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Nonlinear characterization of a Rossler system under periodic closed-loop control via time-frequency and bispectral analysis

机译:基于时频和双谱分析的周期性闭环控制下的Rossler系统的非线性表征

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This study has two primary objectives; they are to investigate the nonlinear interactions (or quadratic phase-coupling) in a chaotic Rossler system under periodic closed-loop control via wavelet bispectral analysis; and to further identify the component mechanisms of synchronization. It is observed that a fixed-gain, fixed-frequency controller produces quadratic phase-coupling and decoupling along lines of constant frequency and that are perpendicular to the diagonal of the bicoherence matrix. Further, it was also observed that for synchronization to occur, both frequency entrainment and quadratic phase-coupling must be present. It was found that forcing the Rossler system with a constant frequency did not reduce the amplitude of the resulting period-1 orbit at sufficiently high gains. For the controller with a fixed gain and time-varying error signal, it was found that the time varying forcing frequency (adjusted by an extremum seeking feedback loop) linearizes the Rossler system and in doing so, suppresses the phase coherence completely. The time-varying forcing frequency removes the conditions for frequency entrainment by providing broadband attenuation; the result is suppression without synchronization.
机译:这项研究有两个主要目标;他们将通过小波双谱分析研究周期性闭环控制下的混沌Rossler系统中的非线性相互作用(或二次相位耦合)。并进一步确定同步的组成机制。可以看到,固定增益,固定频率的控制器会沿着恒定频率且垂直于双相干矩阵对角线的线产生二次相位耦合和去耦。此外,还观察到要使同步发生,必须同时存在频率夹带和二次相位耦合。发现以恒定的频率强迫罗斯勒系统并不会以足够高的增益减小所产生的周期1轨道的振幅。对于具有固定增益和随时间变化的误差信号的控制器,发现随时间变化的强迫频率(通过极值搜索反馈回路进行调整)使Rossler系统线性化,从而完全抑制了相位相干性。时变强迫频率通过提供宽带衰减而消除了频率夹带的条件;结果是抑制而没有同步。

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