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Cost optimized provisioning of elastic resources for application workflows

机译:为应用程序工作流程进行成本优化的弹性资源配置

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Workflow technologies have become a major vehicle for easy and efficient development of scientific applications. In the meantime, state-of-the-art resource provisioning technologies such as cloud computing enable users to acquire computing resources dynamically and elastically. A critical challenge in integrating workflow technologies with resource provisioning technologies is to determine the right amount of resources required for the execution of workflows in order to minimize the financial cost from the perspective of users and to maximize the resource utilization from the perspective of resource providers. This paper suggests an architecture for the automatic execution of large-scale workflow-based applications on dynamically and elastically provisioned computing resources. Especially, we focus on its core algorithm named PBTS (Partitioned Balanced Time Scheduling), which estimates the minimum number of computing hosts required to execute a workflow within a user-specified finish time. The PBTS algorithm is designed to fit both elastic resource provisioning models such as Amazon EC2 and malleable parallel application models such as MapReduce. The experimental results with a number of synthetic workflows and several real science workflows demonstrate that PBTS estimates the resource capacity close to the theoretical low bound.
机译:工作流技术已经成为轻松,高效地开发科学应用程序的主要工具。同时,最新的资源供应技术(例如云计算)使用户能够动态而灵活地获取计算资源。将工作流技术与资源供应技术集成在一起的一个关键挑战是确定执行工作流所需的正确资源量,以便从用户角度使财务成本最小化,从资源提供者角度使资源利用率最大化。本文提出了一种在动态和弹性供应的计算资源上自动执行基于大规模工作流的应用程序的体系结构。尤其是,我们专注于其名为PBTS(分区平衡时间调度)的核心算法,该算法估计在用户指定的完成时间内执行工作流所需的最少计算主机数。 PBTS算法被设计为既适合于弹性资源供应模型(例如Amazon EC2)又适合可延展的并行应用程序模型(例如MapReduce)。通过大量合成工作流和若干实际科学工作流的实验结果表明,PBTS估计资源容量接近理论下限。

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