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首页> 外文期刊>IEEE Transactions on Fuzzy Systems >Adaptive Fuzzy Control for Nonstrict-Feedback Systems Under Asymmetric Time-Varying Full State Constraints Without Feasibility Condition
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Adaptive Fuzzy Control for Nonstrict-Feedback Systems Under Asymmetric Time-Varying Full State Constraints Without Feasibility Condition

机译:非对称时变化的非对反馈系统的自适应模糊控制无可行性条件的不对称性全状态约束

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摘要

This article addresses an adaptive fuzzy control for the nonstrict-feedback nonlinear systems with asymmetric time-varying full state constraints. To prevent the state constraints being violated, the nonlinear state-dependent function (NSDF) is introduced instead of the tradition barrier lyapunov function (BLF). The constrained systems are transformed into a novel free-constrained systems based on the NSDF. A direct approach is given to cope with the state constraints. Fuzzy logic system is utilized to approximate the uncertain nonlinear system functions. The new affine variables are constructed for the transformed systems, and the prior knowledge of the control gains is not required necessarily. Under the designed control scheme, the boundedness of the signals in the closed-loop systems is guaranteed certainly, and the asymmetric time-varying constraints are maintained. This proposed method removes the feasibility condition on the virtual controller derived from the method of BLF. The effectiveness of the proposed control strategy is verified by two simulation examples.
机译:本文为非对称时变全状态约束的非对准非线性系统提供了一种自适应模糊控制。为了防止违反状态约束,介绍了非线性状态依赖功能(NSDF)而不是传统屏障Lyapunov函数(BLF)。受约束的系统基于NSDF转换为新颖的自由束系统。给出一种直接方法来应对国家限制。模糊逻辑系统用于近似不确定的非线性系统功能。新的仿射变量是为转换的系统构建的,并且不需要对控制增益的先验知识。在设计的控制方案下,肯定保证闭环系统中的信号的界限,并且保持不对称的时变约束。该提出的方法消除了从BLF方法导出的虚拟控制器上的可行性条件。通过两个模拟例子验证了所提出的控制策略的有效性。

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