购买
下载掌阅APP,畅读海量书库
立即打开
畅读海量书库
扫码下载掌阅APP

参考文献

[1]PIASCIK R, VICKERS J, LOWRY D, et al.Technology area 12:Materials, structures, mechanical systems, and manufacturing road map[M].Washington, DC:NASA Office of Chief Technologist, 2010.

[2]GRIEVES M, VICKERS J.Digital twin:mitigating unpredictable, undesirable emergent behavior in complex system[M].Berlin, Germany:Springer-Verlag, 2017.

[3]GRIEVES M.Product lifecycle management:The new paradigm for enterprises[J].International Journal of Product Development, 2005, 2(1/2):71-84.

[4]GRIEVES M.Virtually perfect:Driving innovative and lean products through product lifecycle management[M].Florida:Space Coast Press, 2011.

[5]数字孪生体实验室.数字孪生体技术白皮书[R].北京:安世亚太科技股份有限公司,2020:6-10.

[6]TUGEL E J, INGRAFFEA A R, EASON T G, et al.Reengineering aircraft structural life prediction using a digital twin[J].International Journal of Aerospace Engineering.2011(1):54798.

[7]ROSEN R, VON W G, LO G, et al.About the importance of autonomy and digital twins for the future of manufacturing[J].IFAC-Papers OnLine.2015, 48(3):567-572.

[8]SCHLUSE M, ROSSMANN J.From Simulation to Experimentable Digital Twins Simulationbased Development and Operation of Complex Technical Systems[C].Edinburgh: IEEE, 2016:273-278.

[9]BRENNER B, HUMMEL V.Digital twin as enabler for an innovative digital shopfloor management system in the ESB logistics learning factory at Reutlingen-university[J].Procedia Manufacturing, 2017, 9:198-205.

[10]庄存波,刘检华,熊辉,等.产品数字孪生体的内涵、体系结构及其发展趋势[J].计算机集成制造系统,2017,23(4):753-768.

[11]SODERBERG R, WARMEFJORD K, CARLSON J S, et al.Toward a Digital Twin for real-time geometry assurance in individualized production[J].CIRP Annals-Manufacturing Technology, 2017, 66(1):137-140.

[12]BRUYNSEELS K, DE SIO F S, VAN DEN HOVEN J.Digital Twins in health care: ethical implications of an emerging engineering paradigm[J].Frontiers in Genetics, 2018, 9:1-11.

[13]SCHLUSE M, PRIGGEMEYER M, ATORF L, et al.Experimentable digital twins-streamlining simulation-based systems engineering for industry 4.0[J].IEEE Transactions on Industrial Informatics, 2018, 14(4):1722-1731.

[14]LENG J W, Zhang H, Yan D X, et al.Digital twin-driven manufacturing cyber-physical system for parallel controlling of smart workshop[J].Journal of Ambient Intelligence And Humanized Computing, 2019, 10(3):1155-1166.

[15]TAO F, CHENG J F, QI Q L, et al.Digital twin-driven product design, manufacturing and service with big data[J].The International Journal of Advanced Manufacturing Technology, 2018, 94(9/12):3563-3576.

[16]HE Y, GUO J C, ZHENG X L.From surveillance to digital twin:challenges and recent advances of signal processing for industrial internet of things[J].IEEE Signal Processing Magazine, 2018, 35(5):120-129.

[17]KAEWUNRUEN S, RUNGSKUNROCH P, WELSH J.A digital-twin evaluation of Net Zero Energy Building for existing buildings[J].Sustainability, 2018, 11(1):159.

[18]LUO W C, HU T L, Zhang C R, et al.Digital twin for CNC machine tool:modeling and using strategy[J].Journal of Ambient Intelligence And Humanized Computing, 2019, 10(3):1129-1140.

[19]NIKOLAKIS N, ALEXOPOULOS K, XANTHAKIS E, et al.The digital twin implementation for linking the virtual representation of human-based production tasks to their physical counterpart in the factory-floor[J].International Journal of Computer Integrated Manufacturing, 2019, 32(2):1-12.

[20]WANG J J, YE L K, GAO R X, et al.Digital Twin for rotating machinery fault diagnosis in smart manufacturing[J].International Journal of Production Research, 2019, 57(12):3920-3934.

[21]XU Y, SUN Y, LIU X, et al.A digital-twin-Assisted fault diagnosis using deep transfer learning[J].IEEE Access, 2019, 7:19990-19999.

