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A Semantic-Driven Knowledge Representation Model for the Materials Engineering Application Cover

A Semantic-Driven Knowledge Representation Model for the Materials Engineering Application

By: Xin Cheng,  Changjun Hu and  Yang Li  
Open Access
|Apr 2014

Abstract

A Materials Engineering Application (MEA) has been presented as a solution for the problems of materials design, solutions simulation, production and processing, and service evaluation. Large amounts of data are generated in the MEA distributed and heterogeneous environment. As the demand for intelligent engineering information applications increases, the challenge is to effectively organize these complex data and provide timely and accurate on-demand services. In this paper, based on the supporting environment of Open Cloud Services Architecture (OCSA) and Virtual DataSpace (VDS), a new semantic-driven knowledge representation model for MEA information is proposed. Faced with the MEA constantly changing user requirements, this model elaborates the semantic representation of data, services and their relationships to support the construction of domain knowledge ontology. Then, based on the ontology modeling in VDS, the semantic representations of association mapping, rule-based reasoning, and evolution tracking are analyzed to support MEA knowledge acquisition. Finally, an application example of knowledge representation in the field of materials engineering is given to illustrate the proposed model, and some experimental comparisons are discussed for evaluating and verifying the effectiveness of this method.
DOI: https://doi.org/10.2481/dsj.13-061 | Journal eISSN: 1683-1470
Language: English
Published on: Apr 24, 2014
Published by: Ubiquity Press
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2014 Xin Cheng, Changjun Hu, Yang Li, published by Ubiquity Press
This work is licensed under the Creative Commons Attribution 4.0 License.