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Robust finite-time synchronization of chaotic parametrically excited pendulums with multiple uncertainties

机译:多重不确定性的混沌参数激发摆的鲁棒有限时间同步

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Global robust finite-time synchronization of two chaotic parametrically excited pendulums with the parameter mismatches, extern disturbance and time delay is investigated in this paper. Firstly, the robust finite-time synchronization scheme for two chaotic parametrically excited pendulums in the presence of the above three uncertainties is constructed by employing the generalized linear state error feedback control. Then, the global robust finite-time synchronization problem is transformed to the global finite-time stability of the error system originating from the synchronization scheme. Subsequently, a sufficient algebraic criterion for the global robust finite-time synchronization of two parametrically excited pendulums is rigorously proved by using the finite-time stability theory. Also, both the synchronization time and the synchronization error bound are analytically estimated at the same time. Finally, the obtained criterion is verified to be effective by the numerical simulation.
机译:在本文中研究了两个混沌参数激发摆的全局鲁棒有限时间同步,在本文中研究了外部干扰和时间延迟。首先,通过采用广义的线性状态误差反馈控制来构建在上述三个不确定性的存在中的两个混沌参数激发摆的鲁棒有限时间同步方案。然后,将全局鲁棒有限时间同步问题转换为源自同步方案的错误系统的全局有限时间稳定性。随后,通过使用有限时间稳定性理论,严格证明了用于全局稳健的有限时间同步的足够的代数标准。此外,同时估计同步时间和同步误差都是同时估计的。最后,通过数值模拟验证所获得的标准是有效的。

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