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数字孪生连接交互理论与关键技术 被引量:83

Theory and key technologies of digital twin connection and interaction
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摘要 数字孪生作为实现信息物理融合的重要使能技术,备受各行各业广泛关注。基于虚实交互和数模驱动,数字孪生能满足仿真(以虚映实)、控制(以虚控实)、预测(以虚预实)、优化(以虚优实)等应用服务需求,其中连接与交互是实现数字孪生动态运行和虚实空间高效融合的核心关键。针对数字孪生连接交互如何理解与实现的问题,首先从内外两层阐述了数字孪生连接交互内涵,进而提出“准确—实时—一致—安全—可靠”连接交互准则。在此基础上,从“感知—通信—映射—联动—融合”五方面探索建立了一套数字孪生连接交互理论体系,分析了数字孪生连接交互关键技术。基于数字孪生连接交互理论与方法研究,结合笔者前期在物理实体、数字孪生模型、数字孪生数据和服务的相关研究工作基础,进一步探究并丰富了数字孪生五维模型理论体系,以期为数字孪生的理论研究和应用落地提供系列理论和方法参考。 Digital twin, which strives to realize cyber-physical fusion, has made giant strides with its widely applications in various fields. However, a vital issue when utilizing digital twin is how to realize data connection and interaction. To tackle this problem, the connotation and criterion of digital twin connection and interaction were first introduced. Then, a theoretical system of digital twin connection and interaction was proposed from five aspects, including perception, communication, physical-virtual mapping, data-model coupling and fusion. Furthermore, the key technologies from the above five aspects were discussed in detail. Combined with the research on physical entity, digital twin modeling, digital twin data and digital twin service, a theoretical system based on five-dimension digital twin model was enriched, expecting to provide references for the construction and application of digital twin.
作者 陶飞 马昕 戚庆林 刘蔚然 张贺 张辰源 TAO Fei;MA Xin;QI Qinglin;LIU Weiran;ZHANG He;ZHANG Chenyuan(School of Automation Science and Electrical Engineering,Beihang University,Beijing 100191,China;Digital Twin Research Center,International Research Institute for Multidisciplinary Science,Beihang University,Beijing 100191,China;School of Mechanical Engineering and Automation,Beihang University,Beijing 100191,China)
出处 《计算机集成制造系统》 EI CSCD 北大核心 2023年第1期1-10,共10页 Computer Integrated Manufacturing Systems
基金 国家自然科学基金资助项目(52120105008,52005024)。
关键词 数字孪生 连接 虚实交互 虚实映射 数模联动 交互融合 digital twin connection physical-virtual interaction physical-virtual mapping data-model coupling interaction fusion
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