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Suppression of surface waves with the ensemble empirical mode decomposition to enhance ultrasound images of reinforced concrete elements

机译:用集合经验模式分解抑制表面波,以增强钢筋混凝土元件的超声图像

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The surface waves were suppressed to enhance ultrasound images of reinforced concrete elements with no hard assumption about the surface waves' time-domain characteristics. The surface waves yield artifacts that degrade image quality and generally hinder the recognition of shallow inclusions and defects. The Ensemble Empirical Mode Decomposition (EEMD) was used to adaptively decompose the signals into their Intrinsic Mode Functions (IMFs). The signals were acquired in a concrete element with rebars at 54, 74, and 94 mm from the concrete element's surface. The surface waves were generally decomposed to their own IMFs. The IMFs which comprised noise signal components, including the surface waves, were labeled as such based on empirical data. The remaining IMFs were used to construct new signals that generally comprised signal components from reflection at a rebar and the backwall and other low-frequency phenomena. The new signals yielded images in which the surface waves artifacts were not present and the rebars were represented correctly. The Synthetic Aperture Focusing Technique was used for imaging. The method has two main drawbacks. The EEMD performs according to parameters which require extensive ad hoc testing to be selected. The IMFs comprising the surface waves suffered from mode mixing with the backwall at times and hence the backwall was not fully represented in the new images.
机译:抑制了表面波以增强钢筋混凝土元件的超声图像,对于表面波的时域特性没有难以假设。表面波产生伪像,其降低图像质量并通常阻碍识别浅包含的夹杂物和缺陷。集合经验模式分解(EEMD)用于自适应地将信号分解为其内部模式函数(IMF)。在具有54,74和94mm的混凝土元件中获取信号,距离混凝土元件的表面。表面波通常被分解为自己的IMF。包括包括表面波的噪声信号分量的IMF是基于经验数据标记的。剩余的IMF用于构造通常包括来自钢筋的反射的信号分量和后壁和其他低频现象的新信号。新的信号产生了不存在表面波伪像的图像,并且正确地表示钢筋。合成孔径聚焦技术用于成像。该方法具有两个主要缺点。 EEMD根据需要选择广泛的AD HoC测试的参数执行。包括表面波的IMF从次数遇到与后壁的模式混合,因此反壁未在新图像中完全表示。

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