Cai Bo, Zhang Lixian, Shi Yang
IEEE Trans Cybern. 2020 Aug;50(8):3709-3718. doi: 10.1109/TCYB.2019.2921811. Epub 2019 Jul 12.
This paper investigates the stability analysis and fuzzy control problems for a class of discrete-time fuzzy systems with hidden semi-Markov stochastic uncertainties. The nonlinear plant is described via the Takagi-Sugeno (T-S) fuzzy model, and the parameter uncertainties are represented by a hidden semi-Markov chain. Owing to the semi-Markov kernel (SMK), the probability density functions (PDFs) of sojourn time for different modes in describing the stochastic uncertainties can address different types of distributions according to different target modes. A novel Lyapunov function that depends on the hidden mode and the observed mode with the elapsed time is proposed to analyze the stability and the H performance of the fuzzy system. Then, the sufficient criteria for the elapsed-time-dependent and observed-mode-dependent fuzzy controller are achieved by exploiting the observations of hidden modes, ensuring that the closed-loop system is σ -error mean square stable with guaranteed H performance. A cart-pendulum system is used to demonstrate the effectiveness and applicability of the proposed theoretical results.
本文研究了一类具有隐藏半马尔可夫随机不确定性的离散时间模糊系统的稳定性分析和模糊控制问题。非线性对象通过高木-关野(T-S)模糊模型进行描述,参数不确定性由隐藏半马尔可夫链表示。由于半马尔可夫核(SMK),在描述随机不确定性时不同模式的逗留时间概率密度函数(PDF)可以根据不同的目标模式处理不同类型的分布。提出了一种依赖于隐藏模式、观测模式和经过时间的新型李雅普诺夫函数,用于分析模糊系统的稳定性和H性能。然后,通过利用隐藏模式的观测结果,得到了依赖于经过时间和观测模式的模糊控制器的充分准则,确保闭环系统在保证H性能的情况下是σ误差均方稳定的。利用小车-摆系统验证了所提理论结果的有效性和适用性。