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A novel clipping technique for filtering FM signals embedded in intensive noise - Springer

机译:一种用于过滤嵌入强烈噪声中的FM信号的新颖削波技术-Springer

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摘要

A novel adaptive clipping technique for filtering a constant amplitude frequency modulated (FM) signal embedded in non-Gaussian noise is proposed. It is based on the analysis and processing of the estimate of probability density function of a FM signal realization. As a result, modifications of two robust estimators of FM signal amplitude are proposed. It is shown that these estimators can be used for Gaussian and non-Gaussian heavy-tail environments. The proposed clipping technique can exploit one or another obtained robust estimate of the signal amplitude for adaptive setting a threshold. Analysis of signal estimate accuracy for different noise environments is carried out. Comparative analysis of the obtained methods and known approaches based on scanning window nonlinear filtering and optimal robust L-DFT form is performed. It is demonstrated that the usage of clipping-based technique leads to the considerable improvement of the FM signal filtering efficiency in comparison to the aforementioned known approaches for different noise environments and a wide range of input SNR values.
机译:提出了一种新颖的自适应削波技术,用于滤波嵌入在非高斯噪声中的恒定幅度调频(FM)信号。它基于对FM信号实现的概率密度函数估计的分析和处理。结果,提出了对FM信号幅度的两个鲁棒估计器的修改。结果表明,这些估计器可用于高斯和非高斯重尾环境。所提出的削波技术可以利用一个或另一个获得的信号幅度的鲁棒估计来自适应地设置阈值。进行了针对不同噪声环境的信号估计精度的分析。对获得的方法和已知方法进行了比较分析,这些方法基于扫描窗口非线性滤波和最佳鲁棒L-DFT形式。已经证明,与前述针对不同噪声环境和宽范围输入SNR值的已知方法相比,基于削波的技术的使用导致FM信号滤波效率的显着提高。

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