Unavailability-Aware Backup Allocation Model for Middleboxes with Two-Stage Shared Protection

Kita Nozomi, Fujun He, E. Oki
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引用次数: 1

Abstract

Middleboxes work as software which runs on a general-purpose server by adopting a network function virtualization. The unavailability of middlebox is a key metric. The previous study considers allocating backup servers to middleboxes to reduce the unavailability. While it adopts shared protection to save backup capacity, resource sharing has not been sufficiently explored as each middlebox can only use one backup server. This paper presents a backup allocation model in which a function can be protected by two backup servers and a backup server can protect multiple functions under a shared protection strategy to minimize the maximum unavailability among functions. We use Markov chains to analyze the state transitions and make equilibrium-state equations. By solving them, we obtain the probability of each state of the allocation and compute an unavailability of function. We introduce two algorithms to examine the proposed model; one of them uses the performance bound of the maximum unavailability which is analyzed in this paper. Numerical results show that the proposed model reduces the maximum unavailability by 13.9-51.2% compared to a baseline model that allocates one backup server for each middlebox in our examined cases.
具有两阶段共享保护的中间件不可用感知备份分配模型
中间件是通过采用网络功能虚拟化在通用服务器上运行的软件。中间盒的不可用性是一个关键指标。先前的研究考虑将备份服务器分配到中间盒以减少不可用性。虽然采用了共享保护来节省备份容量,但由于每个中间盒只能使用一台备份服务器,资源共享没有得到充分的开发。本文提出了一个备份分配模型,其中一个功能可以由两个备份服务器保护,一个备份服务器可以在共享保护策略下保护多个功能,以最小化功能之间的最大不可用性。我们用马尔可夫链来分析状态转移,并建立平衡状态方程。通过求解这些问题,我们得到了分配的各个状态的概率,并计算出不可用函数。我们引入了两种算法来检验所提出的模型;其中一种方法采用了最大不可用性的性能界,本文对其进行了分析。数值结果表明,在我们所研究的案例中,与为每个中间盒分配一个备份服务器的基线模型相比,所提出的模型将最大不可用性降低了13.9-51.2%。
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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