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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Distributed Caching Algorithms for Interconnected Operator CDNs
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Distributed Caching Algorithms for Interconnected Operator CDNs

机译:互连运营商CDN的分布式缓存算法

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摘要

Fixed and mobile network operators increasingly deploy managed content distribution networks (CDNs) with the objective of reducing the traffic on their transit links and to improve their customers' quality of experience. As network operator managed CDNs (nCDNs) become commonplace, operators will likely provide common interfaces to interconnect their nCDNs for mutual benefit, as they do with peering today. In this paper, we consider the problem of using distributed algorithms for computing a cache allocation for nCDNs. We show that if every network operator aims to minimize its cost and bilateral payments are not allowed, then it may be impossible to compute a cache allocation. For the case when bilateral payments are possible, we propose two distributed algorithms, the aggregate value compensation and the object value compensation algorithms, which differ in terms of the level of parallelism they allow and in terms of the amount of information exchanged between nCDNs. We prove that the algorithms converge, and we propose a scheme to ensure ex-post individual rationality. Simulations performed on a real autonomous system-level network topology and synthetic topologies show that the algorithms have geometric rate of convergence, and scale well with the graphs' density and the nCDN capacity.
机译:固定和移动网络运营商越来越多地部署托管内容分发网络(CDN),以减少其传输链路上的流量并提高客户的体验质量。随着网络运营商管理的CDN(nCDN)变得司空见惯,运营商将可能提供通用接口来互连其nCDN,以实现互惠互利,就像今天与对等网络一样。在本文中,我们考虑了使用分布式算法计算nCDN的缓存分配的问题。我们表明,如果每个网络运营商都希望将其成本降到最低,并且不允许双边支付,那么可能就不可能计算缓存分配。对于可能进行双边支付的情况,我们提出了两种分布式算法,即总价值补偿和客体价值补偿算法,它们在允许的并行度和nCDN之间交换的信息量方面有所不同。我们证明了算法的收敛性,并提出了一种确保事后个人合理性的方案。在真实的自治系统级网络拓扑和合成拓扑上进行的仿真表明,该算法具有几何收敛速度,并且可以随着图的密度和nCDN容量而很好地缩放。

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