A variable inertance and variable damping vibration control system with electric circuit

D. Ning, Zhijuan Jia, H. Du, Weihua Li, Nong Zhang
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引用次数: 2

Abstract

In this paper, a variable inertance and variable damping (VIVD) vibration control system with an electric circuit is proposed and analysed. By connecting a VD device and an inerter in series, a VI device can be composed, which can vary its equivalent inertance by controlling the damping of the VD device. A single degree of freedom suspension with the VI and VD capabilities are analysed in the frequency domain. The result shows that the VIVD semi-active system can have much better vibration control performance than the conventional VD system. The VIVD system is complicated to implement with mechanical networks. Hence, based on the mechanical-electrical analogies, the mechanical energy is transferred to electrical energy with an electromagnetic damper, and then an electric circuit is designed to simulate the VIVD device. The frequency and time domain analyses both validate the correction of design. The VIVD vibration control system can significantly improve the semi-active system's performance.
一种带电路的变惯性变阻尼振动控制系统
本文提出并分析了一种带电路的变惯性变阻尼(VIVD)振动控制系统。通过将VD器件与干涉仪串联,可以组成一个VI器件,通过控制VD器件的阻尼来改变其等效惰性。对具有VI和VD能力的单自由度悬架进行了频域分析。结果表明,该系统比传统的气相沉积系统具有更好的振动控制性能。采用机械网络实现VIVD系统比较复杂。因此,在机电类比的基础上,利用电磁阻尼器将机械能转化为电能,然后设计电路来模拟VIVD装置。频域和时域分析均验证了设计的正确性。VIVD振动控制系统可以显著提高半主动系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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