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Regional resilience analysis: A multiscale approach to optimize the resilience of interdependent infrastructure

机译:区域恢复能力分析:多尺度方法,以优化相互依存基础设施的恢复力

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摘要

Reducing hazard-induced disruptions to infrastructure functionality is cardinal to regional resilience. Specifically, effective strategies to enhance regional resilience require: (a) developing mathematical models for infrastructure recovery; (b) quantifying resilience associated with the developed recovery process; and (c) developing a computationally manageable approach for resilience optimization. This paper proposes a rigorous mathematical formulation to model recovery, quantify resilience, and optimize the resilience of large-scale infrastructure. Specifically, a multiscale model of the recovery process is proposed that significantly reduces the computational cost, while favoring practical and easily manageable recovery schedules. To quantify regional resilience, resilience metrics are proposed that capture the temporal and spatial variations of the recovery process. The paper then formulates a multiobjective optimization problem that aims to improve regional resilience in terms of the proposed metrics, while minimizing the recovery cost. Finally, the paper illustrates the proposed formulation by considering interdependent infrastructure in Shelby County, Tennessee, United States.
机译:降低对基础设施功能的危害引起的中断是基于区域的弹性。具体而言,提高区域恢复力的有效策略要求:(a)开发基础设施恢复的数学模型; (b)量化与发达的恢复过程相关的弹性; (c)制定用于抵御抵御优化的计算可管理方法。本文提出了严格的数学制定,以模拟恢复,量化弹性,优化大规模基础设施的恢复力。具体地,提出了恢复过程的多尺度模型,从而显着降低了计算成本,同时有利于实际且易于管理的恢复时间表。为了量化区域恢复力,提出了抵御恢复过程的时间和空间变化的恢复性指标。然后,本文制定了一种多目标优化问题,旨在改善拟议指标的区域恢复力,同时最大限度地减少恢复成本。最后,本文通过考虑在美国田纳西州谢尔比县的相互依存基础设施来说明所提出的制剂。

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