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Investigation and optimization of nonlinear pendulum vibration absorber for horizontal vibration suppression of damped system

机译:阻尼系统水平振动的非线性摆式减振器的研究与优化

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Nonlinear pendulum vibration absorber is investigated in this paper to control resonance peak of linear primary system with horizontal vibrations subjected to forced and motion excitations. Pendulum vibration absorbers have been utilized as tuned mass damper for many years, but by this knowledge, nonlinear analysis of this problem has not been investigated anywhere. Harmonic balance (HB) method is used to solve nonlinear differential equations and analyze the stability of their results. Optimum damping and natural frequency ratios are derived by minimizing the maximum steady-state response of primary system with numerical optimization. The presented analysis shows that the pendulum absorber design based on linear model resulting in a small area around the original frequency for vibration absorption. For linear pendulum design, with a small deviation from the linear range, the amplitude of initial system greatly increased, and its performance will fall sharply. But if the design is based on a nonlinear pendulum with larger amplitude of motion, the resulting design will have a higher accuracy. In this paper, responses with inferior periods are inspected beside main period one. Different methods are used for optimized nonlinear pendulum. Finally, system robustness and chance of bifurcation will be predicted. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本文研究了非线性摆振动吸收器,以控制受力和运动激发的水平振动线性初级系统的共振峰。摆式减振器已被用作调谐质量阻尼器已有多年的历史,但是根据这一知识,尚未对该问题进行非线性分析。谐波平衡(HB)方法用于求解非线性微分方程并分析其结果的稳定性。最佳阻尼和固有频率比是通过数值优化使一次系统的最大稳态响应最小化而得出的。提出的分析表明,基于线性模型的摆式减振器设计在原始频率周围产生了一个较小的振动吸收区域。对于线性摆设计,与线性范围的偏差很小,初始系统的幅度大大增加,并且其性能将急剧下降。但是,如果设计基于具有更大运动幅度的非线性摆,则最终的设计将具有更高的精度。在本文中,对次要时期的回答在主要时期之一之外进行了考察。使用不同的方法来优化非线性摆。最后,将预测系统的鲁棒性和分叉的机会。版权所有(c)2015 John Wiley&Sons,Ltd.

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