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Adaptive Control of Structural Acoustics using Intelligent Structures with Embedded Piezoelectric Patches

机译:嵌入式压电膜片智能结构对结构声学的自适应控制

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In this paper we focus on the adaptive control of structural using intelligent structures with embedded piezoelectric (PZT) patches and low cost digital signal processor systems. After a discussion on the adaptive feedforward control scheme, a hybrid adaptive control scheme is proposed, which takes advantage of both feedback control and adaptive feedforward control. The two schemes are realized on a low-cost, small volume, convenient and universal digital signal processing (DSP) board. A carbon fiber reinforced polymer plate with two embedded PZT patches is developed and used in two experiments. The first experiment is adaptive interior noise control using the intelligent plate, in which the adaptive feedforward control scheme is employed. Obvious noise reduction is obtained for constant frequency, swept frequency and varying amplitude harmonic disturbances. The second experiment is adaptive control of sound-induced vibration of the plate, where two embedded PZT patches are used as an actuator and a sensor, respectively, and the hybrid adaptive controller is applied. The full vibration reduction for various harmonic excitations is obtained, verifying the advantage of the hybrid adaptive control. It is demonstrated that active control of structural acoustics can be efficiently achieved by employing intelligent structures, advanced adaptive control schemes and the low-cost DSP board.
机译:在本文中,我们专注于使用具有嵌入式压电(PZT)贴片和低成本数字信号处理器系统的智能结构对结构进行自适应控制。在讨论了自适应前馈控制方案之后,提出了一种混合自适应控制方案,该方案同时利用了反馈控制和自适应前馈控制。这两种方案都是在低成本,小体积,方便且通用的数字信号处理(DSP)板上实现的。开发了具有两个嵌入式PZT贴片的碳纤维增强聚合物板,并将其用于两个实验。第一个实验是使用智能板的自适应内部噪声控制,其中采用了自适应前馈控制方案。对于恒定频率,扫频和变化幅度的谐波干扰,可获得明显的降噪效果。第二个实验是板的声振动的自适应控制,其中两个嵌入式PZT贴片分别用作致动器和传感器,并应用了混合自适应控制器。获得了各种谐波激励的完全减振,证明了混合自适应控制的优势。结果表明,采用智能结构,先进的自适应控制方案和低成本DSP板可以有效地实现对结构声学的主动控制。

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