Offline Scheduling Schemes to Transfer Voluminous Deadline Complying Data in Elastic Optical Networks

Sridhar Lyer, Shree Prakash Singh
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引用次数: 2

Abstract

For serving traffic in the inter data centers which provide services such as, duplication of data and migration of the virtual machines, it is requisited to transfer voluminous data for which, under guarantee of a finishing time within the stipulated (i.e., pre-set) deadline, specific latency is tolerable. In the current work, we propose offline routing and spectrum assignment (RSA) schemes in view of the transfer of deadline complying voluminous data demands in elastic optical networks. The proposed schemes, which jointly optimize time and frequency domains, are initially formulated as an integer linear program (ILP). Subsequently, in view of practicality, we propose scalable scheduling techniques which combine three methods of ordering demands, and two schemes of RSA. To evaluate the proposed ILP model and the scheduling methods, we conduct simulations considering realistic network parameters and topologies. The obtained results demonstrate that in comparison to ILP model, scalable methods obtain similar spectrum usage performance within reasonable times. Lastly, based on the results, we also provide a ‘rule-of-thumb’ on the selection of appropriate scheduling technique.
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弹性光网络中海量符合时限数据的离线调度方案
对于提供数据复制和虚拟机迁移等服务的数据中心间的服务流量,需要传输大量的数据,在保证在规定(即预先设定的)截止日期内完成的情况下,特定的延迟是可以容忍的。在目前的工作中,我们提出了离线路由和频谱分配(RSA)方案,以满足弹性光网络中最后期限的大量数据需求的传输。所提出的方案,联合优化时域和频域,最初表示为整数线性规划(ILP)。随后,考虑到实用性,我们提出了结合三种排序需求方法和两种RSA方案的可扩展调度技术。为了评估所提出的ILP模型和调度方法,我们考虑了现实的网络参数和拓扑进行了仿真。结果表明,与ILP模型相比,可扩展方法在合理的时间内获得了相似的频谱使用性能。最后,基于结果,我们还提供了选择合适调度技术的“经验法则”。
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