• Mahmood W, Çalıklı G, Strüber D, Lämmel R, Mukelabai M and Berger T. Virtual Platform: Effective and Seamless Variability Management for Software Systems. IEEE Transactions on Software Engineering. 10.1109/TSE.2024.3406224. 50:11. (2753-2785).

    https://ieeexplore.ieee.org/document/10545607/

  • Güthing L, Pett T and Schaefer I. Out-of-the-Box Prediction of Non-Functional Variant Properties Using Automated Machine Learning. Proceedings of the 28th ACM International Systems and Software Product Line Conference. (82-87).

    https://doi.org/10.1145/3646548.3676546

  • Colletti R, Qamar A, Bailey W, Rolfes N and Paredis C. (2024). A variable reference architecture for the management and configuration of ground vehicle simulations. Innovations in Systems and Software Engineering. 20:3. (185-207). Online publication date: 1-Sep-2024.

    https://doi.org/10.1007/s11334-022-00441-x

  • Stümpfle J, Jazdi N and Weyrich M. (2024). Tackling Erosion in Variant-Rich Software Systems: Challenges and Approaches. Procedia CIRP. 10.1016/j.procir.2024.06.033. 128. (633-637).

    https://linkinghub.elsevier.com/retrieve/pii/S221282712400742X

  • Krapf P, Berthier S and Levy N. (2023). Product Line Management with Graphical MBSE Views. Electronic Proceedings in Theoretical Computer Science. 10.4204/EPTCS.392.4. 392. (53-65).

    http://arxiv.org/abs/2310.20396v1

  • Hassan M, Mahdi A, Al-Sharhanee K, Ayad M, Shutnan W and Najim A. (2023). Designing a Prototype Smart Hotel with High Security, Solar Tracking, and IoT Lighting Control 2023 International Conference on Engineering Applied and Nano Sciences (ICEANS). 10.1109/ICEANS58413.2023.10630464. 979-8-3503-4197-3. (38-43).

    https://ieeexplore.ieee.org/document/10630464/

  • Rodriguez H, Muralidharan N, Siavashi F, Pantelic V, Bandur V, Lawford M and Paige R. (2023). An Automotive Architecture Product Line for E/E Powertrain Architectures 2023 ACM/IEEE International Conference on Model Driven Engineering Languages and Systems Companion (MODELS-C). 10.1109/MODELS-C59198.2023.00115. 979-8-3503-2498-3. (715-719).

    https://ieeexplore.ieee.org/document/10350414/

  • Zhu L, Lugaresi G and Matta A. (2023). Automated Generation of Digital Models for Production Lines Through State Reconstruction 2023 IEEE 19th International Conference on Automation Science and Engineering (CASE). 10.1109/CASE56687.2023.10260475. 979-8-3503-2069-5. (1-8).

    https://ieeexplore.ieee.org/document/10260475/

  • Pedone C, Hartley D, Darbin R and Clements P. (2022). Practical Experience Applying Feature‐based Product Line Engineering in a DevOps Environment: Achieving the Best of Both Worlds. INCOSE International Symposium. 10.1002/iis2.12950. 32:1. (579-593). Online publication date: 1-Jul-2022.

    https://incose.onlinelibrary.wiley.com/doi/10.1002/iis2.12950

  • Darbin R, Pitz R, Taylor M, Teaff J, Young B, Wilson B, Hartley D and Clements P. (2021). Feature‐based Product Line Engineering: An Essential Ingredient in Agile Acquisition. INCOSE International Symposium. 10.1002/j.2334-5837.2021.00880.x. 31:1. (956-971). Online publication date: 1-Jul-2021.

    https://incose.onlinelibrary.wiley.com/doi/10.1002/j.2334-5837.2021.00880.x

  • Kobayashi J, Way S, Krauss J and Clements P. (2021). Innovative Approaches to Superset Asset Templates using Feature‐Based Product Line Engineering. INCOSE International Symposium. 10.1002/j.2334-5837.2021.00867.x. 31:1. (754-763). Online publication date: 1-Jul-2021.

