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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Adaptive compensation of phase and magnitude aberrations
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Adaptive compensation of phase and magnitude aberrations

机译:自适应补偿相位和幅度像差

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摘要

A new method for aberration correction is presented. Using multiple receive beams reconstructed at each transmit direction, image artifacts due to imperfect beam forming can be identified and greatly reduced. Previous studies have demonstrated the efficacy of such a compensation algorithm for blocked elements. In this study, the algorithm is extended for magnitude and phase aberrations. Experimental results show that substantial improvements are possible for small amplitude and phase errors. The compensation method is less effective for large errors, however. Based on this, a two-step procedure is proposed for general aberration correction. First, cross-correlation processing is used to reduce significant phase errors. Then, the adaptive compensation method is applied to remove remaining artifacts due to blocked elements, amplitude aberrations, and residual phase errors. This two-step procedure is shown to be effective in significantly reducing image artifacts due to amplitude and phase errors.
机译:提出了一种新的像差校正方法。使用在每个发射方向重构的多个接收光束,可以识别并大大减少由于不完善的波束形成而导致的图像伪影。先前的研究已经证明了这种补偿算法对阻塞元素的功效。在这项研究中,该算法扩展了幅度和相位像差。实验结果表明,对于较小的幅度和相位误差,可能会有实质性的改进。但是,补偿方法对较大的误差不太有效。基于此,提出了用于一般像差校正的两步过程。首先,使用互相关处理来减少明显的相位误差。然后,应用自适应补偿方法以去除由于阻塞的元素,振幅像差和残留相位误差而引起的残留伪像。该两步过程显示出可有效减少由于幅度和相位误差引起的图像伪影。

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