This paper presents a non-model based technique to detect, locate, and characterize structural damage by combining the impedance-based structural health monitoring technique with an artificial neural network. The impedance-based structural health monitoring technique, which utilizes the electromechanical coupling property of piezoelectric materials, has shown engineering feasibility in a variety of practical field applications. Relying on high frequency structural excitations (typically >30 kHz), this technique is very sensitive to minor structural changes in the near field of the piezoelectric sensors. In order to quantitatively assess the state of structures, multiple sets of artificial neural networks, which utilize measured electrical i...
This paper focuses on the signal processing aspect of a smart structure computational support enviro...
This paper presents a structural health monitoring (SHM) method for in situ damage detection and loc...
A considerable amount of research has focused on monitoring structural damage using Structural Healt...
This paper presents a non-model based technique to detect, locate, and characterize structural damag...
This paper presents two different approaches to detect, locate, and characterize structural damage. ...
Continuing development of new materials makes systems lighter and stronger permitting more complex s...
A project to develop non-intrusive active sensors that can be applied on existing aging aerospace st...
A project to develop non-intrusive active sensors that can be applied on existing aging aerospace st...
A project to develop non-intrusive active sensors that can be applied on existing aging aerospace st...
International audienceThis paper presents a structural health monitoring (SHM) method for in situ da...
In this paper different architectures of Artifcial Neural Networks (ANNs) for structural damage dete...
Smart structures technology is being increasingly applied to civil structure applications. In partic...
Corrosion of structures and wall thinning of pipes can severely affect the mechanical strength as wa...
ABSTRACT: This article proposes the simultaneous application of the local electro-mechanical impedan...
The use of the electro-mechanical (E/M) impedance method for health monitoring of thin plates and ae...
This paper focuses on the signal processing aspect of a smart structure computational support enviro...
This paper presents a structural health monitoring (SHM) method for in situ damage detection and loc...
A considerable amount of research has focused on monitoring structural damage using Structural Healt...
This paper presents a non-model based technique to detect, locate, and characterize structural damag...
This paper presents two different approaches to detect, locate, and characterize structural damage. ...
Continuing development of new materials makes systems lighter and stronger permitting more complex s...
A project to develop non-intrusive active sensors that can be applied on existing aging aerospace st...
A project to develop non-intrusive active sensors that can be applied on existing aging aerospace st...
A project to develop non-intrusive active sensors that can be applied on existing aging aerospace st...
International audienceThis paper presents a structural health monitoring (SHM) method for in situ da...
In this paper different architectures of Artifcial Neural Networks (ANNs) for structural damage dete...
Smart structures technology is being increasingly applied to civil structure applications. In partic...
Corrosion of structures and wall thinning of pipes can severely affect the mechanical strength as wa...
ABSTRACT: This article proposes the simultaneous application of the local electro-mechanical impedan...
The use of the electro-mechanical (E/M) impedance method for health monitoring of thin plates and ae...
This paper focuses on the signal processing aspect of a smart structure computational support enviro...
This paper presents a structural health monitoring (SHM) method for in situ damage detection and loc...
A considerable amount of research has focused on monitoring structural damage using Structural Healt...