    https://incose.onlinelibrary.wiley.com/doi/10.1002/j.2334-5837.2021.00867.x

  • Luckow A, Klepsch J and Pichlmeier J. (2021). Quantum Computing: Towards Industry Reference Problems. Digitale Welt. 10.1007/s42354-021-0335-7. 5:2. (38-45). Online publication date: 1-Apr-2021.

    http://link.springer.com/10.1007/s42354-021-0335-7

  • Hartmann C, Welm M, Schreyer S, Hartmann C and Volk W. (2021). A Modular Car Body for Sustainable, Cost-Effective, and Versatile Vehicle Development. Technologies. 10.3390/technologies9010013. 9:1. (13).

    https://www.mdpi.com/2227-7080/9/1/13

  • Arifin H, Robert Ong H, Dai J, Daphne W and Chimplee N. (2021). Model-Based Product Line Engineering with Genetic Algorithms for Automated Component Selection. Complex Systems Design & Management. 10.1007/978-3-030-73539-5_23. (287-310).

    http://link.springer.com/10.1007/978-3-030-73539-5_23

  • Gregg S, Hartley D, McAfee M, Pitz R, Teaff J and Clements P. (2020). Patterns for Success in the Adoption and Execution of Feature‐based Product Line Engineering: A Report from Practitioners. INCOSE International Symposium. 10.1002/j.2334-5837.2020.00734.x. 30:1. (465-482). Online publication date: 1-Jul-2020.

    https://incose.onlinelibrary.wiley.com/doi/10.1002/j.2334-5837.2020.00734.x

  • Peldszus S, Strüber D and Jürjens J. (2020). Model-based security analysis of feature-oriented software product lines. ACM SIGPLAN Notices. 53:9. (93-106). Online publication date: 7-Apr-2020.

    https://doi.org/10.1145/3393934.3278126

  • Otten S, Glock T, Hohl C and Sax E. (2019). Model-based Variant Management in Automotive Systems Engineering 2019 International Symposium on Systems Engineering (ISSE). 10.1109/ISSE46696.2019.8984593. 978-1-7281-1783-6. (1-7).

    https://ieeexplore.ieee.org/document/8984593/

  • Bilic D, Brosse E, Sadovykh A, Truscan D, Bruneliere H and Ryssel U. An integrated model-based tool chain for managing variability in complex system design. Proceedings of the 22nd International Conference on Model Driven Engineering Languages and Systems Companion. (288-293).

    https://doi.org/10.1109/MODELS-C.2019.00045

  • Ebert R, Jolianis J, Kriebel S, Markthaler M, Pruenster B, Rumpe B and Salman K. Applying Product Line Testing for the Electric Drive System. Proceedings of the 23rd International Systems and Software Product Line Conference - Volume A. (14-24).

    https://doi.org/10.1145/3336294.3336318

  • Krueger C and Clements P. (2019). An Enterprise Feature Ontology for Feature‐Based Product Line Engineering. INSIGHT. 10.1002/inst.12244. 22:2. (34-42). Online publication date: 1-Aug-2019.

    https://incose.onlinelibrary.wiley.com/doi/10.1002/inst.12244

  • Nešić D, Nyberg M and Gallina B. Constructing product-line safety cases from contract-based specifications. Proceedings of the 34th ACM/SIGAPP Symposium on Applied Computing. (2022-2031).

    https://doi.org/10.1145/3297280.3297479

  • Wagemann T, Kolagari R and Schmid K. (2019). Exploring Automotive Stakeholder Requirements for Architecture Optimization Support 2019 IEEE International Conference on Software Architecture Companion (ICSA-C). 10.1109/ICSA-C.2019.00015. 978-1-7281-1876-5. (37-44).

    https://ieeexplore.ieee.org/document/8712356/

  • Kim J and Yang J. (2019). Practice of Hybrid Approach to Develop State-Based Control Embedded Software Product Line. Advanced Multimedia and Ubiquitous Engineering. 10.1007/978-981-13-1328-8_10. (75-82).

    http://link.springer.com/10.1007/978-981-13-1328-8_10

  • Nešić D and Nyberg M. (2019). Modular Safety Cases for Product Lines Based on Assume-Guarantee Contracts. Computer Safety, Reliability, and Security. 10.1007/978-3-030-26250-1_3. (28-40).

