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Fast adaptation for an uncertain nonlinear system using adaptive feedback linearization with optimal control modification

机译:使用自适应反馈线性化和最优控制修改对不确定非线性系统进行快速自适应

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摘要

In this paper, we investigate an adaptive control for fast adaptation without high-frequency oscillation, using feedback linearization and optimal control modification. Generally, a large adaptive gain is used to achieve fast adaptation and this can cause high-frequency oscillations in standard model-reference adaptive control. The fast adaptation approach is based on an optimal control problem to minimize L2 norm of the tracking error. Through the adaptive feedback linearization-based technique with first-order filters, optimal control modification can be applied to more general nonlinear systems having unmatched uncertainties. Uniformly ultimate boundedness of the overall closed-loop system is analyzed by the Lyapunov stability theory. Simulation results validate the performance of the proposed control approach.
机译:在本文中,我们研究了使用反馈线性化和最优控制修改的无高频振荡的快速自适应控制。通常,使用较大的自适应增益来实现快速自适应,这会在标准模型参考自适应控制中引起高频振荡。快速自适应方法基于最佳控制问题,以使跟踪误差的L2范数最小。通过具有一阶滤波器的基于自适应反馈线性化的技术,可以将最优控制修改应用于不确定性不匹配的更通用的非线性系统。利用Lyapunov稳定性理论分析了整个闭环系统的一致极限极限。仿真结果验证了所提出的控制方法的性能。

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