Inhalt

(*)Home and Building Automation

Versionsauswahl
(*) Leider ist diese Information in Deutsch nicht verfügbar.
Workload Ausbildungslevel Studienfachbereich VerantwortlicheR Semesterstunden Anbietende Uni
3 ECTS M2 - Master 2. Jahr Wirtschaftsinformatik Christoph Schaffer 2 SSt FH OÖ
Detailinformationen
Quellcurriculum Masterstudium Digital Energy Solutions 2026W
Lernergebnisse
Kompetenzen
(*)Students can independently analyze and evaluate building automation standards, wireless and powerline communication protocols, and proprietary smart home solutions. They understand integration platforms and interoperability frameworks and can apply them to design automation systems. Students are able to balance technical requirements with user comfort, energy efficiency, security, and privacy.
Fertigkeiten Kenntnisse
(*)
  • Understand the fundamental concepts of building automation and their relevance for smart homes and buildings (K5)
  • Analyze and compare fieldbus standards such as BACnet, KNX, LON (K5)
  • Know the characteristics and limitations of proprietary solutions such as Loxone and digitalstrom (K4)
  • Apply knowledge of lighting and shading control standards (DALI, DMX, SMI) to configure automation solutions (K4)
  • Understand and evaluate wireless communication protocols (ZigBee, Z-Wave, EnOcean, Thread) regarding reliability, security, and efficiency (K6)
  • Evaluate interoperability frameworks such as Matter and their role in enabling cross-vendor compatibility (K6)
  • Apply knowledge of powerline communication standards (HomePlug, G3-PLC, IEEE 1901.2) in home and building automation contexts (K4)
  • Analyze integration platforms and middleware (openHAB, Home Assistant, ioBroker, Apple HomeKit, Samsung SmartThings) for interoperability and vendor independence (K6)
  • Position building automation requirements in relation to energy efficiency, usability, privacy, and security (K5)
(*)
  • Fundamentals of building automation and fieldbus communication
  • Building automation standards: BACnet, KNX, LON
  • Proprietary solutions: Loxone, digitalstrom
  • Lighting and shading standards: DALI, DMX, SMI
  • Wireless communication protocols: ZigBee, Z-Wave, EnOcean, Thread
  • Interoperability framework: Matter (application layer over Thread, Wi-Fi, Ethernet)
  • Powerline communication standards: HomePlug, G3-PLC, IEEE 1901.2
  • Integration platforms and middleware: openHAB, Home Assistant, ioBroker, Apple HomeKit, Samsung SmartThings
  • Principles of interoperability, vendor neutrality, and system integration
  • Practical considerations: scalability, reliability, energy efficiency, security, privacy
Beurteilungskriterien (*)Final exam
Lehrmethoden (*)Lecture, discussion, course material, exercise examples
Abhaltungssprache Englisch
Literatur (*)Course materials (presentation slides, software etc.) are made available via Moodle
Lehrinhalte wechselnd? Nein
Präsenzlehrveranstaltung
Teilungsziffer 35
Zuteilungsverfahren Zuteilung nach Vorrangzahl