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Storing XML (with XSD) in SQL databases: interplay of logical and physical designs

机译:在SQL数据库中存储XML(使用XSD):逻辑和物理设计的相互作用

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Much of business XML data has accompanying XSD specifications. In many scenarios "shredding" such XML data into a relational storage is a popular paradigm. Optimizing evaluation of XPath queries overmuch XML data requires paying careful attention to both the logical and physical designs of the relational database where XML data is shredded. None of the existing solutions has taken into account physical design of the generated relational database. In this paper, we study the interplay of logical and physical design and conclude that 1) solving them independently leads to suboptimal performance and 2) there is substantial overlap between logical and physical designs: some well-known logical design transformations generate the same mappings as physical design. Furthermore, existing search algorithms are inefficient to search the extremely large space of logical and physical design combinations. We propose a search algorithm that carefully avoids searching duplicated mappings and utilizes the workload information to further prune the search space. Experimental results confirm the effectiveness of our approach.
机译:许多业务XML数据都有XSD规范。在许多情况下,将这样的XML数据“切碎”到关系存储中是一种流行的范例。优化对过多XML数据的XPath查询的评估需要仔细注意将XML数据粉碎的关系数据库的逻辑和物理设计。现有解决方案均未考虑所生成的关系数据库的物理设计。在本文中,我们研究了逻辑和物理设计的相互作用,并得出以下结论:1)独立解决它们会导致次优性能; 2)逻辑和物理设计之间存在实质性的重叠:一些众所周知的逻辑设计转换会生成与物理设计。此外,现有的搜索算法无法有效地搜索逻辑和物理设计组合的极大空间。我们提出了一种搜索算法,该算法会仔细避免搜索重复的映射,并利用工作量信息来进一步缩小搜索空间。实验结果证实了我们方法的有效性。

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