L. Bass, P. Clements, and R. Kazman, Software Architecture in Practices, 1998.

A. Bertolino, A. Fantechi, S. Gnesi, G. Lami, and A. Maccari, Use Case Description of Requirements for Product Lines, International Workshop on Requirement Engineering for Product Line (REPL02), pp.12-18, 2002.

J. Bosch, G. Florijn, D. Greefhorst, J. Kuusela, H. Obbink et al., Variability Issues in Software Product Lines, Fourth workshop Product Familly Engineering (PFE4), pp.11-19, 2001.
DOI : 10.1007/3-540-47833-7_3

M. Clauß, Generic modeling using UML extensions for variability, Workshop on Do main Specific Visual Languages at OOPSLA 2001, 2001.

S. Deelstra, M. Sinnema, and J. Bosch, Product derivation in software product families: a case study, Journal of Systems and Software, vol.74, issue.2, pp.173-194, 2004.
DOI : 10.1016/j.jss.2003.11.012

O. Flege, System Family Architecture Description Using the UML, IESE, 2000.

H. Gomaa, Object Oriented Analysis and Modeling for Families of Systems with UML, IEEE International Conference for Software Reuse (ICSR6), pp.89-99, 2000.
DOI : 10.1007/978-3-540-44995-9_6

G. Halmans and K. Pohl, Communicating the variability of a software-product family to cutomers, Software and System Modeling, pp.15-36, 2003.

I. John and D. Muthig, Tailoring Use Cases for Product Line Modeling, International Workshop on Requirement Engineering for Product Line (REPL02), pp.26-32, 2002.

W. Kaim, Managing variability in the LCAT SPLIT/Daisy, Proceedings of Product Line Architecture Workshop. The First Software Product Line Conference (SPLC1), pp.21-32, 2000.

O. Management-group and O. , Uinified Modeling Language specification version 2.0: Superstructure, 2003.

S. Robak, R. Franczyk, and K. Politowicz, Extending the UML for modeling variability for system families, International Journal of Applied Mathematics Computer Sciences, vol.12, issue.2, pp.285-298, 2002.

T. Van-der-maßen and H. Lichter, Modeling Variability by UML Use Case Diagrams, International Workshop on Requirement Engineering for Product Line (REPL02), pp.19-25, 2002.

D. L. Webber, The Variation Point Model For Software Product Lines, 2001.

M. D. Weiss, C. T. , and R. Lai, Software Product-Line Engineering: A Family Based Software Development Process, 1999.

T. Ziadi, J. H´hélouëth´hélouët, and . Jézéquel, Towards a UML Profile for Software Product Lines, Proceedings of the Fifth Internationl Workshop on Product Familly Engineering (PFE-5), pp.129-139, 2003.
DOI : 10.1007/978-3-540-24667-1_10

URL : https://hal.archives-ouvertes.fr/hal-00794817

T. Ziadi, L. L. Hélouët, and J. Jézéquel, Revisiting statechart synthesis with an algebraic approach, Proceedings. 26th International Conference on Software Engineering, 2004.
DOI : 10.1109/ICSE.2004.1317446

URL : https://hal.archives-ouvertes.fr/hal-00795027

]. T. Ziadi and J. Jézéquel, -Product Line Engineering with the UML: Deriving Products, chapter 15 Software Product Lines: Research Issues in Engineering and Management, Editeurs : T. Käköla et J. Duenas, issue.2, pp.3-540, 2006.
URL : https://hal.archives-ouvertes.fr/hal-01108898

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