[22]LIU J F, ZHOU H, LIU X, et al.Dynamic evaluation method of machining process planning based on digital twin[J].IEEE Access, 2019, 7:19312-19323.

[23]MADNI A, MADNI C, LUCERO S.Leveraging digital twin technology in model-based systems engineering[J].Systems, 2019, 7(1):7.

[24]LIU Q, LIU B, WANG G, et al.A comparative study on digital twin models[J].AIP Conference Proceedings, 2019, 2073(1):020091.

[25]FOTLAND G, HASKINS C, ROLVAG T.Trade study to select best alternative for cable and pulley simulation for cranes on offshore vessels[J].Systems Engineering, 2019, 23(2):177-188.

[26]WANG P, YANG M, PENG Y, et al.Sensor control in anti-submarine warfare-a digital twin and random finite sets based approach[J].Entropy, 2019, 21(8):767.

[27]ALEXOPOULOS K, N NIKOLAKIS, G CHRYSSOLOURIS.Digital twin-driven supervised machine learning for the development of artificial intelligence applications in manufacturing[J].International Journal of Computer Integrated Manufacturing, 2020, 33(5):429-439.

[28]MELESSE T Y, DI P, RIEMMA S.Digital twin models in industrial operations: a systematic literature review[J].Procedia Manufacturing, 2020, 42:267-272.

[29]LU Y Q, LIU C, WANG K I, et al.Digital twin-driven smart manufacturing: connotation, reference model, applications and research issues[J].Robotics and Computer-Integrated Manufacturing, 2020, 61:101837.

[30]刘大同,郭凯,王本宽,等.数字孪生技术综述与展望[J].仪器仪表学报,2018,39(11):1-10.

[31]陶飞,张贺,戚庆林,等.数字孪生十问:分析与思考[J].计算机集成制造系统,2020,26(1):1-17.

[32]TAO F, QI Q L, WANG L H, et al.Digital twins and cyber-physical systems toward smart manufacturing and industry 4.0:correlation and comparison[J].Engineering, 2019, 5(4):653-661.

[33]乔洁.基于半物理仿真驱动的客运车辆关键性能虚拟测试技术研究[D].西安:长安大学,2020.

[34]吴双.半物理仿真系统现状及发展趋势[J].工业仪表与自动化装置,2016,248(2):16-20.

[35]张楠.“元宇宙”赋能工业创新架构发展[J].中关村,2022,(3):56-59.

[36]杨林瑶,陈思远,王晓,等.数字孪生与平行系统:发展现状、对比及展望[J].自动化学报,2019,45(11):2001-2031.

[37]张俊,许沛东,王飞跃.平行系统和数字孪生的一种数据驱动形式表示及计算框架[J].自动化学报,2020,46(7):1346-1356.

[38]戴晟,赵罡,于勇,等.数字化产品定义发展趋势:从样机到孪生[J].计算机辅助设计与图形学学报,2018,30(8):1554-1562.

[39]樊留群,丁凯,刘广杰.智能制造中的数字孪生技术[J].制造技术与机床,2019(7):61-66.

[40]胡虎,赵敏,宁振波,等.三体智能革命[M].北京:机械工业出版社,2016.

[41]王建军,向永清,何正文.基于数字孪生的航天器系统工程模型与实现[J].计算机集成制造系统,2019,25(6):1348-1360.

[42]王文跃,侯俊杰,毛寅轩,等.面向复杂产品研制的MBSE体系架构及其发展趋势研究[J].控制与决策,2022,37(12):3073-3082.

[43]周军华,薛俊杰,李鹤宇,等.关于武器系统数字孪生的若干思考[J].系统仿真学报,2020,32(4):539-552.

[44]施战备,秦成,张锦存,等,数物融合-工业互联网重构数字企业[M].北京:人民邮电出版社出版,2020.

[45]高天虹,张为民,谢树联,等.基于RAMI4.0的交钥匙工程制造系统功能单元资产管理壳模型[J].机械制造,2021,59(6):1-6.

[46]岳磊,刘丹,方毅芳.工业4.0组件中的资产管理壳[J].中国仪器仪表,2017(12):55-60.

[47]翁竞.壳牌勘探工程公司固定资产管理信息系统的设计与实现[D].成都:电子科技大学,2015. 3BzsiSOpjWm+Bcqo8Kwn0bO7aon2JOTAyGKlXYbY/NGuZLyqmQyrnYlpIYZksTZj

点击中间区域
呼出菜单
上一章
目录
下一章
×