首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science >An active mount using an electromagnetic actuator for vibration control: experimental investigation
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An active mount using an electromagnetic actuator for vibration control: experimental investigation

机译:使用电磁执行器进行振动控制的主动安装:实验研究

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摘要

In this work, the vibration control performance of an active mount using an electromagnetic actuator is experimentally evaluated. After manufacturing an electromagnetic actuator, dynamic characteristics such as the actuating force and response time of the electromagnetic actuator are experimentally investigated. The material properties of the rubber element are also experimentally identified. An active mount system using an electromagnetic actuator and a rubber element is designed and the governing equation is derived. A sliding mode controller that has inherent robustness to external disturbance is designed and implemented in the system. Vibration control performances of the active mount system, such as acceleration and transmitted force, are experimentally evaluated and they are presented in both time and frequency domains. It is observed that the structural vibration is effectively attenuated by applying proper control input to the electromagnetic actuator.
机译:在这项工作中,实验评估了使用电磁致动器的主动支架的振动控制性能。在制造电磁致动器之后,通过实验研究诸如电磁致动器的致动力和响应时间的动态特性。橡胶元件的材料特性也通过实验确定。设计了使用电磁执行器和橡胶元件的主动安装系统,并推导了控制方程。在系统中设计并实现了一种对外部干扰具有固有鲁棒性的滑模控制器。通过实验评估了主动安装系统的振动控制性能,例如加速度和传递的力,并在时域和频域中进行了介绍。可以看出,通过向电磁执行器施加适当的控制输入,可以有效地衰减结构振动。

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