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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Application of a matched filter approach for finite aperture transducers for the synthetic aperture imaging of defects
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Application of a matched filter approach for finite aperture transducers for the synthetic aperture imaging of defects

机译:匹配滤波器方法在有限孔径换能器对缺陷的合成孔径成像中的应用

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The suitability of the synthetic aperture imaging of defects using a matched filter approach on finite aperture transducers was investigated. The first part of the study involved the use a finite-difference time-domain (FDTD) algorithm to simulate the phased array ultrasonic wave propagation in an aluminum block and its interaction with side-drilled hole-like defects. B-scans were generated using the FDTD method for three active aperture transducer configurations of the phased array (a) single element and (b) 16-element linear scan mode, and (c) 16-element steering mode. A matched filter algorithm (MFA) was developed using the delay laws and the spatial impulse response of a finite size rectangular phased array transducer. The conventional synthetic aperture focusing technique (SAFT) algorithm and the MFA were independently applied on the FDTD signals simulated with the probe operating at a center frequency of 5 MHz and the processed B-scans were compared. The second part of the study investigated the capability of the MFA approach to improve the SNR. Gaussian white noise was added to the FDTD generated defect signals. The noisy B-scans were then processed using the SAFT and the MFA and the improvements in the SNR were estimated. The third part of the study investigated the application of the MFA to image and size surface-crack-like defects in pipe specimens obtained using a 45u000b0; steered beam from a phased array probe. These studies confirm that MFA is an alternative to SAFT with little additional computational burden. It can also be applied blindly, like SAFT, to effect synthetic focusing with distinct advantages in treating finite transducer effects, and in handling steered beam inspections. Finally, limitations of the MFA in dealing with larger-sized transducers are discussed.
机译:研究了在有限孔径换能器上使用匹配滤波器方法对缺陷进行合成孔径成像的适用性。研究的第一部分涉及使用有限差分时域(FDTD)算法来模拟相控阵超声波在铝块中的传播及其与侧钻孔状缺陷的相互作用。 B相扫描是使用FDTD方法生成的,用于相控阵的三个有源孔径换能器配置(a)单元素和(b)16元素线性扫描模式,以及(c)16元素操纵模式。使用延迟定律和有限尺寸矩形相控阵换能器的空间脉冲响应,开发了匹配滤波器算法(MFA)。将传统的合成孔径聚焦技术(SAFT)算法和MFA分别应用到以5 MHz中心频率工作的探头模拟的FDTD信号上,并对经过处理的B扫描进行了比较。研究的第二部分研究了MFA方法改善SNR的能力。高斯白噪声被添加到FDTD生成的缺陷信号中。然后使用SAFT和MFA处理嘈杂的B扫描,并评估SNR的提高。研究的第三部分研究了MFA在使用45u000b0获得的管道样品中对图像和表面裂纹样缺陷的成像和定尺寸的应用。来自相控阵探头的操纵光束。这些研究证实,MFA是SAFT的替代产品,几乎没有额外的计算负担。它也可以像SAFT一样盲目地应用于合成聚焦,在处理有限的换能器效果和处理转向光束检查方面具有明显的优势。最后,讨论了MFA在处理大型换能器时的局限性。

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