Further Results of Robust Observer-Based Control Synthesis for Saturated Linear Parameter Varying Systems

V. L. B. Tuan, A. Hajjaji, O. Pagès
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Abstract

This paper deals with the observer-based robust control design problem for affine quadratic systems with parametric uncertainties. The prerequisite design conditions derive via the Lyapunov function with saturation constraints enforced by sector nonlinearity conditions. The non-convex and bilinear problems involved in the stabilization condition are converted into convex optimization problems using Young’s inequality, and the cone-complementary linearization. Then, controller and observer gains are obtained by set feasible solutions of linear matrix inequality (LMI) conditions under ${\mathcal{L}_2}$-bounded disturbance. The effectiveness of the proposed design methodology is demonstrated through numerical simulations.
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饱和线性变参数系统鲁棒观测器综合控制的进一步结果
研究具有参数不确定性的仿射二次系统基于观测器的鲁棒控制设计问题。设计的先决条件由李雅普诺夫函数推导,该函数具有扇形非线性条件强制的饱和约束。利用杨氏不等式和锥互补线性化方法,将稳定条件下的非凸和双线性问题转化为凸优化问题。然后,利用${\mathcal{L}_2}$有界扰动下线性矩阵不等式(LMI)条件的一组可行解,得到控制器增益和观测器增益。通过数值模拟验证了所提设计方法的有效性。
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