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Exploiting Heterogeneity for Improving Forwarding Performance in Mobile Opportunistic Networks: An Analytic Approach

机译:利用异构性提高移动机会网络中的转发性能:一种分析方法

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Heterogeneity arises in a wide range of scenarios in mobile opportunistic networks and is one of the key factors that govern the performance of forwarding algorithms. While the heterogeneity has been empirically investigated and exploited in the design of new forwarding algorithms, it has been typically ignored or marginalized when it comes to rigorous performance analysis of such algorithms. In this paper, we develop an analytical framework to quantify the performance gain achievable by exploiting the heterogeneity in mobile nodes’ contact dynamics. In particular, we derive a delay upper bound of a heterogeneity-aware static forwarding policy per each given number of message copies and obtain its closed-form expression, which enables our quantitative study on the benefit of leveraging underlying heterogeneity structure in the design of forwarding algorithms. In addition, we develop a dynamic forwarding policy that performs as an extension of the static forwarding policy while proven to improve the delay performance. We then demonstrate that only a small fraction of total (unlimited) message copies, via both static and dynamic forwarding policies, are enough under various heterogeneous network settings to achieve the same delay as that obtained using the unlimited message copies when the networks become homogeneous. We also show that, given the same number of message copies, our dynamic forwarding policy significantly outperforms the ‘homogeneous-optimal’ forwarding policy (up to about 50 percent improvement in the delay performance), especially when the number of message copies allowed in the networks is small.
机译:异构性在移动机会网络中的各种情况下都会出现,并且是控制转发算法性能的关键因素之一。尽管异质性已在新转发算法的设计中进行了实证研究和开发,但在进行此类算法的严格性能分析时,通常已将其忽略或边缘化。在本文中,我们开发了一个分析框架,通过利用移动节点的联系动态中的异构性来量化可实现的性能提升。特别是,我们为每个给定数量的消息副本推导了异构感知静态转发策略的延迟上限,并获得其封闭形式的表达式,这使我们能够定量研究在转发设计中利用底层异构结构的好处。算法。另外,我们开发了一种动态转发策略,该策略可作为静态转发策略的扩展,同时被证明可以改善延迟性能。然后,我们证明,在各种异构网络设置下,通过静态和动态转发策略,仅一小部分总数(无限制)的消息副本就足以在网络变得同质时实现与使用无限制消息副本获得的相同延迟。我们还表明,在相同数量的消息副本的情况下,我们的动态转发策略的性能明显优于“同类最佳”转发策略(延迟性能提高了大约50%),尤其是当网络很小。

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