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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Estimation of mean frequency and variance of ultrasonic Doppler signal by using second-order autoregressive model
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Estimation of mean frequency and variance of ultrasonic Doppler signal by using second-order autoregressive model

机译:基于二阶自回归模型的超声多普勒信号平均频率和方差估计

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摘要

In order to estimate the mean frequency and variance of the diagnostic ultrasound Doppler signal in the presence of clutter noise, a new estimator using a second-order autoregressive (AR) model, called the AR estimator, is proposed. The sampled signal that contains information of both the Doppler signal and clutter is described by the second-order AR model with two poles. The mean frequency and variance of a unidirectional Doppler signal can be estimated, respectively, from the phase and the magnitude of the pole, with larger phase between the two poles. If the clutter is not completely rejected, all conventional estimators, including the autocorrelation (AC) estimator, result in erroneous estimations for the mean frequency and variance of the Doppler signal, whereas the AR estimator gives an accurate estimation. In the absence of clutter, however, the performance of both the AC and AR estimators are similar. If the blood flows in both directions in a sample volume and the clutter is rejected to the extent that it no longer obscures the Doppler signal, the proposed method can estimate simultaneously the mean frequencies and variances of both the forward and reverse blood flows. The performance of the proposed AR estimator was compared with that of the AC estimator by computer simulations and experiments, and it was found that when the number of available sampled data is small, the AR estimator does not require the use of a clutter filter, which simplifies Doppler signal detection.
机译:为了在存在杂波噪声的情况下估计诊断超声多普勒信号的平均频率和方差,提出了一种使用二阶自回归(AR)模型的新估计器,称为AR估计器。包含多普勒信号和杂波信息的采样信号由具有两个极点的二阶AR模型描述。可以从极的相位和幅度分别估计单向多普勒信号的平均频率和方差,两个极之间的相位较大。如果没有完全消除杂波,则所有常规估计器(包括自相关(AC)估计器)都会导致对多普勒信号的平均频率和方差的估计错误,而AR估计器则会给出准确的估计。但是,在没有混乱的情况下,AC和AR估算器的性能相似。如果血液在两个方向上以样本量流动,并且杂波被拒绝到不再使多普勒信号模糊的程度,则所提出的方法可以同时估计正向和反向血流的平均频率和方差。通过计算机仿真和实验比较了拟议的AR估计器和AC估计器的性能,发现当可用采样数据的数量很少时,AR估计器不需要使用杂波滤波器,因此简化了多普勒信号检测。

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