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The design and evaluation of a high-performance earth science database

机译:高性能地球科学数据库的设计和评估

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Earth scientists have encountered two major obstacles in their attempts to use remotely sensed imagery to analyze the earth's land cover dynamics. First, the volume of data involved is very large and second, significant preprocessing is needed before the data can be used. This is particularly so for studies that analyze global trends using data sets that cover multiple years. In this paper, we present the design of an earth science database as well as our early experiences with it. The primary design goal of this database is to facilitate efficient access to and pre processing of large volumes of satellite data. Our initial design assumed that the main bottleneck in the system would be retrieving data from the disks. However, experimental results show that precise identification of all the data values corresponding to a query can take a significant amount of time. The problem is even more pronounced in designing the system to attempt to minimize time spent performing I/O. We therefore discuss a major redesign of the system that includes a reworking of the indexing scheme and a reorganization of the data on disks. Experimental results show that the redesigned system performs significantly better than the original system, providing interactive response times for local queries.
机译:地球科学家在尝试使用遥感影像分析地球土地覆盖动力学时遇到了两个主要障碍。首先,涉及的数据量非常大,其次,在可以使用数据之前,需要进行大量预处理。对于使用涵盖多年数据集分析全球趋势的研究而言尤其如此。在本文中,我们介绍了地球科学数据库的设计以及我们的早期经验。该数据库的主要设计目标是促进对大量卫星数据的有效访问和预处理。我们的初始设计假定系统的主要瓶颈是从磁盘检索数据。但是,实验结果表明,精确标识与查询相对应的所有数据值可能会花费大量时间。在设计系统以尽量减少执行I / O所花费的时间时,该问题更加明显。因此,我们讨论了系统的重大重新设计,包括索引方案的重新设计和磁盘上数据的重新组织。实验结果表明,重新设计的系统的性能明显优于原始系统,为本地查询提供了交互式响应时间。

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