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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Fast Computation of Wideband Beam Pattern for Designing Large-Scale 2-D Arrays
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Fast Computation of Wideband Beam Pattern for Designing Large-Scale 2-D Arrays

机译:设计大型二维阵列的宽带波束方向图的快速计算

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摘要

For real-time and high-resolution 3-D ultrasound imaging, the design of sparse distribution and weights of elements of a large-scale wideband 2-D array is needed to reduce hardware cost and achieve better directivity. However, due to the high time consumption of computing the wideband beam pattern, the design methods that need massive iterations have rarely been applied to design large-scale wideband 2-D arrays by directly computing the wideband beam pattern. In this paper, a fast method is proposed to realize the computation of a wideband beam pattern of arbitrary 2-D arrays in the far field in order to design large-scale wideband 2-D arrays. The proposed fast method exploits two important techniques: 1) nonuniform fast Fourier transform (FFT) and 2) short inverse FFT. Compared with the commonly used ultrasound simulator Field II, two orders of magnitude improvement in computation speed is achieved with comparable accuracy. The proposed fast method enables massive iterations of direct wideband beam pattern computation of arbitrary large-scale 2-D arrays. A design example in this paper demonstrates that the proposed fast method can help achieve better performance in designing large-scale wideband 2-D arrays.
机译:对于实时和高分辨率3D超声成像,需要设计大型宽带2D阵列的稀疏分布和元素的权重,以降低硬件成本并实现更好的方向性。但是,由于计算宽带波束方向图的时间很长,因此需要大量迭代的设计方法很少用于通过直接计算宽带波束方向图来设计大规模宽带2-D阵列。为了设计大规模的宽带二维阵列,本文提出了一种快速的方法来实现远场任意二维阵列的宽带波束方向图的计算。提出的快速方法利用了两项重要技术:1)非均匀快速傅立叶变换(FFT)和2)短逆FFT。与常用的超声模拟器Field II相比,在计算速度上可提高两个数量级,并且具有相当的精度。所提出的快速方法能够对任意大规模二维阵列的直接宽带波束方向图计算进行大规模迭代。本文的设计实例表明,所提出的快速方法可以帮助设计大型宽带二维阵列时获得更好的性能。

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