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Workload-Based Software Rejuvenation in Cloud Systems

机译:云系统中基于工作负载的软件复兴

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摘要

Cloud computing is a promising paradigm able to rationalize the use of hardware resources by means of virtualization. Virtualization allows to instantiate one or more virtual machines (VMs) on top of a single physical machine managed by a virtual machine monitor (VMM). Similarly to any other software, a VMM experiences aging and failures. Software rejuvenation is a proactive fault management technique that involves terminating an application, cleaning up the system internal state, and restarting it to prevent the occurrence of future failures. In this work, we propose a technique to model and evaluate the VMM aging process and to investigate the optimal rejuvenation policy that maximizes the VMM availability under variable workload conditions. Starting from dynamic reliability theory and adopting symbolic algebraic techniques, we investigate and compare existing time-based VMM rejuvenation policies. We also propose a time-based policy that adapts the rejuvenation timer to the VMM workload condition improving the system availability. The effectiveness of the proposed modeling technique is demonstrated through a numerical example based on a case study taken from the literature.
机译:云计算是一种有前途的范例,能够通过虚拟化合理化硬件资源的使用。虚拟化允许在由虚拟机监视器(VMM)管理的单个物理机上实例化一个或多个虚拟机(VM)。与任何其他软件相似,VMM会经历老化和故障。软件复兴是一种主动的故障管理技术,涉及终止应用程序,清理系统内部状态并重新启动它以防止将来发生故障。在这项工作中,我们提出了一种技术来建模和评估VMM老化过程,并研究在可变工作负载条件下最大化VMM可用性的最佳复兴策略。从动态可靠性理论开始,采用符号代数技术,我们研究并比较了现有的基于时间的VMM复兴策略。我们还提出了一种基于时间的策略,该策略可以使更新计时器适应VMM工作负载条件,从而提高系统可用性。通过一个基于来自文献的案例研究的数值示例,证明了所提出的建模技术的有效性。

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