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On the throughput of cognitive radio networks using eigenvalue-based cooperative spectrum sensing under complex Nakagami-m fading

机译:复杂Nakagami-m衰落下基于特征值的协作频谱感知的认知无线电网络吞吐量

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In this paper, we study the impact of eigenvalue-based spectrum sensing techniques in the achievable throughput of the secondary cognitive radio network. For this analysis, the channel between the primary and secondary users is modeled as a complex Nakagami-m distribution, in order to investigate the effects of not only the channel envelope, but also the novel non-uniform phase distribution in the detection process. Simulated scenarios are run using the energy detection, the maximum eigenvalue detection, the maximum-minimum eigenvalue detection and the generalized likelihood ratio test. The achievable network throughput is then found as a function of the number of samples, where the channel envelope and phase parameters are arbitrarily varied to investigate their effects on the spectrum sensing and, consequently, on the secondary network throughput itself.
机译:在本文中,我们研究了基于特征值的频谱感知技术对辅助认知无线电网络可达到的吞吐量的影响。为了进行此分析,将主要和次要用户之间的通道建模为复杂的Nakagami-m分布,以便不仅研究通道包络的影响,而且研究新颖的非均匀相位分布在检测过程中的影响。使用能量检测,最大特征值检测,最大最小特征值检测和广义似然比检验运行模拟场景。然后找到可实现的网络吞吐量,它是样本数量的函数,其中通道包络和相位参数可以任意改变,以研究它们对频谱感测的影响,进而对次级网络吞吐量本身的影响。

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