Chengui Géraud R Goune, Jacques Kengne, Woafo Paul, Chembo Yanne K
Laboratories d'Automatique et Informatique Appliquée (UR-AIA), Department of Electrical Engineering, IUT-FV Bandjoun, P.O. Box 134, Bandjoun, Cameroon.
Laboratory of Modelling and Simulation in Engineering, Biomimetics and Prototypes, Department of Physics, Faculty of Science, P.O. Box 812, Yaoundé, Cameroon.
Phys Rev E. 2020 Oct;102(4-1):042217. doi: 10.1103/PhysRevE.102.042217.
We investigate the nonlinear dynamics of a recent architecture of an optoelectronic oscillator, where the emitting laser and the receiving diode are connected in a head-to-tail configuration via an optical fiber delay line. The resulting nonlinear transfer function is a piecewise linear profile, and its interplay with the delay leads to many complex behaviors such as relaxation oscillations and deterministic chaos. This system belongs to a recent class of optoelectronic oscillators where the nonlinearity does not originate from the sinusoidal transfer function of an imbalanced interferometer, and, in particular, it is a simple optoelectronic oscillator configuration that is capable of displaying a chaotic behavior. The results of the analytic study are confirmed by numerical simulations and experimental measurements.
我们研究了一种近期的光电振荡器架构的非线性动力学,其中发射激光器和接收二极管通过光纤延迟线以首尾相连的配置连接。由此产生的非线性传递函数是一个分段线性分布,并且它与延迟的相互作用导致了许多复杂行为,如弛豫振荡和确定性混沌。该系统属于近期一类光电振荡器,其非线性并非源于不平衡干涉仪的正弦传递函数,特别是,它是一种能够呈现混沌行为的简单光电振荡器配置。解析研究的结果通过数值模拟和实验测量得到了证实。