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    • 摘要: 基于两个具有平行结构的电光时延反馈环,本文设计了一种电光强度混沌通信系统。通过混沌注入混沌的方式来产生更加复杂的混沌波形,增强混沌复杂程度以及通信系统的保密性。在本次设计中,采用MATLAB与OptiSystem协同的方式来对该系统进行仿真,解决了OptiSystem不能模拟光学反馈环路的问题。由OptiSystem中成熟的激光器和二进制序列生成模块为系统提供能量与输入信号,由MATLAB程序实现电光时延反馈环,并在OptiSystem中完成信号在光纤链路中的传输。文章介绍了如何利用MATLAB与OptiSystem实现混沌系统的协同仿真,并通过数值模拟表明,提出的用于模拟光学反馈环路的方法具有可行性,设计的混沌系统的性能与理论值吻合,证明了该混沌生成方式的可行性。

       

      Abstract: An electro-optic intensity chaotic communication system is designed by combining two electro-optic delay feedback loops with parallel structures. By injecting chaos into chaos, a more complex chaotic waveform is generated to enhance the chaotic complexity and the communication system confidentiality. In this design, MATLAB and OptiSystem software are used to simulate the system, which solves the problem that OptiSystem software can't simulate the optical feedback loop. The mature laser and binary sequence generation modules in OptiSystem software provide energy and input signals for the system. The electro-optic delay feedback loops are realized by the MATLAB program, and the signal transmission in optical fibers is completed in the OptiSystem software. The article introduces how to use MATLAB and OptiSystem software to realize the co-simulation of chaotic systems. Numerical simulations show that the proposed method is feasible to simulate the optical feedback loop, and the simulation results are in good agreement with the theoretical values, which prove that the chaotic signal is generated.