用奇异值进行柔性结构模型约简

J.R. Mitchell, G. A. Huston, R. D. Irwin
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引用次数: 3

摘要

有限元法(fem)和从实验数据中提取是开发柔性结构模型用于控制系统分析、设计和仿真的最广泛使用的方法。然而,这些方法产生的模型的模式对模型的保真度没有显著贡献。消除这些模式是这项工作的主要重点。特别关注MIMO(多输入多输出)系统。简要讨论了利用有限元方法和实验数据建立控制系统模型的方法。描述了与模型相关的问题,包括不必要的和/或残余模态。提出了用于降低模型阶数的SISO(单输入,单输出)和MIMO技术,并使用拟议的NASA航天飞机c的模态数据说明了模态降低的示例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using singular values for model reduction of flexible structures
Finite-element methods (FEMs) and extraction from experimental data are the most widely used methods for developing models of flexible structures for the analysis, design, and simulation of control systems. However, these methods produce models with modes that do not contribute significantly to the fidelity of the model. Eliminating these modes is the major focus of this work. Particular attention is paid to MIMO (multiple-input multiple-output) systems. Control system model development, using finite-element methods and experimental data, is briefly discussed. The problems associated with models, including unnecessary and/or residual modes, are delineated. SISO (single-input, single-output) and MIMO techniques for reducing the order of models are presented, and example modal reduction is illustrated using modal data from the proposed NASA Shuttle-C.<>
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