    http://link.springer.com/10.1007/978-3-030-26250-1_3

  • Peldszus S, Strüber D and Jürjens J. Model-based security analysis of feature-oriented software product lines. Proceedings of the 17th ACM SIGPLAN International Conference on Generative Programming: Concepts and Experiences. (93-106).

    https://doi.org/10.1145/3278122.3278126

  • Hayashi K and Aoyama M. A multiple product line development method based on variability structure analysis. Proceedings of the 22nd International Systems and Software Product Line Conference - Volume 1. (160-169).

    https://doi.org/10.1145/3233027.3233048

  • Hohl P, Stupperich M, Munch J and Schneider K. (2018). An Assessment Model to Foster the Adoption of Agile Software Product Lines in the Automotive Domain 2018 IEEE International Conference on Engineering, Technology and Innovation (ICE/ITMC). 10.1109/ICE.2018.8436325. 978-1-5386-1469-3. (1-9).

    https://ieeexplore.ieee.org/document/8436325/

  • Hohl P, Theobald S, Becker M, Stupperich M and Münch J. (2018). Mapping Agility to Automotive Software Product Line Concerns. Product-Focused Software Process Improvement. 10.1007/978-3-030-03673-7_32. (409-421).

    http://link.springer.com/10.1007/978-3-030-03673-7_32

  • Young B, Cheatwood J, Peterson T, Flores R and Clements P. Product Line Engineering Meets Model Based Engineering in the Defense and Automotive Industries. Proceedings of the 21st International Systems and Software Product Line Conference - Volume A. (175-179).

    https://doi.org/10.1145/3106195.3106220

  • Gregg S, Albert D and Clements P. Product Line Engineering on the Right Side of the "V". Proceedings of the 21st International Systems and Software Product Line Conference - Volume A. (165-174).

    https://doi.org/10.1145/3106195.3106219

  • Krueger C and Clements P. Enterprise Feature Ontology for Feature-based Product Line Engineering and Operations. Proceedings of the 21st International Systems and Software Product Line Conference - Volume A. (227-236).

    https://doi.org/10.1145/3106195.3106218

  • Krueger C and Clements P. (2017). An Enterprise Feature Ontology for Feature‐Based Product Line Engineering. INCOSE International Symposium. 10.1002/j.2334-5837.2017.00377.x. 27:1. (533-547). Online publication date: 1-Jul-2017.

    https://incose.onlinelibrary.wiley.com/doi/10.1002/j.2334-5837.2017.00377.x

  • Zhang X, Mohan N, Torngren M, Axelsson J and Chen D. (2017). Architecture exploration for distributed embedded systems: a gap analysis in automotive domain 2017 12th IEEE International Symposium on Industrial Embedded Systems (SIES). 10.1109/SIES.2017.7993377. 978-1-5386-3166-9. (1-10).

    http://ieeexplore.ieee.org/document/7993377/

  • Nešić D and Nyberg M. Multi-view modeling and automated analysis of product line variability in systems engineering. Proceedings of the 20th International Systems and Software Product Line Conference. (287-296).

    https://doi.org/10.1145/2934466.2946044

  • Smith N. (2016). How to Integrate Model-Based Systems Engineering across Automotive EE Domains SAE 2016 World Congress and Exhibition. 10.4271/2016-01-0005. .

    https://www.sae.org/content/2016-01-0005/

  • Amalfitano D, Simone V, Fasolino A, Lubrano M and Scala S. (2016). Introducing Software Product Lines in Model-Based Design Processes: An Industrial Experience 2016 13th Working IEEE/IFIP Conference on Software Architecture (WICSA). 10.1109/WICSA.2016.36. 978-1-5090-2131-4. (287-290).

    http://ieeexplore.ieee.org/document/7516848/

  • Brink C, Heisig P and Sachweh S. Using Cross-Dependencies During Configuration of System Families. Proceedings of the 16th International Conference on Product-Focused Software Process Improvement - Volume 9459. (439-452).

    https://doi.org/10.1007/978-3-319-26844-6_32