首页> 外文会议>2010 6th International Conference on Emerging Technologies >Backup channel and cooperative channel switching on-demand routing protocol for multi-hop cognitive radio ad hoc networks (BCCCS)
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Backup channel and cooperative channel switching on-demand routing protocol for multi-hop cognitive radio ad hoc networks (BCCCS)

机译:多跳认知无线电自组织网络(BCCCS)的备用信道和协作信道切换按需路由协议

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Cognitive radio technology solves the problem of spectrum underutilization by allowing the unlicensed users to opportunistically access available spectrum without affecting the activity of licensed user. Channel assignment and routing in cognitive radio networks is especially challenging in networks where nodes are equipped with only a single transceiver (as is the case in commodity wireless networks that run IEEE 802.11 DCF MAC). We propose a combined framework of routing and channel assignment that exploits channel diversity in cognitive radio networks to optimize routing performance and increase the network capacity. Specifically, we propose a joint cross-layer routing/ channel assignment protocol based on AODV that works without any central control channel and accounts for the state of the links. In this paper, we propose to keep a backup channel to cater for channel heterogeneity thereby avoiding end to end re-route procedures. We also propose cooperative channel switching in which various nodes exchange routing and control information in a coordinated way. Simulation results show that our proposed backup channel approach ensures higher connectivity as compared to the single channel approach as the number of channels interfered with increases.
机译:认知无线电技术通过允许未经许可的用户机会性地访问可用频谱而不会影响许可用户的活动,从而解决了频谱利用不足的问题。在节点仅配备一个收发器的网络中(如运行IEEE 802.11 DCF MAC的商用无线网络中的情况),认知无线电网络中的信道分配和路由尤其具有挑战性。我们提出了路由和信道分配的组合框架,该框架利用认知无线电网络中的信道多样性来优化路由性能并增加网络容量。具体来说,我们提出了一种基于AODV的跨层联合路由/信道分配协议,该协议无需任何中央控制信道即可工作,并说明了链路的状态。在本文中,我们建议保留一个备用信道以应对信道异构性,从而避免端到端重路由过程。我们还提出了协作信道交换,其中各个节点以协调的方式交换路由和控制信息。仿真结果表明,与单通道方法相比,随着通道数量的增加,我们提出的备用通道方法可确保更高的连通性。

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