Design and implementation of a Web-Based Remote laboratory for Embedded Systems Course Experiments

Jalal Miladi, H. Akyüz
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Abstract

Multiple factors, such as natural disasters, wars, security instability, and the outbreak of serious diseases such as COVID-19, may cause the complete cessation of traditional face-to-face education. Universities have turned to distance learning in order to avoid the difficulty of students being on campus. Teaching laboratory courses remotely is one of the most difficult challenges facing academic institutions when switching to distance education. Most of the available alternative solutions to the traditional laboratory are ineffective or difficult to implement and may cause a negative impact on student achievement. This article presents the Web-based remote laboratory system as an alternative technical solution to the traditional laboratory for teaching programming experiments for Arduino boards. In this system, the student can conduct the experiment remotely on devices and equipment located in the university laboratory. The remote laboratory system is multi-user, scalable, flexible and low cost. The system is implemented using low-cost hardware resources and free and open source software. The system underwent user acceptance testing based on the Unified Theory of Technology Acceptance and Use approach. The results were encouraging, as participants in the system acceptance test showed a good acceptance rate of 70.75%, which confirms the effectiveness of the system and its ease of use.
嵌入式系统课程实验网络远程实验室的设计与实施
自然灾害、战争、安全不稳定、COVID-19 等严重疾病的爆发等多种因素都可能导致传统的面授教育完全停止。为了避免学生到校上课的困难,各大学纷纷转向远程教学。远程教授实验课程是学术机构转向远程教育时面临的最困难的挑战之一。现有的传统实验室替代方案大多效果不佳或难以实施,并可能对学生的学习成绩造成负面影响。本文介绍了基于网络的远程实验室系统,作为传统实验室的替代技术解决方案,用于 Arduino 板的编程实验教学。在该系统中,学生可以在位于大学实验室的设备和装置上进行远程实验。远程实验室系统具有多用户、可扩展性、灵活性和低成本等特点。该系统利用低成本硬件资源和免费开源软件实现。该系统根据技术接受和使用统一理论方法进行了用户接受度测试。结果令人鼓舞,参加系统验收测试的人员对系统的接受率达到了 70.75%,证明了系统的有效性和易用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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