TY - GEN
T1 - Ontological Theory for Ontological Engineering
T2 - 9th International Conference on Principles of Knowledge Representation and Reasoning, KR 2004
AU - Fielding, James M.
AU - Simon, Jonathan
AU - Ceusters, Werner
AU - Smith, Barry
N1 - Publisher Copyright:
Copyright © 2004, American Association for Artificial Intelligence (www.aaai.org). All rights reserved.
PY - 2004
Y1 - 2004
N2 - Software application ontologies have the potential to become the keystone in state-of-the-art information management techniques. It is expected that these ontologies will support the sort of reasoning power required to navigate large and complex terminologies correctly and efficiently. Yet, there is one problem in particular that continues to stand in our way. As these terminological structures increase in size and complexity, and the drive to integrate them inevitably swells, it is clear that the level of consistency required for such navigation will become correspondingly difficult to maintain. While descriptive semantic representations are certainly a necessary component to any adequate ontology-based system, so long as ontology engineers rely solely on semantic information, without a sound ontological theory informing their modeling decisions, this goal will surely remain out of reach. In this paper we describe how Language and Computing nv (L&C), along with The Institute for Formal Ontology and Medical Information Sciences (IFOMIS), are working towards developing and implementing just such a theory, combining the open software architecture of L&C's LinkSuiteTM with the philosophical rigor of IFOMIS's Basic Formal Ontology. In this way we aim to move beyond the more or less simple controlled vocabularies that have dominated the industry to date.
AB - Software application ontologies have the potential to become the keystone in state-of-the-art information management techniques. It is expected that these ontologies will support the sort of reasoning power required to navigate large and complex terminologies correctly and efficiently. Yet, there is one problem in particular that continues to stand in our way. As these terminological structures increase in size and complexity, and the drive to integrate them inevitably swells, it is clear that the level of consistency required for such navigation will become correspondingly difficult to maintain. While descriptive semantic representations are certainly a necessary component to any adequate ontology-based system, so long as ontology engineers rely solely on semantic information, without a sound ontological theory informing their modeling decisions, this goal will surely remain out of reach. In this paper we describe how Language and Computing nv (L&C), along with The Institute for Formal Ontology and Medical Information Sciences (IFOMIS), are working towards developing and implementing just such a theory, combining the open software architecture of L&C's LinkSuiteTM with the philosophical rigor of IFOMIS's Basic Formal Ontology. In this way we aim to move beyond the more or less simple controlled vocabularies that have dominated the industry to date.
UR - https://www.scopus.com/pages/publications/85167415639
M3 - Conference contribution
AN - SCOPUS:85167415639
T3 - Principles of Knowledge Representation and Reasoning: Proceedings of the 9th International Conference, KR 2004
SP - 114
EP - 120
BT - Principles of Knowledge Representation and Reasoning
PB - AAAI press
Y2 - 2 June 2004 through 5 June 2004
ER -