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Structural Stiffness Identification of Traditional Mortise-Tenon Joints Based on Statistical Process Control Chart

机译:基于统计过程控制图的传统榫眼结构刚度识别

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摘要

This paper proposes a novel index, the extreme value of the largest principal component scores of the generalized likelihood ratio based on the statistical process control chart, to develop a structural stiffness identification method for assessing traditional Chinese mortise-tenon joints. The proposed method involves four stages. First, a generalized likelihood ratio test is conducted by transforming the collected acceleration signals into the generalized likelihood ratio matrix. Second, principal component analysis (PCA) is used to reduce data dimensionality and extract the extreme values of the first principle component scores as a novel control index. Subsequently, a statistical process control chart is drawn via the proposed control index. Finally, the ratio of the structural stiffness reduction can be evaluated by establishing the relationship between the stiffness and number of control indices outside the upper and lower control limits in the statistical process control chart. The proposed method is validated by vibration test data acquired from a traditional timber frame under reversed cyclic loads and vibration in a laboratory. The results show that (1)the proposed index performed in the statistical process control chart is able to monitor the novelty of the mortise-tenon timber joint; and (2)the proposed method can be used to assess the states of the timber structure and even predict further structural stiffness.
机译:本文提出了一种新的指标,即基于统计过程控制图的广义似然比最大主成分得分的极值,以开发一种评估中国传统榫-连接的结构刚度识别方法。所提出的方法包括四个阶段。首先,通过将收集的加速度信号转换成广义似然比矩阵来进行广义似然比测试。其次,主成分分析(PCA)用于减少数据维数并提取第一主成分评分的极值作为一种新颖的控制指标。随后,通过建议的控制指标绘制统计过程控制图。最后,可以通过在统计过程控制图中建立刚度与控制指标的数量之间的关系来控制结构刚度降低的比率,该控制指标的数量超出控制上限和下限。通过在反向循环载荷和振动条件下在实验室中从传统木构架获得的振动测试数据验证了该方法的有效性。结果表明:(1)在统计过程控制图中进行的拟议指标能够监测榫-木材接头的新颖性; (2)所提出的方法可以用来评估木材结构的状态,甚至可以预测进一步的结构刚度。

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