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Investigation of the electrical limit conditions effects in piezoelectric transducer arrays utilized in medical imaging

机译:医学成像中利用压电传感器阵列的电气极限条件研究

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摘要

Crosstalk is considered as an undesirable phenomenon disturbing the electromechanical behavior of the ultrasonic transducer arrays used in medical imaging applications. Indeed, when one element of a transducer array is excited, it generates parasitic voltages and/or displacement fields on the adjacent passive elements. Consequently, these interactions between elements decrease the array's electroacoustic performance, which affects the obtained image quality. To overcome the crosstalk's problem, several research works propose active cancellation techniques. In this case, the correction voltages are determined by considering the array's elements grounded, contrary to the conventional crosstalk's definition which considers the array elements in Open-Circuit. The novelty of this paper is in one hand the study of the electrical limit conditions' effects on the physical behavior of a piezoelectric transducer array radiating in a fluid medium (water). On the other hand, a displacement method is proposed to evaluate the crosstalk level when the array elements are grounded. The limitations of the proposed method are also discussed. For this purpose, a piezoelectric transducer array is firstly modeled using a Two-dimensional Finite Elements Method (FEM), when the array elements are not grounded (open-circuit). Then, the results are compared to those obtained when the neighboring elements are grounded (as in the case of the cross-talk's active cancellation techniques). Finally, measurements are realized on a fabricated transducer array vibrating in air medium and are successfully compared to the results predicted using FEM. (C) 2020 Elsevier Ltd. All rights reserved.
机译:串扰被认为是不希望的现象,扰乱医学成像应用中使用的超声换能器阵列的机电行为。实际上,当换能器阵列的一个元素被激发时,它会在相邻的无源元件上产生寄生电压和/或位移场。因此,元素之间的这些相互作用降低了阵列的电声性能,这影响了所获得的图像质量。为了克服串扰的问题,一些研究工作提出了积极的取消技术。在这种情况下,通过考虑接地的阵列的元件来确定校正电压,与传统的串扰的定义相反,其认为开路中的阵列元件。本文的新颖性在一方面,在流体介质(水)中辐射的压电换能器阵列的物理行为的影响一方面。另一方面,提出了一种位移方法以在阵列元件接地时评估串扰水平。还讨论了所提出的方法的局限性。为此目的,当阵列元件未接地时,首先使用二维有限元方法(FEM)建模压电换能器阵列。然后,将结果与当相邻元件接地时获得的结果进行比较(如在串扰的主动消除技术的情况下)。最后,在空气介质中振动的制造换能器阵列中实现了测量,并成功地与使用FEM预测的结果进行了比较。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Applied Acoustics》 |2020年第12期|107509.1-107509.9|共9页
  • 作者单位

    Hassan II Univ Casablanca Fac Sci Ben Msik Dept Phys Engn & Mech Team Engn & Mat Lab LIMAT Casablanca Morocco;

    Mohammed V Univ Rabat MEAT Mat Energy & Acoust Team Ecole Super Technol Sale Casablanca Morocco;

    Mohammed V Univ Rabat LGCE Lab Genie Civil & Environm Ecole Super Technol Sale Casablanca Morocco;

    Hassan II Univ Casablanca Fac Sci Ben Msik Dept Phys Engn & Mech Team Engn & Mat Lab LIMAT Casablanca Morocco;

    Univ Lille IEMN Lille UPHF Cent Lille ISEN CNRS UMR 8520 Lille France;

    Mohammed V Univ Rabat MEAT Mat Energy & Acoust Team Ecole Super Technol Sale Casablanca Morocco;

    Mohammed V Univ Rabat MEAT Mat Energy & Acoust Team Ecole Super Technol Sale Casablanca Morocco;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Piezoelectric transducer arrays; Displacement measurement; Electrical limit conditions;

    机译:压电换能器阵列;位移测量;电气限制条件;

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