基于系统动力学方法的化学品供应链风险管理初探

Chaoyu Li, S. Fu, J. Ren, Haiyan Wang
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引用次数: 3

摘要

随着化学品供应链的全球化和复杂性的不断提高,风险的概率和严重程度等特征对供应链绩效的影响变得至关重要。本文提出了一个综合化学品供应链风险管理(CSCRM)框架,将科学评审和系统动力学(SD)建模方法相结合,对各种化学品供应链风险进行研究。因此,危害识别、风险评估和风险缓解作为连续步骤进行,以管理CSC中的实际和潜在风险。该方法使用SD模型来研究CSC绩效与风险因素之间的因果关系。在各种风险情景下运行所建立的SD模型,考虑到因果关系和反馈效应,对风险的影响进行了处理。此外,该模型的形式化可以在设计和运行阶段进行修改,为研究重大风险缓解方法的结果提供了一个忠实、透明的决策支持工具,从而做出CSCRM中的最优决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A preliminary research methodology on chemical supply chain risk management using system dynamics approach
With ever growing globalization and complexity in chemical supply chain (CSC), the impacts of risk characteristics such as probability and severity on supply chain performance become crucial. In this paper, an integrated chemical supply chain risk management (CSCRM) framework is proposed that combines scientific review and system dynamics (SD) modelling method to investigate the various CSC risks. Whereby, a hazard identification, risk assessment, and risk mitigation are carried out as sequential steps to manage the actual and potential risks in CSC. The proposed approach uses a SD model to investigate the causal interdependencies between the CSC performance and risk factors. Running the built SD model in various risk scenarios, the effects of risks are addressed taken into consideration the causal relationships and feedback effects. Furthermore, the formalization of such SD model can be modified both in design and operation phases provides a faithful and transparent decision support tool to investigate the outcomes of the substantial risks mitigation methods, so as to make the optimal decisions in CSCRM.
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