利用扫描 LDV 进行基于极坐标的导波波束成形成像

Hyeonwoo Nam, J. Jeon, G. Park, Chan-Yik Park
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引用次数: 0

摘要

本文提出了一种利用导波、基于极坐标的波束成形成像和滤波技术有效检测板状结构损伤的技术。该技术使用激光多普勒测振仪和扫描镜倾斜装置进行超声波成像,由安装的压电换能器提供单频激励。在极坐标中实施频率-波数域滤波和方向滤波,通过去除任何入射波成分来有效检测损坏反射波。滤波后的波形通过圆阵列传感系统的局域激光扫描,使用延迟和波束成形算法进行处理。基于极坐标的激光扫描系统无需在频率-波数域滤波和方向滤波中进行坐标变换,从而提高了损伤检测能力,缩短了处理时间。最后,通过对存在不同类型损伤的复合板和铝板进行实验,对所提出的技术进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polar coordinate-based guided wave beamforming imaging using scanning LDV
In this paper, we propose a technique for efficiently detecting damage in plate-like structures using guided waves, polar coordinate-based beamforming imaging, and filtering techniques. The proposed technique uses a laser Doppler vibrometer and a scanning mirror-tilting device for ultrasonic wave imaging, with single-frequency excitation provided by a mounted piezoelectric transducer. Frequency-wavenumber domain filtering and directional filtering are implemented in polar coordinates for efficient detection of damage-reflected waves by removing any incident wave components. The filtered waves are then processed using a delay-and-sum beamforming algorithm within local-area laser scanning through a circular array sensing system. The polar coordinate-based laser scanning system improves the damage detection capability and processing time by removing the need for coordinate transformation in frequency-wavenumber domain filtering and directional filtering. Finally, the proposed technique is validated through experiments on composite and aluminum plates with various types of damage, where it demonstrates improved accuracy and speed when estimating the exact damage location.
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