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Energy Balanced Strategies for Maximizing the Lifetime of Sparsely Deployed Underwater Acoustic Sensor Networks

机译:最大限度地延长稀疏部署的水下声传感器网络寿命的能量平衡策略

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摘要

Underwater acoustic sensor networks (UWA-SNs) are envisioned to perform monitoring tasks over the large portion of the world covered by oceans. Due to economics and the large area of the ocean, UWA-SNs are mainly sparsely deployed networks nowadays. The limited battery resources is a big challenge for the deployment of such long-term sensor networks. Unbalanced battery energy consumption will lead to early energy depletion of nodes, which partitions the whole networks and impairs the integrity of the monitoring datasets or even results in the collapse of the entire networks. On the contrary, balanced energy dissipation of nodes can prolong the lifetime of such networks. In this paper, we focus on the energy balance dissipation problem of two types of sparsely deployed UWA-SNs: underwater moored monitoring systems and sparsely deployed two-dimensional UWA-SNs. We first analyze the reasons of unbalanced energy consumption in such networks, then we propose two energy balanced strategies to maximize the lifetime of networks both in shallow and deep water. Finally, we evaluate our methods by simulations and the results show that the two strategies can achieve balanced energy consumption per node while at the same time prolong the networks lifetime.
机译:设想水下声传感器网络(UWA-SN)可以在海洋覆盖的世界大部分地区执行监视任务。由于经济因素和海洋的广阔区域,如今,UWA-SN主要是稀疏部署的网络。对于这样的长期传感器网络,有限的电池资源是一个巨大的挑战。不平衡的电池能量消耗将导致节点的早期能量消耗,这会分割整个网络并损害监视数据集的完整性,甚至导致整个网络崩溃。相反,平衡的节点能量消耗可以延长此类网络的寿命。在本文中,我们关注于两类稀疏部署的UWA-SNs的能量平衡耗散问题:水下系泊监测系统和稀疏部署的二维UWA-SNs。我们首先分析此类网络中能耗不平衡的原因,然后提出两种能量平衡策略,以最大化浅水和深水网络的寿命。最后,我们通过仿真评估了我们的方法,结果表明这两种策略可以在每个节点上实现均衡的能耗,同时延长网络寿命。

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