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Uncertainty analysis of practical structural health monitoring systems currently employed for tall buildings consisting of small number of sensors

机译:当前用于由少量传感器组成的高层建筑的实际结构健康监测系统的不确定性分析

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Because of social background, such as repeated large earthquakes and cheating in design and construction, structural health monitoring (SHM) systems are getting strong attention. The SHM systems are in a practical phase. An SHM system consisting of small number of sensors has been introduced to 6 tall buildings in Shinjuku area. Including them, there are 2 major issues in the SHM systems consisting of small number of sensors. First, optimal system number of sensors and the location are not well-defined. In the practice, system placement is determined based on rough prediction and experience. Second, there are some uncertainties in estimation results by the SHM systems. Thus, the purpose of this research is to provide useful information for increasing reliability of SHM system and to improve estimation results based on uncertainty analysis of the SHM systems. The important damage index used here is the inter-story drift angle. The uncertainty considered here are number of sensors, earthquake motion characteristics, noise in data, error between numerical model and real building, nonlinearity of parameter. Then I have analyzed influence of each factor to estimation accuracy. The analysis conducted here will help to decide sensor system design considering valance of cost and accuracy. Because of constraint on the number of sensors, estimation results by the SHM system has tendency to provide smaller values. To overcome this problem, a compensation algorithm was discussed and presented. The usefulness of this compensation method was demonstrated for 40 story S and RC building models with nonlinear response.
机译:由于社会背景,例如反复发生大地震以及设计和施工中的作弊行为,结构健康监测(SHM)系统受到了广泛的关注。 SHM系统处于实用阶段。一个由少量传感器组成的SHM系统已被引入到新宿地区的6座高层建筑中。包括它们在内,SHM系统中有2个主要问题,由少量传感器组成。首先,传感器的最佳系统数量和位置尚不明确。在实践中,基于粗略的预测和经验确定系统的放置。其次,SHM系统的估计结果存在一些不确定性。因此,本研究的目的是为提高SHM系统的可靠性和改进基于SHM系统不确定性分析的估计结果提供有用的信息。此处使用的重要破坏指数是层间漂移角。这里考虑的不确定性是传感器的数量,地震运动特征,数据中的噪声,数值模型与实际建筑物之间的误差,参数的非线性。然后,我分析了每个因素对估计精度的影响。此处进行的分析将帮助您考虑成本和准确度的高低来决定传感器系统的设计。由于传感器数量的限制,SHM系统的估计结果倾向于提供较小的值。为了克服这个问题,讨论并提出了一种补偿算法。在具有非线性响应的40层S和RC建筑物模型中证明了这种补偿方法的有用性。

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