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Fuzzy Supertwisting Dynamic Surface Control for MIMO Strict-Feedback Nonlinear Dynamic Systems With Supertwisting Nonlinear Disturbance Observer and a New Partial Tracking Error Constraint

机译:具有超扭曲非线性扰动观测器和新的局部跟踪误差约束的MIMO严格反馈非线性动态系统的模糊超扭曲动态表面控制

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摘要

This paper proposes a hybrid fuzzy dynamic surface control (DSC) method combined with a supertwisting control (STC) method and a supertwisting nonlinear disturbance observer (STO) for multi-input multi-output nonlinear strict-feedback systems is proposed, in addition to a new partial tracking error constraining method. For the design of the stabilizing controls of the DSC, the virtual tracking errors in recursive procedures were transformed into the design variables of the STC. The uncertainties were estimated by an STO, which includes the approximation error between the unknown plant dynamics and fuzzy optimization function, in addition to the external disturbances. Furthermore, the proposed DSC combined with the STC scheme can prevent the complex analysis problem of the filtered output error in conventional DSC schemes. Moreover, a novel convenient tracking error constraining method is also presented. Simulation results revealed that the proposed scheme has an improved tracking error performance and robustness to uncertainty than control systems with a conventional nonlinear disturbance observer and several other DSC schemes.
机译:提出了一种混合模糊动态表面控制(DSC)方法和超扭曲控制(STC)方法以及超扭曲非线性扰动观测器(STO),用于多输入多输出非线性严格反馈系统。新的局部跟踪误差约束方法。为了设计DSC的稳定控件,将递归过程中的虚拟跟踪错误转换为STC的设计变量。不确定性由STO估算,除了外部干扰外,它还包括未知工厂动态和模糊优化函数之间的近似误差。此外,所提出的DSC与STC方案相结合可以防止常规DSC方案中的滤波后输出误差的复杂分析问题。此外,还提出了一种新颖的方便的跟踪误差约束方法。仿真结果表明,与具有常规非线性干扰观测器和其他几种DSC方案的控制系统相比,该方案具有改进的跟踪误差性能和对不确定性的鲁棒性。

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