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Heterogeneous data fusion for impact force identification in truss structures

机译:异构数据融合用于桁架结构冲击力识别

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摘要

Civil engineering structures can undergo serious damage due to impact forces. But accurate and rapid identification of impact force is quite challenging because its measurement is difficult and location is unpredictable. This study proposes a novel approach for the complete identification of impact force including its location and time history. The proposed method combines an augmented Kalman filter (AKF) and Genetic algorithm (GA) for accurate identification of impact force. In AKF unknow force is included in the state vector and estimated in conjunction with the states. First, the location of impact force is statistically determined in the way to minimize the AKF response estimate error at measured locations, assumed co-variance values are used in AKF at this stage. These values are assumed based on a few analyses in which force location is assumed to be known. Then, GA is applied to optimize the error co-variances by minimizing the error between measured and estimated structural response. Once optimized co-variances are obtained, the exact time history of impact force can be constructed using AKF. Numerical example of a truss is considered to validate the efficacy of proposed approach. Strain and acceleration measurements are used as input for the AKF. Both modelling error and measurement noise are considered in the analysis to simulate the actual field conditions.
机译:土木工程结构可能会因冲击力而遭受严重损坏。但是,准确,快速地识别冲击力是非常具有挑战性的,因为它的测量很困难并且位置是不可预测的。这项研究提出了一种新颖的方法来完全识别冲击力,包括其位置和时间历史。所提出的方法结合了增强卡尔曼滤波器(AKF)和遗传算法(GA)来精确识别冲击力。在AKF中,未知向量将力包含在状态向量中,并与状态一起进行估计。首先,以使测量位置处的AKF响应估计误差最小的方式从统计角度确定冲击力的位置,假定在此阶段在AKF中使用了协方差值。这些值是基于一些分析的假定而得出的,其中假定力的位置是已知的。然后,通过最小化测量和估计的结构响应之间的误差,将GA应用于优化误差协方差。一旦获得优化的协方差,就可以使用AKF构造冲击力的确切时间历史。考虑了桁架的数值实例,以验证所提出方法的有效性。应变和加速度测量值用作AKF的输入。分析中要考虑建模误差和测量噪声,以模拟实际的现场条件。

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