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Experimental results of Delay-Tolerant Networking in underwater acoustic channel using S2C modems with embedded sandbox on-board

机译:用S2C调制解调器嵌入式沙箱车载箱式频道延时网络延迟耐受网络的实验结果

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Delay-Tolerant Networking (DTN) technology enables the nodes of an underwater acoustic network to communicate under conditions of frequent link disruptions and in networks topologies, in which end-to-end connections may never be available. Our implementation was based on the DTN2 open-source project, which represents a reference implementation of the DTN protocols and is designed as an experimental platform containing a set of DTN functionalities. The use of DTN2 in underwater networks provides for the nodes an opportunity to communicate even if the link between them often disrupts. To make DTN2 working with Evologics S2C modems, there was designed and implemented a new convergence layer called DMAC CL. This convergence layer was implemented in DTN2 open source project which was running in the “sandbox” (onboard) of the S2C modems during the experiments. The article aims to present the experimental results of delay-tolerant networking collected during REP14 sea trials, organized and carried out in Atlantics by the Centre for Maritime Research and Experimentation (CMRE) in July 2014.
机译:延迟网络(DTN)技术使水下声学网络的节点能够在频繁的链路中断和网络拓扑的条件下进行通信,其中端到端连接可能永远不会可用。我们的实现基于DTN2开源项目,该项目代表了DTN协议的参考实现,并且被设计为包含一组DTN功能的实验平台。 DTN2在水下网络中的使用提供了即使它们之间的链路经常扰乱,则为节点提供了一次通信的机会。为了使DTN2使用Sevologics S2C调制解调器,设计并实现了一种名为DMAC CL的新收敛层。该收敛层在DTN2开源项目中实现,该项目在实验期间在S2C调制解调器的“沙箱”(车载)中运行。本文旨在展示在2014年7月的海事研究和实验(CMRE)中心组织和在亚特兰人组织和开展期间收集的延迟耐受网络的实验结果。

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