Accelerating imaging research at large-scale scientific facilities through scientific computing.

IF 2.5 3区 物理与天体物理
Journal of Synchrotron Radiation Pub Date : 2024-09-01 Epub Date: 2024-08-27 DOI:10.1107/S1600577524007239
Chunpeng Wang, Xiaoyun Li, Rongzheng Wan, Jige Chen, Jing Ye, Ke Li, Aiguo Li, Renzhong Tai, Alessandro Sepe
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引用次数: 0

Abstract

To date, computed tomography experiments, carried-out at synchrotron radiation facilities worldwide, pose a tremendous challenge in terms of the breadth and complexity of the experimental datasets produced. Furthermore, near real-time three-dimensional reconstruction capabilities are becoming a crucial requirement in order to perform high-quality and result-informed synchrotron imaging experiments, where a large amount of data is collected and processed within a short time window. To address these challenges, we have developed and deployed a synchrotron computed tomography framework designed to automatically process online the experimental data from the synchrotron imaging beamlines, while leveraging the high-performance computing cluster capabilities to accelerate the real-time feedback to the users on their experimental results. We have, further, integrated it within a modern unified national authentication and data management framework, which we have developed and deployed, spanning the entire data lifecycle of a large-scale scientific facility. In this study, the overall architecture, functional modules and workflow design of our synchrotron computed tomography framework are presented in detail. Moreover, the successful integration of the imaging beamlines at the Shanghai Synchrotron Radiation Facility into our scientific computing framework is also detailed, which, ultimately, resulted in accelerating and fully automating their entire data processing pipelines. In fact, when compared with the original three-dimensional tomography reconstruction approaches, the implementation of our synchrotron computed tomography framework led to an acceleration in the experimental data processing capabilities, while maintaining a high level of integration with all the beamline processing software and systems.

通过科学计算加速大型科学设施的成像研究。
迄今为止,在全球同步辐射设施中进行的计算机断层扫描实验在实验数据集的广度和复杂性方面提出了巨大挑战。此外,在短时间内收集和处理大量数据的同步辐射成像实验中,近乎实时的三维重建能力正成为执行高质量和结果可靠的同步辐射成像实验的关键要求。为了应对这些挑战,我们开发并部署了一个同步辐射计算机断层扫描框架,旨在自动在线处理来自同步辐射成像光束线的实验数据,同时利用高性能计算集群的能力,加速向用户实时反馈实验结果。此外,我们还将其集成到一个现代化的统一国家认证和数据管理框架中,该框架是我们开发和部署的,横跨大型科学设施的整个数据生命周期。本研究详细介绍了同步辐射计算机断层扫描框架的整体架构、功能模块和工作流程设计。此外,还详细介绍了上海同步辐射设施成像光束线与我们的科学计算框架的成功集成,最终实现了其整个数据处理管道的加速和完全自动化。事实上,与最初的三维断层成像重建方法相比,我们的同步辐射计算机断层扫描框架在保持与所有光束线处理软件和系统高度集成的同时,加速了实验数据处理能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Synchrotron Radiation
Journal of Synchrotron Radiation INSTRUMENTS & INSTRUMENTATIONOPTICS&-OPTICS
CiteScore
5.60
自引率
12.00%
发文量
289
审稿时长
1 months
期刊介绍: Synchrotron radiation research is rapidly expanding with many new sources of radiation being created globally. Synchrotron radiation plays a leading role in pure science and in emerging technologies. The Journal of Synchrotron Radiation provides comprehensive coverage of the entire field of synchrotron radiation and free-electron laser research including instrumentation, theory, computing and scientific applications in areas such as biology, nanoscience and materials science. Rapid publication ensures an up-to-date information resource for scientists and engineers in the field.
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