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A Modified Synthetic Aperture Focusing Technique (SAFT) by the Hilbert-Huang Transform (HHT)

机译:由Hilbert-Huang变换(HHT)改进的合成孔径聚焦技术(SAFT)

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Combing the stress wave signals with Synthetic Aperture Focusing Technique (SAFT) to inspect and image the interior defect of concrete structural has shown its feasibility by some researchers. However, some bright zones displayed in the image plot are not corresponding to the Rayleigh waves and reflection signals from the bottom surface of the structural component or the embedded defect. This type of image is treated as a fictitious defect and will affect the judgment of nondestructive evaluation. Since the theorem of SAFT is based on the superposition of all the amplitudes of receiving signal at the flight time corresponding to each image cell in the domain of inspection, the irregular waveform in the time domain can generate the abovementioned fictitious defects. In this paper, the synthetic aperture focusing technique is modified by using the frequency, time and energy information from the Hilbert-Huang Transform (HHT) method to improve its image quality. It is found that the reflected signal from defect will be located in a certain band of frequency and the energy level at the time corresponding to a defect is relatively high. Numerical simulation results reveal this feature of HHT method can filter out the fictitious image displayed in the previous method and provides a clearer and sharper image of real defect.
机译:用合成孔径聚焦技术(SAFT)梳理应力波信号检查和图像混凝土结构的内部缺陷显示了一些研究人员的可行性。然而,在图像图中显示的一些明亮区域不对应于来自结构部件的底表面的瑞利波和反射信号或嵌入的缺陷。这种类型的图像被视为虚拟缺陷,并将影响非破坏性评估的判断。由于SAFT的定理基于对对应于检查领域的每个图像小区的飞行时间的所有接收信号的叠加,因此时域中的不规则波形可以产生上述的虚拟缺陷。在本文中,通过使用来自Hilbert-Huang变换(HHT)方法的频率,时间和能量信息来修改合成孔径聚焦技术,以提高其图像质量。结果发现,来自缺陷的反射信号将位于一定的频带中,并且对应于缺陷的时间的能量水平相对较高。数值模拟结果揭示了HHT方法的此特征可以过滤滤除先前方法中显示的虚拟图像,并提供更清晰和更清晰的实际缺陷图像。

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