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Extracting harmonic signal from a chaotic background with local linear model

机译:利用局部线性模型从混沌背景中提取谐波信号

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In this paper, the problems of blind detection and estimation of harmonic signal in strong chaotic background are analyzed, and new methods by using local linear (LL) model are put forward. The LL model has been exhaustively researched and successfully applied for fitting and forecasting chaotic signal in many chaotic fields. We enlarge the modeling capacity substantially. Firstly, we can predict the short-term chaotic signal and obtain the fitting error based on the LL model. Then we detect the frequencies from the fitting error by periodogram, a property on the fitting error is proposed which has not been addressed before, and this property ensures that the detected frequencies are similar to that of harmonic signal. Secondly, we establish a two-layer LL model to estimate the determinate harmonic signal in strong chaotic background. To estimate this simply and effectively, we develop an efficient backfitting algorithm to select and optimize the parameters that are hard to be exhaustively searched for. In the method, based on sensitivity to initial value of chaos motion, the minimum fitting error criterion is used as the objective function to get the estimation of the parameters of the two-layer LL model. Simulation shows that the two-layer LL model and its estimation technique have appreciable flexibility to model the determinate harmonic signal in different chaotic backgrounds (Lorenz, Henon and Mackey-Glass (M-G) equations). Specifically, the harmonic signal can be extracted well with low SNR and the developed background algorithm satisfies the condition of convergence in repeated 3-5 times.
机译:分析了强混沌背景下谐波信号的盲检测和估计问题,提出了使用局部线性(LL)模型的新方法。 LL模型已经得到了详尽的研究,并成功地应用于许多混沌领域中的混沌信号的拟合和预测。我们大大扩大了建模能力。首先,我们可以预测短期混沌信号并基于LL模型获得拟合误差。然后,我们通过周期图从拟合误差中检测出频率,提出了拟合误差的一个属性,该属性以前未得到解决,该属性可确保检测到的频率与谐波信号相似。其次,我们建立了一个两层LL模型来估计强混沌背景下的确定谐波信号。为了简单有效地进行估算,我们开发了一种高效的反向拟合算法来选择和优化难以穷举搜索的参数。该方法基于对混沌运动初始值的敏感性,以最小拟合误差准则作为目标函数,对两层LL模型的参数进行了估计。仿真表明,两层LL模型及其估计技术在不同混沌背景(Lorenz,Henon和Mackey-Glass(M-G)方程)中对确定的谐波信号建模具有明显的灵活性。具体而言,可以以低SNR很好地提取谐波信号,并且开发的背景算法满足3-5次重复的收敛条件。

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