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Optimal design for high-performance passive dynamic vibration absorbers under random vibration

机译:随机振动下高性能被动动态吸振器的优化设计

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This work is motivated to determinate the optimal design for various types of Dynamic Vibration Absorbers (DVAs) under the effect of random loads. These devices are the following: DVAs connected in parallel or series; two degree-of-freedom traditional dynamic vibration absorber (2dof-TVA) with translational and rotational motion; and inerter-based DVAs (IDVA-C6, C4, and C3). These types of DVAs were selected by their high effectiveness for suppressing vibration however a comparative study on their dynamic performance has not yet been performed. Two different excitation sources of random loads are studied in this paper which are random ground motion and force excitation. An optimum design for majority of these devices has not yet been computed when subjected to random ground motion excitation, and therefore in this paper are computed. For random force excitation, some numerical solutions for the optimal design of these devices have not yet reported which in this paper are computed in order to compare the dynamic performance for each device with respect to that of the classic DVA. For both random excitation cases, the H-2, optimization criteria is used to analytically compute the variance of squared modulus of frequency response of the undamped primary structure, and then nonlinear unconstrained optimization problems are formulated in order to obtain the optimal design. Numerical solutions revealed that the IDVA-C6, C3, and DVAs connected in series presents more than 13% and 10% improvement with respect to the classic DVA for random ground motion and force excitation cases, respectively. These devices can widen the suppression band (SB) from 30% to 40% for mass ratios values from 1% to 10%. It means that devices are more effective and robust for mitigating vibration than the classic DVA. In addition, the rotational inertial double tuned mass damper (IDVA-C6) has the same relative dynamic performance (RDP) and suppression band index (SB) than the double-mass dynamic vibration absorber arranged in series. For practical application where the mounting space of the DVA is extremely reduced, the DVAs connected in series could be more convenient to use than IDVA-C6. The concept of equivalent mass ratio is introduced in order to explain the superiority of these devices with respect to the classic DVA. Finally, in H-infinity optimization criteria, the IDVA-C6 presents the same vibration amplitudes at all excitation frequency range and suppression band than DVAs connected in series.
机译:这项工作的动机是确定在随机载荷作用下,各种类型的动态振动吸收器(DVA)的最佳设计。这些设备如下:DVA并联或串联;具有平移和旋转运动的两个自由度传统动态吸振器(2dof-TVA);和基于惰性的DVA(IDVA-C6,C4和C3)。选择这些类型的DVA是由于其抑制振动的高效性,但是尚未对其动态性能进行比较研究。本文研究了两种不同的随机载荷激励源,即随机地面运动和力激励。当受到随机地面运动激励时,尚未计算出大多数这些设备的最佳设计,因此在本文中进行了计算。对于随机力激励,尚未报告一些用于这些设备的最佳设计的数值解决方案,在本文中已对其进行计算,以便将每个设备的动态性能与经典DVA的动态性能进行比较。对于这两种随机激励情况,使用H-2优化准则来分析计算无阻尼初级结构的频率响应平方模的方差,然后制定非线性无约束优化问题以获得最优设计。数值解法表明,对于随机地面运动和力激励情况,串联的IDVA-C6,C3和DVA分别比经典DVA分别提高了13%和10%以上。对于质量比值从1%到10%的这些设备可以将抑制带(SB)从30%扩大到40%。这意味着与传统DVA相比,设备在减轻振动方面更有效,更耐用。此外,旋转惯性双调谐质量阻尼器(IDVA-C6)与串联的双质量动态减振器具有相同的相对动态性能(RDP)和抑制带指数(SB)。对于DVA的安装空间大大减少的实际应用,串联连接的DVA可能比IDVA-C6更方便使用。引入等效质量比的概念是为了解释这些设备相对于经典DVA的优越性。最后,在H无限优化标准中,与串联连接的DVA相比,IDVA-C6在所有激励频率范围和抑制带上均呈现相同的振动幅度。

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