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Reproduction of vibration patterns of elastic structures by block-wise modal expansion method (BMEM)

机译:通过分块模态展开法(BMEM)复制弹性结构的振动模式

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摘要

The quality of vibration pattern reproduction of elastic structures by the modal expansion method is influenced by the modal expansion method and the sensor placement as well as the accuracy of measured natural modes and the total number of vibration sensors. In this context, this paper presents an improved numerical method for reproducing the vibration patterns by introducing a block-wise modal expansion method (BMEM), together with the genetic algorithm (GA). For a given number of vibration sensors, the sensor positions are determined by an evolutionary optimization using GA and the modal assurance criterion (MAC). Meanwhile, for the proposed block-wise modal expansion, a whole frequency range of interest is divided into several overlapped frequency blocks and the vibration field reproduction is made block by block with different natural modes and different modal participation factors. A hollow cylindrical tank is taken to illustrate the proposed improved modal expansion method. Through the numerical experiments, the proposed method is compared with several conventional methods to justify that the proposed method provides the improved results.
机译:通过模态展开法的弹性结构振动模式再现的质量受模态展开法和传感器放置以及所测自然模的精度和振动传感器总数的影响。在这种情况下,本文介绍了一种改进的数值方法,该方法通过引入逐段模态扩展方法(BMEM)和遗传算法(GA)来再现振动模式。对于给定数量的振动传感器,使用GA和模态保证标准(MAC)通过进化优化确定传感器位置。同时,对于所提出的逐段模态扩展,将感兴趣的整个频率范围划分为几个重叠的频率块,并以具有不同自然模式和不同模态参与因子的块为单位逐个进行振动场再现。以中空圆柱罐为例,说明了改进的模态膨胀方法。通过数值实验,将本文提出的方法与几种常规方法进行了比较,以证明本文提出的方法可以提供改进的结果。

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