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Fuzzy finite-frequency output feedback control for nonlinear active suspension systems with time delay and output constraints

机译:具有时滞和输出约束的非线性主动悬架系统的模糊有限频率输出反馈控制

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摘要

This paper investigates the problem of fuzzy finite-frequency output feedback control for nonlinear active suspension systems with time delay and output constraints. Firstly, as the physical suspension systems always exist the phenomenon of sprung and un-sprung mass variation and time delay, the Takagi-Sugeno (T-S) fuzzy model is adopted to represent the nonlinear uncertain active suspension system with uncertainties and time delay. Secondly, since the human body is much more sensitive to vertical vibrations between 4 and 8 Hz, a finite-frequency control criterion is formulated for the controller deign with consideration of time delay and output constraints. Other mechanical constraints such as suspension travel, tire dynamic deflection and actuator saturation are also considered. Thirdly, on a practical point of view, not all the states are online measurable. Hence, a novel fuzzy static output feedback (SOF) controller is proposed by applying the parallel-distributed compensation (PDC) scheme. The sufficient conditions for deriving the fuzzy SOF controller are obtained in terms of linear matrix inequalities (LMIs). Finally, numerical simulations on a quarter-car suspension model are conducted to validate the effectiveness and applicability of the proposed fuzzy SOF controller.
机译:研究具有时滞和输出约束的非线性主动悬架系统的模糊有限频率输出反馈控制问题。首先,由于物理悬架系统始终存在簧载和非簧载质量变化和时滞现象,因此采用Takagi-Sugeno(T-S)模糊模型来表示具有不确定性和时滞的非线性不确定主动悬挂系统。其次,由于人体对4至8 Hz之间的垂直振动更加敏感,因此为控制器设计制定了有限频率控制标准,同时考虑了时间延迟和输出约束。还考虑了其​​他机械约束,例如悬架行程,轮胎动态挠度和执行器饱和度。第三,从实用的角度来看,并非所有州都可以在线测量。因此,通过应用并行分布补偿(PDC)方案,提出了一种新颖的模糊静态输出反馈(SOF)控制器。根据线性矩阵不等式(LMI)获得了推导模糊SOF控制器的充分条件。最后,在四分之一汽车悬架模型上进行了数值模拟,以验证所提出的模糊SOF控制器的有效性和适用性。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2019年第1期|315-334|共20页
  • 作者单位

    School of Mechanical and Automotive Engineering South China University of Technology Guangzhou China Guangdong Provincial Key Laboratory of Technique and Equipment for Macromolecular Advanced Manufacturing South China University of Technology Guangzhou China;

    Department of Electromechanical Engineering University of Macau Taipa Macau Guangdong Provincial Key Laboratory of Technique and Equipment for Macromolecular Advanced Manufacturing South China University of Technology Guangzhou China;

    Department of Electromechanical Engineering University of Macau Taipa Macau;

    School of Automation Guangdong University of Technology Guangzhou China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Suspension control; T-S fuzzy model; Time delay; Finite frequency; Output feedback control;

    机译:悬挂控制;T-S模糊模型;时间延迟;有限频率;输出反馈控制;

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