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Fuzzy Adaptive DSC Design for an Extended Class of MIMO Pure-Feedback Non-Affine Nonlinear Systems in the Presence of Input Constraints

机译:输入约束条件下扩展类MIMO纯反馈非仿射非线性系统的模糊自适应DSC设计

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摘要

A novel adaptive fuzzy dynamic surface control (DSC) scheme is for the first time constructed for a larger class of (multi-input multi-output) MIMO non-affine pure-feedback systems in the presence of input saturation nonlinearity. First of all, the restrictive differentiability assumption on non-affine functions has been canceled after using the piecewise functions to reconstruct the model for non-affine nonlinear functions. Then, a novel auxiliary system with bounded compensation term is firstly introduced to deal with input saturation, and the dynamic system employed in this work designs a bounded compensation term of tangent function. Thus, we successfully relax the strictly bounded assumption of the dynamic system. Additionally, the fuzzy logic systems (FLSs) are used to approximate unknown continuous systems functions, and the minimal learning parameter (MLP) technique is exploited to simplify control design and reduce the number of adaptive parameters. Finally, two simulation examples with input saturation are given to validate the effectiveness of the developed method.
机译:在存在输入饱和非线性的情况下,首次针对较大的(多输入多输出)MIMO非仿射纯反馈系统构造了一种新颖的自适应模糊动态表面控制(DSC)方案。首先,在使用分段函数重构非仿射非线性函数模型之后,取消了非仿射函数的限制性微分假设。然后,首先引入了一种新型的带边界补偿项的辅助系统来处理输入饱和问题,并采用动态系统设计了切线函数的带边界补偿项。因此,我们成功地放松了动态系统的严格有界假设。此外,模糊逻辑系统(FLS)用于近似未知的连续系统功能,而最小学习参数(MLP)技术则用于简化控制设计并减少自适应参数的数量。最后,给出了两个具有输入饱和度的仿真示例,以验证所开发方法的有效性。

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  • 来源
    《Mathematical Problems in Engineering》 |2019年第1期|4360643.1-4360643.14|共14页
  • 作者

    Wang Ning; Wang Ying; Lv Maolong;

  • 作者单位

    Air Force Engn Univ, Equipment Management & UAV Engn Coll, Xian 710051, Shaanxi, Peoples R China;

    Air Force Engn Univ, Equipment Management & UAV Engn Coll, Xian 710051, Shaanxi, Peoples R China;

    Air Force Engn Univ, Equipment Management & UAV Engn Coll, Xian 710051, Shaanxi, Peoples R China|Delft Univ Technol, Delft Ctr Syst & Control, NL-2628 CD Delft, Netherlands;

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