A RAAML-driven case study in automotive safety analysis: Unterschied zwischen den Versionen

Aus SDQ-Institutsseminar
Keine Bearbeitungszusammenfassung
Keine Bearbeitungszusammenfassung
Zeile 5: Zeile 5:
|vortragstyp=Bachelorarbeit
|vortragstyp=Bachelorarbeit
|betreuer=Muhammad Asim Minhas
|betreuer=Muhammad Asim Minhas
|termin=Institute Seminar/2025-12-05
|termin=InstituteSeminar/2025-12-05
|vortragsmodus=in Präsenz
|vortragsmodus=in Präsenz
|kurzfassung=As automotive systems become increasingly complex, understanding and mitigating risks is crucial for ensuring safety and reliability. The Risk Analysis and Assessment Modeling Language (RAAML) provides a structured approach to identifying and evaluating potential risks. This thesis offers the opportunity to develop a comprehensive case study utilizing RAAML, providing valuable insights into its practical application in the automotive industry. By contributing to this field, you will help enhance the safety protocols and risk management strategies in automotive design. The case study involves a braking system in modern cars. The primary objective is to understand the potential risks associated with this system and develop a comprehensive RAAML model to evaluate its safety and reliability.
|kurzfassung=As automotive systems become increasingly complex, understanding and mitigating risks is crucial for ensuring safety and reliability. The Risk Analysis and Assessment Modeling Language (RAAML) provides a structured approach to identifying and evaluating potential risks. This thesis offers the opportunity to develop a comprehensive case study utilizing RAAML, providing valuable insights into its practical application in the automotive industry. By contributing to this field, you will help enhance the safety protocols and risk management strategies in automotive design. The case study involves a braking system in modern cars. The primary objective is to understand the potential risks associated with this system and develop a comprehensive RAAML model to evaluate its safety and reliability.
}}
}}

Version vom 10. November 2025, 17:20 Uhr

Vortragende(r) Lukas Friedrich
Vortragstyp Bachelorarbeit
Betreuer(in) Muhammad Asim Minhas
Termin Kein Termin angegeben
Vortragssprache Englisch
Vortragsmodus in Präsenz
Kurzfassung As automotive systems become increasingly complex, understanding and mitigating risks is crucial for ensuring safety and reliability. The Risk Analysis and Assessment Modeling Language (RAAML) provides a structured approach to identifying and evaluating potential risks. This thesis offers the opportunity to develop a comprehensive case study utilizing RAAML, providing valuable insights into its practical application in the automotive industry. By contributing to this field, you will help enhance the safety protocols and risk management strategies in automotive design. The case study involves a braking system in modern cars. The primary objective is to understand the potential risks associated with this system and develop a comprehensive RAAML model to evaluate its safety and reliability.