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Earthquake-Resilience-Based Control Solutions for the Extended Benchmark Cable-Stayed Bridge

机译:扩展基准斜拉桥的基于抗震性的控制解决方案

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摘要

Structural control solutions can offer a decisive contribution to reducing the consequences of strong events in earthquake-affected areas, enhancing structural resilience. Furthermore, the inherent feature of some control systems, which can adapt themselves to different loading levels, can be exploited when structural conditions change due to local failures. This occurs by changing the working parameters of the control system in real time or, even if very short, over the period between two seismic events. This work deals with resilience of seismic control solutions for cable-stayed bridges through a case study represented by a standard bridge control benchmark from the literature. A strategy for recovering the optimal configuration of the controlled bridge after a damaging event is presented. Emphasis is given to the time interval between the damage occurrence and the restoration, which represent the essential aspect of the resilient behavior. Finally, the formulation of a robustness index and general procedures that suggest how to quantify resilience for the control system of cable-stayed bridges in the context of multiple hazards are explored.
机译:结构控制解决方案可以为减少地震灾区发生的强震后果,增强结构复原力做出决定性贡献。此外,当结构条件由于局部故障而变化时,可以利用某些控制系统的固有功能,使其适应不同的负载水平。这是通过实时更改控制系统的工作参数甚至在很短的时间内更改两次地震事件之间的时间而发生的。这项工作通过以文献中的标准桥梁控制基准为代表的案例研究来研究斜拉桥的地震控制解决方案的弹性。提出了一种在破坏事件后恢复受控桥的最佳配置的策略。着重于损坏发生和恢复之间的时间间隔,这是弹性行为的基本方面。最后,探讨了稳健性指标的制定和一般程序,这些程序建议了如何在多种危险情况下对斜拉桥控制系统的弹性进行量化。

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