Title of article :
An adaptive modified fuzzy-sliding mode longitudinal control design and simulation for vehicles equipped with ABS system
Author/Authors :
Sadeghi Namaghi, Sina MSc student - Mechanic Department of Ferdowsi University of Mashhad , Moavenian, Majid Mechanic Department of Ferdowsi University of Mashhad
Pages :
13
From page :
2895
To page :
2907
Abstract :
In order to improve the safety and longitudinal stability of a vehicle equipped with standard ABS system, this paper, analyzes the basic principles of vehicles stability and proposes a control strategy based on fuzzy adaptive control which will adjust PID gain parameters, using genetic algorithm. A linear three-degree-of-freedom (DOF) vehicle model was set up in Simulink and the stability test was conducted utilizing jointly a joint established simulation platform with CarSim. For controlling the brake length, traditional controllers have difficulty in guaranteeing performance and stability over a wide range of parameter changes and disturbances. Therefore, a two level controller by providing a modified Sliding Mode Control (SMC) will be used. Using this approach the flexibility increased and brake length and rotor temperatures decreases significantly. This results improvement of the vehicle’s stability and brakes fatigue lifespan.
Keywords :
ABS , Adaptive Fuzzy-PID , SMC , Longitudinal Stability
Journal title :
Astroparticle Physics
Serial Year :
2019
Record number :
2467354
Link To Document :
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