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首页> 外文期刊>International journal of lifecycle performance engineering >Structural seismic resilience evaluation through real-time hybrid simulation with online learning neural networks
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Structural seismic resilience evaluation through real-time hybrid simulation with online learning neural networks

机译:通过使用在线学习神经网络的实时混合模拟结构地震恢复性评估

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摘要

Seismic resilience provides a comprehensive assessment of the ability of a community to withstand and recover from earthquake disturbances. To support the design of seismic resilient structures, quantitative assessment of seismic resilience is needed and requires numerical simulations to be performed under a risk-based context. The associated large uncertainties can lead to large computational costs and limited accuracy in the numerical simulation, especially for structural systems with critical components having complex nonlinearity and rate-dependent behaviour. To cope with such uncertainties and address simulation accuracy, a framework integrating real-time hybrid simulation is proposed to ensure the assessment accuracy of the seismic resilience of structures. With real-time hybrid simulation, modelling accuracy under wide range of design scenarios can be improved. To more efficiently develop fragility curves using the results of real-time hybrid simulation, experimental substructure component metamodelling is included through an online learning approach using long-short-term memory neural networks. The proposed integration of real-time hybrid simulation and metamodelling in the fragility analysis to support resilience assessment is demonstrated through a proof-of-concept case study on the seismic retrofit of a six-storey building using inter-storey isolation.
机译:地震恢复能力为社区抵御和恢复从地震干扰的能力提供了全面评估。为了支持地震弹性结构的设计,需要定量评估地震弹性的评估,并且需要在基于风险的背景下进行数值模拟。相关的大的不确定因素可以导致数值模拟中的大型计算成本和有限的准确性,特别是对于具有复杂的非线性和速率依赖性行为的关键部件的结构系统。为了应对这种不确定性和地址模拟精度,提出了一种集成实时混合模拟的框架,以确保结构的抗震性的评估准确性。利用实时混合模拟,可以提高在广泛设计方案下的建模精度。使用实时混合模拟的结果更有效地开发脆弱曲线,通过使用长短期记忆神经网络通过在线学习方法包括实验性次结构组件元素。通过概念性案例研究通过概念性案例研究,拟议的实时混合仿真和元模型在脆弱性分析中纳入脆弱性分析的集成,通过近楼的隔离的六层建筑物的地震改造。

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