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System of Systems Hazard Analysis Using HAZOP and FTA for Advanced Quarry Production

机译:使用HAZOP和FTA进行高级采石场生产的系统危害分析系统

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The advanced production systems are composed of separate and distinct systems that operate in both isolation and conjunction, and therefore forms the System-of-Systems (SoS). However, a lot of production systems are classified as safety-critical, for example, due to the interactions between machines and involved materials. From the safety perspective, besides the behaviour of an individual system in SoS, the emergent behaviour of systems that comes from their individual actions and interactions must be considered. An unplanned event or sequence of events in safety-critical production systems may results in human injury or death, damage to machines or the environment. This paper focuses on the construction equipment domain, particularly the quarry site, which solely produce dimension stone and/or gravel products. The principal contribution of this paper is SoS hazard identification and mitigation/elimination for the electric quarry site for which the combination of guide words based collaborative method Hazard and Operability (HAZOP) and Fault Tree Analysis (FTA) are used. The published studies on HAZOP and FTA techniques have not considered the emergent behaviours of different machines. The applicability of particular techniques is demonstrated for individual and emergent behaviours of machines used in the quarry operations, such as autonomous hauler, wheel loader, excavator and crusher.
机译:先进的生产系统由独立且不同的系统组成,这些系统以隔离和结合的方式运行,因此形成了系统系统(SoS)。但是,例如,由于机器和相关材料之间的相互作用,许多生产系统被归类为对安全至关重要的系统。从安全性的角度来看,除了SoS中单个系统的行为外,还必须考虑系统的个别行为和交互所产生的紧急行为。安全关键型生产系统中的意外事件或事件序列可能导致人身伤害或死亡,甚至损坏机器或环境。本文重点介绍仅生产尺寸石材和/或砾石产品的建筑设备领域,尤其是采石场。本文的主要贡献是对采石场的SoS危害识别和缓解/消除,结合了基于指导词的危险与可操作性(HAZOP)和故障树分析(FTA)的结合。关于HAZOP和FTA技术的已发表研究并未考虑不同机器的新兴行为。在采石场作业中使用的机器(例如自动搬运机,轮式装载机,挖掘机和破碎机)的个别和紧急情况证明了特定技术的适用性。

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