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Teaching Internet of Things (IoT) Literacy: A Systems Engineering Approach

机译:物联网(IoT)素养教学:一种系统工程方法

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The Internet of Things (IoT) invades our world with billions of smart, interconnected devices, all programmed to make our lives easier. For educators, teaching such a vast and dynamic field is both a necessity and a challenge. IoT-relevant topics such as programming, hardware, networking and artificial intelligence are already covered in core computing curricula. Does this mean that fresh graduates are well prepared to tackle complex IoT problems? Unfortunately, nothing could be further from the truth. The problem is that IoT devices are complex systems, where software, hardware, and humans interact with each other. From this interaction, unique behavior and hazardous situations can emerge that might easily stay undetected, unless systems are analyzed as a whole. This paper presents two differently flavored courses that teach IoT using a holistic, system-centric approach. The first is a broad introduction to Pervasive Computing, focused on the intelligence of "Things". The second is an advanced course that zooms on the process of testing a software-intensive system. The key characteristics of our approach are : (1) teaching only the bare essentials (topics needed for end-to-end engineering of a smart system), (2) a strong, hands-on project component, using microcontroller-based miniature systems, inspired by real-life, and (3) a rich partnership with industry and academic idea incubators. Positive student evaluations gathered during the last five years demonstrate that such an approach brings engagement, self-confidence and realism in IoT classrooms. We believe that this success can be replicated in other courses, by shifting the focus on different IoT-relevant aspects.
机译:物联网(IoT)通过数十亿个智能互联设备入侵我们的世界,所有这些设备都经过编程,可以使我们的生活更轻松。对于教育者来说,教授如此广阔而充满活力的领域既是必要的,也是挑战。核心计算课程已涵盖与IoT相关的主题,例如编程,硬件,网络和人工智能。这是否意味着应届毕业生准备好应对复杂的物联网问题?不幸的是,事实离真相还远。问题在于,物联网设备是复杂的系统,软件,硬件和人类之间相互影响。通过这种相互作用,可能会出现独特的行为和危险情况,除非对系统进行整体分析,否则可能很容易被发现。本文介绍了两种风格各异的课程,它们以整体,以系统为中心的方法来教授物联网。首先是对普及计算的广泛介绍,重点是“事物”的智能。第二个是高级课程,着重于测试软件密集型系统的过程。我们方法的主要特点是:(1)仅讲授基本知识(智能系统的端到端工程所需的主题),(2)使用基于微控制器的微型系统,是一个强大的动手项目组件。受到现实生活的启发,以及(3)与行业和学术理念孵化器的丰富合作关系。在过去五年中收集的积极的学生评估表明,这种方法在物联网教室中带来了参与,自信和真实感。我们相信,通过将重点转移到与物联网相关的不同方面,可以在其他课程中复制这种成功。

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