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Combining VM Preemption Schemes to Improve Vertical Memory Elasticity Scheduling in Clouds

机译:结合VM抢占方案以改善云中的垂直内存弹性调度

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Server consolidation and resource elasticity are among two of the most important resource management features in cloud and edge computing. One of two forms of elasticity is often adopted. While horizontal elasticity is concerned with the acquisition and release of computational nodes in accordance with demand, vertical elasticity focuses on the distribution of a node's resources among its hosted virtual machines (VMs) or containers, by adjusting the capacity of the resource types allocated to each individual VM in accordance with its respective application's needs. In the case of vertical elasticity, when insufficient resources are available to allocate to a given VM, its application's performance may suffer degradation. For online applications, the only alternative is to live-migrate the VM to another server. On the other hand, when running batch jobs, the resource-constrained VM could also be suspended or saved to disk and revived elsewhere or on the same host, when resources become available. Given that memory availability has a significant influence on performance and system throughput, this paper investigates the viability of integrating VM migration, pausing and suspension schemes as part of a VM scheduling strategy to support the execution of both online and batch applications in a virtualized infrastructure employing memory elasticity. Results show that combining such schemes can provide utilization benefits for cloud service providers when memory is scarce.
机译:服务器整合和资源弹性是云计算和边缘计算中最重要的两个资源管理功能之一。通常采用两种形式的弹性之一。尽管水平弹性与根据需求来获取和释放计算节点有关,但垂直弹性关注于节点的资源在其托管虚拟机(VM)或容器之间的分配,方法是调整分配给每个节点的资源类型的容量根据其各自应用程序的需要配置单个VM。在垂直弹性的情况下,当没有足够的资源可用于分配给给定的VM时,其应用程序的性能可能会下降。对于在线应用程序,唯一的选择是将虚拟机实时迁移到另一台服务器。另一方面,在运行批处理作业时,受资源限制的VM也可以挂起或保存到磁盘,并在资源可用时在其他位置或同一主机上恢复。鉴于内存可用性对性能和系统吞吐量有重要影响,因此本文研究了将VM迁移,暂停和挂起方案集成为VM调度策略的一部分的可行性,以支持在采用虚拟化基础架构的应用程序中在线和批处理应用程序的执行记忆弹性。结果表明,在内存不足的情况下,将这些方案组合在一起可以为云服务提供商提供利用率方面的优势。

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