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Reliable Geographical Forwarding in Cognitive Radio Sensor Networks Using Virtual Clusters

机译:使用虚拟集群的认知无线电传感器网络中的可靠地理转发

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摘要

The need for implementing reliable data transfer in resource-constrained cognitive radio ad hoc networks is still an open issue in the research community. Although geographical forwarding schemes are characterized by their low overhead and efficiency in reliable data transfer in traditional wireless sensor network, this potential is still yet to be utilized for viable routing options in resource-constrained cognitive radio ad hoc networks in the presence of lossy links. In this paper, a novel geographical forwarding technique that does not restrict the choice of the next hop to the nodes in the selected route is presented. This is achieved by the creation of virtual clusters based on spectrum correlation from which the next hop choice is made based on link quality. The design maximizes the use of idle listening and receiver contention prioritization for energy efficiency, the avoidance of routing hot spots and stability. The validation result, which closely follows the simulation result, shows that the developed scheme can make more advancement to the sink as against the usual decisions of relevant ad hoc on-demand distance vector route select operations, while ensuring channel quality. Further simulation results have shown the enhanced reliability, lower latency and energy efficiency of the presented scheme.
机译:在资源受限的认知无线电自组织网络中实现可靠数据传输的需求仍然是研究界的一个未决问题。尽管地理转发方案的特点是它们的低开销和传统无线传感器网络中可靠数据传输的效率,但是在存在有损链路的情况下,这种潜力仍需用于资源受限的认知无线电自组织网络中的可行路由选择。在本文中,提出了一种新颖的地理转发技术,该技术不将下一跳的选择限制到所选路由中的节点。这是通过基于频谱相关性创建虚拟群集来实现的,然后根据链路质量从中进行下一跳选择。该设计最大限度地利用了空闲侦听和接收器竞争优先级,以提高能效,避免路由热点和稳定性。验证结果紧跟模拟结果,表明所开发的方案可以在确保信道质量的同时,相对于相关的特定按需距离矢量路径选择操作的常规决策,进一步提高接收器的性能。进一步的仿真结果表明,该方案具有更高的可靠性,更低的等待时间和能源效率。

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