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Wavelet multiresolution model based predictive control for constrained nonlinear systems

机译:基于小波多分辨率模型的约束非线性系统预测控制

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In this paper, we present a wavelet multiresolution model based adaptive model predictive control strategy for control of unknown nonlinear systems subject to input and state constraints. The wavelet multiresolution analysis framework is used as the building block to approximate the unknown nonlinear system dynamics by virtue of the promising function approximation capability of wavelet networks. The parameter estimation routine employed guarantees non-increase of the prediction error vector. The identified wavelet network nominal model is then combined within nonlinear model predictive control framework to address the adaptive constrained MPC problem. The asymptotical stability of the proposed adaptive MPC technique has been proved using Lyapunov stability theorem with terminal cost and terminal constraint. An illustrative example on the choice of the stabilizing design parameters to ensure satisfaction of stability condition is provided.
机译:在本文中,我们提出了一种基于小波多分辨率模型的自适应模型预测控制策略,用于控制受输入和状态约束的未知非线性系统。小波多分辨率分析框架被用作构建模块,借助小波网络的有前途的函数逼近能力来近似未知的非线性系统动力学。所采用的参数估计程序保证了预测误差向量的不增加。然后,将识别出的小波网络标称模型组合到非线性模型预测控制框架中,以解决自适应约束MPC问题。利用具有终端成本和终端约束的Lyapunov稳定性定理,证明了所提出的自适应MPC技术的渐近稳定性。提供了关于选择稳定设计参数以确保满足稳定性条件的说明性示例。

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