SustainMe if you can: Sustainable transmission networking design for Big Data

Bing Luo, William Liu, A. Al-Anbuky
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引用次数: 1

Abstract

the recent development of Information and Communications Technology (ICT) has contributed to an explosive growth of high-volume, high-velocity and high-variety information assets. Consequently, the concept of Big Data has emerged as a widely recognized trend. In order to accommodate these data-intensive services, a sustainable and resilient network infrastructure is essentially needed, as well as some mission-critical transactions are to be assured in the big data environments. However, there is an inherent contradiction involved in simultaneously accommodating both service resilience by over-provision of network resources as well as sustainable transmission by switching off the unnecessary network elements to minimize the overall energy consumption. In this paper, we propose a sustainable transmission network design (SustainMe) approach to enable the routing algorithms seeking the trade-off solutions between service resiliency and energy efficiency. The simulation results have confirmed that SustainMe approach is feasible and its derived routing algorithm for shared backup protection, i.e., SustainMe_SBP is a promising mechanism to resolve above trade-off problem. It consumes much less capacity by only sacrificing a small increase on energy expenditure comparing with other approaches.
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SustainMe if you can:大数据可持续传输网络设计
近年来信息通信技术(ICT)的发展促进了大量、高速、多品种信息资产的爆炸式增长。因此,大数据的概念已经成为一个被广泛认可的趋势。为了适应这些数据密集型服务,需要一个可持续的、有弹性的网络基础设施,以及在大数据环境中确保一些关键任务的交易。然而,通过过度提供网络资源来同时适应业务弹性,以及通过关闭不必要的网元来最小化总体能耗来实现可持续传输,这其中存在一个内在的矛盾。在本文中,我们提出了一种可持续传输网络设计(SustainMe)方法,使路由算法能够在服务弹性和能源效率之间寻求折衷解决方案。仿真结果证实了SustainMe方法的可行性,其导出的共享备份保护路由算法(即SustainMe_SBP)是解决上述权衡问题的一种很有前景的机制。与其他方法相比,它消耗的容量少得多,只牺牲了能源消耗的一小部分增加。
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