Chronopoulos D.
38
Coauthors
8
Documentos
Volumen de publicaciones por año
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Año de publicación | Num. Publicaciones |
---|---|
2019 | 3 |
2020 | 1 |
2021 | 3 |
2022 | 1 |
Publicaciones por áreas de conocimiento
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Área de conocimiento | Num. Publicaciones |
---|---|
Optimización matemática | 4 |
Sensor | 4 |
Sistema no lineal | 3 |
Ingeniería mecánica | 2 |
Material compuesto | 1 |
Matemáticas aplicadas | 1 |
Control óptimo | 1 |
Algoritmo | 1 |
Publicaciones por áreas temáticas
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Área temática | Num. Publicaciones |
---|---|
Ingeniería y operaciones afines | 6 |
Física aplicada | 4 |
Ingeniería civil | 1 |
Dirección general | 1 |
Sistemas | 1 |
Métodos informáticos especiales | 1 |
Principales fuentes de datos
Origen | Num. Publicaciones |
---|---|
Scopus | 8 |
Google Scholar | 0 |
RRAAE | 0 |
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Coautores destacados por número de publicaciones
Coautor | Num. Publicaciones |
---|---|
Cantero-Chinchilla S. | 8 |
Juan Chiachío | 8 |
Ruano M.C. | 7 |
Jones A. | 4 |
Beck J.L. | 2 |
Essa Y. | 2 |
de la Escalera F.M. | 2 |
Malik M.K. | 1 |
Fabro A.T. | 1 |
Papadimitriou C. | 1 |
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Top Keywords
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Publicaciones del autor
Bayesian damage localization and identification based on a transient wave propagation model for composite beam structures
ArticleAbstract: This paper proposes the use of a physics-based Bayesian framework for the localization and identificPalabras claves:Bayesian inverse problem, Composite beams, Guided waves, Structural Health Monitoring, Ultrasound, Wave and finite element methodAutores:Cantero-Chinchilla S., Chronopoulos D., Juan Chiachío, Malik M.K.Fuentes:scopusA robust Bayesian methodology for damage localization in plate-like structures using ultrasonic guided-waves
ArticleAbstract: SHM methods for damage detection and localization in plate-like structures have typically relied onPalabras claves:Bayesian inverse problem, Damage localization, Multiple damage areas, Structural Health Monitoring, Time of flight, Ultrasonic guided-wavesAutores:Cantero-Chinchilla S., Chronopoulos D., Jones A., Juan Chiachío, Ruano M.C.Fuentes:scopusOptiSens—Convex optimization of sensor and actuator placement for ultrasonic guided-wave based structural health monitoring
ArticleAbstract: This paper presents OptiSens, a computational platform in Python and Matlab, that provides optimal sPalabras claves:Cost–benefit optimization, Optimal sensor placement, Structural Health Monitoring, Ultrasonic guided-wavesAutores:Beck J.L., Cantero-Chinchilla S., Chronopoulos D., Juan Chiachío, Ruano M.C.Fuentes:scopusUltrasonic guided-wave based value of information approach for optimal sensor placement
Conference ObjectAbstract: A value of information based approach for optimal structural health monitoring design using ultrasonPalabras claves:optimal sensor configuration, Structural Health Monitoring, Ultrasonic guided-waves, Value of informationAutores:Cantero-Chinchilla S., Chronopoulos D., Juan Chiachío, Meng H., Ruano M.C.Fuentes:scopusOptimal sensor and actuator placement for structural health monitoring via an efficient convex cost-benefit optimization
ArticleAbstract: The number and position of sensors and actuators are key decision variables that dictate the performPalabras claves:entropy, Guided waves, Optimal actuator configuration, optimal sensor configuration, Structural Health Monitoring, Time of flightAutores:Beck J.L., Cantero-Chinchilla S., Chronopoulos D., Jones A., Juan Chiachío, Ruano M.C.Fuentes:scopus