Industrial Technology Center of Okayama Prefecture, 5301 Haga, Kita-ku, Okayama-shi, Okayama 701-1296, Japan.
J Acoust Soc Am. 2012 Aug;132(2):767-78. doi: 10.1121/1.4731233.
This study deals with the feedforward active control of sound transmission through a simply supported rectangular panel using vibration actuators. The control effect largely depends on the excitation method, including the number and locations of actuators. In order to obtain a large control effect at low frequencies over a wide frequency, an active transmission control method based on single structural mode actuation is proposed. Then, with the goal of examining the feasibility of the proposed method, the (1, 3) mode is selected as the target mode and a modal actuation method in combination with six point force actuators is considered. Assuming that a single input single output feedforward control is used, sound transmission in the case minimizing the transmitted sound power is calculated for some actuation methods. Simulation results showed that the (1, 3) modal actuation is globally effective at reducing the sound transmission by more than 10 dB in the low-frequency range for both normal and oblique incidences. Finally, experimental results also showed that a large reduction could be achieved in the low-frequency range, which proves the validity and feasibility of the proposed method.
本研究采用振动激励器对简支矩形板的声透射进行前馈主动控制。控制效果在很大程度上取决于激励方法,包括激励器的数量和位置。为了在低频和宽频范围内获得较大的控制效果,提出了一种基于单结构模态激励的主动传输控制方法。然后,为了检验所提出方法的可行性,选择了(1,3)模态作为目标模态,并考虑了模态激励方法和六点力激励器的结合。假设采用单输入单输出前馈控制,针对几种激励方法,计算了在传输声功率最小的情况下的声透射。仿真结果表明,在正常和斜入射情况下,(1,3)模态激励在低频范围内对降低声透射具有全局有效性,可降低 10dB 以上。最后,实验结果也表明,在低频范围内可以实现较大的降低,这证明了所提出方法的有效性和可行性。