Wind turbine control and monitoring N Luo, Y Vidal, L Acho Springer International Publishing, 2014 | 91 | 2014 |
Wind turbine fault detection and classification by means of image texture analysis M Ruiz, LE Mujica, S Alferez, L Acho, C Tutiven, Y Vidal, J Rodellar, ... Mechanical Systems and Signal Processing 107, 149-167, 2018 | 87 | 2018 |
Fault diagnosis and fault-tolerant control of wind turbines via a discrete time controller with a disturbance compensator Y Vidal, C Tutivén, J Rodellar, L Acho Energies 8 (5), 4300-4316, 2015 | 54 | 2015 |
Wind turbine multi-fault detection and classification based on SCADA data Y Vidal, F Pozo, C Tutivén Energies 11 (11), 3018, 2018 | 51 | 2018 |
Vibration-response-only structural health monitoring for offshore wind turbine jacket foundations via convolutional neural networks B Puruncajas, Y Vidal, C Tutivén Sensors 20 (12), 3429, 2020 | 39 | 2020 |
Wind turbine main bearing fault prognosis based solely on scada data Á Encalada-Dávila, B Puruncajas, C Tutivén, Y Vidal Sensors 21 (6), 2228, 2021 | 38 | 2021 |
Hysteresis‐based design of dynamic reference trajectories to avoid saturation in controlled wind turbines C Tutivén, Y Vidal, L Acho, J Rodellar Asian Journal of Control 19 (2), 438-449, 2017 | 20 | 2017 |
Hardware in the loop wind turbine simulator for control system testing Y Vidal, L Acho, N Luo, C Tutiven Wind Turbine Control and Monitoring, 449-466, 2014 | 13 | 2014 |
Unsupervised damage detection for offshore jacket wind turbine foundations based on an autoencoder neural network MC Feijóo, Y Zambrano, Y Vidal, C Tutivén Sensors 21 (10), 3333, 2021 | 8 | 2021 |
Acceleration‐based fault‐tolerant control design of offshore fixed wind turbines C Tutivén, Y Vidal, J Rodellar, L Acho Structural Control and Health Monitoring 24 (5), e1920, 2017 | 8 | 2017 |
Passive fault tolerant control strategy in controlled wind turbines L Acho, J Rodellar, C Tutivén, Y Vidal 2016 3rd Conference on Control and Fault-Tolerant Systems (SysTol), 636-641, 2016 | 7 | 2016 |
Early fault detection in the main bearing of wind turbines based on Gated Recurrent Unit (GRU) neural networks and SCADA data Á Encalada-Dávila, L Moyón, C Tutivén, B Puruncajas, Y Vidal IEEE/ASME Transactions on Mechatronics 27 (6), 5583-5593, 2022 | 5 | 2022 |
Fault detection and fault tolerant control in wind turbines C Tutivén Gálvez Universitat Politècnica de Catalunya, 2018 | 4 | 2018 |
Texture analysis for wind turbine fault detection LE Mujica Delgado, M Ruiz Ordóñez, L Acho Zuppa, ES Alférez Baquero, ... 8th European Workshop on Structural Health Monitoring (EWSHM 2016): Bilbao …, 2016 | 4 | 2016 |
Active fault tolerant control for pitch actuators failures tested in a hardware-in-the-loop simulation for wind turbine controllers Y Vidal, J Rodellar, L Acho, C Tutivén 2015 23rd Mediterranean Conference on Control and Automation (MED), 190-196, 2015 | 4 | 2015 |
A fault detection method for pitch actuators faults in wind turbines C Tutivén, Y Vidal, L Acho, J Rodellar Renew. Energy Power Qual. J 1, 698-703, 2015 | 4 | 2015 |
Early fault diagnosis strategy for WT main bearings based on SCADA data and one-class SVM C Tutivén, Y Vidal, A Insuasty, L Campoverde-Vilela, W Achicanoy Energies 15 (12), 4381, 2022 | 2 | 2022 |
SCADA data-driven wind turbine main bearing fault prognosis based on one-class support vector machines A Insuasty, C Tutivén Gálvez, Y Vidal Seguí Renewable energy and power quality journal 19, 338-343, 2021 | 2 | 2021 |
Wind turbine multi-fault detection based on SCADA data via an AutoEncoder Á Encalada-Dávila, C Tutivén Gálvez, B Puruncajas Maza, Y Vidal Seguí Renewable energy and power quality journal 19, 487-492, 2021 | 2 | 2021 |
Fault detection and isolation of pitch actuator faults in a floating wind turbine C Tutivén, Y Vidal, L Acho, J Rodellar IFAC-PapersOnLine 51 (24), 480-487, 2018 | 2 | 2018 |