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An adaptive structure of CR network under optimal sample number for accurate estimation

机译:最优采样数下CR网络的自适应结构以进行准确估计

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Spectrum sensing in cognitive radio network plays a vital role in the efficient utilization of underutilized licensed band. Efficient utilization implies that whenever spectrum is not being used by primary user it should be assign to secondary user. Conventional structure of spectrum sensing using energy detection technique cannot guarantee to fulfill the interest of primary user and secondary user simultaneously. Primary user wants to maximize the probability of detection whereas secondary user wants to minimize probability of false alarm. This paper analyzes an adaptive structure of spectrum sensing which is based on the trade-off between the interest of primary user and secondary user. Adaptive structure tries to minimize the probability of error in allocation of frequency band among primary user and secondary user. We derive an expression of optimum number of sample required which minimizes the probability of error, for accurate estimation at different parameter like SNR and α. The adaptive structure demonstrates the better utilization of frequency band by having better probability of detection and lesser probability of false alarm.
机译:认知无线电网络中的频谱感应在有效利用未充分利用的许可频段方面起着至关重要的作用。有效利用意味着,只要主要用户不使用频谱,就应将其分配给次要用户。使用能量检测技术的频谱感测的常规结构不能保证同时满足主要用户和次要用户的兴趣。主要用户想要最大化检测的可能性,而次要用户想要最小化错误警报的可能性。本文分析了频谱感知的自适应结构,该结构基于主要用户和次要用户的利益之间的权衡。自适应结构试图最小化主要用户和次要用户之间的频带分配中的错误概率。我们导出了所需样本的最佳数量的表达式,该表达式可最大程度地降低错误概率,以便在SNR和α等不同参数下进行准确估算。自适应结构通过具有较高的检测概率和较小的虚警概率,证明了对频带的更好利用。

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