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Buried Object Detection Method Using Optimum Frequency Range in Extremely Shallow Underground

机译:极浅地下最佳频率范围的地下物体检测方法

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摘要

We propose a new detection method for buried objects using the optimum frequency response range of the corresponding vibration velocity. Flat speakers and a scanning laser Doppler vibrometer (SLDV) are used for noncontact acoustic imaging in the extremely shallow underground. The exploration depth depends on the sound pressure, but it is usually less than 10cm. Styrofoam, wood (silver fir), and acrylic boards of the same size, different size styrofoam boards, a hollow toy duck, a hollow plastic container, a plastic container filled with sand, a hollow steel can and an unglazed pot are used as buried objects which are buried in sand to about 2 cm depth. The imaging procedure of buried objects using the optimum frequency range is given below. First, the standardized difference from the average vibration velocity is calculated for all scan points. Next, using this result, underground images are made using a constant frequency width to search for the frequency response range of the buried object. After choosing an approximate frequency response range, the difference between the average vibration velocity for all points and that for several points that showed a clear response is calculated for the final confirmation of the optimum frequency range. Using this optimum frequency range, we can obtain the clearest image of the buried object. From the experimental results, we confirmed the effectiveness of our proposed method. In particular, a clear image of the buried object was obtained when the SLDV image was unclear.
机译:我们提出了一种利用相应振动速度的最佳频率响应范围对埋藏物体进行检测的新方法。平板扬声器和扫描激光多普勒振动计(SLDV)用于在非常浅的地下进行非接触声成像。探测深度取决于声压,但通常小于10厘米。将相同尺寸的聚苯乙烯泡沫塑料,木材(银杉木)和丙烯酸板,不同尺寸的聚苯乙烯泡沫塑料板,空心玩具鸭,空心塑料容器,装有沙子的塑料容器,空心钢罐和未上釉的花盆用作掩埋埋在沙子中约2厘米深的物体。下面给出了使用最佳频率范围的掩埋物体的成像过程。首先,为所有扫描点计算平均振动速度的标准差。接下来,使用该结果,使用恒定的频率宽度制作地下图像,以搜索掩埋物体的频率响应范围。选择近似的频率响应范围后,将计算所有点的平均振动速度与显示清晰响应的几个点的平均振动速度之间的差,以最终确定最佳频率范围。使用此最佳频率范围,我们可以获得掩埋物体的最清晰图像。从实验结果,我们证实了我们提出的方法的有效性。特别地,当SLDV图像不清楚时,获得了掩埋物体的清晰图像。

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  • 来源
    《Japanese journal of applied physics》 |2011年第7issue2期|p.07HC18.1-07HC18.7|共7页
  • 作者

    Tsuneyoshi Sugimoto; Touma Abe;

  • 作者单位

    Department of Electronics and Information, Faculty of Engineering, Join University of Yokohama, Yokohama 225-8503, Japan;

    Inspection Division, IHI Inspection & Instrumentation Co., Ltd., Shinagawa, Tokyo 140-0014, Japan;

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  • 正文语种 eng
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