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Systems-based cyber security in the supply chain

机译:供应链中基于系统的网络安全

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The importance of the many sources of risk to the supply chain has been recognized by the practitioners and leadership in this sector of the economy. Cyber security is paramount to the success of the supply chain sector, which constitutes a safety-critical system for the U.S. and global economy. The diverse consequences from a malevolent attack could adversely affect inventory, product quality, time of delivery and the multiple sequential chain-effects due to these interdependent and interconnected economies. As a team, we leveraged the knowledge that we have accrued throughout our academic career with the knowledge and experience of our Technical Advisor, Yacov Haimes. The vast research opportunities at the University of Virginia and the seminal contributions to the field of systems of systems risk analysis further enhanced this comprehensive report. Building on our research and on Hierarchical Holographic Modeling, we performed risk assessment and management. Furthermore, as a team, we developed an overview of this complex system of systems, and generated multiple scenarios of malevolent penetration to the supply chain. Then through the use of Risk Filtering and Risk Management we reduced the large number of risk scenarios to a small set of critical scenarios. To apply our modeling and analytical skills to an emergent "risk" we examined the impact of malevolent use of the three-dimensional (3D) printers might pose to the integrity of the supply chain and the possibilities of this revolutionary technology as a malevolent medium to decimate the safety-critical supply chain systems of systems. In sum, through the use of modeling and analyzing supply chains as complex systems of systems, and by identifying shared-states, resources, decisions, and other variables among the subsystems of the supply chain, we have been able to identify and isolate safety critical features of the supply chain.
机译:许多风险来源对供应链的重要性得到了本科经济部门的从业者和领导。网络安全对供应链部门的成功至关重要,这构成了美国和全球经济的安全关键系统。由于这些相互依存和互联的经济体,恶性攻击的不同后果可能会对库存,产品质量,交付时间和多次顺序链效应产生不利影响。作为一支球队,我们利用了我们在整个学术职业生涯中累积的知识,了解我们的技术顾问Yacov Haimes的知识和经验。弗吉尼亚大学的巨大研究机会和系统风险分析系统领域的开创性贡献进一步加强了这一综合报告。在我们的研究和分层全息建模上建立,我们进行了风险评估和管理。此外,作为团队,我们开发了这种复杂的系统系统的概述,并产生了对供应链的恶性渗透的多种情景。然后通过使用风险过滤和风险管理,我们将大量风险场景减少到一小组批判性方案。要将我们的建模和分析技能应用于紧急的“风险”,我们检查了对三维(3D)打印机可能构成供应链的完整性和这种革命性技术作为恶毒媒介的可能性的影响减少系统安全关键供应链系统。总之,通过使用建模和分析供应链作为复杂的系统系统,并且通过识别供应链的子系统之间的共享状态,资源,决策和其他变量,我们已经能够识别和隔离安全至关重要供应链的特点。

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