Rail industry is rapidly developing, and rail becomes ever more viable in a wide range of regions. Therefore, the passenger experience and comfort has become a major concern for operators in the world. Heating, ventilation and air conditioning systems are used in railways to provide passengers thermal comfort and proper air motion. The ventilation system is one of the main elements of the system. Its components include both mechanical and electronic devices. All components are subjected to stress, and this tends to reduce their life cycle; the reliability of the ventilation system must be evaluated to plan and schedule appropriate maintenance activities. The paper evaluates reliability of the ventilation system using fault tree analysis and a reliability block diagram. Both techniques analyse data qualitatively; moreover, with specific algorithms they also provide quantitative results in term of reliability and probability of system failure. The paper compares the two reliability evaluation methods to verify their accuracy.

Reliability evaluation of an HVAC ventilation system with FTA and RBD analysis / Ciani L.; Guidi G.; Galar D.. - ELETTRONICO. - (2020), pp. 1-5. (Intervento presentato al convegno 6th IEEE International Symposium on Systems Engineering, ISSE 2020 tenutosi a Virtual, Vienna; Austria nel 12 October 2020 through 12 November 2020) [10.1109/ISSE49799.2020.9272024].

Reliability evaluation of an HVAC ventilation system with FTA and RBD analysis

Ciani L.;Guidi G.;
2020

Abstract

Rail industry is rapidly developing, and rail becomes ever more viable in a wide range of regions. Therefore, the passenger experience and comfort has become a major concern for operators in the world. Heating, ventilation and air conditioning systems are used in railways to provide passengers thermal comfort and proper air motion. The ventilation system is one of the main elements of the system. Its components include both mechanical and electronic devices. All components are subjected to stress, and this tends to reduce their life cycle; the reliability of the ventilation system must be evaluated to plan and schedule appropriate maintenance activities. The paper evaluates reliability of the ventilation system using fault tree analysis and a reliability block diagram. Both techniques analyse data qualitatively; moreover, with specific algorithms they also provide quantitative results in term of reliability and probability of system failure. The paper compares the two reliability evaluation methods to verify their accuracy.
2020
ISSE 2020 - 6th IEEE International Symposium on Systems Engineering, Proceedings
6th IEEE International Symposium on Systems Engineering, ISSE 2020
Virtual, Vienna; Austria
12 October 2020 through 12 November 2020
Goal 9: Industry, Innovation, and Infrastructure
Ciani L.; Guidi G.; Galar D.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1223159
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