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On the dynamics of a periodic Colpitts oscillator forced by periodic and chaotic signals

机译:关于周期性和混沌信号强迫的周期性Colpitts振荡器的动力学

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摘要

In this paper, we have examined effects of forcing a periodic Colpitts oscillator with periodic and chaotic signals for different values of coupling factors. The forcing signal is generated in a master bias-tuned Colpitts oscillator having identical structure as that of the slave periodic oscillator. Numerically solving the system equations, it is observed that the slave oscillator goes to chaotic state through a period-doubling route for increasing strengths of the forcing periodic signal. For forcing with chaotic signal, the transition to chaos is observed but the route to chaos is not clearly detectable due to random variations of the forcing signal strength. The chaos produced in the slave Colpitts oscillator for a chaotic forcing is found to be in a phase-synchronized state with the forced chaos for some values of the coupling factor. We also perform a hardware experiment in the radio frequency range with prototype Colpitts oscillator circuits and the experimental observations are in agreement with the numerical simulation results.
机译:在本文中,我们研究了在耦合因子不同的情况下,用周期性和混沌信号强迫周期性Colpitts振荡器的效果。强制信号在具有与从周期振荡器相同的结构的主偏置调谐的科尔皮茨振荡器中产生。通过数值求解系统方程,可以观察到从振荡器通过周期倍增路径进入混沌状态,以增加强制周期信号的强度。对于带有混沌信号的强制,观察到了向混沌的过渡,但是由于强制信号强度的随机变化,因此无法清晰地检测到混沌的路径。对于耦合因子的某些值,发现在从属Colpitts振荡器中产生的用于混沌强迫的混沌与强迫混沌处于相位同步状态。我们还使用原型Colpitts振荡器电路在射频范围内进行了硬件实验,实验观察结果与数值模拟结果一致。

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