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A Topology Control Approach Reducing Construction Cost for Lossy Wireless Sensor Networks

机译:拓扑控制方法降低了有损无线传感器网络的施工成本

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摘要

In lossy wireless sensor networks, many links suffer from significant quality variation with time and environments. Topology control approaches need to consider such stochastic nature to yield different topologies for different application requirements. However, the metric of links must be timely obtained to speed up the topology construction. In fact, the existing approaches address it by passive monitoring, which is not timely adaptive to link quality variation. Also, timely access to the metric of all links at all power levels causes a large burden on topology control operation. We do not insist on getting the link metrics of all power levels at a time. Most urgently needed link metrics are firstly obtained by an active probing mode in this paper. If these link metrics do not meet the topology performance requirements, sub-urgently needed link metrics will be obtained on demand. At the same time, each node performs a topology control process based on the information in a smaller range (e.g., 1-hop neighborhood). Therefore, our approach has the low construct cast, which is proved in this paper. The simulation results also show that our approach outperforms the existing typical works in terms of average transmission power level, though it is slightly less efficient in terms of average delivery rate, average end-to-end delay and total energy consumption. In addition, our approach has advantage in terms of standard deviation of remaining energy under the relatively smaller required path quality bound or lower node density.
机译:在有损的无线传感器网络中,许多链接患有具有显着质量变化的时间和环境。拓扑控制方法需要考虑这种随机性质,以产生不同的应用要求的不同拓扑。但是,必须及时获得链路的度量以加速拓扑结构。实际上,现有方法通过被动监控来解决它,这并不及时适应链接质量变化。此外,及时访问所有功率水平的所有链接的度量,导致拓扑控制操作的大负担。我们不会坚持一次获取所有功率水平的链接度量。本文首先通过主动探测模式获得最迫切需要的链路度量。如果这些链路指标不符合拓扑性能要求,则将根据需求获得潜在急需的链接指标。同时,每个节点基于较小范围(例如,1跳邻域)的信息执行拓扑控制过程。因此,我们的方法具有低构建演员,本文证明了这一文件。仿真结果还表明,我们的方法在平均传输功率水平方面优于现有的典型工作,尽管在平均交付率,平均端到端延迟和总能耗方面略有效率。此外,我们的方法在相对较小的所需路径质量绑定或下节点密度下的剩余能量的标准偏差方面具有优势。

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