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首页> 外文期刊>Journal of Vibration and Acoustics >Closed-Form Exact Solution to H_∞ Optimization of Dynamic Vibration Absorbers (Application to Different Transfer Functions and Damping Systems)
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Closed-Form Exact Solution to H_∞ Optimization of Dynamic Vibration Absorbers (Application to Different Transfer Functions and Damping Systems)

机译:动态减振器H_∞优化的闭式精确解(在不同传递函数和阻尼系统中的应用)

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摘要

H_∞ optimization of the dynamic vibration absorbers is a classical optimization problem, and has been already solved more than 50 years ago. It is a well-known solution, but we know this solution is only an approximate one. Recently, one of the authors has proposed a new method for attaining the H_∞ optimization of the absorber in linear systems. The new method enables us to obtain the exact algebraic solution of the H_∞ optimization problem of the absorber. In this paper, we first apply this method to the design optimization of a viscous damped (Voigt type) absorber and a hysteretic damped absorber attached to undamped primary systems. For each absorber, six different transfer functions are taken here as performance indices to vibration suppression or isolation. As a result, we found the closed-form exact solutions to all transfer functions. The solutions obtained here are then compared with those of the approximate ones. Finally, we present the closed-form exact solutions to the hysteretic damped absorber attached to damped primary systems.
机译:动态吸振器的H_∞优化是一个经典的优化问题,并且已经在50多年前解决了。这是一个众所周知的解决方案,但是我们知道该解决方案只是一个近似的解决方案。最近,一位作者提出了一种在线性系统中实现吸收体H_∞优化的新方法。新方法使我们能够获得吸收器H_∞优化问题的精确代数解。在本文中,我们首先将此方法应用于粘滞阻尼(Voigt型)吸收器和连接到未阻尼初级系统的滞后阻尼吸收器的设计优化。对于每个吸收器,此处采用六个不同的传递函数作为振动抑制或隔离的性能指标。结果,我们找到了所有传递函数的闭式精确解。然后将此处获得的解与近似解进行比较。最后,我们给出了附加到阻尼初级系统的滞后阻尼吸收器的闭式精确解。

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