Rule-based control of a semi-active suspension for minimal sprung mass acceleration: Design and measurement

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Abstract

In this paper, a rule-based controller is developed for the control of a semi-active suspension to achieve minimal vertical acceleration. The rules are derived from the results obtained with a model predictive controller. It is shown that a rule-based controller can be derived that mimics the results of the model predictive controller and minimises vertical acceleration. Besides this, measurements on a test vehicle show that the developed rule-based controller achieves a real-world reduction of the vertical acceleration, which is in agreement with the simulations.

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Van Der Sande, T. P. J., Besselink, I. J. M., & Nijmeijer, H. (2016). Rule-based control of a semi-active suspension for minimal sprung mass acceleration: Design and measurement. Vehicle System Dynamics, 54(3), 281–300. https://doi.org/10.1080/00423114.2015.1135970

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