Global Control of the Furuta Pendulum Using Artificial Neural Networks and Feedback of State Variables

This paper presents the mathematical modeling of the Furuta Pendu-lum by power functions, taking into account the non linear own dynamics of the physical systems and considering the existing couplings between the electric and mechanic devices. A control process based on feedback of state variables (...

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Main Authors: Luisa F. Escobar-Dávila, Oscar D. Montoya-Giraldo, Didier Giraldo-Buitrago
Format: Article
Language:English
Published: Instituto Tecnológico Metropolitano 2013-06-01
Series:TecnoLógicas
Subjects:
Online Access:http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/405
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spelling doaj-6e4e741d1541447c97cd7976e8cd03a62020-11-25T01:46:26ZengInstituto Tecnológico MetropolitanoTecnoLógicas0123-77992256-53372013-06-010307194355Global Control of the Furuta Pendulum Using Artificial Neural Networks and Feedback of State VariablesLuisa F. Escobar-Dávila0Oscar D. Montoya-Giraldo1Didier Giraldo-Buitrago2Ing. electricista, Facultad de Ingeniería, Universidad Tecnológica de Pereira, PereiraIng. electricista, Facultad de Ingeniería, Universidad Tecnológica de Pereira, PereiraIng. electricista, Facultad de Ingeniería, Universidad Tecnológica de Pereira, PereiraThis paper presents the mathematical modeling of the Furuta Pendu-lum by power functions, taking into account the non linear own dynamics of the physical systems and considering the existing couplings between the electric and mechanic devices. A control process based on feedback of state variables (FSV) for the equilibrium point is developed and two topics for the non linear zone are addressed. First of all, functions are implemented to represent the energetic states of the plant in a global way and the operation regions are established (“Swing up” zone), and later Artificial Neural Networks (ANN) are employed to simulate the behavior of the energy functions. Finally, it is presented the combination between the control techniques, considering the own constrains of the actuators and sensors used, besides of this, a study is done in a simulated environment of the physical phenomena that may disturb system behavior, and the capacity, sensitivity and robustness of the controller is verified.http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/405Modelo matemáticoPéndulo de Furutavariables de estadoRedes Neuronales Artificialescontrol híbrido.
collection DOAJ
language English
format Article
sources DOAJ
author Luisa F. Escobar-Dávila
Oscar D. Montoya-Giraldo
Didier Giraldo-Buitrago
spellingShingle Luisa F. Escobar-Dávila
Oscar D. Montoya-Giraldo
Didier Giraldo-Buitrago
Global Control of the Furuta Pendulum Using Artificial Neural Networks and Feedback of State Variables
TecnoLógicas
Modelo matemático
Péndulo de Furuta
variables de estado
Redes Neuronales Artificiales
control híbrido.
author_facet Luisa F. Escobar-Dávila
Oscar D. Montoya-Giraldo
Didier Giraldo-Buitrago
author_sort Luisa F. Escobar-Dávila
title Global Control of the Furuta Pendulum Using Artificial Neural Networks and Feedback of State Variables
title_short Global Control of the Furuta Pendulum Using Artificial Neural Networks and Feedback of State Variables
title_full Global Control of the Furuta Pendulum Using Artificial Neural Networks and Feedback of State Variables
title_fullStr Global Control of the Furuta Pendulum Using Artificial Neural Networks and Feedback of State Variables
title_full_unstemmed Global Control of the Furuta Pendulum Using Artificial Neural Networks and Feedback of State Variables
title_sort global control of the furuta pendulum using artificial neural networks and feedback of state variables
publisher Instituto Tecnológico Metropolitano
series TecnoLógicas
issn 0123-7799
2256-5337
publishDate 2013-06-01
description This paper presents the mathematical modeling of the Furuta Pendu-lum by power functions, taking into account the non linear own dynamics of the physical systems and considering the existing couplings between the electric and mechanic devices. A control process based on feedback of state variables (FSV) for the equilibrium point is developed and two topics for the non linear zone are addressed. First of all, functions are implemented to represent the energetic states of the plant in a global way and the operation regions are established (“Swing up” zone), and later Artificial Neural Networks (ANN) are employed to simulate the behavior of the energy functions. Finally, it is presented the combination between the control techniques, considering the own constrains of the actuators and sensors used, besides of this, a study is done in a simulated environment of the physical phenomena that may disturb system behavior, and the capacity, sensitivity and robustness of the controller is verified.
topic Modelo matemático
Péndulo de Furuta
variables de estado
Redes Neuronales Artificiales
control híbrido.
url http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/405
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