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Basics of Lateral Vehicle Dynamics

2016
This chapter is an introduction to lateral vehicle dynamics and steady and dynamic cornering . Basic discussions will serve to analyse the essential factors influencing the lateral vehicle dynamics of a car and the steering wheel angle and torque indicated by the driver. Models are required for a more detailed analysis, they expand upon the fundamental
Peter Pfeffer, Hans-Hermann Braess
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LATERAL DYNAMICS OF ROAD VEHICLES

Vehicle System Dynamics, 1987
SUMMARY The paper gives an introductory treatment of the handling, stability and vibrating behaviour of two-axle, two-track single unit road vehicles in combined lateral and yaw directions. The treatment is divided into two chapters. The first deals with the steady-state cornering behaviour and properties of disturbed motions.
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Lateral dynamics of lattice solitons

2008 Conference on Lasers and Electro-Optics, 2008
We derive an analytic formula for the lateral dynamics of solitons in a general inhomogeneous nonlinear media and demonstrate numerically that it can be valid for tens of diffraction lengths.
Y. Sivan, G. Fibich, B. Ilan
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On the history of lateral vehicle dynamics

PAMM, 2014
AbstractThe lateral motion of vehicles on tracks and roads is characterized by the rolling contact between wheels and guideway. Railway vehicles feature passive lateral guidance while road vehicles are operated by steering. Lateral dynamics is an extremely complex problem but the fundamental behaviour can already understood by strongly simplified ...
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Dynamic stiffness for lateral buckling

Computers & Structures, 1992
Abstract The dynamic stiffness method can predict an infinite number of natural modes of a structural system by means of a finite number of coordinates. It has been successful for dynamic structural analysis under the influence of constant axial force.
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Comparative Study on Bifurcation and Stability Control of Vehicle Lateral Dynamics

SAE International Journal of Vehicle Dynamics Stability and NVH, 2021
Fei Lai, C. Huang, Chengyue Jiang
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Lateral Capillary Forces (Dynamics)

2013
This chapter presents a study on the dynamics of lateral motion of a liquid meniscus confined by a circular pad and a circular chip moving parallely to the pad. This problem is a typical flip-chip case study, whose use is wide-spread in industrial assembly.
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Lateral Dynamics and Stability of the Skateboard

Journal of Applied Mechanics, 1979
The natural lateral dynamic behavior of a skateboard is described in the absence of rider control. The effects of vehicle and rider parameters are investigated and stability criteria are derived in terms of these parameters. It is shown that for certain parameter values a simple one-degree-of-freedom vehicle model predicts a critical speed above which ...
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Physics-Informed Data-Based LPV Modeling and Validations of Lateral Vehicle Dynamics

IEEE Transactions on Intelligent Vehicles
This article introduces an integrated physics-data-based approach to derive a linear parameter varying (LPV) model for nonlinear lateral vehicle dynamics.
Wenpeng Wei, Guo-dong Yin, Tianyi He
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