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Adaptive Fuzzy State/Output Feedback Control of Nonstrict-Feedback Systems: A Direct Compensation Approach

机译:非触控系统的自适应模糊状态/输出反馈控制:直接补偿方法

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摘要

Issues of adaptive fuzzy direct compensation-based state/output feedback control for nonstrict-feedback systems are presented. The key to its feasibility is the differentiation-free feature, which is achieved in two steps. First, with the nominal adaptive fuzzy virtual controllers as the inputs, a set of low-pass filters are constructed to avoid the explosion of complexity and the algebraic-loop problems. Second, via using sufficiently small time constants, the boundedness of the filters' errors is ensured without the calculation of the filter error dynamics, which otherwise would incur another loop problem. In particular, by including a supervisory linear high-gain control component, both the state/output feedback control schemes ensure the semi-global practical tracking stability without relying on the all-time validity of the fuzzy approximation. In particular, the stability criteria of the proposed state and output feedback designs are much easier to fulfill than those based on the variable-separation-based method. Simulation are then carried out to validate the proposed schemes.
机译:介绍了非防止反馈系统的自适应模糊直接补偿的状态/输出反馈控制。其可行性的关键是无分化特征,这是两步实现的。首先,使用标称自适应模糊虚拟控制器作为输入,构造了一组低通滤波器,以避免复杂性和代数环问题的爆炸。其次,通过使用足够小的时间常数,确保过滤器错误动态的滤波器错误的界限,否则将产生另一个循环问题。特别地,通过包括监控线性高增益控制分量,状态/输出反馈控制方案都确保了半全局实际跟踪稳定性,而无需依赖模糊近似的始终有效性。特别地,所提出的状态和输出反馈设计的稳定标准比基于基于可变分离的方法的稳定性更容易实现。然后执行模拟以验证提出的方案。

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