首页> 外文会议>American Society For Engineering Education Annual Conference and Exposition >WIRELESS-INTEGRATED EMBEDDED REAL-TIME CONTROL: A CASE STUDY IN ADOPTING RESOURCES FOR DEVELOPMENT OF A LOW-COST INTERDISCIPLINARY LABORATORY PROJECT
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WIRELESS-INTEGRATED EMBEDDED REAL-TIME CONTROL: A CASE STUDY IN ADOPTING RESOURCES FOR DEVELOPMENT OF A LOW-COST INTERDISCIPLINARY LABORATORY PROJECT

机译:无线集成的嵌入式实时控制:采用资源开发低成本跨学科实验室项目的案例研究

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In the last decade, it has become apparent that the grand challenge problems of this century span disciplines. In spite of this, engineering curricula are still strongly stovepiped, even within each engineering discipline, and both inertia and downward budget pressures encourage curricular conservatism. At the same time, the need is urgent to expose students to the diversity and complexity of real-world problems where there is no "best" solution. How should we help students learn across disciplines and blend disciplinary knowledge to solve problems? This paper describes a laboratory project suitable for courses in areas of control and embedded systems that weaves critical aspects of control systems design with real-time embedded systems hardware and software, and along the way incorporates additional skills and tools. The project builds on previous efforts that have used the classic "ball-in-tube" experimental platform. We have developed an extremely low-cost experimental platform that student teams assemble from simple parts (e.g., shoeboxes and muffin fans), and that uses wireless communication between the real-time platform and a personal computer that provides a human interface and analytical tools. For real-time data acquisition and control, we adopted the CLIO platform that was designed for the experiential component of MUSE (Multi-University Systems Education, www.uvm.edu/~muse), an NSF-sponsored pedagogical effort to increase the ability of students to become conversant in skills related to systems thinking. In this spirit, the work discussed herein exposes students to experimentation, modeling and design across system layers. While tackling the project, students have also become more adept at (i) architecting distributed applications that integrate embedded and desktop computing systems, (ii) data acquisition, including measurement noise and signal conditioning, (iii) actuation, including motor control, and (iv) wireless communication. We present early assessment results evaluating how effectively the project helps students build critical systems-thinking skills, and the challenges of adopting resources for fast-tracking the development of new laboratory projects.
机译:在过去的十年中,它已经变得显然,这是本世纪跨度学科的大挑战问题。尽管如此,即使在每个工程学科中,工程课程仍然是强烈的斯科夫,并且惯性和向下预算压力也鼓励课程保守主义。与此同时,需要迫切地将学生暴露于现实世界问题的多样性和复杂性,在没有“最佳”解决方案的情况下。我们应该如何帮助学生学习纪律并融合纪律知道解决问题?本文介绍了一种实验室项目,适用于控制和嵌入式系统领域的课程,这些系统与实时嵌入式系统硬件和软件编织了控制系统设计的关键方面,沿途采用了额外的技能和工具。该项目建立了以前的努力,这些努力使用了经典的“滚珠管”实验平台。我们开发了一个极其低成本的实验平台,学生团队组装在简单的部件(例如,鞋盒和松饼粉丝),并使用实时平台和提供人类界面和分析工具的个人计算机之间的无线通信。对于实时数据采集和控制,我们采用CLIO平台,专为Muse(多院系系统教育,www.uvm.edu/~muse)设计的,这是一个NSF赞助的教学努力,以提高能力学生在与系统思维相关的技能中熟悉。在这种精神下,本文讨论的工作使学生跨越系统层进行实验,建模和设计。在解决项目时,学生们也变得更加擅长(i)架构的分布式应用程序,该应用程序集成了嵌入式和桌面计算系统,(ii)数据采集,包括测量噪声和信号调节,(iii)致动,包括电机控制,以及( iv)无线通信。我们提前评估结果评估该项目有效如何帮助学生构建关键的系统思维技能,以及采用资源快速跟踪新实验室项目的挑战。

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