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Automatic estimation of natural frequencies and damping ratios of building structures

机译:自动估计建筑结构的自然频率和阻尼比

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Our laboratory has been working on developing a practical structural health monitoring (SHM) system consisting of digital sensor network and a cloud server. The usefulness of such a system has been recognized by real estate companies, construction companies and design firms. We estimate the number of systems exceeded one hundred. In the SHM system, modal parameters such as natural frequency and damping ratio are important damage indicators to diagnose the condition of structures. However, existing conventional methods require the knowledge of expert to select the proper modal parameters. This is the barrier for promoting the system. Under an emergency event, we will not be able to have immediate help from the experts as they will be very busy to take care of so many buildings. In this paper, we propose an automatic estimation method to extract fundamental modal frequencies and damping ratios under the assumption we have information on mass distribution and mode shapes. We use these information to filter out the necessary modal information only so that any system identification methods that are applicable to single-degree-of-freedom systems will work well. To test the method, 40 story steel and RC building structural models were developed. They were simplified to tri-linear skeleton type nonlinear model to show the feasibility of the proposed method to nonlinear level as well. Finally, the method is applied to real tall buildings near Shinjuku Station. The building is 29 story and made of steel. It suffered nonstructural damage during Tohoku Earthquake of March 11,2011.
机译:我们的实验室一直在努力制定由数字传感器网络和云服务器组成的实际结构健康监测(SHM)系统。该系统的有用性得到了房地产公司,建筑公司和设计公司的认可。我们估计系统数量超过一百个。在SHM系统中,诸如固有频率和阻尼比的模态参数是诊断结构条件的重要损坏指标。但是,现有的传统方法需要专家的知识来选择适当的模态参数。这是促进系统的障碍。在紧急情况下,我们将无法从专家那里立即帮助,因为它们将非常忙于照顾这么多建筑。在本文中,我们提出了一种自动估计方法,以在假设下提取基本模态频率和阻尼比率,我们具有关于质量分布和模式形状的信息。我们使用这些信息仅筛选出必要的模态信息,以便任何适用于单一自由度系统的系统识别方法都会运行良好。为了测试该方法,开发了40个故事钢铁和RC建筑结构模型。它们被简化为三线性骨架式非线性模型,以显示所提出的方法对非线性水平的可行性。最后,该方法应用于新宿站附近的真正高建筑物。该建筑是29个故事,由钢制成。在3月11日11,2011的东风地震期间,它遭受了非结构损伤。

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