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Adaptive output-feedback control of a general class of uncertain feedforward systems via a dynamic scaling approach

机译:通过动态缩放方法对一般类别的不确定前馈系统进行自适应输出反馈控制

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摘要

An adaptive output-feedback control design technique is proposed for a class of feedforward systems with input-tostate stable (ISS) appended dynamics in a block triangular (feedforward) structure. The system contains uncertain functions involving all states with the assumed bounds on uncertain functions allowed to contain crossproducts of unknown parameters and unmeasured states. The control design is based on the dual dynamic high-gain scaling technique and introduces a novel adaptation dynamics and scaling dynamics to globally stabilise the system using output feedback. The ISS appended dynamics are coupled with all the system states and the input and the ISS Lyapunov inequalities also feature crossproducts of unknown parameters and unmeasured states. The proposed control design does not require any knowledge of magnitude bounds on unknown parameters.
机译:针对一类前馈系统,提出了一种自适应输出-反馈控制设计技术,该系统在块三角形(前馈)结构中具有输入到状态稳定(ISS)附加动力学特性。该系统包含不确定性函数,涉及所有状态,不确定性函数的假定界限允许包含未知参数和不可测状态的叉积。该控制设计基于双重动态高增益缩放技术,并引入了新颖的自适应动力学和缩放动力学,以使用输出反馈来全局稳定系统。 ISS附加的动力学特性与所有系统状态耦合,输入和ISS Lyapunov不等式还具有未知参数和未测状态的叉积。所提出的控制设计不需要任何关于未知参数的幅度界限的知识。

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  • 来源
    《Control Theory & Applications, IET》 |2011年第5期|p.681-692|共12页
  • 作者

    Krishnamurthy P.; Khorrami F.;

  • 作者单位

    Control/Robotics Research Laboratory (CRRL), Department of Electronical and Computer Engineering, Polytechnic Institute of NYU, Brooklyn, NY 11201, USA;

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  • 正文语种 eng
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