首页> 外文会议>Proceedings of the 15th IFAC World Congress: International Federation of Automatic Control >A NONLINEAR TRANSFORMATION APPROACH TO GLOBAL ADAPTIVE OUTPUT FEEDBACK CONTROL OF 3RD-ORDER UNCERTAIN NONLINEAR SYSTEMS
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A NONLINEAR TRANSFORMATION APPROACH TO GLOBAL ADAPTIVE OUTPUT FEEDBACK CONTROL OF 3RD-ORDER UNCERTAIN NONLINEAR SYSTEMS

机译:三阶不确定非线性系统的全局自适应输出反馈控制的非线性变换方法

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In this paper, we present a global adaptive output feedback control scheme for a class of 3rd-order uncertain nonlinear systems to which adaptive observer backstepping method may not be applicable directly. In contrast to the existing output feedback form, the allowed extended output feedback structure includes quadratic and multiplicative dependency of unmeasured states. Our novel design technique employs a change of coordinates and adaptive backstepping. With these proposed tools, we can remove linear and quadratic dependence on the unmeasured states in the state equation. Also, the multiplication of the two unmeasured states can be eliminated. From the transformed systems, a state observer can be constructed in a very easy way. The overall scheme achieves globally exponential convergence of the tracking error to zero while maintaining global boundedness of all the signals and states.
机译:在本文中,我们介绍了一种全局自适应输出反馈控制方案,用于一类3个不确定的非线性系统,自适应观察者反击方法可能不可直接适用。与现有的输出反馈表格相比,允许的扩展输出反馈结构包括未测量状态的二次和乘法依赖性。我们的新颖设计技术采用了坐标和自适应BackStepping的变化。利用这些提出的工具,我们可以在状态方程中去除对未测量状态的线性和二次依赖性。而且,可以消除两个未测量状态的乘法。从转换系统中,状态观察者可以以非常简单的方式构建。整体方案实现了跟踪误差的全局指数收敛到零,同时保持所有信号和状态的全局界限。

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