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Energy-efficient virtual content distribution network provisioning in cloud-based data centers

机译:基于云的数据中心中的高能效虚拟内容分发网络配置

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Cloud-based content distribution networks (CDNs) consist of multiple servers that consume large amounts of energy. However, with the development of a cloud-based software defined network (SDN), a new paradigm of the virtual content distribution network (vCDN) has emerged. In an emerging cloud-based vCDN environment, the development and adjustment of vCDN components has become easier with the aid of SDN technology. This transformation provides the opportunity to use vCDNs to reduce energy consumption by adjusting the scale of the vCDN components. Energy costs can be reduced by deactivating the commercial servers carrying the software components of the vCDN, such as replica servers, the firewall or routers. In addition, the CDN requires a high service level agreement (SLA) to respond to clients’ requests, potentially consuming large amounts of energy. In this research, we focus on the issue of the energy savings of a CDN in a cloud computing environment while maintaining a high quality of service (QoS). We propose an approximate algorithm termed max flow forecast (MFF) to determine the number of software components in the vCDN. Additionally, we use a real traffic trace from a website to assess our algorithm. The experimental results show that MFF can produce a larger energy reduction than the existing algorithms for an identical SLA. We fully justify our research as a good example for the emerging cloud.
机译:基于云的内容分发网络(CDN)由消耗大量能量的多个服务器组成。但是,随着基于云的软件定义网络(SDN)的发展,出现了虚拟内容分发网络(vCDN)的新范例。在新兴的基于云的vCDN环境中,借助SDN技术,vCDN组件的开发和调整变得更加容易。这种转变提供了使用vCDN的机会,可通过调整vCDN组件的规模来减少能耗。通过停用带有vCDN软件组件的商用服务器(例如副本服务器,防火墙或路由器),可以降低能源成本。另外,CDN需要高服务水平协议(SLA)来响应客户的请求,这可能会消耗大量能量。在这项研究中,我们重点关注在云计算环境中CDN的节能问题,同时保持高服务质量(QoS)。我们提出一种称为最大流量预测(MFF)的近似算法,以确定vCDN中的软件组件数量。此外,我们使用来自网站的真实流量跟踪来评估我们的算法。实验结果表明,对于相同的SLA,MFF可以比现有算法产生更大的能耗。我们充分证明我们的研究是新兴云的一个很好的例子。

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