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Robust Optimal Design of a Nonlinear Dynamic Vibration Absorber Combining Sensitivity Analysis

机译:灵敏度分析的非线性动态吸振器的鲁棒优化设计

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Dynamic vibration absorbers are discrete devices developed in the beginning of the last century used to attenuate the vibrations of different engineering structures. They have been used in several engineering applications, such as ships, power lines, aeronautic structures, civil engineering constructions subjected to seismic induced excitations, compressor systems, etc. However, in the context of nonlinear dynamics, few works have been proposed regarding the robust optimal design of nonlinear dynamic vibration absorbers. In this paper, a robust optimization strategy combined with sensitivity analysis of systems incorporating nonlinear dynamic vibration absorbers is proposed. Although sensitivity analysis is a well known numerical technique, the main contribution intended for this study is its extension to nonlinear systems. Due to the numerical procedure used to solve the nonlinear equations, the sensitivities addressed herein are computed from the first-order finite-difference approximations. With the aim of increasing the efficiency of the nonlinear dynamic absorber into a frequency band of interest, and to augment the robustness of the optimal design, a robust optimization strategy combined with the previous sensitivities is addressed. After presenting the underlying theoretical foundations, the proposed robust design methodology is performed for a two degree-of-freedom system incorporating a nonlinear dynamic vibration absorber. Based on the obtained results, the usefulness of the proposed methodology is highlighted.
机译:动态吸振器是上世纪初开发的分立设备,用于衰减不同工程结构的振动。它们已用于多种工程应用中,例如船舶,电力线,航空结构,受到地震感应激励作用的土木工程结构,压缩机系统等。但是,在非线性动力学的背景下,关于鲁棒性的研究很少有人提出。非线性动态吸振器的优化设计。本文提出了一种鲁棒的优化策略,并结合了包含非线性动态吸振器的系统的灵敏度分析。尽管灵敏度分析是一种众所周知的数值技术,但本研究的主要贡献是将其扩展到非线性系统。由于使用了求解非线性方程的数值程序,因此本文所涉及的灵敏度是根据一阶有限差分近似计算得出的。为了将非线性动态吸收器的效率提高到感兴趣的频带,并提高最佳设计的鲁棒性,提出了一种结合了先前灵敏度的鲁棒优化策略。在介绍了潜在的理论基础之后,针对包含非线性动态吸振器的两自由度系统执行了建议的鲁棒设计方法。基于获得的结果,突出了所提出的方法的有用性。

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