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A novel method to apply Importance and Sensitivity Analysis to multiple Fault-trees
Authors:Sergio Contini  Luciano Fabbri  Vaidas Matuzas
Institution:1. Children''s Center for Cancer and Blood Diseases, Division of Hematology, Oncology, and Blood and Marrow Transplantation, Children''s Hospital Los Angeles, The Norris Comprehensive Cancer Center, Keck School of Medicine, University of Southern California, Los Angeles, CA; and;2. Laboratory of Molecular Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD;1. Chair on Systems Science and the Energy challenge, Fondation EDF, Ecole Centrale Paris and Supelec, Grande Voie des Vignes, F92-295 Chatenay Malabry Cedex, France;2. Politecnico di Milano, Energy Department, Nuclear Section, c/o Cesnef, via Ponzio 33/A , 20133 Milan, Italy;1. University of Medicine and Pharmacy “Iuliu Hatieganu”, Community Medicine Department, Public Health Discipline, Avram Iancu no. 31, Cluj-Napoca, Romania;2. Technical University, Faculty of Automation and Computer Science, Department of Automation, George Baritiu no. 26-28, Cluj-Napoca, Romania;3. Oradea University, Faculty of Medicine and Pharmacy, 1 Decembrie Square no. 10, Oradea, Romania;1. École Centrale de Lyon, Université de Lyon, 36 avenue Guy de Collongue, 69130 Écully, France;2. Airbus Defence and Space, 66 Route de Verneuil, 78133 Les Mureaux Cedex, France;3. LMT, ENS Cachan, Université Paris-Saclay, 61 Avenue du Président Wilson, 94230 Cachan, France;4. FEMTO-ST Applied Mechanics, ENSMM/UBFC, UMR CNRS 6174, 24 chemin de l’Épitaphe, 25000 Besançon, France;1. Department of Chemical and Nuclear Engineering. Universitat Politècnica de València, Valencia, Spain;2. Department of Statistics and Operational Research. Universitat Politècnica de València, Valencia, Spain
Abstract:The unavailability/frequency analysis of critical failure states of complex industrial systems is normally conducted by using the Fault-tree methodology. The number of Fault-trees describing the system is given by the number of system’s failure states (i.e. Top-events). For each Top-event characterised by unacceptable occurrence probability, some design improvements should be made. Importance and Sensitivity Analysis (ISA) is normally applied to identify the weakest parts of the system. By selecting these parts for design improvement, the overall improvement of the system is made more effective. In current practice, ISA is normally applied sequentially to all Fault-trees. The sequence order is subjectively selected by the analyst, based on several criteria as for instance the severity of the associated Top-event. This approach has the clear limitation of not ensuring the identification of the most cost-effective design solution to improve safety. The present paper describes an alternative approach which consists of concurrently analysing all relevant system’s Fault-trees with the objective of overcoming the above limitations and to identify the most cost-effective solution. In addition, the proposed method extends the ISA application to “over-reliable” system functions, if any, on which the reliability/maintainability characteristics of the involved components can be relaxed, with a resulting cost saving. The overall outcome of the analysis is a uniformly protected system, which satisfies the predefined design goals. A point to note is that the overall cost of the analysis of the proposed approach is significantly lower if compared with the sequential case.
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