Tyre–road friction coefficient estimation based on the discrete-time extended Kalman filter

Author:

Enisz Krisztian1,Szalay Istvan1,Kohlrusz Gabor1,Fodor Denes1

Affiliation:

1. Institute of Mechanical Engineering, University of Pannonia, Veszprém, Hungary

Abstract

This paper presents a new algorithm for estimation of the instantaneous value and the maximum value of the tyre–road friction coefficient (the adhesion coefficient) depending on the quality of the road surface. The algorithm applies the discrete-time extended Kalman filter for state estimation. The underlying discrete-time non-linear state-space model was based on a two-wheel longitudinal vehicle dynamics model extended to include the scale factor parameter of the ‘magic formula’ for the longitudinal tyre force introduced by Pacejka. To verify the Kalman-filter-based algorithm, a validated real-time hardware-in-the-loop simulation environment was utilized, and the results were in agreement with the expectations.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

Reference18 articles.

1. Pacejka HB. Tyre and vehicle dynamics. Oxford: Butterworth–Heinemann, 2012, pp. 172–209.

2. Wallman C, Astrom H. Friction measurement methods and the correlation between road friction and traffic safety. VTI Meddelanden 911A, Swedish National Road and Transport Research Institute, Linköping, Sweden, 2001.

3. Shaffer S, Christiaen A, Rogers M. Heavy vehicle safety research, Task 2003E1: assessment of friction-based pavement methods and regulations. Final Report, National Transportation Research Center, Knoxville, Tennessee, USA, July 2006.

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