2011•Unpublished venueRequires access

Study on stability control during split-mu ABS braking

Shuwen Zhou, Siqi Zhang

Open publisher page 4 citations

Abstract

Split-mu braking means that a vehicle brakes on a road surface with left right dissymmetrical friction coefficient. For most drivers, a heavy braking on split-mu road surface will cause vehicle to skid or spin or lose the steering control. In this paper, an active front steering control was designed to improve the maneuver stability while braking on split-mu road surface with four-channel Anti-lock Braking System which will produce an additional yaw torque to let the vehicle deviate from the straight direction but can achieve maximum braking force. A multi-body vehicle model was built to simulate and analyze the vehicle dynamics performance during braking on split-mu road surface. The simulation results show that the new control system integrated with active front steering and four-channel ABS can improve the vehicle lateral stability on split-mu road surface braking.

About this research paper

What this paper is about

Split-mu braking means that a vehicle brakes on a road surface with left right dissymmetrical friction coefficient. For most drivers, a heavy braking on split-mu road surface will cause vehicle to skid or spin or lose the steering control. In this paper, an active front steering control was designed to improve the maneuver stability while braking on split-mu road surface with four-channel Anti-lock Braking System which will produce an additional yaw torque to let the vehicle deviate from the straight direction but can achieve maximum braking force. A multi-body vehicle model was built to simulate and analyze the vehicle dynamics performance during braking on split-mu road surface. The simulation results show that the new control system integrated with active front steering and four-channel ABS can improve the vehicle lateral stability on split-mu road surface braking.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Split-mu braking means that a vehicle brakes on a road surface with left right dissymmetrical friction coefficient. For most drivers, a heavy braking on split-mu road surface will cause vehicle to skid or spin or lose the steering control. In this paper, an active front steering control was designed to improve the maneuver stability while braking on split-mu road surface with four-channel Anti-lock Braking System which will produce an additional yaw torque to let the vehicle deviate from the straight direction but can achieve maximum braking force. A multi-body vehicle model was built to simulate and analyze the vehicle dynamics performance during braking on split-mu road surface. The simulation results show that the new control system integrated with active front steering and four-channel ABS can improve the vehicle lateral stability on split-mu road surface braking.

Key concepts: Threshold braking, Electronic brakeforce distribution, Automotive engineering, Engine braking, Braking distance, Road surface, Dynamic braking, Anti-lock braking system

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