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通过模拟退火对大型平面阵列进行稀疏化和加权处理。

Thinning and weighting of large planar arrays by simulated annealing.

作者信息

Trucco A

机构信息

Department of Biophysical and Electronic Engineering (DIBE), University of Genoa, I - 16145 Genova, Italy.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1999;46(2):347-55. doi: 10.1109/58.753023.

Abstract

Two-dimensional arrays offer the potential for producing three-dimensional acoustic imaging. The major problem is the complexity arising from the large number of elements in such arrays. In this paper, a synthesis method is proposed that is aimed at designing an aperiodic sparse two-dimensional array to be used with a conventional beam-former. The stochastic algorithm of simulated annealing has been utilized to minimize the number of elements necessary to produce a spatial response that meets given requirements. The proposed method is highly innovative, as it can design very large arrays, optimize both positions and weight coefficients, synthesize asymmetric arrays, and generate array configurations that are valid for every steering direction. Several results are presented, showing notable improvements in the array characteristics and performances over those reported in the literature.

摘要

二维阵列提供了产生三维声学成像的潜力。主要问题在于此类阵列中大量元件所带来的复杂性。本文提出了一种合成方法,旨在设计一种非周期性稀疏二维阵列,使其与传统波束形成器配合使用。已利用模拟退火的随机算法来最小化产生满足给定要求的空间响应所需的元件数量。所提出的方法具有高度创新性,因为它可以设计非常大的阵列,优化位置和权重系数,合成不对称阵列,并生成对每个转向方向都有效的阵列配置。给出了几个结果,表明与文献中报道的相比,阵列特性和性能有显著改善。

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