试图跟上技术的科学工作流程中的比特和瓶颈的演变:加速应用于NASA数据的4D图像分割

S. Sellars, John Graham, D. Mishin, Kyle Marcus, I. Altintas, T. DeFanti, L. Smarr, Camille Crittenden, F. Wuerthwein, Joulien Tatar, P. Nguyen, E. Shearer, S. Sorooshian, F. M. Ralph
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引用次数: 1

摘要

2016年,一个地球科学家团队直接与一个计算机科学家团队合作,以确定可以加快地球科学工作流程的网络基础设施(CI)方法。本文描述了这两个团队将CI和图像分割算法结合起来进行大规模地球科学研究的过程。利用太平洋研究平台(PRP)和认知软硬件生态系统社区基础设施(CHASE-CI)资源,将地球科学工作流程的时钟时间从19.5天显著缩短至53分钟。时钟时间的改进来自网络设备的使用、图像分割的改进、容器化工作流的部署,以及CI经验的增加和对地球科学家的培训。本文描述了用于改进工作流的不断发展的创新,每个工作流版本中确定的瓶颈,以及在三年时间内每个工作流版本中所做的改进。
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The Evolution of Bits and Bottlenecks in a Scientific Workflow Trying to Keep Up with Technology: Accelerating 4D Image Segmentation Applied to NASA Data
In 2016, a team of earth scientists directly engaged a team of computer scientists to identify cyberinfrastructure (CI) approaches that would speed up an earth science workflow. This paper describes the evolution of that workflow as the two teams bridged CI and an image segmentation algorithm to do large scale earth science research. The Pacific Research Platform (PRP) and The Cognitive Hardware and Software Ecosystem Community Infrastructure (CHASE-CI) resources were used to significantly decreased the earth science workflow's wall-clock time from 19.5 days to 53 minutes. The improvement in wall-clock time comes from the use of network appliances, improved image segmentation, deployment of a containerized workflow, and the increase in CI experience and training for the earth scientists. This paper presents a description of the evolving innovations used to improve the workflow, bottlenecks identified within each workflow version, and improvements made within each version of the workflow, over a three-year time period.
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