Scheduling to Minimize theWorst-Case Loss Rate

Mahmoud Elhaddad, H. Iqbal, T. Znati, R. Melhem
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Abstract

We study link scheduling in networks with small router buffers, with the goal of minimizing the guaranteed packet loss rate bound for each ingress-egress traffic aggregate (connection). Given a link scheduling algorithm (a service discipline and a packet drop policy), the guaranteed loss rate for a connection is the loss rate under worst-case routing and bandwidth allocations for competing traffic. Under simplifying assumptions, we show that a local min-max fairness property with respect to apportioning loss events among the connections sharing each link, and a condition on the correlation of scheduling decisions at different links are two necessary and (together) sufficient conditions for optimality in the minimization problem. Based on these conditions, we introduce a randomized link-scheduling algorithm called rolling priority where packet scheduling at each link relies exclusively on local information. We show that RP satisfies both conditions and is therefore optimal.
最小化最坏情况损失率的调度
我们研究了具有小路由器缓冲区的网络中的链路调度,目标是最小化每个进出流量聚合(连接)的保证丢包率绑定。给定一个链路调度算法(一个服务规则和一个丢包策略),保证的连接损失率是在最坏情况下路由和竞争流量的带宽分配下的损失率。在简化的假设条件下,我们证明了在共享每个链路的连接之间分配损失事件的局部最小最大公平性,以及不同链路上调度决策的相关性条件是最小化问题中最优性的两个必要和充分条件。基于这些条件,我们引入了一种称为滚动优先级的随机链路调度算法,其中每个链路的分组调度完全依赖于本地信息。我们证明RP满足这两个条件,因此是最优的。
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