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Model Assisted Probability of Detection for Guided Wave Imaging Structural Health Monitoring

机译:模型辅助检测引导波成像结构健康监测概率

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Guided Wave based Structural Health Monitoring has been studied in many laboratories in the last 20 years. In order to ensure industry adoption of this technology, a systematic performance demonstration of such systems is necessary. However, the cost of computing a Probability of Detection (POD) from experimental data is much higher in SHM than in classical nondestructive evaluation. This work presents the computation of a POD metric of a GW-SHM system, using a Model-Assisted POD (MAPOD) approach. The use of simulation enables in particular a large coverage of possible configurations and the creation of independent datasets. The simplistic studied application case is the inspection of an aluminum panel instrumented by 8 piezoelectric transducers for Guided Wave Imaging (GWT). The defect is a circular through hole. The POD is computed as a function of the defect size, taking into account the following variabilities: defect position and morphology, temperature of inspection, degradation of the sensors and measurement noise. In order to quickly compute the POD for various input parameter distributions, a meta-model of the configuration is built from simulation results obtained with the CIVA software.
机译:在过去的20年里,在许多实验室中研究了基于波的结构健康监测。为了确保行业采用这项技术,需要进行系统的性能展示这些系统。然而,从实验数据计算检测概率(POD)的成本比古典无损评估在SHM中高得多。该工作介绍了使用模型辅助POD(Mapod)方法的GW-SHM系统的POD度量。仿真的使用尤其可以对可能的配置和创建独立数据集的覆盖范围。简单的研究施工案例是检查由8个压电传感器仪表的铝板,用于引导波成像(GWT)。缺陷是圆形孔。考虑到以下变量:缺陷位置和形态,检查,传感器的降低和测量噪声的缺陷位置和形态,对传感器的温度和测量噪声的缺陷位置和形态。为了快速计算各种输入参数分布的POD,从Civa软件获得的仿真结果构建了配置的元模型。

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