DocumentCode
1959568
Title
Migrating Legacy Software to the Cloud with ARTIST
Author
Bergmayr, Alexander ; Bruneliere, H. ; Canovas Izquierdo, Javier Luis ; Gorronogoitia, J. ; Kousiouris, G. ; Kyriazis, Dimosthenis ; Langer, P. ; Menychtas, A. ; Orue-Echevarria, L. ; Pezuela, C. ; Wimmer, Manuel
Author_Institution
Vienna Univ. of Technol., Vienna, Austria
fYear
2013
fDate
5-8 March 2013
Firstpage
465
Lastpage
468
Abstract
As cloud computing allows improving the quality of software and aims at reducing costs of operating software, more and more software is delivered as a service. However, moving from a software as a product strategy to delivering software as a service hosted in cloud environments is very ambitious. This is due to the fact that managing software modernization is still a major challenge, especially when paradigm shifts, such as moving to cloud environments, are targeted that imply fundamental changes to how software is modernized, delivered, and sold. Thus, in addition to technical aspects, business aspects need also to be considered. ARTIST proposes a comprehensive software modernization approach covering business and technical aspects. In particular, ARTIST employs Model-Driven Engineering (MDE) techniques to automate the reverse engineering of legacy software and forward engineering of cloud-based software in a way that modernized software truly benefits from targeted cloud environments. Therewith, ARTIST aims at reducing the risks, time, and costs of software modernization and lowers the barriers to exploit cloud computing capabilities and new business models.
Keywords
cloud computing; cost reduction; reverse engineering; risk management; software maintenance; software quality; ARTIST; MDE; business aspect; business model; cloud computing; cloud-based software; cost reduction; forward engineering; legacy software migration; model-driven engineering; operating software; reverse engineering; risk reduction; software delivery; software modernization management; software quality improvement; technical aspect; time reduction; Biological system modeling; Business; Europe; Reverse engineering; Software as a service; Unified modeling language; Cloud Computing; Model-driven Engineering; Software Migration; Software Modernization;
fLanguage
English
Publisher
ieee
Conference_Titel
Software Maintenance and Reengineering (CSMR), 2013 17th European Conference on
Conference_Location
Genova
ISSN
1534-5351
Print_ISBN
978-1-4673-5833-0
Type
conf
DOI
10.1109/CSMR.2013.73
Filename
6498512
Link To Document