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水下无线传感器网络:声传播模型如何影响高层协议的性能?

Underwater Wireless Sensor Networks: how do acoustic propagation models impact the performance of higher-level protocols?

机构信息

Physics and Computer Engineering Department, Miguel Hernandez University, Ave. Universidad S/N, Ed. Alcudia, 03202 Elche, Alicante, Spain.

出版信息

Sensors (Basel). 2012;12(2):1312-35. doi: 10.3390/s120201312. Epub 2012 Jan 31.

Abstract

Several Medium Access Control (MAC) and routing protocols have been developed in the last years for Underwater Wireless Sensor Networks (UWSNs). One of the main difficulties to compare and validate the performance of different proposals is the lack of a common standard to model the acoustic propagation in the underwater environment. In this paper we analyze the evolution of underwater acoustic prediction models from a simple approach to more detailed and accurate models. Then, different high layer network protocols are tested with different acoustic propagation models in order to determine the influence of environmental parameters on the obtained results. After several experiments, we can conclude that higher-level protocols are sensitive to both: (a) physical layer parameters related to the network scenario and (b) the acoustic propagation model. Conditions like ocean surface activity, scenario location, bathymetry or floor sediment composition, may change the signal propagation behavior. So, when designing network architectures for UWSNs, the role of the physical layer should be seriously taken into account in order to assert that the obtained simulation results will be close to the ones obtained in real network scenarios.

摘要

近年来,已经开发出了几种用于水下无线传感器网络(UWSN)的介质访问控制(MAC)和路由协议。比较和验证不同提案性能的主要困难之一是缺乏用于在水下环境中建模声传播的通用标准。在本文中,我们分析了水下声预测模型从简单方法到更详细和准确模型的演变。然后,使用不同的水声传播模型对不同的高层网络协议进行了测试,以确定环境参数对获得的结果的影响。经过多次实验,我们可以得出结论,高层协议对以下两个方面都很敏感:(a)与网络场景相关的物理层参数,以及(b)声传播模型。海洋表面活动、场景位置、水深或底质沉积物组成等条件可能会改变信号传播行为。因此,在为 UWSN 设计网络架构时,应认真考虑物理层的作用,以确保获得的模拟结果与实际网络场景中获得的结果接近。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81c5/3304114/033e3eeb2646/sensors-12-01312f1.jpg

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