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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Surrogate model reduction for linear dynamic systems based on a frequency domain modal analysis
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Surrogate model reduction for linear dynamic systems based on a frequency domain modal analysis

机译:基于频域模态分析的线性动力系统替代模型简化

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A novel model reduction methodology for linear dynamic systems with parameter variations is presented based on a frequency domain formulation and use of the proper orthogonal decomposition. For an efficient treatment of parameter variations, the system matrices are divided into a nominal and an incremental part. It is shown that the perturbed part is modally equivalent to a new system where the incremental matrices are isolated into the forcing term. To account for the continuous changes in the parameters, the single-composite-input is invoked with a finite number of predetermined incremental matrices. The frequency-domain Karhunen-Loeve procedure is used to calculate a rich set of basis modes accounting for the variations. For demonstration, the new procedure is applied to a finite element model of the Goland wing undergoing oscillations and shown to produce extremely accurate reduced-order surrogate model for a wide range of parameter variations.
机译:基于频域公式和适当正交分解的使用,提出了一种具有参数变化的线性动态系统模型简化方法。为了有效处理参数变化,系统矩阵分为名义部分和增量部分。结果表明,扰动部分在模态上等同于新系统,在该系统中,增量矩阵被隔离到强迫项中。为了说明参数的连续变化,使用有限数量的预定增量矩阵调用单复合输入。频域Karhunen-Loeve过程用于计算考虑到变化的丰富基础模式集。为了进行演示,将新程序应用于发生振荡的Goland机翼的有限元模型,并显示出可针对各种参数变化生成极其精确的降阶替代模型。

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