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Where does transport layer fit into space DTN architecture?

机译:运输层在哪里适合空间DTN架构?

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Delay Tolerant Networking (DTN) has been proposed as a global overlay architecture to provide network connectivity in challenged environments such as deep-space communications field. Bundle Protocol along with its convergence layer protocols transform end-to-end reliability into questionable hop-by-hop reliable communication and imposes a two-tier routing policy that allows flexible routes only within regions. Following the OSI model, in this paper we discuss the advantages and disadvantages of having a transport protocol relying on DTN for providing reliable and transparent transfer of data between end systems and offering common transport layer services such as end-to-end packet-oriented retransmission, flow control, path diversity and redundant transmission. In that context, we highlight features from DS-TP and DTTP that correspond to the requirements of transport protocols for space. We present space communication scenarios, which cannot be adequately addressed by the current DTN architecture.
机译:已经提出了延迟容忍网络(DTN)作为全局覆盖架构,以在诸如深空通信领域的挑战环境中提供网络连接。捆绑协议以及其融合层协议将端到端的可靠性转换为可疑的跳跃可靠性通信,并强加了两个层路由策略,允许仅在区域内进行灵活的路由。在OSI模型之后,在本文中,我们讨论了具有依赖DTN的传输协议的优缺点,以便在最终系统之间提供可靠且透明的数据传输,并提供常见的传输层服务,例如前端分组定向的重传。 ,流量控制,路径分集和冗余传输。在这方面,我们突出了DS-TP和DTTP的功能,该功能对应于空间传输协议的要求。我们呈现空间通信场景,目前的DTN架构无法充分解决。

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