Ontology negotiation between intelligent information agents

被引:30
作者
Bailin, SC
Truszkowski, W
机构
[1] Knowledge Evolut Inc, Washington, DC 20036 USA
[2] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
关键词
D O I
10.1017/S0269888902000292
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
This paper describes an approach to ontology negotiation between agents supporting intelligent information management. Ontologies are declarative (data-driven) expressions of an agent's "world": the objects, operations, facts and rules that constitute the logical space within which an agent performs. Ontology negotiation enables agents to cooperate in performing a task, even if they are based on different ontologies. Our objective is to increase the opportunities for "strange agents" - that is, agents not necessarily developed within the same framework or with the same contextual operating assumptions - to communicate in solving tasks when they encounter each other on the web. In particular, we have focused on information search tasks. We have developed a protocol that allows agents to discover ontology conflicts and then, through incremental interpretation, clarification and explanation, establish a common basis for communicating with each other. We have implemented this protocol in a set of Java classes that can be added to a variety of agents, irrespective of their underlying ontological assumptions. We have demonstrated the use of the protocol, through this implementation, in a test-bed that includes two large scientific archives: NASA's Global Change Master Directory and NOAN's Wind and Sea Index. This paper presents an overview of different methods for resolving ontology mismatches and motivates the Ontology Negotiation Protocol (ONP) as a method that addresses some problems with other approaches. Much remains to be done. The protocol must be tested in larger and less familiar contexts (for example, numerous archives that have not been preselected) and it must be extended to accommodate additional forms of clarification and ontology evolution.
引用
收藏
页码:7 / 19
页数:13
相关论文
共 35 条
[1]   RiboWeb: An ontology-based system for collaborative molecular biology [J].
Altman, RB ;
Bada, M ;
Chai, XQJ ;
Carillo, MW ;
Chen, RO ;
Abernethy, NF .
IEEE INTELLIGENT SYSTEMS & THEIR APPLICATIONS, 1999, 14 (05) :68-76
[2]   An integrated metamodel for knowledge representation in geolibraries [J].
Baptista, CS ;
Kemp, Z .
IEEE ADVANCES IN DIGITAL LIBRARIES 2000, PROCEEDINGS, 2000, :151-159
[3]   Supporting dynamic interactions among Web-based information sources [J].
Bouguettaya, A ;
Benatallah, B ;
Hendra, L ;
Ouzzani, M ;
Beard, J .
IEEE TRANSACTIONS ON KNOWLEDGE AND DATA ENGINEERING, 2000, 12 (05) :779-801
[4]   Context knowledge representation and reasoning in the Context Interchange system [J].
Bressan, S ;
Goh, C ;
Levina, N ;
Madnick, S ;
Shah, A ;
Siegel, M .
APPLIED INTELLIGENCE, 2000, 13 (02) :165-180
[5]  
CAMPBELL AE, 1995, IJCAI WORKSH BAS ONT
[6]  
Chaudhri VK, 1998, FIFTEENTH NATIONAL CONFERENCE ON ARTIFICIAL INTELLIGENCE (AAAI-98) AND TENTH CONFERENCE ON INNOVATIVE APPLICATIONS OF ARTIFICAL INTELLIGENCE (IAAI-98) - PROCEEDINGS, P600
[7]  
CRESSWELL J, 1992, ESPERANTO TEACH YOUR
[8]  
Fellbaum C, 1998, WORDNET ELECT LEXICA
[9]   OIL: An ontology infrastructure for the Semantic Web [J].
Fensel, D ;
van Harmelen, F ;
Horrocks, I ;
McGuinness, DL ;
Patel-Schneider, PF .
IEEE INTELLIGENT SYSTEMS & THEIR APPLICATIONS, 2001, 16 (02) :38-45
[10]  
Fensel D., 2001, Ontologies: Silver bullet for knowledge management and electronic commerce