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Model-based verification of quantitative non-functional properties for software product lines.

, and . Inf. Softw. Technol., 55 (3): 508-524 (2013)

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LOVER: Light-Weight fOrmal Verification of adaptivE Systems at Run Time., and . FACS, volume 7684 of Lecture Notes in Computer Science, page 170-187. Springer, (2012)Models for Self-Adaptive Systems.. ECSA Workshops, page 24:1-24:5. ACM, (2015)Dealing with Non-Functional Requirements for Adaptive Systems via Dynamic Software Product-Lines., and . Software Engineering for Self-Adaptive Systems, volume 7475 of Lecture Notes in Computer Science, page 191-213. Springer, (2010)Efficient consistency checking of scenario-based product-line specifications., , , and . RE, page 161-170. IEEE Computer Society, (2012)Features Meet Scenarios: Modeling and Consistency-checking Scenario-based Product Line Specifications, , , and . Requir. Eng., 18 (2): 175--198 (June 2013)7th International Workshop on Principles of Engineering Service-Oriented and Cloud Systems (PESOS 2015)., , , , and . ICSE (2), page 987-988. IEEE Computer Society, (2015)ISBN 978-1-4799-1934-5 (Vol. I + II ???).Verifying Non-functional Properties of Software Product Lines: Towards an Efficient Approach Using Parametric Model Checking., and . SPLC, page 170-174. IEEE Computer Society, (2011)Model-based verification of quantitative non-functional properties for software product lines., and . Inf. Softw. Technol., 55 (3): 508-524 (2013)Requirements Verification of Variability-Intensive Systems.. Polytechnic University of Milan, Italy, (2014)Towards Agile Verification., , and . Perspectives on the Future of Software Engineering, page 31-47. Springer, (2013)