AbstractTrucks 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. It is therefore important to ensure truck compliance to weight regulation. New technologies are being developed for more efficient overload screening and enforcement. Weigh-in-Motion (WIM) technologies allow trucks to be weighed in the traffic flow, without any disruption to operations. Much progress has been made recently to improve and implement WIM systems, which can contribute to safer and more efficient operation of trucks
SPR 304-101This study examines the incidence of overweight trucks and its relation to regulatory enf...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
AbstractTrucks exceeding the legal mass limits increase the risk of traffic accidents and damage to ...
Traffic accidents involving heavy trucks have social and economic effects on society. However, littl...
Traffic accidents involving heavy trucks have social and economic effects on society. However, littl...
AbstractVehicle overloading has been identified as one of the major contributors to road pavement da...
University Transportation Centers Program2020PDFTech ReportNassif, HaniOzbay, KaanNa, ChaekukLou, Pe...
Vehicle overloading has been identified as one of the major contributors to road pavement damage in ...
AbstractThis paper presents a study carried out with extensive weigh-in-motion (WIM) data collected ...
High-speed weighing systems are considered a potential tool to restrain overloaded vehicles traffic,...
Overloading and Speeding have been recognized to be both a safety as well as a cost concern.Through ...
The phenomenon of vehicle overloading is not new and has been discussed in relation to the adverse e...
In this paper we evaluate the fields of application and present the main benefits of a Weigh-In-Moti...
007624371995PDFResearch PaperVehicle characteristicsVehicle weightAxle loadsTraffic law enforcementS...
SPR 304-101This study examines the incidence of overweight trucks and its relation to regulatory enf...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
AbstractTrucks exceeding the legal mass limits increase the risk of traffic accidents and damage to ...
Traffic accidents involving heavy trucks have social and economic effects on society. However, littl...
Traffic accidents involving heavy trucks have social and economic effects on society. However, littl...
AbstractVehicle overloading has been identified as one of the major contributors to road pavement da...
University Transportation Centers Program2020PDFTech ReportNassif, HaniOzbay, KaanNa, ChaekukLou, Pe...
Vehicle overloading has been identified as one of the major contributors to road pavement damage in ...
AbstractThis paper presents a study carried out with extensive weigh-in-motion (WIM) data collected ...
High-speed weighing systems are considered a potential tool to restrain overloaded vehicles traffic,...
Overloading and Speeding have been recognized to be both a safety as well as a cost concern.Through ...
The phenomenon of vehicle overloading is not new and has been discussed in relation to the adverse e...
In this paper we evaluate the fields of application and present the main benefits of a Weigh-In-Moti...
007624371995PDFResearch PaperVehicle characteristicsVehicle weightAxle loadsTraffic law enforcementS...
SPR 304-101This study examines the incidence of overweight trucks and its relation to regulatory enf...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...