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首页> 外文期刊>EURASIP journal on advances in signal processing >Approximating the time-frequency representation of biosignals with chirplets
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Approximating the time-frequency representation of biosignals with chirplets

机译:用线性调频逼近生物信号的时频表示

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A new member of the Cohen's class time-frequency distribution is proposed. The kernel function is determined adaptively based on the signal of interest. The kernel preserves the chirp-like components while removing interference terms generated due to the quadratic characteristic of Wigner-Ville distribution. This approach is based on the chirplet as an underlying model of biomedical signals. We illustrate the method using a number of common biological signals including echo-location and evoked potential signals. Finally, the results are compared with other techniques including chirplet decomposition via matching pursuit and the Choi-Williams distribution function.
机译:提出了科恩类时频分布的新成员。基于感兴趣的信号自适应地确定核函数。内核保留了线性调频分量,同时消除了由于Wigner-Ville分布的二次特征而产生的干扰项。这种方法基于chirplet,作为生物医学信号的基础模型。我们说明了使用许多常见生物信号(包括回声定位和诱发电位信号)的方法。最后,将结果与其他技术进行比较,包括通过匹配追踪和Choi-Williams分布函数进行的chirplet分解。

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