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Distributed Cognitive Radio Network Management via Algorithms in Probabilistic Graphical Models

机译:通过概率图形模型中的算法进行分布式认知无线电网络管理

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In this paper, cognitive radio wireless networks are investigated, in which a number of primary users (PUs) transmit in orthogonal frequency bands, and a number of secondary users (SUs) monitor the transmission status of the PUs and search for transmission opportunities in these frequency bands by collaborative detection. A network management problem is formulated to find the configuration of SUs (assignment of SUs) to detect PUs so that the best overall network performance is achieved. Two performance metrics are considered, both of which characterize the probability of errors for detecting transmission status of all PUs. For both metrics, a graphical representation of the problem is provided, which facilitates to connect the problems under study to the sum-product inference problem studied in probabilistic graphical models. Based on the elimination algorithm that solves the sum-product problem, a message passing algorithm is proposed to solve the problem under study in a computationally efficient manner and in a distributed fashion. The complexity of the algorithm is shown to be significantly lower than that of the exhaustive search approach. Moreover, a clique-tree algorithm is applied to efficiently compute the impacts of each SU's choice on the overall system performance. Finally, simulation results are provided to demonstrate the considerable performance enhancement achieved by implementing an optimal assignment of SUs.
机译:在本文中,对认知无线电无线网络进行了研究,其中许多主要用户(PU)在正交频带中进行传输,而许多次要用户(SU)监视PU的传输状态并在其中搜索传输机会。协同检测的频段。制定网络管理问题以找到SU的配置(SU的分配)以检测PU,从而获得最佳的整体网络性能。考虑了两个性能度量,这两个度量均表征了用于检测所有PU的传输状态的错误概率。对于这两个度量,都提供了问题的图形表示,这有助于将研究中的问题与概率图形模型中研究的和积推断问题联系起来。基于解决和积问题的消除算法,提出了一种消息传递算法,以计算有效的方式和分布式的方式解决正在研究的问题。结果表明,该算法的复杂度明显低于穷举搜索方法。而且,采用了树状树算法来有效地计算每个SU的选择对整体系统性能的影响。最后,提供了仿真结果以演示通过实现SU的最佳分配而实现的显着性能增强。

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