Abstract Quasi-static analysis of flexible pavements based on predicted frequencies using Fast Fourier Transform and Artificial Neural Network
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Quasi-static analysis of flexible pavements based on predicted frequencies using Fast Fourier Transform and Artificial Neural Network

机译:快速傅里叶变换和人工神经网络基于预测频率的柔性路面准静态分析

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AbstractNew trend in design of flexible pavements is mechanistic-empirical approach. The first step for applying this method is analyzing the pavement structure for several times and computation of critical stresses and strains, which needs a fast analysis method with good accuracy. This paper aims to introduce a new rapid pavement analysis approach, which can consider the history of loading and rate effect. To this end, 1200 flexible pavement sections were analyzed, and equivalent frequencies (EF) were calculated using Fast Fourier Transform (FFT) method at various depths of asphalt layer. A nonlinear regression equation has been presented for determining EF at different depths of asphalt layer. For more accurate predicting of EF at low frequencies, a feed-forward Artificial Neural Network (ANN) was employed, which allows accurate prediction of EF. The frequencies obtained by the proposed regression equation and ANN were compared with frequencies observed in Virginia Smart Road project, and it was found that there is a good agreement between observed and predicted frequencies. Comparison of quasi-static analysis of flexible pavements by frequencies obtained using FFT method and full dynamic analysis by 3D-Move program approves that the critical responses of pavement computed by proposed quasi-static analysis approach are comparable to critical responses computed using full dynamic analysis.
机译: 摘要 柔性路面设计的新趋势是机械经验方法。应用此方法的第一步是对路面结构进行多次分析并计算临界应力和应变,这需要一种具有良好准确性的快速分析方法。本文旨在介绍一种新的快速路面分析方法,该方法可以考虑荷载的历史和速率效应。为此,分析了1200个柔性路面部分,并使用快速傅里叶变换(FFT)方法在沥青层的各个深度计算了等效频率(EF)。提出了用于确定沥青层不同深度处的EF的非线性回归方程。为了更准确地预测低频EF,采用了前馈人工神经网络(ANN),可以对EF进行准确预测。通过提出的回归方程和人工神经网络获得的频率与在弗吉尼亚智能路项目中观察到的频率进行了比较,发现观察到的频率与预测的频率之间有很好的一致性。通过使用FFT方法获得的频率对柔性路面的准静态分析与通过3D-Move程序进行全动态分析的比较表明,拟采用的准静态分析方法计算的路面临界响应与使用全动态分析计算的临界响应相当。

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