2015Unpublished venueRequires access

Adaptive sliding mode control for a vehicle stability system

Anhtuan Le, Chih‐Keng Chen

Open publisher page 6 citations

Abstract

This paper presents a vehicle stability controller based on an adaptive sliding mode algorithm for yielding the vehicle yaw rate and side-slip angle to track their target values. The control law is derived using the yaw dynamics of a seven-degrees-of-freedom vehicle model, allowing the smallest yaw rate error to be achieved while maintaining the reasonable limits of the side-slip angle. The effectiveness of the control system is tested under different driving conditions through computer simulation by using a CarSim vehicle model. The simulation results showed the high performance of the designed controller even under critical operating conditions.

About this research paper

What this paper is about

This paper presents a vehicle stability controller based on an adaptive sliding mode algorithm for yielding the vehicle yaw rate and side-slip angle to track their target values. The control law is derived using the yaw dynamics of a seven-degrees-of-freedom vehicle model, allowing the smallest yaw rate error to be achieved while maintaining the reasonable limits of the side-slip angle. The effectiveness of the control system is tested under different driving conditions through computer simulation by using a CarSim vehicle model. The simulation results showed the high performance of the designed controller even under critical operating conditions.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents a vehicle stability controller based on an adaptive sliding mode algorithm for yielding the vehicle yaw rate and side-slip angle to track their target values. The control law is derived using the yaw dynamics of a seven-degrees-of-freedom vehicle model, allowing the smallest yaw rate error to be achieved while maintaining the reasonable limits of the side-slip angle. The effectiveness of the control system is tested under different driving conditions through computer simulation by using a CarSim vehicle model. The simulation results showed the high performance of the designed controller even under critical operating conditions.

Key concepts: CarSim, Yaw, Control theory (sociology), Vehicle dynamics, Sliding mode control, Electronic stability control, Slip (aerodynamics), Controller (irrigation)

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