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Increasing network lifetime by balancing node energy consumption in heterogeneous sensor networks

机译:通过平衡异构传感器网络中的节点能耗来延长网络寿命

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摘要

Sensor nodes are powered by battery and have severe energy constraints. The typical many-to-one traffic pattern causes uneven energy consumption among sensor nodes, that is, sensor nodes near the base station or a cluster head have much heavier traffic burden and run out of power much faster than other nodes. The uneven node energy dissipation dramatically reduces sensor network lifetime. In a previous work, we presented the chessboard clustering scheme to increase network lifetime by balancing node energy consumption. To achieve good performance and scalability, we propose to form a heterogeneous sensor network by deploying a few powerful high-end sensors in addition to a large number of low-end sensors. In this paper, we design an efficient routing protocol based on the chessboard clustering scheme, and we compute the minimum node density for satisfying a given lifetime constraint. Simulation experiments show that the chessboard clustering-based routing protocol balances node energy consumption very well and dramatically increases network lifetime, and it performs much better than two other clustering-based schemes.
机译:传感器节点由电池供电并具有严格的能量约束。典型的多对一流量模式会导致传感器节点之间的能量消耗不均匀,也就是说,基站或群集头附近的传感器节点比其他节点具有更大的流量负担和更快的电量耗尽。不均匀的节点能量耗散会极大地缩短传感器网络的寿命。在先前的工作中,我们提出了棋盘聚类方案,以通过平衡节点能耗来延长网络寿命。为了获得良好的性能和可伸缩性,我们建议通过部署大量强大的高端传感器以及大量低端传感器来形成异构传感器网络。在本文中,我们基于棋盘聚类方案设计了一种有效的路由协议,并计算了满足给定生命周期约束的最小节点密度。仿真实验表明,基于国际象棋棋盘聚类的路由协议很好地平衡了节点能耗,并显着提高了网络寿命,并且其性能比其他两个基于聚类的方案要好得多。

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