DocumentCode :
3602015
Title :
A Sensing-Information-Statistics Integrated Model to Predict Asphalt Material Density With Intelligent Compaction System
Author :
Qinwu Xu ; Chang, George K. ; Gallivan, Victor Lee
Author_Institution :
Transtec Group, Inc., Austin, TX, USA
Volume :
20
Issue :
6
fYear :
2015
Firstpage :
3204
Lastpage :
3211
Abstract :
Intelligent compaction (IC) is an innovative technology that has been used in road and earthwork construction. However, the current IC technology is unable to measure material density directly as the acceptance criteria by owner agencies. To tackle this issue, the authors have developed a sensing-information-statistics integrated model to predict asphalt material density for 100% coverage of construction area. Instrumented with the satellite navigation system, accelerometer, and infrared sensors, IC rollers measure mechanical responses of roller drums and material temperature in real time. With these measurements, panel data models-including both the multivariate linear and nonlinear models-were developed to predict asphalt material density. A reasoning model was proposed to estimate idiosyncratic errors due to uncertainty of measurements. An information management software was developed to analyze IC measurements with univariate statistics and geo-statistical models. Statistical models were implemented and validated with data collected from four paving projects in the US. Results indicate that the multivariate nonlinear panel data model can predict asphalt material density at the project level for 100% coverage of the construction zone within reasonable accuracy. Therefore, this model may serve as an enhanced quality control and acceptance tool for asphalt pavement construction to improve consistency and uniformity and long-term performances.
Keywords :
accelerometers; asphalt; compaction; infrared detectors; quality control; road building; roads; satellite navigation; statistical analysis; structural engineering computing; IC measurements; IC rollers; IC technology; US; accelerometer; acceptance criteria; asphalt material density prediction; asphalt pavement construction; earthwork construction; geo-statistical model; idiosyncratic errors; information management software; infrared sensors; innovative technology; intelligent compaction system; material temperature; mechanical response measurement; multivariate linear model; multivariate nonlinear panel data model; panel data model; paving projects; quality control; reasoning model; road construction; roller drums; satellite navigation system; sensing-information-statistics integrated model; univariate statistics; Asphalt; Compaction; Data models; Integrated circuit modeling; Predictive models; Temperature measurement; Intelligent system; intelligent system; material density; multivariate; nonlinear model; panel data; prediction;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2015.2426145
Filename :
7094299
Link To Document :
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