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Impact of source counter on routing performance in resource constrained DTNs

机译:资源受限DTN中源计数器对路由性能的影响

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摘要

We study routing schemes for Disruption Tolerant Networks (DTNs) where transmission bandwidth is scarce. In such a setting, a key issue is how to schedule the transmission of packets under limited bandwidth to optimize performance. Such a scheduling consists of source control (i.e., source nodes choosing a routing scheme) and the local transmission scheduling performed by each node. Existing works typically focus on transmission scheduling and buffer management aspects, but due to theoretical and practical difficulties, only heuristics have been proposed. In this work, we explore an alternative way to improve DTN routing performance via source control. We first show through simulation that for spray-and-wait routing scheme where the source node specifies the maximum allowed number of copies of a packet in the network, there exists an optimal counter value that achieves the minimum network-wide average packet delivery delay. Then as a first step towards understanding multi-hop multi-copy DTN routing schemes such as spray-and-wait scheme, we perform modeling study of two-hop single-copy scheme and two-hop multi-copy scheme under various transmission scheduling schemes, via queuing network analysis and continuous time Markov chain model analysis. Our modeling analysis provides insights into the impact of source counter on routing performance and further suggests the existence of an optimal counter value. Relying on the insights gained via simulations and modeling studies, we propose an adaptive scheme where nodes adjust their counter values to achieve minimum packet delivery delay, in a distributed and asynchronous fashion. Simulations demonstrate the effectiveness of our scheme and suggest the potential of exploring this rich area for improving DTN routing performance.
机译:我们研究了传输带宽不足的容错网络(DTN)的路由方案。在这种情况下,关键问题是如何安排有限带宽下的数据包传输以优化性能。这样的调度包括源控制(即,源节点选择路由方案)和由每个节点执行的本地传输调度。现有的工作通常集中在传输调度和缓冲区管理方面,但是由于理论和实践上的困难,仅提出了启发式方法。在这项工作中,我们探索了一种通过源代码控制来提高DTN路由性能的替代方法。我们首先通过仿真显示,对于源节点指定网络中数据包的最大允许副本数的等待喷雾路由方案,存在一个最佳计数器值,该值可实现最小的网络范围内平均数据包传递延迟。然后,作为理解多跳多副本DTN路由方案(例如,喷雾和等待方案)的第一步,我们在各种传输调度方案下进行了两跳单副本方案和两跳多副本方案的建模研究。 ,通过排队网络分析和连续时间马尔可夫链模型分析。我们的建模分析可深入了解源计数器对路由性能的影响,并进一步建议存在最佳计数器值。依靠通过仿真和建模研究获得的见识,我们提出了一种自适应方案,其中节点以分布式和异步方式调整其计数器值以实现最小的数据包传递延迟。仿真证明了我们方案的有效性,并暗示了探索这一丰富区域以改善DTN路由性能的潜力。

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