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Adaptive tracking with complete compensation of unknown disturbances for nonlinear output feedback systems

机译:完全补偿未知干扰的非线性输出反馈系统的自适应跟踪

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摘要

The complete adaptive compensation of unknown disturbances for uncertain nonlinear output feedback systems is studied. The unknown disturbances are generated from an unknown linear exosystem whose order is assumed known and the eigenvalues are distinct. The uncertainty of the system is characterised by unknown constant parameters contained in a vector. The uncertainties in the nonlinear system and the uncertainties in the exosystem are tackled concurrently. The proposed control design is able to completely adaptively compensate for the disturbances without knowing their amplitudes, frequencies and phases, as long as the number of different frequency components in the disturbances is known. A new control strategy, different from the current ones for output regulation with adaptive internal models, is proposed, which results in the direct estimation of all original unknown parameters in the system and the removal of the restriction imposed by the current methods that all the nonlinear functions must be polynomials of the system output. The completely new design of additional filters makes it possible to adaptively tackle the concurrent uncertainties in the system and the exosystem.
机译:研究了不确定非线性输出反馈系统对未知扰动的完全自适应补偿。未知的扰动是由一个未知的线性外系统生成的,其假设顺序已知并且特征值是不同的。系统的不确定性以矢量中包含的未知常数参数为特征。同时解决非线性系统中的不确定性和外系统中的不确定性。所提出的控制设计能够完全自适应地补偿干扰,而无需知道其幅度,频率和相位,只要知道干扰中不同频率分量的数量即可。提出了一种新的控制策略,该控制策略不同于当前采用自适应内部模型进行输出调节的控制策略,它可以直接估计系统中所有原始的未知参数,并消除了当前方法所带来的所有非线性约束。函数必须是系统输出的多项式。全新的附加滤波器设计使自适应解决系统和外部系统中的并发不确定性成为可能。

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