Evaluating Weigh-In-Motion Sensing Technology for Traffic Data Collection.

Author(s)
Zhang, L. Hass, C. & Tighe, S.
Year
Abstract

The significance of highway preservation and budget allocation constraints have motivated development of sensing technologies for collecting accurate and detailed traffic information. While static scales had been used widely to collect vehicle weights, Weigh-In-Motion (WIM) systems have been focused on utilizing state-of-the-art technologies to collect various types of traffic data. These systems continuously collect data, including gross vehicle weights (GVW), vehicle speeds, axle loads, and vehicle classification, as vehicles travel over a set of sensors without interruption of traffic flows. Many up-to-date pavement design protocols require traffic input, and in particular the new AASHTO Mechanistic-Empirical Pavement Design Guide (MEPDG) requires axle load, axle spacing, and Average Annual Daily Truck Traffic (AADTT) obtained from WIM. This paper identifies different WIM sensing technologies, with particular emphasis on piezoelectric, bending plate, load cell, and quartz piezoelectric sensor systems. It qualitatively compares the advantages and disadvantages of these WIM systems, with respect to cost, accuracy, applicability, reliability and sensitivity. For the covering abstarct of this conference see ITRD number E216511.

Request publication

2 + 3 =
Solve this simple math problem and enter the result. E.g. for 1+3, enter 4.

Publication

Library number
C 42345 (In: C 42299 CD-ROM) /10 /72 / ITRD E216564
Source

In: Transportation : an economic enabler : proceedings of the 2007 annual conference and exhibition of the Transportation Association of Canada TAC, Saskatoon, Saskatchewan, Canada, October 14-17, 2007, 18 p., 11 ref.

Our collection

This publication is one of our other publications, and part of our extensive collection of road safety literature, that also includes the SWOV publications.