A Multi-objective Optimization Method for Automobile Suspension System
A multi-objective optimization, automotive suspension technology, applied in the field of automotive structure optimization
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[0076] The present invention will be described in further detail below by examples in conjunction with the accompanying drawings.
[0077] established as figure 1 The vibration model of the vehicle suspension system shown, where m 1 、m 2 are the masses of the front and rear wheels respectively, m 5 is the body mass, I x , I y are the moments of inertia of the body around the horizontal and vertical axes, respectively, k 1 、k 2 are the vertical stiffness of the front and rear tires, k 5 、k 6 are the stiffnesses of the front and rear suspension springs respectively, c 5 、c 6 are the damping of front and rear suspension shock absorbers respectively, c 5 、c 6 are the damping of the front and rear suspension shock absorbers, respectively, q 1 ,q 2 ,q 3 ,q 4 are respectively the excitations of the road to the left front wheel, left rear wheel, right front wheel, and right rear wheel, z 1 ,z 2 ,z 3 ,z 4 is the displacement of the left front, left rear, right front ...
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