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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Dense and sparse 2-D array radiation patterns in lossy media
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Dense and sparse 2-D array radiation patterns in lossy media

机译:有损耗介质中的密集和稀疏二维阵列辐射方向图

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Two-dimensional (2-D) transducer arrays are potentially able to generate real-time volumetric images of internal organs of the human body, and much work has been done on the subject in recent years. A 2-D array with high resolution and low grating lobe level requires a prohibitively large number of elements for existing technology. A successful solution to reduce the number of elements, without sacrificing the above mentioned characteristics, is to select a limited number of elements in a random way or combining transmitting and receiving apertures with element spacing greater than one-half of a wavelength. In this work, the effect of the human body attenuation on the performances of these so-called sparse arrays is investigated. We analytically demonstrate that, for continuous wave excitation and under paraxial approximation, the medium losses can be modeled as a Gaussian weighting function, acting off-axis in the observation plane. The variance of this weighting function decreases with the covered distance. Radiation patterns computed with both this simple model and with a more exact expression, are presented for sparse and dense 2-D arrays under continuous and pulsed wave operation. Comparisons between the results obtained with and without attenuation also are shown.
机译:二维(2-D)换能器阵列有可能能够生成人体内部器官的实时体积图像,并且近年来在该主题上已经进行了很多工作。具有高分辨率和低光栅波瓣水平的二维阵列需要用于现有技术的大量元件。在不牺牲上述特性的情况下,减少元件数量的成功解决方案是以随机方式选择有限数量的元件,或者组合元件间距大于波长一半的发射和接收孔径。在这项工作中,研究了人体衰减对这些所谓的稀疏阵列性能的影响。我们分析性地证明,对于连续波激发和近轴近似下,介质损失可以建模为高斯加权函数,在观测平面中轴外作用。该加权函数的方差随覆盖距离而减小。在连续和脉冲波操作下,针对稀疏和密集的二维阵列,提出了使用此简单模型和更精确的表达式计算的辐射方向图。还显示了在有衰减和无衰减的情况下获得的结果之间的比较。

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