首页> 外文期刊>International Journal of Adaptive Control and Signal Processing >Small-gain technique-based adaptive fuzzy command filtered control for uncertain nonlinear systems with unmodeled dynamics and disturbances
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Small-gain technique-based adaptive fuzzy command filtered control for uncertain nonlinear systems with unmodeled dynamics and disturbances

机译:基于小增益技术的自适应模糊命令滤波控制不确定非线性系统,具有扰动动力学和干扰

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摘要

This article studies the adaptive tracking control problem for a class of uncertain nonlinear systems with unmodeled dynamics and disturbances. First, a fuzzy state observer is established to estimate unmeasurable states. To overcome the problem of calculating explosion caused by the repeated differentiation of the virtual control signals, the command filter with a compensation mechanism is applied to the controller design procedure. Meanwhile, with the help of the fuzzy logic systems and the backstepping technique, an adaptive fuzzy control scheme is proposed, which guarantees that all signals in the closed-loop systems are bounded, and the tracking error can converge to a small region around the origin. Furthermore, the stability of the systems is proven to be input-to-state practically stable based on the small-gain theorem. Finally, a simulation example verifies the effectiveness of the proposed control approach.
机译:本文研究了一类具有未拼质动力学和干扰的一类不确定非线性系统的自适应跟踪控制问题。 首先,建立模糊状态观察者以估计未估计的状态。 为了克服通过虚拟控制信号的重复分化引起的计算爆炸的问题,利用补偿机制的命令滤波器应用于控制器设计过程。 同时,借助模糊逻辑系统和反静电技术的帮助,提出了一种自适应模糊控制方案,保证闭环系统中的所有信号都有界,并且跟踪错误可以收敛到原点周围的小区域 。 此外,证明系统的稳定性是基于小增益定理的输入到状态。 最后,仿真示例验证了所提出的控制方法的有效性。

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