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Energy efficient routing for Mobile underwater wireless sensor networks

机译:用于移动水下无线传感器网络的节能路由

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Similar to the terrestrial sensor networks, the design of underwater wireless sensor networks (UWSN) has several challenges such as limited bandwidth, defective underwater channels and high propagation delay. Another primordial problem in UWSN is energy resource depletion of sensor node, which cannot be recharged; also solar energy cannot be exploited. In the coming years the number of sensor used in UWSN will be increased, thus our motivation of this study was to propose a routing algorithm for energy-constrained underwater system environments. In this paper two new clustering algorithms are proposed for Mobile underwater wireless sensor networks KEER and its enhanced version EKEER that aim to extend the network's lifetime. In both the algorithms, k-means clustering is used in the clustering phase. In the CH-selection step, the cluster head is elected initially based on the closeness to the center of the cluster, then the node having the higher residual energy elects itself as a cluster head in the next rounds. The extended version of KEER algorithm use a multihop transmission between the CHs and underwater sink and this brought significant improvement in terms of energy consumption. These algorithms are extensively simulated using random mobility model, with different speeds to evaluate their performance. Simulation results show that both KEER and EKEER are successful in achieving their goals.
机译:与地面传感器网络类似,水下无线传感器网络(UWSN)的设计面临一些挑战,例如带宽有限,水下通道有缺陷以及传播延迟高。 UWSN中的另一个主要问题是传感器节点的能源消耗,无法充电。太阳能也不能被利用。在未来的几年中,UWSN中使用的传感器数量将会增加,因此我们进行这项研究的动机是为能量受限的水下系统环境提出一种路由算法。本文针对移动水下无线传感器网络KEER及其增强版本EKEER提出了两种新的聚类算法,旨在延长网络的寿命。在两种算法中,聚类阶段均使用k均值聚类。在CH选择步骤中,首先根据与簇中心的接近程度来选择簇头,然后在下一轮中具有较高剩余能量的节点将自己选为簇头。 KEER算法的扩展版本在CH和水下水槽之间使用多跳传输,这在能源消耗方面带来了显着改善。这些算法使用随机移动性模型进行了广泛的仿真,并以不同的速度来评估其性能。仿真结果表明,KEER和EKEER均成功实现了目标。

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