Improving the resilience of socio-technical urban critical infrastructures with digital twins: Challenges, concepts, and modeling

Tobias Gebhard, Bernhard J. Sattler, Jonas Gunkel, Marco Marquard, Andrea Tundis
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Abstract

The increasing number of crises, including natural disasters and military conflicts, underscores the importance of resilient critical infrastructures (CIs), especially for urban areas. However, current approaches for CI modeling, monitoring, and resilience assessment are lacking a holistic view of cities as complex, interconnected, and socio-technical systems. This paper explores the application of the Digital Twin (DT) concept as a promising tool to assess and improve the resilience of urban CIs in light of various hazards. DTs are virtual real-time representations of a physical system that can be used to perform real-time analysis, simulate what-if scenarios, and provide decision support, during crises and normal operations. To this end, we identify and discuss key challenges for the development of Urban Digital Twins (UDTs), including data management, technical and social modeling of CIs, integrated CI co-simulations, model validation, and resilience assessment. To address the complex nature of urban areas as systems-of-systems, we present overarching modeling concepts by considering CI interdependencies and socio-technical interactions, resulting in the concept of the Socio-technical Digital Twin (STDT). Beside incorporating agent-based modeling, we discuss the issue of demand synchronization and propose the concepts of model selection and model transfer to facilitate the modeling process for UDTs. Furthermore, a multi-layered modeling framework for interdependent urban CIs is presented, where the proposed concepts are integrated and an overview and discussion of the technical and social modeling of CIs is provided, with a particular focus on the power, water, and transportation domain. Finally, we deal with the quantitative resilience assessment for interconnected CIs and discuss ways of integrating these methodologies in DTs. Our approach frames CIs as socio-technical systems and integrates the human perspective into the modeling process and resilience assessment. The presented modeling framework can be used to simulate various scenarios for analyzing their consequences in advance and measuring resilience in a holistic context. Moreover, the proposed concepts and modeling approaches can support future developments towards UDTs for crisis management.
利用数字孪生提高社会技术城市关键基础设施的弹性:挑战、概念和建模
包括自然灾害和军事冲突在内的危机日益增多,凸显了具有复原力的关键基础设施的重要性,尤其是对城市地区而言。然而,目前的CI建模、监测和弹性评估方法缺乏将城市作为复杂的、相互关联的社会技术系统的整体观点。本文探讨了数字孪生(DT)概念的应用,将其作为一种有前途的工具,用于评估和提高城市ci在各种危害下的复原力。dt是物理系统的虚拟实时表示,可用于在危机和正常操作期间执行实时分析、模拟假设场景并提供决策支持。为此,我们确定并讨论了城市数字孪生(udt)发展面临的主要挑战,包括数据管理、CI的技术和社会建模、集成CI联合模拟、模型验证和弹性评估。为了解决城市地区作为系统的系统的复杂性,我们通过考虑CI相互依赖性和社会技术相互作用,提出了总体建模概念,从而产生了社会技术数字孪生(STDT)的概念。除了结合基于agent的建模外,我们还讨论了需求同步问题,并提出了模型选择和模型转移的概念,以促进udt的建模过程。此外,本文还提出了一个相互依存的城市ci的多层建模框架,其中整合了所提出的概念,并概述和讨论了ci的技术和社会建模,特别关注电力、水和交通领域。最后,我们处理了相互关联的ci的定量弹性评估,并讨论了将这些方法集成到dt中的方法。我们的方法将ci框架作为社会技术系统,并将人类视角集成到建模过程和弹性评估中。所提出的建模框架可用于模拟各种场景,以便提前分析其后果,并在整体上下文中测量弹性。此外,所提出的概念和建模方法可以支持面向危机管理的udt的未来发展。
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