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Active vibro-acoustic control with multiple local feedback loops

机译:具有多个本地反馈回路的主动振动声控制

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The active control of a structure in order to reduce its vibration or sound radiation, which may be termed active vibroacoustic control, has previously been achieved with multiple actuators and sensors and fully-coupled feedforward or feedback controllers. In this paper local velocity feedback using multiple miniature accelerometers will be investigated, together with either collocated force actuators or piezoceramic actuators placed under each sensor. With ideal force actuators, the plant response is passive for such an arrangement of collocated actuator/sensor pairs and so decentralised (local) feedback is guaranteed stable. This property is shown to extend to collocated velocity sensors and piezoceramic actuators over the bandwidth of interest and so multiple local feedback loops are also predicted to be stable. The performance of such a system is simulated in controlling the vibration and sound transmission through a thin plate, excited by an acoustic plane wave, with a 4 X 4 array of such actuator/sensor pairs, which are connected together with 16 local feedback control loops. Using force actuators, significant frequency-averaged reductions up to 1kHz in both the kinetic energy (28dB) and transmitted sound power (18dB) can be obtained with an appropriate feedback gain in each loop. These reductions are not so great with piezoelectric actuators (12dB and 9dB respectively) but their use allows the controller to be fully integrated in the structure.
机译:为了减少结构的振动或声音辐射的主动控制,可以称为主动振动声学控制,先前已经通过多个致动器和传感器以及完全耦合的前馈或反馈控制器来实现。在本文中,将研究使用多个微型加速度计的局部速度反馈,以及放置在每个传感器下方的并置力致动器或压电陶瓷致动器。使用理想的力执行器,对于并置的执行器/传感器对的这种布置,设备的响应是被动的,因此可以确保分散的(本地)反馈稳定。该属性显示在感兴趣的带宽上扩展到并置的速度传感器和压电陶瓷执行器,因此,也预测了多个局部反馈环路是稳定的。通过控制由声平面波激发的薄板控制振动和声音的传输,模拟了这种系统的性能,并使用4 X 4的这种执行器/传感器对阵列,将其与16个本地反馈控制环连接在一起。使用力致动器,可以在每个回路中以适当的反馈增益获得动能(28dB)和发射声功率(18dB)均高达1kHz的频率平均显着降低。对于压电执行器(分别为12dB和9dB)而言,这些减小不是很大,但是它们的使用使控制器可以完全集成在结构中。

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