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Euclid's US Science Data Center : Lessons Learned from Building a Small Part of a Big System

机译:欧几里德的美国科学数据中心:从建立一个大系统的一小部分的经验教训

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Euclid is an ESA M-class mission to study the geometry and nature of the dark universe, slated for launch in mid-2022. NASA is participating in the mission through the contribution of the near-infrared detectors and associated electronics, the nomination of scientists for membership in the Euclid Consortium, and by establishing the Euclid NASA Science Center at IPAC (ENSCI) to support the US community. As part of ENSCI's work, we will participate in the Euclid Science Ground Segment (SGS) and build and operate the US Science Data Center (SDC-US), which will be a node in the distributed data processing system for the mission. SDC-US is one of 10 data centers, and will contribute about 5% of the computing and data storage for the distributed system. We discuss lessons learned in developing a node in a distributed system. For example, there is a significant advantage to SDC-US development in sharing of knowledge, problem solving, and resource burden with other parts of the system. On the other hand, fitting into a system that is distributed geographically and relies on diverse computing environments results in added complexity in constructing SDC-US.
机译:欧几里得是ESA M级的任务,研究宇宙黑暗的几何形状和性质,5月中旬2022将于推出。美国航空航天局参与的使命,透过近红外探测器和相关电子,科学家在欧几里得联盟成员提名的贡献,并通过建立在IPAC欧几里得NASA科学中心(ENSCI),以支持美国的社区。作为ENSCI工作的一部分,我们将参加欧几里得科学地面段(SGS)及建造和运营的美国科学数据中心(SDC-US),这将是在分布式数据的任务处理系统中的节点。 SDC-US是10个数据中心中的一个,并且将关于计算和数据存储的分布式系统的5%贡献。我们讨论了在制定分布式系统中的节点教训。例如,有一个SDC-美国发展显著的优势与系统的其他部分共享知识,解决问题的能力和资源负担。在另一方面,装修成是地理上分散和构建SDC-美国依赖于不同的计算环境导致增加的复杂性的系统。

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