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2016 faculty course development award: application-oriented IM teaching based on industrial electronics and instrumentation at the University of Trento

机译:2016年教师课程发展奖:特伦托大学基于工业电子和仪器的面向应用的IM教学

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Measurement science and technologies play a key role in a variety of disciplines of Industrial Engineering. Even though the fundamentals of instrumentation and measurement (I&M) definitely require general and fully dedicated courses, there are situations in which, for context-specific educational needs or constraints, it is of primary importance to emphasize how the I&M body of knowledge is related to a given application domain. This is, for instance, the case of interdisciplinary degree programs (e.g., in Mechatronics Engineering) whose students are required to gain skills in a wide range of subjects squeezed into a limited number of credits and within a relatively short time. In this kind of situation, courses dealing only with I&M topics could be regarded as useful but not essential for the main goal of the degree program, and consequently, they could be perceived to have a marginal role. However, in the authors' experience, such risks can be greatly mitigated if educators create a strong relationship between the I&M body of knowledge and the application field in which measurement instruments and techniques are supposed to be used, e.g., to describe physical phenomena, to explain the behavior of specific systems and devices or to analyze their performance. The teaching module "Industrial Electronics and Instrumentation," which received the Faculty Course Development Award by the IEEE Instrumentation and Measurement Society (IMS) in 2016, is indeed based on this paradigm. The rationale of the course stems from the educational needs of industrial electronics [1], which is also one of the key priorities for the development of next-generation smart manufacturing (usually labeled as "Industry 4.0" in Europe). The course has been officially included in the educational offering of the M.S. degree program in Mechatronics Engineering of the University of Trento, Italy since Academic Year 2016-2017.
机译:测量科学和技术在工业工程的各个学科中起着关键作用。尽管仪器和测量(I&M)的基础肯定需要一般和完全专用的课程,但在某些情况下,对于特定于上下文的教育需求或约束,最重要的是强调I&M知识与给定的应用程序域。例如,跨学科学位课程(例如机电工程专业)的情况就是这样,要求学生在相对短的时间内在有限的学分内获得广泛学科的技能。在这种情况下,仅涉及I&M主题的课程可能被认为是有用的,但对于学位课程的主要目标而言却不是必不可少的,因此,它们可能被认为仅具有边际作用。但是,根据作者的经验,如果教育工作者在I&M知识体系与应该使用测量仪器和技术(例如描述物理现象)的应用领域之间建立牢固的关系,则可以大大减轻此类风险。说明特定系统和设备的行为或分析其性能。教学模块“工业电子和仪器”确实基于此范例,该模块在2016年获得了IEEE仪器和测量学会(IMS)的“教师课程开发奖”。该课程的基本原理来自工业电子学的教育需求[1],这也是开发下一代智能制造(在欧洲通常标记为“工业4.0”)的关键优先事项之一。该课程已被正式纳入M.S.自2016-2017学年起,在意大利特伦托大学机电工程专业获得博士学位。

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