基于混沌理论的微弱信号频率估计

Lou Tian-liang
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引用次数: 8

摘要

分析了利用Duffing振子初始条件灵敏度检测微弱信号的方法,讨论了确定Duffing振子混沌阈值的Melnikov方法。阐述了基于相迹变化的微弱信号检测原理,并研究了混沌检测过程中噪声对系统状态的影响。仿真实验表明,该振荡器对与参考信号频率差极小的小信号敏感,对与参考信号频率差较大的随机噪声和干扰信号免疫。通过分析Duffing振荡器的间歇混沌机理,发现当输入频率与强制驱动频率有轻微偏差时,系统输出是一个间歇混沌信号,该偏差可以通过输出混沌信号的统计特性来估计。仿真结果表明,该方法可以检测到低信噪比的信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency Estimation for Weak Signals Based on Chaos Theory
The method of the weak signal detection using the Duffing oscillator's initial conditions sensitivity was analyzed, and the Melnikov method of determining chaotic threshold of Duffing oscillators is discussed. The principle of weak signal detection based on the change of phase trace is described, and the influence of noise to the system status in the chaos detection process is also studied. Simulation experiments show that the oscillator is sensitive to the small signal having the tiny frequency difference with the referential signal and immune against the random noise and interference signal having larger frequency difference with the referential signal. Through analyzing the intermittent chaos mechanism of Duffing oscillator, it was found that the system output is a intermittent chaotic signal when input frequency deviates the compulsory drive frequency slightly, and the deviation can be estimated by the statistic characteristic of output chaotic signal. Simulation results show that the signal with low SNR can be detected by the method.
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