通过SaaS云中的故障和工作负载感知负载平衡来减少服务故障

A. Roy, R. Ganesan, D. Dash, S. Sarkar
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引用次数: 9

摘要

SLA违反通常被视为服务失败。如果服务失败一次,除非采取补救措施,否则它将再次失败。在虚拟化环境中,常见的补救措施是重启或重新启动虚拟机(VM)。在本文中,我们提出了一种VM实时迁移策略,该策略可以识别SLA阈值违反工作负载响应时间、物理机(PM)和VM利用率以及PM和VM上的可用性违反。在迁移策略中,我们考虑到PM故障和VM(软件)故障以及工作负载特性,例如突发(变异系数或CoV >1),这要求在迁移这些工作负载时选择目标PM时要谨慎。当虚拟机所在的物理机的利用率接近阈值时,建议的策略也会考虑虚拟机的迁移。我们提出了一种算法,可以检测补救行动的主动触发器,选择VM(用于迁移),并建议可能的目标PM。我们通过对相关案例研究的离散事件模拟,绘制了使用我们的方法的系统中SLA违规数量的减少,而现有的方法不会触发迁移以响应与不可用性相关的SLA违规,从而展示了我们提出的方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reducing service failures by failure and workload aware load balancing in SaaS clouds
SLA violations are typically viewed as service failures. If service fails once, it will fail again unless remedial action is taken. In a virtualized environment, a common remedial action is to restart or reboot a virtual machine (VM). In this paper we present, a VM live-migration policy that is aware of SLA threshold violations of workload response time, physical machine (PM) and VM utilization as well as availability violations at the PM and VM. In the migration policy we take into account PM failures and VM (software) failures as well as workload features such as burstiness (coefficient of variation or CoV >1) which calls for caution during the selection of target PM when migrating these workloads. The proposed policy also considers migration of a VM when the utilization of the physical machine hosting the VM approaches its utilization threshold. We propose an algorithm that detects proactive triggers for remedial action, selects a VM (for migration) and also suggests a possible target PM. We show the efficacy of our proposed approach by plotting the decrease in the number of SLA violations in a system using our approach over existing approaches that do not trigger migration in response to non-availability related SLA violations, via discrete event simulation of a relevant case study.
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