Deep integration of spatial query processing into native RDF triple stores
Author(s) -
Andreas Brodt,
Daniela Nicklas,
Bernhard Mitschang
Publication year - 2010
Publication title -
fachbereich informatik (university of stuttgart)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.1145/1869790.1869799
Subject(s) - sparql , rdf , computer science , rdf query language , information retrieval , rdf schema , spatial query , simple knowledge organization system , query language , linked data , rdf/xml , spatial database , database , query optimization , spatial analysis , semantic web , web query classification , web search query , geography , search engine , remote sensing
Semantic Web technologies, most notably RDF, are well-suited to cope with typical challenges in spatial data management including analyzing complex relations between entities, integrating heterogeneous data sources and exploiting poorly structured data, e.g., from web communities. Also, RDF can easily represent spatial relationships, as long as the location information is symbolic, i.e., represented by places that have a name. What is widely missing is support for geographic and geometric information, such as coordinates or spatial polygons, which is needed in many applications that deal with sensor data or map data. This calls for efficient data management systems which are capable of querying large amounts of RDF data and support spatial query predicates. We present a native RDF triple store implementation with deeply integrated spatial query functionality. We model spatial features in RDF as literals of a complex geometry type and express spatial predicates as SPARQL filter functions on this type. This makes it possible to use W3C's standardized SPARQL query language as-is, i.e., without any modifications or extensions for spatial queries. We evaluate the characteristics of our system on very large data volumes.
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