部分SCI/SSCI国际期刊论文:(Google scholar)
(*标为通讯作者)
[1]Song, W*., & Zhu, Y. (2025).Strategic Configurations of Digital Technologies and Servitization Business Model Components. Journal of Information Technology, https://doi.org/10.1177/02683962251340700 . (ABS 4)
[2]Song, W., Han, Y. H., & Sroufe, R. (2022). Substitution and complementarity dynamics in configurations of sustainable management practices. International Journal of Operations & Production Management, 42(11), 1711-1731. (ABS 4)
[3]Zhou, C., Song, W*, Wang, H., & Wang, L. (2025). Identifying Hidden Critical Elements in Interconnected Systems: An Influence Dynamics Analysis Approach Considering Structural Constraints. European Journal of Operational Research. (ABS 4)
[4]Wang, Q., Jia, G., & Song, W.*(2022). Identifying critical factors in systems with interrelated components: A method considering heterogeneous influence and strength attenuation. European Journal of Operational Research. DOI:10.1016/j.ejor.2022.02.012 (ABS 4, FMS A)
[5]Song, W.*, Zheng, J., Niu, Z., Wang, Q., Tang, Y., & Zheng, P. (2022). Risk evaluation for industrial smart product-service systems: An integrated method considering failure mode correlations.Advanced Engineering Informatics, 54, 101734. (Q1区)
[6]Song, W.*, Li, J., Li, H., & Ming, X. (2020). Human factors risk assessment: An integrated method for improving safety in clinical use of medical devices. Applied Soft Computing, 86, 105918. (Q1区,中科院TOP)
[7]Song, W.*, Rong, W., & Tang, Y. (2024). Quantifying risk of service failure in customer complaints: A textual analysis-based approach. Advanced Engineering Informatics, 60, 102377.(Q1区)
[8]Song, W.*, Niu, Z., & Zheng, P. (2021). Design concept evaluation of smart product-service systems considering sustainability: An integrated method. Computers & Industrial Engineering, 159, 107485. (Q1区)
[9]Wang, X., Fang, H., & Song, W.*(2020). Technical attribute prioritisation in QFD based on cloud model and grey relational analysis. International Journal of Production Research, 58(19), 5751-5768. (ABS 3,Q1区)
[10]Song, W., & Sakao, T. (2018). An environmentally conscious PSS recommendation method based on users' vague ratings: A rough multi-criteria approach. Journal of Cleaner Production, 172, 1592-1606. (Q1区, 影响因子5.715)
[11]Song, W.*, & Sakao, T. (2017). A customization-oriented framework for design of sustainable product/service system. Journal of Cleaner Production, 140, 1672-1685. (Q1区, 影响因子5.715)
[12]Song, W.*, & Cao, J. (2017). A rough DEMATEL-based approach for evaluating interaction between requirements of product-service system. Computers & Industrial Engineering, 110,353-363. (Q1区)
[13]Sakao, T., Song, W., & Matschewsky, J. (2017). Creating service modules for customising product/service systems by extending DSM. CIRP annals- Manufacturing Technology, 66(1), 21-24. (Q1区)
[14]Song, W.* (2017). Requirement management for product-service systems: status review and future trends. Computers in Industry, 85, 11-22. (Q2区)
[15]Song, W.*, & Sakao, T. (2016). Service conflict identification and resolution for design of product–service offerings. Computers & Industrial Engineering, 98, 91-101. (Q1区)
[16]Song, W.*, Cao, J., & Zheng, M. (2016). Towards an integrative framework of innovation network for new product development project. Production Planning & Control, 27(12): 967-978. (Q1区)
[17]Song, W.*, Wu, Z., Li, X., & Xu, Z. (2015). Modularizing product extension services: An approach based on modified service blueprint and fuzzy graph. Computers & Industrial Engineering, 85, 186-195. (Q1区)
[18]Song, W.*, & Chan, F. T. (2015). Multi-objective configuration optimization for product-extension service. Journal of Manufacturing Systems, 37, 113-125. (Q1区)
[19]Song, W.*, Ming, X., Han, Y., Xu, Z., & Wu, Z. (2015). An integrative framework for innovation management of product–service system. International Journal of Production Research, 53(8), 2252-2268. (Q1区)
