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Energy-aware geographic routing in lossy wireless sensor networks with environmental energy supply

机译:具有环境能源的有损无线传感器网络中的能源感知地理路由

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Wireless sensor networks are characterized by multihop wireless lossy links and resource constrained nodes. Energy efficiency is a major concern in such networks. In this paper, we study Geographic Routing with Environmental Energy Supply (GREES) and propose two protocols, GREES-L and GREES-M, which combine geographic routing and energy-aware routing techniques and take into account the realistic lossy wireless channel condition and the renewal capability of environmental energy supply when making routing decisions. Simulation results show that GREESs are more energy efficient than the corresponding residual energy based protocols and geographic routing protocols without energy awareness. GREESs can maintain higher mean residual energy on nodes, and achieve better load balancing in terms of having smaller standard deviation of residual energy on nodes. Both GREES-L and GREES-M exhibit graceful degradation on end-to-end delay, but do not compromise the end-to-end throughput performance.
机译:无线传感器网络的特点是多跳无线有损链路和资源受限的节点。能源效率是此类网络中的主要问题。在本文中,我们研究了具有环境能源供应(GREES)的地理路由,并提出了两个协议GREES-L和GREES-M,它们结合了地理路由和能量感知路由技术,并考虑了实际的有损无线信道状况和制定路线决策时的环境能源供应更新能力。仿真结果表明,GREES比没有能源意识的相应的基于剩余能源的协议和地理路由协议具有更高的能源效率。 GREES可以在节点上保持较高的平均剩余能量,并通过在节点上具有较小的剩余能量标准偏差来实现更好的负载平衡。 GREES-L和GREES-M都在端到端延迟上表现出适度的降级,但不会损害端到端的吞吐量性能。

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