(1) Qi Wang, Dunbing Tang, Leilei Yin, Miguel A. Salido, Adriana Giret, Yuchun Xu. Bi-objective optimization for lowcarbon product family design. Robotics and Computer-Integrated Manufacturing, 2016, 41: 53-65.
(2) Dunbing Tang, Qi Wang, Inayat Ullah. Optimisation of product configuration in consideration of customer satisfaction and low carbon. International Journal of Production Research, 2017, 55(12): 3349-3373.
(3) Qi Wang, Dunbing Tang, Leilei Yin, Inayat Ullah, Libin Tan, Tao Zhang. An optimization model for low carbon oriented modular product platform planning (MP3). International Journal of Precision Engineering and Manufacturing-Green Technology,2018, 5: 121-132.
(4) Qi Wang, Dunbing Tang, Leilei Yin, Inayat Ullah, Miguel A. Salido, Adriana Giret. An optimization method for coordinating supplier selection and low-carbon design of product family. International Journal of Precision Engineering and Manufacturing, 2018, 19(11): 1715-1726.
(6) Qi Wang, Dunbing Tang, Shipei Li, Jun Yang, Miguel A. Salido, Adriana Giret, Haihua Zhu. An optimization approach for the coordinated low-carbon design of product family and remanufactured products. Sustainability, 2019, 11(2), 460.
(7) Qi Wang,peipei Qi, shipei Li. A Concurrence Optimization Model for Low-Carbon Product Family Design and the Procurement Plan of Components under Uncertainty. Sustainability, 2021, 13, 10764.
(8) Qi Wang, Peipei Qi. An uncertain optimization model for low-carbon product family design.Frontiers in Artificial Intelligence and Applications, 2022, 347: 80-87.
(9) Qi Wang, Dunbing Tang, Leilei Yin, Jun Yang. A Method for Green Modular Design Considering Product Platform Planning Strategy. Procedia CIRP, 2016, 56:40-45.
(10) Dunbing Tang, Leilei Yin, Qi Wang, et al. Workload-based change propagation analysis in engineering design. Concurrent Engineering: Research and Applications, 2016, 24(1): 17-34.
(11) Inayat Ullah, Dunbing Tang, Qi Wang, Leilei Yin. Exploring effective change propagation in a product family design. ASME: Journal of Mechanical Design, 2017, 132(12): 121101011-121100113.
(12) LeiLei Yin, Dunbing Tang, Qi Wang, Inayat Ullah, et al. Engineering change management of product design using model-based definition technology. ASME: Journal of Computing and Information Science in Engineering, 2017, 17: 041006.1-041006.19.
(13) Inayat Ullah, Dunbing Tang, Qi Wang, et al. Least Risky Change Propagation Path Analysis in Product Design Process. Systems Engineering, 2017, 20(4):379-391.
(14) Inayat Ullah, Dunbing Tang, Qi Wang, et al. Exploring Effective Change Propagation in a Product Family Design. Journal of Mechanical Design, 2017, 132(12):121101(13pages).
(15) Inayat Ullah, Dunbing Tang, Qi Wang, et al. Managing engineering change requirements during the product development process. Concurrent Engineering Research & Applications, 2018, 26(2): 171-186.
(16) LeiLei Yin, Dunbing Tang, Inayat Ullah, Qi Wang , et al. Analyzing engineering change of aircraft assembly tooling consindering both duration and resource consumption. Advanced Engineering Informatics, 2017, 33: 44-59.
(17) Libin Tan, Dunbing Tang, Qi Wang, et al. Open Design Pattern, Method, and its Self-organization Mechanism, Procedia Cirp, 2016, 56:34-39.
(18) Shipei Li, Dunbing Tang, JunYang, Qi Wang A novel approach for capturing and evaluating dynamic consumer requirements in open design, Advanced Engineering Informatics, 2019, 39: 95-111.
(19) Inayat Ullah, Dunbing Tang, Leilei Yin, Ishfaq Hussain, Qi Wang. Cost-effective propagation paths for multiple change requirements in the product design. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, DOI: 10.1177/0954406217707788