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Prediction of Frequency for Simulation of Asphalt Mix Fatigue Tests Using MARS and ANN

机译:用火星和安康模拟沥青混合疲劳试验的频率预测

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Fatigue life of asphalt mixes in laboratory tests is commonly determined by applying a sinusoidal or haversine waveform with specific frequency. The pavement structure and loading conditions affect the shape and the frequency of tensile response pulses at the bottom of asphalt layer. This paper introduces two methods for predicting the loading frequency in laboratory asphalt fatigue tests for better simulation of field conditions. Five thousand (5000) four-layered pavement sections were analyzed and stress and strain response pulses in both longitudinal and transverse directions was determined. After fitting the haversine function to the response pulses by the concept of equal-energy pulse, the effective length of the response pulses were determined. Two methods including Multivariate Adaptive Regression Splines (MARS) and Artificial Neural Network (ANN) methods were then employed to predict the effective length (i.e., frequency) of tensile stress and strain pulses in longitudinal and transverse directions based on haversine waveform. It is indicated that, under controlled stress and strain modes, both methods (MARS and ANN) are capable of predicting the frequency of loading in HMA fatigue tests with very good accuracy. The accuracy of ANN method is, however, more than MARS method. It is furthermore shown that the results of the present study can be generalized to sinusoidal waveform by a simple equation.
机译:实验室测试中沥青混合物的疲劳寿命通常通过施加具有特定频率的正弦或Haversine波形来确定。路面结构和装载条件影响沥青层底部的拉伸响应脉冲的形状和频率。本文介绍了两种预测实验室沥青疲劳试验中的装载频率的方法,以便更好地模拟现场条件。分析了五千(5000)四层路面部分,确定了纵向和横向的应力和应变响应脉冲。在通过相等能量脉冲的概念拟合到响应脉冲的返回脉冲之后,确定响应脉冲的有效长度。然后采用包括多变量自适应回归花键(MARS)和人工神经网络(ANN)方法的两种方法来预测基于Haversine波形的纵向和横向中的拉伸应力和应变脉冲的有效长度(即频率)。结果表明,在受控应力和应变模式下,两种方法(MARS和ANN)都能够以非常好的准确度预测HMA疲劳测试中的负载频率。然而,ANN方法的准确性超过火星方法。此外表明,本研究的结果可以通过简单的等式推广到正弦波形。

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