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Nonlinear vibration semi-active control of automotive steering using magneto-rheological damper

机译:磁流变阻尼器的汽车转向非线性振动半主动控制

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摘要

Traffic accidents are often caused by vibration of automotive steering because the vibration can make a vehicle run like a snake. A novel semi-active vibration control strategy of automotive steering with magneto-rheological (MR) damper is proposed in this paper. An adaptive RBF neural sliding mode controller is designed for the vibration system. It is showed that an equivalent dynamic model for the vibration system is established by using Lagrange method, and then treats it as actual system partially. A feedback control law is designed to make this nominal model stable. Uncertain part of system and outside disturbance are estimated using RBF neural network, and their upper boundary is obtained automatically. By constructing reasonable switch function, state variables can arrive at origin asymptotically along the sliding mode. Strong robust character of control system is proved by stability analysis and a numerical simulation example is performed to support this control scheme.
机译:交通事故通常是由汽车转向振动引起的,因为该振动会使车辆像蛇一样行驶。提出了一种新型的带有磁流变(MR)阻尼器的汽车转向半主动振动控制策略。针对振动系统设计了自适应RBF神经滑模控制器。结果表明,采用拉格朗日法建立了振动系统的等效动力学模型,并将其作为实际系统进行了部分处理。设计了反馈控制定律以使该标称模型稳定。利用RBF神经网络估计系统的不确定部分和外部干扰,并自动获得它们的上限。通过构造合理的开关函数,状态变量可以沿着滑模渐近地到达原点。通过稳定性分析证明了控制系统的强大鲁棒性,并通过数值算例验证了该控制方案的正确性。

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