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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Reduction of computational complexity in the butterfly search technique [ultrasonic blood flow imaging]
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Reduction of computational complexity in the butterfly search technique [ultrasonic blood flow imaging]

机译:减少蝴蝶搜索技术的计算复杂度[超声波血流成像]

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摘要

In the butterfly search technique, echoes from repeated firings of a transducer are resampled along a set of predetermined trajectories of constant velocities, called "butterfly lines", because of their intersection and crossing at a reference range. The slope of the trajectory on which the sampled signals satisfy a predetermined criterion appropriate for the type of signal in question, provides an estimate of the velocity of the target. The search for this trajectory is called "butterfly search", which can be carried out efficiently in a parallel processing scheme. The estimator can be based on the radio frequency (RF) A-lines, the envelopes, or the quadrature components. The butterfly search on quadrature components has shown outstanding noise immunity, even with relatively few successive scan lines, and was found to outperform all the common time domain and Doppler techniques in simulations and experiments with strong noise. It can be simply implemented using elementary digital signal processing hardware. However, it is possible to further improve upon its computational complexity to make the technique even simpler to implement, without any complex multipliers in the parallel channels. In this paper, we present some modifications that significantly reduce the computational complexity of butterfly search on quadrature components.
机译:在蝶形搜索技术中,由于换能器反复发射而产生的回波沿着一组恒定速度的预定轨迹被重新采样,这些轨迹称为“蝴蝶线”,因为它们在参考范围内相交并相交。采样信号满足适合于所讨论信号类型的预定标准的轨迹的斜率提供了目标速度的估计。该轨迹的搜索称为“蝴蝶搜索”,可以在并行处理方案中有效地执行该搜索。估计器可以基于射频(RF)A线,包络或正交分量。即使在相对较少的连续扫描线上,对正交分量的蝶形搜索也显示出出色的抗噪能力,并且在具有强噪声的仿真和实验中,其性能优于所有常见的时域和多普勒技术。使用基本的数字信号处理硬件可以简单地实现它。然而,有可能进一步改善其计算复杂度,以使该技术更易于实现,而在并行通道中无需任何复杂的乘法器。在本文中,我们提出了一些修改,这些修改显着降低了正交分量上蝶形搜索的计算复杂度。

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