IEEE Trans Cybern. 2016 Aug;46(8):1926-38. doi: 10.1109/TCYB.2015.2457894. Epub 2015 Aug 20.
In this paper, an approximated-based adaptive fuzzy control approach with only one adaptive parameter is presented for a class of single input single output strict-feedback nonlinear systems in order to deal with phenomena like nonlinear uncertainties, unmodeled dynamics, dynamic disturbances, and unknown time delays. Lyapunov-Krasovskii function approach is employed to compensate the unknown time delays in the design procedure. By combining the advances of the hyperbolic tangent function with adaptive fuzzy backstepping technique, the proposed controller guarantees the semi-globally uniformly ultimately boundedness of all the signals in the closed-loop system from the mean square point of view. Two simulation examples are finally provided to show the superior effectiveness of the proposed scheme.
本文针对一类单输入单输出严格反馈非线性系统,提出了一种仅具有一个自适应参数的基于逼近的自适应模糊控制方法,以处理非线性不确定性、未建模动态、动态干扰和未知时滞等现象。李雅普诺夫-克拉索夫斯基函数方法被用于在设计过程中补偿未知时滞。通过将双曲正切函数的优点与自适应模糊反步技术相结合,所提出的控制器从均方的角度保证了闭环系统中所有信号的半全局一致有界。最后提供了两个仿真示例,以显示所提出方案的优越效果。