Dynamics of Interaction between the Road Surface and Vehicle's Wheel in Fibre-optic System for Automatic Weighing in Motion of Transport
Vehicle's weight-in-motion (WIM) is one of important research areas of transport telematics. It is necessary for development of intelligent systems as well as for control of the legal use of road, and road pavement protection against overloading and distortion. The fibre-optic sensors (FOS) obtain the popularity nowadays for WIM applications. Experimental WIM system consists of six fibre-optic pressure sensors, temperature sensor, and induction loop, it produces the data for weight estimation in comparison with the results of measurement of reference vehicle by certified static WIM station. Presented research responds the attempts to suppose of odd component of FOS signal in the form of non-linear combination of the derivatives of even component that allows formulating the mathematical model of the dynamics of “wheel-road” system. The interpretation and estimation of coefficients of supposed model allows compensating for longitudinal and transverse oscillations of vehicle that leads to a reduction of axle's weight measurements errors in motion.
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Availability:
- Find a library where document is available. Order URL: http://worldcat.org/issn/18777058
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Supplemental Notes:
- © 2017 Alexander Grakovski and Alexey Pilipovecs. Published by Elsevier Ltd.
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Authors:
- Grakovski, Alexander
- Pilipovecs, Alexey
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Conference:
- 16th International Scientific Conference Reliability and Statistics in Transportation and Communication (RelStat-2016)
- Location: Riga , Latvia
- Date: 2016-10-19 to 2016-10-22
- Publication Date: 2017
Language
- English
Media Info
- Media Type: Digital/other
- Features: Figures; Photos; References; Tables;
- Pagination: pp 5-12
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Serial:
- Procedia Engineering
- Volume: 178
- Issue Number: 0
- Publisher: Elsevier
- ISSN: 1877-7058
- Serial URL: http://www.sciencedirect.com/science/journal/18777058
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Publication flags:
Open Access (libre)
Subject/Index Terms
- TRT Terms: Errors; Fiber optics; Overweight loads; Pavement performance; Rolling contact; Sensors; Telematics; Weigh in motion
- Subject Areas: Data and Information Technology; Highways; Maintenance and Preservation; Vehicles and Equipment;
Filing Info
- Accession Number: 01633096
- Record Type: Publication
- Files: TRIS
- Created Date: Mar 9 2017 1:51PM