Outro Revisado por pares

Bibliography

2013; Wiley; Linguagem: Inglês

10.1002/9781118790021.biblio

ISSN

1539-6924

Autores

Jean‐Marie Flaus,

Tópico(s)

Software Reliability and Analysis Research

Resumo

Free Access Bibliography Jean-Marie Flaus, Jean-Marie FlausSearch for more papers by this author Book Author(s):Jean-Marie Flaus, Jean-Marie FlausSearch for more papers by this author First published: 30 July 2013 https://doi.org/10.1002/9781118790021.biblio AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onFacebookTwitterLinked InRedditWechat Bibliography [AIC 01] AICHE, Layer of Protection Analysis, CCPS, 2001. [ALE 02] Ale B., “Risk assessment practices in the Netherlands”, Safety Science, vol. 40, pp. 105– 126, 2002. [ANN 67] Annett J., Duncan K., “Task analysis and training design”, Occupational Psychology, vol. 41, pp. 211– 221, 1967. [ANN 00] Annett J., Stanton N., Task Analysis, Taylor & Francis, London, 2000. [AVE 07] Aven T., “A unified framework for risk and vulnerability analysis covering both safety and security”, Reliability Engineering and System Safety, vol. 92, no. 6, pp. 745– 754, 2007. [AVE 10] Aven T., Misconception of Risk, Wiley, London, 2010. [AYY 01] Ayyub B., Elicitation of Expert Opinions for Uncertainty and Risks, CRC Press, NewYork, 2001. [BAB 96] Baber C., Stanton N., “Human error identification techniques applied to public technology: predictions compared with observed use”, Applied Ergonomics, vol. 27, no. 2, pp. 119– 131, 1996. [BEL 09] Bell J., Holroyd J., Review of human reliability assessment methods, RR679, report, Health and Safety Executive, London, 2009. [BIR 69] Birnbaum Z.W., On the importance of different components in a multicomponent system, P.R. Krishnaiah (ed.), Multivariate Analysis II, New York: Academic Press, pp. 581– 592, 1969. [BIR 96] Bird F., Germain G., Practical Loss Control Leadership, Det Norske Veritas Inc., Loganville, GA, 1996. [BRA 03] Brandenbug H., Wojtyna J., L'approche processus Mode d'emploi, Editions d'Organisation, Paris, 2003. [CHA 06] Charbonnier J., Le risk management: Méthodologie et pratiques, Editions L'argus de l'assurance, Paris, 2006. [COU 11] Council N. R., Assessment of Approaches for Using Process Safety Metrics at the Blue Grass and Pueblo Chemical Agent Destruction Pilot Plants, The National Academies Press, Washington, DC, 2011. [COX 08] Cox L., “What's wrong with risk matrices”, Risk Analysis, vol. 28, no. 2, pp. 497– 512, 2008. [DAR 12] Darsa J.-D., 365 risques en entreprise: Une année en risk management, Gereso, Le Mans, 2012. [DEL 06] Delvosalle C., Fievez C., Pipart A., et al., “ARAMIS project: a comprehensive methodology for the identification of reference accident scenarios in process industries”, Journal of Hazardous Materials, vol. 130, no. 3, pp. 200– 219, 2006. [DEN 98] Denis H., Comprendre et gérer les risques sociotechnologiques majeurs, Ed. de l'Ecole Polytechnique de Montréal, Montréal, 1998. [DEU 08] Deust C., Joly C., Lenoble C., Estimation des aspects probabilistes-Guide pour l'intégration de la probabilité dans les études de dangers, report, DRA-08-95321-04393B, INERIS, 2008. [DOD 12] DoD, “ System safety program requirements MIL-STD-882”, 2012. [DOW 98] Dowell A.M., “Layer of protection analysis for determining safety integrity level”, ISA Transactions, vol. 37, pp. 155– 165, 1998. [DUG 92] Dugan J., Bavuso S., Boyd M., “Dynamic fault-tree models for fault-tolerant computer systems”, IEEE Transactions on Reliability, vol. 41, no. 3, pp. 363– 377, 1992. [EMB 86] Embrey D.E., “ SHERPA: a systematic human error reduction and prediction approach”, International Topical Meeting on Advances in Human Factors in Nuclear Power Systems, Knoxville, TN, pp. 184– 193, 1986. [ERI 97] Eriksson M., “A principal exposition of Jean-Louis Le Moigne's systemic theory”, Cybernetics and Human