Bridge Weigh-in-Motion systems can be used to estimate vehicle parameters such as velocity, axle loads, or the distance between axles without affecting the traffic. These parameters and the classification of vehicles are necessary to determine vehicle overload and hence may help to reduce risks for road users and road infrastructure and allow optimized planning of maintenance work. The Bridge Weigh-in-Motion system developed is based on a crack displacement sensor with intelligent data processing algorithms: In a first step, the number of axles, the distance between axles, and the velocity of the vehicle is obtained from the crack displacement signal by means of wavelet decomposition. In a subsequent step, the axle loads are found by means ...
Session 1C: (Special Session SS02) Structural Health Monitoring Research and Practice in Hong KongTh...
This paper proposes a new level I damage identification method for short span statically indetermina...
Funder: University of CambridgeAbstractBridge Weigh-in-Motion (B-WIM) systems use the bridge respons...
Bridge Weigh-In-Motion (B-WIM) is a process by which the axle and gross vehicle weights of vehicles ...
Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle w...
© 2017 IOP Publishing Ltd. Bridge weigh-in-motion (BWIM) is an approach through which the axle and g...
This paper proposes a novel Level I damage-detection technique for short- to medium-span road bridge...
A real-time vehicle monitoring is crucial for effective bridge maintenance and traffic management be...
10th International Conference on Damage Assessment of Structures (DAMAS 2013), Dublin, Ireland, 8-1...
This paper proposes a new level I damage detection technique for short to medium span road bridges u...
Previous research based on theoretical simulations has shown the potential of the wavelet transform ...
Recently, the ‘drive-by’ or vehicle scanning technique has attracted increasing attention over the l...
Structural health monitoring (SHM) is an emerging field in civil engineering in recent years. The ma...
Monitoring traffic loads is vital for ensuring bridge safety and overload controlling. Bridge weigh-...
Identifying damage of a bridge from a vehicle moving over it is an attractive idea especially for th...
Session 1C: (Special Session SS02) Structural Health Monitoring Research and Practice in Hong KongTh...
This paper proposes a new level I damage identification method for short span statically indetermina...
Funder: University of CambridgeAbstractBridge Weigh-in-Motion (B-WIM) systems use the bridge respons...
Bridge Weigh-In-Motion (B-WIM) is a process by which the axle and gross vehicle weights of vehicles ...
Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle w...
© 2017 IOP Publishing Ltd. Bridge weigh-in-motion (BWIM) is an approach through which the axle and g...
This paper proposes a novel Level I damage-detection technique for short- to medium-span road bridge...
A real-time vehicle monitoring is crucial for effective bridge maintenance and traffic management be...
10th International Conference on Damage Assessment of Structures (DAMAS 2013), Dublin, Ireland, 8-1...
This paper proposes a new level I damage detection technique for short to medium span road bridges u...
Previous research based on theoretical simulations has shown the potential of the wavelet transform ...
Recently, the ‘drive-by’ or vehicle scanning technique has attracted increasing attention over the l...
Structural health monitoring (SHM) is an emerging field in civil engineering in recent years. The ma...
Monitoring traffic loads is vital for ensuring bridge safety and overload controlling. Bridge weigh-...
Identifying damage of a bridge from a vehicle moving over it is an attractive idea especially for th...
Session 1C: (Special Session SS02) Structural Health Monitoring Research and Practice in Hong KongTh...
This paper proposes a new level I damage identification method for short span statically indetermina...
Funder: University of CambridgeAbstractBridge Weigh-in-Motion (B-WIM) systems use the bridge respons...