基于数字孪生的交互式机电一体化实验室开发,用于远程实验室提供和评估

J. Viola, F. Guc, Y. Chen, Mauricio Calderon
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引用次数: 1

摘要

机电一体化和控制教育由实验室密集作业支持,让学生掌握软件和硬件技能来解决现实世界的问题。然而,COVID-19迫使许多学校转向远程学习,使实践作业的教学复杂化。本文提出了在加州大学默塞德分校使用数字双胞胎(DT)和翻转课堂方法对ME-142:机电一体化课程的实验室部分进行交互式远程教学的新建议。每个实验体验都由一套随需应变的辅助材料组成,并以MATLAB/Simulink为基础进行机电一体化仿真,以增强和适应学生的学习体验。一旦学生掌握了先进的仿真技能,一套数字孪生模型就会提供给学生,以便他们开始与真实系统的虚拟表示进行交互,以进行识别、分析、控制器设计和验证,这些模型可以在线远程访问。到课程结束时,学生不仅能够获得机电系统的宝贵经验,而且能够作为数字孪生进行交互和建立先进的建模技术,有助于弥补远程硬件交互的不足。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital Twin Based Interactive Mechatronics Lab Development for Remote Lab Offering and Evaluation
Mechatronics and control education is supported by laboratory intensive assignments that allow students acquire software and hardware skills to solve real world problems. However, COVID-19 force many schools to switch into remote learning complicating the instruction of practical assignments. This paper presents a novel proposal for interactive remote teaching of the laboratory component of the course ME-142: Mechatronics at the University of California, Merced using Digital Twins (DT) and the flipped classroom methodology. Each lab experience is composed by a set of on-demand supporting materials with the foundations of mechatronics simulation using MATLAB/Simulink to enhance and adapt the learning experience of the students. Once the students acquire advanced simulation skills, a set of Digital Twin models are provided to the students in order to begin their interaction with virtual representations of real systems for identification, analysis, controller design and validation, which are available online for remote access. By the end of the course, students were able not only to gain valuable experience with mechatronic systems but also interact and build advanced modelling techniques as Digital Twin, contributing to compensate the lack of remote hardware interaction.
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