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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Blind multiridge detection for automatic nondestructive testing using ultrasonic signals
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Blind multiridge detection for automatic nondestructive testing using ultrasonic signals

机译:盲多脊柱检测,使用超声波信号进行自动无损检测

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摘要

Ultrasonic imaging has been a significant means for nondestructive testing (NDT). Recently the NDT techniques via the ultrasonic instrumentation have shown the striking capability of the quality control for the material fabrication industry. To the best of our knowledge, all existing signal processing methods require either the a priori information of the ultrasonic signature signals or the manual segmentation operation to achieve the reliable parameters that characterize the corresponding mechanical properties. In this paper, we first provide a general mathematical model for the ultrasonic signals collected by the pulse-echo sensors, then design a totally blind novel signal processing NDT technique relying on neither a prior/ signal information nor any manual effort. Based on the automatic selection of optimal frame sizes using a proposed new criterion in our scheme, the signature signal can be blindly extracted for further robust multiridge detection. The detected ridge information can be used to estimate the transmission and attenuation coefficients associated with any arbitrary material sample for the fabrication quality control
机译:超声成像已成为无损检测(NDT)的重要手段。最近,通过超声仪器的无损检测技术已经显示出了材料制造行业质量控制的惊人能力。据我们所知,所有现有的信号处理方法都需要超声特征信号的先验信息或手动分割操作,以实现表征相应机械性能的可靠参数。在本文中,我们首先为脉冲回波传感器收集的超声信号提供一个通用的数学模型,然后设计一种既不依赖先验/信号信息也不依赖人工的全盲新型信号处理无损检测技术。基于在我们的方案中使用建议的新标准自动选择最佳帧大小的方法,可以盲目提取签名信号,以进一步进行稳健的多脊波检测。检测到的脊信息可用于估计与任意材料样本相关的透射系数和衰减系数,以进行制造质量控制

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