Forwarding Control Design for Strict-Feedforward Systems

Author:

Do K. D.1

Affiliation:

1. Department of Mechanical Engineering, Curtin University, Kent Street, Bentley, WA 6102, Australia e-mail:

Abstract

This paper presents a new recursive forwarding method to design control laws that globally asymptotically stabilize strict-feedforward systems, of which Jacobian linearization at the origin might not be stabilizable. At each step, a Lyapunov function is constructed based on a solution of a linear partial differential equation (PDE) or a system of globally asymptotically stable (GAS) ordinary differential equations (ODEs). Optimal and bounded control designs are also addressed. The flexibility of the proposed design is illustrated via five examples.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference23 articles.

1. Output Feedback Regulation Control for a Class of Uncertain Nonlinear Systems;ASME J. Dyn. Syst. Meas. Control,2015

2. Optimized Input-Shaped Model Reference Control on Double-Pendulum System;ASME J. Dyn. Syst. Meas. Control,2018

3. On the Linear Control of Underactuated Nonlinear Systems Via Tangent Flatness and Active Disturbance Rejection Control: The Case of the Ball and Beam System;ASME J. Dyn. Syst. Meas. Control,2016

4. Teel, A. R., 1992, “Feedback Stabilization: Nonlinear Solutions to Inherently Nonlinear Problems,” Ph.D. thesis, University of California, Berkeley, CA.

5. Control of Underactuated Mechanical Systems Using Switching and Saturation;Stephen Morse,1996

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