Barriers to Integrating Low-Power IoT in Engineering Education: A Survey of the Literature

Fuente: arXiv
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Main Authors: Padilla, V. Sanchez, Espinal, Albert, Cordova-Garcia, Jose, Schibelius, Lisa
Format: Preprint
Published: 2025
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author Padilla, V. Sanchez
Espinal, Albert
Cordova-Garcia, Jose
Schibelius, Lisa
author_facet Padilla, V. Sanchez
Espinal, Albert
Cordova-Garcia, Jose
Schibelius, Lisa
contents Low-power Internet of Things (IoT) technologies are becoming increasingly important in engineering education as a tool to help students connect theory to real applications. However, many institutions face barriers that slow down their adoption in courses and labs. This paper reviews recent studies to understand these barriers and organizes them into three groups: technical, organizational, and curricular/pedagogical. Technical barriers include energy management, scalability, and integration issues. Organizational barriers are related to cost, planning, and the need for trained staff. Curricular and pedagogical barriers include gaps in student readiness, limited lab time, and platform choices that depend on budget. By detailing these barriers with practical examples, this paper aims to help educators and academic leaders develop more effective strategies to adopt low-power IoT in engineering programs.
format Preprint
id arxiv_https___arxiv_org_abs_2510_22522
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Barriers to Integrating Low-Power IoT in Engineering Education: A Survey of the Literature
Padilla, V. Sanchez
Espinal, Albert
Cordova-Garcia, Jose
Schibelius, Lisa
Computers and Society
Emerging Technologies
Low-power Internet of Things (IoT) technologies are becoming increasingly important in engineering education as a tool to help students connect theory to real applications. However, many institutions face barriers that slow down their adoption in courses and labs. This paper reviews recent studies to understand these barriers and organizes them into three groups: technical, organizational, and curricular/pedagogical. Technical barriers include energy management, scalability, and integration issues. Organizational barriers are related to cost, planning, and the need for trained staff. Curricular and pedagogical barriers include gaps in student readiness, limited lab time, and platform choices that depend on budget. By detailing these barriers with practical examples, this paper aims to help educators and academic leaders develop more effective strategies to adopt low-power IoT in engineering programs.
title Barriers to Integrating Low-Power IoT in Engineering Education: A Survey of the Literature
topic Computers and Society
Emerging Technologies
url https://arxiv.org/abs/2510.22522