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Fractional control and generalized synchronization for a nonlinear electromechanical chaotic system and its circuit simulation with Multisim

机译:非线性机电混沌系统的分数控制和广义同步及其电路仿真

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摘要

Two fractional differential controllers, described and validated by using the fractional order stability theorem and the Gershgorin circle theorem for a self-sustained electromechanical system consisting of a van der Pol-Duffing coupled oscillator, were studied in this paper. Based on the idea of a nonlinear observer, a new method for generalized synchronization (GS) of this system is proposed. Finally, the circuit simulation results demonstrate the correctness and the effectiveness of the proposed control and GS strategy.
机译:本文研究了由分数阶稳定性定理和Gershgorin圆定理描述和验证的,由范德波尔-达芬耦合振荡器组成的自持机电系统的两个分数阶微分控制器。基于非线性观测器的思想,提出了一种新的广义同步算法。最后,电路仿真结果证明了所提出的控制和GS策略的正确性和有效性。

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