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Active control of sound transmission using a hybrid/blind decentralized control approach

机译:使用混合/盲分散控制方法主动控制声音传输

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This paper presents a theoretical and experimental analysis of broadband sound transmission control of an aluminum panel in the frequency range between 30 Hz and 1kHz. Based on the analysis of characteristics of sensor-actuator pairs, piezoelectric patches bonded on the structure are used as actuators, and collocated accelerometers are used as sensors. Then a hybrid decentralized control law is derived, which has a broad control band and puts more control authority on the most sound radiation effective mode. This control law comprises two parts: one is the direct velocity feedback controller, and the other one, relatively new, is called the negative acceleration feedback (NAF) controller. The control architecture is decentralized, which means each controller works independently. Due to the second-order dynamic property of the NAF controller and the fact that the structure's frequencies may shift, the Hilbert-Huang method is used for quick and automatic identification of the natural frequency. Finally, open loop and closed loop experiments are presented to support the theoretical analysis. The active control results demonstrate that the panel's vibration level can be suppressed by 16.7dB and the broadband sound pressure level could be lowered by more than 7 dB.
机译:本文介绍了铝面板在30 Hz至1kHz频率范围内的宽带声音传输控制的理论和实验分析。基于对传感器-执行器对特性的分析,将粘合在结构上的压电贴片用作执行器,并置加速度计用作传感器。然后推导了一种混合式分散控制律,该控制律具有较宽的控制范围,并将更多的控制权置于最有效的辐射有效模式上。该控制律包括两部分:一个是直接速度反馈控制器,另一个是相对较新的称为负加速度反馈(NAF)控制器。控制架构是分散式的,这意味着每个控制器都是独立工作的。由于NAF控制器具有二阶动态特性,并且结构的频率可能会发生偏移,因此使用Hilbert-Huang方法来快速自动识别固有频率。最后,提出了开环和闭环实验以支持理论分析。主动控制结果表明,面板的振动水平可以降低16.7dB,宽带声压水平可以降低7dB以上。

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