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首页> 外文期刊>International Journal of Advanced Robotic Systems >Nonlinear adaptive sliding-mode control of the electronically controlled air suspension system
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Nonlinear adaptive sliding-mode control of the electronically controlled air suspension system

机译:电子控制空气悬架系统的非线性自适应滑模控制

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摘要

Recent years, electronically controlled air suspension has been widely used in vehicles to improve the riding comfort and the road holding ability. This article presents a new nonlinear adaptive sliding-mode control method for electronically controlled air suspension. A nonlinear dynamical model of electronically controlled air suspension is established, where the nonlinear dynamical characteristic of the air spring is considered. Based on the proposed nonlinear dynamic model, an adaptive sliding-mode control method is presented to stabilize the displacement of electronically controlled air suspension in the presence of parameter uncertainties. Parameter adaptive laws are designed to estimate the unknown parameters in electronically controlled air suspension. Stability analysis of the proposed nonlinear adaptive sliding-mode control method is given using Lyapunov stability theory. At last, the reliability of the proposed control method is evaluated by the computer simulation. Simulation research shows that the proposed control method can obtain the satisfactory control performance for electronically controlled air suspension.
机译:近年来,电子控制的空气悬架已广泛用于车辆,以提高骑行舒适和道路持有能力。本文介绍了一种新的非线性自适应滑模控制方法,用于电子控制空气悬浮液。建立了电子控制空气悬架的非线性动力学模型,其中考虑了空气弹簧的非线性动力学特性。基于所提出的非线性动态模型,提出了一种自适应滑模控制方法以在参数不确定性的存在下稳定电子控制空气悬浮液的位移。参数自适应定律旨在估计电子控制空气悬架中的未知参数。利用Lyapunov稳定性理论给出了所提出的非线性自适应滑模控制方法的稳定性分析。最后,通过计算机仿真评估所提出的控制方法的可靠性。仿真研究表明,所提出的控制方法可以获得电子控制空气悬浮液的令人满意的控制性能。

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