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Cloud Services on an Astronomy Data Center

机译:天文数据中心上的云服务

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The research on computational methods for astronomy performed by the first phase of the Chilean Virtual Observatory (ChiVO) led to the development of functional prototypes, implementing state-of-the-art computational methods and proposing new algorithms and techniques. The ChiVO software architecture is based on the use of the IVOA protocols and standards. These protocols and standards are grouped in layers, with emphasis on the application and data layers, because their basic standards define the minimum operation that a VO should conduct. As momentary verification, the current implementation works with a set of data, with 1 TB capacity, which comes from the reduction of the cycle 0 of ALMA. This research was mainly focused on spectroscopic data cubes coming from the cycle 0 ALMA's public data. As the dataset size increases when the cycle 1 ALMA's public data is also increasing every month, data processing is becoming a major bottleneck for scientific research in astronomy. When designing the ChiVO, we focused on improving both computation and I/ O costs, and this led us to configure a data center with 424 high speed cores of 2,6 GHz, 1 PB of storage (distributed in hard disk drives-HDD and solid state drive-SSD) and high speed communication Infiniband. We are developing a cloud based e-infrastructure for ChiVO services, in order to have a coherent framework for developing novel webservices for on-line data processing in the ChiVO. We are currently parallelizing these new algorithms and techniques using HPC tools to speed up big data processing, and we will report our results in terms of data size, data distribution, number of cores and response time, in order to compare different processing and storage configurations.
机译:智利虚拟天文台(ChiVO)第一阶段进行的天文学计算方法研究导致功能原型的开发,实现了最新的计算方法并提出了新的算法和技术。 ChiVO软件体系结构基于IVOA协议和标准的使用。这些协议和标准分为几层,重点放在应用程序和数据层,因为它们的基本标准定义了VO应该执行的最小操作。作为临时验证,当前的实现方式使用一组具有1 TB容量的数据,这是因为ALMA的周期0减少了。这项研究主要集中在来自ALMA周期0的公共数据的光谱数据立方体。随着第1周期ALMA的公共数据每个月都在增加时,数据集的大小也随之增加,数据处理已成为天文学科学研究的主要瓶颈。在设计ChiVO时,我们专注于提高计算和I / O成本,这使我们配置了一个数据中心,其中包含424个2,6 GHz高速内核,1 PB的存储空间(分布在硬盘驱动器-HDD和固态硬盘(SSD)和高速通信Infiniband。我们正在为ChiVO服务开发基于云的电子基础设施,以便为在ChiVO中开发用于在线数据处理的新型Web服务开发一个一致的框架。我们目前正在使用HPC工具并行化这些新算法和技术,以加速大数据处理,并且我们将在数据大小,数据分布,内核数和响应时间方面报告我们的结果,以便比较不同的处理和存储配置。

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