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Safety Active Barriers Considering Different Scenarios of Faults in Modern Production Systems

机译:考虑现代生产系统中不同故障场景的安全主动屏障

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Modern production systems, inserted in a context of high competitiveness, in accordance with policies of sustainability and people protection, as well as being integrated with other (smart) systems, makes complexity an inherent factor in any modern production system. Complexity is reflected in hardware, software and labour qualification for both the design and operation of such systems, resulting in the impossibility of (ⅰ) the prediction of all achievable states; (ⅱ) the design of all integrated systems, (ⅲ) non-existence of hardware faults and (ⅳ) absence of human operating errors. Depending on the productive process under analysis, different scenarios, considering the combination of operational errors, faults in field components or even faults in system integration can lead to situations of serious risks for the environment, man and facilities. The bow-tie technique can elicit different scenarios of occurrence of faults and their dynamic evolution, by the results of other risk analysis techniques, such as FMEA, FTA and ETA. The concept of Safety Instrumented Systems, along with the concept of Safety Barriers could be a solution for these problems. This paper proposes the use of Petri nets for formal modeling and the generation of control algorithms, by the simplification of several scenarios of faults fault scenarios listed by a team in the process.
机译:按照可持续性和人员保护政策,在高竞争力的环境下插入现代生产系统,并与其他(智能)系统集成在一起,使得复杂性成为任何现代生产系统的固有因素​​。对于此类系统的设计和运行,其复杂性体现在硬件,软件和劳动资格上,从而导致(ⅰ)无法预测所有可实现状态; (ⅱ)所有集成系统的设计,(ⅲ)不存在硬件故障,以及(ⅳ)没有人为操作错误。根据所分析的生产过程,在不同的情况下,考虑到操作错误,现场组件故障甚至系统集成故障的组合,可能会导致对环境,人员和设施造成严重风险的情况。领结技术可以通过其他风险分析技术(例如FMEA,FTA和ETA)的结果,得出故障发生及其动态演变的不同场景。安全仪表系统的概念以及安全屏障的概念可以解决这些问题。本文通过简化团队在此过程中列出的几种故障场景,提出将Petri网用于形式化建模和控制算法的生成。

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