水下传感器网络的可扩展性分析

Gunnar Brataas, A. Lie, T. Reinen
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引用次数: 3

摘要

虽然水声传感器网络(UWSN)仍被认为处于发展阶段,但专业用户已经开始了解其未来的潜力。例如,海上石油设施周围的大片区域需要进行环境监督。由大量传感器节点组成的UWSNs可以为这一挑战提供可行的解决方案。构建这种网络的一种方法是将大区域划分为多个传感器节点的小集群,这与蜂窝移动网络没有太大区别。给定一定的传感器节点密度,接下来的问题是确定提供最佳容量或最小数量的高成本汇聚节点的集群大小。本文对水下传感器网络进行了可扩展性分析,并给出了一组解析表达式,给出了聚类水声网络中水声通信距离与可获得的sink和传感器节点密度之间的关系。提出了两个命题,陈述了单元容量和MAC效率之间的线性关系,以及这种容量如何被六边形单元拓扑中的单元间干扰所降低。并在wss /ns-miracle中进行了仿真实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scalability analysis of underwater sensor networks
While underwater acoustic sensor networks (UWSN) are still considered to be in their development phase, professional users are starting to understand their future potential. For example, large areas encircling offshore oil installations need to be environmentally supervised. UWSNs consisting of a large number of sensor nodes can present a viable solution to this challenge. One way to build such networks is to divide the large area into multiple small clusters of sensor nodes, not very different from cellular mobile networks. Given a certain sensor node density, the question is then to determine the cluster sizes that provides optimum capacity or minimum number of high-cost sink nodes. This paper contains such a scalability analysis for underwater sensor networks, and presents a set of analytical expressions giving the relationship between underwater acoustic communication ranges and obtainable sink and sensor node densities in clustered underwater acoustic networks. Two propositions are presented that states a linear relation between cell capacities and MAC efficiencies, and how this capacity is reduced by inter-cell interference in a hexagonal cell topology. The propositions are validated using simulation experiments in WOSS/ns-miracle.
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