Updating Weigh-in-Motion (WIM) Spectra in PaveM [PDF]
Weigh-in-motion (WIM) devices measure and record highway vehicle axle loads. The data they collect include axle loads and spacing, vehicle classification and gross weights, and travel speed. These WIM data are used for pavement design, management, and performance studies.
Kim, Changmo +3 more
openaire +4 more sources
Empirical distributions of traffic loads from one year of weigh-in-motion data [PDF]
In the state-of-the-art of structural engineering the actions for design or assessment of bridges should derive from a probabilistic (i.e., frequentist) characterization of the loads.
Iunio Iervolino +5 more
doaj +2 more sources
Assessing Vehicle Wandering Effects on the Accuracy of Weigh-in-Motion Measurement Based on In-Pavement Fiber Bragg Sensors through a Hybrid Sensor-Camera System [PDF]
Weigh-in-motion (WIM) systems are essential for efficient transportation and monitoring parameters such as vehicle number, speed, and weight to ensure regulatory compliance and enhance road safety.
Xinyi Yang +4 more
doaj +2 more sources
Direct Enforcement in Belgium with High Speed Weigh-in-Motion (HS-WIM)
Interest for high speed weigh-in-motion of vehicles, or HS-WIM keeps growing worldwide. The main purpose of such systems is checking weights of vehicles in a self manner, in order to impose a penalty to overloaded ones. Overloaded vehicles may cause several problems such as safety issues, road deterioration or unfair competition. Walloon Public Service
Warscotte, Loïc +3 more
exaly +2 more sources
Weigh-in-Motion System Based on an Improved Kalman and LSTM-Attention Algorithm [PDF]
A weigh-in-motion (WIM) system continuously and automatically detects an object’s weight during transmission. The WIM system is used widely in logistics and industry due to increasing labor and time costs.
Baidi Shi +5 more
doaj +2 more sources
Weigh-in-motion (WIM) sensor response model using pavement stress and deflection [PDF]
Abstract This article aims at modeling the WIM sensor electrical behavior to provide a better understanding of the mechanical and electrical proprieties of piezoelectric sensors. The model is considered in the frequency domain, supposing any sinusoidal solicitation with constant frequency or any other type of solicitation.
Jean-Michel Simonin +2 more
exaly +3 more sources
Train Classification Using a Weigh-in-Motion System and Associated Algorithms to Determine Fatigue Loads [PDF]
This paper presents a methodology for classifying train passages into different types with a weigh-in-motion (WIM) system to allow the calibration of railway fatigue load models and identify individual vehicles from the measurements for the continuous ...
Mariia Zakharenko +2 more
doaj +2 more sources
Improving truck safety: Potential of weigh-in-motion technology
Trucks exceeding the legal mass limits increase the risk of traffic accidents and damage to the infrastructure. They also result in unfair competition between transport modes and companies.
Bernard Jacob +1 more
doaj +3 more sources
The current preselection vehicle weighing control system in Poland is not functional enough in many respects to effectively identify and eliminate overloaded heavy vehicles travelling on national roads.
Ślusarczyk Beata +2 more
doaj +2 more sources
Identifying damage on a bridge using rotation-based Bridge Weigh-In-Motion [PDF]
Bridge Weigh-in-Motion (B-WIM) systems use the bridge response under a traversing vehicle to estimate its axle weights. The information obtained from B-WIM systems has been used for a wide range of applications such as pre-selection for weight ...
EJ OBrien (21909740) +4 more
core +6 more sources

