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Modelling indirect interactions during failure spreading in a project activity network

机译:在项目活动网络中的故障传播期间建模间接交互

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Spreading broadly refers to the notion of an entity propagating throughout a networked system via its interacting components. Evidence of its ubiquity and severity can be seen in a range of phenomena, from disease epidemics to financial systemic risk. In order to understand the dynamics of these critical phenomena, computational models map the probability of propagation as a function of direct exposure, typically in the form of pairwise interactions between components. By doing so, the important role of indirect interactions remains unexplored. In response, we develop a simple model that accounts for the effect of both direct and subsequent exposure, which we deploy in the novel context of failure propagation within a real-world engineering project. We show that subsequent exposure has a significant effect in key aspects, including the: (a) final spreading event size, (b) propagation rate, and (c) spreading event structure. In addition, we demonstrate the existence of ‘hidden influentials’ in large-scale spreading events, and evaluate the role of direct and subsequent exposure in their emergence. Given the evidence of the importance of subsequent exposure, our findings offer new insight on particular aspects that need to be included when modelling network dynamics in general, and spreading processes specifically.
机译:扩展广泛是指通过其交互组件在整个网络系统中传播的实体的概念。可以在一系列现象,从疾病流行病到金融全身风险的现象中可以看出它的无处不经劲和严重程度的证据。为了了解这些关键现象的动态,计算模型将传播的概率映射为直接曝光的函数,通常以组件之间的成对相互作用的形式。通过这样做,间接互动的重要作用仍未开发。作为响应,我们开发了一个简单的模型,用于直接和随后的曝光的效果,我们在真实世界工程项目中的故障传播中部署了新颖的曝光。我们表明随后的曝光在关键方面具有显着影响,包括:(a)最终扩散事件大小,(b)传播速率和(c)传播事件结构。此外,我们展示了大规模传播事件中“隐藏影响力”的存在,并评估直接和随后的暴露在其出现中的作用。鉴于随后曝光的重要性的证据,我们的调查结果就需要在建模网络动态时需要包括的特定方面,并具体传播流程。

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