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How robust is your project? From local failures to global catastrophes:A complex networks approach to project systemic risk

机译:您的项目有多健壮?从局部故障到全球灾难:采用复杂的网络方法应对项目系统性风险

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摘要

Current societal requirements necessitate the effective delivery of complex projects that can do more while using less. Yet, recent large-scale project failures suggest that our ability to successfully deliver them is still at its infancy. Such failures can be seen to arise through various failure mechanisms; this work focuses on one such mechanism. Specifically, it examines the likelihood of a project sustaining a large-scale catastrophe, as triggered by single task failure and delivered via a cascading process. To do so, an analytical model was developed and tested on an empirical dataset by the means of numerical simulation. This paper makes three main contributions. First, it provides a methodology to identify the tasks most capable of impacting a project. In doing so, it is noted that a significant number of tasks induce no cascades, while a handful are capable of triggering surprisingly large ones. Secondly, it illustrates that crude task characteristics cannot aid in identifying them, highlighting the complexity of the underlying process and the utility of this approach. Thirdly, it draws parallels with systems encountered within the natural sciences by noting the emergence of self-organised criticality, commonly found within natural systems. These findings strengthen the need to account for structural intricacies of a project’s underlying task precedence structure as they can provide the conditions upon which large-scale catastrophes materialise.
机译:当前的社会要求必须有效交付复杂的项目,这些项目可以做更多而又用更少的时间。但是,最近的大型项目失败表明,我们成功交付这些项目的能力仍处于起步阶段。可以通过各种故障机制来发现此类故障。这项工作侧重于一种这样的机制。具体来说,它检查了由单个任务失败触发并通过级联过程交付的项目承受大规模灾难的可能性。为此,开发了一个分析模型,并通过数值模拟对经验数据集进行了测试。本文做出了三个主要贡献。首先,它提供了一种方法来确定最有能力影响项目的任务。在执行此操作时,应注意的是,大量任务不会引起级联,而少数任务能够触发出乎意料的大任务。其次,它说明了粗略的任务特征无助于识别它们,突出了基础过程的复杂性和该方法的实用性。第三,它注意到自然系统中常见的自组织临界性的出现,从而与自然科学中遇到的系统具有相似之处。这些发现增加了对项目基本任务优先级结构的结构复杂性进行解释的必要性,因为它们可以为大规模灾难的发生提供条件。

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