来自深度的信号:Argo数据集的渗透策略属性

Flaviano Di Rienzo, M. Girolami, S. Chessa, F. Paparella, A. Caruso
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引用次数: 3

摘要

通过声学调制解调器进行水下通信对水声传感器网络(UASN)提出了几个网络挑战。特别是,机会路由是一种新颖但有前途的技术,可以显著提高usasn的可靠性,但在这种情况下,它的使用需要研究usasn的移动性性质。我们的目标是研究从Argo项目获得的真实世界的移动数据集。特别地,我们观察了部署在地中海上大约一年的51个自由漂流浮标的流动性,并分析了我们建立的水下网络的一些重要特性。具体来说,我们在改变整个数据集的连通度的情况下,分析了接触时间、相互接触时间以及密度和网络度。然后,我们考虑了三种已知的路由算法,即Epidemic、PROPHET和Direct Delivery,目的是衡量它们在USAN实际条件下的性能。我们最后讨论了在usasn中采用机会路由所带来的机会,表明即使在非常稀疏和强烈断开的网络中,仍然有可能建立一个有限但有效的网络框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Signals from the depths: Properties of percolation strategies with the Argo dataset
Underwater communications through acoustic modems rise several networking challenges for the Underwater Acoustic Sensor Networks (UASN). In particular, opportunistic routing is a novel but promising technique that can remarkably increase the reliability of the UASN, but its use in this context requires studies on the nature of mobility in UASN. Our goal is to study a real-world mobility dataset obtained from the Argo project. In particular, we observe the mobility of 51 free-drifting floats deployed on the Mediterranean Sea for approximately one year and we analyze some important properties of the underwater network we built. Specifically, we analyze the contact-time, inter-contact time as well density and network degree while varying the connectivity degree of the whole dataset. We then consider three known routing algorithms, namely Epidemic, PROPHET and Direct Delivery, with the goal of measuring their performance in real conditions for USAN. We finally discuss the opportunities arising from the adoption of opportunistic routing in UASN showing that, even in a very sparse and strongly disconnected network, it is still possible to build a limited but working networking framework.
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