Energy-Efficient Mobility Prediction Routing Protocol for Freely Floating Underwater Acoustic Sensor Networks

Ghida Jubran Alqahtani, Fatma Bouabdallah
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引用次数: 5

Abstract

Recently, there has been an increasing interest in monitoring and exploring underwater environments for scientific applications such as oceanographic data collection, marine surveillance, and pollution detection. Underwater acoustic sensor networks (UASNs) have been proposed as the enabling technology to observe, map, and explore the ocean. The unique characteristics of underwater aquatic environments such as low bandwidth, long propagation delays, and high energy consumption make the data forwarding process very difficult. Moreover, the mobility of the underwater sensors is considered an additional constraint for the success of the data forwarding process. That being said, most of the data forwarding protocols do not realistically consider the dynamic topology of underwater environment as sensor nodes move with the water currents, which is a natural phenomenon. In this research, we propose a mobility prediction optimal data forwarding (MPODF) protocol for UASNs based on mobility prediction. Indeed, by considering a realistic, physically inspired mobility model, our protocol succeeds to forward every generated data packet through one single best path without the need to exchange notification messages, thanks to the mobility prediction module. Simulation results show that our protocol achieves a high packet delivery ratio, high energy efficiency, and reduced end-to-end delay.
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自由浮动水声传感器网络节能移动预测路由协议
近年来,人们对监测和探索水下环境的科学应用越来越感兴趣,如海洋数据收集、海洋监测和污染检测。水声传感器网络(uasn)已被提出作为观测、绘制和探索海洋的使能技术。水下水生环境的低带宽、长传播时延、高能耗等特点使得数据转发过程非常困难。此外,水下传感器的可移动性被认为是数据转发过程成功的附加约束。尽管如此,大多数数据转发协议并没有真正考虑水下环境的动态拓扑,因为传感器节点随着水流的移动而移动,这是一种自然现象。在本研究中,我们提出了一种基于移动预测的移动预测最优数据转发(MPODF)协议。事实上,通过考虑一个现实的、物理启发的移动模型,我们的协议成功地通过一个最佳路径转发每个生成的数据包,而不需要交换通知消息,这要归功于移动预测模块。仿真结果表明,该协议具有较高的分组传输率、较高的能效和较低的端到端时延。
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