接收器对信道质量信息的反馈有限。如果主要发送器的本地主要信道高于某个阈值,则它们处于活动状态。在没有主要排他性区域的机会频谱共享方案中,如果次要发射机的本地信道高于所需阈值,则选择它们进行发射。在具有主要排他性区域的机会频谱共享方案中,如果次要发送器的本地信道高于阈值并且它们在活动的主要接收器的排他性区域之外,则进行辅助发送。对于这两种方案,通过在次级中断约束和初级效率损失约束下最大化次级区域频谱效率,可以分析得出最佳的次级节点密度。数值结果表明,对于严格的二次中断约束,使用没有主要排他性区域的方案更为有利。对于相对宽松的二次中断约束,建议使用具有主要排他性区域的方案。

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