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首页> 外文期刊>Journal of vibration and control: JVC >Modeling and vibration control of an active horizontal seat suspension with pneumatic muscles
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Modeling and vibration control of an active horizontal seat suspension with pneumatic muscles

机译:气动肌肉有源水平座椅悬架的建模与振动控制

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摘要

In the following paper, the dynamic modeling of a horizontal seat suspension which uses pneumatic muscles for the purpose of active vibration control is discussed. An original control system structure is proposed in order to improve the vibro-isolation properties of a horizontal seat suspension system. The presented control system design is based on inverse models of the pneumatic muscles and the primary controller that calculates the desired active force. By using the configurable control algorithm developed in this paper, it is possible to achieve a significant reduction in vibrations transmitted into the human body with just a slight increasing of the suspension travel. The active seat shows improved performance over the passive system in the 1-10 Hz frequency range. The results presented in this paper are useful in selecting the horizontal vibration control system for improving the comfort of a drive.
机译:在下文中,讨论了使用气动肌肉以实现主动振动控制的水平座椅悬架的动态建模。 提出了原始控制系统结构,以改善水平座椅悬架系统的振动隔离性能。 所提出的控制系统设计基于气动肌肉的逆模型和计算所需的主动力的主控制器。 通过使用本文开发的可配置控制算法,可以在悬架行程的略微增加,实现传递到人体中的振动的显着降低。 主动座椅在1-10 Hz频率范围内通过无源系统进行了改进的性能。 本文提出的结果可用于选择用于改善驱动器的舒适性的水平振动控制系统。

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