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Demand-based optimal design of oscillator with parallel-layout viscous inerter damper

机译:基于需求的带有并联布局粘性惯性阻尼器的振荡器的优化设计

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In this study, a demand-based optimal design method is proposed for an oscillator (a single-degree-of-freedom system) with a parallel-layout viscous inerter damper (PVID). The proposed design method overcomes some deficiencies of the existing method, which is based on the fixed-point theory and is mainly suitable for tuned mass dampers. Moreover, for the fixed-point method, the inherent damping of the primary structure is neglected, and the global optimal solution cannot be obtained. The proposed method can obtain a more rational and practical design for the actual design by minimizing both the response and the cost. The design problem of a PVID-equipped oscillator is transformed into a multi-objective optimization problem that can be solved using the epsilon-constraint approach, which is consistent with the concept of demand-based design. The dynamic response of the oscillator and the force of the PVID (i.e., the cost factor) are evaluated according to theories of random vibration to reduce the number of calculations required. A computer program is developed to perform demand-based parametric design of a PVID-equipped oscillator. Several design cases were examined under different excitation conditions using the computer program, and dynamic time history analyses were then conducted to verify the designs obtained. The results show that the proposed optimal design method identifies satisfactory designs more effectively than the existing method by obtaining PVID design parameter values that better meet the performance demand and simultaneously minimize the cost.
机译:在这项研究中,提出了一种基于需求的最优设计方法,用于带有平行布局的粘性惯性阻尼器(PVID)的振荡器(单自由度系统)。所提出的设计方法克服了现有方法的不足之处,该方法基于定点理论,主要适用于调谐质量阻尼器。此外,对于定点方法,忽略了主结构的固有阻尼,因此无法获得全局最优解。通过使响应和成本最小化,所提出的方法可以为实际设计获得更加合理和实用的设计。配备PVID的振荡器的设计问题被转换为可以使用epsilon约束方法解决的多目标优化问题,这与基于需求的设计概念一致。根据随机振动的理论评估振荡器的动态响应和PVID的力(即成本因数),以减少所需的计算次数。开发了计算机程序以执行基于需求的带PVID的振荡器的参数设计。使用计算机程序在不同的激励条件下检查了几个设计案例,然后进行了动态时程分析以验证所获得的设计。结果表明,所提出的最优设计方法通过获得能够更好地满足性能需求并同时最小化成本的PVID设计参数值,比现有方法更有效地识别满意的设计。

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