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Task-centric holistic agile approach on teaching cyber physical systems engineering

机译:教学网络物理系统工程教学中以专为单位的全面敏捷方法

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Context: Cyber physical systems are getting pervasive in our every-day life. For their development the industry needs highly-qualified and skilled employees. The employees need to have a wide breadth of knowledge in many engineering disciplines and possess excellent soft skills. Ideally, the needed skills are taught in practical settings. Problem: The versatility of the problems in development of cyber physical systems poses a challenge for the teaching. A common approach to teaching software engineering concepts is to have students form teams to create a software product; this allows them to experience the problems first hand. However, this approach, compared with "traditional" software engineering and software development, is much more difficult for cyber-physical systems, due to the need to have a wide understanding in multiple engineering fields. At the same time, the education of engineering concepts lack on teaching of soft skills that are often key success factors for engineering projects. Approach: We developed a novel task-centric holistic agile approach on teaching cyber physical systems. The concept is task-centric concluding five teaching approaches that may be used when needed. The concept focuses the teaching of technical skills and soft skills. Result: The proposed concept allows students to have an insight into the difficulties involved in development of cyberphysical systems from multiple points of view in a realistic way. Conclusion: The holistic agile approach on teaching cyber physical systems has the potential to reinforce conceptual instruction with hands-on learning at a fraction of the time and cost that would be required to run a true cyber-physical systems development project.
机译:背景信息:网络物理系统在我们的每一生中都普遍存在。为他们的发展,该行业需要高素质和熟练的员工。员工需要在许多工程学科中具有广泛的知识,并具有出色的软技能。理想情况下,所需的技能在实际设置中授课。问题:网络物理系统发展问题的多功能性对教学构成了挑战。一种常见的教学技术工程概念的方法是让学生形成团队创建软件产品;这使他们能够先体验问题。然而,与“传统”软件工程和软件开发相比,这种方法对网络物理系统来说更困难,因为需要在多个工程领域具有广泛的了解。与此同时,工程概念教育缺乏软技能教学,通常是工程项目的关键成功因素。方法:我们在教授网络物理系统上以专为中心的整体敏捷方法开发出一种新的专用整体敏捷方法。该概念是以任务为中心的,结论需要在需要时使用的五种教学方法。该概念侧重于技术技能和软技能的教学。结果:拟议的概念使学生能够深入了解从多个观点中从多个角度发展涉及的困难。结论:教学网络物理系统的整体敏捷方法有可能在运行真正的网络 - 物理系统开发项目所需的时间和成本的一小部分中加强概念教学。

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