本文来源:转载自 《 智造苑 》 及《 数字化企业 》
导 读 ( 文/ 引自 《数字孪生及车间实践》 作者:陶飞、戚庆林、张萌、程江峰, 该书正在编审环节中,即将出版 )
当前,世界正处于百年未有之大变局,在变局和危机中,各行各业转型升级的需求十分迫切。数字化转型和智能化升级已经成为释放巨大发展动能的关键因素,也成为了各国关于未来全球发展的 共识 。
作者简介 : 本文改编自《数字孪生及车间实践》(作者:陶飞,戚庆林,张萌,程江峰)。由清华大学出版社-智造苑原创, 数字孪生DigitalTwin 公众号经授权发布。本文头图来自ansys。
01
哪里来?
数字孪生的起源
02
是什么?
数字孪生概念
参考文献
[1] Tao, Fei, Qi Qinglin. Make more digital twins. Nature, 2019, 573: 490-491.
[2] 陶飞, 张贺,戚庆林,等. 数字孪生模型构建理论及应用[J]. 计算机集成制造系统, 2021, 27(01): 1-15.
[3] Grieves M, Vickers J. Digital twin: Mitigating unpredictable, undesirable emergent behavior in complex systems[M]. Transdisciplinary perspectives on complex systems. Springer, Cham, 2017: 85-113.
[4] Shafto M, Conroy M, Doyle R, et al. Draft modeling, simulation, information technology & processing roadmap, National Aeronautics and Space Administration, 2010.
[5] Shafto M, Conroy M, Doyle R, et al. Modeling, simulation, information technology & processing roadmap[J]. National Aeronautics and Space Administration, 2012.
[6] Glaessgen E, Stargel D. The digital twin paradigm for future NASA and US Air Force vehicles[C]. In: Proceedings of the 53rd AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference 20th AIAA/ASME/AHS Adaptive Structures Conference 14th AIAA; 2012 Apr 23-26; Honolulu, Hawaii, USA.
[7] Grieves M. Digital twin: manufacturing excellence through virtual factory replication[J]. White paper, 2014, 1: 1-7.
[8] Qi Q, Tao F, Zuo Y, et al. Digital twin service towards smart manufacturing[J]. Procedia Cirp, 2018, 72: 237-242.
[9] Gartner. Top 10 Strategic Technology Trends for 2019 [EB/OL]. https://www.gartner.com/smarterwithgartner/gartner-top-10-strategic-technology-trends-for-2 019/
[10] 陶飞, 张萌, 程江峰, 等. 数字孪生车间——一种未来车间运行新模式[J]. 计算机集成制造系统, 2017, 23(1): 1-9
[11] 陶飞, 刘蔚然, 张萌, 等. 数字孪生五维模型及十大领域应用[J]. 计算机集成制造系统, 2019, 25(1): 1-18
[12] Qi Q, Tao F, Hu T, et al. Enabling technologies and tools for digital twin[J]. Journal of Manufacturing Systems, 2021, 58: 3-21
[13] 陶飞, 马昕, 胡天亮, 等. 数字孪生标准体系[J]. 计算机集成制造系统, 2019, 25(10): 2405-2418.
[14] 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, 26(1): 1-17.
[15] 我为十四五建言丨中国工程院院士赵沁平:发展数字孪生互联网络 支撑虚拟现实 深度应用. Available from: https://mp.weixin.qq.com/s/h785pKqCMqqw_NyINCqijg
[16]李 培 根 . 浅 说 数 字 孪 生 . Available from: http://www.360doc.com/content/20/0811/15/15624612_929661656.shtml
[17]赵敏, 宁振波. 什么是数字孪生?终于有人讲明白了. Available from: https://www.sohu.com/a/404962583_115128?_f=index_pagefocus_5
[18] Gockel B, Tudor A, Brandyberry M, et al. Challenges with structural life forecasting using realistic mission profiles[C]. In: Proceedings of 53rd AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference 20th AIAA/ASME/AHS Adaptive Structures Conference 14th AIAA. 2012: 1813.
[19] Corral-Acero J, Margara F, Marciniak M, et al. The ‘Digital Twin’to enable the vision of precision cardiology[J]. European Heart Journal, 2020, DOI: 10.1093/eurheartj/ehaa159
[20] Lu Q, Xie X, Heaton J, et al. From BIM towards digital twin: Strategy and future development for smart asset management[C]. In: Proceedings of International Workshop on Service Orientation in Holonic and Multi-Agent Manufacturing. Springer, Cham, 2019: 392-404.
[21] Malozemov A A, Bondar V N, Egorov V V, et al. Digital twins technology for internal combustion engines development[C]//2018 Global Smart Industry Conference (GloSIC). IEEE, 2018: 1-6.
[22] Verner I, Cuperman D, Fang A, et al. Robot online learning through digital twin experiments: a weightlifting project[M]. Online Engineering & Internet of Things. Springer, Cham, 2018: 307-314.
[23] Coronado P D U, Lynn R, Louhichi W, et al. Part data integration in the Shop Floor Digital Twin: Mobile and cloud technologies to enable a manufacturing execution system[J]. Journal of Manufacturing Systems, 2018, 48: 25-33.
[24] Stark R, Kind S, Neumeyer S. Innovations in digital modelling for next generation manufacturing system design[J]. CIRP Annals, 2017, 66(1): 169-172.
[25] Weber C, Ko?nigsberger J, Kassner L, et al. M2DDM–a maturity model for data-driven manufacturing[J]. Procedia CIRP, 2017, 63: 173-178.
[26] SIEMENS. Digital Twin. Available from: https://www.plm.automation.siemens.com/global/zh/our-story/glossary/digital-twin/24465
[27] GE Digital, Digital Twins: The Bridge between Industrial Assets and the Digital World (2017). Available from: https://www.ge.com/digital/blog/digital-twins-bridge-between-industrial-assets-and-digital-w orld.
[28] 基于 ANSYS 平台的数字孪生. http://www.peraglobal.com/content/details_155_20903.html
[29] PTC, Digital Twin. Available from: https://www.ptc.com/en/digital-transformation/service/digital-twin-service
[30] Azure 数字孪生. https://azure.microsoft.com/zh-cn/services/digital-twins/
[31] Dassault Syste?mes, Dassault Syste?mes Sponsors Digital Twin White Paper as Strategy to Extend Virtual World of Design to Real World of Manufacturing. Available from: http://www.apriso.com/library/Whitepaper_Dr_Grieves_DigitalTwin_ManufacturingExcellen ce.php
[32] Stark R, Kind S, Neumeyer S. Innovations in digital modelling for next generation manufacturing system design[J]. CIRP Annals, 2017, 66(1): 169-172.
[33] D. Ammermann, Digital Twins and the Internet of Things (IoT). Available from: https://blogs.sap.com/2017/09/09/digital-twins-and-the-internet-of-things-iot/
end
本文来源: 转载自《智造苑》及《数字化企业》
原文地址:
https://mp.weixin.qq.com/s/7FshSn7dEadM9Y3pB6n9ug
https://mp.weixin.qq.com/s/OKQIjJybSfHiXA3rRwKm7w
汇聚、分享、交流、碰撞
关于 论文介绍、成果发布、会议推广、企业进展、 Call for Papers 、团队介绍 、论文推荐、科研交流等,请与我们联系。
Email:digital_twin@126.com
下一篇:一文看懂什么是数字孪生