首页> 外文会议>Asian International Workshop on Advanced Reliability Modeling(AIWARM 2004); 20040826-27; Hiroshima(JP) >SAFETY-INTEGRITY LEVEL MODEL FOR SAFETY-RELATED SYSTEMS IN DYNAMIC DEMAND STATE
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SAFETY-INTEGRITY LEVEL MODEL FOR SAFETY-RELATED SYSTEMS IN DYNAMIC DEMAND STATE

机译:动态需求状态下与安全相关的系统的安全完整性水平模型

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Recently computer systems have been widely applied to safety-related systems for achievement of safety functions. This general trend forced IEC to compile IEC 61508 as a standard related to functional safety of electrical/electronic/programmable electronic safety-related systems, i.e., E/E/PE SRS (SRS). In accordance with the standard, an SRS is specified with its safety function(s) and safety integrity level(s) (SIL) and the SILs to be allocated to the SRS are specified with four levels of safety integrity. The standard requires assessing the risk reduction achieved by SRS using appropriate probabilistic techniques for allocation of SILs to SRS. However, the relationships among SILs, operation modes and hazardous event rate are not always cleared up yet. This paper presents a new Markov Model to describe causation of hazardous events in the overall system composed of equipment under control (EUC), EUC control system (BCS) and SRS. The SRS is assumed to implement a safety function in a dynamic demand state and assumed to have no automatic self-diagnosis functions. Then, the relationship among a dangerous undetected failure of SRS, demands for actuation of SRS and hazardous events brought about in the overall system is formulated based on the model. Moreover, new demand modes of operation and estimations of hazardous event rate are proposed for allocation of SILs to SRS.
机译:最近,计算机系统已被广泛应用于与安全相关的系统,以实现安全功能。这种普遍趋势迫使IEC将IEC 61508编译为与电气/电子/可编程电子安全相关系统(即E / E / PE SRS(SRS))的功能安全有关的标准。根据该标准,使用其安全功能和安全完整性等级(SIL)来指定SRS,并使用四个安全完整性等级来指定要分配给SRS的SIL。该标准要求评估使用适当的概率技术将SIL分配给SRS所导致的SRS降低的风险。但是,SIL,操作模式和危险事件发生率之间的关系尚未始终被清除。本文提出了一个新的马尔可夫模型,以描述由受控设备(EUC),EUC控制系统(BCS)和SRS组成的整个系统中的危险事件的因果关系。假定SRS在动态需求状态下实现安全功能,并且假定不具有自动自诊断功能。然后,基于该模型建立了危险的未检测到的SRS故障,对SRS的致动要求和整个系统中引起的危险事件之间的关系。此外,为将SIL分配给SRS,提出了新的需求操作模式和危险事件发生率估算。

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