Optimal two-hop routing in delay-tolerant networks

Francesco De Pellegrini, D. Miorandi, Iacopo Carreras
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引用次数: 3

Abstract

In this work we deal with the problem of dynamic decentralized self-optimization of forwarding protocols in delay-tolerant networks. We consider the two-hop forwarding protocol and we model the routing problem as an optimization one. We describe, under mild assumptions on the contact process among mobile nodes, the connection between the number of copies of a message and the cumulative probability distribution function of the message delay. We show that, despite the possible presence of a plurality of optimal policies, there always exists a threshold policy that is optimal. We also show that such an optimal strategy can be achieved at run-time by probing the network and with minimal message overhead. The approach is validated by implementing a self-optimizing algorithm in a network simulator; the performance of our solution is analyzed in the case of various real-world contact traces.
容忍延迟网络中的最优两跳路由
本文研究了延迟容忍网络中转发协议的动态分散自优化问题。我们考虑了两跳转发协议,并将路由问题建模为一个优化问题。在对移动节点间接触过程的温和假设下,我们描述了消息副本数与消息延迟的累积概率分布函数之间的联系。我们证明,尽管可能存在多个最优策略,但总存在一个最优的阈值策略。我们还展示了这种最佳策略可以在运行时通过探测网络和最小化消息开销来实现。通过在网络模拟器中实现自优化算法,验证了该方法的有效性;在各种实际接触轨迹的情况下,分析了我们的解决方案的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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