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The feasibility of synthetic aperture guided wave imaging to a mobile sensor platform

机译:合成孔径导波成像在移动传感器平台上的可行性

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摘要

A mobile sensor platform that features a non-contact guided wave piezoelectric composite transducer payload for rapid inspection of large plate-like structures is presented. The paper begins with results from an experimental B-scan of an aluminium plate. Since the current guided wave payload uses 30 mm square transducers (9λ wide) the system provides fairly course lateral resolution that in this case is approximately equal to the width of the transducer. The paper goes on to use simulation tools to examine the practical SNR and resolution limits of this approach. When using narrow aperture transducers that provide a wide field of view it is important to apply the synthetic aperture focusing technique to maximise image resolution. It is shown that resolution is a function of both transducer aperture and robot positional uncertainty since the effectiveness of synthetic aperture techniques is directly dependent on positional accuracy. It is also shown that since systems utilising larger aperture transducers with a narrow field of view are not as dependent on synthetic array reconstruction, they can outperform systems with narrower transducers in cases where there is relatively large positional uncertainty. Lastly the resolution and relative SNR are modelled as functions of transducer aperture for the cases of B-scan and synthetic array processing.
机译:提出了一种移动传感器平台,该平台具有用于快速检查大型板状结构的非接触式导波压电复合传感器有效载荷。本文从铝板的实验性B扫描结果开始。由于当前的引导波有效载荷使用30毫米见方的换能器(宽9λ),因此该系统可提供相当大的横向分辨率,在这种情况下,该分辨率近似等于换能器的宽度。本文继续使用仿真工具来检查这种方法的实际SNR和分辨率极限。当使用提供宽视场的窄孔径传感器时,重要的是应用合成孔径聚焦技术以最大化图像分辨率。结果表明,分辨率是传感器孔径和机器人位置不确定性的函数,因为合成孔径技术的有效性直接取决于位置精度。还显示出,由于利用具有狭窄视场的较大孔径传感器的系统不那么依赖于合成阵列重建,因此在位置不确定性相对较大的情况下,它们可以胜过具有较窄传感器的系统。最后,针对B扫描和合成阵列处理的情况,将分辨率和相对SNR建模为换能器孔径的函数。

著录项

  • 来源
    《NDT & E international》 |2013年第9期|10-17|共8页
  • 作者单位

    Centre for Ultrasonic Engineering, University of Strathclyde, 204 George Street, Glasgow G1 5PJ, UK;

    Centre for Ultrasonic Engineering, University of Strathclyde, 204 George Street, Glasgow G1 5PJ, UK;

    Centre for Ultrasonic Engineering, University of Strathclyde, 204 George Street, Glasgow G1 5PJ, UK;

  • 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

    Automated; Ultrasonic; Guided wave; SAFT;

    机译:自动化;超声波;导波;安全贸易协定;

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