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MINIMAX DESIGN OF PARALLEL MULTI-MASS DYNAMIC VIBRATION ABSORBERS

机译:并行多质量动态振动吸收器的最小值设计

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This paper discusses the design of multi-mass dynamic vibration absorbers in a parallel configuration subject to uncertainties in the forcing frequency acting on the main mass or through the motion of the base. A minimax parameter optimization approach is used to determine the optimum absorber mass parameters for different numbers of vibration absorbers without changing the total vibration absorber mass (constant mass ratio). The effects of increasing the number of absorber masses are analyzed qualitatively through analysis of the system transfer function as well as quantitatively via numerical simulations. Increasing the number of absorber masses is shown to give improved robustness and overall vibration reduction in the main mass at the cost of increased motion of the absorber masses.
机译:本文讨论了在平行配置中的多质量动态振动吸收器的设计,其在迫使频率的不确定性作用在主物质上或通过基部的运动。 Minimax参数优化方法用于确定不同数量的振动吸收器的最佳吸收质量参数,而不改变总振动吸收质量(恒定质量比)。通过分析系统传递函数以及通过数值模拟的分析来分析增加吸收体肿块数量的效果。增加吸收体的数量的数量被证明在吸收体块的增加的成本上提高了主质量的鲁棒性和整体振动减小。

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