首页> 外文期刊>Entropy >The Maximum Entropy Method in Ultrasonic Non-Destructive Testing—Increasing the Resolution, Image Noise Reduction and Echo Acquisition Rate
【24h】

The Maximum Entropy Method in Ultrasonic Non-Destructive Testing—Increasing the Resolution, Image Noise Reduction and Echo Acquisition Rate

机译:超声无损检测中的最大熵方法—提高分辨率,降低图像噪声和提高回波采集率

获取原文
       

摘要

The use of linear methods, for example, the Combined Synthetic Aperture Focusing Technique (C–SAFT), does not allow one to obtain images with high resolution and low noise, especially structural noise in all cases. Non-linear methods should improve the quality of the reconstructed image. Several examples of the application of the maximum entropy (ME) method for ultrasonic echo processing in order to reconstruct the image of reflectors with Rayleigh super-resolution and a high signal-to-noise ratio are considered in the article. The use of the complex phase-shifted Barker code signal as a probe pulse and the compression of measured echoes by the ME method made it possible to increase the signal-to-noise ratio by more than 20 dB for the image of a flat-bottom hole with a diameter of 1 mm in a model experiment. A modification of the ME method for restoring the reflector image by the time-of-flight diffraction (TOFD) method is considered, taking into account the change of the echo signal shape, depending on the depth of the reflector. Using the ME method, 2.5D-images of models of dangling cracks in a pipeline with a diameter of 800 mm were obtained, which make it possible to determine their dimensions. In the object with structural noise, using the ME method, it was possible to increase the signal-to-noise ratio of the reflector image by more than 12 dB. To accelerate the acquisition of echoes in the dual scan mode, it is proposed to use code division multiple access (CDMA) technology based on simultaneous emission by all elements of the array of pseudo-orthogonal signals. The model experiment showed the effectiveness of applying the ME method.
机译:使用线性方法(例如,合成孔径聚焦组合技术(C–SAFT))无法在所有情况下获得高分辨率和低噪声的图像,尤其是结构噪声。非线性方法应提高重建图像的质量。本文考虑了最大熵(ME)方法在超声回波处理中的应用实例,以重建具有瑞利超分辨率和高信噪比的反射器图像。通过使用复杂的相移巴克码信号作为探测脉冲以及通过ME方法压缩测量的回波,可以将平底图像的信噪比提高20 dB以上在模型实验中直径为1毫米的孔。考虑了根据飞行时间衍射(TOFD)方法恢复反射镜图像的ME方法的一种改进,其中考虑了取决于反射镜深度的回波信号形状的变化。使用ME方法,获得了直径为800 mm的管道中悬空裂纹模型的2.5D图像,这使得确定其尺寸成为可能。在具有结构噪声的物体中,使用ME方法可以将反射镜图像的信噪比提高12 dB以上。为了加快在双扫描模式下回波的获取,提出了使用基于伪正交信号阵列的所有元素同时发射的码分多址(CDMA)技术。模型实验表明了应用ME方法的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号