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Journal Article

Citation

Yamakado M, Takahashi J, Saito S, Yokoyama A, Abe M. Veh. Syst. Dyn. 2010; 48(Suppl 1): 231-254.

Copyright

(Copyright © 2010, Informa - Taylor and Francis Group)

DOI

10.1080/00423111003706748

PMID

unavailable

Abstract

We extracted a trade-off strategy between longitudinal traction/braking force and cornering force by using jerk information through observing an expert driver's voluntary braking and turning action. Using the expert driver's strategy, we developed a new control concept, called 'G-Vectoring control', which is an automatic longitudinal acceleration control (No DYC) in accordance with the vehicle's lateral jerk caused by the driver's steering manoeuvres. With the control, the direction of synthetic acceleration (G) changes seamlessly (i.e. vectoring). The improvements in vehicle agility and stability were evaluated by theoretical analysis and through computer simulation. We then introduced a 'G-Vectoring' equipped test vehicle realised by brake-by-wire technology and executed a detailed examination on a test track. We have confirmed that the vehicle motion in view of both handling and ride quality has improved dramatically.

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