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MCS-B: An Energy Efficient Storage System for Astronomical Observation Data Based on Logical Block Replacement Strategy

机译:MCS-B:一种基于逻辑块替换策略的节能型天文观测数据存储系统

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Power conservation for the storage system is crucial for cost saving and there are many approaches to address it, such as multi-level storage and data migration strategy. However, most of them are purely theoretical studies without real experiments. In realistic application scenarios, there can be a variety of factors that can impact the effectiveness of the energy efficient model. In this paper, a new energy efficient storage system for astronomical observation data called MCS-B is designed, which uses multi-level caching strategy and block replacement strategy. According to the manner of astronomical data access, MCS-B uses LB (logical blocks) to cluster correlated files and places them on the data disk via a temporal and spatial pattern. We further design a specialized prefetching and caching strategy to create larger disk idle time intervals so that the disks that are not in use within a certain time will be powered down. Experimental results show that MCS-B outperforms existing traditional energy efficient schemes in the energy consumption by 34.24% up to 42.39%. Moreover, the average response time for requests is reduced by 71.36% up to 77.14%.
机译:存储系统的节能对于节省成本至关重要,有许多解决方案,例如多级存储和数据迁移策略。但是,大多数都是纯理论研究,没有实际实验。在实际的应用场景中,可能有多种因素会影响节能模型的有效性。本文设计了一种新的高效节能的天文观测数据存储系统,称为MCS-B,该系统使用了多级缓存策略和块替换策略。根据天文数据访问的方式,MCS-B使用LB(逻辑块)对相关文件进行聚类,并通过时空模式将它们放置在数据磁盘上。我们进一步设计了专门的预取和缓存策略,以创建更大的磁盘空闲时间间隔,以便在一定时间内关闭未使用的磁盘。实验结果表明,MCS-B的能耗在34.24%到42.39%之间上均优于现有的传统节能方案。此外,请求的平均响应时间减少了71.36%,最高达到77.14%。

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