Knowing, vol. 4, no. 2–3, pp. 1– 42, 1997. [ERI 05] Ericson C.A., Hazard Analysis Techniques for System Safety, Wiley, Hoboken, NJ, 2005. [FLA 01] Flaus J., “ Une formalisation explicite de l'état et des flux dans la méthode MOSAR”, Congrès Français de Génie des Procédés, Nancy, France, 17– 19 October 2001. [FLA 08] Flaus J.M., “A model-based approach for systematic risk analysis”, Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability, vol. 222, no. 1, pp. 79– 83, 2008. [FLE 75] Fleming K.N., “ A reliability model for common mode failures in redundant safety systems”, Proceedings of the 6th Annual Pittsburgh Conference on Modeling and Simulation, General Atomic Report A 13284, 23– 25, 1975. [FRE 06] Frederickson A., Layer of protection analysis, report, available at www.safetyusersgroup.com, May 2006. [FUJ 04] Fujita Y., Hollnagel E., “Failures without errors: quantification of context in HRA”, Reliability Engineering and System Safety, vol. 83, no. 2, pp. 145– 151, 2004. [FUM 01] Fumey M., Méthode d'Evaluation des Risques Agrégés: application au choix des investissements de renouvellement d'installations, PhD Thesis, INPT, Industrial Systems, Toulouse, 2001. [GAR 99] Gardes L., Debray B., Londiche H., “ Méthodologie d'analyse des risques dans les PME/PMI”, Qualita 99, 3e congrès international pluridisciplinaire qualité et surété de fonctionnement, Besançon, France, 1999. [GNE 12] Gnesi S., Margaria T., Formal Methods for Industrial Critical Systems: A Survey of Applications, Wiley, Hoboken, NJ, 2012. [GOB 10] Goble W., Control Systems Safety Evaluation and Reliability, 3rd ed., Resources for measurement and control series, ISA. The Instrumentation, Systems, and Automation Society, Research Triangle Park, NC, 2010. [GRA 05] Graham P., Council I.R.G., Risk governance: Towards an Integrative Approach, International Risk Governance Council, http://www.irgc.org/IMG/pdf/IRGC_WP_No_1_Risk_Governance_reprinted_version_.pdf, Geneva, 2005. [GRU 05] Gruhn P., Cheddie H., Safety Instrumented Systems: Design, Analysis, and Justification, ISA, The Instrumentation, Systems, and Automation Society, Research Triangle Park, NC, 2005. [HAD 73] Haddon W., “Energy damage and the ten counter-measure strategies”, Human Factors Journal, vol. 13, no. 4, pp. 321– 331, 1973. [HEL 04] Helton J., Oberkampf W., “Alternative representations of epistemic uncertainty”, Reliability Engineering and Systems Safety, vol. 85, 2004. [HOL 93] Hollnagel E., Human Reliability Analysis: Context and Control, Academic Press, New York, 1993. [HOL 98] Hollnagel E., Cognitive Reliability and Error Analysis Method: CREAM, Elsevier, Oxford, 1998. [HOL 04] Hollnagel E., Barriers and Accident Prevention, Ashgate, Aldershot, 2004. [HOL 11] Hollnagel E., PariÈs J., Woods D., Resilience Engineering in Practice: A Guidebook, Ashgate Studies in Resilience Engineering, Ashgate, 2011. [HSE 78] HSE, The first canvey report, canvey: an investigation of potential hazards from operations in the canvey Island/ Thurrock Area, report, HMSO, London, 1978. [HSE 01] HSE, Reducing risks, protecting people: HSE's decision making process, report, HMSO, London, 2001. [ICS 09] ICSI, Fréquence des événements iniateurs d'accidents, report, Les cahiers de la sécurité industrielle, 2009. [IEC 10a] IEC, “ IEC 61508 functional safety of electrical/electronic/programmable electronic safety-related systems, edition 2 (2010), part 2”, 2010. [IEC 10b] IEC, “ IEC 61508 functional safety of electrical/electronic/programmable electronic safety-related systems, edition 2 (2010), part 6, Annex D”, 2010. [INE 06] INERIS, Formalisation du savoir et des outils dans le domaine des risques majeurs - Omega 7, report, 2006. [INE 08] INERIS, Evaluation des barrières techniques de sécurité - Omega 10, report, 2008. [INE 09] INERIS, Démarche d'évaluation des Barrières Humaines de Sécurité - Omega 20, report, 2009. [ISO 99] ISO, Guide ISO/CEI 51: safety aspects - guidelines for their inclusion in standards, 1999. [ISO 09] ISO, ISO 31000:2009, risk management – principles and guidelines, 2009. [JON 03] Jonkman S., van Gelder P., Vrijling J., “An overview of quantitative risk measures for loss of life and economic damage”, Journal of Hazardous Materials, vol. 99, no. 1, pp. 1– 30, 2003. [KAP 81] Kaplan S., Garric J., “On the quantitative definition of risk”, Risk Analysis, vol. 1, pp. 11– 27, 1981. [KAR 10] Karagiannis G., Piatyszek E., Flaus J., “Industrial emergency planning modeling: a first step towards a robustness analysis”, Journal of Hazardous Materials, vol. 181, pp. 324– 334, 2010. [KIR 97] Kirwan B., Kennedy R., Taylor-Adams S., et al., “The validation of three human reliability quantification techniques, THERP, HEART and JHEDI: Part II - results of validation exercise.”, Applied Ergonomics, vol. 28, no. 1, pp. 17– 25, 1997. [KLE 06] Kletz T.A., Hazop and Hazan, Taylor & Francis, London, 2006. [LAW 74] Lawley H.G., “Operability studies and hazard analysis”, Chemical Engineering Progress AIChE, vol. 70, no. 4, 1974. [LEM 94] Lemoigne J., La théorie du système général: théorie de la modélisation, PUF, Paris, 1994. [LES 02] Lesbats M., Chaabane S., Dutuit Y., L'enseignement de la méthode “MADS-MOSAR” l'IUT Bordeaux 1, report, Journées Retour d'Expérience de la méthode d'analyse de risques MADS-MOSAR, Grenoble, 2002. [LIN 06] Lindley D., Understanding Uncertainty, Wiley, Hoboken, NJ, 2006. [MEE 10] MEEDDM, “ Circulaire du 10/05/10 récapitulant les règles méthodologiques applicables aux études de dangers, l'appréciation de la démarche de réduction du risque la source et aux plans de prévention des risques technologiques (PPRT) dans les installations classées en application de la loi du 30 juillet 2003”, BO no. 2010/12, 10 July, 2010. [MEE 12] MEEDDM, Inventaire des accidents technologiques 2012, report, BARPI, 2012. [NUR 75] NUREG/74/014, The WASH 400 report: reactor safety, an assessment of accident risks in US commercial nuclear power plant, report, US/NRC, 1975. [NUR 07] NUREG/CR-6268, Common-cause failure database and analysis system, report, U.S. Nuclear Regulatory Commission, Washington, DC, 2007. [OHS 09] OHSAS, OHSAS 18001 and 18002: Guidance for implementation of the OHSAS, report, ISO, London, 2009. [PER 99] Perrow C., Normal Accidents: Living with High-Risk Technologies, Basic Books, New York, 1999. [PER 07] Perilhon P., La Gestion des risques: Méthode MADS-MOSAR II, Editions Demos, Paris, 2007. [POU 98] Poucet A., Human factors reliability benchmark exercise, report, European Commission, 1998. [RAS 83] Rasmussen J., “Skills, rules, knowledge: signals, signs and symbols and other distinctions in human performance models”, IEEE Transactions on Systems, Man and Cybernetics, vol. 13, pp. 257– 267, 1983. [REA 90] Reason J., Human Error, Cambridge University Press, Cambridge, 1990. [REA 97] Reason J., Managing the risks of organizational Accidents, Ashgate, 1997. [REI 99] Reid S., “Perception and communication of risk, and the importance of dependability”, Structural Safety, vol. 21, no. 4, pp. 373– 384, 1999. [REN 92] Renn O., Burns W.J., Kasperson J.X., et al., “The social amplification of risk: theoretical foundations and empirical applications”, Journal of Social Issues, vol. 48, no. 4, pp. 137– 160, 1992. [REN 98] Renn O., “The role of risk perception for risk management”, Reliability Engineering and System Safety, vol. 59, no. 1, pp. 49– 62, 1998. [ROB 90] Roberts K.H., “Some characteristics of one type of high reliability organization”, Organization Science, vol. 1, no. 2, 1990. [ROS 77] Ross D.T., “Structured analysis: a language for communicating ideas”, IEEE Transactions on Software Engineering, vol. SE 3:1, 1977. [SAL 03] Salmon P., Stanton N., Young