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Dynamic Workflow Adaptation over Adaptive Infrastructures

机译:自适应基础架构上的动态工作流适应

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There is emerging interest in many scientific disciplines to deal with "dynamic" data, arising from sensors and scientific instruments, which require workflow graphs that can be dynamically adapted - as new data becomes available. Additionally, the elastic nature of many Cloud environments subsequently enable such dynamic workflow graphs to be enacted more efficiently. One of the challenges of scientific workflows is that they must be designed with the needed level of dynamism to take account of the availability of data and the variability of the execution environment, which can be dynamically scaled out based on demand (and budget). In this paper, we present a novel approach for specifying scientific workflows with the two main requirements of: (ⅰ) dynamic / adaptive workflow structure well suited for and responsive to change, and (ⅱ) support for large-scale and variable parallelism. We utilise the superscalar pipeline as a model of computation and the well-known Montage workflow for illustrating our approach.
机译:随着传感器和科学仪器的兴起,许多科学领域都对处理“动态”数据产生了兴趣,这些数据需要可动态调整的工作流图-随着新数据的获得。此外,许多云环境的弹性特性随后使这种动态工作流图得以更有效地制定。科学工作流的挑战之一是必须对它们进行设计,使其具有所需的动态性,以考虑数据的可用性和执行环境的可变性,这些可变性可以根据需求(和预算)动态扩展。在本文中,我们提出了一种用于指定科学工作流程的新颖方法,其主要要求有两个:(ⅰ)动态/自适应工作流程结构,非常适合并响应变化;(ⅱ)支持大规模和可变并行性。我们利用超标量流水线作为计算模型,并利用著名的Montage工作流来说明我们的方法。

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