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A Robust On-Demand Routing Protocol for Cognitive Radio Ad Hoc Networks

机译:用于认知无线电Ad Hoc网络的强大的按需路由协议

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Cognitive Radio (CR) technology has been introduced to solve the problems of spectrum underutilization and spectrum scarcity caused by improper spectrum management policies. In Cognitive Radio Ad Hoc Networks (CRAHNs), which operate without centralized infrastructure support, data routing encounters various challenges including frequent topology changes, heterogeneous spectrum availability, and intermittent connectivity caused by the activities of Primary Users (PUs). In this paper, a robust on-demand routing protocol for CRAHNs, referred to the Robustness Aware Cognitive Ad-hoc Routing Protocol (RACARP), is proposed with an aim to provide robust paths for data delivery. The Expected Path Delay (EPD) routing metric used for path decision is introduced and applied in the protocol. The metric takes account of the link delay and the effect of packet loss on wireless links. Furthermore, the protocol avoids creating a transmission path that uses PU's channel in PU regions in order to counteract the impact of PU activities which can simply cause communication interruptions. The protocol also jointly exploits path and spectrum diversity in routing process in order to provide multi-path and multichannel routes for the purpose of fast route recovery. The performance evaluation is conducted through simulation using NS-2 simulator. The simulation results prove that the RACARP protocol achieves better performance in terms of average throughput and average end-to-end delay as compared to the Dual Diversity Cognitive Ad-hoc Routing Protocol (D2CARP).
机译:认知无线电(CR)技术已被引入到解决频谱利用不足和不当造成的频谱管理政策的频谱短缺的问题。在认知无线电Ad Hoc网络(CRAHNs),其不集中的基础设施的支持工作,数据路由遇到的各种挑战,包括频繁的拓扑变化,异构频谱可用性和间歇连接造成的主要用户(PUS)的活动。在本文中,按需路由协议CRAHNs一个健壮的,所提到的健壮性意识到认知特设路由协议(RACARP),与一个目的提出了提供用于数据递送健壮的路径。度量用于路径决定路由预期路径延迟(EPD)被引入并且在协议应用。该指标考虑了链路时延和丢包的无线链路上的效果。此外,协议避免创建使用PU的PU中的区域信道,以便传输路径以抵消PU活动,可以简单地引起通信中断的影响。该协议还共同利用了为了提供多路径和用于快速路由恢复的目的多通道路由来路由处理路径和频谱多样性。性能评价是使用NS-2模拟器通过模拟进行的。仿真结果表明,该RACARP协议在平均吞吐量和平均的端至端延迟方面相比于双多样性认知特设路由协议(D2CARP)实现更好的性能。

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