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ANALOG VELOCITY FEEDBACK CONTROLLER FOR VIBRATION SUPPRESSION AND SOUND ATTENUATION

机译:用于振动抑制和声音衰减的模拟速度反馈控制器

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In this paper, an analog velocity feedback controller is considered for active vibration suppression of a thin plate for attenuation of sound levels in the frequency range of 0-100 Hz. The active control methods can be applied to interior cavity noise reduction, as encountered for instance in automotive applications. For that purpose, a simplified experimental vibro-acoustic cabin model was built in our laboratory and developed methodologies are demonstrated on the set-up. The set-up includes a rectangular box (1 × 1 × 2 m) which is separated with a flexible thin plate (1 × 1 × 0.001 m) to obtain two enclosed cavities: the passenger compartment (PC) and the engine compartment (EC). The vibration control is applied only on the flexible plate since the walls enclosing the cavities are made of more rigid material (wood filled concrete). By employing piezoelectric patch as actuator and laser doppler vibrometer as vibration sensor, an analog proportional velocity feedback controller is designed and built experimentally for suppressing the low-frequency modes of the flexible plate. In order to attenuate only lower-frequency structural modes of the thin panel, pre-filters are also included in analog circuit. The vibration of thin plate and sound in the passenger compartment is measured for controller-inactive and active cases while disturbing the thin plate via shaker. By measuring vibration and sound response, closed and open loop experimental frequency responses are obtained and presented. The aim of this experimental study is to investigate performance of active vibration control applications on acoustic attenuation as the first step towards robust structural acoustic control.
机译:在本文中,考虑使用模拟速度反馈控制器来主动抑制薄板,以衰减0-100 Hz频率范围内的声级。主动控制方法可以应用于减少内部空腔的噪声,例如在汽车应用中遇到的情况。为此,在我们的实验室中建立了一个简化的实验振动声舱模型,并在设置中演示了开发的方法。该装置包括一个矩形箱(1×1×2 m),该矩形箱与一块柔性薄板(1×1×0.001 m)隔开,从而获得两个封闭的空腔:乘客舱(PC)和发动机舱(EC) )。振动控制仅适用于柔性板上,因为包围空腔的壁由更坚硬的材料(木质填充混凝土)制成。以压电贴片为执行器,激光多普勒振动计为振动传感器,设计并建立了模拟比例速度反馈控制器,以抑制柔性板的低频模式。为了仅衰减薄板的低频结构模式,在模拟电路中还包括预滤波器。对于不使用控制器和处于活动状态的情况,要测量薄板的振动和乘客舱中的声音,同时通过振动器干扰薄板。通过测量振动和声音响应,获得并给出了闭环和开环实验频率响应。这项实验研究的目的是研究主动振动控制应用在声学衰减方面的性能,这是迈向稳健的结构声学控制的第一步。

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