时延容忍网络(DTN)在机载网络中的应用

T. Jonson, J. Pezeshki, V. Chao, K. Smith, J. Fazio
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引用次数: 47

摘要

随着机载网络(ANs)的发展和日益以网络为中心,适当考虑将基于互联网协议(IP)的网络服务适当扩展到战术资产是至关重要的。这是一项通过使用标准协议解决当前互操作性问题的努力,并在所有机载网络平台之间提供IP连接。然而,在当前的网络架构和未来设想的以网络为中心的能力之间存在着巨大的差距。广域网拓扑结构的动态特性,通常以高度间歇链路和长链路延迟为特征,限制了基于互联网的标准和协议的使用和有效性。延迟容忍网络(DTN)架构是单独开发的,旨在解决链路间歇、终端用户之间缺乏端到端连接和高延迟的网络需求。虽然最初是为深空网络和行星际通信开发的,但ddn在传感器网络、地面无线网络、卫星网络、水声网络以及机载网络中都有广泛的应用。本文讨论了在基于ip的网络环境中建立和维护可靠通信的具体挑战。此外,本文提供了DTN的概述,并详细介绍了如何将该技术集成到an基础设施中,以解决当前影响an性能的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of delay tolerant networking (DTN) in Airborne Networks
As airborne networks (ANs) evolve and become increasingly net-centric, it is critical that apt consideration is given to properly extend Internet protocol (IP)-based networking services to the tactical assets. This is an effort to resolve current interoperability issues through the use of a standard protocol and provide IP connectivity between all airborne network platforms. However, large gaps exist between the current AN architecture and future envisioned net-centric capabilities. The dynamic nature of the AN topology, typically characterized by highly intermittent links and long link delays, limits the use and effectiveness of Internet-based standards and protocols. Developed separately, the delay tolerant network (DTN) architecture has been designed to address the needs of networks characterized by link intermittency, lack of end-to-end connectivity between end users, and high latency. While originally developed for deep space networking and inter-planetary communications, DTNs are highly applicable for sensor-based networks, terrestrial wireless networks, satellite networks, underwater acoustic networks as well as airborne networks. This paper addresses the specific challenges of establishing and maintaining reliable communications within an IP-based AN environment. In addition, this paper provides an overview of DTN, and details how this technology may be integrated into to the AN infrastructure in order to address the current issues affecting AN performance.
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