DocumentCode :
2509066
Title :
Consistent queries over cardinal directions across different levels of detail
Author :
Goyal, Roop K. ; Egenhofer, Max J.
Author_Institution :
Nat. Center for Geogr. Inf. & Anal., Maine Univ., Orono, ME, USA
fYear :
2000
fDate :
2000
Firstpage :
876
Lastpage :
880
Abstract :
Current models for cardinal directions, such as north and northeast, are either point-based or region-based, but no models exist that apply equally, independent of the geometric data types (be it points, lines, or polygons). To allow users to formulate queries such as “Find all towns in Maine that are northeast of Augusta” without pondering about the cities´ geometric data types, we extend the model of the model of the direction-relation matrix to handle arbitrary pairs of points, lines, and polygons. This new model, called the deep direction-relation matrix, retains the 3×3 structure of the direction-relation matrix with empty and non-empty tiles, while it records additionally neighbor codes for empty tiles to capture whether the tiles´ boundaries are empty or not. This extension covers all intricacies imposed by line and point objects, yielding a unifying and consistent model for cardinal directions. It enables the use of cardinal directions in spatial query languages independent of the objects´ geometric data types
Keywords :
computational geometry; geographic information systems; query languages; query processing; spatial data structures; visual databases; cardinal directions; deep direction-relation matrix; geographic information system; geometric data types; polygons; query formulation; spatial database; spatial query languages; Cities and towns; Computational geometry; Data engineering; Database languages; Database systems; Geographic Information Systems; Information analysis; Information science; Solid modeling; Tiles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Database and Expert Systems Applications, 2000. Proceedings. 11th International Workshop on
Conference_Location :
London
ISSN :
1529-4188
Print_ISBN :
0-7695-0680-1
Type :
conf
DOI :
10.1109/DEXA.2000.875129
Filename :
875129
Link To Document :
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