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H_∞ optimization of multiple tuned mass dampers for multimodal vibration control

机译:H_∞优化多峰振动控制的多调谐质量阻尼器

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In this paper, a new computational method for the purpose of multimodal vibration mitigation using multiple tuned mass dampers is proposed. Classically, the minimization of the maximum amplitude is carried out using direct H-infinity optimization. However, as shall be shown in the paper, this approach is prone to being trapped in local minima, in view of the nonsmooth character of the problem at hand. This is why this paper presents an original alternative to this approach through norm-homotopy optimization. This approach, combined with an efficient technique to compute the structural response, is shown to outperform direct H-infinity optimization in terms of speed and performance. Essentially, the outcome of the algorithm leads to the concept of all-equal-peak design for which all the controlled peaks are equal in amplitude. This unique design is new with respect to the existing body of knowledge. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的计算方法,用于使用多传达的质量阻尼器的多模式减振的目的。经典上,使用直接H-Infinity优化来执行最大幅度的最小化。然而,考虑到手头问题的非现状,这种方法易于在局部最小值中被捕获。这就是本文通过常态优化呈现出这种方法的原始替代品。这种方法与计算结构响应的有效技术相结合,显示在速度和性能方面优于直接的H-Infinity优化。本质上,算法的结果导致全相等峰值设计的概念,其中所有受控峰值相等的幅度。这种独特的设计是关于现有知识体系的新设计。 (c)2021 elestvier有限公司保留所有权利。

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