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Oscar Lucía
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2020 – today
- 2023
- [j37]Pablo Guillén, Héctor Sarnago, Óscar Lucía, José M. Burdio:
Series-Resonant Matrix Inverter With Asymmetrical Modulation for Improved Power Factor Correction in Flexible Induction Heating Appliances. IEEE Trans. Ind. Electron. 70(2): 1421-1430 (2023) - [c27]Luis Angel Barragan, Hector Sarnago, Denis Navarro, Oscar Lucía:
A Comparison of Extended Kalman Filters for Parameter Estimation of Sinusoidal Signals. ISIE 2023: 1-6 - 2022
- [j36]Pablo Guillén, Felix Fiedler, Héctor Sarnago, Sergio Lucia, Oscar Lucía:
Deep Learning Implementation of Model Predictive Control for Multioutput Resonant Converters. IEEE Access 10: 65228-65237 (2022) - 2021
- [j35]Mario Perez-Tarragona, Héctor Sarnago, Óscar Lucía, José M. Burdio:
Multiphase PFC Rectifier and Modulation Strategies for Domestic Induction Heating Applications. IEEE Trans. Ind. Electron. 68(8): 6424-6433 (2021) - [j34]Pablo Guillén, Héctor Sarnago, Óscar Lucía, José M. Burdio:
Mains-Synchronized Pulse Density Modulation Strategy Applied to a ZVS Resonant Matrix Inverter. IEEE Trans. Ind. Electron. 68(11): 10835-10844 (2021) - [j33]Sergio Lucia, Denis Navarro, Benjamin Karg, Hector Sarnago, Óscar Lucía:
Deep Learning-Based Model Predictive Control for Resonant Power Converters. IEEE Trans. Ind. Informatics 17(1): 409-420 (2021) - [c26]Larisa Dunai, João F. A. Martins, Kazuhiro Umetani, Oscar Lucía, M. Yousef Ibrahim, Gayan Kahandawa Appuhamillage:
E-Learning in Industrial Electronics during Covid-19. ICIT 2021: 1227-1233 - 2020
- [j32]Mohammad Hossein Ghasemi, Oscar Lucía, Sergio Lucia:
Computing in the Blink of an Eye: Current Possibilities for Edge Computing and Hardware-Agnostic Programming. IEEE Access 8: 41626-41636 (2020) - [j31]Héctor Sarnago, José M. Burdio, Tomas Garcia-Sanchez, Lluis M. Mir, Ignacio Álvarez-Gariburo, Oscar Lucía:
GaN-Based Versatile Waveform Generator for Biomedical Applications of Electroporation. IEEE Access 8: 97196-97203 (2020) - [j30]Borja Lopez-Alonso, Hector Sarnago, Oscar Lucía, Pablo Briz, José Miguel Burdio:
Real-Time Impedance Monitoring During Electroporation Processes in Vegetal Tissue Using a High-Performance Generator. Sensors 20(11): 3158 (2020) - [j29]Tomas Garcia-Sanchez, Borja Mercadal, Melanie Polrot, Adeline Muscat, Hector Sarnago, Óscar Lucía, Lluis M. Mir:
Successful Tumor Electrochemotherapy Using Sine Waves. IEEE Trans. Biomed. Eng. 67(4): 1040-1049 (2020) - [j28]Yijie Wang, Óscar Lucía, Zhe Zhang:
High and Very High Frequency Power Supplies for Industrial Applications. IEEE Trans. Ind. Electron. 67(2): 1400-1404 (2020) - [c25]Borja López-Alonso, Héctor Sarnago, José Miguel Burdio, Óscar Lucía:
Multi-Electrode Architecture Analysis and Modeling for Cancer Treatment using Electroporation. IECON 2020: 718-723 - [c24]Pablo Guillén, Héctor Sarnago, Óscar Lucía, José Miguel Burdio:
Multi-Output Resonant Power Converters for Domestic Induction Heating. IECON 2020: 4320-4327
2010 – 2019
- 2019
- [j27]Hector Sarnago, Pablo Guillén, José M. Burdio, Oscar Lucía:
Multiple-Output ZVS Resonant Inverter Architecture for Flexible Induction Heating Appliances. IEEE Access 7: 157046-157056 (2019) - [j26]Oscar Lucía, Denis Navarro, Pablo Guillén, Héctor Sarnago, Sergio Lucia:
