DocumentCode
3309849
Title
Model-based visualization of temporal abstractions
Author
Shahar, Yuval ; Cheng, Cleve
Author_Institution
Dept. of Med. Inf., Stanford Univ., CA, USA
fYear
1998
fDate
16-17 May 1998
Firstpage
11
Lastpage
20
Abstract
We describe a domain-independent framework (KNAVE) specific to the task of interpretation, summerization, visualization, explanation, and interactive navigation in a context-sensitive manner through time-oriented raw data and the multiple levels of higher-level, interval-based concepts that can be abstracted from these data. The KNAVE domain-independent navigation operators access the domain-specific knowledge base, which is modeled by the formal ontology of the knowledge-based temporal-abstraction method; the method generates the temporal abstractions from the time-oriented database. Thus, domain-specific knowledge underlies the semantics of the domain-independent visualization and navigation processes. By accessing the domain-specific temporal abstraction knowledge base and the domain-specific time-oriented database, KNAVE modules enable users to query for domain-specific temporal abstractions and to change the focus of the visualization, thus reusing for a different task (visualization and navigation) the domain model that has been acquired from the domain experts for the purpose of temporal abstraction. Initial evaluation of the KNAVE prototype has been encouraging. The KNAVE methodology has potentially broad implications for tasks such as planning, monitoring, explanation, and data mining
Keywords
data visualisation; deductive databases; knowledge acquisition; temporal databases; temporal logic; user interfaces; KNAVE; data explanation; data interpretation; data mining; data summerization; domain-independent framework; domain-independent navigation operators; domain-specific knowledge base; formal ontology; human-computer interfaces; interactive data navigation; interval-based concepts; knowledge-based temporal-abstraction method; model-based visualization; planning; temporal abstractions; temporal databases; temporal logics; time-oriented database; time-oriented raw data; Data mining; Data visualization; Identity-based encryption; Logic; Monitoring; Navigation; Ontologies; Prototypes; Read only memory; Visual databases;
fLanguage
English
Publisher
ieee
Conference_Titel
Temporal Representation and Reasoning, 1998. Proceedings. Fifth International Workshop on
Conference_Location
Sanibel Island, FL
Print_ISBN
0-8186-8473-9
Type
conf
DOI
10.1109/TIME.1998.674126
Filename
674126
Link To Document