SYSYMay 21, 2015

Generalized Integral Siding Mode Manifold Design: A Sum of Squares Approach

arXiv:1503.086421.2
Originality Incremental advance
AI Analysis

For control engineers, this work offers a systematic design method for integral sliding mode control in nonlinear systems with uncertainties, though it is an incremental extension of existing SOS-based control design.

The paper proposes a Sum of Squares (SOS) programming approach to design generalized integral sliding mode manifolds and controllers for nonlinear systems with matched and unmatched uncertainties, providing a sufficient condition for successful design. The method is verified through simulations and two practical applications.

This paper presents a general form of integral sliding mode manifold, and proposes an algorithmic approach based on Sum of Squares (SOS) programming to design generalized integral sliding mode manifold and controller for nonlinear systems with both matched and unmatched uncertainties. The approach also gives a sufficient condition for successful design of controller and manifold parameters. The result of the paper is then verified by several simulation examples and two practical applications, namely Glucose-insulin regulation problem and the unicycle dynamics steering problem are considered.

Foundations

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