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A Cross-Layer Design of Channel Assignment and Routing in Cognitive RadioNetworks

机译:信道分配和认知放射件路由的跨层设计

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Cognitive Radio (CR) technology provides a new and promising solution to improve the spectrum utilization. Due to the dynamic and diversity characteristics of channels in Cognitive Radio. Networks (CRNs), channel assignment and routing paths selection are critical issues for the functionality and performance of CRNs. In this paper, the routing metric of Minimum cumulative Interference and channel Switching Delay (MISD) is proposed for CRNs, which jointly undertakes the intra/inter-flow interference and channel switching delay for the end-to-end route. With consideration of the diversity of Spectrum OPportunity (SOP) set for each cognitive user, the optimal end-to-end path and channel on each hop are found in route resolve procedure by cross-layer design among the physical layer, MAC layer and network layer. Simulation results show that the proposed routing metric outperforms minimum hops metric and Weighted Cumulative Expected Transmission Time (WCETT) metric in terms of network throughput, end-to-end delay, packets delivery ratio and route overhead in CRNs.
机译:认知无线电(CR)技术提供了一种新的和有希望的解决方案来提高频谱利用率。由于认知无线电通道的动态和分集特征。网络(CRN),通道分配和路由路径选择是CRN的功能和性能的关键问题。在本文中,提出了用于CRN的最小累积干扰和信道切换延迟(MISD)的路由度量,该CRNS共同承担端到端路由的内部/间流间干扰和通道切换延迟。考虑到为每个认知用户设置的频谱机会(SOP)的多样性,通过物理层,MAC层和网络之间的横向设计,在路线解析过程中找到每跳的最佳端到端路径和通道层。仿真结果表明,在网络吞吐量,端到端延迟,分组传递比率和CRN中的路由开销方面,所提出的路由度量优于最小跃点度量和加权累积预期传输时间(WCETT)度量。

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