行为与运作管理系

宋文燕
教授

songwenyan@buaa.edu.cn

教师个人主页

个人简介:(English)

北航经济管理学院教授、博士生导师、硕士生导师,上海交通大学工学博士,德国慕尼黑工业大学(Technische Universität München)博士后,入选中国高被引学者(管理科学与工程学科),全球前2%顶尖科学家,“北航青年拔尖人才支持计划”;北航优秀硕士论文指导教师;长期从事产品/服务系统、数字化服务型制造、可持续运营管理、质量与可靠性管理等理论及应用研究;逐步发展并完善了产品服务系统大规模定制理论与方法、面向全生命周期的可持续运营决策方法;先后授权多项国家发明专利,包括产品设计知识匹配方法、产品多维故障与失效数据处理方法与系统、新能源汽车动力电池系统失效评估方法及装置、产品服务系统需求交互关系识别方法等;面向智能服务实践,先后开发了工业服务个性化推荐系统、产品服务系统智能失效模式和影响分析系统,并获多项软件著作权。作为核心成员,撰写3项国家制造强国建设战略咨询委员会委托的咨询报告与政策建议,其中一项获工信部优秀智库研究成果一等奖。

截止目前,已发表学术论文70余篇,其中60多篇发表在Int. J. Oper. Prod. Man., Eur. J. Oper. Res., IEEE. T. Eng. Manage., IEEE T. Reliab., Reliab. Eng. Syst. Safe., Int. J. Prod. Res., CIRP Ann.- Manuf. Techn., Renew. Sust. Energ. Rev.等国际SCI/SSCI期刊上;在国际知名出版社Springer独立出版英文学术专著1部,在机械工业出版社等出版著作、教材3部;相关成果被美国国家工程院院士、IEEE Fellow、CIRP Fellow等国际知名学者广泛引用,Google Scholar数据库中被引2800余次,H因子为29;在智能制造服务领域,授权/公开国家发明专利多项;主持国家重点研发计划课题、国家自然科学基金等国家级项目3项,承担国家科技重大专项子专题研究任务、国家自然科学基金重点项目子课题等3项。作为核心成员,主导完成上海贝尔、三菱电梯、中国商飞、上海电气、上海电力、中钞油墨、泛亚汽车等多项产学研项目。

常年担任IEEE T. Reliab., Int. J. Prod. Res., Int. J. Prod. Econ.等近30家国际SCI/SSCI期刊的通讯评审专家;担任中国服务型制造联盟专家、中国自动化学会3D打印与社会制造专委会委员、国际生产工程科学院(CIRP)工业产品服务系统国际会议学术委员会成员(Scientific Committee Member)、《中国机械工程》期刊智能制造服务专辑编委;国内外学术合作较广,与德国、瑞典、加拿大、香港等地学者建立了良好的学术合作联系。

指导的学生曾获得国家奖学金、北京市优秀毕业生、北航博士生卓越学术基金、北航优秀硕士毕业论文、北航研究生优秀学术论文奖、北航优秀毕业生荣誉称号;指导的学生毕业后,赴国内外知名高校(荷兰Eindhoven University of Technology、清华大学等)继续深造,或获得国内211大学等高校教职,或进入世界500强公司等知名企业工作。

欢迎对交叉学科(管理、金融、计算机、信息、制造)研究、数据分析与决策感兴趣的学生报考。

研究兴趣:

产品服务系统、数字化服务型制造、可持续运营管理(可持续供应链管理、项目管理、质量管理等)、创新管理与创新方法等。

主要科研项目:

[1]自贸区综合科技服务平台架构及关键技术研究,国家重点研发计划课题(2019YFB1405502), 2019/12-2022/11,主持。

[2]动态情境下产品服务系统的自适应配置与主动推送方法研究, 国家自然科学基金面上项目(71971012),2020/01-2023/12, 主持。

[3]考虑交互与冲突的产品服务系统需求管理方法研究,国家自然科学基金青年基金项目(71501006,后评估“优秀”),2016/01-2018/12,主持。

[4]可持续产品服务系统,“北航青年拔尖人才支持计划项目”,2017/12-2020/12,主持。

[5]XXXX自主研发体系基础和应用研究,国家科技重大专项项目子专题,2018/08-2021/07,主持。

[6]面向科技型中小企业的创新方法公共服务平台,科技部创新方法工作专项(2015IM020300),2015.10-2017.10,参加。

[7]基于物联网的工程机械产品智能化服务云平台,上海市经济和信息化委员会资助项目,2013.10-2015.09,参加。

[8]电梯维保创新服务平台,上海市发展和改革委员会服务业发展引导资金支持项目,2013.1-2016.12,参加。

[9]民用飞机全寿命维修服务模式与关键技术研究和应用,上海市科委科技创新行动计划项目,2011.09-2013.09,参加。

主讲课程:

本科生:技术创新管理、质量管理;

研究生:生产与运作管理、技术与产品创新管理(MBA)、项目质量管理、质量管理;

留学生:Operations Research(英文)

部分SCI/SSCI国际期刊论文:Google scholar

复杂产品/服务系统领域部分论文(*为通讯作者

[1]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类)

[2]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)

[3]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)

[4]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)

[5]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)

[6]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)

[7]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)

[8]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)

[9]Song, W.* (2017). Requirement management for product-service systems: status review and future trends.Computers in Industry,85, 11-22.(Q2区)

[10]Song, W.*, & Sakao, T. (2016). Service conflict identification and resolution for design of product–service offerings.Computers & Industrial Engineering,98, 91-101.(Q1区)

[11]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)

[12]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)

[13]Song, W.*, & Chan, F. T. (2015). Multi-objective configuration optimization for product-extension service.Journal of Manufacturing Systems,37, 113-125.(Q1区)

[14]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)

[15]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)

[16]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)

[17]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)

[18]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)

[19]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)

可持续运营管理领域部分论文

[20]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)

[21]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)

[22]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)

[23]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)

[24]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)

[25]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)

[26]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)

[27]Song, W.*, Zhu, Y., & Zhao, Q. (2020). Analyzing barriers for adopting sustainable online consumption: A rough hierarchical DEMATEL method.Computers & Industrial Engineering, 140, 106279.

[28] 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)

For more, visthttps://www.researchgate.net/profile/Wenyan_Song2

【学术服务】

中国运筹学会随机服务与运作管理分会理事;

国际生产工程科学院(CIRP)第十届工业产品服务系统(IPS2)国际会议Scientific Committee Member,瑞典;

常年担任近30家国际SCI/SSCI期刊的审稿人,包括:

International Journal of Production Economics, IEEE Transactions on Reliability, Energy, Reliability Engineering and System Safety, International Journal of Production Research,Advanced Engineering Informatics,Applied Soft Computing,Journal of Cleaner Production,Computers & Industrial Engineering, Journal of Intelligent Manufacturing, Soft Computing, Journal of Engineering Design, Concurrent Engineering: Research and Applications, Quality and Reliability Engineering International, Computers in Industry, Total Quality Management & Business Excellence等。