REARM:基于可再生能源的虚拟网络功能弹性部署

Sameer G. Kulkarni, M. Arumaithurai, K. Ramakrishnan, Xiaoming Fu
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引用次数: 2

摘要

网络功能虚拟化(NFV)在数据中心、电信和企业网络中变得越来越普遍,使得虚拟网络功能(VNFs)能够快速取代传统的基于专用硬件的中间件。确保VNFs的高可用性和容错性是满足性能和服务水平协议需求的基础。此外,随着信息和通信技术(ICT)部门,特别是数据中心的电力需求不断增加,采用可再生(绿色)资源为数据中心供电的倾向也在增加。减少碳足迹和控制能源成本一直是推动绿色能源使用的驱动因素。然而,绿色能源的供应具有间歇性和不稳定性。在这项工作中,我们研究了在绿色数据中心(GDC)中部署VNF的影响,并提出了解决VNF可靠性和高可用性的案例,以有效解决GDC的稳定性问题。在这种程度上,我们提出了REARM,它采用瞬态VNFs的概念,依赖于非常短的预警时间,将VNFs从GDC无缝迁移到更可靠和稳定的数据中心(sdc)。我们对基于容器的VNFs的实验表明,自适应状态传输机制大大减少了维护NF副本的计算和通信开销,并且30ms的警告时间足以在数据中心内对VNFs(服务1K流)进行故障转移,以确保NFV服务的高可用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
REARM: Renewable energy based resilient deployment of Virtual Network Functions
Network Function Virtualization (NFV) is becoming more prevalent in Data Center, Telecommunication and Enterprise networks, enabling the Virtual Network Functions (VNFs) to fast replace the traditional dedicated hardware based middleboxes. Ensuring high availability and fault tolerance of VNFs is cardinal to meet the performance and service level agreement requirements. Also, with the increasing electricity demands in the Information and Communications Technology (ICT) sector, especially for the data centers, the inclination towards employing renewable (green) resources to power up the data centers is also increasing. Mitigating the carbon footprint and curbing the energy costs have been the driving factors for push towards employing the green energy resources. However, the Green energy supply is rather intermittent and unstable. In this work, we study the impact of deploying VNFs in Green Data Centers (GDCs) and make a case for addressing the VNF reliability and high availability to effectively tackle the stability concerns of GDC. To this extent, we present REARM, which adopts the concept of Transient VNFs that rely on a very short advance warning time to seamlessly migrate the VNFs from GDC to a more reliable and stable Data Centers (SDCs). Our experiments with container based VNFs demonstrate that adaptive state transfer mechanism results into significant reduction in both computation and communication overheads for maintaining the NF replica, and warning time of 30ms is sufficient to failover VNFs (serving 1K flows) within a data center to ensure high availability of NFV services.
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