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HYBRID ACTIVE AND SEMI-ACTIVE CONTROL FOR VIBRATION SUPPRESSION IN FLEXIBLE STRUCTURES

机译:柔性结构中振动抑制的混合动力学和半主动控制

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A new hybrid control methodology is presented for vibration suppression in flexible structures, where an active actuator is used to assist a nearby semi-active device to achieve a control performance close to that of a fully active system. The clipping phenomenon, typical of semi-active control, is reduced to a large extent by the proposed hybrid controller. The immersion and invariance methodology along with sliding mode control is used to create the hybrid controller. The result is that as the semi-active controller switches off in the hybrid controller, the active actuator injects the required energy into the system. A two degree of freedom system with cubic stiffness is used as an example system. Both simulation and experiment data are presented to demonstrate the usefulness of the proposed idea. The proposed hybrid controller shows robust results as compared to just using a semi-active controller.
机译:介绍了一种新的混合控制方法,用于柔性结构中的振动抑制,其中有源致动器用于帮助附近的半主动装置实现接近完全有源系统的控制性能。通过所提出的混合控制器,典型的半主动控制的典型半主动控制的剪切现象在很大程度上降低。浸入和不变性方法以及滑动模式控件用于创建混合控制器。结果是,随着半动控制器关闭混合控制器,主动执行器将所需的能量注入系统中。使用具有立方刚度的两度自由度系统用作示例系统。提出了模拟和实验数据,以证明提出的想法的有用性。与使用半动控制器相比,所提出的混合控制器显示了稳健的结果。

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