Title of article :
Rollover avoidance in sport utility vehicles: a multi-criteria viewpoint
Author/Authors :
Rezapour, Javad Department of Mechanical Engineering - Lahijan Branch Islamic Azad University, Lahijan, Iran , Afzali, Parvaneh Department of Software Engineering - Astaneh Ashrafieh Branch Islamic Azad University, Astaneh Ashrafieh, Iran
Pages :
12
From page :
3357
To page :
3368
Abstract :
Rollover of sport utility vehicles is a critical challenge for dynamic stability of the vehicle. Due to the high rate of fatalities resulted from the rollover, in order to reduces the injuries, the design of active vehicle controllers has received significant attention among the researchers and car companies. In this article, a multi-criteria optimum method is discussed in order to design a dynamics stabilizing controller via differential braking with an optimum braking torque distribution. To this end, the nonlinear control method on the basis of the sliding mode techniques has been implemented that provides ride comfort, improve safety performance, and maintain maneuverability. To address the tradeoff between the challenge issue in these systems in terms of maneuverability and rollover prevention capability, we formulate an artificial intelligence-based multi-criteria genetic algorithms. The simulation verification analysis indicates that the utilized optimum distribution braking torques result in the desired enhancement in roll stability of the vehicle.
Keywords :
Artificial intelligence , Lateral instability , Multi-criteria optimization , Sliding control theory
Journal title :
Automotive Science and Engineering
Serial Year :
2020
Record number :
2552738
Link To Document :
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