NI ELVIS平台模拟电子器件电路设计的综合教学方法

O. Stukach, A. Mirmanov
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引用次数: 1

摘要

现代毕业生需要与电子设备打交道。在实验室工作中,学生通过实验来解决研究电子设备设计和运行中出现的实际问题。然而,实验室设备和辅助人员的维护和辅助工作的短缺,其高昂的成本降低了实验室工作的质量。另一方面,现代教育越来越多地利用网络资源。虚拟实验室有其优势,但即使在其中进行物理实验,正在发生的事情的真实感也消失了。使用虚拟仪器系统,可以通过互联网或直接在大学访问,从而有效地解决进行实验室练习的有效性和质量问题。该研究的目的是通过在国家仪器公司ELVIS平台上制造的一个实验设备的例子,展示一种结合学习方法的优势——虚拟资源和真实物理实验的成功结合。本文所描述的实验室模型对于研究无线电工程器件具有很强的实用性,并且可以为其他类似的发展提供思想上的基础。这项研究是基于研究NI ELVIS工作站模拟电子学基础的原型板,一般技术学科“电子学”的实验室工作周期,他们的保护结果,以及中级学生控制的结果。在工作中使用了以下方法:实验室实验,建模,教学测试。研究结果表明,学生们觉得需要更多关于实际流程和系统的知识。这种需求在工程技术学士学位的培养方向上最为明显。他们期望从实验室的工作中得到一个真正的物理实验,但是有了计算机处理结果的便利。一种基于虚拟仪器系统物理实验的无线电电子器件研究新范式,提高了教学质量,使学生能够更有效地研究模拟器件的电路。虚拟仪器的理念给学生带来了更多的学习动力;他们获得了使用现代测量设备的技能,同时也获得了团队中的沟通技巧,因为计算机资源是用作研究工具,而不是学习的目的。物理实验、虚拟测量仪器的使用、实验室设施的可及性和可移动性、学生的额外动机是NI ELVIS硬件和软件平台在教学过程中具有的主要优势。
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Integrative Approach to Teaching of the Circuit Design of Analog Electron Devices in the NI ELVIS Platform
Modern graduates need to work with electronic devices. On laboratory work, students conduct experiments to solve practical problems of researching real problems that arise in the design and operation of electronic devices. However, the shortage of laboratory equipment and assistants for maintenance and assistance in work, its high cost reduce the quality of laboratory work. On the other hand, modern education is increasingly using a network resource. Virtual laboratories have their advantages, but even when carrying out a physical experiment in them, the sense of the reality of what is happening disappears. Effective solutions to the effectiveness and quality of conducting laboratory exercises can be found using a system of virtual instruments that can be accessed via the Internet or directly at the university.The aim of the research is to show, by the example of one experimental device made on the National Instruments ELVIS platform, the advantages of a combined approach to learning – a successful combination of a virtual resource and a real physical experiment. The laboratory model described in the article is very practical for studying radio-engineering devices, and it can ideologically serve as a basis for other similar developments.The research was based on the prototype board for studying the basics of analog electronics for the NI ELVIS workstation, the cycle of laboratory work on the general technical discipline “Electronics”, the results of their protection, and the results of intermediate student controls. In work the following methods are used: laboratory experiment, modeling, pedagogical testing. The results of the research show that students feel the need for more knowledge about real processes and systems. This need is most evident in the direction of the preparation of bachelors of engineering and technology. They expect from a laboratory work a real physical experiment, but with the convenience of computer-processing results. A new paradigm for studying radio electronic devices, based on physical experiments in a virtual instrument system gives an improvement in the quality of instruction and allows students to study the circuitry of analog devices more effectively. The ideology of virtual instruments leads to more motivation for students; they gain skills to work with modern measuring equipment and at the same time communication skills in a group, as the computer resource is used as a research tool, not the purpose of learning.A physical experiment, using virtual measuring instruments, accessibility and mobility of laboratory facilities, additional motivation of students are the main advantages of using the NI ELVIS hardware and software platform with a specialized breadboard model in the educational process.
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