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Cycle time distribution and control for the Deficit Round Robin packet scheduler

机译:赤字循环分组调度程序的周期时间分配和控制

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Deficit Round Robin (DRR) is a widely implemented packet scheduling algorithm for providing throughput fairness among competing traffic flows in a router. However, its original form may yield poor response times for short-lived flows when the load is heavy. In this paper, we derive the probability distribution of the DRR cycle time, which is key to response times experienced by short-lived flows, with the aids of Renewal Theory and Central Limit Theorem. To utilize the analytical results on DRR cycle time, we then present a mechanism that adjusts the DRR service quanta offered to active traffic flows such that the DRR cycle time is contained. As a result, the response times for short-lived flows can be protected at a desired statistical level. Simulation results demonstrate the accuracy of the Gaussian DRR cycle time distribution as well as the significant improvements achieved by adjusting the quanta.
机译:赤字循环(DRR)是一种广泛实施的数据包调度算法,用于在路由器中竞争流量之间提供吞吐量公平性。但是,当负载很重时,其原始形式可能会导致短寿命流的响应时间变短。在本文中,我们借助更新理论和中心极限定理,推导了DRR循环时间的概率分布,这是短暂流动所经历的响应时间的关键。为了利用DRR周期时间的分析结果,我们然后提出一种机制,该机制可以调整提供给活动流量的DRR服务量,从而包含DRR周期时间。结果,可以将短期流的响应时间保护在所需的统计级别。仿真结果证明了高斯DRR循环时间分布的准确性,以及通过调整量子而实现的重大改进。

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