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Synchronized Laser Chaos Communication: Statistical Investigation of an Experimental System

机译:同步激光混沌通信:实验系统的统计研究

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The paper is concerned with analyzing data from an experimental antipodal laser-based chaos shift-keying communication system. Binary messages are embedded in a chaotically behaving laser wave, which is transmitted through a fiber-optic cable and are decoded at the receiver using a second laser synchronized with the emitter laser. Instrumentation in the experimental system makes it particularly interesting to be able to empirically analyze both optical noise and synchronization error as well as bit error rate. Both the noise and error are found to significantly depart in distribution from independent Gaussian. The conclusion from bit error rate results is that the antipodal laser chaos shift-keying system can offer a feasible approach to optical communication. The non-Gaussian optical noise and synchronous error results are a challenge to current theoretical modeling.
机译:本文涉及分析来自实验对映体激光器的基于混沌移位键控通信系统的数据。二进制消息嵌入行为混乱的激光束中,该激光束通过光纤电缆传输,并在接收器处使用与发射器激光器同步的第二个激光器进行解码。实验系统中的仪器使能够对光学噪声和同步误差以及误码率进行经验分析变得特别有趣。发现噪声和误差都明显偏离独立的高斯分布。从误码率结果可以得出结论,对映体激光混沌移位键控系统可以为光通信提供一种可行的方法。非高斯光学噪声和同步误差结果对当前的理论建模提出了挑战。

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