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Towards ground station contact discovery in ring road networks

机译:在环路网络中朝向地面站接触发现

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Delay-tolerant Networking protocols render a huge variety of novel communication scenarios possible. One of them is the so called Ring Road approach, a world-wide message-ferry network built upon Low-Earth Orbit (LEO) satellites used to transfer data between different ground stations. By this approach a world-wide communication network may be deployed at very low cost which allows for ad-hoc integration of ground stations into the overall network. Thus, it is possible to route data between isolated regions of the world and the Internet without explicit configuration effort. Essential for bringing this concept to realization is a neighbor discovery protocol enabling LEO satellites to discover new ground stations. The aim of this paper is to discuss the DTN IP Neighbor Discovery (IPND) protocol as a basis for a dedicated discovery approach. The resulting adapted version of IPND has been integrated into an existing DTN protocol implementation intended to be used on low-cost LEO satellites such as CubeSats. A technical realization has stood the test of practice and, thus, confirmed the applicability of the protocol for dynamic ground station discovery in a Ring Road network.
机译:延迟网络协议渲染各种各样的新颖通信场景。其中一个是所谓的环路方法,是一个全球消息 - 渡轮网络,基于低地球轨道(Leo)卫星,用于在不同地站之间传输数据。通过这种方法,可以以非常低的成本部署全球通信网络,其允许接地站的临时集成到整体网络中。因此,可以在没有明确的配置工作的情况下路由世界的隔离区域和因特网之间的数据。使这一概念实现这一概念是一个邻国发现协议,使Leo卫星能够发现新的地面站。本文的目的是讨论DTN IP邻居发现(IPND)协议作为专用发现方法的基础。生成的IPND的适应版本已集成到现有的DTN协议实现中,该协议实现旨在用于低成本LEO卫星,例如CubeSats。技术实现已经支持实践的测试,从而确认了协议在环路网中的动态地面站发现的适用性。

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