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首页> 外文期刊>International Journal of Modern Physics C (IJMPC) >PRACTICAL SYNCHRONIZATION OF NONAUTONOMOUS SYSTEMS WITH UNCERTAIN PARAMETER MISMATCH VIA A SINGLE STATE FEEDBACK CONTROL
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PRACTICAL SYNCHRONIZATION OF NONAUTONOMOUS SYSTEMS WITH UNCERTAIN PARAMETER MISMATCH VIA A SINGLE STATE FEEDBACK CONTROL

机译:具有单参数反馈控制的不确定不确定非自治系统的实际同步

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摘要

Robust practical synchronization of general second-order nonautonomous systems with uncertain parameter mismatch is investigated by using a single state feedback control. Some simple general algebraic criteria are derived based on practical stability theory of nonautonomous dynamical system. A distinctive feature of this work is that the parameter mismatch not only exists in system parameters, but also in the external excitation ones. More reasonably, the values of parameter mismatch can be uncertain. Besides, a single state feedback control including an approximate differentiation filter only needs to know information about one state, which provides an advantage over the use of full-state model-based observers. It is shown that the approaches developed here further extend the ideas and techniques presented in recent literature. As a direct application of the new theoretical results, the obtained results are applied to a typical horizontal platform system and the representative forced Duffing–Van der Pol oscillator. Subsequently, numerical simulations demonstrate the effectiveness of the criteria and the robustness of the control technique.
机译:通过使用单状态反馈控制,研究了具有不确定参数不匹配的一般二阶非自治系统的鲁棒实用同步。基于非自治动力系统的实用稳定性理论,推导了一些简单的通用代数准则。这项工作的一个显着特征是参数不匹配不仅存在于系统参数中,而且还存在于外部励磁参数中。更合理地,参数不匹配的值可以不确定。此外,包括近似微分滤波器的单个状态反馈控制只需要知道有关一个状态的信息,这比使用基于全状态模型的观察器具有优势。结果表明,这里开发的方法进一步扩展了最近文献中提出的思想和技术。作为新理论结果的直接应用,将获得的结果应用于典型的水平平台系统和具有代表性的强制Duffing–Van der Pol振荡器。随后,数值模拟证明了该标准的有效性和控制技术的鲁棒性。

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