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Efficient Index Structures for Spatio-Temporal Objects

  • Carsten Kleiner
  • , Udo W. Lipeck

Research output: Chapter in book/report/conference proceedingContribution to book/anthologyResearchpeer review

Abstract

We present a family of four tree-based access structures for indexing spatio-temporal objects. Our indexing methods support spatio-temporal, as well as purely spatial and purely temporal queries. In order to handle sets of extended spatio-temporal objects we propose to specialize generalized search trees by combining the advantages of the well-known spatial structures R∗-tree (Beckmann et al., 1990) and SS-tree (White and Jain, 1996). We consider size-based (R∗-tree like) and distance-based (SS-tree like) penalty metrics for insertions, and we view the temporal dimension either as a regular third or as a special dimension. We evaluate the four access methods on different real-life datasets and identify one of them to be the most efficient access structure for the case of general spatio-temporal data with known extents in every dimension. This method continues the R∗-tree split policy with penalty metric and insertion policy from the SS-tree and treats the temporal dimension as a special dimension.

Original languageEnglish
Title of host publication Proceedings 11th International Workshop on Database and Expert Systems Applications
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages881-888
Number of pages8
Volume2000
ISBN (Print)0-7695-0680-1
DOIs
Publication statusPublished - 2000

Keywords

  • Database languages
  • Database systems
  • Geography
  • Geometry
  • Indexing
  • Shape
  • Spatial databases
  • Tail
  • Testing
  • Transaction databases

ASJC Scopus subject areas

  • General Engineering

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