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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Admission control in data transfers over lightpaths
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Admission control in data transfers over lightpaths

机译:通过光路进行数据传输中的准入控制

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摘要

The availability of optical network infrastructure and appropriate user control software has recently made it possible for scientists to establish end-to-end circuits across multiple management domains in support of large data transfers. These high-performance data paths are typically provisioned over 10 Gigabit optical links, and accessed using ethernet encapsulation at Gigabit and 10 Gigabit rates. The resulting mixture of circuit sizes gives rise to resource conflicts whereby requests to allocate bandwidth partitions are blocked despite vast underutilization of the optical link. In an attempt to remedy this problem, we investigate intelligent admission control policies that consider the long-term effects of admission decisions. Using analytic techniques we show that the greedy policy, which accepts requests to allocate bandwidth partitions whenever sufficient bandwidth exists, is suboptimal in a pertinent scenario. We then consider dynamic online computation of the optimal admission control policy and show that the acceptance ratio of requests to establish end-to-end circuits can be improved by up to 19% on a fifteen-node network where the behaviour of each link is governed by a local optimization effort.
机译:光学网络基础设施和适当的用户控制软件的可用性,最近使科学家能够跨多个管理域建立端到端电路,以支持大数据传输。这些高性能数据路径通常通过10千兆位光纤链路进行配置,并使用千兆位和10千兆位速率的以太网封装进行访问。电路尺寸的混合导致资源冲突,尽管光链路利用率不高,但分配带宽分区的请求仍被阻止。为了解决此问题,我们研究了考虑录取决策的长期影响的智能录取控制策略。使用分析技术,我们表明,贪婪策略在相关情况下次优,该策略在存在足够带宽时接受分配带宽分区的请求。然后,我们考虑最优准入控制策略的动态在线计算,并证明在控制每个链接行为的十五节点网络上,建立端到端电路的请求的接受率可以提高多达19%通过局部优化工作。

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