A Digital Shadow cloud-based application to enhance quality control in manufacturing

被引:4
作者
Santolamazza, Annalisa [1 ]
Groth, Corrado [1 ]
Introna, Vito [1 ]
Porziani, Stefano [1 ]
Scarpitta, Francesco [1 ]
Urso, Giorgio [1 ]
Valentini, Pier Paolo [1 ]
Costa, Emiliano [2 ]
Ferrante, Edoardo [2 ]
Sorrentino, Stefano [2 ]
Capacchione, Biagio [3 ]
Rochette, Michel [4 ]
Bergweiler, Simon [5 ]
Poser, Valerie [5 ]
Biancolini, Marco E. [1 ]
机构
[1] Univ Roma Tor Vergata, Via Politecn 1, I-00133 Rome, Italy
[2] RINA Consulting SpA, Viale Cesare Pavese 305, I-00144 Rome, Italy
[3] CMS Spa, Via Nuova Str Consortile, I-84084 Fisciano, SA, Italy
[4] ANSYS France, 11 Ave Albert Einstein, F-69100 Villeurbanne, France
[5] DFKI GmbH, Trippstadter Str 122, D-67663 Kaiserslautern, Germany
基金
欧盟地平线“2020”;
关键词
Digital Twin; quality control; Intelligent manufacturing systems; As built" design; Life-cycle control; radial basis functions; Computer-aided engineering; mesh morphing; TWIN; SYSTEMS; DESIGN;
D O I
10.1016/j.ifacol.2020.12.2809
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In Industry 4.0 era, rapid changes to the global landscape of manufacturing are transforming industrial plants in increasingly more complex digital systems. One of the most impactful innovations generated in this context is the "Digital Twin", a digital copy of a physical asset, which is used to perform simulations, health predictions and life cycle management through the use of a synchronized data flow in the manufacturing plant. In this paper, an innovative approach is proposed in order to contribute to the current collection of applications of Digital Twin in manufacturing: a Digital Shadow cloud-based application to enhance quality control in the manufacturing process. In particular, the proposal comprises a Digital Shadow updated on high performance computing cloud infrastructure in order to recompute the performance prediction adopting a variation of the computer-aided engineering model shaped like the actual manufactured part. Thus, this methodology could make possible the qualification of even not compliant parts, and so shift the focus from the compliance to tolerance requirements to the compliance to usage requirements. The process is demonstrated adopting two examples: the structural assessment of the geometry of a shaft and the one of a simplified turbine blade. Moreover, the paper presents a discussion about the implications of the use of such a technology in the manufacturing context in terms of real-time implementation in a manufacturing line and lifecycle management. Copyright (C) 2020 The Authors.
引用
收藏
页码:10579 / 10584
页数:6
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