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Direct adaptive fuzzy backstepping control of uncertain nonlinear systems in the presence of input saturation

机译:输入饱和存在下不确定非线性系统的直接自适应模糊反推控制

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In this paper, a novel direct adaptive fuzzy control approach is presented for uncertain nonlinear systems in the presence of input saturation. Fuzzy logic systems are directly used to tackle unknown nonlinear functions, and the adaptive fuzzy tracking controller is constructed by using the backstepping recursive design techniques. To overcome the problem of input saturation, a new auxiliary design system and Nussbaum gain functions are incorporated into the control scheme, respectively. It is proved that the proposed control approach can guarantee that all the signals of the resulting closed-loop system are semi-globally uniformly ultimately bounded (SGUUB), and the tracking error converges to a small neighborhood of the origin. A simulation example is included to illustrate the effectiveness of the proposed approach. Two key advantages of the scheme are that (i) the direct adaptive fuzzy control method is proposed for uncertain nonlinear system with input saturation by using Nussbaum function technique and (ii) The number of the online adaptive learning parameters is reduced.
机译:本文针对存在输入饱和的不确定非线性系统,提出了一种新颖的直接自适应模糊控制方法。模糊逻辑系统直接用于解决未知的非线性函数,并采用反推递归设计技术构造了自适应模糊跟踪控制器。为了克服输入饱和的问题,将新的辅助设计系统和Nussbaum增益函数分别集成到控制方案中。实践证明,所提出的控制方法可以保证所产生的闭环系统的所有信号都是半全局一致的最终有界(SGUUB),并且跟踪误差收敛到原点的一个小邻域。包含一个仿真示例,以说明所提出方法的有效性。该方案的两个主要优点是:(i)通过使用Nussbaum函数技术为具有输入饱和度的不确定非线性系统提出了直接自适应模糊控制方法,以及(ii)减少了在线自适应学习参数的数量。

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