Inhalt

(*)Power Generation

Versionsauswahl
(*) Leider ist diese Information in Deutsch nicht verfügbar.
Workload Ausbildungslevel Studienfachbereich VerantwortlicheR Semesterstunden Anbietende Uni
6 ECTS M1 - Master 1. Jahr Wirtschaftsinformatik Wilhelm Süßenbacher 4 SSt FH OÖ
Detailinformationen
Quellcurriculum Masterstudium Digital Energy Solutions 2026W
Lernergebnisse
Kompetenzen
(*)Upon successful completion of this course, students will be able to:

  • Demonstrate in-depth knowledge of the fundamentals of renewable energy systems, including photovoltaic, wind, and hydroelectric technologies, as well as renewable energy potentials.
  • Identify and describe the main technical components of renewable energy systems and explain their role in overall system performance.
  • Apply principles of planning and design to renewable energy projects, including both small island systems and grid-connected systems.
  • Analyze the legal and regulatory frameworks relevant to the installation and operation of renewable energy systems.
  • Evaluate the economic feasibility of renewable energy projects using appropriate assessment methods.
Fertigkeiten Kenntnisse
(*)
  • System Analysis Skills: Ability to analyze the technical performance of photovoltaic, wind, and hydroelectric systems, including efficiency and energy yield (k5)
  • Design and Planning Skills: Capability to design renewable energy systems (e.g., sizing PV arrays, selecting turbines, designing hybrid/island systems) according to site-specific conditions (k6)
  • Component Evaluation Skills: Skill to select and dimension system components (inverters, storage, turbines, generators, controllers) based on technical requirements (k5)
  • Regulatory and Legal Application Skills: Ability to interpret and apply relevant laws, standards, and regulations in the planning and implementation of renewable energy projects (k5)
  • Economic Assessment Skills: Competence to evaluate project feasibility using methods such as LCOE (Levelized Cost of Energy), payback analysis, and cost-benefit assessment (k5)
(*)
  • Fundamentals of Renewable Energy Technologies: Physical principles of photovoltaic conversion, wind energy extraction, and hydropower generation.
  • Renewable Energy Potentials: Knowledge of resource assessment methods (solar irradiation, wind speed distributions, hydrological data).
  • Technical Components of Renewable Systems: Understanding of modules, turbines, generators, inverters, storage, balance-of-system components, and their functions.
  • System Design Principles: Knowledge of sizing methods, load analysis, grid integration requirements, and island grid configurations.
  • Legal and Regulatory Frameworks: Awareness of standards, permitting processes, grid codes, and policies governing renewable energy deployment.
  • Economic and Financial Principles: Knowledge of cost structures, investment analysis, levelized cost of energy (LCOE), and project financing models.
Beurteilungskriterien (*)Final exam (schriftlich)
Lehrmethoden (*)Lecture, discussion, course material, exercise examples
Abhaltungssprache Englisch
Literatur (*)Slides, lecture notes
Lehrinhalte wechselnd? Nein
Präsenzlehrveranstaltung
Teilungsziffer 35
Zuteilungsverfahren Zuteilung nach Vorrangzahl