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Learning in Context with Horizontally & Vertically Integrated Curriculum in a Smart Learning Factory

机译:智能学习工厂中横向和纵向整合课程的上下文学习

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In this work we present the development of a Smart Learning Factory (SLF) at Purdue University for preparing students with the skills, capabilities, and technological experiences necessary to excel in an Industry 4.0 environment. Functionally, the SLF is a replica of an actual cyber-physical production factory designed to intentionally foster collaboration between courses from multiple disciplinary areas, particularly mechanical, electrical, mechatronics, and robotics. Our objective is to reduce course silos by deliberately fusing the interconnection between courses by using SLF as the common unifying platform. Activities in design, manufacturing processes, production, production management, automation, energy, information, and communications, teamwork and collaboration are integrated using averticalandhorizontalintegration framework. Unifying project activities were designed and introduced into these courses using this framework. As a result, 22 courses were integrated and a total of 26 vertical and horizontal integrated projects developed. This integration also facilitated the development of an energy credential using the SLF. Students progressing from freshman through senior year in college will better understand the interconnection of content between different courses, apply their learning to a manufacturing environment, gain a holistic perspective of the interdependent structures of the cyber-physical system, the connected enterprise, and the manufacturing ecosystem.
机译:在这项工作中,我们介绍了普渡大学智能学习工厂(SLF)的开发情况,该课程旨在为学生提供在工业4.0环境中脱颖而出的技能,能力和技术经验。从功能上讲,SLF是实际的网络物理生产工厂的复制品,旨在有意促进多个学科领域(尤其是机械,电气,机电和机器人技术)课程之间的协作。我们的目标是通过使用SLF作为通用的统一平台,有意地融合课程之间的互连来减少课程孤岛。设计,制造过程,生产,生产管理,自动化,能源,信息和通信,团队合作和协作中的活动使用垂直和水平整合框架进行整合。使用此框架设计了统一的项目活动并将其引入这些课程。结果,整合了22个课程,开发了总共26个垂直和水平整合项目。这种集成还促进了使用SLF的能源凭证的开发。从大学新生升入高年级的学生将更好地理解不同课程之间的内容互连,将他们的学习应用于制造环境,全面了解电子物理系统,关联企业和制造之间相互依存的结构生态系统。

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