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System-oriented communications engineering curriculum: teaching design concepts with SDR platforms

机译:面向系统的通信工程课程:使用SDR平台教授设计概念

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摘要

Communications capabilities are becoming an integral part of common infrastructure, and are embedded in an increasing number of consumer products to enable the Internet of Things and networked applications. The proliferation of (wireless) communications has, not surprisingly, generated new demands for higher education. First, if we consider communications engineering students, we observe that they need to be readily equipped with sophisticated skills beyond the theoretical domain in order to successfully fulfill implementation tasks and tackle practical design problems. This requirement is particularly emphasized by their future industrial employers. Second, as the integration of communications capabilities becomes widespread, there is a need to also provide core competencies to non-communications engineering students and industry professionals. These students come from a variety of fields such as mechanical engineering and computer science. They want, and indeed need, the practical tools and knowledge to develop and test communications systems, but often lack the traditional electrical engineering and signal processing background. The curriculum and the way we teach these professionals have to adapt to new challenges. In this article we outline how close integration of software defined radios into the university curriculum can help the community meet some of these challenges. In particular, we describe our early efforts to re-engineer a part of our curriculum, and present our novel approach to merge laboratories and lectures to provide a more ??hands-on?? experience to a heterogeneous student body.
机译:通信功能已成为通用基础架构不可或缺的一部分,并且已嵌入越来越多的消费产品中,以支持物联网和联网应用程序。毫无疑问,(无线)通信的激增对高等教育产生了新的要求。首先,如果我们考虑通信工程专业的学生,​​我们会发现他们需要具备理论领域以外的先进技能,才能成功完成实施任务并解决实际的设计问题。他们的未来工业雇主特别强调了这一要求。其次,随着通信功能集成的广泛普及,还需要向非通信工程专业的学生和行业专业人员提供核心竞争力。这些学生来自机械工程和计算机科学等各个领域。他们想要并且确实需要开发和测试通信系统的实用工具和知识,但通常缺乏传统的电气工程和信号处理背景。我们的课程和我们教授这些专业人员的方式必须适应新的挑战。在本文中,我们概述了将软件定义的无线电紧密集成到大学课程中如何能够帮助社区应对其中一些挑战。特别是,我们描述了我们为重新设计课程的一部分所做的早期努力,并提出了将实验室和讲座合并以提供更多“实际操作”的新颖方法。异类学生的经历。

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  • 来源
    《IEEE Communications Magazine》 |2014年第5期|202-209|共8页
  • 作者单位

    Faculty of Electrical Engineering and Information Technology at RWTH Aachen University, Germany|c|;

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  • 正文语种 eng
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  • 入库时间 2022-08-17 14:12:01

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