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Semiactive control methodologies for suspension control with magnetorheological dampers

机译:用磁流变阻尼器进行悬架控制的半主动控制方法

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摘要

Suspension systems are one of the most critical components of transportation vehicles. They are designed to provide comfort to the passengers to protect the chassis and the freight. Suspension systems are normally provided with dampers that mitigate these harmful and uncomfortable vibrations. In this paper, we explore two control methodologies (in time and frequency domain) used to design semiactive controllers for suspension systems that make use of magnetorheological dampers. These dampers are known because of their nonlinear dynamics, which requires the use of nonlinear control methodologies for an appropriate performance. The first methodology is based on the backstepping technique, which is applied with adaptation terms and H â\u88\u9e constraints. The other methodology to be studied is the quantitative feedback theory (QFT). Despite QFT is intended for linear systems, it can still be applied to nonlinear systems. This can be achieved by representing the nonlinear dynamics as a linear system with uncertainties that approximately represents the true behavior of the plant to be controlled. The semiactive controllers are simulated in MATLAB/Simulink for performance evaluation. © 2006 IEEE.
机译:悬架系统是运输车辆最关键的组件之一。它们旨在为乘客提供舒适感,以保护底盘和货物。悬架系统通常配有减震器,可减轻这些有害和不舒适的振动。在本文中,我们探索了两种控制方法(在时域和频域),这些方法用于设计使用磁流变阻尼器的悬架系统的半主动控制器。这些阻尼器因其非线性动力学而闻名,这需要使用非线性控制方法来实现适当的性能。第一种方法基于后推技术,该技术适用于自适应项和Hâ88约束。要研究的另一种方法是定量反馈理论(QFT)。尽管QFT适用于线性系统,但它仍然可以应用于非线性系统。这可以通过将非线性动力学表示为具有不确定性的线性系统来实现,该不确定性近似表示要控制的工厂的真实行为。半活动控制器在MATLAB / Simulink中进行仿真以评估性能。 ©2006 IEEE。

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