时变网络中的时延:服务速率方差越大是否意味着时延越大?

Sébastien Henri, S. Shneer, Patrick Thiran
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引用次数: 2

摘要

在所有网络中,链路或路由容量因多种原因而波动,例如,无线信道的衰落和多径影响、共享介质上的干扰和用户竞争、广域网路由器的负载变化、电力线信道的阻抗变化。这些波动严重影响数据包延迟。本文主要研究时变网络中的时延问题。直观地,我们期望对于给定的平均服务率,增加的服务率可变性会产生更大的延迟。我们发现情况并非总是如此。使用包含时变服务率的排队模型,我们证明了对于一定的到达率,具有较大服务率方差的队列比具有相同平均服务率和较小服务率方差的队列提供更小的平均延迟。我们还在无线测试台上验证了这些发现。然后,我们研究了同时使用两条独立路径有助于延迟的条件,例如,在混合网络中,两条路径使用不同的物理层技术。我们表明,使用两条路径并不总是更好,特别是在低到达率的情况下。我们还证明了两条路径之间的最优流量分配取决于到达率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Delays in Time-Varying Networks: Does Larger Service-Rate Variance Imply Larger Delays?
In all networks, link or route capacities fluctuate for multiple reasons, e.g., fading and multi-path effects on wireless channels, interference and contending users on a shared medium, varying loads in WAN routers, impedance changes on power-line channels. These fluctuations severely impact packet delays. In this paper, we study delays in time-varying networks. Intuitively, we expect that for a given average service rate, an increased service rate variability yields larger delays. We find that this is not always the case. Using a queuing model that includes time-varying service rates, we show that for certain arrival rates, a queue with larger service rate variance offers smaller average delays than a queue with the same average service rate and lower service rate variance. We also verify these findings on a wireless testbed. We then study the conditions under which using simultaneously two independent paths helps in terms of delays, for example, in hybrid networks where the two paths use different physical layer technologies. We show that using two paths is not always better, in particular for low arrival rates. We also show that the optimal traffic splitting between the two paths depends on the arrival rate.
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