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Improving the transport performance in delay tolerant networks by random linear network coding and global acknowledgments

机译:通过随机线性网络编码和全局确认提高延迟容忍网络中的传输性能

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摘要

We propose and study a new set of enhancement features to improve the performance of reliable transport in Delay Tolerant Networks (DTNs) consisting of both unicast and multicast flows. The improvement in reliability is brought in by a novel Global Selective ACKnowledgment (G-SACK) scheme and random linear network coding. The motivation for using network coding and G-SACKs comes from the observation that one should take the maximum advantage of the contact opportunities which occur quite infrequently in DTNs. Network coding and G-SACKs perform "mixing" of packet and acknowledgment information, respectively, at the contact opportunities and essentially solve the randomness and finite capacity limitations of DTNs. In contrast to earlier work on network coding in DTNs, we observe and explain the gains due to network coding even under an inter-session setting. Our results from extensive simulations of appropriately chosen "minimal" topologies quantify the gains due to each enhancement feature. We show that substantial gains can be achieved by our proposed enhancements that are very simple to implement.
机译:我们提出并研究了一组新的增强功能,以改善由单播和多播流组成的延迟容忍网络(DTN)中可靠传输的性能。新型的全局选择性确认(G-SACK)方案和随机线性网络编码带来了可靠性的提高。使用网络编码和G-SACK的动机来自以下观察:人们应该最大程度地利用DTN中很少出现的联系机会。网络编码和G-SACK在联系机会分别执行数据包和确认信息的“混合”,并从根本上解决了DTN的随机性和有限容量限制。与早期在DTN中进行网络编码的工作相反,我们观察并解释了即使在会话间设置下由于网络编码而带来的收益。我们从适当选择的“最小”拓扑的广泛仿真中获得的结果量化了每种增强功能带来的收益。我们表明,通过我们提出的增强功能可以轻松实现实质性收益。

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