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H#x221E; direct adaptive fuzzy control with unknown control gain for uncertain nonlinear systems

机译:H∞直接自适应模糊控制,对不确定非线性系统未知控制增益

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With unknown control gain function and plant bound functions, a H∞ direct adaptive fuzzy controller (AFC) for a class of single-input single-output (SISO) uncertain affine nonlinear systems under external disturbance is proposed. A conventional fuzzy logic system (FLS) is used to approximate the control gain function, and a FLS with variable universes of discourse, which has the characteristic of high fuzzy output precision with only one adjusting parameter, is used to approximate a ideal controller. A novel fuzzy approximation theorem is introduced to solve the problem of unknown control gain function in direct AFC scheme. Both adaptive laws of conventional FLS and variable universe FLS are derived by virtue of the Lyapunov stability theorem. Under the assumption that the total approximation error is bounded, it is proved that the closed-loop system not only is stable in sense that all variables are bounded, but also achieves the H∞ tracking performance and the tracking error convergence. Simulation example is demonstrated to confirm the effectiveness of this approach.
机译:采用未知控制增益功能和工厂绑定功能,提出了一类单输入单输出(SISO)不确定的外部干扰下的单输入单输出(SISO)不确定仿射非线性系统的H∞直接自适应模糊控制器(AFC)。传统的模糊逻辑系统(FLS)用于近似控制增益功能,以及具有可变话语的流体,其具有仅具有一个调节参数的高模糊输出精度的特性,用于近似理想控制器。引入了一种新型模糊近似定理,解决了直接AFC方案中未知控制增益功能的问题。通过Lyapunov稳定性定理,传统的常规液体和可变宇宙的自适应定律均可推导。在界定总近似误差的假设下,证明闭环系统不仅稳定而稳定,因为所有变量都有界,而且还实现了H∞跟踪性能和跟踪误差收敛。仿真示例是证明了确认这种方法的有效性。

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