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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Efficient dynamic focus control for three-dimensional imaging using two-dimensional arrays
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Efficient dynamic focus control for three-dimensional imaging using two-dimensional arrays

机译:使用二维阵列对三维成像进行有效的动态聚焦控制

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摘要

An efficient dynamic focus control scheme for a delay-and-sum-based beamformer is proposed. The scheme simplifies dynamic focus control by exploiting the range-dependent characteristics of the focusing delay. Specifically, the overall delay is divided into a range-independent steering term and a range-dependent focusing term. Because the focusing term is inversely proportional to range, approximation can be made to simplify dynamic focus control significantly at the price of minimal degradation in focusing quality at shallow depths. In addition, the aperture growth controlled by a constant fumber can also be utilized to devise a nonuniform quantization scheme for the focusing delay values. Efficacy of the proposed scheme is demonstrated using simulated beam plots of a fully sampled, two-dimensional array. Design procedures are also described in detail. One design example shows that, with the proposed dynamic focus control scheme, a 4096-element array only requires 227 independent controllers for the range-dependent focusing term. Moreover, only 28 non-uniform quantization levels are required to achieve the same focusing quality as that of a conventional scheme with 784 uniform quantization levels. The beam plots of a fully sampled array show that sidelobes are slightly increased below the -30 dB level for imaging depths less than 3 cm. At greater depths, there is no observable degradation.
机译:提出了一种有效的基于延迟和求和的波束形成器的动态聚焦控制方案。该方案通过利用聚焦延迟的范围相关特性简化了动态聚焦控制。具体地,将总延迟分为与范围无关的操纵项和与范围有关的聚焦项。由于聚焦项与范围成反比,因此可以进行近似以显着简化动态聚焦控制,但代价是在浅深度处聚焦质量的最小降低。另外,由恒定f /数控制的光圈增长也可以用于设计聚焦延迟值的非均匀量化方案。使用完全采样的二维阵列的模拟波束图可以证明所提方案的有效性。还详细描述了设计过程。一个设计实例表明,利用所提出的动态聚焦控制方案,一个4096个元素的阵列仅需要227个独立的控制器即可实现与范围相关的聚焦项。此外,与具有784个统一量化水平的常规方案相比,仅需要28个非均匀量化水平即可实现相同的聚焦质量。完全采样的阵列的波束图显示,对于小于3 cm的成像深度,旁瓣在-30 dB以下略有增加。在更大的深度,没有可观察到的退化。

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