Evaluating the safety integrity of safety systems for all values of the demand rate

被引:0
|
作者
Eisinger, S. [1 ]
Oliveira, L.F. [2 ]
机构
[1] DNV GL, Oslo, Norway
[2] DNV GL Rio de Janeiro, Brazil
关键词
Asymptotic equation - Component failures - Continuous demand - Demand rates - Individual components - Repair schemes - Safety integrity - System hazards;
D O I
暂无
中图分类号
学科分类号
摘要
The knowledge about the possible influence of demands on the reliability of safety systems comes from a long way back in time. In IEC 61508 this has been taken care of by indicating two different ways to evaluate the safety integrity of SIS: low demand and high demand mode. The main focus of this paper lies in the intermediate and high demand modes. We investigate the effect of the demand on the system hazard rate when the failed states of individual components are detected during a demand. Component failures can then be repaired before the occurrence of the failure of the safety system. The results of this paper show that the system hazard rate exhibits an unexpected behaviour in the intermediate to high demand region. It is also shown that depending on the SIS repair scheme, the use of Probability Failure per Hour (PFH) based on the equations for a continuous demand as proposed in IEC 61508 leads to very conservative results in the high and continuous demand regions. New asymptotic equations are proposed to evaluate the PFH of kooN systems for all values of the demand rate, together with new associated rules for discrimination of the demand regions. © 2021 Elsevier Ltd
引用
收藏
相关论文
共 50 条
  • [31] Situational awareness through the interface: Evaluating safety in safety-critical control systems
    Sandom, C
    PEOPLE IN CONTROL, 1999, (463): : 119 - 124
  • [32] Automated control systems for the safety integrity levels 3 and 4
    Halang, WA
    NINTH IEEE INTERNATIONAL WORKSHOP ON OBJECT-ORIENTED REAL-TIME DEPENDABLE SYSTEMS, 2004, : 35 - 42
  • [33] Inspections on safety management systems and integrity controls at "Seveso" facilities
    Bragatto, P.
    Pittigho, P.
    Geraci, D.
    Pichini, E.
    SAFETY AND RELIABILITY FOR MANAGING RISK, VOLS 1-3, 2006, : 1163 - +
  • [34] Automated control systems for the safety integrity levels 3 and 4
    Halang, Wolfgang A.
    COMPUTER SYSTEMS SCIENCE AND ENGINEERING, 2009, 24 (01): : 3 - 14
  • [35] Apportionment of safety integrity levels in complex electronically controlled systems
    Schäbe, H
    SAFETY AND RELIABILITY, VOLS 1 AND 2, 2003, : 1395 - 1400
  • [36] Advanced PFH Calculations for Safety Integrity Systems with High Diagnostic
    Holub, P.
    Boercsoek, J.
    2009 XXII INTERNATIONAL SYMPOSIUM ON INFORMATION, COMMUNICATION AND AUTOMATION TECHNOLOGIES, 2009, : 69 - 76
  • [37] MODELLING OF HAZARDS EFFECT ON SAFETY INTEGRITY OF OPEN TRANSMISSION SYSTEMS
    Rastocny, Karol
    Franekova, Maria
    Holecko, Peter
    Zolotova, Iveta
    COMPUTING AND INFORMATICS, 2016, 35 (02) : 470 - 496
  • [38] Safety instrumented functions and safety integrity levels (SIL)
    Stavrianidis, P
    Bhimavarapu, K
    ISA TRANSACTIONS, 1998, 37 (04) : 337 - 351
  • [39] Modelling of the Diagnostics Influence on Safety Integrity of Safety Function
    Rastocny, Karol
    Zdansky, Peter
    12TH INTERNATIONAL CONFERENCE ELEKTRO 2018, 2018,
  • [40] Safety instrumented functions and safety integrity levels (SIL)
    Factory Mutual Research Corp, Norwood, MA, United States
    ISA Trans, 4 (337-351):