A Vibration Control Method for Vehicle Active Suspension System Based on Specified Performance Function
An active suspension and function technology, applied in the field of vehicle engineering, can solve problems such as large amount of calculation, complex control strategy design, and difficulty in guaranteeing the transient performance of the system
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Embodiment 1
[0058] Embodiment 1: as Figure 1-5 As shown, a vibration control method of the vehicle active suspension system based on the specified performance function, firstly, the dynamic model of the vehicle active suspension is established according to the vehicle dynamics theory and Newton's second law; then a performance function is designed to make the vertical displacement , roll angle and pitch angle converge to the boundary of the performance function; then the inverse function is used to convert the vertical displacement, roll angle and pitch angle equivalently into conversion errors; finally, the vertical, roll and pitch directions are designed through the conversion errors The control law is used for active vibration control of the vehicle suspension.
[0059] Further, it can be set that the specific steps of the method can be performed according to the following steps:
[0060] Step1. According to the vehicle dynamics theory and Newton's second law, the dynamic model of th...
Embodiment 2
[0104] Embodiment 2: A joint control method of the vehicle active suspension system based on a specified performance function, the specific steps of the method are as follows:
[0105] According to the flow described in the above-mentioned invention, a motion control with a specified performance function is performed on an E-type SUV car, and the nonlinear simplified diagram of the active suspension of the whole vehicle is shown as figure 1 As shown, numerical simulation is carried out through the co-simulation of Matlab / Simulink and Carsim software.
[0106] Step1. Establish the dynamic model of the vehicle active suspension: According to the vehicle dynamics theory and Newton's second law, the dynamic model of the vehicle active suspension system is obtained as follows:
[0107] The dynamic equation in the vertical direction of the body center of mass:
[0108]
[0109] The dynamic equation for the body roll direction:
[0110]
[0111] The dynamic equation of the bo...
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