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Overlay networks of in situ instruments for probabilistic guarantees on message delays in wide-area networks

机译:广域网中消息延迟概率保证的现场仪器覆盖网络

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Messages transported over wide-area networks are subject to various delays at the hosts and intermediate nodes. In addition to bandwidth limits, the delays have an apparent "random" component due to the complicated dynamics of the network traffic. We consider that the messages sent over the network are subjected to three types of delays: 1) propagation delays along the links; 2) delays due to bandwidth of the links; 3) "other delays" at the hosts and intermediate nodes which are randomly distributed according to unknown distributions. We propose an overlay network of in situ instruments on such a network to collect delay measurements, compute paths and route messages. We propose regression methods to compute a path whose message delay is close to the optimal expected delay with a high probability, based entirely on measurements. The delay distributions are arbitrary and this guarantee is the best kind possible for this network. We then present a simple multiple path method for achieving low end-to-end delays. This overlay network is implemented over the Internet using user-level daemons that realize paths among themselves without explicit support from the underlying network routers. Internet measurements show that this method achieves significantly higher aggregated bandwidths compared with the default paths.
机译:通过广域网传输的消息在主机和中间节点上会受到各种延迟的影响。除了带宽限制外,由于网络流量的复杂动态,延迟具有明显的“随机”成分。我们认为通过网络发送的消息会受到三种类型的延迟:1)沿链路的传播延迟; 2)由于链路带宽造成的延迟; 3)在主机和中间节点的“其他延迟”,它们根据未知分布随机分布。我们提出了在这种网络上的现场仪器覆盖网络,以收集延迟测量,计算路径和路由消息。我们提出了一种完全基于测量的回归方法,以高概率计算出一条消息延迟接近最佳预期延迟的路径。延迟分布是任意的,这种保证是该网络可能的最佳选择。然后,我们提出一种用于实现低端到端延迟的简单多路径方法。该覆盖网络是使用用户级守护程序在Internet上实现的,这些守护程序实现了它们之间的路径,而无需底层网络路由器的明确支持。互联网测量表明,与默认路径相比,此方法可实现更高的聚合带宽。

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