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首页> 外文期刊>Journal of aerospace engineering >Intelligent Vibration Isolation and Mitigation of a Platform by Using MR and VE Devices
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Intelligent Vibration Isolation and Mitigation of a Platform by Using MR and VE Devices

机译:使用MR和VE设备进行平台的智能隔振和缓解

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摘要

The vibration isolation and mitigation of a platform, such as aerospace or precision instrument platforms, is an important research topic. However, previous studies only address high-frequency excitations; they disregard the control effect of low-frequency excitations. Thus, a new vibration control scheme for a platform is proposed to reduce the dynamic responses of a platform that is subjected to wide-frequency excitations, which range from 0 to 500Hz, using vibration isolation and mitigation devices, magnetorheological (MR) dampers, and viscoelastic (VE) dampers. The motion equations of a complex dynamic system with these three different types of dampers are deduced considering seven degree-of-freedom coupling vibration. The idea of multistate control is adopted to control the inputting currents of the MR damper, and the dynamic responses of the platform to sinusoidal excitation, white noise excitation, and load spectrum excitation are calculated, respectively. The analysis results indicate that the proposed vibration control scheme is effective and suitable for vibration control of the platform.
机译:诸如航空航天或精密仪器平台之类的平台的隔振和减振是重要的研究课题。但是,以前的研究仅针对高频激励。他们忽略了低频激励的控制效果。因此,提出了一种用于平台的新的振动控制方案,以减少使用振动隔离和缓解装置,磁流变(MR)阻尼器的平台在0到500Hz范围内遭受宽频激励的动态响应。粘弹性(VE)阻尼器。考虑到七个自由度的耦合振动,推导了具有这三种不同类型的阻尼器的复杂动态系统的运动方程。采用多状态控制的思想控制MR阻尼器的输入电流,分别计算了平台对正弦激励,白噪声激励和载荷谱激励的动态响应。分析结果表明,所提出的振动控制方案是有效的,适用于平台的振动控制。

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