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Mobility-Enhanced Reliable Geographical Forwarding in Cognitive Radio Sensor Networks

机译:认知无线电传感器网络中增强移动性的可靠地理转发

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摘要

The emergence of the Internet of Things and the proliferation of mobile wireless devices has brought the area of mobile cognitive radio sensor networks (MCRSN) to the research spot light. Notwithstanding the potentials of CRSNs in terms of opportunistic channel usage for bursty traffic, the effect of the mobility of resource-constrained nodes to route stability, mobility-induced spatio-temporal spectral opportunities and primary user (PU) protection still remain open issues that need to be jointly addressed. To this effect, this paper proposes a mobile reliable geographical forwarding routing (MROR) protocol. MROR provides a robust mobile framework for geographical forwarding that is based on a mobility-induced channel availability model. It presents a comprehensive routing strategy that considers PU activity (to take care of routes that have to be built through PU coverage), PU signal protection (by the introduction of a mobility-induced guard (mguard) distance) and the random mobility-induced spatio-temporal spectrum opportunities (for enhancement of throughput). It also addresses the issue of frequent route maintenance that arises when speeds of the mobile nodes are considered as a routing metric. As a result, simulation has shown the ability of MROR to reduce the route failure rate by about 65% as against other schemes. In addition, further results show that MROR can improve both the throughput and goodput at the sink in an energy-efficient manner that is required in CRSNs as against compared works.
机译:物联网的出现和移动无线设备的普及使移动认知无线电传感器网络(MCRSN)领域成为研究热点。尽管CRSN在突发流量的机会性信道使用方面具有潜力,但是资源受限节点的移动性对路由稳定性,移动性引起的时空频谱机会和主要用户(PU)保护的影响仍然是尚待解决的问题。共同解决。为此,本文提出了一种移动可靠的地理转发路由(MROR)协议。 MROR基于移动性导致的信道可用性模型,为地理转发提供了一个强大的移动框架。它提出了一种综合的路由策略,该策略考虑了PU活动(以照顾必须通过PU覆盖建立的路由),PU信号保护(通过引入移动性引起的保护(mguard)距离)和随机移动性引起的时空频谱机会(用于提高吞吐量)。它还解决了将移动节点的速度视为路由度量时出现的频繁路由维护问题。结果,仿真表明,与其他方案相比,MROR能够将路由故障率降低约65%。此外,进一步的结果表明,与比较的工作相比,MROR可以以CRSNs所需的节能方式同时提高接收器的吞吐量和吞吐量。

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