Deep Learning-Based Magnetic Coupling Detection for Advanced Induction Heating Appliances. IEEE Access 7: 181668-181677 (2019) - [c23]Pablo Guillén, Héctor Sarnago, Óscar Lucía, José Miguel Burdio:
Asymmetrical Modulation Strategies for Partially Covered Inductors in Flexible Induction Heating Appliances. IECON 2019: 5065-5069 - [c22]Sergio Lucia, Héctor Sarnago, Denis Navarro, Óscar Lucía:
Improved Multi-Load Resonant Power Conversion Using Model Predictive Control. IECON 2019: 5075-5080 - 2018
- [j25]Hector Sarnago, Oscar Lucía, José M. Burdio:
FPGA-Based Resonant Load Identification Technique for Flexible Induction Heating Appliances. IEEE Trans. Ind. Electron. 65(12): 9421-9428 (2018) - [j24]Sergio Lucia, Denis Navarro, Oscar Lucía, Pablo Zometa, Rolf Findeisen:
Optimized FPGA Implementation of Model Predictive Control for Embedded Systems Using High-Level Synthesis Tool. IEEE Trans. Ind. Informatics 14(1): 137-145 (2018) - [c21]José Miguel Gil-Narvión, Denis Navarro, Hector Sarnago, Oscar Lucía:
FPGA-Based Hardware in the Loop Test-Bench for Robust Software Development of Induction Heating Appliances. IECON 2018: 3497-3501 - [c20]Sergio Lucia, Denis Navarro, Hector Sarnago, Oscar Lucía:
Model Predictive Control for Resonant Power Converters Applied to Induction Heating. ISIE 2018: 246-251 - [c19]Hector Sarnago, José M. Burdio, Oscar Lucía:
A Versatile Hardware Platform for Teaching Resonant Power Conversion Courses. ISIE 2018: 890-894 - [c18]Claudio Carretero, Hector Sarnago, Oscar Lucía, Jesús Acero, José M. Burdio:
An Application of Learner-Centered Teaching of Advanced Electromagnetics for Electronic Engineering Master Students. ISIE 2018: 895-900 - [c17]Hector Sarnago, Elisabetta Sieni, Borja Lopez-Alonso, Claudio Carretero, José M. Burdio, Oscar Lucía:
An Inter-Disciplinary Approach to Teaching Biomedical Electronics with an Electroporation-Applied Example. ISIE 2018: 901-905 - 2017
- [j23]Oscar Lucía, Xu She, Alex Q. Huang:
Wide Bandgap Devices and Power Conversion Systems - Part I. IEEE Trans. Ind. Electron. 64(10): 8190-8192 (2017) - [j22]Xu She, Alex Q. Huang, Oscar Lucía, Burak Ozpineci:
Review of Silicon Carbide Power Devices and Their Applications. IEEE Trans. Ind. Electron. 64(10): 8193-8205 (2017) - [j21]Oscar Lucía, Xu She, Alex Q. Huang:
Wide Bandgap Devices and Power Conversion Systems - Part II. IEEE Trans. Ind. Electron. 64(11): 8959-8961 (2017) - [c16]Hector Sarnago, Oscar Lucía, Pablo Guillén, José M. Burdio:
Bidirectional inductorless Dc-Dc converter for improved home appliance operation. IECON 2017: 916-921 - [c15]Mario Perez-Tarragona, Hector Sarnago, Oscar Lucía, José M. Burdio:
Active power factor corrector for high power domestic induction heating appliances. IECON 2017: 3779-3784 - 2016
- [j20]Hector Sarnago, Oscar Lucía, Mario Perez-Tarragona, José M. Burdio:
Dual-Output Boost Resonant Full-Bridge Topology and its Modulation Strategies for High-Performance Induction Heating Applications. IEEE Trans. Ind. Electron. 63(6): 3554-3561 (2016) - [c14]Hector Sarnago, Oscar Lucía, José M. Burdio:
High frequency and power density gallium nitride based inverter for magneto fluid hyperthermia. IECON 2016: 5222-5225 - [c13]Oscar Lucía, Hector Sarnago, José M. Burdio:
Pulse density modulated control for the series resonant multi-inverter for induction heating applications. IECON 2016: 5995-6000 - 2015
- [j19]Óscar Jiménez, Oscar Lucía, Isidoro Urriza, Luis Angel Barragan, Denis Navarro, Venkata Dinavahi:
