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Designing energy-aware adaptive routing for wireless sensor networks

机译:设计无线传感器网络的能量感知自适应路由

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摘要

Many energy-aware routing protocols take into account the residual battery power in sensor nodes or/and the energy required for transmission along the path. In the deployment of an environmental sensor network, we observed that applications may also impose requirements on routing, thus placing higher demands on protocol design. We demonstrated our approach to this issue through FloodNet, a flood warning system, which uses a predictor model developed by environmental experts to make flood predictions based on readings of water level collected by a set of sensor nodes. Because the model influences the node reporting frequency, we proposed the FloodNet adaptive routing (FAR) which transmits data across nodes with ample energy and light reporting tasks whilst conserving energy for others low on battery power and heavily required by the monitoring task. As a reactive protocol, FAR is robust to topology changes due to moving obstacles and transient node failure. We evaluate the FAR performance through simulation, the result of which corresponds with its anticipated behavior and improvements. ©2006 IEEE.
机译:许多节能路由协议都考虑了传感器节点中的剩余电池电量或/和沿路径传输所需的能量。在部署环境传感器网络时,我们观察到应用程序可能还会对路由施加要求,从而对协议设计提出更高的要求。我们通过洪水预警系统FloodNet展示了针对此问题的方法,该系统使用了由环境专家开发的预测器模型,根据一组传感器节点收集的水位读数进行洪水预测。由于该模型会影响节点报告频率,因此我们提出了FloodNet自适应路由(FAR),该功能可在能量和光报告任务丰富的节点之间传输数据,同时为其他电池电量低且监视任务非常需要的节点节省能量。作为一种反应性协议,FAR对于由于移动障碍物和瞬态节点故障而引起的拓扑变化具有鲁棒性。我们通过仿真评估FAR性能,其结果与其预期的行为和改进相对应。 ©2006 IEEE。

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    Jing, Z; De Roure, D;

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  • 年度 2007
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  • 正文语种 eng
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