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Window Width Estimation And The Application Of The Windowed Wigner-Ville Distribution In The Analysis Of Heart Sounds And Murmurs

机译:窗宽估计和窗维格纳-维勒分布在心音和杂音分析中的应用

摘要

This paper looks at the analysis of heart sounds and murmur using time-frequency signal analysis. The techniques used are the Wigner-Ville distribution (WVD) and windowed Wigner-Ville distribution (WWVD) that belonged to the bilinear class of time-frequency distribution. These techniques developed to provide high-resolution time-frequency representation for time-varying signals. Due the nonlinear operation involved, interference terms are introduced in the time-frequency representation. The signals of interest are modeled as multicomponent signals and the characteristics of the signal in time-lag plane are observed. From the time-lag plane, the interference components are identified, and the appropriate window width is selected in the WWVD to remove the interference. Analysis results show that WWVD produces more accurate time-frequency representation compared to the WVD and the signal-to-interference is used to quantify the improvement
机译:本文着眼于使用时频信号分析对心音和杂音进行分析。所使用的技术是属于时间频率分布的双线性类的Wigner-Ville分布(WVD)和窗口Wigner-Ville分布(WWVD)。这些技术的发展为时变信号提供了高分辨率的时频表示。由于涉及非线性运算,因此在时频表示中引入了干扰项。将感兴趣的信号建模为多分量信号,并观察时滞平面中信号的特性。从时滞平面中识别出干扰分量,并在WWVD中选择适当的窗口宽度以消除干扰。分析结果表明,与WVD相比,WWVD产生了更准确的时频表示,并且使用信号干扰来量化改进

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