2012Unpublished venueRequires access

Robust estimation and control of tire traction forces

Tesheng Hsiao

Open publisher page 2 citations

Abstract

This paper proposes a tire traction force control scheme which effectively deals with the highly nonlinear and uncertain tire-road interaction, and variations in road conditions. Moreover, the proposed control scheme is based on robust estimations of traction forces; therefore, unlike the slip-ratio-based methods, achievement of desired traction forces is guaranteed by the proposed control scheme. Then simulations are conducted for verification. The results show that the performance of traction force estimation and control is satisfactory, even under the conditions of suddenly changed tire-road friction-coefficients and mismatched tire models for controller design and simulations.

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What this paper is about

This paper proposes a tire traction force control scheme which effectively deals with the highly nonlinear and uncertain tire-road interaction, and variations in road conditions. Moreover, the proposed control scheme is based on robust estimations of traction forces; therefore, unlike the slip-ratio-based methods, achievement of desired traction forces is guaranteed by the proposed control scheme. Then simulations are conducted for verification. The results show that the performance of traction force estimation and control is satisfactory, even under the conditions of suddenly changed tire-road friction-coefficients and mismatched tire models for controller design and simulations.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper proposes a tire traction force control scheme which effectively deals with the highly nonlinear and uncertain tire-road interaction, and variations in road conditions. Moreover, the proposed control scheme is based on robust estimations of traction forces; therefore, unlike the slip-ratio-based methods, achievement of desired traction forces is guaranteed by the proposed control scheme. Then simulations are conducted for verification. The results show that the performance of traction force estimation and control is satisfactory, even under the conditions of suddenly changed tire-road friction-coefficients and mismatched tire models for controller design and simulations.

Key concepts: Traction control system, Traction (geology), Control theory (sociology), Tractive force, Nonlinear system, Slip (aerodynamics), Robust control, Tire balance

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