物理-电子实用工作模型可通过网络远程访问和操作

Lamine Yade, Amadou Dahirou Gueye, P. L. T. Sow, A. Ndiaye
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引用次数: 0

摘要

如今,动手实验室工作是培养STEM(科学、技术、工程和数学)领域技能的最有效途径。然而,这种实际工作通常是在地方实验室进行的,这在以学生大众化为标志的高等教育背景下提出了一个问题。研究人员通过使用屏幕共享、改进的LMS平台功能、虚拟化和云,为计算机科学课程(编程、网络)的远程实际工作提出了解决方案。然而,物理电子领域的远程实际工作非常有限,并且没有考虑到实际工作台的灵活性和同时访问。本文提出了一种可通过网络远程访问和操作的物理-电子实践作业模型。为了说明我们模型的相关性,我们提出了一种设备,通过我们的网络平台上的树莓派控制的光纤检测激光信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physics-Electronics Practical Work Model Accessible and Manipulable Remotely via the Web
Today, hands-on laboratory work is the most effective way to develop skills in the field of STEM (Science, Technology, Engineering, and Mathematics). However, this practical work usually takes place in local laboratories, which poses a problem in the context of higher education marked by the massification of students. Researchers have proposed solutions for remote practical work for computer science courses (programming, networking) by using screen sharing, improved functionality of LMS platforms, virtualization and the cloud. However, remote practical work in the field of physics-electronics is very limited and does not take into account the flexibility and simultaneous access to practical work benches. In this paper we propose a model of physics-electronics practical work accessible and manipulable remotely via the web. To illustrate the relevance of our model, we propose a device to detect a laser signal via an optical fiber controlled by a Raspberry pi from our web platform.
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