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首页> 外文期刊>Journal of vibration and control: JVC >Synchronization via active control of parametrically and externally excited φ~6 Van der Pol and Duffing oscillators and application to secure communications
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Synchronization via active control of parametrically and externally excited φ~6 Van der Pol and Duffing oscillators and application to secure communications

机译:通过参数控制和外部激励的φ〜6 Van der Pol和Duffing振荡器的主动控制进行同步,并用于确保通信安全

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摘要

In this paper active controllers based on the Lyapunov stability theory and the Routh-Hurwitz criteria, are designed to completely synchronize two parametrically and externally excited φ~6 Van der Pol oscillators, φ~6 Duffing oscillators, and a fv~6 Van der Pol oscillator with a φ~6 Duffing oscillator in the triple-well configuration of the φ~6 potential. The coefficient matrix of the error dynamics between each pair of synchronized systems is chosen such that the number of active control functions reduces from two to one, thereby significantly reducing controller complexity in the design. The designed controllers enable the state variables of the response system to synchronize with those of the master system in both the identical and nonidentical cases. The results are validated using numerical simulations. Application to secure communications is computationally demonstrated.
机译:在本文中,基于Lyapunov稳定性理论和Routh-Hurwitz准则的有源控制器设计为完全同步两个参数激励和外部激励的φ〜6 Van der Pol振荡器,φ〜6 Duffing振荡器和fv〜6 Van der Pol φ〜6电位的三阱配置中带有φ〜6 Duffing振荡器的振荡器。选择每对同步系统之间的误差动态系数矩阵,以使主动控制功能的数量从两个减少到一个,从而显着降低设计中的控制器复杂性。设计的控制器使响应系统的状态变量能够在相同和不同情况下与主系统的状态变量同步。使用数值模拟验证了结果。通过计算演示了安全通信的应用。

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