[20]Song, W.*, Ming, X., & Han, Y. (2014). Prioritising technical attributes in QFD under vague environment: a rough-grey relational analysis approach. International Journal of Production Research, 52(18), 5528-5545. (Q1区)
[21]Song, W.*, Ming, X., Han, Y., & Wu, Z. (2013). A rough set approach for evaluating vague customer requirement of industrial product-service system. International Journal of Production Research, 51(22), 6681-6701. (Q1区)
[22]Li, J., Fang, H., & Song, W.* (2019). Modified failure mode and effects analysis under uncertainty: A rough cloud theory-based approach. Applied Soft Computing, 78, 195-208. (Q1区)
[23]Wang, Q., Jia, G., Jia, Y., & Song, W*. (2021). A new approach for risk assessment of failure modes considering risk interaction and propagation effects. Reliability Engineering & System Safety, 216, 108044. (FMS A类,中科院一区TOP)
[24]Fang, H., Li, J., & Song, W*.(2020). A new method for quality function deployment based on rough cloud model theory. IEEE transactions on engineering management. (FMS A类)
[25]Song, W., Xu, Z., & Liu, H. C. (2017). Developing sustainable supplier selection criteria for solar air-conditioner manufacturer: An integrated approach. Renewable and Sustainable Energy Reviews, 79, 1461-1471. (中科院一区TOP期刊,JCR Q1区,影响因子8.050)
[26]Fang, H., Li, J., & Song, W*. (2018). Sustainable site selection for photovoltaic power plant: An integrated approach based on prospect theory. Energy Conversion and Management, 174, 755-768. (中科院一区TOP期刊,JCR Q1区,影响因子6.377)
[27]Song, W., Ming, X., & Liu, H. C. (2017). Identifying critical risk factors of sustainable supply chain management: A rough strength-relation analysis method. Journal of Cleaner Production,143,100–115. (JCR Q1区,影响因子5.715)
[28]Li, J., Fang, H., & Song, W*. (2018). Sustainability evaluation via variable precision rough set approach: a photovoltaic module supplier case study. Journal of Cleaner Production, 192, 751-765.(JCR Q1区,影响因子5.715)
[29]Song, W.*, Ming, X., & Xu, Z. (2013). Risk evaluation of customer integration in new product development under uncertainty. Computers & Industrial Engineering, 65(3), 402-412. (JCR Q1区)
[30]Liu, H-C., You, J., Song, W*. (2017). Failure Mode and Effect Analysis using Cloud Model Theory and PROMETHEE Method. IEEE Transactions on Reliability,66(4), 1058-1072. (JCR Q1区)
[31]Song, W.*, Ming, X., Wu, Z., & Zhu, B. (2014). A rough TOPSIS approach for failure mode and effects analysis in uncertain environments. Quality and Reliability Engineering International, 30(4), 473-486. (JCR Q2区)
[32]Song, W.*, Zhu, Y., & Zhao, Q. (2020). Analyzing barriers for adopting sustainable online consumption: A rough hierarchical DEMATEL method. Computers & Industrial Engineering, 140, 106279.(Q1区)
[33] Liu, L., Song, W.*, & Han, W. (2020). How sustainable is smart PSS? An integrated evaluation approach based on rough BWM and TODIM. Advanced Engineering Informatics, 43, 101042. (JCR Q1区)
[34] Liu, L., Song, W.*, & Liu, Y. (2023). Leveraging digital capabilities toward a circular economy: Reinforcing sustainable supply chain management with Industry 4.0 technologies. Computers & Industrial Engineering, 178, 109113.(ESI高被引论文,JCR Q1区)
部分授权国家发明专利及软件著作权:
[1] 宋文燕,汤宇琦,周才博,牛子璇,郑嘉宁;基于互联网评论挖掘的失效模式风险评估方法及系统,2025-07-21,ZL202111210448.2(国家发明专利)
[2] 宋文燕,刘羚迪,朱玥,周才博,郑嘉宁;智能产品服务系统与供应商协同配置方法,2023-04-28,ZL202210227233.X(国家发明专利)
[3] 宋文燕,何思锐,郑嘉宁,汤宇琦,周才博;新能源汽车动力电池系统失效模式的风险评估方法及装置,2022-04-19,ZL202210119973.1(国家发明专利)
[4] 宋文燕,汤宇琦,李姗姗,周才博,郑嘉宁,张辉;一种基于用户画像和情境的科技资源推荐方法及系统,2022-10-28 ,ZL 202110271266.X(国家发明专利)
[5] 黄琳,宋文燕,王丽亚;一种识别产品相关服务需求间交互关联关系的方法,2022-05-20,ZL202010568648.4(国家发明专利)
[6] 宋文燕,何思锐,郑嘉宁,汤宇琦,周才博;面向产品服务系统的智能失效模式和影响分析系统,2022-01-23,2022SR0444639(软件著作权)
[7] 宋文燕;考虑属性关联的工业产品服务个性化推荐系统,2017,2017SR028308(软件著作权)