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Applied Adaptive Controller Design for Vibration Suppression in Electromagnetic Systems

机译:电磁系统中振动抑制的应用自适应控制器设计

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In engineering tests, the vehicle-track coupledvibration is very easy to occur on the elastic supportbeams for a magnetic levitation (maglev) system. Thefundamental waves, higher order harmonics, and othercomponents related to the mode of track vibrations areoften observed in the gap, acceleration and currentsensors. This paper aims to design an adaptive filter tosuppress these vibration components and improve theride comfort for the passengers. Firstly, an adaptive selfturningfilter is designed to filter out wideband signalsand noise from the original signals, and enhance thestrength of the fundamental wave and the harmoniccomponents related to the mode of track vibration.Secondly, a narrow-band bandpass filter is presented toextract these enhanced periodical signals related to thetrack mode, and then the enhanced signals are configuredas the reference inputs of the subsequent adaptive noisecanceller. Thirdly, the adaptive noise canceller filtersout periodical vibration components related to the trackmode. Finally, the designed digital adaptive filter isapplied to a real maglev system and suppresses coupledvibration on the elastic support beams effectively.
机译:在工程测试中,车辆轨道耦合弹性支架上很容易发生振动用于磁悬浮(Maglev)系统的梁。这基波,高阶谐波等与轨道振动模式相关的组件是经常在间隙,加速和电流中观察到传感器。本文旨在设计自适应滤波器抑制这些振动分量并改善乘坐乘客的舒适。首先,适应自我滤波器旨在过滤宽带信号和原始信号的噪声,并增强基波和谐波的力量与轨道振动模式相关的组件。其次,呈现窄带带通滤波器提取与之相关的这些增强的周期信号跟踪模式,然后配置增强型信号作为随后的自适应噪声的参考输入取消。第三,自适应噪声消除器过滤器出现与轨道相关的周期振动分量模式。最后,设计的数字自适应滤波器是应用于真正的Maglev系统并抑制耦合有效地振动弹性支撑梁。

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