DocumentCode :
230933
Title :
Multilevel abstraction based self control method for industrial PLM model
Author :
Horvath, Laszlo ; Rudas, Imre J.
Author_Institution :
Inst. of Appl. Math., Obuda Univ. Budapest, Budapest, Hungary
fYear :
2014
fDate :
Feb. 26 2014-March 1 2014
Firstpage :
695
Lastpage :
700
Abstract :
Challenges in product definition and application related engineering stimulate quick development of product lifecycle management (PLM) systems. The main directions of this development are adaptive definition of product, extending PLM model definitions to higher level of abstraction, and automation of the model generation by including model definition activities in product model. Joining to the above efforts, this paper introduces modeling concept and methodology for better communication between engineers and the currently applied requirement, functional, logical, and physical (RFLP) abstraction based PLM models. This work was grounded by previous research results in knowledge based adaptive modeling methods and supported by the Laboratory of Intelligent Engineering Systems (LIES) at the University of Óbuda. After introduction of currently applied abstraction levels in PLM models, modified levels of abstraction are proposed in this paper. Following this, the method Multilevel Abstraction Based Self Adaptive Definition (MAAD) is introduced by the organized main contextual connections in the MAAD and the MAAD adaptive product definition process.
Keywords :
product life cycle management; MAAD adaptive product definition process; PLM systems; RFLP abstraction; application related engineering; industrial PLM model; model definition activities; model generation; multilevel abstraction based self adaptive definition; product lifecycle management systems; requirement functional logical and physical abstraction; self control method; Adaptation models; Context; Context modeling; Mathematical model; Object oriented modeling; Solid modeling; Multilevel Abstraction Based Self Adaptive Definition (MAAD); Product lifecycle model; RFLP paradigm; adaptive product definition; levels of abstraction in PLM;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Technology (ICIT), 2014 IEEE International Conference on
Conference_Location :
Busan
Type :
conf
DOI :
10.1109/ICIT.2014.6894915
Filename :
6894915
Link To Document :
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