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An Energy-Efficient and Robust Multipath Routing Protocol for Cognitive Radio Ad Hoc Networks

机译:认知无线电自组织网络的节能高效多路径路由协议

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摘要

Routing in cognitive radio ad hoc networks (CRAHNs) is a daunting task owing to dynamic topology, intermittent connectivity, spectrum heterogeneity, and energy constraints. Other prominent aspects such as channel stability, path reliability, and route discovery frequency should also be exploited. Several routing protocols have been proposed for CRAHNs in the literature. By stressing on one of the aspects more than any other, however, they do not satisfy all requirements of throughput, energy efficiency, and robustness. In this paper, we propose an energy-efficient and robust multipath routing (ERMR) protocol for CRAHNs by considering all prominent aspects including residual energy and channel stability in design. Even when the current routing path fails, the alternative routing path is immediately utilized. In establishing primary and alternative routing paths, both residual energy and channel stability are exploited simultaneously. Our simulation study shows that the proposed ERMR outperforms the conventional protocol in terms of network throughput, packet delivery ratio, energy consumption, and end-to-end delay.
机译:由于动态拓扑,间歇性连接,频谱异质性和能量限制,认知无线电自组织网络(CRAHN)中的路由是一项艰巨的任务。还应利用其他重要方面,例如通道稳定性,路径可靠性和路由发现频率。文献中已经为CRAHN提出了几种路由协议。但是,通过不仅仅强调一个方面,它们不能满足吞吐量,能效和鲁棒性的所有要求。在本文中,我们考虑了所有突出的方面,包括设计中的剩余能量和通道稳定性,提出了一种针对CRAHN的高效节能且鲁棒的多路径路由(ERMR)协议。即使当前路由路径出现故障,备用路由路径也会立即被利用。在建立主要和替代路由路径时,会同时利用剩余能量和信道稳定性。我们的仿真研究表明,提出的ERMR在网络吞吐量,数据包传输率,能耗和端到端延迟方面均优于常规协议。

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