CONTROL Y MOVIMIENTO DE UN ROBOT INSECTO: UN ENFOQUE PRÁCTICO CON CONTROLADORES PID
DOI:
https://doi.org/10.61582/fqvfny91Keywords:
controllers, correlation, technology, PIDAbstract
El estudio de este articulo se centra en la evaluación y conceptualización de un robot con forma de insecto, con un enfoque particular en la aplicación de controladores PID. Se investiga la correlación entre los aspectos anatómicos y conductuales de los insectos, junto con la precisión y adaptabilidad de los controladores PID, con el propósito de permitir a estos robots insectos desplazarse con eficiencia en entornos desafiantes. Este enfoque de investigación implica la integración de principios bioinspirados y técnicas de control avanzado dentro del ámbito de la robótica. Se destaca la importancia de la percepción ambiental mediante el uso de sensores y la implementación en tiempo real del controlador PID como elementos fundamentales en esta tecnología. El controlador PID emerge como una herramienta de gran potencial para lograr movimientos estables y precisos en un robot insecto, y su aplicación efectiva puede significativamente elevar las capacidades y el rendimiento de estos dispositivos. Además, se lleva a cabo un análisis de estabilidad para evaluar el comportamiento del robot en diversas condiciones, y se presentan los resultados de pruebas de desplazamiento del robot en diferentes superficies, variando las configuraciones del controlador PID y utilizando diferentes tipos de baterías.
The present study focuses on the evaluation and conceptualization of an insect-like robot, with a particular focus on the application of PID controllers. The correlation between the anatomical and behavioral aspects of insects, along with the accuracy and adaptability of PID controllers, is investigated with the purpose of enabling these insect robots to move efficiently in challenging environments. This research approach involves the integration of bio-inspired principles and advanced control techniques within the field of robotics. It highlights the importance of environmental sensing using sensors and the real-time implementation of the PID controller as fundamental elements in this technology. The PID controller emerges as a tool with great potential to achieve stable and precise movements in an insect robot, and its effective application can significantly enhance the capabilities and performance of these devices. In addition, a stability analysis is carried out to evaluate the behavior of the robot under various conditions, and the results of robot displacement tests on different surfaces, varying the PID controller configurations and using different types of batteries are presented.
Keywords: controllers, correlation, technology, PID.
Downloads
Published
Issue
Section
License
Copyright (c) 2023 Roger Carbo (Author)

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
EcoSur is an open access journal, which means that all users can access the content for free.
All our articles are available under the Creative Commons License (CC BY-NC-SA 4.0), the terms of Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0). This means that you are free to share (copy and redistribute the material in any medium or format) and adapt (remix, transform and build upon the material), under the following conditions:
Attribution: You must give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in a way that suggests that the licensor endorses you or your use of the material.
NonCommercial: You may not use the material for commercial purposes.
Share Alike: If you remix, transform, or build upon the material, you must distribute your contributions under the same license as the original.
No additional restrictions: You may not apply legal terms or technological measures that legally restrict others from doing what the license allows.
For more information about this license and the full terms, visit Creative Commons CC BY-NC-SA 4.0 Deed.
How to Cite
Similar Articles
- Carlos Damián Asencio Suarez, Simulación y control: el secreto detrás de los robots seguidores de línea destreza , EcoSur: Innovation, Technology and Sustainable Development of Latin America: Vol. 1 No. 04 (2023): EcoSur: Innovación, Tecnología y Desarrollo Sostenible de América Latina.
- Laura Vásconez, Andres Pinargote, Bryan Sanchez, Julissa Orrala, Jason Ramirez, Ariel Buenaño, CONTROLADOR DE POSICION Y VELOCIDAD CON PID DISCRETO EN MOTOR DC CON CODIFICACION , EcoSur: Innovation, Technology and Sustainable Development of Latin America: Vol. 1 No. 02 (2023): EcoSur: Innovación, Tecnología y Desarrollo Sostenible de América Latina.
- Anthony Rosales, Marly Marcela Asencio Torres , Jerick Robert Suarez Soza , Ariel Vinicio Terán Castro, Ariel Enrique Calixto Ascencio, DISEÑO Y OPTIMIZACIÓN AVANZADA DE CONTROLADORES PID ANALÓGICOS PARA SISTEMAS DE POSICIONAMIENTO PRECISO. , EcoSur: Innovation, Technology and Sustainable Development of Latin America: Vol. 1 No. 02 (2023): EcoSur: Innovación, Tecnología y Desarrollo Sostenible de América Latina.
- Alex Joel Mendoza Loor, Carolina Michelle Suárez Pozo, Kevin Alexis Pozo Catuto, Marcos Guillermo Cruz Yagual, Carlos Alberto Saldaña Enderica, Comparativa de control automático PID vs control por redes neuronales artificiales. , EcoSur: Innovation, Technology and Sustainable Development of Latin America: Vol. 1 No. 03 (2023): EcoSur: Innovación, Tecnología y Desarrollo Sostenible de América Latina.
- GONZALEZ ARIEL, Application and Comparison of LQR, LQG, and State Observer Controllers in Vehicle Suspension , EcoSur: Innovation, Technology and Sustainable Development of Latin America: Vol. 1 No. 05 (2024): EcoSur: Innovación, Tecnología y Desarrollo Sostenible de América Latina.
- Nathaly Salinas, Dynamic Control and Positioning of a Tower Crane with Trolley and Hoist Using LQR, LQG, and LQE Controllers , EcoSur: Innovation, Technology and Sustainable Development of Latin America: Vol. 1 No. 06 (2024): EcoSur: Innovation, Technology, and Sustainable Development in Latin America.
- Daniel Soto, Reduction of Overshoot in a Scissor Lift Using State Observer, LQR, and LQG , EcoSur: Innovation, Technology and Sustainable Development of Latin America: Vol. 1 No. 06 (2024): EcoSur: Innovation, Technology, and Sustainable Development in Latin America.
You may also start an advanced similarity search for this article.