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A Novel Higher-Order Model-Free Adaptive Control for a Class of Discrete-Time SISO Nonlinear Systems

机译:一类离散SISO非线性系统的新型高阶无模型自适应控制

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摘要

In this work, a novel higher-order model-free adaptive control scheme is presented based on a dynamic linearization approach for a class of discrete-time single input and single output (SISO) nonlinear systems. The control scheme consists of an adaptive control law, a parameter estimation law, and a reset mechanism. The design and analysis of the proposed control approach depends merely on the measured input and output data of the controlled plant. The control performance is improved by using more information of control input and output error measured from previous sampling time instants. Rigorous mathematical analysis is developed to show the bounded input and bounded output (BIBO) stability of the closed-loop system. Two simulation comparisons show the effectiveness of the proposed control scheme.
机译:在这项工作中,提出了一种基于动态线性化方法的新型高阶无模型自适应控制方案,该方案针对一类离散时间单输入和单输出(SISO)非线性系统。该控制方案由自适应控制律,参数估计律和复位机制组成。所提出的控制方法的设计和分析仅取决于受控工厂的测量输入和输出数据。通过使用从先前采样时刻测得的控制输入和输出误差的更多信息,可以提高控制性能。进行了严格的数学分析,以显示闭环系统的有界输入和有界输出(BIBO)稳定性。两个仿真比较显示了所提出的控制方案的有效性。

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