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The PolyMAX Frequency-Domain Method: A New Standard for Modal Parameter Estimation?

机译:Polymax频率域方法:模态参数估计的新标准?

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摘要

Recently, a new non-iterative frequency-domain parameter estimation method was proposed. It is based on a (weighted) least-squares approach and uses multiple-input-multiple-output frequency response functions as primary data. This so-called “PolyMAX” or polyreference least-squares complex frequency-domain method can be implemented in a very similar way as the industry standard polyreference (time-domain) least-squares complex exponential method: in a first step a stabilisation diagram is constructed containing frequency, damping and participation information. Next, the mode shapes are found in a second least-squares step, based on the user selection of stable poles. One of the specific advantages of the technique lies in the very stable identification of the system poles and participation factors as a function of the specified system order, leading to easy-to-interpret stabilisation diagrams. This implies a potential for automating the method and to apply it to “difficult” estimation cases such as high-order and/or highly damped systems with large modal overlap. Some real-life automotive and aerospace case studies are discussed. PolyMAX is compared with classical methods concerning stability, accuracy of the estimated modal parameters and quality of the frequency response function synthesis.
机译:最近,一种新的非迭代频域参数估计方法提出。它是基于一个(加权)最小二乘法,并且使用多输入多输出频率响应函数作为原始数据。这种所谓的“PolyMAX能够”或polyreference最小二乘复频域方法能够以非常相似的方式为工业标准polyreference(时域)最小二乘复指数方法来实现:在第一步骤中的稳定图是含频率,阻尼和参与的信息构成。接着,模式形状在第二最小二乘步骤中发现,基于稳定磁极的用户选择。其中的技术就在于系统的极点和参与的因素,如指定的系统命令的功能非常稳定识别的特定优势,从而易于理解的稳态图。这意味着潜在的自动化的方法和将其应用到“困难”的估计的情况下,如高的顺序和/或具有大的模态重叠高阻尼系统。一些现实生活中的汽车和航空航天案例研究进行了讨论。 PolyMAX能够与有关的稳定性,精确性所估计的模态参数和质量的频率响应函数合成的经典方法进行比较。

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