Article detail · 2023 · conference-paper
Sliding Surface Optimization via Regional Pole Placement for a Class of Nonlinear Systems
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Abstract
In this paper, a new approach is introduced which combines Eigenvalue Assignment, State Dependent Riccati Equation (SDRE) and Sliding Mode Control (SMC) methods for nonlinear systems. In the classical SDRE based SMC (SDRESMC) approach, a nonlinear system is frozen at each time instant to obtain a linear-like structure model that is used to design a sliding surface (SS) at each time instant. This mechanism produces a state-dependent SS to hold the states on the SS. The approach proposed here is built on this mechanism and offers a new way to design a state-dependent SS for nonlinear systems so that the pointwise eigenvalues of the closed-loop system matrix of the control-free dynamics in the regular form can be kept in a specified disk. This gives a great advantage to shape the transient response characteristics. The performance of the nonlinear controller approach proposed here is investigated in simulations.
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Citations
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2citationsOpenAlex · cited_by_count (cache / database)
3 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- 2026 Adaptive regional eigenvalue assignment-based sliding mode control for 3 degree-of-freedom helicopterCitations 0 · OpenAlex
- 2026 Adaptive regional eigenvalue assignment-based sliding mode control for 3 degree-of-freedom helicopterCitations 0 · OpenAlex
- 2026 Adaptive regional eigenvalue assignment-based sliding mode control for 3 degree-of-freedom helicopterCitations 0 · OpenAlex
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