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Dynamic loads identification in presence of unknown but bounded measurement errors

机译:存在未知但有限的测量误差时的动态载荷识别

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摘要

In this paper, a time-domain inverse method that combines the set membership identification theory with interval analysis is proposed to stably identify structural dynamic loads, in which circumstances the unknown-but-bounded (UBB) uncertainty in measured responses is considered. Instead of knowing precise statistical information, the noisy responses are treated as intervals, and hence only their bounds are needed. The procedure of dynamic loads reconstruction from noisy displacement measurements is mainly studied, and the correlation between the uncertain responses of displacement and acceleration is also investigated in order to deal with the practical problems effectively, where only uncertainty information of acceleration can be known. Moreover, for purpose of comparison, the traditional Green's function method is introduced and further applied into engineering simulations (a ten-bar plane truss and a twenty-five-bar space truss). A test example of a four-story frame structure is eventually presented with limited acceleration sample data. The identified results of the three examples above illustrate the feasibility and accuracy of the developed method.
机译:本文提出了一种时域逆方法,该方法将集合成员身份识别理论与区间分析相结合,以稳定地识别结构动载荷,在这种情况下,应考虑测量响应中的未知但有界的不确定性。代替知道精确的统计信息,将嘈杂的响应视为间隔,因此仅需要它们的界限。重点研究了由噪声位移测量得到的动载荷重建过程,并研究了位移和加速度的不确定性之间的相关性,以便有效地解决实际问题,仅能知道加速度的不确定性信息。此外,出于比较的目的,引入了传统的格林函数方法并将其进一步应用于工程仿真(十杆平面桁架和二十五杆空间桁架)。最终以有限的加速度样本数据呈现了一个四层框架结构的测试示例。以上三个示例的识别结果说明了该方法的可行性和准确性。

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