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首页> 外文期刊>Physical review, E >Optimal waveform for the entrainment of oscillators perturbed by an amplitude-modulated high-frequency force
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Optimal waveform for the entrainment of oscillators perturbed by an amplitude-modulated high-frequency force

机译:夹带振荡器的最佳波形,受到振幅调制高频力的干扰

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摘要

We analyze limit cycle oscillators under perturbation constructed as a product of two signals, namely, an envelope with a period close to natural period of an oscillator and a high-frequency carrier signal. A theory for obtaining an envelope waveform that achieves the maximal frequency interval of entrained oscillators is presented. The optimization problem for fixed power and maximal allowed amplitude is solved by employing the phase reduction method and the Pontryagin's maximum principle. We have shown that the optimal envelope waveform is a bang-bang-type solution. Also, we have found "inversion" symmetry that relates two signals with different powers but the same interval of entrained frequencies. The theoretical results are confirmed numerically on FitzHugh-Nagumo oscillators.
机译:我们分析了摄动下的极限周期振荡器,它是由两个信号的乘积构成的,即两个信号的周期接近一个振荡器的自然周期的包络和一个高频载波信号。提出了一种获得包络波形的理论,该包络波形实现了夹带振荡器的最大频率间隔。固定功率和最大允许振幅的优化问题通过采用相减法和庞特里亚金的最大原理来解决。我们已经表明,最佳包络波形是一种爆炸​​式解决方案。同样,我们发现“反转”对称性将两个具有不同功率但夹带频率间隔相同的信号相关联。理论结果在FitzHugh-Nagumo振荡器上得到了数值证实。

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