Yao Chenggui, He Zhiwei
Department of Mathematics, Shaoxing University, Shaoxing 312000, China.
Chaos. 2020 Aug;30(8):083120. doi: 10.1063/5.0006350.
The normal diffusion effect is introduced as a new regulating factor into the established diffusive coupling model for bistable oscillator networks. We find that the response of the system to the weak signal is substantially enhanced by the anormal diffusion, which is termed anormal-diffusion-induced resonance. We also reveal that the diffusive coupling-induced transition, which changes the system from a bistable to a monostable state, is of fundamental importance for the occurrence of resonance. The proposed approach is validated using simulation studies and theoretical analyses. Our results suggest that diffusion induced resonance can be more easily observed in nonlinear oscillator networks.
将正常扩散效应作为一个新的调节因子引入到已建立的双稳振荡器网络的扩散耦合模型中。我们发现,异常扩散显著增强了系统对弱信号的响应,这被称为异常扩散诱导共振。我们还揭示了扩散耦合诱导的转变,即系统从双稳态转变为单稳态,对于共振的发生至关重要。通过仿真研究和理论分析验证了所提出的方法。我们的结果表明,在非线性振荡器网络中更容易观察到扩散诱导共振。