首页> 外文会议>International Conference on Remote Engineering and Virtual Instrumentation >Using Constructive Alignment to Evaluate Industry 4.0 Competencies in Remote Laboratories for Manufacturing Technology
【24h】

Using Constructive Alignment to Evaluate Industry 4.0 Competencies in Remote Laboratories for Manufacturing Technology

机译:使用建设性对齐来评估行业4.0在遥远实验室的制造技术中的能力

获取原文

摘要

Digitalization, smartification and cyber-physical systems are going to reshape the working lives of future engineers. Thus, these developments will have an impact on higher education in the near future. For years, there has been a vivid discussion on the respective competencies students need to develop in order to be able to successfully face these challenges. In this article, the laboratory is presented as a cyber-physical system that can offer a setting to foster these competencies in engineering laboratory courses. We present the remote laboratory as a setting in which future-oriented teaching and learning in the light of required competencies for the 'working world 4.0' can take place. In order to identify these competencies and to analyze an existing laboratory, a qualitatively oriented content-analytical procedure is used. In a first step, based on current scientific studies, competencies expected to be shown by future engineers are named and summarized. In a second step, an exemplary existing remote laboratory is analyzed with regard to explicit and implicit learning objectives, which address the identified competency requirements. It can be shown that only a few professional and interdisciplinary competencies in the context of Industry 4.0 are being addressed so far. Based on the focused example, the close connection to engineering fundamentals on the one hand and the lack of interdisciplinarity in the observed learning scenario on the other hand can be identified as critical parameters, which limit the promotion of more future-oriented competencies. This shows possibilities for future research and development in this area.
机译:数字化,智能化和网络物理系统将重塑未来工程师的工作生命。因此,这些发展将在不久的将来对高等教育产生影响。多年来,对学生需要开发的各个能力活动有生动的讨论,以便能够成功面对这些挑战。在本文中,实验室被呈现为网络物理系统,可以提供设定,以便在工程实验室课程中培养这些能力。我们将遥控实验室作为一个环境,其中鉴于“工作世界4.0”所需的竞争力,可以进行未来导向的教学和学习。为了识别这些能力并分析现有实验室,使用定性化的内容分析程序。在第一步,根据当前的科学研究,预计未来工程师所展示的能力被命名并总结。在第二步中,关于明确和隐式学习目标分析示例性现有远程实验室,其解决了所识别的能力要求。可以表明,到目前为止,只有少数少数专业和跨学科在行业范围内的竞争力正在得到解决。基于集中的示例,另一方面,观察到的学习场景中的与工程基础知识的密切连接可以被识别为关键参数,这限制了促进更新的竞争力。这表明了未来的研究和开发在该地区的可能性。

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