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An energy-saving task scheduling strategy based on vacation queuing theory in cloud computing

机译:云计算中基于休假排队理论的节能任务调度策略

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High energy consumption is one of the key issues of cloud computing systems. Incoming jobs in cloud computing environments have the nature of randomness, and compute nodes have to be powered on all the time to await incoming tasks. This results in a great waste of energy. An energy-saving task scheduling algorithm based on the vacation queuing model for cloud computing systems is proposed in this paper. First, we use the vacation queuing model with exhaustive service to model the task schedule of a heterogeneous cloud computing system. Next, based on the busy period and busy cycle under steady state, we analyze the expectations of task sojourn time and energy consumption of compute nodes in the heterogeneous cloud computing system. Subsequently, we propose a task scheduling algorithm based on similar tasks to reduce the energy consumption. Simulation results show that the proposed algorithm can reduce the energy consumption of the cloud computing system effectively while meeting the task performance.
机译:高能耗是云计算系统的关键问题之一。云计算环境中的传入作业具有随机性,必须始终打开计算节点的电源以等待传入任务。这导致大量的能量浪费。提出了一种基于休假排队模型的云计算系统节能任务调度算法。首先,我们使用带有穷举服务的休假排队模型来建模异构云计算系统的任务计划。接下来,基于稳态下的繁忙时段和繁忙周期,我们分析了异构云计算系统中任务驻留时间和计算节点能耗的期望。随后,我们提出了一种基于相似任务的任务调度算法,以减少能耗。仿真结果表明,该算法在满足任务性能的同时,可以有效降低云计算系统的能耗。

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