...
首页> 外文期刊>Procedia CIRP >Augmented Reality experiment in higher education, for complex system appropriation in mechanical design
【24h】

Augmented Reality experiment in higher education, for complex system appropriation in mechanical design

机译:高等教育中的增强现实实验,用于机械设计中的复杂系统分配

获取原文
           

摘要

Virtual representations are quite widely used in higher education to visualize a design model or simulation. Nevertheless, many students have difficulty grasping mechanical systems, from a 2D design plan or a 3D CAD definition.This is why we implement real system manipulations, associated with various representations, especially for students with no technological skills. Augmented reality can provide an answer to the difficulty of making the link between a representation and the real system.Since augmented reality has not yet been used in mechanical design pedagogy, the challenge was to evaluate the relevance of this technology to facilitate understanding of mechanisms. An augmented reality scenario has been implemented on an electromechanical mechanism. It makes it possible to identify components and their locations, to explore the mechanism and thus more easily identify the kinematic chain or transmission power flow for example. Two different interfaces were used by the learners (tablet and HoloLens glasses), each of which has its advantages.The first experiment was conducted with students in engineering training, as well as bachelor of technology students. During analysis of mechanism practical session, half of the workforce used augmented reality, while the others had only paper documentation and cad. At the end of the session, an assessment of the system’s understanding was conducted ‘hot’ and shows improvements for augmented reality users.Here, augmented reality is used in pedagogy, as a new medium support to pedagogy. But this experience is also relevant for introducing engineering students to a relevant technology for industry of the future, enabling them to measure the potential of augmented reality.
机译:虚拟表示已在高等教育中广泛用于可视化设计模型或仿真。尽管如此,许多学生仍然很难从2D设计计划或3D CAD定义中掌握机械系统,这就是为什么我们实施与各种表示形式相关的真实系统操纵的原因,特别是对于没有技术技能的学生。增强现实可以解决在表示和真实系统之间建立联系的难题。由于增强现实尚未在机械设计教学法中使用,因此面临的挑战是评估该技术的相关性以促进对机制的理解。增强现实场景已在机电机制上实现。例如,它可以识别组件及其位置,探索机理,从而更轻松地识别运动链或传输功率流。学习者使用了两种不同的界面(平板电脑和HoloLens眼镜),每种界面都有其优势。第一个实验是针对接受工程培训的学生以及技术专业的学生进行的。在对机制实践会议进行分析时,一半的工作人员使用了增强现实技术,而其他人只有纸质文档和cad。在会议结束时,对该系统的理解进行了“热”评估,并显示了增强现实用户的改进。在这里,增强现实被用于教学法,作为对教学法的新的媒介支持。但是,这种经验对于将工程专业的学生介绍给未来行业的相关技术也很重要,使他们能够衡量增强现实的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号