3D Model-Based Large-Volume Metrology Supporting Smart Manufacturing and Digital Twin Concepts

R. Lindqvist, D. Strand, M. Nilsson, Victor Collins, Johan Torstensson, J. Kressin, D. Spensieri, A. Archenti
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Abstract

New automated laser radar measurement systems at the Saab Inc. West Lafayette, USA, facility will make airframe assembly of the aft body for the new eT7-A aircraft a quicker, more cost-efficient process. Digital twin concepts realized through simulation and off-line programming show advantageous results when studying future state scenarios or investigating how a current large-volume dimensional metrology system acts and behaves. The aim of this exploration has been to examine how to facilitate the design and programming of automated laser radar concepts by means of novel simulation-based software. High-speed computing algorithms efficiently solve tasks and sequence problems related to many statistical combinatorial possibilities in calculations. However, this approach requires accurate and reliable models and digital twins that are continuously updated with real world data and information. In this paper, the main contributions are to create procedures to define the dimensional metrology workflow at Saab and to model and simulate the laser radar process, enhancing and tailoring existing offline programming software by specific new functionalities. A case study conducted at Saab Aeronautics premises in Linköping acted as a clinical laboratory to generate our research findings. The exploratory work indicates that a reliable simulation-based development method can be used advantageously in the early-stage design layout of automated dimensional metrology systems to verify and guarantee the line-of-sight of, e.g., a laser light path and its allowed inclinations to a specific geometrical feature to be measured, extracted, and evaluated.
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基于3D模型的大容量计量支持智能制造和数字孪生概念
Saab公司的新型自动激光雷达测量系统。位于美国西拉斐特的工厂将使新型eT7-A飞机的机身组装速度更快,成本效益更高。通过仿真和离线编程实现的数字孪生概念在研究未来状态场景或调查当前大容量尺寸计量系统的行为和行为时显示出有利的结果。这项探索的目的是研究如何通过新颖的基于仿真的软件来促进自动化激光雷达概念的设计和编程。高速计算算法能有效地解决计算中涉及许多统计组合可能性的任务和序列问题。然而,这种方法需要精确可靠的模型和数字孪生,这些模型和数字孪生需要不断更新真实世界的数据和信息。在本文中,主要贡献是创建程序来定义萨博的尺寸测量工作流程,并对激光雷达过程进行建模和模拟,通过特定的新功能增强和定制现有的离线编程软件。在Linköping的萨博航空公司进行的一个案例研究作为临床实验室来产生我们的研究结果。探索性工作表明,一种可靠的基于仿真的开发方法可以在自动化尺寸计量系统的早期设计布局中有利地用于验证和保证视距,例如激光光路及其对待测量、提取和评估的特定几何特征的允许倾角。
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