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A Distributed Flow Control with Backward Propagation: Algorithm and Preliminary Performance Evaluation

机译:向后传播的分布式流量控制:算法和初步性能评估

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Control of a large-scale network using a centralized approach is essentially difficult due to its large end-to-end delay, high heterogeneity of a large number of network components, low availability and/or reliability caused by network component failures. In this paper, we aim at realizing a control mechanism for both per-flow path selection and available bandwidth allocation using an autonomous and distributed approach. Per-flow path selection is to select multiple paths from the source node to the sink node such that the traffic demand by the source node can be transferred to the sink node as well as the total network cost can be minimized. Available bandwidth allocation is to decide the amount of bandwidth assigned to every link in the paths from the source node to the sink node, which are chosen by the perflow path selection. In this paper, we propose a distributed and scalable flow control mechanism called DFC-BP (Distributed Flow Control with Backward Propagation), which simultaneously solves per-flow path selection and available bandwidth allocation. We also investigate the effectiveness of DFC-BP in terms of efficiency and transient performance through simulation experiments.
机译:由于集中式方法的大型端到端延迟,大量网络组件的高度异构性,网络组件故障导致的低可用性和/或可靠性,因此使用集中式方法控制大型网络本质上是困难的。在本文中,我们旨在使用自主和分布式方法实现针对每流路径选择和可用带宽分配的控制机制。每流路径选择是选择从源节点到宿节点的多条路径,以便可以将源节点的流量需求转移到宿节点,并使总网络成本最小化。可用带宽分配是要确定分配给从源节点到宿节点的路径中的每个链路的带宽量,这些带宽由流路径选择来选择。在本文中,我们提出了一种称为DFC-BP(具有向后传播的分布式流控制)的分布式可扩展流控制机制,该机制同时解决了每流路径选择和可用带宽分配问题。我们还通过仿真实验研究了DFC-BP在效率和瞬态性能方面的有效性。

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