An Observer of Tire–Road Forces and Friction for Active Security Vehicle Systems

Guillaume Baffet, Ali Charara, Gérald Dherbomez

IEEE/ASME Transactions on Mechatronics · 2007 · 100 citations · 18 references

Concepts

TL;DR

The estimation of vehicle dynamic variables is essential for enhancing safety, particularly for braking and trajectory‑control systems. The study proposes an adaptive observer‑based estimation process to compute lateral tire forces, vehicle sideslip angle, and online road friction, aiming to improve safety in braking and trajectory control. The adaptive observer integrates a vehicle dynamics model with an adaptive tire force model, is benchmarked against two fixed‑parameter observers, and validated through simulation and experimental vehicle data on a dedicated platform. The results demonstrate accurate estimation and promising potential of the proposed process.

Abstract

The estimation of vehicle dynamic variables is essential for the enhancement of safety, in particular for braking and trajectory-control systems. This paper proposes a new estimation process to calculate lateral tire forces, vehicle sideslip angle, and road friction. The estimation process (an adaptive observer) is constructed by combining a vehicle model and a tire force model. More specifically, this study proposes an adaptive tire force model that takes variations in road friction into account. The adaptive observer is evaluated in comparison with two nonadaptive observers that use tire force models with fixed parameters. This study also proposes a road friction identification method operating in an online context. The observers and the road friction identification method are first evaluated using vehicle simulator software. Subsequently, observers are compared to real data acquired using an experimental vehicle. This paper also includes a description of the experimental platform. Results show the accuracy and potential of the estimation process.

References

18