Title
Final Inspection for Design Pattern Homologation Using a Real Time Embedded Software in a Production Line
Abstract
This paper summarizes a research process applied to Final Inspection (FI) and Causal Analysis for Problems Resolution (CAR) using a Real Time Embedded Software Component in a Production Line. It uses C++ language in an IBM-Rational Rose Real Time (RRRT) environment. It tackles the creation of a consistent homologation process to eliminate components’ errors, imperfections, and defects even before design patterns’ publications in a library. Its major contribution is the construction of an FI artifact for a software component related to CAR. It proposes an industrial model for an FI process of design patterns’ homologation using an Integrated Computer Aided Software Engineering Environment (I-CASE-E). It considers a design pattern that was identified in a project, described, stored in a library, and successfully reused in another project. The use of Rational Unified Process (RUP) has helped teams of undergrad and graduate students from the Brazilian Aeronautics Institute of Technology (Instituto Tecnológico de Aeronáutica - ITA) to develop their components, during the second semester of 2007. The RUP utilization has provided a fertile scenario to create and apply design pattern concepts. At the end, different Computer Software Components (CSC) were homologated with their attributes and generic methods allowing reusability.
Year
DOI
Venue
2009
10.1109/ITNG.2009.196
ITNG
Keywords
Field
DocType
consistent homologation process,fi artifact,design pattern homologation,final inspection,production line,design pattern concept,design pattern,software component,fi process,software engineering environment,different computer software components,ibm-rational rose real time,research process,real time,design patterns,embedded systems,aerospace engineering,embedded software,testing,real time systems,computer aided software engineering,object oriented programming,construction industry,rational unified process,unified modeling language,process design,production,inspection
Rational Unified Process,Embedded software,Unified Modeling Language,Software engineering,Computer science,Software design pattern,Process design,Software,Computer-aided software engineering,Component-based software engineering
Conference
Citations 
PageRank 
References 
0
0.34
3
Authors
6