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A Monte Carlo simulation approach to the availability assessment of multi-state systems with operational dependencies

机译:蒙特卡罗仿真方法用于评估具有操作依赖性的多状态系统的可用性

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This paper deals with multi-state systems (MSS), whose performance can settle on different levels, e.g. 100%, 80%, 50% of the nominal capacity, depending on the operative conditions of the constitutive multi-state elements. Examples are manufacturing, production, power generation and gas and oil transportation systems. Often in practice, MSS are such that operational dependencies exist between the system state and the state of its components. For example, in a production line of nodal series structure, with no buffers between the nodes, if one of the nodes throughput changes (e.g. switches from 100% to 50% due to a deterministic or stochastic transition of one of its components), the other nodes must be reconfigured (i.e. their components must deterministically change their states) so as to provide the same throughput. In this paper, we present a Monte Carlo simulation technique which allows modelling the complex dynamics of multi-state components subject to operational dependencies with the system overall state. A correlation method is tailored to model the automatic change of state of the relevant components following a change in one of the system nodes. The proposed technique is verified on a simple case study of literature.
机译:本文讨论的是多状态系统(MSS),其性能可以稳定在不同的级别,例如取决于本构多态元件的工作条件,为标称容量的100%,80%,50%。例如制造,生产,发电以及天然气和石油运输系统。在实践中,MSS通常使系统状态与其组件状态之间存在操作依赖性。例如,在节点系列结构的生产线中,节点之间没有缓冲区,如果节点之一的吞吐量发生变化(例如,由于其组件之一的确定性或随机过渡,其吞吐量从100%切换到50%),其他节点必须重新配置(即,它们的组件必须确定性地更改其状态),以便提供相同的吞吐量。在本文中,我们提出了一种蒙特卡洛(Monte Carlo)仿真技术,该技术可以对多状态组件的复杂动力学建模,这些组件受系统整体状态的操作依赖性影响。定制了一种相关方法,以在系统节点之一发生更改后对相关组件的状态自动更改进行建模。一项简单的文献案例研究验证了所提出的技术。

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