Fixed-Time Stabilization for Interconnected Systems with Discontinuous Interconnections and Nonidentical Perturbations

Nannan Rong, Zhanshan Wang, Huaguang Zhang
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Abstract

This paper investigates the fixed-time stabilization issue for a class of nonlinear interconnected systems with discontinuous interconnections and nonidentical perturbations. Firstly, according to the differential inclusion theory, the solutions of such discontinuous interconnected system are defined in the sense of Filippov. In addition, an improved fixed-time lemma, in which the regional bound r can be freely chosen in [0, 1], is proposed to realize the fixed-time stabilization and estimate the settling time. Then, through designing a state feedback controller and utilizing generalized Lyapunov functional method, sufficient criteria are derived to guarantee the fixed-time stabilization of the discontinuous interconnected system. Especially, the upper bound of the convergence time is estimated by a fixed time, which is independent of initial conditions. Finally, the proposed methodology and results are verified by an example.
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具有不连续互联和非同摄动的互联系统的定时镇定
研究了一类具有不连续互联和非同摄动的非线性互联系统的定时镇定问题。首先,根据微分包含理论,在Filippov意义上定义了这类不连续互联系统的解。此外,提出了一种改进的固定时间引理,其中区域界r可在[0,1]中自由选择,以实现固定时间镇定并估计沉降时间。然后,通过设计状态反馈控制器,利用广义Lyapunov泛函方法,得到了保证不连续互联系统定时镇定的充分判据。特别地,收敛时间的上界由一个固定的时间估计,它与初始条件无关。最后,通过一个算例验证了所提出的方法和结果。
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