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CURRENT STATUS OF CONTROL STRATEGIES IN ENERGY RECOVERY SYSTEMS IN ELECTRIC VEHICLES

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JANUARY 2022   -  Volume: 97 -  Pages: 58-63

DOI:

https://doi.org/10.6036/10134

Authors:

JUAN CARLOS NUÑEZ DORANTES
-
ALBINO MARTINEZ SIBAJA
-
JOSE PASTOR RODRIGUEZ JARQUIN
- OSCAR OSVALDO SANDOVAL GONZALEZ -
RUBEN POSADA GOMEZ
-
MANUEL ADAM MEDINA

Disciplines:

  • Electrical technology and engineering (SISTEMAS DE AUTOMATIZACION, CONTROL Y GESTION DE REDES ELECTRICAS )

Downloads:   314

How to cite this paper:  
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Received Date :   11 March 2021

Reviewing Date :   12 March 2021

Accepted Date :   25 May 2021


Key words:
Freno regenerativo, controladores de frenado, vehículo eléctrico, motor eléctrico, sistema de recuperación de energía, estrategias de control.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

There is currently an increasing demand for electric vehicles that require greater autonomy and energy efficiency when driving them. Control strategies in energy recovery systems are crucial to optimize the amount of energy returned to the battery and to ensure safety and stability for the user. In this paper, active fault tolerant control systems (AFTC) and passive fault tolerant control systems (PFTC) with other
specialized control strategies (Fuzzy Logic, Neural Networks and Perturbation Rejection Controllers) are compared with classical PID controllers.The results of the simulations show that, keeping the battery voltage constant, returns of about 12% of the battery charge capacity are achieved while the braking time of the vehicles is reduced.

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