Implementation of an FPGA-Based Online Hardware-in-the-Loop Emulator Using High-Level Synthesis Tools for Resonant Power Converters Applied to Induction Heating Appliances. IEEE Trans. Ind. Electron. 62(4): 2206-2214 (2015) - [j18]Hector Sarnago, Oscar Lucía, José M. Burdio:
A Comparative Evaluation of SiC Power Devices for High-Performance Domestic Induction Heating. IEEE Trans. Ind. Electron. 62(8): 4795-4804 (2015) - [j17]Oscar Lucía, Hector Sarnago, José M. Burdio:
Soft-Stop Optimal Trajectory Control for Improved Performance of the Series-Resonant Multiinverter for Domestic Induction Heating Applications. IEEE Trans. Ind. Electron. 62(10): 6251-6259 (2015) - [c12]Hector Sarnago, Oscar Lucía, Thomas Kimmer, José M. Burdio:
Ultra high efficiency adaptable class-DE inverter for resonant power conversion. IECON 2015: 538-543 - [c11]Carlos Bernal, Oscar Lucía, Hector Sarnago, José M. Burdio, Antoni Ivorra, Quim Castellvi:
A review of pulse generation topologies for clinical electroporation. IECON 2015: 625-630 - [c10]Mario Perez-Tarragona, Hector Sarnago, Oscar Lucía, José M. Burdio:
Series resonant multi-inverter prototype for domestic induction heating. IECON 2015: 5444-5449 - 2014
- [j16]Oscar Lucía, Pascal Maussion, Enrique J. Dede, José M. Burdio:
Introduction to the Special Section on Induction Heating Systems. IEEE Trans. Ind. Electron. 61(5): 2504-2508 (2014) - [j15]Oscar Lucía, Pascal Maussion, Enrique J. Dede, José M. Burdio:
Induction Heating Technology and Its Applications: Past Developments, Current Technology, and Future Challenges. IEEE Trans. Ind. Electron. 61(5): 2509-2520 (2014) - [j14]Hector Sarnago, Oscar Lucía, Arturo Mediano, José M. Burdio:
A Class-E Direct AC-AC Converter With Multicycle Modulation for Induction Heating Systems. IEEE Trans. Ind. Electron. 61(5): 2521-2530 (2014) - [j13]Hector Sarnago, Oscar Lucía, Arturo Mediano, José M. Burdio:
Efficient and Cost-Effective ZCS Direct AC-AC Resonant Converter for Induction Heating. IEEE Trans. Ind. Electron. 61(5): 2546-2555 (2014) - [j12]Óscar Jiménez, Oscar Lucía, Isidoro Urriza, Luis Angel Barragan, Denis Navarro:
Design and Evaluation of a Low-Cost High-Performance ΣΔ ADC for Embedded Control Systems in Induction Heating Appliances. IEEE Trans. Ind. Electron. 61(5): 2601-2611 (2014) - [j11]Óscar Jiménez, Oscar Lucía, Isidoro Urriza, Luis Angel Barragan, Denis Navarro:
Analysis and Implementation of FPGA-Based Online Parametric Identification Algorithms for Resonant Power Converters. IEEE Trans. Ind. Informatics 10(2): 1144-1153 (2014) - [c9]Hector Sarnago, Oscar Lucía, José M. Burdio:
Efficiency improvement of switched-mode power converters under light-load conditions. IECON 2014: 1430-1433 - [c8]Eduardo Laloya, Oscar Lucía, Javier Concha, José M. Burdio:
Experimental evaluation of dynamic load changes in flexible induction heating appliances. IECON 2014: 3227-3232 - [c7]Oscar Lucía, Hector Sarnago, José M. Burdio:
Soft-stop optimal trajectory control for improved operation of the series resonant multi-inverter. IECON 2014: 3283-3288 - 2013
- [j10]Denis Navarro, Oscar Lucía, Jose M. Gil-Narvion, Óscar Jiménez:
FPGA-Based Virtual Screening Acceleration of Rigid-Molecule Docking. Comput. Sci. Eng. 15(6): 64-72 (2013) - [j9]Jesús Acero, Claudio Carretero, Ignacio Lope, Rafael Alonso, Oscar Lucía, José M. Burdio:
