Design and Implementation of a Robotic Arm for a MoCap System within Extended Educational Mechatronics Framework

Author:

Lopez-Neri Emmanuel1ORCID,Luque-Vega Luis F.12ORCID,González-Jiménez Luis E.3ORCID,Guerrero-Osuna Héctor A.4ORCID

Affiliation:

1. CIIDETEC-UVM Guadalajara Sur, Universidad del Valle de México, Tlaquepaque 45601, Jalisco, Mexico

2. Department of Technological and Industrial Processes, ITESO, Tlaquepaque 45604, Jalisco, Mexico

3. Department of Electronics Systems and Computing, ITESO, Tlaquepaque 45604, Jalisco, Mexico

4. Posgrado en Ingeniería y Tecnología Aplicada, Unidad Académica de Ingeniería Eléctrica, Universidad Autónoma de Zacatecas, Zacatecas City 98000, Zacatecas, Mexico

Abstract

Educational mechatronics aims to be the evolution of educational robotics so it can be identified as a part of the educational paradigm of the university, its academic spaces, infrastructure, and practical activities. The fundamental goal of this framework is to develop the knowledge and skills that the new industrial world, inspired by the latest technologies, necessitates. This work proposes the modular design of a robotic arm aligned with the extended educational mechatronics conceptual framework by designing and implementing educational tools to develop the knowledge and skills required for Industry 4.0. The 3D-printed, low-cost robotic arm is designed to be used in a motion capture system for robotics applications to build kinematics concepts for a learning process. In particular, the instructional design to build the mechatronic concept of a robot workspace is carried out considering the three learning levels: concrete, representational, and abstract. The above demonstrates how the proposed pedagogical methodology can impact Industry 4.0 in the small- and medium-sized enterprises’ context.

Funder

Consejo Nacional de Ciencia y Tecnología

Laureate Education

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Control and Optimization,Mechanical Engineering,Computer Science (miscellaneous),Control and Systems Engineering

Reference30 articles.

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2. (2023, August 02). National Statistical Directory of Economic Units DENUE-INEGI Establishments Directory. Available online: https://acortar.link/O1vVCh.

3. Industry 4.0: Adoption Challenges and Benefits for SMEs;Masood;Comput. Ind.,2020

4. OECD (2022). Financing SMEs and Entrepreneurs 2022: An OECD Scoreboard, OECD Publishing.

5. The Adoption of Industry 4.0 Technologies in SMEs: Results of an International Study;Agostini;Manag. Decis.,2019

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