Park Kwangho, Lai Ying-Cheng, Krishnamoorthy Satish
Department of Electrical Engineering, Arizona State University, Tempe, Arizona 85287, USA.
Chaos. 2007 Dec;17(4):043111. doi: 10.1063/1.2802544.
It has been found recently that the averaged phase-synchronization time between the input and the output signals of a nonlinear dynamical system can exhibit an extremely high sensitivity to variations in the noise level. In real-world signal-processing applications, sensitivity to frequency variations may be of considerable interest. Here we investigate the dependence of the averaged phase-synchronization time on frequency of the input signal. Our finding is that, for typical nonlinear oscillator systems, there can be a frequency regime where the time exhibits significant sensitivity to frequency variations. We obtain an analytic formula to quantify the frequency dependence, provide numerical support, and present experimental evidence from a simple nonlinear circuit system.
最近发现,非线性动力系统输入与输出信号之间的平均相位同步时间对噪声水平的变化可能表现出极高的敏感性。在实际的信号处理应用中,对频率变化的敏感性可能相当重要。在此,我们研究平均相位同步时间对输入信号频率的依赖性。我们的发现是,对于典型的非线性振荡器系统,可能存在一个频率范围,在该范围内时间对频率变化表现出显著的敏感性。我们得到了一个解析公式来量化频率依赖性,提供了数值支持,并给出了来自一个简单非线性电路系统的实验证据。