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A Unified Framework for Multipath Routing for Unicast and Multicast Traffic

机译:用于单播和多播流量的多路径路由的统一框架

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We study the problem of load balancing the traffic from a set of unicast and multicast sessions. The problem is formulated as an optimization problem. However, we assume that the gradient of the network cost function is not available and needs to be estimated. Multiple paths are provided between a source and a destination using application-layer overlay. We propose a novel algorithm that is based on what is known as simultaneous perturbation stochastic approximation and utilizes only noisy measurements collected and reported to the sources, using an overlay architecture. We consider three network models that reflect different sets of assumptions regarding multicast capabilities of the network. Using an analytical model we first prove the almost sure convergence of the algorithm to a corresponding optimal solution under each network model considered in this paper with decreasing step sizes. Then, we establish the weak convergence (or convergence in distribution) with a fixed step size. In addition, we investigate the benefits acquired from implementing additional multicast capabilities by studying the relative performance of our algorithm under the three network models.
机译:我们研究了负载均衡来自一组单播和多播会话的流量的问题。该问题被表述为优化问题。但是,我们假设网络成本函数的梯度不可用,需要进行估计。使用应用程序层覆盖在源和目标之间提供了多个路径。我们提出了一种新颖的算法,该算法基于所谓的同时扰动随机逼近,并利用覆盖体系结构仅利用收集并报告给源的噪声测量值。我们考虑了三种网络模型,它们反映了有关网络多播功能的不同假设集。使用分析模型,我们首先证明了在本文考虑的每个网络模型下,随着步长的减小,算法几乎可以肯定地收敛到相应的最优解。然后,我们以固定步长建立弱收敛(或分布收敛)。此外,我们通过研究三种网络模型下算法的相对性能,研究了从实现其他多播功能中获得的收益。

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