Optimisation of the nonlinear suspension characteristics of a light commercial vehicle

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Abstract

The optimum functional characteristics of suspension components, namely, linear/nonlinear spring and nonlinear damper characteristic functions are determined using simple lumped parameter models. A quarter car model is used to represent the front independent suspension, and a half car model is used to represent the rear solid axle suspension of a light commercial vehicle. The functional shapes of the suspension characteristics used in the optimisation process are based on typical shapes supplied by a car manufacturer. The complexity of a nonlinear function optimisation problem is reduced by scaling it up or down from the aforementioned shape in the optimisation process. The nonlinear optimised suspension characteristics are first obtained using lower complexity lumped parameter models. Then, the performance of the optimised suspension units are verified using the higher fidelity and more realistic Carmaker model. An interactive software module is developed to ease the nonlinear suspension optimisation process using the Matlab Graphical User Interface tool. © 2013 Dinçer Özcan et al.

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APA

Özcan, D., Sönmez, Ü., & Güvenç, L. (2013). Optimisation of the nonlinear suspension characteristics of a light commercial vehicle. International Journal of Vehicular Technology, 2013. https://doi.org/10.1155/2013/562424

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