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Low-Complexity Adaptive Saturated Control of a Class of Nonlinear Systems with Its Application

Author

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  • Gang Zhang
  • Deqiang Cheng
  • Qiqi Kou

Abstract

This paper investigates a low-complexity saturated control law for a class of nonlinear systems with consideration of the time-varying output constraint, control constraint, and external disturbance. First, a dead-zone model is employed to transform the control saturation nonlinearity into a linear one with respect to the real input signal. Then, the original system with time-varying output constraint is transformed into a constraint-free one, based on which a novel adaptive saturated control law is devised along the filtered error manifold. By employing minimum learning parameter technique and virtual error concept, only two adaptive parameters are needed to update online, which reduces the computational burdens dramatically. Finally, the applications to Duffing-Holmes chaotic system are organized to validate the effectiveness of the proposed control law.

Suggested Citation

  • Gang Zhang & Deqiang Cheng & Qiqi Kou, 2019. "Low-Complexity Adaptive Saturated Control of a Class of Nonlinear Systems with Its Application," Mathematical Problems in Engineering, Hindawi, vol. 2019, pages 1-9, June.
  • Handle: RePEc:hin:jnlmpe:7135930
    DOI: 10.1155/2019/7135930
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