BS PD CLC TR 50126-2-2007 Railway applications The specification and demonstration of Reliability Availability Maintainability and Safety (RAMS) Part 2 Guide to the appli.pdf
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1、PUBLISHED DOCUMENT PD CLC/TR 50126-2:2007 Railway applications The specification and demonstration of Reliability, Availability, Maintainability and Safety (RAMS) Part 2: Guide to the application of EN 50126-1 for safety ICS 45.020 PD CLC/TR 50126-2:2007 This Published Document was published under t
2、he authority of the Standards Policy and Strategy Committee on 30 April 2007 BSI 2007 ISBN 978 0 580 50488 4 National foreword This Published Document was published by BSI. It is the UK implementation of CLC/TR 50126-2:2007. The UK participation in its preparation was entrusted to Technical Committe
3、e GEL/9, Railway electrotechnical applications. A list of organizations represented on GEL/9 can be obtained on request to its secretary. This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. Amendments issued sinc
4、e publication Amd. No. Date Comments TECHNICAL REPORT CLC/TR 50126-2 RAPPORT TECHNIQUE TECHNISCHER BERICHT February 2007 CENELEC European Committee for Electrotechnical Standardization Comit Europen de Normalisation Electrotechnique Europisches Komitee fr Elektrotechnische Normung Central Secretaria
5、t: rue de Stassart 35, B - 1050 Brussels 2007 CENELEC - All rights of exploitation in any form and by any means reserved worldwide for CENELEC members. Ref. No. CLC/TR 50126-2:2007 E ICS 45.020 English version Railway applications - The specification and demonstration of Reliability, Availability, M
6、aintainability and Safety (RAMS) - Part 2: Guide to the application of EN 50126-1 for safety Applications ferroviaires - Spcification et dmonstration de la fiabilit, de la disponibilit, de la maintenabilit et de la scurit (FDMS) - Partie 2:Guide pour lapplication de lEN 50126-1 la scurit Bahnanwendu
7、ngen - Spezifikation und Nachweis der Zuverlssigkeit, Verfgbarkeit, Instandhaltbarkeit, Sicherheit (RAMS) - Teil 2: Leitfaden zur Anwendung der EN 50126-1 fr Sicherheit This Technical Report was approved by CENELEC on 2007-01-22. CENELEC members are the national electrotechnical committees of Austri
8、a, Belgium, Bulgaria, Cyprus, the Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, the Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland and the United Kingdom. For
9、eword The European Standard EN 50126-1:1999, which was prepared jointly by the Technical Committees CENELEC TC 9X, Electric and electronic applications for railways, and CEN TC 256, Railway applications, under mode 4 co-operation, deals with the specification and demonstration of Reliability, Availa
10、bility, Maintainability and Safety (RAMS) for railway applications. A guide to the application of EN 50126-1 for safety of railway systems (this CLC/TR 50126-2) and a guide for the application to EN 50126-1 for rolling stock RAM (CLC/TR 50126-3:2006) have been produced to form informative parts of E
11、N 50126-1:1999. Whilst this CLC/TR 50126-2 is applicable to all railway systems, including rolling stock, CLC/TR 50126-3:2006 is applicable to rolling stock RAM only. This Technical Report, which was prepared by WG 8 of the Technical Committee CENELEC TC 9X, forms an informative part of EN 50126-1:1
12、999 and contains guidelines for the application of EN 50126-1 for the safety of railway systems. The text of the draft was submitted to the vote and was approved by CENELEC as CLC/TR 50126-2 on 2007-01-22. - 2 CLC/TR 50126-2:2007Contents Introduction.8 1 Scope.9 2 References11 3 Definitions and abbr
13、eviations.12 3.1 Guidance on the interpretation of terms and definitions used in EN 50126-1 .12 3.2 Additional safety terms .15 3.3 Abbreviations17 4 Guidance on bodies/entities involved and concepts of system hierarchy and safety.17 4.1 Introduction.17 4.2 Bodies/entities involved in a system.18 4.
14、3 Concepts of system hierarchy18 4.3.1 Rail transport system environment and system hierarchy 19 4.4 Safety concepts19 4.4.1 Hazard perspective .19 4.4.2 Risk21 4.4.3 Risk normalising 22 5 Generic risk model for a typical railway system and check list of common functional hazards 23 5.1 Introduction
15、.23 5.2 Generic risk model .23 5.3 Risk assessment process.24 5.3.1 Introduction24 5.3.2 Generic process 24 5.4 Application of the risk assessment process .28 5.4.1 Depth of analysis.29 5.4.2 Preliminary hazard analysis 29 5.4.3 Qualitative and Quantitative assessment30 5.4.4 Use of historical data.
16、31 5.4.5 Sensitivity analysis 32 5.4.6 Risk assessment during life cycle phases.32 5.5 Check-list of common functional hazards and hazard identification 33 5.5.1 Introduction33 5.5.2 Hazard grouping structures.34 5.5.3 Check-list of Hazards 35 6 Guidance on application of functional safety, function
17、al safety requirements and SI targets, risk apportionment and application of SILs36 6.1 Introduction.36 6.2 Functional and technical safety36 6.2.1 System characteristics 36 6.2.2 Railway system structure and safety requirements 37 6.2.3 Safety related functional and technical characteristics and ov
18、erall system safety .37 3 CLC/TR 50126-2:20076.3 General considerations for risk apportionment 38 6.3.1 Introduction38 6.3.2 Approaches to apportionment of safety targets 38 6.3.3 Use of THRs40 6.4 Guidance on the concept of SI and the application of SILs .40 6.4.1 Safety integrity.40 6.4.2 Using SI
19、 concept in the specification of safety requirements42 6.4.3 Link between THR and SIL .46 6.4.4 Controlling random failures and systematic faults to achieve SI.46 6.4.5 Use and misuse of SILs 49 6.5 Guidance on fail-safe systems .51 6.5.1 Fail-safe concept .51 6.5.2 Designing fail-safe systems.52 7
20、Guidance on methods for combining probabilistic and deterministic means for safety demonstration 54 7.1 Safety demonstration .54 7.1.1 Introduction54 7.1.2 Detailed guidance on safety demonstration approaches54 7.1.3 Safety qualification tests65 7.2 Deterministic methods65 7.3 Probabilistic methods
21、.65 7.4 Combining deterministic and probabilistic methods.65 7.5 Methods for mechanical and mixed (mechatronic) systems 66 8 Guidance on the risk acceptance principles.67 8.1 Guidance on the application of the risk acceptance principles 67 8.1.1 Application of risk acceptance principles 67 8.1.2 The
22、 ALARP principle.68 8.1.3 The GAMAB (GAME) principle69 8.1.4 Minimum Endogenous Mortality (MEM) safety principle (EN 50126-1, Clause D.3) 70 9 Guidance on the essentials for documented evidence or proof of safety (Safety case) .71 9.1 Introduction.71 9.2 Safety case purpose.72 9.3 Safety case scope
23、72 9.4 Safety case levels 72 9.5 Safety case phases 74 9.6 Safety case structure75 9.7 Safety assessment .78 9.7.1 The scope of the safety assessor .78 9.7.2 The independence of a safety assessor .78 9.7.3 Competence of the safety assessor79 9.8 Interfacing with existing systems79 9.8.1 Systems deve
24、loped according to the EN 50126-1 process 79 9.8.2 System proven in use79 9.8.3 Unproven systems.80 4 CLC/TR 50126-2:20079.9 Criteria for cross acceptance of systems .80 9.9.1 The basic premise.80 9.9.2 The framework 81 Annex A (informative) Steps of risk assessment process82 A.1 System definition 8
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