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Structural identification with incomplete instrumentation and global identifiability requirements under base excitation

机译:基础励磁下不完全仪器和全局可识别性要求的结构识别

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Estimating the mass and stiffness parameters of a structural system via its vibration response measurements is the primary objective in the field of modal testing and structural health monitoring. The attainment of this objective, however, is hindered by various practical and theoretical issues. One such issue is incomplete instrumentation, leading to spatially incomplete mode shapes and often nonunique identification results. When the excitation is induced by ground motion, the problem is further complicated because of arbitrary normalization of mode shapes. This study attempts to address these issues for shear-building type structures. Mode shape normalization and expansion approaches are developed that utilize the topology of the structural matrices. Theoretical constraints regarding minimal instrumentation and the necessity for any a priori information are addressed vis-a-vis the requirements for global identifiability. Some practical implementation issues are discussed. The performance of the method is evaluated using numerical simulations and shake table experiments. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:通过其振动响应测量估计结构系统的质量和刚度参数是模态测试和结构健康监测领域的主要目标。然而,在各种实际和理论问题中受到这种目标的实现。一个这样的问题是不完整的仪器,导致空间不完整的模式形状,并且通常是不纯的识别结果。当通过地运动引起激发时,由于模式形状的任意归一化,问题是进一步的复杂。本研究试图解决剪切建筑型结构的这些问题。开发了模式形状标准化和扩展方法,其利用结构矩阵的拓扑。关于最小仪器的理论限制和任何先验信息的必要性都是解决了全局可识别性的要求。讨论了一些实际的实施问题。使用数值模拟和摇动表实验来评估该方法的性能。版权所有(c)2015 John Wiley&Sons,Ltd。

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