By Sang Yong Park, Hee Yong Youn (auth.), Marina L. Gavrilova, Osvaldo Gervasi, Vipin Kumar, C. J. Kenneth Tan, David Taniar, Antonio Laganá, Youngsong Mun, Hyunseung Choo (eds.)
This ?ve-volume set was once compiled following the 2006 overseas convention on Computational technology and its purposes, ICCSA 2006, held in Glasgow, united kingdom, in the course of may perhaps 8–11, 2006. It represents the exceptional choice of nearly 664 refereed papers chosen from over 2,450 submissions to ICCSA 2006. Computational technology has ?rmly validated itself as an integral part of many scienti?c investigations, a?ecting researchers and practitioners in components starting from purposes comparable to aerospace and automobile, to rising applied sciences reminiscent of bioinformatics and nanotechnologies, to middle disciplines reminiscent of ma- ematics, physics, and chemistry. because of the shear measurement of many demanding situations in computational technology, using supercomputing, parallel processing, and - phisticated algorithms is inevitable and turns into part of primary theore- cal learn in addition to endeavors in rising ?elds. jointly, those far-reaching scienti?c components helped shape this convention within the nation-states of state-- the-art computational technological know-how researchand functions, encompassing the fac- itating theoretical foundations and the leading edge functions of such ends up in different areas.
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Extra info for Computational Science and Its Applications - ICCSA 2006: International Conference, Glasgow, UK, May 8-11, 2006, Proceedings, Part IV
Therefore, we annotate global context metadata in contextType description: on the other hand, we annotate local context metadata in entity individual description. To describe context metadata, we define several owl:annotationProperties as follows. Context metadata is described using annotationProperties, and these context metadata are not interpreted nor used in OWL DL reasoning process. This information is delivered to applications or ontology servers. We will explain global and local context metadata in detail.
The execution, termination, and transition of services depend on the context information. Therefore, Scenario editor requests available context from Context query processor for describing pre-condition, post-condition, and transition condition of the services. Getting up application diagram shows the flows of services in the application which is produced by scenario editor, and it also shows context information related to the services. 2 ontology API which is developed by HP. We implemented the Rule-based context reasoning module using GeneralRuleReasoner which includes RETE engine or one tabled engine supported by Jena, and Context ontology reasoning module using Racer which is a well-known OWL DL reasoner.
Section 4 suggests context ontology in a home domain, and shows how to model the context information and context metadata in a Getting up scenario. In this section, we also explain reasoning that uses the context model. Section 5 describes the system structure of Context ontology server, and explains the facilities of each component, and describes the implementation. Section 6 includes the conclusion and suggests future work. 2 Related Works Recently many researches for context model in ubiquitous computing environment have been done.
Computational Science and Its Applications - ICCSA 2006: International Conference, Glasgow, UK, May 8-11, 2006, Proceedings, Part IV by Sang Yong Park, Hee Yong Youn (auth.), Marina L. Gavrilova, Osvaldo Gervasi, Vipin Kumar, C. J. Kenneth Tan, David Taniar, Antonio Laganá, Youngsong Mun, Hyunseung Choo (eds.)