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首页> 外文期刊>Journal of Infrastructure Systems >Health Care System Disaster-Resilience Optimization Given Its Reliance on Interdependent Critical Lifelines
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Health Care System Disaster-Resilience Optimization Given Its Reliance on Interdependent Critical Lifelines

机译:依靠相互依赖的关键生命线优化医疗系统的抗灾能力

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Natural or human-made incidents in urban areas cause surges in demand for hospitals while often simultaneously limiting their capacity to serve patients due to direct physical damage or service interruptions in supporting lifelines. A hierarchical modeling concept is proposed to quantify the resilience of regional hospital response under disaster. To facilitate the optimization of pre- and postevent resilience-enhancing actions for a range of potential hazard-demand-damage scenarios, a multistage stochastic, mixed-integer decision problem (SMIP) is proposed. Dependencies on interdependent, potentially damaged critical lifelines are explicitly modeled. Resilience is estimated in terms of total patient waiting time and unserved patients. These quantities are captured in the objective of the SMIP through the adoption of a simulation-based metamodel of a detailed hospital model. The SMIP is demonstrated in a numerical example developed to represent the main hospitals of the Johns Hopkins Health System Corporation. The proposed structure is broadly applicable to other societal functions that take place in interrelated buildings connected by transportation and communications links and are dependent on interdependent lifeline networks.
机译:城市地区的自然或人为事故导致对医院的需求激增,同时由于直接的人身伤害或支持生命线的服务中断,通常同时限制了他们为患者提供服务的能力。提出了一种层次化的建模概念,以量化灾难发生时区域医院响应的弹性。为了促进针对一系列潜在的危害-需求-破坏场景的事前和事后弹性增强行动的优化,提出了一种多阶段随机,混合整数决策问题(SMIP)。对相互依赖的,可能损坏的关键生命线的依赖关系进行了显式建模。根据总的患者等待时间和未服务的患者来估计恢复力。通过采用详细医院模型的基于仿真的元模型,将这些数量捕获到SMIP的目标中。在一个数字示例中演示了SMIP,该示例开发为代表约翰霍普金斯卫生系统公司的主要医院。拟议的结构广泛适用于通过交通和通讯链接相连的相互关联的建筑物中发生的其他社会功能,并且依赖于相互依赖的生命线网络。

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