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Nonstationarity broadening reduction in pulsed Doppler spectrum measurements using time-frequency estimators

机译:使用时频估计器的脉冲多普勒频谱测量中的非平稳性加宽减少

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The spectral width of Doppler signals is used as measure of lesion-induced flow disturbance. Its estimation accuracy is compromised using the conventional short-term Fourier transform (STFT) since this method implicitly assumes signal stationarity during the signal window while the Doppler signals from arteries are markedly nonstationary. The Wigner-Ville (WVD), Choi-Williams (CWD) and Bessel distributions (BD), specifically designed for nonstationary signals, have been optimized for spectral width estimation accuracy and compared to the STFT under different signal to noise ratios using simulated Doppler signals of known time-frequency characteristics. The optimum parameter values for each method were determined as a Hanning window duration of 10 ms for the STFT, 40 ms for the WVD and CWD and 20 ms for the BD and dimensionless time-frequency smoothing constant values of five in the CWD and two in the BD. Thresholding was used to reduce the effect of cross terms and side lobes in the WVD and BD. With no added noise the WVD gave the lowest estimation error followed by the CWD. At signal-to-noise ratios (SNRs) of 10 dB and 20 dB the CWD and BD had similar errors and were markedly better than the other estimators. Overall the CWD gave the best performance.
机译:多普勒信号的频谱宽度用作病变引起的血流干扰的量度。使用常规的短期傅立叶变换(STFT)会降低其估计精度,因为该方法隐含地假设了信号窗口期间的信号平稳性,而来自动脉的多普勒信号则明显不稳定。专为非平稳信号设计的Wigner-Ville(WVD),Choi-Williams(CWD)和Bessel分布(BD)已针对频谱宽度估计精度进行了优化,并使用模拟多普勒信号在不同信噪比下与STFT进行了比较的时频特性每种方法的最佳参数值确定为汉宁窗口持续时间,STFT为10毫秒,WVD和CWD为40毫秒,BD为20毫秒,无量纲的时频平滑常数CWD中为5,2 in BD。阈值处理用于减少WVD和BD中交叉项和旁瓣的影响。在不增加噪声的情况下,WVD给出了最低的估计误差,其次是CWD。在10 dB和20 dB的信噪比(SNR)时,CWD和BD具有相似的误差,并且明显优于其他估计器。总体而言,CWD表现最佳。

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