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Time scale analysis and scalability issues for explicit rate allocation in ATM networks

机译:ATM网络中明确的速率分配的时标分析和可伸缩性问题

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End-to-end rate based congestion management has been extensively studied for control of computer communication networks. We examine some of the properties of end-to-end rate based algorithms for congestion management using explicit rate feedback, to achieve maxmin fair rate allocation in the network. We formulate a requirement on a switch's local rate allocation computation sufficient to ensure convergence of the distributed algorithm to the global maxmin fair rate allocation. We provide an upper bound on the convergence time when the switch algorithm satisfies this requirement. We propose a requirement of feasibility of the transmission rates, maintaining which results in oscillation-free operation of the algorithm while maintaining small queues at the switches. Feasibility implies that the capacity of any of the resources is not exceeded at any time. We suggest a source policy to ensure feasibility of transmission rates, the essence of which is to delay a rate increase by a certain time, while decreasing the transmission rate immediately upon receiving the appropriate feedback. Finally, we seek ways of improving scalability of the computation of maxmin fair rates in the presence of a large number of flows. We suggest using a discrete set of rates, which as we show, reduces the computational complexity and the state requirement at the switches.
机译:基于端到端速率的拥塞管理已被广泛研究以控制计算机通信网络。我们使用显式速率反馈来检查基于端到端速率的拥塞管理算法的一些属性,以实现网络中的最大最小公平速率分配。我们对交换机的本地速率分配计算提出了一个要求,该要求足以确保将分布式算法收敛到全局最大最小公平速率分配。当切换算法满足此要求时,我们提供了收敛时间的上限。我们提出了传输速率的可行性要求,保持该速率将导致算法无振荡运行,同时在交换机上保持较小的队列。可行性意味着任何时候都不会超出任何资源的容量。我们建议一种源策略,以确保传输速率的可行性,其实质是将速率增加延迟一定时间,同时在收到适当的反馈后立即降低传输速率。最后,我们寻求在存在大量流的情况下提高maxmin公平率计算的可伸缩性的方法。我们建议使用离散速率集,如我们所示,它可以降低计算复杂度和交换机的状态要求。

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