College of Hydraulic & Environmental Engineering, Three Gorges University, Yichang Hubei, China.
Hubei Key Laboratory of Hydropower Engineering Construction and Management, Three Gorges University, Yichang Hubei, China.
PLoS One. 2023 Mar 20;18(3):e0283144. doi: 10.1371/journal.pone.0283144. eCollection 2023.
In view of the deficiency that the traditional importance ranking method cannot be used to objectively and comprehensively evaluate the importance of the causes of hoisting injuries, an importance ranking method based on topological potential is proposed by using complex network theory and field theory in physics. First, the causes of 385 reported lifting injuries are divided into 36 independent causes at four levels through a systematic analysis approach, and the relationships among these causes are obtained through the Delphi method. Then, the accident causes are treated as nodes, and the relationships among the causes are used as edges to establish a network model of the causes of lifting accidents. The out-degree and in-degree topological potential of each node are calculated, and an importance ranking of lifting injuries causes is obtained. Finally, based on 11 evaluation indexes commonly used to assess node importance (node degree, betweenness centrality, etc.), the ability of the method proposed in this paper to effectively identify the key nodes in the cause network of lifting accidents is verified, and the conclusions can guide the safe implementation of lifting operations.
鉴于传统的重要性排序方法无法客观全面地评估提升伤害原因的重要性,本研究运用复杂网络理论和物理学中的场论,提出了一种基于拓扑势的重要性排序方法。首先,通过系统分析方法,将 385 份报告的提升伤害原因分为四个层次的 36 个独立原因,并通过德尔菲法获得这些原因之间的关系。然后,将事故原因视为节点,将原因之间的关系用作边,建立提升事故原因的网络模型。计算每个节点的出度和入度拓扑势,得出提升伤害原因的重要性排序。最后,基于 11 个常用于评估节点重要性的指标(节点度、介数中心度等),验证本文提出的方法在有效识别提升事故原因网络中的关键节点方面的能力,研究结论可指导提升作业的安全实施。