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The effect of process delay on dynamical behaviors in a self-feedback nonlinear oscillator

机译:过程延迟对自反馈非线性振荡器动力学行为的影响

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The delayed feedback loops play a crucial role in the stability of dynamical systems. The effect of process delay in feedback is studied numerically and theoretically in the delayed feedback nonlinear systems including the neural model, periodic system and chaotic oscillator. The process delay is of key importance in determining the evolution of systems, and the rich dynamical phenomena are observed. By introducing a process delay, we find that it can induce bursting electric activities in the neural model. We demonstrate that this novel regime of amplitude death also exists in the parameter space of feedback strength and process delay for the periodic system and chaotic oscillator. Our results extend the effect of process delay in the paper of Zou et al.(2013) where the process delay can eliminate the amplitude death of the coupled nonlinear systems. (C) 2016 Elsevier B.V. All rights reserved.
机译:延迟的反馈回路在动力系统的稳定性中起着至关重要的作用。在延迟反馈非线性系统(包括神经模型,周期系统和混沌振荡器)中,从数值和理论上研究了过程延迟对反馈的影响。过程延迟对于确定系统的演化至关重要,并且可以观察到丰富的动力学现象。通过引入过程延迟,我们发现它可以在神经模型中诱发爆发的电活动。我们证明了这种新颖的振幅死亡机制也存在于周期系统和混沌振荡器的反馈强度和过程延迟的参数空间中。我们的研究结果扩展了Zou等人(2013)的论文中的过程延迟影响,该过程延迟可以消除耦合非线性系统的振幅衰减。 (C)2016 Elsevier B.V.保留所有权利。

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