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Finite Time Stabilization of a Perturbed Double Integrator—Part I: Continuous Sliding Mode-Based Output Feedback Synthesis

机译:扰动双积分器的有限时间稳定-第一部分:基于连续滑模的输出反馈合成

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摘要

The twisting and supertwisting algorithms, generating important classes of second order sliding modes (SOSMs), are well-recognized for their finite time stability and robustness properties. In the present paper, a continuous modification of the twisting algorithm and an inhomogeneous perturbation of the supertwisting algorithm are introduced to extend the class of SOSM's that present the afore-mentioned attractive features. Thus modified, the twisting and supertwisting algorithms are utilized in the state feedback synthesis and, respectively, velocity observer design, made for the finite time stabilization of a double integrator if only output measurements are available. Performance and robustness issues of the resulting output feedback synthesis are illustrated by means of numerical simulations.
机译:产生重要类别的二阶滑模(SOSM)的扭曲和超扭曲算法因其有限的时间稳定性和鲁棒性而广为人知。在本文中,引入了对扭曲算法的连续修改和对超扭曲算法的不均匀扰动,以扩展具有上述有吸引力特征的SOSM的类别。如此修改后,扭曲和超扭曲算法分别用于状态反馈综合和速度观测器设计中,如果只有输出测量可用,则可用于双积分器的有限时间稳定。通过数值模拟说明了所得输出反馈综合的性能和鲁棒性问题。

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