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FESTAL: Fault-Tolerant Elastic Scheduling Algorithm for Real-Time Tasks in Virtualized Clouds

机译:FESTAL:用于虚拟化云中实时任务的容错弹性调度算法

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As clouds have been deployed widely in various fields, the reliability and availability of clouds become the major concern of cloud service providers and users. Thereby, fault tolerance in clouds receives a great deal of attention in both industry and academia, especially for real-time applications due to their safety critical nature. Large amounts of researches have been conducted to realize fault tolerance in distributed systems, among which fault-tolerant scheduling plays a significant role. However, few researches on the fault-tolerant scheduling study the virtualization and the elasticity, two key features of clouds, sufficiently. To address this issue, this paper presents a fault-tolerant mechanism which extends the primary-backup model to incorporate the features of clouds. Meanwhile, for the first time, we propose an elastic resource provisioning mechanism in the fault-tolerant context to improve the resource utilization. On the basis of the fault-tolerant mechanism and the elastic resource provisioning mechanism, we design novel ault-tolerant lastic cheduling algorithms for real-time sks in couds named FESTAL, aiming at achieving both fault tolerance and high resource utilization in clouds. Extensive experiments injecting with random synthetic workloads as well as the workload from the latest version of the Google cloud tracelogs are conducted by CloudSim to compare FESTAL with three baseline algorithms, i.e., on- igration-FESTAL (NMFESTAL), on-verlapping-FESTAL (NOFESTAL), and lastic irst it (EFF). The experimental results demonstrate that FESTAL is able to effectively enhance the performance of virtualized clouds.
机译:随着云已经广泛部署在各个领域中,云的可靠性和可用性成为云服务提供商和用户的主要关注点。因此,由于云的容错性具有安全性,因此在工业界和学术界都受到了广泛的关注,特别是对于实时应用而言。为了实现分布式系统中的容错,已经进行了大量的研究,其中容错调度起着重要的作用。但是,很少有关于容错调度的研究充分地研究了云的两个关键特性虚拟化和弹性。为了解决这个问题,本文提出了一种容错机制,该机制扩展了主备份模型以合并云的功能。同时,我们首次在容错环境中提出了一种弹性资源供应机制,以提高资源利用率。在容错机制和弹性资源供应机制的基础上,设计了一种新颖的容错弹性调度算法,用于FESTAL队列中的实时sk,旨在实现云的容错和高资源利用率。 CloudSim进行了广泛的实验,注入了随机的合成工作负载以及最新版本的Google Cloud跟踪日志中的工作负载,以将FESTAL与三种基准算法进行比较,即onigration-FESTAL(NMFESTAL),on-verfapping-FESTAL( NOFESTAL)和弹性刺激(EFF)。实验结果表明,FESTAL能够有效地增强虚拟化云的性能。

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