<p>Semiglobal practical output feedback stabilization is achieved for a class of uncertain minimum-phase nonlinear systems involving an unknown control gain, matched uncertainty, and unknown internal dynamics. Notably, neither boundedness conditions are imposed on the nonlinear model functions, nor are the input-to-state stability and bounded-input-to-bounded-state conditions imposed on the system’s internal dynamics. Therefore, the proposed output feedback approach serves as a somewhat universal (model-free) controller because it exclusively requires the system output and structural information (e.g., the relative degree <i>r</i>). In addition, our results demonstrate that a (Byrnes-Isidori) minimum-phase normal form with <i>r</i> ⩽ 2 is semiglobally practically stabilizable using output feedback control.</p>

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Semiglobal output feedback control for uncertain minimum-phase nonlinear systems

  • Shun-Li Li,
  • Bin Zhou,
  • Guangren Duan

摘要

Semiglobal practical output feedback stabilization is achieved for a class of uncertain minimum-phase nonlinear systems involving an unknown control gain, matched uncertainty, and unknown internal dynamics. Notably, neither boundedness conditions are imposed on the nonlinear model functions, nor are the input-to-state stability and bounded-input-to-bounded-state conditions imposed on the system’s internal dynamics. Therefore, the proposed output feedback approach serves as a somewhat universal (model-free) controller because it exclusively requires the system output and structural information (e.g., the relative degree r). In addition, our results demonstrate that a (Byrnes-Isidori) minimum-phase normal form with r ⩽ 2 is semiglobally practically stabilizable using output feedback control.