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Hybrid Model Predictive Control Method for Adjustable Damping Semi-Active Suspension Based on Damping Force Constraint

A semi-active suspension and predictive control technology, applied in the direction of adaptive control, general control system, control/adjustment system, etc., can solve the problem of not considering the nonlinear boundary constraints of the damping force of the shock absorber, and not directly considering the logical relationship of the damping force , Suspension can not get the control effect and other problems, to achieve the effect of solving the rolling time domain optimization problem, and solving the contradiction between comfort and stability

Active Publication Date: 2020-12-11
TONGJI UNIV +1
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  • Abstract
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  • Application Information

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Problems solved by technology

[0003] At present, the logic relationship between the working range of the damping force and the control force demand signal and the relative speed of the suspension is not directly considered in the control process of the semi-active suspension. The output force range and the relative speed of the suspension limit or impose constraints on it, resulting in the suspension not being optimally controlled
Giorgetti N et al. transformed the constrained semi-active suspension control system into a piecewise affine system based on model predictive control theory, and solved it by mixed integer quadratic programming, but did not consider the nonlinear boundary constraints of the damping force of the shock absorber (Giorgetti N, Bemporad A, Tsengz H E, et al. Hybrid model predictive control application towards optimal semi-active suspension[J]. International Journal of Control, 2006, 79(5):391-398)

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  • Hybrid Model Predictive Control Method for Adjustable Damping Semi-Active Suspension Based on Damping Force Constraint
  • Hybrid Model Predictive Control Method for Adjustable Damping Semi-Active Suspension Based on Damping Force Constraint
  • Hybrid Model Predictive Control Method for Adjustable Damping Semi-Active Suspension Based on Damping Force Constraint

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Embodiment Construction

[0030] The present invention takes a semi-active suspension single-wheel vehicle model as an embodiment, and the embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings, but the present invention can be implemented in many different ways defined and covered by the claims.

[0031] The suspension optimization control objective function that comprehensively weighs the comfort and handling stability of the present invention includes at least two parts: a) using the vertical vibration acceleration of the vehicle body and the second norm of the suspension dynamic stroke as the comfort performance index; b) using the tire dynamic The second norm of the displacement is used as the control performance index.

[0032] The invention provides a damping adjustable semi-active suspension hybrid model predictive control method based on damping force constraints, establishes a semi-active suspension hybrid system model, and performs...

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Abstract

The invention discloses a damping adjustable semi-active suspension hybrid model predictive control method based on damping force constraints. The method comprises steps of establishing a semi-active suspension hybrid system model; based on the model predictive control theory, performing the finite time domain optimal control of the semi-active suspension hybrid system; and transforming it into a mixed integer quadratic programming problem with real and binary variables, to achieve the hybrid model predictive control of the damping adjustable semi-active suspension. The method has the advantages of solving the contradiction between comfort and handling stability; avoiding the nonlinear constraint condition in the semi-active suspension optimization method; converting the semi-active suspension control problem into the finite time domain constrained optimal control problem; and effectively solving the rolling time domain optimization problem with nonlinear constraints.

Description

technical field [0001] The invention relates to the technical field of automobile suspension control, in particular to a hybrid model predictive control method for adjustable damping semi-active suspension based on damping force constraints. Background technique [0002] Suspension systems are critical to improving the ride and handling of a car. The semi-active suspension system overcomes the technical defect that the stiffness and damping of the passive suspension cannot be adjusted, and its cost is much lower than that of the active suspension, which represents the main direction of the development of the automobile suspension. Among them, the adjustable damping semi-active suspension can independently track the damping force demand signal, and the damping force can be continuously adjusted to any point in the damping working area, which can meet the vehicle performance requirements under different road conditions and working conditions. At present, semi-active suspensio...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G05B13/04
CPCG05B13/042
Inventor 吴光强张亮修陈洁王宇郭炯珉金杰鞠丽娟马畅窦传威孙安宁魏宏熊云亮
Owner TONGJI UNIV
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