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Optimization criteria for tuned mass dampers for structural vibration control under stochastic excitation

机译:随机激励下用于结构振动控制的调谐质量阻尼器的优化标准

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摘要

In this work a comparative analysis between different optimization criteria is performed for a linear Tuned Mass Damper (TMD) devices problem. Optimal TMD mechanical parameters are evaluated considering a simple one degree-of-freedom system subject to a base acceleration modeled as a stationary filtered stochastic process. Whereas common TMD optimization methods consider only TMD frequency and damping ratio as design variables, in this study a complete approach will be proposed, which takes into account also the TMD mass as design variable. The effectiveness of the vibration control strategy is evaluated expressing the objective function in terms of two different reduction factors of the system response: the displacement and the inertial acceleration, respectively. The mechanical characteristics of the TMD, frequency ratio, damping ration and mass ratio, represent the design variables of the optimization problem. This is carried out numerically and then various analyses of sensitivity are developed by varying the input and structural parameters in order to assess the efficiency of the TMD strategy under different input and mechanical configurations. Variations between different criteria are also evaluated.
机译:在这项工作中,针对线性调谐质量阻尼器(TMD)设备问题进行了不同优化标准之间的比较分析。考虑到一个简单的自由度系统,评估其最佳TMD机械参数,该系统受基本加速度建模为静态滤波随机过程。尽管普通的TMD优化方法仅将TMD频率和阻尼比作为设计变量,但在本研究中,将提出一种完整的方法,其中也将TMD质量作为设计变量。评估振动控制策略的有效性,以系统响应的两个不同减少因子来表达目标函数:分别是位移和惯性加速度。 TMD的机械特性,频率比,阻尼比和质量比代表了优化问题的设计变量。这是通过数字方式进行的,然后通过改变输入和结构参数来开发各种灵敏度分析,以便评估在不同输入和机械配置下TMD策略的效率。还评估了不同标准之间的差异。

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