基于直接和间接威胁建模的水运企业风险评估

IF 0.6 Q4 BUSINESS
S. Kotenko, S. Ilchenko, Valeria Kasianova, A. Kens
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引用次数: 0

摘要

介绍。需要通过水运交通建模和评估与之相关的风险的方法来识别过去一段时间的问题,提出评估直接风险和间接风险的方法,为战后重建中预防这些风险形成先决条件。协调不同运输类型的运输行为需要评估混合运输前阶段的风险对后续风险阶段形成的影响。需要改进评估这种影响的现有方法。目标和任务。本研究的目的是基于评估直接和间接风险影响的数学模型,建立水运风险管理的方法学方法。任务是:证明考虑风险的加性方法会导致系统偏离结果的出现;考虑到对货物运输风险的影响。结果。结果表明,将风险作为加性函数计算会导致与相关结果的系统性偏差。它指出,接下来每一阶段的运输风险取决于前一阶段的风险。为了提高水运风险分析的相关性,提出了在多维参数空间中使用面向图的方法。它指出,为了计算综合风险,不仅要建立风险矩阵,而且要建立风险关联矩阵,以考虑它们与业务实体的关系。它指出,即使是很小的风险也可能造成灾难,导致货流重新定向。提出:在计算整体风险时,必须考虑风险的直接影响和间接影响;水运风险计算还需要对相关运输方式进行风险分析。结论。确立了在计算整体风险时,需要考虑对风险的直接和间接影响,水运风险计算还需要对相关运输方式进行风险分析。拟议的方法大大增加了水运风险分析的相关性,并允许实时管理运输路线的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Risk Assessment of Water Transport Enterprises by Modeling Direct and Indirect Threats
Introduction. The methods of traffic modeling by water transport and assessing the risks associated with it is needed to identify the issues of the past period, proposing methods for assessing not only direct but also indirect risks to form the preconditions for preventing them in the postwar reconstruction. The coordination of different transport type’s actions of transport requires an assessment of risks impact of the previous stages of mixed transportation on the formation of the following risks’ stages. Existing methods of assessing such impact need to be improved. Aim and tasks. The aim of this study is creation of methodological approach to risk management in water transport based on a mathematical model for assessing the impact of both direct and indirect risks. The tasks are: to prove that the additive approach of taking risks into account leads to the systematic deviation appearance from the result; take into account the impact on the risk of cargo transportation. Results. It has proved that the calculation of risk as an additive function leads to a systematic deviation from the relevant result. It stated that the risk of each of the next stages of transportation depends on the risks of the previous stages. To increase risk analysis relevance in water transport, the use of an oriented graph in a multidimensional parameter space proposed. It stated that in order to calculate the integrated risk, it is essential building not only the risk matrix but also the risk incidence matrix to take into account their relation to business entities. It established the impact of even minor risks could take the form of a catastrophe, which leads to cargo flows reorientation. It established that: for calculation of integral risk, it is crucial consider direct and indirect influences of risks; risk calculation for water transport also requires risk analysis in related modes of transport. Conclusions. It was established that, when calculating integral risk, it is necessary to consider direct and indirect influences on risks and that the risk calculation for water transport also requires risk analysis in related modes of transport. The proposed approach significantly increases the relevance of water transport risk analysis and allows for managing changes in transportation routes in real time.
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