Performance recovery of uncertain nonaffine systems by active disturbance rejection control

Lilong Tan, Zhixiang Chen, Qinhe Gao, Jifang Liu
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Abstract

This paper studies performance recovery problem of a class of uncertain nonaffine strict-feedback systems with mismatched uncertainties. First, the strict-feedback nonaffine system with mismatched system dynamics is transformed into an integrator-chain nonaffine system by a diffeomorphism. Second, the transformed system is converted to an affine one by constructing an auxiliary control input term, and dynamical uncertainties and external disturbances are viewed as total disturbance of the affine system. Then, a two-time-scale active disturbance rejection controller (ADRC) is designed for the transformed affine system. Under some mild assumptions, it can be proved that the proposed ADRC-based closed-loop system can achieve performance recovery and weak performance recovery in different cases of mismatched system dynamics, respectively. Experimental results on a magnetic levitation ball system demonstrate the effectiveness of the proposed control scheme.
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基于自抗扰控制的不确定非仿射系统性能恢复
研究了一类不确定非仿射严格反馈不匹配系统的性能恢复问题。首先,通过微分同构将系统动力学不匹配的严格反馈非仿射系统转化为积分链非仿射系统。其次,通过构造辅助控制输入项将变换后的系统转换为仿射系统,并将动态不确定性和外部干扰视为仿射系统的总扰动。然后,针对变换后的仿射系统设计了双时间尺度自抗扰控制器。在一些温和的假设下,可以证明所提出的基于自适应控制的闭环系统在不同的系统动力学失配情况下分别可以实现性能恢复和弱性能恢复。在磁悬浮球系统上的实验结果验证了所提控制方案的有效性。
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