Capturing Variability in Adaptation Spaces: A Three-Peaks Approach
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-25264-3_28
Reference23 articles.
1. Angelopoulos, K., Souza, V.E.S., Mylopoulos, J.: Dealing with multiple failures in zanshin: a control-theoretic approach. In: Proceedings of the 9th International Symposium on Software Engineering for Adaptive and Self-Managing Systems, SEAMS 2014, pp. 165–174. ACM, New York (2014)
2. Baresi, L., Guinea, S., Pasquale, L.: Service-oriented dynamic software product lines. Computer 45(10), 42–48 (2012)
3. Baresi, L., Pasquale, L., Spoletini, P.: Fuzzy goals for requirements-driven adaptation. In: Proceedings of the 18th IEEE International Requirements Engineering Conference, pp. 125–134. IEEE (2010)
4. Chen, B., Peng, X., Yu, Y., Nuseibeh, B., Zhao, W.: Self-adaptation through incremental generative model transformations at runtime. In: Proceedings of the 36th International Conference on Software Engineering, ICSE 2014, pp. 676–687. ACM, New York (2014)
5. Lecture Notes in Computer Science;BHC Cheng,2009
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