Title of article
Fully dynamic metric access methods based on hyperplane partitioning
Author/Authors
Gonzalo Navarro، نويسنده , , Roberto Uribe-Paredes، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
14
From page
734
To page
747
Abstract
Metric access methods based on hyperplane partitioning have the advantage, compared to the ball partitioning-based ones, that regions do not overlap. The price is less flexibility for controlling the tree shape, especially in the dynamic scenario, that is, upon insertions and deletions of objects. In this paper we introduce a technique called ghost hyperplanes, which enables fully dynamic data structures based on hyperplane partitioning. We apply the technique to Brinʹs GNAT static index, obtaining a dynamic variant called EGNAT, which in addition we adapt to secondary memory. We show experimentally that the EGNAT is competitive with the M-tree, the baseline for this scenario. We also apply the ghost hyperplane technique to Voronoi trees, obtaining a competitive dynamic structure for main memory.
Keywords
Similarity search , Secondary memory , Metric spaces
Journal title
Information Systems
Serial Year
2011
Journal title
Information Systems
Record number
1230211
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