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作 者:Julian Salomon Jasper Behrensdorf Niklas Winnewisser Matteo Broggi Michael Beer
机构地区:[1]Institute for Risk and Reliability,Leibniz University Hannover,Hanover,Germany [2]Institute for Risk and Uncertainty,University of Liverpool,Liverpool,United Kingdom [3]International Joint Research Center for Resilient Infrastructure&International Joint Research Center for Engineering Reliability and Stochastic Mechanics,Tongji University,Shanghai,China
出 处:《Resilient Cities and Structures》2022年第3期61-78,共18页韧性城市与结构(英文)
基 金:Funded by the Deutsche Forschungsgemeinschaft(DFG,German Research Foundation)SFB 871/3119193472 and SPP 2388501624329.
摘 要:Complex systems,such as infrastructure networks,industrial plants and jet engines,are of paramount importance to modern societies.However,these systems are subject to a variety of different threats.Novel research focuses not only on monitoring and improving the robustness and reliability of systems,but also on their recoverability from adverse events.The concept of resilience encompasses precisely these aspects.However,efficient resilience analysis for the modern systems of our societies is becoming more and more challenging.Due to their increasing complexity,system components frequently exhibit significant complexity of their own,requiring them to be modeled as systems,i.e.,subsystems.Therefore,efficient resilience analysis approaches are needed to address this emerging challenge.This work presents an efficient resilience decision-making procedure for complex and substructured systems.A novel methodology is derived by bringing together two methods from the fields of reliability analysis and modern resilience assessment.A resilience decision-making framework and the concept of survival signature are extended and merged,providing an efficient approach for quantifying the resilience of complex,large and substructured systems subject to monetary restrictions.The new approach combines both of the advantageous characteristics of its two original components:A direct comparison between various resilience-enhancing options from a multidimensional search space,leading to an optimal trade-off with respect to the system resilience and a significant reduction of the computational effort due to the separation property of the survival signature,once a subsystem structure has been computed,any possible characterization of the probabilistic part can be validated with no need to recompute the structure.The developed methods are applied to the functional model of a multistage high-speed axial compressor and two substructured systems of increasing complexity,providing accurate results and demonstrating efficiency and general applic
关 键 词:RESILIENCE DECISION-MAKING Survival signature Reliability Complex systems Substructured systems
分 类 号:TN9[电子电信—信息与通信工程]
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