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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >iMAP Beamforming for High-Quality High Frame Rate Imaging
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iMAP Beamforming for High-Quality High Frame Rate Imaging

机译:用于高质量高帧率成像的iMAP波束成形

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We present a statistical interpretation of beamforming to overcome the limitations of standard delay-and-sum (DAS) processing. Both the interference and the signal of interest are viewed as random variables, and the distribution of the signal of interest is exploited to maximize the a posteriori distribution of the aperture signals. In this formulation, the beamformer output is a maximum a posteriori (MAP) estimator of the signal of interest. We provide a closed-form expression for the MAP beamformer and estimate the unknown distribution parameters from the available aperture data using an empirical Bayes approach. We propose a simple scheme that iterates between the estimation of distribution parameters and the computation of the MAP estimator of the signal of interest, leading to an iterative MAP (iMAP) beamformer. This results in a suppression of the interference compared with DAS, without a severe increase in computational complexity or the need for fine-tuning of parameters. The effect of the proposed method on contrast is studied in detail and measured in terms of contrast ratio (CR), contrast-to-noise ratio (CNR), and contrast-to-speckle ratio (CSR). By implementing iMAP on both simulated and experimental data, we show that only 13 transmissions are required to obtain a CNR comparable to DAS with 75 plane waves. Compared to other interference suppression methods, such as coherence factor and scaled Wiener processing, iMAP shows an improved contrast and a better preserved speckle pattern.
机译:我们提出了波束成形的统计解释,以克服标准延迟总和(DAS)处理的局限性。干扰和感兴趣的信号均被视为随机变量,并且感兴趣的信号的分布被利用来最大化孔径信号的后验分布。在该公式中,波束形成器输出是感兴趣信号的最大后验(MAP)估计器。我们为MAP波束形成器提供了一种封闭形式的表达式,并使用经验贝叶斯方法从可用的孔径数据中估计未知分布参数。我们提出了一种简单的方案,该方案在分布参数的估计与感兴趣信号的MAP估计器的计算之间进行迭代,从而导致迭代MAP(iMAP)波束形成器。与DAS相比,这可以抑制干扰,而不会显着增加计算复杂性或无需对参数进行微调。详细研究了该方法对对比度的影响,并根据对比度(CR),对比度-噪声比(CNR)和对比度-斑点比(CSR)进行了测量。通过在仿真数据和实验数据上均实现iMAP,我们表明仅需要13次传输就可以获得与DAS相比具有75个平面波的CNR。与相干因子和比例维纳处理等其他干扰抑制方法相比,iMAP显示出更高的对比度和更好的保留斑点图案。

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