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Spatial damping identification in the frequency domain-A theoretical and experimental comparison

机译:频域空间阻尼识别-理论与实验比较

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This paper deals with spatial damping identification methods. In contrast to the commonly used damping methods (modal, proportional) the spatial damping information improves structural models with a known location of the damping sources. The Lee-Kim, Chen-Ju-Tsuei, Fritzen IV and local equation of motion methods were theoretically and experimentally compared. Experimentally, the spatial damping identification was tested against: modal and spatial incompleteness, differences in viscous and hysteretic damping models, the performance of identification methods and the effect of damping treatments. It was found that for a structure with a known equation of motion (beam, plate) the local equation of motion method is more efficient and gives a more precise location of the damping. Full frequency response function (FRF) matrix methods can also identify the spatial damping, but are more demanding because the numerical and measurement effort increases with n(2), where n is the number of measurement points and, consequently, the size of the FRF matrix. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文讨论了空间阻尼识别方法。与常用的阻尼方法(模态,比例)相比,空间阻尼信息可通过已知阻尼源位置来改善结构模型。理论上和实验上比较了Lee-Kim,Chen-Ju-Tsuei,Fritzen IV和局部运动方程方法。通过实验,对空间阻尼识别进行了测试:模态和空间不完整,粘性和滞后阻尼模型的差异,识别方法的性能以及阻尼处理的效果。已经发现,对于具有已知运动方程(梁,板)的结构,局部运动方程方法更有效,并且可以提供更精确的阻尼位置。全频响函数(FRF)矩阵方法也可以识别空间阻尼,但要求更高,因为数值和测量工作随n(2)的增加而增加,其中n是测量点的数量,因此是FRF的大小矩阵。 (C)2016 Elsevier Ltd.保留所有权利。

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