Analysis of the Mutual Inductance of Planar-Lumped Inductive Power Transfer Systems. IEEE Trans. Ind. Electron. 60(1): 410-420 (2013) - [j8]Hector Sarnago, Oscar Lucía, Arturo Mediano, José M. Burdio:
Modulation Scheme for Improved Operation of an RB-IGBT-Based Resonant Inverter Applied to Domestic Induction Heating. IEEE Trans. Ind. Electron. 60(5): 2066-2073 (2013) - [j7]Claudio Carretero, Oscar Lucía, Jesús Acero, José M. Burdio:
Computational Modeling of Two Partly Coupled Coils Supplied by a Double Half-Bridge Resonant Inverter for Induction Heating Appliances. IEEE Trans. Ind. Electron. 60(8): 3092-3105 (2013) - [j6]Denis Navarro, Oscar Lucía, Luis Angel Barragan, Isidoro Urriza, Óscar Jiménez:
High-Level Synthesis for Accelerating the FPGA Implementation of Computationally Demanding Control Algorithms for Power Converters. IEEE Trans. Ind. Informatics 9(3): 1371-1379 (2013) - [j5]Óscar Jiménez, Oscar Lucía, Luis Angel Barragan, Denis Navarro, José Ignacio Artigas, Isidoro Urriza:
FPGA-Based Test-Bench for Resonant Inverter Load Characterization. IEEE Trans. Ind. Informatics 9(3): 1645-1654 (2013) - [c6]Hector Sarnago, Oscar Lucía, Arturo Mediano, José M. Burdio:
A comparative evaluation of high-efficiency resonant converters for domestic induction heating. IECON 2013: 5016-5022 - 2012
- [c5]Claudio Carretero, Oscar Lucía, Jesús Acero, José M. Burdio:
First harmonic equivalent impedance of coupled inductive loads for induction heating applications. IECON 2012: 427-432 - [c4]Óscar Jiménez, Oscar Lucía, Isidoro Urriza, Luis Angel Barragan, José Ignacio Artigas, Denis Navarro:
FPGA-based 2nd-order sigma-delta A/D converter for current measurement for resonant power converters. IECON 2012: 3061-3066 - [c3]Hector Sarnago, Oscar Lucía, Arturo Mediano, José M. Burdio:
High-efficiency power converters for domestic induction heating applications. IECON 2012: 3268-3273 - [c2]Denis Navarro, Oscar Lucía, Isidro Urriza, Luis Angel Barragan, Óscar Jiménez:
Modeling and simulation of power converter systems using SystemC system-level description language. IECON 2012: 4694-4699 - [c1]Alberto Dominguez Vicente, Aránzazu Otín, Luis Angel Barragan, Oscar Lucía, José Ignacio Artigas:
Modeling of resonant inverters with high harmonic content using the extended describing function method. IECON 2012: 5949-5954 - 2011
- [j4]Oscar Lucía, Luis Angel Barragan, José M. Burdio, Óscar Jiménez, Denis Navarro, Isidoro Urriza:
A Versatile Power Electronics Test-Bench Architecture Applied to Domestic Induction Heating. IEEE Trans. Ind. Electron. 58(3): 998-1007 (2011) - [j3]Oscar Lucía, José M. Burdio, Luis Angel Barragan, Claudio Carretero, Jesús Acero:
Series Resonant Multiinverter with Discontinuous-Mode Control for Improved Light-Load Operation. IEEE Trans. Ind. Electron. 58(11): 5163-5171 (2011) - 2010
- [j2]Isidoro Urriza, Luis Angel Barragan, Denis Navarro, José Ignacio Artigas, Oscar Lucía:
Word Length Selection Method for Controller Implementation on FPGAs Using the VHDL-2008 Fixed-Point and Floating-Point Packages. EURASIP J. Embed. Syst. 2010 (2010)
2000 – 2009
- 2009
- [j1]Oscar Lucía, José M. Burdio, Ignacio Millan, Jesús Acero, Diego Puyal:
Load-Adaptive Control Algorithm of Half-Bridge Series Resonant Inverter for Domestic Induction Heating. IEEE Trans. Ind. Electron. 56(8): 3106-3116 (2009)
Coauthor Index
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