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Research on Architectural Constraints Analysis and an Improvement Method for Safety Instrumented Systems

机译:安全仪表系统的体系结构约束分析及改进方法研究

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The problems of architectural constraints should be considered when verifying the safety integrity level (SIL), since over optimistic failure rate data can result in a higher SIL without a proper redundancy design. Firstly, based on the related parameters of architectural constraints, the requirements of architectural constraints between IEC61508 (IEC, International Electrotechnical Commission) and IEC61511 were analyzed and compared in this paper, and the particular applications in practice were pointed out. Secondly, the shortages of the IEC61508 are proposed, and an improvement principle is presented as follows. The combined different types of elements or subsystems are considered as type B, Then, according to the SIL of elements or subsystems of type B and parallel hardware fault tolerance, the SIL of a system is determined. The SIL of the combined same element or subsystem with different safety failure factor (SFF) is determined according to the SIL of subsystem with lower SFF and parallel hardware fault tolerance. Finally, the influence on verification of SIL by the uncertainty of SFF is discussed. The improved method for the architectural constraints can carry out the verification of architectural constraints for SIL more accurately, make up for the deficiency of the PFD
机译:验证安全完整性等级(SIL)时,应考虑体系结构约束的问题,因为过度乐观的故障率数据可能导致更高的SIL,而没有适当的冗余设计。首先,根据体系结构约束的相关参数,对IEC61508(IEC,国际电工委员会)和IEC61511之间的体系结构约束要求进行了分析和比较,指出了其在实际中的具体应用。其次,提出了IEC61508的不足之处,并提出了改进原则。将组合在一起的不同类型的元素或子系统视为B型,然后,根据类型B的元素或子系统的SIL和并行硬件容错,确定系统的SIL。根据具有较低SFF和并行硬件容错能力的子系统的SIL确定组合的相同元素或具有不同安全故障因子(SFF)的子系统的SIL。最后,讨论了SFF不确定性对SIL验证的影响。改进的体系结构约束方法可以更准确地对SIL进行体系结构约束的验证,弥补PFD的不足。

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