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Adaptive Output Regulation of Output Feedback Systems with Unknown Nonlinear Exosystems and Unknown High-Frequency Gain Sign

机译:具有未知非线性外系统和未知高频增益符号的输出反馈系统的自适应输出调节

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This paper addresses the problem of adaptive output regulation for a class of output feedback systems subject to unknown disturbances generated from nonlinear exosystems and no knowledge of high-frequency gain sign. The nonlinear internal model based on circle criterion is proposed to generate the feedforward input term for rejection of the disturbances, and some specific conditions are introduced for exosystems such that the proposed internal model can be applied. In the proposed adaptive control scheme, a type of Nussbaum gain is presented to deal with the unknown high-frequency gain sign and the adaptive backstepping technique is then used to establish the final control input if systems possess high relative degree. The proposed control algorithm ensures the convergence of the parameters in the adaptive internal model to the actual values and the measurement output to zero, and the boundedness of all state variables.
机译:本文针对一类输出反馈系统的自适应输出调节问题,该输出反馈系统受到非线性外系统产生的未知干扰并且不了解高频增益符号。提出了一种基于圆准则的非线性内部模型,以生成用于抑制干扰的前馈输入项,并为外系统引入了一些特定条件,从而可以应用所提出的内部模型。在提出的自适应控制方案中,提出了一种Nussbaum增益来处理未知的高频增益符号,如果系统具有较高的相对度,则采用自适应反步技术来建立最终控制输入。所提出的控制算法可确保将自适应内部模型中的参数收敛到实际值,并将测量结果输出为零,并确保所有状态变量的有界性。

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