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Predictions of defect detection performance of air-coupled ultrasonic rail inspection system

机译:空气耦合超声导轨检查系统的缺陷检测性能预测

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A rail inspection system based on ultrasonic guided waves and non-contact (air-coupled) ultrasound transduction is under development at the University of California at San Diego. The system targets defects in the rail head that are major causes of train accidents. Because of the high acoustic impedance mismatch between air and steel, the non-contact system poses severe challenges and questions on the defect detection performance. This article presents an extensive numerical study, conducted with a local interaction simulation approach, to model the ultrasound propagation and interaction with defects in the proposed system. This model was used to predict the expected detection performance of the system in the presence of various defects of different sizes and positions, and at varying levels of signal-to-noise ratios. When possible, operating variables for the model were chosen consistently with the field test of an experimental prototype that was conducted in 2014. The defect detection performance was evaluated through the computation of receiver operating characteristic curves in terms of probability of detection versus probability of false alarms. The study indicates that despite the challenges of non-contact probing of the rail, quite satisfactory inspection performance can be expected for a variety of defect types, sizes, and positions. Beyond the specific cases examined in this article, this numerical framework can also be used in the future to examine a larger variety of field test conditions.
机译:加利福尼亚大学圣地亚哥分校正在开发一种基于超声导波和非接触式(空气耦合)超声换能的铁路检查系统。该系统的目标是铁路头的缺陷,这些缺陷是火车事故的主要原因。由于空气和钢之间的高声阻抗失配,因此非接触式系统对缺陷检测性能提出了严峻的挑战和问题。本文介绍了一个广泛的数值研究,使用局部相互作用模拟方法进行了建模,以对所建议系统中的超声传播和缺陷相互作用进行建模。该模型用于在存在不同大小和位置的各种缺陷以及信噪比水平不同的情况下,预测系统的预期检测性能。在可能的情况下,与2014年进行的实验原型的现场测试一致地选择模型的操作变量。通过计算接收器操作特性曲线,根据检测概率与错误警报的概率,评估缺陷检测性能。 。研究表明,尽管对钢轨进行非接触式探测存在挑战,但对于各种缺陷类型,尺寸和位置,仍有望获得令人满意的检测性能。除了本文讨论的特定情况外,将来也可以使用此数值框架来检查各种现场测试条件。

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