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Efficient multidimensional indexing structure for linear maximization queries

机译:线性最大化查询的高效多维索引结构

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Abstract: Linear optimization queries appear in many application domains in the form of ranked lists subject to a linear criterion. Surveys such as top 50 colleges, best 20 towns to live and ten most costly cities ar often based on linearly weighted factors. The importance of linear modeling to information analysis and retrieval thus cannot be overemphasized. Limiting returned results to the extreme cases is an effective way to filter the overwhelmingly large amount of unprocessed data. This paper discusses the construction, maintenance and utilization of a multidimensional indexing structure for processing linear optimization queries. The proposed indexing structure enables fast query processing and has minimal storage overhead. Experimental result demonstrated that proposed indexing achieves significant performance gain with speedup like 100 times faster than linear scan to retrieve top 100 records out of a million. In this structure, a data record is indexed by its depth in a layered convex hull. Convex hull is the boundary of the smallest convex region contain a given set of points in a metric space. It is long known from linear programming theory that linear maximum and minimum always happen at some vertex of the convex hull. We applied this simple fact to build a multi-layered convex structure, which enables highly efficient query retrieval for any dynamically issued linear optimization criteria. !11
机译:摘要:线性优化查询在许多应用程序领域中均以符合线性标准的排名列表的形式出现。经常基于线性加权因素进行的调查,例如排名前50的大学,最适合居住的20个城镇和十个最昂贵的城市。因此,不能过分强调线性建模对信息分析和检索的重要性。将返回的结果限制为极端情况是一种过滤绝大多数未处理数据的有效方法。本文讨论了用于处理线性优化查询的多维索引结构的构建,维护和利用。所提出的索引结构使快速查询处理成为可能,并具有最小的存储开销。实验结果表明,提出的索引实现了显着的性能提升,其速度比线性扫描快了100倍,可检索百万条记录中的前100条记录。在这种结构中,数据记录通过其在分层凸包中的深度来索引。凸包是在度量空间中包含给定点集的最小凸区的边界。从线性编程理论早就知道,线性最大值和最小值总是出现在凸包的某个顶点上。我们应用了这个简单的事实来构建多层凸结构,该结构可以对任何动态发布的线性优化条件进行高效的查询检索。 !11

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