Structures vibrate with their natural frequencies when disturbed from their equilibrium position. These frequencies reduce when an additional mass accumulates on their structures, like ice accumulation on wind turbines installed in cold climate sites. The added mass has two features: the location and quantity of mass. Natural frequencies of the structure reduce differently depending on these two features of the added mass. In this work, a technique based on an artificial neural network (ANN) model is proposed to identify added mass by training the neural network with a dataset of natural frequencies of the structure calculated using different quantities of the added mass at different locations on the structure. The proposed method is demons...
The early detection of faults in rotating systems considers an integral approach that has received c...
To monitor wind turbine vibrations, normal behaviour models are built to predict tower top accelera...
Structural Health Monitoring (SHM) of a wind turbine blade using a Structural Neural System (SNS) is...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
This paper demonstrates the applicability of artificial neural networks (ANNs) that use multiple bck...
This paper demonstrates the applicability of Artificial Neural Networks (ANNs) that use Multiple Bac...
The wind has been a source of energy for the human being since ancient times, mainly because it is w...
This paper demonstrates the applicability of Artificial Neural Networks (ANNs) that use Multiple Bac...
The mass of ice on wind turbines blades is one of the main problems that energy companies have in co...
Abstract—In this study, natural frequencies of the prismatical steel beams with various geometrical ...
Damage in structures often leads to failure. Thus it is very important to monitor structures for the...
The early detection of faults in rotating systems considers an integral approach that has received c...
To monitor wind turbine vibrations, normal behaviour models are built to predict tower top accelera...
Structural Health Monitoring (SHM) of a wind turbine blade using a Structural Neural System (SNS) is...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
Structures vibrate with their natural frequencies when disturbed from their equilibrium position. Th...
This paper demonstrates the applicability of artificial neural networks (ANNs) that use multiple bck...
This paper demonstrates the applicability of Artificial Neural Networks (ANNs) that use Multiple Bac...
The wind has been a source of energy for the human being since ancient times, mainly because it is w...
This paper demonstrates the applicability of Artificial Neural Networks (ANNs) that use Multiple Bac...
The mass of ice on wind turbines blades is one of the main problems that energy companies have in co...
Abstract—In this study, natural frequencies of the prismatical steel beams with various geometrical ...
Damage in structures often leads to failure. Thus it is very important to monitor structures for the...
The early detection of faults in rotating systems considers an integral approach that has received c...
To monitor wind turbine vibrations, normal behaviour models are built to predict tower top accelera...
Structural Health Monitoring (SHM) of a wind turbine blade using a Structural Neural System (SNS) is...