Article Gold Open Access 2024

Implementation of Problem Based Learning in Mechatronics System Design course

Journal of Engineering Education Transformations
Journal · Vol. 38 · Issue Special Issue 1 · pp. 62-67
Abstract

This paper presents the implementation and evaluation of Problem Based Learning (PBL) in a Mechatronics System Design (MSD) course aimed at 3rd year undergraduate engineering students. Integrating PBL into the course curriculum seeks to enhance student's understanding of complex mechatronic systems and their ability to design innovative solutions. The implementation process involved the identification of authentic, real-world problems relevant to mechatronics engineering. The System composer module of MATLAB tool is used to build virtual prototype, integrate, and test the problem. This module helps to follow the V model or VDI2206 guidelines. Throughout the course, students engaged in active problem-solving activities, conducting research, analyzing data, and applying theoretical concepts to develop practical solutions. Faculty members serve as facilitators, guiding students through the problem-solving process while encouraging self-directed learning and collaboration among peers. Assessment methods evaluate the student’s technical competence and ability to work effectively in teams, communicate ideas, and use modern tools. Preliminary results indicate that implementing PBL in the Mechatronics System Design course has led to positive outcomes in student learning and engagement. Surveys and student feedback reveal increased motivation, confidence, and satisfaction with the learning experience. Furthermore, students demonstrate improved problem-solving skills, a deeper understanding of mechatronic principles, and enhanced abilities to collaborate in interdisciplinary teams. © 2024, Rajarambapu Institute Of Technology. All rights reserved.

Keywords

Author Keywords

MATLAB System composer V model or VDI2206 guidelines Virtual prototyping

Index Keywords

Author Affiliations
School of Mechanical Engineering, KLE Technological University, Hubli, KA, India
Department of Automation and Robotics, KLE Technological University, Hubli, KA, India
Department of Computer Science and Engineering, KLE Technological University, Hubli, KA, India
Funding & Acknowledgements
No funding information
References 10 References
1 Graessler, Iris, V-models for interdisciplinary systems engineering, Proceedings of International Design Conference, DESIGN, 2, pp. 747-756, (2018)
2 International Journal of Evaluation and Research in Education Ijere, (2016)
3 Coutinho, Genisson Silva, A hybrid interdisciplinary mechatronics engineering course using content based learning and project based learning, ASEE Annual Conference and Exposition, Conference Proceedings, (2014)
4 2nd International Conference on Vocational Education and Technology Iconvet, (2019)
5 Shyr, Wenjye, Development and evaluation of mechatronics learning system in a web-based environment, Turkish Online Journal of Educational Technology, 10, 1, pp. 89-96, (2011)
6 Proceedings of the 17th World Congress the International Federation of Automatic Control, (2008)
7 Smaili, Ahmad A., Effective integration of mechatronics into the mechanical engineering curriculum: A cooperative, project-based learning model with seamless lab/lecture implementation, International Journal of Engineering Education, 21, 4 PART I AND II, pp. 739-744, (2005)
8 Ersoy, Sezgin, Investigation of new education methods using applied mechatronics, Science Education in a Rapidly Changing World, pp. 87-99, (2010)
9 Nordic Journal of Stem Education, (2021)
10 Wang, Yu, Project based learning in mechatronics education in close collaboration with industrial: Methodologies, examples and experiences, Mechatronics, 22, 6, pp. 862-869, (2012)
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