Fixed-Time Stabilization of Second-Order Systems with Unknown Nonlinear Inherent Dynamics

Yang Liu, H. Yue, Wei Wang
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引用次数: 4

Abstract

This paper studies the fixed-time stabilization control for a class of second-order systems with unknown nonlinear dynamics and external disturbance. To achieve the fixed-time stability, two polynomial feedbacks, one with fractional exponent and the other with exponent greater than 1, are exploited in the sliding surface design. Then, considering the unknown nonlinear dynamics and the external disturbance, the unit-vector technique, coupled with the upper bounds related to the Lipschitz condition of nonlinear dynamics and the uncertain disturbance, is utilized to the fixed-time stability controller based on the designed sliding surface function. Finally, a forced pendulum system is used as case study example to examine the effectiveness of the developed design framework.
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具有未知非线性固有动力学的二阶系统的定时镇定
研究了一类具有未知非线性动力学和外部扰动的二阶系统的定时镇定控制问题。为了达到定时稳定性,在滑动面设计中采用了分数指数反馈和大于1指数反馈两种多项式反馈。然后,考虑未知的非线性动力学和外部扰动,将单元向量技术与非线性动力学的Lipschitz条件和不确定扰动的上界相结合,应用于基于所设计的滑动面函数的定时稳定性控制器。最后,以一个强制摆系统为例,验证了所开发的设计框架的有效性。
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