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Nonlinear Vibration Absorber Optimal Design via Asymptotic Approach

机译:非线性减振器通过渐近方法最佳设计

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This paper tackles the classical problem of Vibration Absorbers (VAs) operating in the nonlinear dynamic regime. Since traditional linear VAs suffer from the drawback of a narrow bandwith and numerous structures exhibit nonlinear behavior, nonlinear absorbers are of practical interest. The resonant dynamic behavior of a nonlinear hysteretic VA attached to a damped nonlinear structure is investigated analytically via asymptotics and numerically via path following. The response of the reduced-order model, obtained by projecting the dynamics of the primary structure onto the mode to control, is evaluated using the method of multiple scales up to the first nonlinear order beyond the resonance. Here, the asymptotic response of the two-degree-of-freedom system with a 1:1 internal resonance is shown to be in very close agreement with the results of path following analyses. The asymptotic solution lends itself to a versatile optimization based on differential evolutionary.
机译:本文解决了在非线性动态制度中运行的振动吸收器(VAS)的经典问题。由于传统的线性VAS具有窄带的缺点,并且许多结构表现出非线性行为,因此非线性吸收剂具有实际兴趣。通过渐近剂分析地通过渐变和路径分析地研究了附着于阻尼非线性结构的非线性滞后VA的共振动态行为。通过将主要结构的动态突出到控制模式来获得的缩小阶模型的响应是使用多个缩放的方法评估到超出谐振之外的第一个非线性顺序的方法。这里,具有1:1内部共振的二维自由度系统的渐近响应被显示为与分析后路径的结果非常接近。渐近解决方案基于差分进化的多功能优化来利用。

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