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INTEGRATING FUNDAMENTAL STEM MATERIAL IN A LABORATORY BASED DYNAMIC SYSTEMS COURSE

机译:将基于实验室的动态系统课程中的基本茎材料集成在一起

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A Dynamic Systems course generally involves material from previous undergraduate courses related to Differential Equations, Mathematical Methods for Engineers, Dynamics, etc. These underlying courses are basic building blocks that are critical to the students understanding of dynamic systems material. However, students often consider material in earlier courses as irrelevant since immediate practical application is not implemented in the previous courses. A traditional Dynamic Systems course, with traditional class lecture/homework/test scenario is destined to the same fate as these earlier courses if taught in the same manner. A new variation of this course has been implemented which has individual projects which address various analytical approaches using closed-form analytical solutions with MATLAB and SIMULINK computer software to completely address 1st and 2nd order systems. In addition, a laboratory based component is added to collect measured data for these systems to be used to further develop the analytical representation of these systems. Students work in groups and collect data to develop these models and prepare detailed reports summarizing their efforts. The project is described along with lab experiments performed. Student comments regarding the project are presented. Assessments of the first two semesters of the project clearly indicate that the students enjoyed the hands-on based project and clearly felt that they understood the material in much greater depth as a result of the project.
机译:动态系统课程通常涉及与微分方程相关的先前本科课程的材料,工程师,动力学等数学方法。这些基础课程是对学生对动态系统材料的理解至关重要的基本构建块。但是,学生通常会认为早期课程中的材料由于在前一级课程中没有实施即时实际应用。传统的动态系统课程,具有传统的课堂讲座/家庭作业/测试场景,如果以同样的方式教授,这些课程/考试情景是与这些早期的课程相同的命运。已经实施了本课程的新变体,该课程具有使用Matlab和Simulink计算机软件的闭合分析解决方案解决各种分析方法的单个项目,以完全解决第1和第2订单系统。另外,添加了基于实验室的组分以收集这些系统的测量数据,以用于进一步发展这些系统的分析表示。学生在组中工作并收集数据以制定这些模型,并准备总结其努力的详细报告。该项目与实验室实验一起描述。提出了关于该项目的学生评论。对项目的前两个学期的评估清楚地表明,学生们享有基于动手的项目,并清楚地觉得他们将材料理解为项目的深度更大。

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