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(2274) INCORPORATING PROBLEM SOLVING SKILLS INTO AN INTRODUCTORY MATLAB COURSE

机译:(2274)将问题解决技巧纳入介绍性Matlab课程

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This paper describes a sophomore level-course that introduces electrical engineering students to MATLAB programming. The course is required in the Bachelor of Science of Electrical Engineering degree plan at the University of Texas Rio Grande Valley. The course has a lecture component and a computer laboratory component where students work on laboratory problems with the aim of developing the necessary MATLAB programming skills that they can use in other electrical engineering courses such as electric circuits, signals and systems and control systems. The curriculum of the course has been continuously enhanced to incorporate techniques intended to develop students' problem solving skills. Most engineering textbooks that we adopt for our curriculum do not provide explicit methods for improving students' ability to solve problems. One major goal of educating future engineers is to enable them to apply the engineering concepts they learn to new real- world situations. Hence, our research for understanding how students learn has led to the introduction of the top-down-design method to help enhance students' problem solving skills. The focus of the training has shifted from writing simple programs to designing solutions for complex problems. Students often find it difficult to write a MATLAB program for a problem that has several requirements. The top-down design method that focuses on a step-by-step approach for designing a program is first covered in the lecture using an example. In addition to the example discussed in the lecture, students practice the approach on new problems in the laboratory. Students are asked to present the different stages of their program design. This approach of teaching students how to manage to solve a complex problem has been effective in improving their problem solving skills. Examples of assessments used in the introductory MATLAB course are presented. These assessments not only test students' understanding of basic programming concepts, but also evaluate their abilities to design solutions for complex problems.
机译:本文介绍了一个大二级课程,将电气工程学生推出Matlab编程。德克萨斯州大学电气工程学士学位学士学位是课程。该课程有一个讲座组成部分和计算机实验室组成部分,学生在实验室问题上工作,目的是开发所需的MATLAB编程技能,他们可以在其他电路,信号和系统和控制系统等电气工程课程中使用。课程的课程已经不断增强,以合并开发学生问题解决技巧的技术。我们为课程采用的大多数工程教科书都没有提供改善学生解决问题能力的明确方法。教育未来工程师的一个主要目标是使他们能够应用他们学会新的真实情况的工程概念。因此,我们对理解学生学习的研究导致引入自上而下设计的方法,以帮助提高学生的问题解决技巧。培训的重点从写简单的程序转向为复杂问题设计解决方案。学生们常常发现难以编写Matlab程序,以解决有几个要求的问题。使用示例首先在讲座中首先介绍了专注于设计节目的逐步方法的自上而下的设计方法。除了讲座中讨论的例子外,学生还在实验室中练习新问题的方法。要求学生展示他们的计划设计的不同阶段。教学学生如何设法解决复杂问题的方法已经有效地改善了解决问题的技巧。介绍了介绍式MATLAB课程中使用的评估的例子。这些评估不仅测试了学生对基本规划概念的理解,还可以评估他们对复杂问题的设计解决方案的能力。

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