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Logic codes generation and transmission using an encoding-decoding system

机译:使用编码解码系统生成和传输逻辑代码

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摘要

Nonlinear behaviors of light such as chaos can be observed during propagation of a Gaussian laser beam inside a single ring resonator system. Chaotic signals can be employed to generate data of logic codes to be transmitted along the fiber optic communication. Controlling of the chaotic signals can be implemented by the parameter of the system such as coupling coefficient, the ring’s radius, coupling loss and input power. The central wavelength of the input Gaussian laser pulse has been selected to λ0=1550 nm where the nonlinear refractive index of the medium is n2=1.4×10−13 m2 W−1. Therefore the data of logic codes generated by the single ring resonator system can be converted to transmitting secured codes where the decoding process of the transmitted codes can be obtained at the end of the transmission link. Here generation of logic code of “101010101011010101011101011110101101010101010110101” is performed, encoded and decoded over 50 km fiber optics. Thus secured transmitting of signals can be obtained along the long distance fiber communication.
机译:在单个环形谐振器系统内高斯激光束传播期间,可以观察到光的非线性行为,例如混沌。可以采用混沌信号来生成要沿着光纤通信传输的逻辑代码的数据。混沌信号的控制可以通过系统的参数来实现,例如耦合系数,环的半径,耦合损耗和输入功率。输入高斯激光脉冲的中心波长已选择为λ0= 1550 nm,其中介质的非线性折射率为n2 = 1.4×10-13 m2 W-1。因此,由单环形谐振器系统产生的逻辑代码的数据可以被转换成发送安全代码,其中可以在传输链路的末端获得对发送代码的解码处理。在此,在50 km的光纤上执行,编码和解码“ 101010101011010101011101011110101101010101010110101”的逻辑代码。因此,可以沿着长距离光纤通信获得信号的安全传输。

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