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Using Solid State Disk Array as a Cache for LHC ATLAS Data Analysis

机译:使用固态磁盘阵列作为LHC ATLAS数据分析的缓存

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User data analysis in high energy physics presents a challenge to spinning-disk based storage systems. The analysis is data intense, yet reads are small, sparse and cover a large volume of data files. It is also unpredictable due to users' response to storage performance. We describe here a system with an array of Solid State Disk as a nonconventional, standalone file level cache in front of the spinning disk storage to help improve the performance of LHC ATLAS user analysis at SLAC. The system uses several days of data access records to make caching decisions. It can also use information from other sources such as a work-flow management system. We evaluate the performance of the system both in terms of caching and its impact on user analysis jobs. The system currently uses Xrootd technology, but the technique can be applied to any storage system.
机译:高能量物理学中的用户数据分析对基于旋转磁盘的存储系统提出了挑战。分析是数据激烈,但读数很小,稀疏和覆盖大量的数据文件。由于用户对存储性能的响应,它也是不可预测的。我们在这里描述了一个具有固态磁盘阵列的系统作为非协定的独立文件级缓存,在旋转磁盘存储器前面,以帮助提高LHC ATLAS用户分析在SLAC上的性能。系统使用几天的数据访问记录来进行缓存决策。它还可以使用来自其他来源的信息,例如工作流管理系统。我们在缓存方面评估系统的性能及其对用户分析作业的影响。系统目前使用Xrootd技术,但该技术可以应用于任何存储系统。

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