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An Improved Mean Frequency Estimator for Ultrasonic Color Flow Imaging Using Second-Order Autoregressive Model

机译:基于二阶自回归模型的超声彩色流成像改进平均频率估计器

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An improved second-order AR estimator is proposed for color flow imaging. It can give accurate estimation in the presence of very intensive clutter signal. Traditionally, the performance of the second-order AR estimator may be degraded by the clutter when the amplitude of the clutter is very large compared with the Doppler signal, because very large clutter will shift the Doppler pole toward low frequency. The improved second-order AR estimator which we propose in this paper can remedy this problem by first estimating the mean frequency of the clutter signal and then compensating the frequency down-shift of the Doppler signal using this mean frequency. Simulation results show that the improved AR estimator can give more accurate estimate of the mean frequency and variance of the blood signal than the conventional one, even if the amplitude of the clutter is very large compared with Doppler signal.
机译:提出了一种改进的二阶AR估计器用于彩色流成像。在存在非常密集的杂波信号的情况下,它可以给出准确的估计。传统上,当杂波的幅度与多普勒信号相比非常大时,由于杂波会降低二阶AR估计器的性能,因为非常大的杂波会使多普勒极移向低频。我们在本文中提出的改进的二阶AR估计器可以通过首先估计杂波信号的平均频率,然后使用该平均频率补偿多普勒信号的下移频率来解决此问题。仿真结果表明,即使杂波的振幅与多普勒信号相比非常大,改进的AR估计器也可以比传统方法更准确地估计血液信号的平均频率和方差。

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