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Application of global sensitivity analysis to a tire model with correlated inputs
Affiliation:1. Université de Lorraine, 2 Rue Jean Lamour, 54519 Vandoeure Lès Nancy Cedex, France;2. Université de La Réunion, 15 Avenue René Cassin, 97715 Saint-Denis Cedex 9, La Réunion, France;3. Université de Haute Alsace, 12 Rue des frères Lumière, 68093 Mulhouse Cedex, France;1. Institute of Mechanical & Automotive Engineering, South China University of Technology, Guangzhou 510641,China;2. Institute of Mechanical & Electrical Engineering, Guangzhou University, Guangzhou 510006,China;1. Faculty of Mathematics, Mechanics and Informatics, Hanoi University of Science, 334, Nguyen Trai Str., Thanh Xuan, Hanoi, Viet Nam;2. Department of Continuum Mechanics and Structures, E.T.S. Ing. Caminos, Canales y Puertos, Universidad Politecnica de Madrid, 28040 Madrid, Spain;3. Department of Mathematics, Vietnam National University of Forestry, Xuan Mai-Chuong My, Hanoi, Viet Nam
Abstract:When a vehicle equipped with tire is manoeuvred on the ground, the tires are submitted to a number of forces – longitudinal force when driving or braking torque is applied to the wheel and/or lateral force when the wheel is steered to turn at a corner. Pacejka model describes these forces that represent the reaction of the road onto the tire. This nonlinear model depends on correlated parameters such as the friction coefficient, the vertical load, and the cornering stiffness, which have to be identified from some measurements. The sensitivity of Pacejka model to these correlated parameters are studied using an approach based on polynomial chaos. It consists in decorrelating the parameters using the Nataf transformation and then, in expanding the model output onto polynomial chaos. The sensitivity indices are then obtained straightforwardly from the algebraic expression of the coefficients of the polynomial expansion.
Keywords:Global sensitivity analysis  Correlated parameters  Polynomial chaos expansion  Tire model
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