Bridge Weigh in Motion (B-WIM) uses accurate sensing systems to transform an existing bridge into a mechanism to determine actual traffic loading. This information on traffic loading can enable efficient and economical management of transport networks and is becoming a valuable tool for bridge safety assessment. B-WIM can provide site specific traffic loading on deteriorating bridges, which can be used to determine if the reduced capacity is still sufficient to allow the structure to remain operational and minimise unnecessary replacement or rehabilitation costs and prevent disruption to traffic. There have been numerous reports on the accuracy classifications of existing B-WIM installations and some common issues have emerged. This paper d...
Proceedings of the 6th International Conference on Mechanics and Materials in Design, Ponta Delgada,...
A real-time vehicle monitoring is crucial for effective bridge maintenance and traffic management be...
This paper proposes a novel Level I damage-detection technique for short- to medium-span road bridge...
Bridge Weigh in Motion (B-WIM) uses accurate sensing systems to transform an existing bridge into a ...
Bridge weigh-in-motion (WIM) uses existing bridges to find the weights of vehicles that pass overhea...
10th International Conference on Damage Assessment of Structures (DAMAS 2013), Dublin, Ireland, 8-1...
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...
Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle w...
Funder: University of CambridgeAbstract: Bridge Weigh-in-Motion (B-WIM) systems use the bridge respo...
Civil Engineering Research in Ireland, Belfast, UK, 28- 29 August, 2014Many bridges in the world’s ...
Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle w...
Funder: University of CambridgeAbstractBridge Weigh-in-Motion (B-WIM) systems use the bridge respons...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
Monitoring traffic loads is vital for ensuring bridge safety and overload controlling. Bridge weigh-...
Proceedings of the 6th International Conference on Mechanics and Materials in Design, Ponta Delgada,...
A real-time vehicle monitoring is crucial for effective bridge maintenance and traffic management be...
This paper proposes a novel Level I damage-detection technique for short- to medium-span road bridge...
Bridge Weigh in Motion (B-WIM) uses accurate sensing systems to transform an existing bridge into a ...
Bridge weigh-in-motion (WIM) uses existing bridges to find the weights of vehicles that pass overhea...
10th International Conference on Damage Assessment of Structures (DAMAS 2013), Dublin, Ireland, 8-1...
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...
Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle w...
Funder: University of CambridgeAbstract: Bridge Weigh-in-Motion (B-WIM) systems use the bridge respo...
Civil Engineering Research in Ireland, Belfast, UK, 28- 29 August, 2014Many bridges in the world’s ...
Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle w...
Funder: University of CambridgeAbstractBridge Weigh-in-Motion (B-WIM) systems use the bridge respons...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
Monitoring traffic loads is vital for ensuring bridge safety and overload controlling. Bridge weigh-...
Proceedings of the 6th International Conference on Mechanics and Materials in Design, Ponta Delgada,...
A real-time vehicle monitoring is crucial for effective bridge maintenance and traffic management be...
This paper proposes a novel Level I damage-detection technique for short- to medium-span road bridge...