谐波激励下线性阻尼旋转系统动态吸振器的最优参数

Vu Duc Phuc, Tong Van Canh, Phạm Văn Liệu
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引用次数: 0

摘要

动态减振器是一种简单有效的减振装置,在许多实际应用中得到了广泛的应用。确定合适的减振参数对实现高减振效果具有重要意义。本文提出了一种求解受谐波转矩激励的线性阻尼旋转系统的DVA最优参数的方法。为此,在假设阻尼旋转系统为轻度或中度阻尼的基础上,利用不动点理论导出了最佳调谐参数的封闭形式公式。通过求解由切比雪夫最小-最大准则建立的一组非线性方程,找到了DVA的最佳阻尼比。将所提出的最优DVA的性能与文献中已有的最优解进行了比较。结果表明,与现有的最优公式相比,所提出的最优参数可以获得更好的减振效果。通过扩展仿真验证了优化设计的DVA的性能和优化参数的灵敏度。仿真结果表明,采用DVA可使阻尼旋转系统的振动性能提高90%以上。
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Optimal parameters of dynamic vibration absorber for linear damped rotary systems subjected to harmonic excitation
Dynamic vibration absorber (DVA) is a simple and effective device for vibration absorption used in many practical applications. Determination of suitable parameters for DVA is of significant importance to achieve high vibration reduction effectiveness. This paper presents a method to find the optimal parameters of a DVA attached to a linear damped rotary system excited by harmonic torque. To this end, a closed-form formula for the optimum tuning parameter is derived using the fixed-point theory based on an assumption that the damped rotary systems are lightly or moderately damped. The optimal damping ratio of DVA is found by solving a set of non-linear equations established by the Chebyshev’s min-max criterion. The performance of the proposed optimal DVA is compared with that obtained by existing optimal solution in literature. It is shown that the proposed optimal parameters allow to obtain superior vibration suppression compared to existing optimal formula. Extended simulations are carried out to examine the performance of the optimally designed DVA and the sensitivity of the optimum parameters. The simulation results show that the improvement of the vibration performance on damped rotary system can be as much as 90% by using DVA.
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