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首页> 外文期刊>Journal of Sound and Vibration >Active vibration isolation of a system with a distributed parameter isolator using absolute velocity feedback control
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Active vibration isolation of a system with a distributed parameter isolator using absolute velocity feedback control

机译:具有绝对速度反馈控制的带有分布参数隔离器的系统的主动隔振

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This paper is concerned with the active isolation of a system containing a distributed parameter isolator using absolute velocity feedback control. The main differences between this type of system and one with a massless isolator, is that there are isolator resonances. It is shown that the vibration at these resonance frequencies cannot be suppressed using a simple velocity feedback control strategy. Moreover, it is found that the isolator resonances can cause the control system to become unstable, if the isolated equipment is supported on a flexible base. A stability criterion based on the mode shapes of the system is presented. Two techniques to stabilise the system are investigated and compared. The first involves the addition of mass on the base structure, and the second involves an electronic lead compensator. Experimental results are presented to support the theoretical findings. It is shown that even if the instability due to the isolator resonances and flexibility of the base can be prevented, the instability due to the flexibility of the equipment remains a problem.
机译:本文涉及采用绝对速度反馈控制的包含分布式参数隔离器的系统的主动隔离。这种类型的系统与带有无质量隔离器的系统之间的主要区别在于,存在隔离器共振。结果表明,使用简单的速度反馈控制策略无法抑制这些共振频率处的振动。而且,发现如果隔离的设备支撑在柔性基座上,隔离器的谐振会导致控制系统变得不稳定。提出了基于系统模式形状的稳定性判据。研究和比较了两种稳定系统的技术。第一个涉及在基础结构上增加质量,第二个涉及电子铅补偿器。提出实验结果以支持理论发现。已经表明,即使可以防止由于绝缘子共振引起的不稳定性和基座的挠性,但是由于设备的挠性引起的不稳定性仍然是一个问题。

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