Inhalt

(*)Power Transmission and Distribution

Versionsauswahl
(*) Leider ist diese Information in Deutsch nicht verfügbar.
Workload Ausbildungslevel Studienfachbereich VerantwortlicheR Semesterstunden Anbietende Uni
3 ECTS M1 - Master 1. Jahr Wirtschaftsinformatik Wilhelm Süßenbacher 2 SSt FH OÖ
Detailinformationen
Quellcurriculum Masterstudium Digital Energy Solutions 2026W
Lernergebnisse
Kompetenzen
(*)Upon successful completion of this course, students will be able to:

  • Demonstrate understanding of the fundamentals of power transmission and distribution in current and future energy systems.
  • Analyze the integration and operation of variable renewable generation, flexible generation units, storage systems, and demand-side facilities within transmission and distribution networks.
  • Explain and evaluate the technologies used in modern power transmission and distribution, including their advantages, limitations, and application contexts.
  • Apply knowledge of transmission and distribution technologies to the planning and operation of reliable and efficient power systems.
  • Assess challenges and solutions related to system stability, flexibility, and security of supply in evolving power grids.
Fertigkeiten Kenntnisse
(*)
  • System Analysis Skills: Ability to analyze power flows in transmission and distribution networks (k4)
  • System Integration Skills: Capability to assess the impact of variable renewable generation, storage, and flexible demand on grid operation (k5)
  • Technology Evaluation Skills: Skill to compare and evaluate different transmission and distribution technologies (e.g., HVAC vs. HVDC, overhead vs. underground lines, smart grid technologies) (k5)
  • Operational Skills: Ability to apply operational strategies for balancing, congestion management, and ensuring system reliability (k3, k6)
(*)
  • Fundamentals of Energy Transport in Smart Grids: Physical principles of power flow, network topology, and smart grid functionalities.
  • Electrical Storage Systems: Types, characteristics, and operational principles of batteries, supercapacitors, and other storage technologies.
  • Microgrids and Hybrid Energy Systems: Design and operation of islanded microgrids; integration of hybrid systems such as diesel + PV/wind.
  • Grid Connection of Decentralized Generation: Standards, regulations, and technical requirements for connecting distributed generation to transmission and distribution networks.
  • Energy Balancing and System Operation: Methods for load balancing, demand response, and management of variable renewable generation in transmission and distribution systems.
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