Gaussian process based dual adaptive control of nonlinear stochastic systems

Ladislav Král, Jakub Prüher, M. Simandl
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引用次数: 2

Abstract

The paper proposes a suboptimal adaptive control for a nonlinear stochastic system subject to functional uncertainty. The problem of a real-time identification of the unknown nonlinear system is tackled by using the Gaussian process based non-parametric model. The covariance function of the Gaussian process is chosen in such a way that allows deriving the control law in a closed form. The control action stems from the bicriterial dual approach that uses two separate criteria to introduce both of the mutually opposing aspects between estimation and control. Properties of the novel dual controller are tested and validated in a numerical example by Monte Carlo analysis.
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基于高斯过程的非线性随机系统对偶自适应控制
针对一类具有函数不确定性的非线性随机系统,提出了一种次优自适应控制方法。利用基于高斯过程的非参数模型,解决了未知非线性系统的实时辨识问题。选择高斯过程的协方差函数,使其能以封闭形式导出控制律。控制行为源于双标准的双重方法,它使用两个单独的标准来引入估计和控制之间相互对立的两个方面。通过蒙特卡罗分析,验证了该双控制器的性能。
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