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A signal processing methodology for assessing the performance of ASTM standard test methods for GPR systems

机译:评估GPR系统ASTM标准测试方法性能的信号处理方法

摘要

Ground penetrating radar (GPR) is one of the most promising and effective non-destructive testing techniques (NDTs), particularly for the interpretation of the soil properties. Within the framework of international Agencies dealing with the standardization of NDTs, the American Society for Testing and Materials (ASTM) has published several standard test methods related to GPR, none of which is focused on a detailed analysis of the system performance, particularly in terms of precision and bias of the testing variable under consideration. This work proposes a GPR signal processing methodology, calibrated and validated on the basis of a consistent amount of data collected by means of laboratory-scale tests, to assess the performance of the above standard test methods for GPR systems. The (theoretical) expressions of the bias and variance of the estimation error are here investigated by a reduced Taylor's expansion up to the second order. Therefore, a closed form expression for theoretically tuning the optimal threshold according to a fixed target value of the GPR signal stability is proposed. Finally, the study is extended to GPR systems with different antenna frequencies to analyze the specific relationship between the frequency of investigation, the optimal thresholds, and the signal stability.
机译:探地雷达(GPR)是最有前途和最有效的无损检测技术(NDT)之一,尤其是在解释土壤特性方面。在涉及NDT标准化的国际机构的框架内,美国测试和材料学会(ASTM)发布了几种与GPR相关的标准测试方法,这些方法均不着重于对系统性能的详细分析,尤其是在系统性能方面。所考虑的测试变量的精度和偏差。这项工作提出了一种GPR信号处理方法,该方法在通过实验室规模测试收集的一致数据量的基础上进行了校准和验证,以评估上述用于GPR系统的标准测试方法的性能。估计误差的偏差和方差的(理论)表达式在此通过减少的泰勒展开展开直至二阶。因此,提出了一种封闭形式的表达式,用于根据GPR信号稳定性的固定目标值在理论上调整最佳阈值。最后,该研究扩展到具有不同天线频率的GPR系统,以分析研究频率,最佳阈值和信号稳定性之间的特定关系。

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