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Bursting oscillations in a piecewise system with time delay under periodic excitation: Theoretical and experimental observation of real electrical bursting signals using microcontroller

机译:在周期性激励下的分段系统中的分段系统中的振荡突发:使用微控制器的真实电爆破信号的理论和实验观察

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In this paper, we report the existence of bursting oscillations in systems governed by a second-order differential equation with only one signum nonlinearity term and time-delay feedback, driven by the slowly varying external force. Depending on the sign of the strength of signum nonlinearity, two cases are studied: two-well and single-well potentials. The external force acts as the control parameter, the stability of equilibrium points is first discussed and the condition for Hopf bifurcation is established. Secondly, we present the effect of time delay on bursting oscillations when periodic forcing changes slowly. Our results show that the time delay is responsible for the appearance or disappearance of the bursting phenomenon. It is also found that the amplitude, the number of peaks and period of bursting oscillation depend on the value of the time delay. The bursting shapes obtained theoretically are exhibited experimentally using the real microcontroller simulation.
机译:在本文中,我们报告了由二阶微分方程治理的系统中的突发振荡的存在,其仅具有一个Signum非线性术语和时间延迟反馈,由缓慢变化的外力驱动。 根据Signum非线性强度的迹象,研究了两种情况:两种井和单井电位。 外力用作控制参数,首先讨论平衡点的稳定性,并且建立了Hopf分叉的条件。 其次,当周期性迫使缓慢变化时,我们呈现时间延迟对爆裂振荡的影响。 我们的研究结果表明,时间延迟负责突发现象的外观或消失。 还发现幅度,峰值的峰值数和突破振荡周期取决于时间延迟的值。 理论上获得的突发形状使用真实的微控制器仿真实验表现出。

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