TY - JOUR
T1 - An Applied Electromagnetics Course with a Conceiving-Designing-Implementing-Operating Approach in Engineering Educationª
AU - Pérez-Cerquera, Manuel Ricardo
AU - Hurtado-Londoño, Jairo Alberto
AU - Cruz-Bohorquez, Juan Manuel
N1 - Publisher Copyright:
© 2022, Pontificia Universidad Javeriana. All rights reserved.
PY - 2022
Y1 - 2022
N2 - This paper describes and discusses the implementation of a project-based undergraduate course on applied electromagnetics in electronics engineering with a conceiving-designing-implementing-operating (CDIO) approach involving active project-based learning (PBL). The course, which requires a combination of mathematical and physics concepts for its completion, allows students to understand the principles of electromagnetic transmission theory in wireless communication systems. This paper presents the course proposal, its project description, and results hinting at the relationship with the CDIO process. The proposed projects allow students to engage in core concepts such as complex vectors, Maxwell’s equations, boundary conditions, Poynting's theorem, uniform plane waves, reflection and transmission of waves, waveguides, cavity resonators, and computer-assisted design. The proposed methodology results suggest that students lowered their perception of the difficulty of the course, and most students recognized a better learning process of the core concepts for this course. In addition, students’ final course grades showed an average improvement of approximately 6% compared with the final grades of other groups with different methodologies.
AB - This paper describes and discusses the implementation of a project-based undergraduate course on applied electromagnetics in electronics engineering with a conceiving-designing-implementing-operating (CDIO) approach involving active project-based learning (PBL). The course, which requires a combination of mathematical and physics concepts for its completion, allows students to understand the principles of electromagnetic transmission theory in wireless communication systems. This paper presents the course proposal, its project description, and results hinting at the relationship with the CDIO process. The proposed projects allow students to engage in core concepts such as complex vectors, Maxwell’s equations, boundary conditions, Poynting's theorem, uniform plane waves, reflection and transmission of waves, waveguides, cavity resonators, and computer-assisted design. The proposed methodology results suggest that students lowered their perception of the difficulty of the course, and most students recognized a better learning process of the core concepts for this course. In addition, students’ final course grades showed an average improvement of approximately 6% compared with the final grades of other groups with different methodologies.
KW - Electromagnetic education
KW - applied electromagnetics
KW - computer aided instruction (CAI)
KW - engineering education
KW - finite difference time domain (FDTD) method
KW - project-based learning (PBL)
UR - http://www.scopus.com/inward/record.url?scp=85134528004&partnerID=8YFLogxK
U2 - 10.11144/javeriana.iued26.aecw
DO - 10.11144/javeriana.iued26.aecw
M3 - Article
AN - SCOPUS:85134528004
SN - 0123-2126
VL - 26
JO - Ingenieria y Universidad
JF - Ingenieria y Universidad
ER -