首页> 外文期刊>Bulletin of the American Meteorological Society >S4: AN O2R/R2O INFRASTRUCTURE FOR OPTIMIZING SATELLITE DATA UTILIZATION IN NOAA NUMERICAL MODELING SYSTEMS A Step Toward Bridging the Gap between Research and Operations
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S4: AN O2R/R2O INFRASTRUCTURE FOR OPTIMIZING SATELLITE DATA UTILIZATION IN NOAA NUMERICAL MODELING SYSTEMS A Step Toward Bridging the Gap between Research and Operations

机译:S4:用于优化NOAA数值建模系统中卫星数据利用率的O2R / R2O基础结构缩小研究与运营之间差距的一步

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In 2011, the National Oceanic and Atmospheric Administration (NOAA) began a cooperative initiative with the academic community to help address a vexing issue that has long been known as a disconnection between the operational and research realms for weather forecasting and data assimilation. The issue is the gap, more exotically referred to as the "valley of death," between efforts within the broader research community and NOAA's activities, which are heavily driven by operational constraints. With the stated goals of leveraging research community efforts to benefit NOAA's mission and offering a path to operations for the latest research activities that support the NOAA mission, satellite data assimilation in particular, this initiative aims to enhance the linkage between NOAA's operational systems and the research efforts. A critical component is the establishment of an efficient operations-to-research (O2R) environment on the Supercomputer for Satellite Simulations and Data Assimilation Studies (S4). This O2R environment is critical for successful research to-operations (R2O) transitions because it allows rigorous tracking, implementation, and merging of any changes necessary (to operational software codes, scripts, libraries, etc.) to achieve the scientific enhancement. So far, the S4 O2R environment, with close to 4,700 computing cores (60 TFLOPs) and 1,700-TB disk storage capacity, has been a great success and consequently was recently expanded to significantly increase its computing capacity. The objective of this article is to highlight some of the major achievements and benefits of this O2R approach and some lessons learned, with the ultimate goal of inspiring other O2R/R2O initiatives in other areas and for other applications.
机译:2011年,美国国家海洋与大气管理局(NOAA)与学术界发起了一项合作计划,以帮助解决一个令人困扰的问题,长期以来,人们一直将其称为天气预报和数据同化的业务和研究领域之间的脱节。问题在于,更广泛的研究领域内的努力与NOAA的活动之间的差距(通常被称为“死亡谷”)受到了运营限制的严重推动。既定目标是利用研究界的努力使NOAA的任务受益,并为支持NOAA任务的最新研究活动(尤其是卫星数据同化)提供运行路径,该计划旨在加强NOAA的操作系统与研究之间的联系。努力。一个关键组成部分是在超级计算机上建立高效的研究运行(O2R)环境,以进行卫星仿真和数据同化研究(S4)。这种O2R环境对于成功进行研究到运营(R2O)的转换至关重要,因为它可以严格跟踪,实施和合并任何必要的更改(对操作软件代码,脚本,库等),以实现科学增强。到目前为止,S4 O2R环境已经拥有近4,700个计算核心(60个TFLOP)和1,700 TB磁盘存储容量,并取得了巨大的成功,因此最近进行了扩展以显着提高其计算容量。本文的目的是强调此O2R方法的一些主要成就和好处以及一些经验教训,其最终目标是启发其他领域和其他应用程序中的其他O2R / R2O计划。

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