Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle weights of road vehicles in motion, at normal traffic speeds. While WIM employs sensors embedded in the road pavement, B-WIM use the strain recordings of a bridge to infer the traversing vehicle axle weights. Both systems have been heavily improved over the past decades, and commercial versions are currently in operation. The two main applications of these systems are: (1) to assess the traffic loading on the infrastructure, and (2) to enforce the maximum weight limits. This paper suggests a novel application of these two systems to identify changes in bridge stiffness. It requires the bridge to be instrumented with a B-WIM system and a WIM sy...
Monitoring traffic loads is vital for ensuring bridge safety and overload controlling. Bridge weigh-...
This paper describes an experiment in which 2 independently developed bridge weigh-in-motion (WIM) s...
Proper management and maintenance of the highway transportation network is extremely important for t...
Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle w...
10th International Conference on Damage Assessment of Structures (DAMAS 2013), Dublin, Ireland, 8-1...
Bridge Weigh-in-Motion (B-WIM) systems use the bridge response under a traversing vehicle to estimat...
This paper proposes a novel Level I damage-detection technique for short- to medium-span road bridge...
This paper proposes a new level I damage detection technique for short to medium span road bridges u...
Structural health monitoring (SHM) is an emerging field in civil engineering in recent years. The ma...
A real-time vehicle monitoring is crucial for effective bridge maintenance and traffic management be...
A method is presented of measuring a bridge’s characteristic allowance for dynamic interaction in th...
Conventional bridge weigh-in-motion (BWIM) uses a bridge influence line to find the axle weights of ...
Conventional bridge weigh-in-motion (BWIM) uses a bridge influence line to find the axle weights of ...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
This paper proposes a new level I damage identification method for short span statically indetermina...
Monitoring traffic loads is vital for ensuring bridge safety and overload controlling. Bridge weigh-...
This paper describes an experiment in which 2 independently developed bridge weigh-in-motion (WIM) s...
Proper management and maintenance of the highway transportation network is extremely important for t...
Weigh-In-Motion (WIM) and Bridge Weigh-In-Motion (B-WIM) are systems that allow obtaining the axle w...
10th International Conference on Damage Assessment of Structures (DAMAS 2013), Dublin, Ireland, 8-1...
Bridge Weigh-in-Motion (B-WIM) systems use the bridge response under a traversing vehicle to estimat...
This paper proposes a novel Level I damage-detection technique for short- to medium-span road bridge...
This paper proposes a new level I damage detection technique for short to medium span road bridges u...
Structural health monitoring (SHM) is an emerging field in civil engineering in recent years. The ma...
A real-time vehicle monitoring is crucial for effective bridge maintenance and traffic management be...
A method is presented of measuring a bridge’s characteristic allowance for dynamic interaction in th...
Conventional bridge weigh-in-motion (BWIM) uses a bridge influence line to find the axle weights of ...
Conventional bridge weigh-in-motion (BWIM) uses a bridge influence line to find the axle weights of ...
Bridge weigh-in-motion (B-WIM) is a method by which the axle weights of a vehicle travelling at full...
This paper proposes a new level I damage identification method for short span statically indetermina...
Monitoring traffic loads is vital for ensuring bridge safety and overload controlling. Bridge weigh-...
This paper describes an experiment in which 2 independently developed bridge weigh-in-motion (WIM) s...
Proper management and maintenance of the highway transportation network is extremely important for t...