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Joint channel selection and cluster-based routing scheme based on reinforcement learning for cognitive radio networks

机译:基于认知无线电网络的加固学习的联合通道选择与基于簇的路由方案

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Cognitive radio network (CRN) has emerged as a promising solution to solve the problem of underutilization of licensed spectrum. It allows opportunistic access of unutilized spectrum (or white spaces) by unlicensed users (or secondary users, SUs) whilst minimizing interference to licensed users (or primary users, PUs). The dynamicity of channel availability has imposed additional challenges for routing in CRNs. Besides providing optimal routes to SUs for communication, one of the key requirements of routing in CRNs is to minimize interference to PUs. In this paper, we propose a joint channel selection and cluster-based routing scheme called SMART (SpectruM-Aware cluster-based RouTing) for CRNs. SMART enables SUs to form clusters in the network, and subsequently, it enables SU source node to search for a route to its destination node in the underlying clustered network. SMART applies an artificial intelligence approach called reinforcement learning in order to maximize network performance, such as SU-PU interference and packet delivery ratio. Simulation results show that SMART reduces significant interference to PUs without significance degradation of packet delivery ratio when compared to clustered scheme without cluster maintenance (i.e., SMART-NO-MNT) and non-clustered scheme (i.e., spectrum-aware AODV or SA-AODV).
机译:认知无线电网络(CRN)已成为解决许可频谱未充分利用问题的有希望的解决方案。它允许通过未经许可的用户(或辅助用户,SUS)的未利用频谱(或白色空间)的机会访问,同时最大限度地减少对许可用户(或主要用户,PU)的干扰。渠道可用性的动态性强加了在CRN中路由的额外挑战。除了为SUS通信提供最佳路线之外,CRNS中路由的关键要求之一是最小化对PU的干扰。在本文中,我们提出了一种用于CRN的智能(基于频谱感知群集路由)的联合通道选择和基于群集的路由方案。 SMART允许SUS在网络中形成群集,随后,它使SU源节点能够在底层群集网络中搜索到其目标节点的路由。智能应用一种称为强化学习的人工智能方法,以最大化网络性能,例如SU-PU干扰和分组传递比。仿真结果表明,当与没有簇维护(即,SMART-NO-MNT)和非聚集的方案(即,频谱感知AODV或SA-AODV丛集化方案在于SMART降低而不的分组传送比意义降解脓显著干扰)。

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