Have a personal or library account? Click to login
On the use of model transformation for the automation of product derivation process in SPL Cover

On the use of model transformation for the automation of product derivation process in SPL

Open Access
|Aug 2018

References

  1. [1] Acceleo Project, [Online]. Available: https://eclipse.org/acceleo. ⇒ 49
  2. [2] ATL Project, [Online]. Available: http://www.eclipse.org/atl.⇒ 48
  3. [3] J. Bèzivin, G. Dup, F. Jouault, G. Pitette, & J. E.Rougui, First experiments with the ATL model transformation language: Transforming XSLT into XQuery. 2nd OOPSLA Workshop on Generative Techniques in the context of Model Driven Architecture Vol. 37. 2003 ⇒ 46
  4. [4] G. Botterweck, K. Lee, S. Thiel, Automating product derivation in software product line engineering, Software Engineering, Kaiserslautern, 2009, pp. 177–182. ⇒ 45
  5. [5] G.Botterweck, L. OBrien, & S. Thiel. Model-driven derivation of product architectures. Proc. of the twenty-second IEEE/ACM international conference on Automated software engineering, 2007, pp. 469–472. ⇒ 4510.1145/1321631.1321711
  6. [6] P. Clements, L. Northrop. Software Product Lines: Practices and Patterns. The SEI series in software engineering. Addison–Wesley, Boston, 2002. ⇒ 46
  7. [7] K. Czarnecki, S. Helsen, U. Eisenecker. Staged configuration using feature models. Int. Conf. on Software Product Lines, Springer Berlin Heidelberg, 2004, pp.266–283. ⇒ 46, 4810.1007/978-3-540-28630-1_17
  8. [8] S. Deelstra, M. Sinnema, J. Bosch, Product derivation in software product families: a case study. The Journal of Systems and Software, 74 (2005) 173–194. ⇒ 4610.1016/j.jss.2003.11.012
  9. [9] Eclipse Modeling Framework, [Online]. Available: http://www.eclipse.org/emf/. ⇒ 49
  10. [10] FeatureIDE, [Online] Available: http://wwwiti.cs.unimagdeburg.de/iti_db/research/featureide/. ⇒ 52
  11. [11] J. Gonzàlez-Huerta, E. Insfran, S. Abrahao, J. D. McGregor, Architecture derivation in product line development through model transformations, 22nd Int. Conf. on Information Systems Development, 2013, pp. 371–384. ⇒ 4510.1007/978-3-319-07215-9_30
  12. [12] S. Kent, Model driven engineering, Int. Conf. on Integrated Formal Methods, Lecture Notes in Comp. Sci., 2335 (2002) pp. 286–298. ⇒ 4710.1007/3-540-47884-1_16
  13. [13] A. G. Kleppe, J. B. Warmer, W. Bast, MDA Explained: the Model Driven Architecture: Practice and Promise, Addison-Wesley Professional. 2003. ⇒ 47
  14. [14] I. Kurtev. Adaptability of model transformations, PhD Thesis, University of Twente Research Information. ⇒ 47
  15. [15] N. Lahiani, D. Bennouar, A software product line derivation process based on mapping features to architecture, Proc. of the Int. Conf. on Advanced Communication Systems and Signal Processing ICOSI, 2015. ⇒ 48
  16. [16] J. McGregor, Goal-driven product derivation, Journal of Object Technology, 8 5 (2009) 7–19. ⇒ 4610.5381/jot.2009.8.5.c1
  17. [17] L. Northrop, P. Clements, With F. Bachmann, J. Bergey, G. Chastek, S. Cohen, P. Donohoe, L. Jones, R. Krut, R. Little, J. McGregor, L. OBrien, A frame-work for software product line practice, version 5.0, Software Enginering Institut, 2012. ⇒ 47
  18. [18] C. Parra, A. Cleve, X.Blanc, L. Duchien, Feature-based composition of soft-ware architectures. European Conf. on Software Architecture, Springer, Berlin, Heidelberg, 2010, pp. 230–245. ⇒ 45, 4610.1007/978-3-642-15114-9_18
  19. [19] D. Perovich, P. O. Rossel, M. C.Bastarrica, Feature model to product architectures: Applying MDE to software product lines, Software Architecture, & European Conf. on Software Architecture, WICSA/ECSA 2009, Joint Working IEEE/IFIP Conf., IEEE 2009, pp. 201–210. ⇒ 45, 4610.1109/WICSA.2009.5290806
  20. [20] D. C. Schmidt. Guest editors introduction: model-driven engineering. IEEE Comput. 39 2 (2006) 25–31. ⇒ 4410.1109/MC.2006.58
  21. [21] T. Stahl, M. Voelter, K. Czarnecki, Model-Driven Software Development: Technology, Engineering, Management, John Wiley & Sons 2006. ⇒ 44
  22. [22] R. Tawhid, D. C. Petriu. Product model derivation by model transformation in software product lines. Object/Component/Service-Oriented Real-Time Distributed Computing Workshops (ISORCW), 14th IEEE International Symposium, IEEE 2011, pp. 72–79. ⇒ 45, 4610.1109/ISORCW.2011.18
Language: English
Page range: 43 - 57
Submitted on: Jan 14, 2018
|
Published on: Aug 29, 2018
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2018 Nesrine Lahiani, Djamal Bennouar, published by Sapientia Hungarian University of Transylvania
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.