M., et al., “ Predicting design induced pilot error: a comparison of SHERPA, human error HAZOP, HEIST and HET, a newly developed aviation specific HEI method”, Human-Centred Computing–Cognitive, Social and Ergonomic Aspects, Lawrence Erlbaum Associates, London, 2003. [SAL 06] Salvi O., Debray B., “A global view on ARAMIS, a risk assessment methodology for industries in the framework of the SEVESO II directive”, Journal of Hazardous Materials, vol. 130, pp. 187– 199, 2006. [SAW 87] Sawin A., Accident sequence evaluation program (ASEP), report, NUREG/CR-4772, US Nuclear Regulatory Commission, Washington, DC, 1987. [SCH 01] Schabe H., “ Different principles used for determination of tolerable hazard rates”, Materials of the World Congress on Railway Research, Cologne, Germany, 2001. [SCH 09] Schubert U., Dijkstra J.J., “Working safely with foreign contractors and personnel”, Safety Science, vol. 47, no. 6, pp. 786– 793, 2009. [SHA 07] Shappell S., Detwiler C., Holcomb K., et al., “Human error and commercial aviation accidents: an analysis using the human factors analysis and classification system”, Human Factors: The Journal of the Human Factors and Ergonomics Society, vol. 49, no. 2, pp. 227– 242, April 2007. [SHO 12] Shouhed D., Gewertz B., Wiegmann D., et al., “Integrating human factors research and surgery: a review”, Archives of Surgery, vol. 147, no. 12, pp. 1141– 1146, 2012. [SIM 96] Simon H.A., The Sciences of the Artificial, MIT Press, Cambridge, MA, 1996. [SKL 06a] Sklet S., “Safety barriers: definition, classification, and performance”, Journal of Loss Prevention in the Process Industries, vol. 19, no. 5, pp. 494– 506, 2006. [SKL 06b] Sklet S., “Hydrocarbon releases on oil and gas production platforms: release scenarios and safety barriers”, Journal of Loss Prevention in the Process Industries, vol. 19, no. 5, pp. 481– 493, 2006. [SLO 01] Slovic P., “The risk game”, Journal of Hazardous Materials, vol. 86, no. 1–3, pp. 17– 24, 2001. [SMI 00] Smith D., Reliability, Maintainability and Risk, Elsevier Science, London, 2000. [SOM 10] Sommerville I., Software Engineering, 9th ed., Pearson, Redwood City, CA, 2010. [STA 99] Stanton N.A., Young M., Guide to Methodology in Ergonomics: Designing for Human Use, Taylor & Francis, London, 1999. [SWA 83] Swain A., Guttmann H., Handbook of human reliability analysis with emphasis on nuclear power plant applications, report NUREG/CR-1278, USNRC, 1983. [SWA 87] Swain A., Accident sequence evaluation program: human reliability analysis procedure, report NUREG/CR-4772, Nuclear Regulatory Commission, Washington, DC, 1987. [VIL 97] Villemeur A., Sûreté de fonctionnement des systèmes industriels: fiabilité - facteurs humains - informatisation, Collection de la Direction des Etudes et Recherches d'Electricité de France, Eyrolles, 1997. [WEI 39] Weibull W., “ A statistical theory of the strength of materials”, Ingeniörsvetenskapsakademiens handlingar, Generalstabens litografiska anstalts förlag, http://www.barringer1.com/wa_files/Weibull-1939-Strength-of-Materials.pdf, 1939. [WEI 08] Weilkiens T., Systems Engineering with SysML/UML, Elsevier Science, London, 2008. [WIL 58] Williams H., “ Reliability evaluation of the human component in man–machine systems”, Electrical Manufacturing, pp. 78– 82, 1958. [WIL 85] Williams J., “ HEART - A proposed method for achieving high reliability in process operation by means of human factors engineering technology”, Proceedings of the Symposium on the Achievement of Reliability in Operating Plant, Safety and Reliability Society, Southport, NC, 1985. [WOO 94] Woods D., Johannesen L., Cook R., Sarter N., Behind human error: cognitive systems, computers and hindsight, report, CSERIAC, The Ohio State University, 1994. Risk Analysis: Socio-technical and Industrial Systems ReferencesRelatedInformation

Referência(s)
Altmetric
PlumX