Materia

Contenido de XSL

Electrónica de potencia avanzada

Datos generales de la materia

Modalidad
Presencial
Idioma
Castellano
Inglés

Descripción y contextualización de la asignatura

The course focuses on presenting advanced topics on electrical energy conversion technologies using power semiconductor devices. At first, the fundamentals of power semiconductor devices employed in switch-mode power converters are presented. An introduction to key converter components such as gate drivers, magnetic components and cooling system is given. Methods for designing, modulating and controlling DC/DC and DC/AC switch-mode power electronics converters are analysed. Within this course, DC/DC converters such as flyback, forward, full-bridge and resonant converters are analysed. Moreover, the two-level and three-level DC/AC voltage-source converters are studied with a particular focus on their modulation schemes. The students will be introduced to pulse-width modulation (PWM) schemesas for example, the bipolar and unipolar sinusoidal PWM, voltage cancellation and selective harmonic elimination methods. Emerging converter topologies are briefly discussed. Additionally, computer-aided analysis and simulations of the electrical and thermal performance of power electronic converters are among the course objectives. Finally, the students are introduced to a real-time simulation platform for emulating the converters operation.

Profesorado

NombreInstituciónCategoríaDoctor/aPerfil docenteÁreaEmail
BLANCO ILZARBE, JESUS MARIAUniversidad del País Vasco/Euskal Herriko UnibertsitateaProfesorado Catedratico De UniversidadDoctorNo bilingüeMecánica de Fluidosjesusmaria.blanco@ehu.eus
ESTEBAN ALCALA, GUSTAVO ADOLFOUniversidad del País Vasco/Euskal Herriko UnibertsitateaProfesorado Titular De UniversidadDoctorNo bilingüeMecánica de Fluidosgustavo.esteban@ehu.eus
PEÑA BANDRES, ALBERTOUniversidad del País Vasco/Euskal Herriko UnibertsitateaProfesorado AgregadoDoctorBilingüeMecánica de Fluidosalberto.bandres@ehu.eus

Competencias

DenominaciónPeso
Habilidades de cooperación y colaboración interdisciplinar.0.0 %
Capacidad para comunicarse de manera efectiva tanto con profesionales como con no especialistas a través de informes y presentaciones.0.0 %
Capacidad de contribuir a la innovación ya los procesos de innovación.0.0 %

Tipos de docencia

TipoHoras presencialesHoras no presencialesHoras totales
Magistral5582.5137.5
Seminario81220
P. de Aula121830

Actividades formativas

DenominaciónHorasPorcentaje de presencialidad
Aula/Seminario/Taller8.0100 %
Clases expositivas55.0100 %
Ejercicios86.014 %
Estudio sistematizado30.50 %
Lectura y análisis prácticos8.00 %

Sistemas de evaluación

DenominaciónPonderación mínimaPonderación máxima
Examen escrito0.0 % 70.0 %
Realización y presentación de trabajos e informes0.0 % 30.0 %

Resultados del aprendizaje de la asignatura

After completing the course, the student will:

- have an in-depth understanding of the methodologies for designing power electronic converters suitable for DC/DC or DC/AC electrical energy conversion.

- be able to assess the performance of power semiconductor devices and to use these devices in power electronic converters.

- understand and apply advanced modulation schemes for single-phase and three phase switch-mode DC/AC two-level and three-level converters.

- understand electrothermal modelling and control of power electronic converters.

- be able to utilise digital control platforms for emulating and verifying the performance of power electronic converters.

Temario

Lectures. Exercises. Three assignments during the semester that also count in the final grading. Lab exercises.

Bibliografía

Materiales de uso obligatorio

N. Mohan, T. M. Undeland, and W. P Robbins: Power Electronics: Converters, Applications and Design¿. 3rd Edition. John Wiley & Sons. 2003.

¿ D. G. Holmes and T. Lipo: Pulse Width Modulation for Power Converters: Principles and Practice. Wiley and IEEE press. 2003.

¿ Lecture notes distributed online during the semester.

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