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DTN Routing as a Resource Allocation Problem

机译:DTN路由作为资源分配问题

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摘要

Routing protocols for disruption-tolerant networks (DTNs) use a variety of mechanisms, including discovering the meeting probabilities among nodes, packet replication, and network coding. The primary focus of these mechanisms is to increase the likelihood of finding a path with limited information, and so these approaches have only an incidental effect on routing such metrics as maximum or average delivery delay. In this paper, we present rapid, an intentional DTN routing protocol that can optimize a specific routing metric such as the worst-case delivery delay or the fraction of packets that are delivered within a deadline. The key insight is to treat DTN routing as a resource allocation problem that translates the routing metric into per-packet utilities which determine how packets should be replicated in the system. We evaluate rapid rigorously through a prototype deployed over a vehicular DTN testbed of 40 buses and simulations based on real traces. To our knowledge, this is the first paper to report on a routing protocol deployed on a real DTN at this scale. Our results suggest that rapid significantly outperforms existing routing protocols for several metrics. We also show empirically that for small loads RAPID is within 10% of the optimal performance.
机译:容错网络(DTN)的路由协议使用多种机制,包括发现节点之间的会议概率,数据包复制和网络编码。这些机制的主要重点是增加找到具有有限信息的路径的可能性,因此,这些方法仅对路由度量(例如最大或平均传递延迟)产生附带影响。在本文中,我们提出了一种快速的,有意的DTN路由协议,该协议可以优化特定的路由度量,例如最坏情况下的传输延迟或在最后期限内交付的数据包的比例。关键的见解是将DTN路由视为资源分配问题,该问题将路由度量转换为按数据包的实用程序,从而确定应如何在系统中复制数据包。我们通过部署在40辆公交车的车载DTN测试台上的原型以及基于真实轨迹的仿真来对评估进行快速严格的评估。据我们所知,这是第一篇报告在如此规模的实际DTN上部署的路由协议的论文。我们的结果表明,在多个指标上,快速性能明显优于现有路由协议。我们还根据经验表明,对于小负载,RAPID在最佳性能的10%以内。

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