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Heterogeneous system framework for underwater networking

机译:水下网络的异构系统框架

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The integration of Radio Frequency (RF) Command and Control (C2) networks with underwater (UW) networks that are based on acoustic communications requires comprehensive solutions to address several technical challenges and interoperability issues. A major constraint arises from the large capability gap between acoustic and RF communications, the former being characterized by very low data rates and a propagation speed over five orders of magnitude slower (1.5 × 103 m/s versus 3 × 108 m/s) than the latter. The UW acoustic communications channel is also strongly influenced by environmental conditions and subject to frequent disruption. In such a context, typical assumptions associated with Internet protocols, such as the possibility of assuring an end-to-end path between source and destination and the capacity to provide a small end-to-end error rate, are no longer tenable. These differences are driving UW communications research to develop new protocols (where no standard exists) that are robust and interoperable. In this context the NATO Undersea Research Centre (NURC) is working towards the definition of a heterogeneous network framework based on Disruption Tolerant Networking (DTN) protocols and aligned with the guidance of the NATO Interoperability Standards and Profiles (NISP). This framework will eventually transition to NATO''s Network Enabled Capabilities (NNEC) to support new concepts for underwater surveillance of harbours and critical infrastructures, anti-submarine warfare and environmental monitoring. This paper provides an overview of some key components of the proposed framework, including MAC protocols and beaconing systems specifically adapted to underwater operations, as well as higher-layer protocols characterised by a high degree of cross-layer interaction. Preliminary results from field testing are presented that provide useful guidance for further development of this integrated concept.
机译:射频(RF)命令和控制(C2)网络与基于声通信的水下(UW)网络的集成,需要全面的解决方案来解决若干技术挑战和互操作性问题。一个主要的制约因素是声波和RF通信之间的巨大能力差距,前者的特点是数据速率非常低,并且传输速度慢了五个数量级(与上年相比,下降了1.5×10 3 m / s 3×10 8 m / s)。 UW声通信信道还受到环境条件的强烈影响,并经常受到干扰。在这种情况下,与Internet协议相关联的典型假设(例如,确保源与目的地之间的端到端路径的可能性以及提供小的端到端错误率的能力)不再成立。这些差异正在推动UW通信研究,以开发健壮且可互操作的新协议(不存在标准)。在这种情况下,北约海底研究中心(NURC)致力于基于容错网络(DTN)协议定义异构网络框架,并与北约互操作性标准和配置文件(NISP)的指导保持一致。该框架最终将过渡到北约的网络启用功能(NNEC),以支持港口和关键基础设施的水下监视,反潜战和环境监视的新概念。本文概述了所提议框架的一些关键组件,包括专门用于水下操作的MAC协议和信标系统,以及以高度跨层交互为特征的高层协议。给出了现场测试的初步结果,为进一步发展这一综合概念提供了有用的指导。

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