容中断网络的水下收敛层

D. Merani, A. Berni, J. Potter, R. Martins
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引用次数: 34

摘要

容忍延迟和中断的网络(DTN)包含了偶尔连接的网络的概念,这些网络可能遭受频繁的分区,并且可能由多个不同的协议集或协议族组成。由于DTN被设想为放松与互联网协议相关的大多数假设,其中最重要的是通信会话期间源和目的地之间端到端路径的可用性,因此可以设想DTN概念在水声网络中的应用,其中带宽有限的声学信道由于环境因素而经常中断。本文提出了一种DTN2参考实现的水下汇聚层(UCL)的设计与实现,为WHOI微调制解调器提供DTN支持。在Acommsnet10海上试验期间,UCL在不同的环境下进行了现场测试,包括水下节点通过声学通信和地面节点通过射频通信。还介绍了从现场试验中获得的初步结果和经验教训。这一发展的主要价值在于为DTN概念在海事领域的应用提供新功能,以实现多跳声通信、使用自动驾驶车辆的数据骡子和不同传输介质(例如水声通信和水上无线电/卫星之间)之间的网关等功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Underwater Convergence Layer for Disruption Tolerant Networking
Delay and Disruption tolerant networking (DTN) embraces the concepts of occasionally-connected networks that may suffer from frequent partitions and that may be comprised of more than one divergent set of protocols or protocol families. Since DTN was conceived to relax most of the assumptions associated with Internet protocols, the most important of which is the availability of an end-to-end path between source and destination for the duration of a communication session, it is possible to envision the application of DTN concepts to under-water acoustic networks, where the bandwidth-limited acoustic channel suffers frequent disruptions due to environmental factors. This paper presents the design and implementation of an Underwater Convergence Layer (UCL) for the DTN2 Reference Implementation, which provides DTN support for the WHOI Micro-Modem. UCL was tested in the field during the Acommsnet10 sea trial, in a heterogeneous context comprising underwater nodes communicating acoustically and surface nodes communicating with radio frequency. Initial results and lessons learned from field testing are also presented. The principal value of this development resides in the delivery of new capabilities towards the application of DTN concepts to the maritime domain, to enable functionalities like multi-hop acoustic communication, data mule using autonomous vehicles and gateways between different transmission media (e.g. between underwater acoustic communications and above water radio/satellite).
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