Title :
New method for behavior driven product concept definition
Author :
Horvath, Laszlo ; Rudas, Imre J.
Author_Institution :
John von Neumann Fac. of Inf., Obuda Univ., Budapest, Hungary
Abstract :
Recent developments in lifecycle management of product information concentrate on abstraction in order to support multidisciplinary design. New generation of intelligent engineering systems brings representation for conceptual stage of product definition into product model. The Laboratory of Intelligent Engineering Systems (LIES) at the Óbuda University was founded among others for research in this direction in 2005. Recently, LIES proceeds research in behavior definition for function (F) and logical (L) levels of RFLP structure based professional product lifecycle management (PLM) model. In this scenario, behavior assisted F and L level product definition collects information from the requirements (R) level and drives generation of physical (P) level model elements. In this paper, a new method is introduced for the Systems Engineering (SE), System of Systems Engineering (SoSE), and intelligent computing supported definition of elements in the new requirement, behavior, context, and drive (RBCD) structure. The RBCD structure is a recent result at the LIES and it is devoted as a contribution to RFLP structure element generation methodology.
Keywords :
product design; product life cycle management; production engineering computing; LIES; Laboratory of Intelligent Engineering Systems; Óbuda University; PLM model; RBCD structure; RFLP structure based professional product lifecycle management model; RFLP structure element generation methodology; SoSE; System of Systems Engineering; behavior assisted F level product definition; behavior assisted L level product definition; behavior driven product concept definition; multidisciplinary design; physical level model elements; product information lifecycle management; requirement, behavior, context, and drive structure; requirements level; Computational modeling; Context; Finite element analysis; Knowledge representation; Object oriented modeling;
Conference_Titel :
Intelligent Engineering Systems (INES), 2014 18th International Conference on
Conference_Location :
Tihany
DOI :
10.1109/INES.2014.6909352