Implementing Area Business Continuity Management for Large-Scale Disaster: A Total Interpretive Structural Modeling Approach

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY
K. Meechang, Kenji Watanabe
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引用次数: 1

Abstract

A large-scale disaster striking a fundamental infrastructure can disrupt the entire business area. Hence, Area Business Continuity Management (Area-BCM) is proposed to bring together stakeholders in the same area who aim to minimize economic losses and impacts due to a disaster. Its distinctive features consider public–private partnerships, critical external resources, and scalability of risk management. However, Area-BCM is still a long way from being successful as many challenges are found. This study aimed to build a model of success factors and analyze relationships among factors for Area-BCM implementation. The total interpretive structural modeling technique was utilized to construct a hierarchical model. Interviews and questionnaire surveys were performed for data collection. A process-automated tool was used to ensure accuracy and eliminate complicated calculations. The results indicate the foundation factors and critical suggestions to be grounded for success. The outstanding findings are the interpreted interrelationships in the final model. Moreover, cross-impact matrix multiplication applied to classification approach categorizes factors into four groups based on driving and dependence powers. The outcomes provide strong implications for Area-BCM practitioners or executors, helping them prioritize attention and prepare suitable strategies for successful implementation.
实施大规模灾害的区域业务连续性管理:一种全面的解释结构建模方法
一场大规模的灾难袭击了一个基本的基础设施,可能会扰乱整个商业领域。因此,区域业务连续性管理(Area BCM)旨在将同一地区的利益相关者聚集在一起,以最大限度地减少灾害造成的经济损失和影响。其独特的特点考虑了公私伙伴关系、关键的外部资源和风险管理的可扩展性。然而,由于发现了许多挑战,区域BCM离成功还有很长的路要走。本研究旨在建立区域BCM实施的成功因素模型,并分析各因素之间的关系。利用全解释结构建模技术构建了层次模型。为了收集数据,进行了访谈和问卷调查。使用过程自动化工具来确保准确性并消除复杂的计算。研究结果指出了成功的基础因素和关键建议。突出的发现是最终模型中解释的相互关系。此外,将交叉影响矩阵乘法应用于分类方法,根据驱动力和依赖力将因素分为四组。这些成果为地区BCM从业者或执行者提供了强有力的启示,帮助他们优先关注并为成功实施制定适当的战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Disaster Research
Journal of Disaster Research GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.60
自引率
37.50%
发文量
113
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