An optimised dynamic resource allocation algorithm for Cloud's backbone network

Ilhem Fajjari, N. Aitsaadi, G. Pujolle, H. Zimmermann
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引用次数: 6

Abstract

Sky computing is a promising concept enabling a flexible deployment of geographical distributed applications. Whereas, it is faced with a fundamental challenge which is: “efficient resource utilisation” within Cloud's infrastructure. Hence, a high flexible and intelligent resource allocation scheme is necessary to accommodate unpredictable and variable users demands. This paper tackles the fundamental challenge of efficient resource allocation within Cloud's backbone network. The ultimate goal is to satisfy the Cloud's user requirements while maximising Cloud provider's revenue. The problem consists in embedding virtual networks within substrate infrastructure. A new dynamic adaptive virtual network resource allocation strategy named Backtracking-VNE is investigated to deal with the complexity of resource provisioning within Cloud network. The proposal coordinates virtual nodes and virtual links mapping stages to optimise resources usage. Moreover, thanks to forecasting module, Backtracking-VNE guarantees an efficient resources share between embedded virtual links with respect to their occupancy. We demonstrate through extensive simulations that contrarily to static bandwidth allocation approaches, Backtracking-VNE enhances substrate bandwidth usage whilst minimising virtual links congestion. Acceptance rate of virtual networks and Cloud providers income are also improved compared with related strategies.
一种优化的云骨干网络动态资源分配算法
天空计算是一个很有前途的概念,它支持灵活地部署地理分布式应用程序。然而,它面临着一个根本性的挑战,那就是:云基础设施内的“有效资源利用”。因此,需要一个高度灵活和智能的资源分配方案来适应不可预测和多变的用户需求。本文解决了云计算骨干网中资源有效分配的基本问题。最终目标是满足云的用户需求,同时最大化云提供商的收入。问题在于在底层基础设施中嵌入虚拟网络。针对云网络中资源配置的复杂性,研究了一种新的动态自适应虚拟网络资源分配策略——回溯- vne。该方案协调虚拟节点和虚拟链路映射阶段,以优化资源使用。此外,由于预测模块,回溯- vne保证了嵌入式虚拟链路之间有效的资源共享。我们通过广泛的模拟证明,与静态带宽分配方法相反,回溯- vne增强了基板带宽使用,同时最大限度地减少了虚拟链路拥塞。与相关策略相比,虚拟网络的接受率和云提供商的收入也有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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